FUSION STRUCTURE, INFLATABLE PRODUCT HAVING THE FUSION STRUCTURE, MANUFACTURING METHOD THEREOF, AND RAPIDLY PRODUCED INFLATABLE PRODUCT HAVING COVERING LAYER SIMULTANEOUSLY POSITIONED WITH INFLATABLE BODY
20200114588 ยท 2020-04-16
Inventors
- Cheng-Chung Wang (Huizhou City, CN)
- Chien-Hua Wang (Huizhou City, CN)
- Yao-Hua Wang (Huizhou City, Guangdong, CN)
Cpc classification
B32B7/09
PERFORMING OPERATIONS; TRANSPORTING
B29C66/1312
PERFORMING OPERATIONS; TRANSPORTING
Y10T428/1366
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B29C65/5078
PERFORMING OPERATIONS; TRANSPORTING
B29C65/02
PERFORMING OPERATIONS; TRANSPORTING
B32B27/12
PERFORMING OPERATIONS; TRANSPORTING
B29C65/4815
PERFORMING OPERATIONS; TRANSPORTING
B29C66/41
PERFORMING OPERATIONS; TRANSPORTING
B29C66/131
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
B29C66/729
PERFORMING OPERATIONS; TRANSPORTING
B32B3/266
PERFORMING OPERATIONS; TRANSPORTING
B29C66/43
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C65/5057
PERFORMING OPERATIONS; TRANSPORTING
B29C65/48
PERFORMING OPERATIONS; TRANSPORTING
A47C27/087
HUMAN NECESSITIES
B29C66/7232
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B29C66/4322
PERFORMING OPERATIONS; TRANSPORTING
B29C66/73921
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A fusion structure, an inflatable product having the fusion structure, a manufacturing method thereof, and a rapidly produced inflatable product having a covering layer simultaneously positioned with an inflatable body are provided. The fusion structure of the inflatable product includes a fusion unit, and the fusion unit includes a target fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are fused together. The fusion reinforcement layer and the auxiliary fusion layer are alternately disposed at a side of the target fusion layer, while the outermost layers of two sides of the fusion unit are the target fusion layer and the auxiliary fusion layer. Alternatively, the fusion reinforcement layer and the auxiliary fusion layer are alternately disposed at two sides of the target fusion layer, while the outermost layers of two sides of the fusion unit are auxiliary fusion layers.
Claims
1. An inflatable product comprising a top sheet and a bottom sheet, wherein the top sheet and the bottom sheet are connected by a fusion structure; the fusion structure comprises at least one fusion unit; the fusion unit comprises a target fusion layer, at least one fusion reinforcement layer and at least one auxiliary fusion layer which are fused together; the fusion reinforcement layer and the auxiliary fusion layer are alternately disposed at a side of the target fusion layer, or the fusion reinforcement layer and the auxiliary fusion layer are alternately disposed at two sides of the target fusion layer; a material of the target fusion layer is the same as or compatible with that of the auxiliary fusion layer.
2. The inflatable product as claimed in claim 1, wherein the fusion reinforcement layer having through holes is held by the target fusion layer and the auxiliary fusion layer; the fusion reinforcement layer, the target fusion layer and the auxiliary fusion layer are fused together; the target fusion layer and the auxiliary fusion layer are melted into the through holes of the fusion reinforcement layer during fusion and are restricted by anti-stretch material which is at edges of the through holes.
3. The inflatable product as claimed in claim 2, wherein the target fusion layer and the auxiliary fusion layer are melted into the through holes of the fusion reinforcement layer, and a direction in which the anti-stretch material restricts the target fusion layer and the auxiliary fusion layer is same as that of pulling force produced on the inflatable product during inflation.
4. The inflatable product as claimed in claim 1, wherein the fusion structure comprises a fusion unit, the fusion unit comprises the target fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, and the target fusion layer, the first fusion reinforcement layer and the first auxiliary fusion layer are connected by a first fusion.
5. The inflatable product as claimed in claim 1, wherein the fusion structure comprises a fusion unit, the fusion unit comprises the target fusion layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, and the target fusion layer, the second auxiliary fusion layer, the first fusion reinforcement layer and the first auxiliary fusion layer are connected by a first welding.
6. The inflatable product as claimed in claim 1, wherein the fusion structure comprises a fusion unit, the fusion unit comprises the target fusion layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, a periphery of the second auxiliary fusion layer is connected to the target fusion layer by a first fusion, the first fusion reinforcement layer and the first auxiliary fusion layer are connected to the second auxiliary fusion layer and the target fusion layer by a second fusion, and portions formed by the first fusion and the second fusion are not overlapped.
7. The inflatable product as claimed in claim 1, wherein the fusion structure comprises a fusion unit, the fusion unit comprises the target fusion layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, the second auxiliary fusion layer is connected to the target fusion layer by a first fusion, the first fusion reinforcement layer and the first auxiliary fusion layer are connected to the second auxiliary fusion layer and the target fusion layer by a second fusion, a portion formed by the first fusion is greater than that formed by the second fusion in area, and the portion formed by the second fusion does not extend beyond that formed by the first fusion.
8. The inflatable product as claimed in claim 1, wherein the fusion structure comprises a fusion unit, the fusion unit comprises the target fusion layer, a second fusion reinforcement layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, the second fusion reinforcement layer and the second auxiliary fusion layer are connected to the target fusion layer by a first fusion, the first fusion reinforcement layer and the first auxiliary fusion layer are connected to the second fusion reinforcement layer, the second auxiliary fusion layer and the target fusion layer by a second fusion, a portion formed by the first fusion is greater than that formed by the second fusion in area, and the portion of the second fusion does not extend beyond that formed by the first fusion.
9. The inflatable product as claimed in claim 1, wherein the fusion structure comprises a fusion unit, the fusion unit comprises a third auxiliary fusion layer, a third fusion reinforcement layer, the target fusion layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, the third auxiliary fusion layer, the third fusion reinforcement layer and the second auxiliary fusion layer are connected to the target fusion layer by a first fusion, the first fusion reinforcement layer and the first auxiliary fusion layer are connected to the third auxiliary fusion layer, the third fusion reinforcement layer the second auxiliary fusion layer and the target fusion layer by a second fusion, a portion formed by the first fusion is greater than that of the second fusion in area, and the portion of the second fusion does not extend beyond that formed by the first fusion.
10. The inflatable product as claimed in claim 1, wherein the fusion reinforcement layer is made of a flexible anti-stretch material having a plurality of through holes.
11. The inflatable product as claimed in claim 10, wherein the fusion reinforcement layer is a mesh fabric.
12. The inflatable product as claimed in claim 1, wherein the fusion structure comprises a first fusion unit and a second fusion unit, the first fusion unit comprises the target fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, the target fusion layer, the first fusion reinforcement layer and the first auxiliary fusion layer are connected by a first fusion, the second fusion unit is same as the first fusion unit in structure, the first fusion unit and the second fusion unit are connected by a second fusion, the first auxiliary fusion layer of the first fusion unit is attached to that of the second fusion unit, a portion formed by the first fusion is greater than that formed by the second fusion in area, and the portion formed by the second fusion does not extend beyond that formed by the first fusion.
13. The inflatable product as claimed in claim 1, wherein peripheries of the top sheet and the bottom sheet are connected by the fusion structure, an air chamber is formed between the top sheet and the bottom sheet, the top sheet is the target fusion layer of the fusion structure, and the bottom sheet is the first auxiliary fusion layer of the fusion structure.
14. The inflatable product as claimed in claim 12, wherein peripheries of the top sheet and the bottom sheet are connected by the fusion structure, an air chamber is formed between the top sheet and the bottom sheet, the top sheet is the target fusion layer of the first fusion unit, and the bottom sheet is the target fusion layer of the second fusion unit.
15. The inflatable product as claimed in claim 1, wherein peripheries of the top sheet and the bottom sheet are directly fused, at least one fusion site formed by the fusion structure is provided between the top sheet and the bottom sheet, the fusion site is configured to form a plurality of spaces between the top sheet and the bottom sheet into air chambers with a predetermined shape, the top sheet is the target fusion layer of the fusion structure, and the bottom sheet is the first auxiliary fusion layer of the fusion structure.
16. The inflatable product as claimed in claim 12, wherein peripheries of the top sheet and the bottom sheet are directly fused, at least one fusion site formed by the fusion structure is provided between the top sheet and the bottom sheet, the fusion site is configured to form a plurality of spaces between the top sheet and the bottom sheet into air chambers with a predetermined shape, the top sheet is the target fusion layer of the first fusion unit, and the bottom sheet is the target fusion layer of the second fusion unit.
17. The inflatable product as claimed in claim 1, further comprising a plurality of tensioning strips, wherein peripheries of the top sheet and the bottom sheet are directly fused to form air chambers, the tensioning strips are fused with inner surfaces of the top sheet and the bottom sheet by the fusion structure, the top sheet and the bottom sheet are the target fusion layer of the fusion structure, and the first fusion reinforcement layer of the fusion structure is a part of the tensioning strips.
18. The inflatable product as claimed in claim 1, further comprising a periphery sheet and a plurality of tensioning strips, wherein two sides of the periphery sheet are directly fused with peripheries of the top sheet and the bottom sheet for forming an air chamber, the tensioning strips are fused with inner surfaces of the top sheet and the bottom sheet by the fusion structure, the top sheet and the bottom sheet are the target fusion layer of the fusion structure, and the first fusion reinforcement layer of the fusion structure is a part of the tensioning strips.
19. The inflatable product as claimed in claim 1, further comprising a periphery sheet and a plurality of tensioning strips, wherein two sides of the periphery sheet are directly fused with peripheries of the top sheet and the bottom sheet for forming an air chamber, the top sheet and the bottom sheet are the target fusion layer of the fusion structure, the periphery sheet is the first auxiliary fusion layer of the fusion structure, the tensioning strips are fused with inner surfaces of the top sheet and the bottom sheet by the fusion structure, the top sheet and the bottom sheet are the target fusion layer of the fusion structure, and the tensioning strips are the first fusion reinforcement layer of the fusion structure.
20. The inflatable product as claimed in claim 12, further comprising a periphery sheet and a plurality of tensioning strips, wherein two sides of the periphery sheet are directly fused with peripheries of the top sheet and the bottom sheet for forming an air chamber, the top sheet and the bottom sheet are the target fusion layer of the first fusion unit of the fusion structure, the periphery sheet is the target fusion layer of the second fusion unit of the fusion structure, and the tensioning strips are fused with inner surfaces of the top sheet and the bottom sheet.
21. The inflatable product as claimed in claim 17, wherein the tensioning strips are arranged between the top sheet and the bottom sheet in a serration pattern, and a plurality of teeth of the serration pattern are trapezoidal or triangular.
22. The inflatable product as claimed in claim 17, wherein a thickness of the top sheet and the bottom sheet without the fusion structure is equal to or is smaller than one-third of a thickness of the top sheet and the bottom sheet with the fusion structure which is formed by including the auxiliary fusion layer but excluding the fusion reinforcement layer.
23. The inflatable product as claimed in claim 20, wherein the tensioning strips are fused with the inner surfaces of the top sheet and the bottom sheet by the fusion structure, the top sheet and the bottom sheet are the target fusion layer of the fusion structure, and the tensioning strips are the first fusion reinforcement layer of the fusion structure.
24. The inflatable product as claimed in claim 20, wherein each of the tensioning strips comprises a strip body, the strip body is fused with the inner surfaces of the top sheet and the bottom sheet at a location where a first auxiliary fusion piece and a second auxiliary fusion piece are provided to hold and fuse with the strip body, or the first auxiliary fusion piece or the second auxiliary fusion piece is fixed to a side of the strip body.
25. The inflatable product as claimed in claim 24, wherein the strip body is made of a flexible anti-stretch material having a plurality of through holes.
26. The inflatable product as claimed in claim 25, wherein the strip body is a mesh fabric.
27. The inflatable product as claimed in claim 26, wherein a third auxiliary fusion piece is provided at a location where at least one of the outer surfaces and the inner surfaces of the top sheet and the bottom sheet fuses with the tensioning strips.
28. The inflatable product as claimed in claim 26, wherein a first auxiliary reinforcement piece and a third auxiliary fusion piece are provided at a location where at least one of the outer surfaces and inner surfaces of the top sheet and the bottom sheet fuses with the tensioning strips, the first auxiliary reinforcement piece is attached to at least one of the outer surfaces and the inner surfaces of the top sheet and the bottom sheet, and the third auxiliary fusion piece is placed over the first auxiliary reinforcement piece.
29. The inflatable product as claimed in claim 26, wherein a fiber glue layer has a plurality of through holes and is applied to the location where at least one of outer surfaces and the inner surfaces of the top sheet and the bottom sheet fuses with the tensioning strips.
30. A method for manufacturing the inflatable product as claimed in claim 26, wherein a method for manufacturing the tensioning strips comprises: loading a roll of the mesh fabric and unrolling the roll of mesh fabric to a predetermined length; cutting a roll of the first auxiliary fusion piece and a roll of the second auxiliary fusion piece into strips, sending the strips to predetermined locations on an upper side and a lower side of the mesh fabric, and positioning the strips; alternatively, cutting a roll of the first auxiliary fusion piece or a roll of the second auxiliary fusion piece into strips, sending the strips to a side of the mesh fabric, and positioning the strips; placing the strips cut from the first auxiliary fusion piece and the second auxiliary fusion piece to hold the mesh fabric and fuse with the mesh fabric; alternatively, fixing the strips cut from the first auxiliary fusion piece or the second auxiliary fusion piece to a side of the mesh fabric; and cutting the mesh fabric, which fuses with the strips cut from the first auxiliary fusion piece and the second auxiliary fusion piece, into strips for obtaining the tensioning strips; alternatively, cutting the mesh fabric, a side of which has the strips cut from the first auxiliary fusion piece or the second auxiliary fusion piece attached thereto, into strips for obtaining the tensioning strips; or a method for manufacturing the tensioning strips comprises: loading and unrolling a roll of the mesh fabric; cutting the mesh fabric into strips for obtaining the strip body; respectively sending the first auxiliary fusion piece and the second auxiliary fusion piece to predetermined locations on an upper side and a lower side of the strip body, and positioning the first auxiliary fusion piece and the second auxiliary fusion piece; alternatively, sending the first auxiliary fusion piece or the second auxiliary fusion piece to predetermined location on a side of the strip body, and positioning the first auxiliary fusion piece and the second auxiliary fusion piece; and placing the first auxiliary fusion piece and the second auxiliary fusion piece to hold the strip body and fuse with the strip body for obtaining the tensioning strips; alternatively, fixing the first auxiliary fusion piece or the second auxiliary fusion piece to a side of the strip body for obtaining the tensioning strips.
31. A method for manufacturing the inflatable product as claimed in claim 26, in comprising: loading and unrolling rolls of the top sheet and the bottom sheet and keeping the unrolled top sheet and bottom sheet in position; sending the tensioning strips of claim 30 to predetermined locations between the top sheet and the bottom sheet and keeping the tension strips in position; fusing parts of the tensioning strips, which have the first auxiliary fusion pieces and the second auxiliary fusion pieces thereon, and the inner surfaces of the top sheet and the bottom sheet; alternatively, fusing parts of the tensioning strips, a side of which has the first auxiliary fusion pieces or the second auxiliary fusion pieces fixed thereto, and the inner surfaces of the top sheet and the bottom sheet; and fusing sides of the periphery sheet and peripheries of the top sheet and the bottom sheet for forming the air chamber and obtaining the inflatable product.
32. A method for manufacturing the inflatable product as claimed in claim 27, comprising: loading and unrolling rolls of the top sheet and the bottom sheet and keeping the unrolled top sheet and bottom sheet in position; placing the third auxiliary fusion pieces to fuse with the outer surfaces or the inner surfaces of the top sheet and the bottom sheet at predetermined locations where the tensioning strips are going to fuse with the top sheet and the bottom sheet; sending a plurality of tensioning strips to the predetermined locations between the top sheet and the bottom sheet and keeping the tensioning strips in position; fusing parts of the tensioning strips, having the first auxiliary fusion pieces and the second auxiliary fusion pieces thereon, with parts of the inner surfaces of the top sheet and the bottom sheet having the third auxiliary fusion pieces thereon; alternatively, fusing parts of the tensioning strips, each of which has the first auxiliary fusion piece or the second auxiliary fusion piece fixed to a side thereof, with parts of the inner surfaces of the top sheet and the bottom sheet which have the third auxiliary fusion pieces fixed thereto; and fusing sides of the periphery sheet and peripheries of the top sheet and the bottom sheet for forming the air chamber and obtaining the inflatable product.
33. A method for manufacturing the inflatable product as claimed in claim 28, comprising: loading and unrolling rolls of the top sheet and the bottom sheet and keeping the unrolled top sheet and bottom sheet in position; placing the first auxiliary reinforcement pieces and the third auxiliary fusion pieces on the outer surfaces or the inner surfaces of the top sheet and the bottom sheet at predetermined locations where the top sheet and the bottom sheet are going to fuse with the tensioning strips, wherein the first auxiliary reinforcement pieces and the third auxiliary fusion pieces are only kept in position without fusing with the top sheet and the bottom sheet; sending a plurality of tensioning strips to predetermined locations between the top sheet and the bottom sheet and keeping the tensioning strips in position; fusing parts of the tensioning strips, which have the first auxiliary fusion pieces and the second auxiliary fusion pieces thereon, with parts of the inner surfaces of the top sheet and the bottom sheet which have the first auxiliary reinforcement pieces and the third auxiliary fusion pieces thereon; alternatively, fusing parts of the tensioning strips, each of which has the first auxiliary fusion piece or the second auxiliary fusion piece fixed to a side thereof, with parts of the inner surfaces of the top sheet and the bottom sheet which have the third auxiliary fusion pieces fixed thereto; and fusing sides of the periphery sheet with peripheries of the top sheet and the bottom sheet for forming the air chamber and obtaining the inflatable product.
34. A method for manufacturing the inflatable product as claimed in claim 28, comprising: loading and unrolling rolls of the top sheet and the bottom sheet and keeping the unrolled top sheet and bottom sheet in position; placing the first auxiliary reinforcement pieces and the third auxiliary fusion pieces on the outer surfaces or the inner surfaces of the top sheet and the bottom sheet at predetermined locations where the top sheet and the bottom sheet are going to fuse with the tensioning strips, and fusing the first auxiliary reinforcement pieces and the third auxiliary fusion pieces with the inner surfaces of the top sheet and the bottom sheet; sending a plurality of tensioning strips to predetermined locations between the top sheet and the bottom sheet and positioning the tensioning strips; fusing parts of the tensioning strips, which have the first auxiliary fusion pieces and the second auxiliary fusion pieces thereon, with parts of the inner surfaces of the top sheet and the bottom sheet which have the first auxiliary reinforcement pieces and the third auxiliary fusion pieces thereon; alternatively, fusing parts of the tensioning strips, each of which has the first auxiliary fusion piece or the second auxiliary fusion piece fixed to a side thereof, with parts of the inner surfaces of the top sheet and the bottom sheet which have the first auxiliary reinforcement pieces and the third auxiliary fusion pieces thereon; and fusing sides of the periphery sheet with peripheries of the top sheet and the bottom sheet for forming the air chamber and obtaining the inflatable product.
35. A method for manufacturing the inflatable product as claimed in claim 29, comprising: loading and unrolling rolls of the top sheet and the bottom sheet and keeping the unrolled top sheet and bottom sheet in position; forming a fiber glue layer which has a plurality of through holes on the outer surfaces or the inner surfaces of the top sheet and the bottom sheet at predetermined locations where the top sheet and the bottom sheet are going to fuse with the tensioning strips; sending a plurality of tensioning strips to predetermined locations between the top sheet and the bottom sheet and positioning the tensioning strips; fusing parts of the tensioning strips, which have the first auxiliary fusion pieces and the second auxiliary fusion pieces thereon, with parts of the inner surfaces of the top sheet and the bottom sheet which have the fiber glue layer formed thereon, wherein the fiber glue layer has through holes; alternatively, fusing parts of the tensioning strips, each of which has the first auxiliary fusion piece or the second auxiliary fusion piece fixed to a side thereof, with parts of the inner surfaces of the top sheet and the bottom sheet which have the fiber glue layer formed thereon, wherein the fiber glue layer has through holes; and fusing sides of the periphery sheet with peripheries of the top sheet and the bottom sheet for forming the air chamber and obtaining the inflatable product.
36. The inflatable product as claimed in claim 1, wherein an air chamber is formed between the top sheet and the bottom sheet, an anti-stretch sheet is disposed within and/or outside the air chamber, and the anti-stretch sheet is fixed to the fusion structure for covering the air chamber or being covered by the air chamber.
37. The inflatable product as claimed in claim 36, wherein the anti-stretch sheet and the air chamber are positioned and fixed with respect to each other.
38. The inflatable product as claimed in claim 36, wherein the anti-stretch sheet has penetrability and is same as the fusion reinforcement layer in material.
39. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a first fusion unit and a second fusion unit, the first fusion unit comprises a target fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, the second fusion unit is same as the first fusion unit in structure, the first fusion unit and the second fusion unit are fused together, the target fusion layer of the first fusion unit is attached to the target fusion layer of the second fusion unit, and the anti-stretch sheet extends from the first fusion reinforcement layer for covering the air chamber.
40. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a first fusion unit and a second fusion unit, the first fusion unit comprises a second fusion reinforcement layer, a target fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged, the second fusion unit is same as the first fusion unit in structure, the first fusion unit and the second fusion unit have a second auxiliary fusion layer disposed therebetween and are connected by fusion, the second fusion reinforcement layer of the first fusion unit and the second fusion reinforcement layer of the second fusion unit are configured to hold the second auxiliary fusion layer, and the anti-stretch sheet extends from the first fusion reinforcement layer and the second fusion reinforcement layer for covering the air chamber and being covered by the air chamber.
41. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a first fusion unit and a second fusion unit; the first fusion unit comprises a target fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged; the first fusion reinforcement layer is fixed to the first auxiliary fusion layer by sewing; the second fusion unit is same as the first fusion unit in structure; the first fusion unit and the second fusion unit are connected by fusion; the target fusion layer of the first fusion unit is attached to the target fusion layer of the second fusion unit; and the anti-stretch sheet extends from the first fusion reinforcement layer for covering the target fusion layer.
42. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a first fusion unit and a second fusion unit; the first fusion unit comprises a target fusion layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged; the first fusion reinforcement layer is fixed to the first auxiliary fusion layer by sewing; the first auxiliary fusion layer is sequentially fixed to the second auxiliary fusion layer and the target fusion layer by fusion; the second fusion unit is same as the first fusion unit in structure; the first fusion unit and the second fusion unit are connected by fusion; the target fusion layer of the first fusion unit is attached to the target fusion layer of the second fusion unit; and the anti-stretch sheet extends from the first fusion reinforcement layer for covering the target fusion layer.
43. The inflatable product as claimed in claim 36, wherein the top sheet and the bottom sheet are integrally formed as a single fabric and are back sealed by fusion; or the top sheet and the bottom sheet are arranged symmetrically and fused together.
44. The inflatable product as claimed in claim 1, wherein a way of formation of penetrability of the anti-stretch sheet comprises punching, weaving, threads or forming spaces between fibers.
45. The inflatable product as claimed in claim 1, wherein the fusion structure is formed to be right-angled, bent, curved, beveled, stacked, annular, circular, elliptical, triangular or flat.
46. The inflatable product as claimed in claim 1, wherein the air chamber includes an assembly of columns, a bed body, a seat, a deckchair, a cushion body, a concave body, a box-shaped body, a boat-shaped body, a skateboard body or an airtight body.
47. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a fusion unit, the fusion unit comprises a target fusion layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged; the target fusion layer, the second auxiliary fusion layer, the first fusion reinforcement layer and the first auxiliary fusion layer are fused together; and the anti-stretch sheet extends from the first fusion reinforcement layer for covering the target fusion layer.
48. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a fusion unit; the fusion unit comprises a target fusion layer, a first auxiliary fusion layer and a first fusion reinforcement layer which are sequentially arranged; and the first auxiliary fusion layer is fixed to the first fusion reinforcement layer by sewing and is then fused with the target fusion layer, and the anti-stretch sheet extends from the first fusion reinforcement layer for covering the target fusion layer.
49. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a fusion unit; the fusion unit comprises a target fusion layer, a first auxiliary fusion layer and a first fusion reinforcement layer which are sequentially arranged; the first fusion reinforcement layer is fixed to the anti-stretch sheet by sewing and is then sequentially fused with the first auxiliary fusion layer and the target fusion layer; and the anti-stretch sheet covers the target fusion layer.
50. The inflatable product as claimed in claim 36, wherein the fusion structure comprises a fusion unit; the fusion unit comprises a target fusion layer, a second auxiliary fusion layer, a first fusion reinforcement layer and a first auxiliary fusion layer which are sequentially arranged; a portion of the first fusion reinforcement layer is wrapped by a cloth and is then fixed to the anti-stretch sheet by sewing; the target fusion layer, the second auxiliary fusion layer, an unwrapped portion of the first fusion reinforcement layer that is not wrapped by the cloth, and the first auxiliary fusion layer are connected by fusion, and the anti-stretch sheet covers the target fusion layer.
51. The inflatable product as claimed in claim 36, characterized in further comprising a periphery sheet and a plurality of tensioning strips, wherein two sides of the periphery sheet are connected to peripheries of the top sheet and the bottom sheet by the fusion structure for forming an air chamber; the anti-stretch sheet extends from the first fusion reinforcement layer for covering the periphery sheet; and the tensioning strips are fused with inner surfaces of the top sheet and the bottom sheet.
52. The inflatable product as claimed in claim 47, wherein a portion of the first fusion reinforcement layer which is fused with the first or second auxiliary fusion layer is provided with a punch hole.
53. The inflatable product as claimed in claim 51, wherein the anti-stretch sheet further covers the top sheet and the bottom sheet.
54. The inflatable product as claimed in claim 17, wherein the fusion structure comprises a fusion unit; the fusion unit comprises a target fusion layer, a first auxiliary fusion layer and a first fusion reinforcement layer which are sequentially arranged; and the first auxiliary fusion layer is fixed to the first fusion reinforcement layer by sewing and is then fused with the target fusion layer.
55. The inflatable product as claimed in claim 17, wherein each of the tensioning strips comprises a strip body, the strip body is made of a flexible anti-stretch material having a plurality of through holes, and the strip body is a fabric.
56. The inflatable product as claimed in claim 24, wherein at least one auxiliary fusion piece is fixed by gluing, adhesive coating or sewing to a location where the strip body is fused with the top sheet and the bottom sheet.
57. The inflatable product as claimed in claim 56, wherein the strip body is a fabric.
58. The method for manufacturing the inflatable product as claimed in claim 30, wherein at least one auxiliary fusion piece is fixed by gluing, adhesive coating or sewing to a location where the strip body is fused with the top sheet and the bottom sheet.
59. The method for manufacturing the inflatable product as claimed in claim 58, wherein the strip body is a fabric.
60. The method for manufacturing the inflatable product as claimed in claim 30, wherein the roll of the mesh fabric is substituted with a roll of fabric.
61. The inflatable product as claimed in claim 19, wherein the sides of the periphery sheet are connected to the peripheries of the top sheet and the bottom sheet by the fusion structure for forming the air chamber.
62. The inflatable product as claimed in claim 31, wherein the sides of the periphery sheet and the peripheries of the top sheet and the bottom sheet are connected by the fusion structure.
63. The inflatable product as claimed in claim 24, wherein the tensioning strips are connected to the inner surfaces of the top sheet and the bottom sheet by the fusion structure and are arranged between the top sheet and the bottom sheet in a serration pattern, and most a plurality of teeth of the serration pattern are trapezoidal or triangular.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0137] The drawings are for purposes of illustration only and are not to be construed as limiting the scope of the invention. For better description of the embodiments, some parts of the drawings may be omitted, enlarged or reduced, and do not represent the actual product size. It will be apparent to those skilled in the art that some known structures in the drawings and the descriptions thereof may be omitted. The position relationship shown in the drawings are for purposes of illustration only and are not to be construed as limiting the scope of the invention.
First Embodiment
[0138] Referring to
Second Embodiment
[0139] Referring to
Third Embodiment
[0140] Referring to
Fourth Embodiment
[0141] Referring to
Fifth Embodiment
[0142] Referring to
Sixth Embodiment
[0143] Referring to
Seventh Embodiment
[0144] Referring to
Eighth Embodiment
[0145] An inflatable product includes a top sheet 8 and a bottom sheet 9, and peripheries of the top sheet 8 and the bottom sheet 9 are fused by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments. An air chamber is formed between the top sheet 8 and the bottom sheet 9. The top sheet 8 can be regarded as the target fusion layer 1 of the fusion structure, and the bottom sheet 9 can be regarded as the first auxiliary fusion layer 3 of the fusion structure.
Ninth Embodiment
[0146] Referring to
Tenth Embodiment
[0147] Referring to
Eleventh Embodiment
[0148] Referring to
Twelfth Embodiment
[0149] Referring to
Thirteenth Embodiment
[0150] Referring to
Fourteenth Embodiment
[0151] An inflatable product includes a top sheet 8, a periphery sheet 10, a plurality of tensioning strips 11 and a bottom sheet 9. Two sides of the periphery sheet 10 are connected to peripheries of the top sheet 8 and the bottom sheet 9 by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments for forming an air chamber. The top sheet 8 and the bottom sheet 9 can be regarded as the target fusion layer 1 of the fusion structure, and the periphery sheet 10 can be regarded as the first auxiliary fusion layer 3 of the fusion structure. The tensioning strips 11 are connected to inner surfaces of the top sheet 8 and the bottom sheet 9 by fusion.
[0152] The tensioning strips 11 are connected to the inner surfaces of the top sheet 8 and the bottom sheet 9 by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments. The top sheet 8 and the bottom sheet 9 can be regarded as the target fusion layer 1 of the fusion structure, and the tensioning strips 11 can be regarded as the first fusion reinforcement layer 2 of the fusion structure.
Fifteenth Embodiment
[0153] The fifteenth embodiment is similar to the fourteenth embodiment, and the difference therebetween is that two sides of the periphery sheet 10 is connected to peripheries of the top sheet 8 and the bottom sheet 9 by the fusion structure described in the seventh embodiment for forming an air chamber. The top sheet 8 and the bottom sheet 9 can be regarded as the target fusion layer 1 of the first fusion unit of the fusion structure, and the periphery sheet 10 can be regarded as the target fusion layer 1 of the second fusion unit of the fusion structure. The tensioning strips 11 are connected to inner surfaces of the top sheet 8 and the bottom sheet 9 by fusion.
Sixteenth Embodiment
[0154] Referring to
[0155] Each of the tensioning strips 11 includes a strip body 111, a first auxiliary fusion piece 12 and a second auxiliary fusion piece 13. The strip body 111 is connected to the inner surfaces of the top sheet 8 and the bottom sheet 9 by fusion where the first auxiliary fusion piece 12 and the second auxiliary fusion piece 13 are provided to hold and fuse with the strip body 111. Alternatively, the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 is fixed to a side of the strip body 111. The strip body 111 is made of a flexible anti-stretch material (e.g. mesh fabric) having a plurality of through holes and is configured to restrict or resist the pulling force produced by expansion of the inflatable product. The first auxiliary fusion piece 12 and the second auxiliary fusion piece 13 are made of the same material (that is, airtight polymer material) (e.g. plastic sheet) as the top sheet 8 and the bottom sheet 9 and enable connection of the strip body 111 to the inner surfaces of the top sheet 8 and the bottom sheet 9 during the fusion.
[0156] The inner surfaces of the top sheet 8 and the bottom sheet 9 can be directly connected to the tensioning strips 11 by fusion. Alternatively, a variety of auxiliary structures can be provided at the locations where the inner surfaces of the top sheet 8 and the bottom sheet 9 are connected to the tensioning strips 11. The auxiliary structure can be a third auxiliary fusion piece 14 which is provided at the location where at least one of the inner surfaces of the top sheet 8 and the bottom sheet 9 fuses with the tensioning strips 11. The auxiliary structure can also be a first auxiliary reinforcement piece 15 and a third auxiliary fusion piece 14 which are provided at the location where at least one of the outer surfaces and inner surfaces of the top sheet 8 and the bottom sheet 9 fuses with the tensioning strips 11. The first auxiliary reinforcement piece 15 is attached to at least one of the outer surfaces and the inner surfaces of the top sheet 8 and the bottom sheet 9, and the third auxiliary fusion piece 14 is placed over the first auxiliary reinforcement piece 15. The auxiliary structure can directly fuse with at least one of the outer surfaces and the inner surfaces of the top sheet 8 and the bottom sheet 9, and then the tensioning strips 11 are connected thereto by fusion. Alternatively, the auxiliary structure is kept in position and then the tensioning strips 11 are fused with the auxiliary structure and at least one of the outer surfaces and the inner surfaces of the top sheet 8 and the bottom sheet 9. Further, the auxiliary structure can be a fiber glue layer 16 which has a plurality of through holes and is applied to the location where at least one of outer surfaces and the inner surfaces of the top sheet 8 and the bottom sheet 9 fuses with the tensioning strips 11. The first auxiliary reinforcement piece 15 is made of a flexible anti-stretch material (e.g. mesh fabric) having a plurality of through holes and is configured to restrict or resist pulling force produced by expansion of the inflatable product during inflation. The fiber glue layer 16 is formed by applying fiber glue (glue with fiber added therein) to the location where at least one of the outer surfaces and the inner surfaces of the top sheet 8 and the bottom sheet 9 fuses with the tensioning strips 11, for restricting or resisting the pulling force produced by expansion of the inflatable product during inflation. The third auxiliary fusion piece 14 is made of the same material as the top sheet 8 and the bottom sheet 9 that facilitates connection of the first auxiliary reinforcement piece 15 to at least one of the outer surfaces and the inner surfaces of the top sheet 8 and the bottom sheet 9 by fusion.
[0157] As shown in
[0158] In step S1, a roll of mesh fabric is loaded and unrolled.
[0159] In step S2, a roll of the first auxiliary fusion piece 12 and a roll of the second auxiliary fusion piece 13 are cut into strips and the strips are placed at predetermined locations on an upper side and a lower side of the mesh fabric. Alternatively, a roll of the first auxiliary fusion piece 12 or a roll of the second auxiliary fusion piece 13 is cut into strips and the strips are placed on a side of the mesh fabric.
[0160] In step S3, the strips cut from the first auxiliary fusion piece 12 and the second auxiliary fusion piece 13 are placed to hold the mesh fabric and fuse with the mesh fabric. Alternatively, the strips cut from the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 are fixed to a side of the mesh fabric.
[0161] In step S4, the mesh fabric which fuses with the strips cut from the first auxiliary fusion piece 12 and the second auxiliary fusion piece 13 is cut into strips for obtaining tensioning strips 11. Alternatively, the mesh fabric, a side of which has the strips cut from the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 attached thereto, is cut into strips for obtaining the tensioning strips 11.
[0162] As shown in
[0163] In step S1, a roll of mesh fabric is loaded and unrolled.
[0164] In step S2, the mesh fabric is cut into strips for obtaining the strip body 111.
[0165] In step S3, the first auxiliary fusion piece 12 and the second auxiliary fusion piece 13 are respectively placed and positioned at predetermined locations on an upper side and a lower side of the strip body 111. Alternatively, the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 is placed and positioned at predetermined location on a side of the strip body 111.
[0166] In step S4, the first auxiliary fusion piece 12 and the second auxiliary fusion piece 13 are placed to hold the strip body 111 and fuse with the strip body 111 for obtaining the tensioning strips 11. Alternatively, the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 is fixed to a side of the strip body 111 for obtaining the tensioning strips 11.
[0167] In the present embodiment, a method for manufacturing the inflatable product includes following steps:
[0168] In step S5, rolls of the top sheet 8 and the bottom sheet 9 are loaded, unrolled and kept in position.
[0169] In step S6, the tensioning strips 11, which are manufactured by the above-described method, are placed at predetermined locations between the top sheet 8 and the bottom sheet 9, and the parts of the tensioning strips 11 which have the first auxiliary fusion pieces 12 and the second auxiliary fusion pieces 13 thereon are fused with the inner surfaces of the top sheet 8 and the bottom sheet 9. Alternatively, the parts of the tensioning strips 11, a side of which has the first auxiliary fusion pieces 12 or the second auxiliary fusion pieces 13 fixed thereto, are fused with the inner surfaces of the top sheet 8 and the bottom sheet 9.
[0170] In step S7, the sides of the periphery sheet 10 are connected to the peripheries of the top sheet 8 and the bottom sheet 9 by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments for forming the air chamber and obtaining the inflatable product.
[0171] As shown in
[0172] In step S5, rolls of the top sheet 8 and the bottom sheet 9 are loaded and unrolled and kept in position, and the third auxiliary fusion pieces 14 are fused with the outer surfaces or the inner surfaces of the top sheet 8 and the bottom sheet 9 at predetermined locations where the tensioning strips 11 are going to fuse with the top sheet 8 and the bottom sheet 9.
[0173] In step S6, the tensioning strips 11 which are manufactured by the above-described method are sent and kept at the predetermined locations between the top sheet 8 and the bottom sheet 9, and the parts of the tensioning strips 11 having the first auxiliary fusion pieces 12 and the second auxiliary fusion pieces 13 thereon are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet Shaving the third auxiliary fusion pieces 14 thereon. Alternatively, the parts of the tensioning strips 11, each of which has the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 fixed to a side thereof, are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet 9 which have the third auxiliary fusion pieces 14 fixed thereto.
[0174] In step S7, the sides of the periphery sheet 10 are connected to the peripheries of the top sheet 8 and the bottom sheet 9 by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments for forming the air chamber and obtaining the inflatable product.
[0175] As shown in
[0176] In step S5, rolls of the top sheet 8 and the bottom sheet 9 are loaded, unrolled and kept in position, and the first auxiliary reinforcement pieces 15 and the third auxiliary fusion pieces 14 are placed on the outer surfaces or the inner surfaces of the top sheet 8 and the bottom sheet 9 at predetermined locations where the top sheet 8 and the bottom sheet 9 are going to fuse with the tensioning strips 11, wherein the first auxiliary reinforcement pieces 15 and the third auxiliary fusion pieces 14 are only kept in position without fusing with other elements.
[0177] In step S6, the tensioning strips 11 which are manufactured by the above-described method are sent and positioned at predetermined locations between the top sheet 8 and the bottom sheet 9, and the parts of the tensioning strips 11 which have the first auxiliary fusion pieces 12 and the second auxiliary fusion pieces 13 thereon are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet 9 which have the first auxiliary reinforcement pieces 15 and the third auxiliary fusion pieces 14 thereon. Alternatively, the parts of the tensioning strips 11, each of which has the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 fixed to a side thereof, are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet 9 which have the third auxiliary fusion pieces 14 fixed thereto.
[0178] In step S7, the sides of the periphery sheet 10 are connected to the peripheries of the top sheet 8 and the bottom sheet 9 by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments for forming the air chamber and obtaining the inflatable product.
[0179] As shown in
[0180] In step S5, rolls of the top sheet 8 and the bottom sheet 9 are loaded, unrolled and kept in position, the first auxiliary reinforcement pieces 15 and the third auxiliary fusion pieces 14 are placed on the outer surfaces or the inner surfaces of the top sheet 8 and the bottom sheet 9 at predetermined locations where the top sheet 8 and the bottom sheet 9 are going to fuse with the tensioning strips 11, and the first auxiliary reinforcement pieces 15 and the third auxiliary fusion pieces 14 are fused with the inner surfaces of the top sheet 8 and the bottom sheet 9.
[0181] In step S6, the tensioning strips 11 which are manufactured by the above-described method are placed at predetermined locations between the top sheet 8 and the bottom sheet 9, and the parts of the tensioning strips 11 which have the first auxiliary fusion pieces 12 and the second auxiliary fusion pieces 13 thereon are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet 9 which have the first auxiliary reinforcement pieces 15 and the third auxiliary fusion pieces 14 thereon. Alternatively, the parts of the tensioning strips 11, each of which has the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 fixed to a side thereof, are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet 9 which have the first auxiliary reinforcement pieces 15 and the third auxiliary fusion pieces 14 thereon.
[0182] In step S7, the sides of the periphery sheet 10 are connected to the peripheries of the top sheet 8 and the bottom sheet 9 by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments for forming the air chamber and obtaining the inflatable product.
[0183] As shown in
[0184] In step S5, rolls of the top sheet 8 and the bottom sheet 9 are loaded, unrolled and kept in position, and a fiber glue layer 16 which has a plurality of through holes is formed on the outer surfaces or the inner surfaces of the top sheet 8 and the bottom sheet 9 at predetermined locations where the top sheet 8 and the bottom sheet 9 are going to fuse with the tensioning strips 11.
[0185] In step S6, the tensioning strips 11 which are manufactured by the above-described method are sent and positioned at predetermined locations between the top sheet 8 and the bottom sheet 9, and the parts of the tensioning strips 11 which have the first auxiliary fusion pieces 12 and the second auxiliary fusion pieces 13 thereon are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet 9 which have the fiber glue layer 16 formed thereon, wherein the fiber glue layer 16 has through holes. Alternatively, the parts of the tensioning strips 11, each of which has the first auxiliary fusion piece 12 or the second auxiliary fusion piece 13 fixed to a side thereof, are fused with the parts of the inner surfaces of the top sheet 8 and the bottom sheet 9 which have the fiber glue layer 16 formed thereon, wherein the fiber glue layer 16 has through holes.
[0186] In step S7, the sides of the periphery sheet 10 are connected to the peripheries of the top sheet 8 and the bottom sheet 9 by any of the fusion structures described in the first, second, third, fourth, fifth and sixth embodiments for forming the air chamber and obtaining the inflatable product.
Seventeenth Embodiment
[0187] The seventeenth embodiment is similar to the sixteenth embodiment, and the difference therebetween is that two sides of the periphery sheet 10 are connected to peripheries of the top sheet 8 and the bottom sheet 9 by the fusion structure described in the seventh embodiment for forming an air chamber. The top sheet 8 and the bottom sheet 9 can be regarded as the target fusion layer 1 of the first fusion unit of the fusion structure, and the periphery sheet 10 can be regarded as the target fusion layer 1 of the second fusion unit of the fusion structure. The tensioning strips 11 are connected to inner surfaces of the top sheet 8 and the bottom sheet 9 by fusion.
Eighteenth Embodiment
[0188] Referring to
[0189] An anti-stretch sheet 200 is disposed outside the inflatable body 100 for covering the inflatable body 100. The anti-stretch sheet 200 includes two fusion reinforcement layers 210, a fusion portion is formed thereon, and the fusion portion includes a first fusion portion 221 and a second fusion portion 222.
[0190] The inflatable product further includes a plurality of airtight auxiliary fusion layers 400 which are fused with the fusion portion of the inflatable body and the fusion portion of the anti-stretch sheet. The airtight auxiliary fusion layers 400 include auxiliary fusion layers 410, 420. The target fusion layers 110 and the auxiliary fusion layers 410, 420 are made of polyvinyl chloride (PVC), and the fusion reinforcement layers 210 are mesh fabric.
[0191] The first fusion portion 121 and the second fusion portion 122 of the target fusion layers 110 are placed in contact with each other. The first fusion portion 221 and the second fusion portion 222 of the fusion reinforcement layers 210 are respectively placed in contact with the first fusion portion 121 and the second fusion portion 122 of the target fusion layers 110. The auxiliary fusion layers 410, 420 are placed in contact with the first fusion portion 221 and the second fusion portion 222 of the fusion reinforcement layers 210. The inflatable product provided with an air chamber is formed by fusion and has an angle at the fusion location after inflation of the inflatable body.
Nineteenth Embodiment
[0192] Referring to
Twentieth Embodiment
[0193] Referring to
[0194] An anti-stretch sheet is disposed outside the inflatable body for covering the inflatable body. The anti-stretch sheet includes two fusion reinforcement layers 210, a fusion portion is formed thereon, and the fusion portion includes a first fusion portion 221 and a second fusion portion 222.
[0195] The inflatable tube 20 further includes a plurality of airtight auxiliary fusion layers which are fused with the fusion portion of the inflatable body and the fusion portion of the anti-stretch sheet. The airtight auxiliary fusion layers include auxiliary fusion layers 410, 420. The target fusion layers 110 and the auxiliary fusion layers 410, 420 are made of polyvinyl chloride (PVC), and the fusion reinforcement layers 210 are mesh fabric.
[0196] The first fusion portion 121 and the second fusion portion 122 of the target fusion layers 110 are placed in contact with each other. The first fusion portion 221 and the second fusion portion 222 of the fusion reinforcement layers 210 are respectively placed in contact with the first fusion portion 121 and the second fusion portion 122 of the target fusion layers 110. The auxiliary fusion layers 410, 420 are placed in contact with the first fusion portion 221 and the second fusion portion 222 of the fusion reinforcement layers 210. The tube body 22 having the air chamber is formed by fusion and has an angle at the fusion location after inflation of the inflatable body. During the fusion, the first fusion portion 121 of the target fusion layers 110, the first fusion portion 221 of the fusion reinforcement layers 210 and the auxiliary fusion layer 410 are fused, the second fusion portion 122 of the target fusion layers 110, the second fusion portion 222 of the fusion reinforcement layers 210 and the auxiliary fusion layer 420 are fused, and then the two fusion units are fused.
Twenty-First Embodiment
[0197] Referring to
Twenty-Second Embodiment
[0198] Referring to
Twenty-Third Embodiment
[0199] Referring to
Twenty-Fourth Embodiment
[0200] Referring to
Twenty-Fifth Embodiment
[0201] Referring to
Twenty-Sixth Embodiment
[0202] Referring to
[0203] The periphery sheet 112 is covered by an anti-stretch sheet, and the anti-stretch sheet includes a fusion reinforcement layer 220 with a first fusion portion 221 formed on the periphery thereof.
[0204] The inflatable bed further includes a plurality of airtight auxiliary fusion layers, and the airtight auxiliary fusion layers include an auxiliary fusion layer 410. The top sheet 114, the periphery sheet 112, the bottom sheet and the auxiliary fusion layer 410 are made of polyvinyl chloride (PVC), and the fusion reinforcement layer 220 is mesh fabric.
[0205] The first fusion portion 121 of the periphery sheet 112 is placed in contact with the first fusion portion 221 of the fusion reinforcement layer 220, the auxiliary fusion layer 410 is placed in contact with the first fusion portion 221 of the fusion reinforcement layer 220, and the first fusion portion 121 of the periphery sheet 112 is placed in contact with the second fusion portion 122 of the top sheet 114, so that they can be are firmly connected by fusion to form an angle at the fusion location. During the fusion, the first fusion portion 121 of the periphery sheet 112, the first fusion portion 221 of the fusion reinforcement layer 220 and the auxiliary fusion layer 410 are simultaneously fused and then are fused with the second fusion portion 122 of the top sheet 114.
[0206] The way that the first fusion portion of the periphery sheet 112 is fused with the second fusion portion of the bottom sheet and the first fusion portion of the fusion reinforcement layer 220 is similar to the above-mentioned way, and therefore the descriptions thereof are omitted.
[0207] Furthermore, middle of the fusion reinforcement layer 220 is provided with a plurality of auxiliary fusion layers 460 which are spaced and are firmly connected to the fusion reinforcement layer 220 and the periphery sheet 112 by fusion for improving the pressure bearing ability.
Twenty-Seventh Embodiment
[0208] Referring to
Twenty-Eighth Embodiment
[0209] Referring to
[0210] The inflatable bed further includes an anti-stretch sheet 200, and the anti-stretch sheet 200 includes a fusion reinforcement layer 220 covering the periphery sheet 112, a fusion reinforcement layer 210 covering the top sheet 114 and a fusion reinforcement layer 230 covering the bottom sheet 113. A second fusion portion 222 is formed on periphery of the fusion reinforcement layer 210, a first fusion portion 221 is formed on periphery of the fusion reinforcement layer 220, and a second fusion portion is formed on periphery of the fusion reinforcement layer 230.
[0211] The inflatable bed further includes a plurality of airtight auxiliary fusion layers, and the airtight auxiliary fusion layers include an auxiliary fusion layer 410 and an auxiliary fusion layer 420. The top sheet 114, the periphery sheet 112, the bottom sheet 113 and the auxiliary fusion layers 410, 420 are made of polyvinyl chloride (PVC), and the fusion reinforcement layers 210, 220, 230 are mesh fabric.
[0212] The first fusion portion 121 of the periphery sheet 112 is placed in contact with the first fusion portion 221 of the fusion reinforcement layer 220, and the auxiliary fusion layer 410 is placed in contact with the first fusion portion 221 of the fusion reinforcement layer 220, so as to be connected by a first fusion. The second fusion portion 122 of the top sheet 114 is placed in contact with the second fusion portion 222 of the fusion reinforcement layer 210, and the auxiliary fusion layer 420 is placed in contact with the second fusion portion 222 of the fusion reinforcement layer 210, so as to be connected by a second fusion. The first fusion portion 121 of the periphery sheet 112 is placed in contact with the second fusion portion 122 of the top sheet 114. Then, the first fusion portion 121 and the second fusion portion 122 are firmly connected by the second fusion and have an angle at the fusion location after inflation of the inflatable body.
[0213] The way to fuse the first fusion portion of the periphery sheet 112, the second fusion portion of the bottom sheet 113, the first fusion portion 221 of the fusion reinforcement layer 220 and the second fusion portion of the fusion reinforcement layer 230 is similar to the above-mentioned way, and therefore the descriptions thereof are omitted.
[0214] Furthermore, middle of the fusion reinforcement layer 220 is provided with a plurality of auxiliary fusion layers 460 which are spaced and are firmly connected to the fusion reinforcement layer 220 and the periphery sheet 112 by fusion for improving the pressure bearing ability.
Twenty-Ninth Embodiment
[0215] Referring to
Thirtieth Embodiment
[0216] Referring to
[0217] An anti-stretch sheet 200 is disposed outside the inflatable body 100 for covering the inflatable body 100. The anti-stretch sheet 200 includes a plurality of fusion reinforcement layers 210, and a fusion portion is formed thereon. The fusion portion includes a first fusion portion 221 and a second fusion portion 222.
[0218] The inflatable pool further includes a plurality of airtight auxiliary fusion layers which are firmly connected to the fusion portion of the inflatable body and the fusion portion of the anti-stretch sheet by fusion. The airtight auxiliary fusion layers include auxiliary fusion layers 410, 420. The target fusion layers 110 and the auxiliary fusion layers 410, 420 are made of polyvinyl chloride (PVC), and the fusion reinforcement layers 210 are mesh fabric.
[0219] The first fusion portion 121 and the second fusion portion 122 of the target fusion layers 110 are placed in contact with each other, the first fusion portion 221 and the second fusion portion 222 of the fusion reinforcement layers 210 are respectively placed in contact with the first fusion portion 121 and the second fusion portion 122 of the target fusion layers 110, and the auxiliary fusion layers 410, 420 are respectively placed in contact with the first fusion portion 221 and the second fusion portion 222 of the fusion reinforcement layers 210, so that they can be firmly connected by fusion and have an angle at the fusion locations. During the fusion, the first fusion portion 121 of the target fusion layers 110, the first fusion portion 221 of the fusion reinforcement layers 210 and the auxiliary fusion layer 410 are simultaneously fused, the second fusion portion 122 of the target fusion layers 110, the second fusion portion 222 of the fusion reinforcement layers 210 and the auxiliary fusion layer 420 are simultaneously fused, and then the above-mentioned structures which are individually fused have their fused portions firmly connected by further fusion.
[0220] Furthermore, middle of the fusion reinforcement layer 210 is provided with a plurality of auxiliary fusion layers 460 which are spaced and are firmly connected to the fusion reinforcement layer 210 and the target fusion layer 110 by fusion for improving the pressure bearing ability.
Thirty-First Embodiment
[0221] Referring to
Thirty-Second Embodiment
[0222] Referring to
Thirty-Third Embodiment
[0223] Referring to
Thirty-Fourth Embodiment
[0224] Referring to
Thirty-Fifth Embodiment
[0225] Referring to
Thirty-Sixth Embodiment
[0226] Referring to
Thirty-Seventh Embodiment
[0227] Referring to
Thirty-Eighth Embodiment
[0228] Referring to
Thirty-Ninth Embodiment
[0229] Referring to
[0230] It is apparent that the above-described embodiments of the invention are merely examples for clearly illustrating the invention and does not limit the applications of the invention. For those skilled in the art, variations or modifications of other different forms may be made in light of the above description. There is no need and possibility to exhaust all of the applications. Any modifications, equivalent replacement and improvement without departing from the spirit and principles of the invention are intended to fall within the scope of the appended claims.