BATHTUB
20250000305 ยท 2025-01-02
Inventors
Cpc classification
International classification
Abstract
The present invention discloses a bathtub, including a hard pool body receiving cavity extending in a longitudinal direction, wherein the hard pool body receiving cavity is enclosed by a plurality of fences detachably connected in a circumferential direction and/or the longitudinal direction, and the circumferential direction surrounds the longitudinal direction; and a soft pool body having an opening, including a water receiving cavity and a connecting portion, wherein the water receiving cavity extends along the longitudinal direction, a longitudinal top end of the water receiving cavity has the opening, the connecting portion extends outwardly from the longitudinal top end of the water receiving cavity, the water receiving cavity of the soft pool body is received in the hard pool body receiving cavity, and the connecting portion of the soft pool body is detachably connected to a longitudinal top end of the hard pool body receiving cavity. The bathtub of the present invention can be easily disassembled and stored.
Claims
1. A bathtub, characterized by comprising: a hard pool body receiving cavity extending in a longitudinal direction, wherein the hard pool body receiving cavity is enclosed by a plurality of fences detachably connected in a circumferential direction and/or the longitudinal direction, and the circumferential direction surrounds the longitudinal direction; and a soft pool body having an opening, comprising a water receiving cavity and a connecting portion, wherein the water receiving cavity extends along the longitudinal direction, a longitudinal top end of the water receiving cavity has the opening, the connecting portion extends outwardly from the longitudinal top end of the water receiving cavity, the water receiving cavity of the soft pool body is received in the hard pool body receiving cavity, and the connecting portion of the soft pool body is detachably connected to a longitudinal top end of the hard pool body receiving cavity.
2. The bathtub according to claim 1, characterized in that it comprises at least one of the following features: each fence is made of plastic wood or wood; the soft pool body is made of PVC or net clamping PVC.
3. (canceled)
4. The bathtub according to claim 1, characterized in that the plurality of the fences comprise: a first fence, a second fence, a third fence, and a fourth fence which are sequentially distributed along the circumferential direction; wherein the first fence and the third fence respectively extend along a first direction and are disposed at an interval along a second direction, and the first direction and the second direction are respectively perpendicular to the longitudinal direction; the second fence and the fourth fence respectively extend along the second direction and are disposed at an interval along the first direction; in the first direction, one longitudinal end of the first fence and one longitudinal end of the second fence are detachably connected by a first corner beam, the other longitudinal end of the first fence and one longitudinal end of the fourth fence are detachably connected by a second corner beam, and the first corner beam and the second corner beam extend along the longitudinal direction, respectively; and in the first direction, one longitudinal end of the third fence and the other longitudinal end of the second fence are detachably connected by a third corner beam, the other longitudinal end of the third fence and the other longitudinal end of the fourth fence are detachably connected by a fourth corner beam, and the third corner beam and the fourth corner beam extend along the longitudinal direction, respectively.
5. The bathtub according to claim 4, characterized in that it comprises at least one of the following features: the first direction, the second direction and the longitudinal direction are perpendicular to each other; each of the fences comprises: an upper transverse beam, a lower transverse beam, a connecting plate and a plurality of vertical beams; wherein the upper transverse beam and the lower transverse beam are disposed at an interval along the longitudinal direction, and extend in a direction perpendicular to the longitudinal direction, respectively; the plurality of the vertical beams extend along the longitudinal direction, respectively, and are connected with the upper transverse beam and the lower transverse beam, respectively; and the connecting plate extends in the same direction as those of the upper transverse beam and the lower transverse beam, is located between the upper transverse beam and the lower transverse beam in the longitudinal direction, and is connected to the upper transverse beam, the lower transverse beam, and the vertical beams.
6. (canceled)
7. The bathtub according to claim 5, characterized in that it comprises at least one of the following features: the vertical beams at both ends of each fence are detachably connected to the corresponding corner beams, respectively; each vertical beam is of a hollow structure, a first blocking block is received at one longitudinal end of each vertical beam, a second blocking block is received at the other longitudinal end of the vertical beam, the upper transverse beam is connected to the vertical beams by the first blocking blocks, and the lower transverse beam is connected to the vertical beams by the second blocking blocks.
8. (canceled)
9. The bathtub according to claim 7, characterized in that an outer circumferential surface of each of the first blocking blocks and the second blocking blocks is provided with anti-slip structures in a protruding manner for abutting against an inner wall of the corresponding vertical beam after each blocking block is placed in the corresponding vertical beam, and no relative movement of each blocking block and the corresponding vertical beam in the longitudinal direction occurs when no external force is applied to each blocking block.
10. The bathtub according to claim 9, characterized in that each blocking block is in concave-convex fit with an inner wall of the corresponding vertical beam; or each blocking block is in concave-convex fit with an inner wall of the corresponding vertical beam, each blocking block is fixedly connected to the inner wall of the corresponding vertical beam at a concave-convex fit position by screws.
11. (canceled)
12. The bathtub according to claim 5, characterized in that the upper transverse beam of each fence is in concave-convex fit with the connecting portion of the soft pool body.
13. The bathtub according to claim 4, characterized by further comprising: positioning members, wherein each corner beam is provided with one of the positioning members, each positioning member is provided with a positioning post in a protruding manner, and a portion, corresponding to each corner beam, of the connecting portion of the soft pool body sleeves the corresponding positioning post.
14. The bathtub according to claim 13, characterized in that it comprises at least one of the following features: each corner beam is of a hollow structure, each positioning member comprises a tubular structure, and each tubular structure is inserted into the corresponding corner beam; each positioning member further comprises a first extension extending toward and fixedly connected to one of grooves of the adjacent upper transverse beams, and a second extension extending toward and fixedly connected to the other groove of the grooves of the adjacent upper transverse beams.
15. (canceled)
16. The bathtub according to claim 14, characterized in that each positioning member further comprises a third extension that is clamped between the adjacent fences.
17. The bathtub according to claim 13, characterized in that each positioning post is provided with a connecting hole for being fixedly connected with a cover plate assembly for covering the connecting portion of the soft pool body.
18. The bathtub according to claim 17, characterized in that the cover plate assembly comprises: a first cover plate, a second cover plate, a third cover plate and a fourth cover plate which are sequentially distributed along the circumferential direction; wherein the first cover plate and the third cover plate extend along the first direction, respectively, the second cover plate and the fourth cover plate extend along the second direction, respectively, the first cover plate covers an upper transverse beam of the first fence, the second cover plate covers an upper transverse beam of the second fence, the third cover plate covers an upper transverse beam of the third fence, and the fourth cover plate covers an upper transverse beam of the fourth fence; in the first direction, one end of the first cover plate and one end of the second cover plate are detachably connected through a first transition piece, and the other end of the first cover plate and one end of the fourth cover plate are detachably connected through a second transition piece; in the first direction, one end of the third cover plate and the other end of the second cover plate are detachably connected through a third transition piece, and the other end of the third cover plate and the other end of the fourth cover plate are detachably connected through a fourth transition piece; the first transition piece covers the positioning member on the first corner beam, and is fixedly connected with a connecting hole in the positioning post on the first corner beam; the second transition piece covers the positioning member on the second corner beam, and is fixedly connected with a connecting hole in the positioning post on the second corner beam; the third transition piece covers the positioning member on the third corner beam, and is fixedly connected with a connecting hole in the positioning post on the third corner beam; and the fourth transition piece covers the positioning member on the fourth corner beam, and is fixedly connected with a connecting hole in the positioning post on the fourth corner beam.
19. The bathtub according to claim 18, characterized in that each cover plate is connected with the corresponding transition piece in an insertion manner.
20. The bathtub according to claim 19, characterized in that both ends of an extension direction of each cover plate each are provided with an insertion hole, each transition piece is provided with a first insertion portion and a second insertion portion, each first insertion portion is inserted into one of insertion holes of the adjacent cover plates, and each second insertion portion is inserted into the other insertion hole of the insertion holes of the adjacent cover plates.
21. The bathtub according to claim 20, characterized in that the surface of each first insertion portion and the surface of each second insertion portion each are provided with a second detachment prevention portion for abutting against an inner wall of the corresponding insertion hole after each insertion portion is inserted into the corresponding insertion hole, and no relative movement of each insertion portion and the corresponding insertion hole in an insertion direction occurs when no external force is applied to each second detachment prevention portion.
22. The bathtub according to claim 1, further comprising a pipeline assembly for water inlet and drainage, wherein at least a portion of the pipeline assembly is received between the soft pool body and the hard pool body receiving cavity.
23. The bathtub according to claim 22, characterized in that the pipeline assembly comprises a water inlet pipeline and a water outlet pipeline; one end of the water inlet pipeline is connected with the soft pool body, and the other end of the water inlet pipeline is connected with a control box; and one end of the water outlet pipeline is connected with the soft pool body, and the other end of the water outlet pipeline is connected with the control box; wherein the water inlet pipeline comprises a soft water inlet pipeline, and a first hard water inlet pipeline and a second hard water inlet pipeline which are located at two ends of the soft water inlet pipeline, the first hard water inlet pipeline is connected with the soft pool body, and the second hard water inlet pipeline is connected with the control box; and the water outlet pipeline comprises a soft water outlet pipeline, and a first hard water outlet pipeline and a second hard water outlet pipeline which are located at two ends of the soft water outlet pipeline, the first hard water outlet pipeline is connected with the soft pool body, and the second hard water outlet pipeline is connected with the control box.
24. The bathtub according to claim 23, characterized in that the soft water inlet pipeline or the soft water outlet pipeline is provided with a hard support structure; or a water inlet division pipe is arranged between the soft pool body and the hard pool body receiving cavity, the water inlet branch pipe comprises a plurality of multiway hard pipes and hoses, the adjacent multiway hard pipes are connected by one of the hoses, and each multiway hard pipe is provided with a plurality of nozzles.
25. (canceled)
26. The bathtub according to claim 22, characterized in that the pipeline assembly comprises hard pipelines and soft pipelines, an end where each hard pipeline is connected with the corresponding soft pipeline is provided with an external thread structure surrounding the hard pipeline, each external thread structure is connected with the corresponding hard pipeline through a limit stop, and each limit stop, the corresponding external thread structure and the corresponding hard pipeline enclose a waterproof cavity with an end opened; and an outer periphery of each soft pipeline is sleeved with a tapered press ring and a locking nut, each soft pipeline is inserted into the corresponding waterproof cavity, each locking nut is threadably connected with the corresponding external thread structure, in an insertion direction of each soft pipeline, the corresponding tapered press ring is located between an end of the corresponding external thread structure and the corresponding locking nut, and each tapered press ring and an end of the corresponding hard pipeline clamp the corresponding soft pipeline in the insertion direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0081] Implementation modes of the present invention are illustrated below by specific embodiments, and those skilled in the art can easily understand other advantages and effects of the present invention according to the content disclosed in the specification. Although the description of the present invention will be introduced in conjunction with preferred embodiments, this does not represent that the features of the present invention are only limited to the embodiments. On the contrary, the description of the present invention in conjunction with the implementation modes is intended to cover other alternatives or modifications that may be extended based on the claims of the present invention. In order to thoroughly understand the present invention, the following description will contain many specific details. The present invention may also be implemented without using these details. In addition, in order to avoid confusing or obscuring the key point of the present invention, some specific details are omitted in the description. It should be noted that the embodiments of the present invention and the features in the embodiments may be combined with each other without conflicts.
[0082] It should be noted that in this description, like reference numerals and letters denote like items in the following figures, and therefore, once an item is defined in one figure, it needs not be further defined and explained in the following figures.
[0083] In the description of this embodiment, it should be noted that the terms upper, lower, inner, bottom and the like indicate an orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the invention is conventionally placed in use, and are merely for ease of description of the invention and for simplicity of description, and are not intended to indicate or imply that the device or element referred to must have a particular orientation, and be constructed and operated in a particular orientation, and therefore cannot to be construed as limiting the invention.
[0084] The terms first, second, and the like are used only to distinguish descriptions and are not to be construed as indicating or implying relative importance.
[0085] In the description of this embodiment, it should also to be noted that the terms arranged, connected and connection should be broadly understood unless expressly specified and defined otherwise, for example, it can be fixed connection, detachable connection or integrated connection: it can be mechanical connection or electric connection; and it can be direct connection or indirect connection through an intermediate medium, and may be internal communication of two elements. For those of ordinary skill in the art, the specific meaning of the above terms in this embodiment may be understood according to specific situations.
[0086] In order to make the objective, the technical solutions and the advantages of the present invention clearer, the implementation modes of the present invention are further described in detail in combination with the accompanying drawings.
[0087] Referring to
[0088] The hard pool body receiving cavity 11 extends in a longitudinal direction (shown in a Z direction in
[0089] The liner is a soft pool body 20 having an opening, and the soft pool body 20 includes a water receiving cavity 21 (for storing water) and a connecting portion 22, wherein the water receiving cavity 21 extends along the longitudinal direction, a longitudinal top end of the water receiving cavity 21 has the opening, and the connecting portion 22 extends outwardly from the longitudinal top end of the water receiving cavity 21. That is, an inner wall of the bathtub is made of a single layer of soft material. The water receiving cavity 21 of the soft pool body 20 is received in the hard pool body receiving cavity 11, and the connecting portion 22 of the soft pool body 20 is detachably connected to a longitudinal top end of the hard pool body receiving cavity 11. The shape of the water receiving cavity 21 shown in
[0090] Thus, the present application provides a detachable bathtub including a hard outer frame 10 and a soft liner. The hard outer frame 10 is enclosed by the plurality of the fences which are detachably connected, and the water receiving cavity 21 of the soft pool body 20 as the soft liner is received in the hard pool body receiving cavity 11 of the hard outer frame 10, and is detachably connected to the longitudinal top end of the hard pool body receiving cavity 11 through the connecting portion 22 of the soft pool body 20. In this arrangement, disassembly and storage of the bathtub is facilitated, a floor space is reduced, and transportation is also facilitated.
[0091] In addition, since the detachable bathtub uses the hard outer frame 10 and the soft liner, the hard outer frame 10 plays a supporting role after the soft pool body 20 as the soft liner is filled with water. For example, the longitudinal top end of the hard pool body receiving cavity 11 supports the water receiving cavity of the soft pool body 20 by supporting the connecting portion 22 of the soft pool body 20.
[0092] Exemplarily, each fence is made of plastic wood or wood. At present, outer frames of bathtubs on the market use acrylic, inflatable bags, metal frames or concrete structures. The outer frame 10 of the bathtub of the present application adopts plastic wood fences instead of the conventional acrylic, inflatable bags, metal frames and the like. The bathtub is beautiful as a whole.
[0093] Exemplarily, the soft pool body 20 is made of PVC or net clamping PVC. By selecting the net clamping PVC and PVC leather, the water pressure bearing requirements are met.
[0094] In some possible embodiments, referring to
[0095] As described above, the present application is illustrated by taking the condition that the plurality of the fences are detachably connected in the circumferential direction and detachably connected in the longitudinal direction to enclose the hard pool body receiving cavity 11 as an example.
[0096] In some possible embodiments, with reference to
[0097] In the first direction, one longitudinal end of the first fence 12 and one longitudinal end of the second fence 13 are detachably connected by a first corner beam 16, the other longitudinal end of the first fence 12 and one longitudinal end of the fourth fence 15 are detachably connected by a second corner beam 17, and the first corner beam 16 and the second corner beam 17 extend along the longitudinal direction, respectively; and in the first direction, one longitudinal end of the third fence 14 and the other longitudinal end of the second fence 13 are detachably connected by a third corner beam 18, the other longitudinal end of the third fence 14 and the other longitudinal end of the fourth fence 15 are detachably connected by a fourth corner beam 19, and the third corner beam 18 and the fourth corner beam 19 extend along the longitudinal direction, respectively.
[0098] That is, in the circumferential direction, the first fence 12, the first corner beam 16, the second fence 13, the second corner beam 17, the third fence 14, the third corner beam 18, the fourth fence 15 and the fourth corner beam 19 are detachably connected to enclose the hard outer frame 10 of the bathtub as a whole to accommodate the soft pool body 20. In this arrangement, the mounting is convenient and the circumferential connection is reliable.
[0099] Exemplarily, with reference to
[0100] The light-transmissive structures 101 expose the soft pool body 20 received in the hard pool body receiving cavity 11, and light-emitting elements (not shown) are arranged at positions, corresponding to the light-transmissive structures 101, of the outer surface of the soft pool body 20. That is, the light-emitting elements arranged on the outer surface of the soft pool body 20 can be seen by a user at the light-transmissive structures 101 of the hard outer frame 10. The light-emitting elements emit light after being energized, and are displayed at the positions of the light-transmissive structures 101, which enhances the user experience and increases interestingness.
[0101] Exemplarily, the structures of the four fences (the first fence 12, the second fence 13, the third fence 14 and the fourth fence 15) of the present application are the same. Referring to
[0102] The first fence 12 includes an upper transverse beam 121, a lower transverse beam 122, a connecting plate 124, and a plurality of vertical beams 123. Accordingly, the second fence 13, the third fence 14, and the fourth fence 15 each include an upper transverse beam 121, a lower transverse beam 122, a connecting plate 124, and a plurality of vertical beams 123. Description is made by taking the structure of the first fence 12 as an example. Wherein the upper transverse beam 121 of the first fence 12 and the lower transverse beam 122 of the first fence 12 are disposed at an interval along the longitudinal direction (shown in a Z direction in
[0103] The number of the vertical beams 123 of the first fence 12 is not limited, and in other embodiments, the number of the vertical beams 123 of the first fence 12 is, for example, two, four, or the like.
[0104] The connecting plate 124 of the first fence 12 described above extends in the same direction as those of the upper transverse beam 121 of the first fence 12 and the lower transverse beam 122 of the first fence 12, that is, the connecting plate 124 of the first fence 12 extends in a direction perpendicular to the longitudinal direction; that is, the connecting plate 124 of the first fence 12 is parallel to the upper transverse beam 121 of the first fence 12 and the lower transverse beam 122 of the first fence 12, respectively. In addition, the connecting plate 124 of the first fence 12 is longitudinally positioned between the upper transverse beam 121 and the lower transverse beam 122, and is connected to the upper transverse beam 121, the lower transverse beam 122, and the vertical beams 123. That is, the first fence 12 is formed by connecting the upper transverse beam 121, the lower transverse beam 122, the plurality of the vertical beams 123, and the connecting plate 124.
[0105] Exemplarily, with continued reference to
[0106] Referring to
[0107] The mortise and tenon structure between the connecting plates 124 is not limited thereto, and the mortise and tenon structure between the connecting plate 124 and the upper transverse beam 121 and the mortise and tenon structure between the connecting plate 124 and the lower transverse beam 122 are not limited thereto in the present application, and mortise and tenon structures capable of realizing detachable connection all belong to the protection scope of the present application.
[0108] Referring to
[0109] As described previously, the two vertical beams 123 at both ends of the extension direction of the first fence 12 are configured to be detachably connected to the corresponding corner beams, respectively. As shown in connection with
[0110] Referring to
[0111] That is, the first corner beam 16 is provided with two clamping slots 161 extending in the longitudinal direction, and each clamping slot 161 is in snap fit with the corresponding T-shaped clamping block 1231 on the vertical beam 123 of the corresponding fence (the first fence 12 and the second fence 13) (referring to
[0112] With continued reference to
[0113] Referring to
[0114] In some possible embodiments, with continued reference to
[0115] Referring to
[0116] Exemplarily, each anti-slip structure 12343 extends in the longitudinal direction. Exemplarily, in the longitudinal direction, a depth dimension of each anti-slip structure 12343 is the same as a depth dimension of the corresponding blocking block. In this arrangement, an abutment force between each blocking block placed in the corresponding vertical beam 123 and the inner wall of the corresponding vertical beam 123 is increased.
[0117] Exemplarily, the remaining portion of the outer circumferential surface of each blocking block except for the anti-slip structures 12343 is in clearance fit with the inner wall of the corresponding vertical beam 123, and each blocking block abuts against the inner wall of the corresponding vertical beam 123 through the anti-slip structures 12343 to limit the relative movement of each blocking block and the corresponding vertical beam 123 in the longitudinal direction. When the upper transverse beam 121 and the lower transverse beam 122 are connected to the vertical beams 123, the blocking blocks are placed at openings of the vertical beams 123, and are struck so that the blocking blocks are placed in the vertical beams 123. After the blocking blocks are completely placed in the vertical beams 123 (not protruding in the longitudinal direction), no relative movement of the blocking blocks occurs in the vertical beams 123, thereby facilitating the connection of the first blocking blocks 1234 to the upper transverse beam 121 and the connection of the second blocking blocks to the lower transverse beam 122.
[0118] Exemplarily, the structure of each first blocking block 1234 and the structure of each second blocking block are the same. Referring to
[0119] With continued reference to
[0120] The blocking blocks and the inner walls of the vertical beams 123 are not in plane-to-plane contact, but are in concave-convex fit. Each blocking block is fixedly connected to the inner wall of the corresponding vertical beam 123 at a concave-convex fit position by screws, and self-tapping screws are received in concave-convex structures between the blocking blocks and the inner walls of the vertical beams 123. That is, the inner wall concave portions 12321 and the blocking block convex portions 12342 are fixedly connected by screws after being in concave-convex fit, and the inner wall convex portions 12322 and the blocking block concave portions 12341 are fixedly connected by screws after being in concave-convex fit. Exemplarily, each dashed line L in
[0121] As can be seen from the above description, the adjacent fences are detachably connected in the circumferential direction by the corresponding corner beam, and each fence is detachably connected in the longitudinal direction by the upper transverse beam 121, the lower transverse beam 122, the connecting plate 124 and the plurality of the vertical beams 123.
[0122] Referring to
[0123] Exemplarily, with reference to
[0124] Exemplarily, the connecting portion 22 of the soft pool body 20 is high-frequency ironed with PVC strips to form the above-mentioned bumps 222, with high-frequency connection of rigid PVC strips and net clamping PVC. The PVC strips are clamped into the grooves 1211 of the upper transverse beams 121, the connection is stable, and the mounting is convenient.
[0125] Referring to
[0126] In some possible embodiments, with reference to
[0127] For example, the positioning member body 301 on the first positioning member 30 covers the mounted first corner beam 16. Each corner beam has a hollow structure and has a corner beam cavity 163 extending in the longitudinal direction, so that weight reduction can be realized. The first positioning member 30 includes a tubular structure 302 disposed on one side, facing the first corner beam 16, of the first positioning member 30, the tubular structure 302 is inserted into the hollow structure of the first corner beam 16 (i.e., in the corner beam cavity 163) such that the first positioning member 30 is mounted in the first corner beam 16 and covers the first corner beam 16 (as shown in
[0128] The positioning member body 301 is provided with a positioning post 303 in a protruding manner, and a portion, corresponding to the corresponding corner beam, of each pool body connecting hole 221 of the connecting portion 22 of the soft pool body 20 sleeves the corresponding positioning post 303. That is, the four pool body connecting holes 221 of the connecting portion 22 of the soft pool body 20 respectively sleeve the positioning post 303 of the first positioning member 30, the positioning post 303 of the second positioning member 31, the positioning post 303 of the third positioning member 33, and the positioning post 303 of the fourth positioning member 32, so that prepositioning of the four sides of the soft pool body 20 and the fences is realized.
[0129] As shown in
[0130] With continued reference to
[0131] For example, the first extension 304 of the first positioning member 30 is located in one end of the groove 1211 of the first fence 12 and fixedly connected, and the second extension 305 of the first positioning member 30 is located in one end of the groove 1211 of the second fence 13 and fixedly connected. The first extension 304 of the second positioning member 31 is located in the other end of the groove 1211 of the second fence 13 and fixedly connected, and the second extension 305 of the second positioning member 31 is located in one end of the groove 1211 of the third fence 14 and fixedly connected; the first extension 304 of the third positioning member 33 is located in the other end of the groove 1211 of the third fence 14 and fixedly connected, and the second extension 305 of the third positioning member 33 is located in one end of the groove 1211 of the fourth fence 15 and fixedly connected; and the first extension 304 of the fourth positioning member 32 is located in the other end of the groove 1211 of the fourth fence 15 and fixedly connected, and the second extension 305 of the fourth positioning member 32 is located in the other end of the groove 1211 of the first fence and fixedly connected.
[0132] Thus, the first fence 12, the first positioning member 30, the first corner beam 16, the second fence 13, the second positioning member 31, the second corner beam 17, the third fence 14, the third positioning member 33, the third corner beam 18, the fourth fence 15, the fourth positioning member 32, and the fourth corner beam 19 are connected, the structural elements are integrally connected so that the connection of the outer frame 10 is more compact and reliable to withstand the tension at the corners after the liner is filled with water.
[0133] Exemplarily, a manner of the fixed connection is, for example, screw connection. Each first extension 304 is provided with a first screw hole 3041, and each first screw hole 3041 is fixedly connected with the groove 1211 of the corresponding fence by a screw; and each second extension 305 is provided with a second screw hole 3051, and each second screw hole 3051 is fixedly connected with the groove 1211 of the corresponding fence by a screw.
[0134] With continued reference to
[0135] With continued reference to
[0136] That is, the four sides of the connecting portion 22 of the soft pool body 20 and the fences are prepositioned, and the connecting portion 22 of the soft pool body 20 is clamped into the grooves 1211 of the upper transverse beams 121 through the bumps 222, the cover plate assembly 45 is connected to the positioning connecting holes 3032 of the positioning posts 303 of the positioning member bodies 301, and the cover plate assembly 45 covers the connecting portion 22 of the soft pool body 20, playing a decorative role.
[0137] Exemplarily, the overall visual effect after the cover plate assembly 45 is mounted on the outer frame 10 is close to the integrated acrylic effect, with no redundant features visible.
[0138] Since the cover plate assembly 45 is connected to the positioning connecting holes 3032 of the positioning member bodies 301 mounted on the corresponding corner beams, and since the first extension 304 and the second extension 305 of each positioning member body 301 are fixedly connected to the grooves 1211 of the adjacent upper transverse beams 121, respectively, the cover plate assembly 45 and the corner beams are prevented from being pulled out as a whole. Because the fences play a longitudinal limiting role on the positioning member bodies 301 through the first extensions and the second extensions 305, thereby exerting a longitudinal limiting role on the cover plate assembly 45 and the corresponding corner beams.
[0139] In some possible embodiments, with reference to
[0140] As shown in connection with
[0141] In some possible embodiments, each cover plate includes a transition structure 412, description is made by taking the first cover plate 41 as an example, referring to
[0142] In addition, one transition structure is designed for each cover plate, and a frame shaped cross section of the transition structure 412 can resist bending, improving the strength of the first cover plate 41. In addition, a plurality of reinforcing ribs are arranged on one side, facing the corresponding fence, of each cover plate, and each reinforcing rib is bent.
[0143] In addition, in the first direction, one end of the first cover plate 41 and one end of the second cover plate 42 are detachably connected through a first transition piece 45, the other end of the first cover plate 41 and one end of the fourth cover plate 44 are detachably connected through a second transition piece 48; and in the first direction, one end of the third cover plate 43 and the other end of the second cover plate 42 are detachably connected by a third transition piece 46, and the other end of the third cover plate 43 and the other end of the fourth cover plate 44 are detachably connected by a fourth transition piece 47. That is, the first cover plate 41, the first transition piece 45, the second cover plate 42, the third transition piece 46, the third cover plate 43, the fourth transition piece 47, the fourth cover plate 44 and the second transition piece 48 are detachably connected in the circumferential direction. Edge decoration of the detachable bathtub is achieved, and is detachable.
[0144] As shown in
[0145] Thus, the first transition piece 45 covers a portion, corresponding to the first corner beam 16, of the connecting portion 22 of the soft pool body 20 (i.e., a corner of the connecting portion 22), the second transition piece 48 covers a portion, corresponding to the second corner beam 17, of the connecting portion 22 (i.e., a corner of the connecting portion 22), the third transition piece 46 covers a portion, corresponding to the third corner beam 18, of the connecting portion 22 (i.e., a corner of the connecting portion 22), and the fourth transition piece 47 covers a portion, corresponding to the fourth corner beam 19, of the connecting portion 22 (i.e., a corner of the connecting portion 22). Then, the cover plate assembly 45 enclosed by the first cover plate 41, the first transition piece 45, the second cover plate 42, the third transition piece 46, the third cover plate 43, the fourth transition piece 47, the fourth cover plate 44, and the second transition piece 48 which are detachably connected in the circumferential direction covers the connecting portion 22 of the soft pool body 20.
[0146] Since the first cover plate 41, the first transition piece 45, the second cover plate 42, the third transition piece 46, the third cover plate 43, the fourth transition piece 47, the fourth cover plate 44 and the second transition piece 48 are detachably connected in the circumferential direction, the overall mounting is convenient, and after the first transition piece 45, the second transition piece 48, the third transition piece 46 and the fourth transition piece 47 are fixedly connected to the corresponding corner beams, the cover plate assembly 45 is connected to the outer frame 10, the circumferential limit is achieved, the first cover plate 41, the second cover plate 42, the third cover plate 43 and the fourth cover plate 44 are not separated from the corresponding transition pieces, and the connection reliability is improved.
[0147] A specific detachable connection mode between each cover plate and the corresponding transition piece is not limited in this application. Exemplarily, each cover plate is connected with the corresponding transition piece in an insertion manner. Namely, one end of the first cover plate 41 and one end of the second cover plate 42 are respectively connected with the first transition piece 45 in an insertion manner, the other end of the first cover plate 41 and one end of the fourth cover plate 44 are respectively connected with the second transition piece 48 in an insertion manner; and in the first direction, one end of the third cover plate 43 and the other end of the second cover plate 42 are respectively connected with the third transition piece 46 in an insertion manner, and the other end of the third cover plate 43 and the other end of the fourth cover plate 44 are respectively connected with the fourth transition piece 47 in an insertion manner.
[0148] Exemplarily, the structure of each cover plate is the same, i.e., the structure of the first cover plate 41, the structure of the second cover plate 42, the structure of the third cover plate 43 and the structure of the fourth cover plate 44 are the same. The present application is illustrated by taking the structure of the first cover plate 41 and the structure of the first transition piece 45 as an example, referring to
[0149] Accordingly, the first insertion portion 452 of the second transition piece 48 is inserted into the insertion hole 411 at the other end of the extension direction of the first cover plate 41, and the second insertion portion 451 of the second transition piece 48 is inserted into the insertion hole 411 at one end of the extension direction of the fourth cover plate 44. The first insertion portion 452 of the third transition piece 46 is inserted into the insertion hole 411 at the other end of the extension direction of the second cover plate 42, and the second insertion portion 451 of the third transition piece 46 is inserted into the insertion hole 411 at one end of the extension direction of the third cover plate 43. The first insertion portion 452 of the fourth transition piece 47 is inserted into the insertion hole 411 at the other end of the extension direction of the fourth cover plate 44, and the second insertion portion 451 of the fourth transition piece 47 is inserted into the insertion hole 411 at one end of the extension direction of the third cover plate 43.
[0150] Referring to
[0151] With continued reference to
[0152] Exemplarily, each second detachment prevention portion 453 is a convex point.
[0153] In some possible embodiments, with reference to
[0154] With continued reference to
[0155] In some possible embodiments, with reference to
[0156] In this way, a pipeline layout between the fences and the soft pool body 20 is achieved such that after the soft pool body 20 is filled with water by the pipeline assembly 60, the pipeline assembly 60 does not push against the fences, causing the fences to bulge. The pipeline assembly 60 is also convenient to assemble and after-sales maintenance is convenient.
[0157] Exemplarily, the pipeline assembly 60 includes hard pipelines and soft pipelines, wherein the hard pipelines are connected to the soft pipelines. That is, the pipeline assembly 60 of the present application is formed by connecting the hard pipelines with the soft pipelines.
[0158] Referring to
[0159] Exemplarily, referring to
[0160] In some possible embodiments, the water inlet pipeline of the present application includes a soft water inlet pipeline, and a first hard water inlet pipeline and a second hard water inlet pipeline which are located at both ends of the soft water inlet pipeline, the first hard water inlet pipeline is connected with the soft pool body 20, and the second hard water inlet pipeline is connected with the control box 50. For example, the nozzle water inlet pipeline includes a soft water inlet pipeline 642, and a first hard water inlet pipeline 643 and a second hard water inlet pipeline 641 which are located at both ends of the soft water inlet pipeline 642. Between the second hard water inlet pipeline 641 of the nozzle water inlet pipeline and the heating water inlet pipeline 61 is a soft water inlet pipeline, and a portion where the heating water inlet pipeline 61 is connected to the soft pool body 20 by high-frequency ironing, and a portion where the soft water inlet pipeline is connected to the soft pool body 20 by high-frequency ironing are hard pipelines, i.e., between a hard pipeline of the heating water inlet pipeline 61 and the second hard water inlet pipeline 641 of the nozzle water inlet pipeline is a soft water inlet pipeline.
[0161] In some possible embodiments, the water outlet pipeline includes a soft water outlet pipeline, and a first hard water outlet pipeline and a second hard water outlet pipeline which are located at both ends of the soft water outlet pipeline, the first hard water outlet pipeline is connected with the soft pool body 20, and the second hard water outlet pipeline is connected with the control box 50. For example, the nozzle water outlet pipeline 62 includes a soft water outlet pipeline 621, and a first hard water outlet pipeline 623 and a second hard water outlet pipeline 622 which are located at both ends of the soft water outlet pipeline 621. For example, the heating water outlet pipeline 63 includes a soft water outlet pipeline, and a first hard water outlet pipeline and a second hard water outlet pipeline which are located at both ends of the soft water outlet pipeline.
[0162] Since the pipeline assembly 60 between the control box 50 and the soft pool body 20 of the bathtub of the present application is formed by connecting hard pipes with hoses, compared with the connection of the soft pool body 20 and the control box 50 of the bathtub through hard pipes, water circulates with each other, the water pressure in different water depths is different after a single-layer soft pool body 20 is filled with water, and the degree of depression of the single-layer soft pool body 20 is different, which can ensure that the pipeline assembly 60 does not protrude on the soft pool body 20, but the degree of protrusion is automatically adjusted with the change of the water depth.
[0163] The connection of each hose to hard pipes at both ends may adopt a waterproof structure described later, as detailed in the following description.
[0164] In addition, the soft water inlet pipeline or the soft water outlet pipeline is provided with a hard support structure. Exemplarily, a hard support structure (e.g., a hard pipe) is disposed in the soft water outlet pipeline 621 of the nozzle water outlet pipeline 62. A hard support structure is disposed in the soft water outlet pipeline 621 to overcome a negative pressure generated during operation. It is ensured that the nozzle water outlet pipeline 62 can discharge water normally.
[0165] In some possible embodiments, with reference to
[0166] Thus, the pipeline assembly is built-in between the outer frame 10 and the soft pool body 20 of the bathtub. The pipeline layout between the outer frame 10 and the soft pool body 20 is achieved so that after filling with water, the pipeline assembly does not push against the fences, causing the fences to bulge.
[0167] Exemplarily, each multiway hard pipe 644 is a four-way hard pipe, hoses 645 are connected to both ends thereof, and two nozzles 65 are connected through hoses 645. Four multiway hard pipes 644, and eight nozzles 65 are shown in
[0168] In some possible embodiments, with reference to
[0169] By taking the waterproof structures in the water inlet division pipe as an example, other waterproof structures in the pipeline assembly 60 (e.g., the water outlet pipeline) are the same as the waterproof structures in the water inlet division pipe. Wherein an end where each hard pipe 644 is connected with the corresponding hose 645 in the water inlet division pipe is provided with an external thread structure 6441 surrounding a water inlet port of the hard pipe 644, and each external thread structure 6441 is connected with the corresponding hard pipe 644 through a limit stop 6442, and exemplarily, each limit stop 6442 is perpendicular to the corresponding hard pipe 644. Each limit stop 6442, the corresponding external thread structure 6441, and the corresponding hard pipe 644 enclose a waterproof cavity 6443 with an end opened. As shown in
[0170] An outer periphery of each hose 645 is sleeved with a tapered press ring 6452 and a locking nut 6451, and each hose 645 is inserted into the corresponding waterproof cavity 6443. The insertion direction of each hose 645 is shown in a direction C in
[0171] Compared with the current industry where the waterproof function is realized by gluing, sealing ring configuration, and hose clamp locking, the present application achieves the waterproof function by a pure mechanical connection structure. The hard tapered press rings 6452 on the hoses 645 (TPU hoses or silicone hoses) are pressed against the ends of the hard pipes 644 in the insertion direction by screwing the locking nuts 6451, and the tapered press rings 6452, the hoses 645, the ends of the hard pipes 644 and the locking nuts 6451 are connected to each other to achieve waterproofing.
[0172] In some possible embodiments, the end of each hard pipe 644 has a tapered surface 6444, and each tapered press ring 6452 and the corresponding tapered surface 6444 clamp the corresponding soft pipeline in the insertion direction. That is, each tapered press ring 6452 and the tapered surface 6444 of the end of the corresponding hard pipe 644 cooperate to jointly clamp the corresponding soft pipeline in the insertion direction, improving the waterproof performance. The tapered surface 6444 at the end of each hard pipe 644 may also function to guide the insertion of the corresponding hose 645 into the corresponding waterproof cavity 6443.
[0173] Although the present invention has been illustrated and described with reference to some preferred embodiments of the present invention, those of ordinary skill in the art should understand that the above content is a further detailed description of the present invention in conjunction with the specific embodiments, and it cannot be considered that the specific implementations of the present invention are only limited to these descriptions. Those skilled in the art may make various changes in forms and details, including making several simple deductions or substitutions, without departing from the spirit and scope of the present invention.