METHOD OF MANUFACTURING HANDRAIL ASSEMBLY, HANDRAIL ASSEMBLY, SUPPORT FRAME STRUCTURE, AND CHILD CARRIAGE
20220203602 · 2022-06-30
Inventors
Cpc classification
B29C2063/485
PERFORMING OPERATIONS; TRANSPORTING
B29C63/18
PERFORMING OPERATIONS; TRANSPORTING
B29C63/0017
PERFORMING OPERATIONS; TRANSPORTING
B29C63/22
PERFORMING OPERATIONS; TRANSPORTING
B62B9/24
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C63/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention discloses a method of manufacturing a handrail assembly including steps of 1) providing a first material layer and a second material layer, wherein the second material layer is a hot melt material; 2) stacking the second material layer on the first material layer to form a substrate layer with an integrated structure; 3) curling the substrate layer to form a handrail cover matching a handrail tube, wherein the handrail cover is a sleeve structure and the second material layer is located at an inner side of the handrail cover; 4) inserting the handrail tube matching the handrail cover into the handrail cover to form a handrail assembly semi-finished product; 5) baking the handrail assembly semi-finished product until the second material layer is completely melted; and 6) cooling the handrail assembly semi-finished product after baking to form the handrail assembly.
Claims
1. A method of manufacturing a handrail assembly comprising steps of: 1) providing a first material layer and a second material layer, wherein the second material layer is a hot melt material; 2) stacking the second material layer on the first material layer to form a substrate layer with an integrated structure; 3) curling the substrate layer to form a handrail cover matching a handrail tube, wherein the handrail cover is a sleeve structure and the second material layer is located at an inner side of the handrail cover; 4) inserting the handrail tube matching the handrail cover into the handrail cover to form a handrail assembly semi-finished product; 5) baking the handrail assembly semi-finished product until the second material layer is completely melted; and 6) cooling the handrail assembly semi-finished product after baking to form the handrail assembly.
2. The method of claim 1, wherein the step 2) further comprises steps of: 21) adhering a side of a double-sided adhesive layer to the first material layer; and 22) adhering another side of the double-sided adhesive layer to the second material layer, wherein the second material layer and the first material layer form the substrate layer with the integrated structure by the double-sided adhesive layer.
3. The method of claim 1, wherein the step 3) further comprises step of: curling and stitching the substrate layer to form the handrail cover matching the handrail tube.
4. The method of claim 1, wherein the first material layer is a flexible structure.
5. The method of claim 4, wherein the first material layer is selected from one of leather layer, soft rubber layer and foam layer.
6. The method of claim 1, wherein the second material layer is a film structure.
7. The method of claim 6, wherein the second material layer is selected from one of PU hot melt adhesive film, TPU hot melt adhesive film, PS hot melt adhesive film and PA hot melt adhesive film.
8. The method of claim 1, wherein a baking temperature of the step 5) is between 100° C. and 150° C.
9. The method of claim 1, wherein a baking time of the step 5) is between 2 minutes and 6 minutes.
10. A handrail assembly manufactured according to the method of claim 1, the handrail assembly comprising a handrail tube and a handrail cover sleeved on the handrail tube, the handrail cover comprising a first material layer and a second material layer stacked with each other, the handrail cover being an integrated structure, the handrail cover being fixed on the handrail tube by the second material layer.
11. A support frame structure comprising a front support frame assembly, a rear support frame assembly, a handle assembly, a connecting assembly configured to connect the front support frame assembly, the rear support frame assembly and the handle assembly, and the handrail assembly of claim 10, the handrail assembly being detachably connected with the connecting assembly.
12. The support frame structure of claim 11, wherein the support frame structure is a stroller structure, a crib structure or a baby seat structure.
13. A child carriage comprising a carriage body and the support frame structure of claim 12 configured to support the carriage body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION
[0033] In order to explain the disclosure and structural features in detail, the invention will be further described with the embodiments and drawings in the following.
[0034] As shown in
First Embodiment
[0035] As shown in
[0036] 1) providing a first material layer 111 and a second material layer 113, wherein the second material layer 113 is a hot melt material;
[0037] 2) stacking the second material layer 113 on the first material layer 111 to form a substrate layer with an integrated structure;
[0038] 3) curling the substrate layer to form a handrail cover 11 matching a handrail tube 12, wherein the handrail cover 11 is a sleeve structure and the second material layer 113 is located at an inner side of the handrail cover 11;
[0039] 4) inserting the handrail tube 12 matching the handrail cover 11 into the handrail cover 11 to form a handrail assembly semi-finished product;
[0040] 5) baking the handrail assembly semi-finished product at a temperature of 130° C. for 3 minutes until the second material layer 113 is completely melted; and
[0041] 6) cooling the handrail assembly semi-finished product after baking to form the handrail assembly 10.
[0042] Specifically, the first material layer 111 is a flexible structure.
[0043] More specifically, the first material layer 111 may be, but not limited to, leather layer. The first material layer 111 may also be soft rubber layer or foam layer.
[0044] Specifically, the second material layer 113 is a film structure.
[0045] More specifically, the second material layer 113 may be, but not limited to, polyurethane (PU) hot melt adhesive film. The second material layer 113 may also be one of thermoplastic polyurethanes (TPU) hot melt adhesive film, polystyrene (PS) hot melt adhesive film and polyamide (PA) hot melt adhesive film. Other hot melt adhesive films capable of adhering the second material layer 113 to the first material layer 111 are all within the scope of the invention.
[0046] As shown in
Second Embodiment
[0047] As shown in
[0048] 1) providing a first material layer 111 and a second material layer 113, wherein the second material layer 113 is a hot melt material;
[0049] 2) stacking the second material layer 113 on the first material layer 111 to form a substrate layer with an integrated structure;
[0050] 3) curling and stitching the substrate layer to form a handrail cover 11 matching a handrail tube 12, wherein the handrail cover 11 is a sleeve structure and the second material layer 113 is located at an inner side of the handrail cover 11;
[0051] 4) inserting the handrail tube 12 matching the handrail cover 11 into the handrail cover 11 to form a handrail assembly semi-finished product;
[0052] 5) baking the handrail assembly semi-finished product at a temperature of 130° C. for 3 minutes until the second material layer 113 is completely melted; and
[0053] 6) cooling the handrail assembly semi-finished product after baking to form the handrail assembly 10.
[0054] Specifically, the first material layer 111 is a flexible structure.
[0055] More specifically, the first material layer 111 may be, but not limited to, leather layer. The first material layer 111 may also be soft rubber layer or foam layer.
[0056] Specifically, the second material layer 113 is a film structure.
[0057] More specifically, the second material layer 113 may be, but not limited to, PU hot melt adhesive film. The second material layer 113 may also be one of TPU hot melt adhesive film, PS hot melt adhesive film and PA hot melt adhesive film.
[0058] As shown in
Third Embodiment
[0059] As shown in
[0060] 1) providing a first material layer 111 and a second material layer 113, wherein the second material layer 113 is a hot melt material;
[0061] 2) adhering a side of a double-sided adhesive layer 112 to the first material layer 111 and adhering another side of the double-sided adhesive layer 112 to the second material layer 113, wherein the second material layer 113 and the first material layer 111 form a substrate layer with an integrated structure by the double-sided adhesive layer 112;
[0062] 3) curling the substrate layer to form a handrail cover 11 matching a handrail tube 12, wherein the handrail cover 11 is a sleeve structure and the second material layer 113 is located at an inner side of the handrail cover 11;
[0063] 4) inserting the handrail tube 12 matching the handrail cover 11 into the handrail cover 11 to form a handrail assembly semi-finished product;
[0064] 5) baking the handrail assembly semi-finished product at a temperature of 130° C. for 3 minutes until the second material layer 113 is completely melted; and
[0065] 6) cooling the handrail assembly semi-finished product after baking to form the handrail assembly 10.
[0066] Specifically, the first material layer 111 is a flexible structure.
[0067] More specifically, the first material layer 111 may be, but not limited to, leather layer. The first material layer 111 may also be soft rubber layer or foam layer.
[0068] Specifically, the second material layer 113 is a film structure.
[0069] More specifically, the second material layer 113 may be, but not limited to, PU hot melt adhesive film. The second material layer 113 may also be one of TPU hot melt adhesive film, PS hot melt adhesive film and PA hot melt adhesive film.
[0070] Specifically, in the step 2), the invention uses the double-sided adhesive layer 112 to adhere the second material layer 113 to the first material layer 111, but the adhesive manner is not limited to the double-sided adhesive. Other adhesive manners capable of adhering the second material layer 113 to the first material layer 111 are all within the scope of the invention.
[0071] As shown in
[0072] Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.