Template for clothing production

By using a template system to adjust the allowance between the lining and outer fabric layers in garment production, the problem of low precision caused by manual operation is solved, resulting in higher product quality and standardization.

CN121853283APending Publication Date: 2026-04-14BOSIDENG DOWN WEAR LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BOSIDENG DOWN WEAR LTD
Filing Date
2026-01-15
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In down jacket production, the manual rubbing of the lining and outer fabric layers results in low precision in the allowance, leading to low product quality and standardization.

Method used

A clamping system including a first template and a second template is adopted. The template is equipped with a reserve component. The reserve between the lining layer and the outer fabric layer is adjusted by airbags and adjusting components to ensure accurate reserve formation.

Benefits of technology

This improved the precision of the allowance between the lining layer and the outer fabric layer, enhancing product quality and standardization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a template for clothing production, the template is used for clamping and positioning a lining layer and a fabric layer, the template comprises a first template and a second template, the first template and the second template can be rotatably matched and clamp the lining layer and the fabric layer between the first template and the second template, one of the first template and the second template is provided with the allowance reserving assembly, the allowance reserving assembly can enable a reserved allowance to be formed between the lining layer and the fabric layer, and the size of the reserved allowance can be adjusted, so that in the sewing process, the allowance reserving assembly is arranged in an expansion state, the lining layer is firstly placed on the allowance reserving assembly, and the allowance reserving assembly is arranged on the fabric layer; and then the allowance reserving assembly is switched into a release state, the fabric layers are placed on the lining layers, so that reserved allowances are formed between the lining layers and the fabric layers, standardized reserved allowances can be formed between the fabric layers and the lining layers, the precision of the reserved allowances is improved, and the product quality and the standardization degree are improved.
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Description

Technical Field

[0001] This application relates to the field of garment processing equipment technology, and more specifically, to a template for garment production. Background Technology

[0002] In the production of down jackets, a certain amount of allowance needs to be reserved between the outer fabric layer and the lining layer to prevent the seams from being pulled during the down filling process, which could lead to defects such as skipped stitches and holes. Currently, this allowance is usually increased by manually rubbing the lining layer and the outer fabric layer. This method relies entirely on the operator's manual experience. Because different operators have different rubbing strength and methods, the accuracy of the allowance between the lining layer and the outer fabric layer is low and the quality is inconsistent, resulting in a low degree of product standardization.

[0003] In conclusion, improving product quality and standardization is a problem that urgently needs to be solved by those skilled in the art. Summary of the Invention

[0004] In view of this, the purpose of this application is to provide a template for garment production to improve product quality and standardization.

[0005] To achieve the above objectives, this application provides the following technical solution:

[0006] A template for garment production, used for clamping and positioning a lining layer and an outer fabric layer, includes: a first template and a second template, the first template and the second template being rotatably coupled to clamp the lining layer and the outer fabric layer; one of the first template and the second template is provided with a allowance reserve component, the allowance reserve component enabling a reserve allowance between the lining layer and the outer fabric layer, and the allowance reserve component being adjustable in size; the allowance reserve component has an expanded state and a released state, in which the lining layer is placed on the allowance reserve component in the expanded state, and then the allowance reserve component is switched to the released state to place the outer fabric layer on the lining layer, thereby forming the reserve allowance between the lining layer and the outer fabric layer.

[0007] In some embodiments, the first template has an installation slot;

[0008] The reserve component includes: an airbag installed in the mounting groove; and an adjusting member fixedly connected to the first template, one end of which is used to connect to an inflation / deflation device, and the other end of which is connected to the airbag via a connecting pipe, and the adjusting member is capable of adjusting the inflation amount in the airbag.

[0009] In some embodiments, the adjusting component includes: a valve body fixedly connected to the first template, the valve body having an air inlet and an air outlet, the air inlet communicating with the inflation / deflation device, the air outlet communicating with the connecting pipe, the valve body being configured with a valve cavity and a slide rail; a slider slidingly engaged with the slide rail, and the slider and the slide rail being positioned by a positioning element; the valve body having a scale marking, the scale marking being arranged in the same direction as the slide rail.

[0010] In some embodiments, there are at least two airbags, at least two mounting slots, and at least two branches of the connecting tube; the airbags, the mounting slots, and the branches correspond one-to-one.

[0011] In some embodiments, one end of the connecting pipe is connected to the air outlet via a sealing joint; the other end of the connecting pipe is connected to at least two branches via a diversion valve, and the branches are connected to the corresponding airbags via sealing joints.

[0012] In some embodiments, the airbag is made of elastic rubber; the thickness of the airbag when inflated ranges from 0 to 5 mm, and the thickness of the airbag after deflation is ≤ 3 mm.

[0013] In some embodiments, the second template has through holes for avoiding the allowance reserved components; the through holes include airbag clearance holes, connecting pipe clearance holes, and adjusting component clearance holes, which are integral structures, wherein the airbag clearance holes correspond to the maximum expansion size of the airbag.

[0014] In some embodiments, the first template has a first sewing groove, and the second template has a second sewing groove, with the first sewing groove and the second sewing groove being correspondingly arranged; the projections of the first sewing groove and the second sewing groove do not coincide with the projection of the allowance reserve component.

[0015] In some embodiments, the airbag is a strip-shaped structure, and the first sewing groove is a strip-shaped groove; the length direction of the airbag is parallel to the length direction of the first sewing groove.

[0016] In some embodiments, both the first template and the second template are flat structures; the first template and the second template can be fixed together by locking buckles so that the first template and the second template clamp and fix the lining layer and the outer fabric layer.

[0017] The garment production template provided in this application is used to clamp and position the lining layer and the outer fabric layer. It includes a first template and a second template, which are rotatable and can clamp the lining layer and the outer fabric layer between the first template and the second template. One of the first template and the second template is provided with a reserve component. The reserve component allows for a reserve of allowance between the lining layer and the outer fabric layer, and the size of the reserve of allowance can be adjusted. In the sewing process, the reserve component is set to the expanded state, and the lining layer is placed on the reserve component first. Then, the reserve component is switched to the released state, and the outer fabric layer is placed on the lining layer, so that a reserve of allowance is formed between the lining layer and the outer fabric layer. This ensures that the reserve of allowance between the outer fabric layer and the lining layer has a standardized reserve of allowance, improves the accuracy of the reserve of allowance, and improves the quality and standardization of the product. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this application. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the structure of the template for garment production provided in the embodiments of this application;

[0020] Figure 2 for Figure 1 The diagram shows a partial enlarged structural schematic of a template used in garment production.

[0021] Explanation of reference numerals in the attached figures:

[0022] 100 - First template, 110 - First sewing groove;

[0023] 200-Second template, 210-Second sewing groove, 221-Airbag clearance hole, 222-Connecting pipe clearance hole, 223-Adjusting component clearance hole;

[0024] 300 - Airbag, 310 - Connecting tube, 311 - Branch;

[0025] 400 - Adjusting component, 410 - Valve body, 420 - Slide rail, 430 - Slider, 440 - Scale marking. Detailed Implementation

[0026] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0027] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. The terminology used in the following embodiments is for the purpose of describing specific embodiments only and is not intended to be a limitation of this application. As used in the specification and appended claims of this application, the singular expressions "a," "an," "the," "the," "the," and "this" are intended to also include expressions such as "one or more," unless the context clearly indicates otherwise. It should also be understood that in the embodiments of this application, "one or more" refers to one, two, or more; "and / or" describes the relationship between related objects, indicating that three relationships may exist; for example, A and / or B can represent: A alone, A and B simultaneously, or B alone, where A and B can be singular or plural. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship.

[0028] References to "one embodiment" or "some embodiments" as described in this specification mean that one or more embodiments of this application include a specific feature, structure, or characteristic described in connection with that embodiment. Therefore, the phrases "in one embodiment," "in some embodiments," "in other embodiments," "in still other embodiments," etc., appearing in different parts of this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "comprising," "including," "having," and variations thereof mean "including but not limited to," unless otherwise specifically emphasized.

[0029] The "multiple" mentioned in the embodiments of this application refers to two or more. It should be noted that in the description of the embodiments of this application, terms such as "first" and "second" are used only for the purpose of distinguishing descriptions and should not be construed as indicating or implying relative importance, nor should they be construed as indicating or implying order.

[0030] The terms "parallel" and "perpendicular" used in this application refer to "basically parallel" and "basically perpendicular" in practical operation. "Basically parallel" can be understood as parallelism with a certain degree of error, and similarly, "basically perpendicular" can be understood as perpendicularity with a certain degree of error.

[0031] like Figure 1As shown in the embodiment of this application, the template for garment production is used to clamp and position the lining layer and the outer fabric layer. It includes a first template 100 and a second template 200, which are rotatably coupled to clamp the lining layer and the outer fabric layer. One of the first template 100 and the second template 200 is provided with a allowance reserve component. This component allows for a reserve allowance between the lining layer and the outer fabric layer, and the size of the reserve allowance can be adjusted. The allowance reserve component has an expanded state and a released state. In the expanded state, the lining layer is placed on the allowance reserve component. Then, the allowance reserve component is switched to the released state, and the outer fabric layer is placed on the lining layer. This creates a reserve allowance between the lining layer and the outer fabric layer, ensuring a standardized reserve allowance between them. This improves the accuracy of the reserve allowance, enhances product quality, and increases standardization.

[0032] It should be noted that the reserve component can be set on the first template 100 or the second template 200. This application embodiment does not limit this. This application takes setting the reserve component on the first template 100 as an example for explanation.

[0033] like Figures 1-2 As shown, an installation slot is provided on the first template 100 to facilitate the installation of the reserved components.

[0034] The spare capacity reserved components include airbag 300 and adjustment component 400. Airbag 300 is installed in the mounting groove to facilitate the relative fixation of airbag 300. Specifically, airbag 300 can be bonded to the mounting groove to improve connection strength.

[0035] The adjusting component 400 is fixedly connected to the first template 100. One end of the adjusting component 400 is connected to the inflation / deflation device, and the other end of the adjusting component 400 is connected to the airbag 300 through the connecting pipe 310. The adjusting component 400 can adjust the inflation amount in the airbag 300 so that the airbag 300 can be adjusted according to the allowance requirements between the lining layer and the outer fabric layer of different garments to improve practicality.

[0036] It should be noted that the inflation / deflation device is a power source and actuator that can provide positive pressure gas for inflation and negative pressure (or be connected to the environment) for deflation, thereby enabling controllable changes in the volume or pressure of the target container (such as an airbag). It can provide gas power and realize inflation / deflation operations, and can be, for example, an air pump, an air compressor, etc.

[0037] like Figure 2As shown, the adjusting component 400 includes a valve body 410 and a slider 430. The valve body 410 is fixedly connected to the first template 100. The valve body 410 has an air inlet and an air outlet. The air inlet is connected to an inflation / deflation device, and the air outlet is connected to a connecting pipe 310, so that the airbag 300 can be inflated or deflated through the connecting pipe 310. A valve cavity and a slide rail 420 are arranged inside the valve body 410. The slider 430 slides with the slide rail 420, and the slider 430 and the slide rail 420 can be positioned by a positioning component. The valve body 410 has a scale mark 440, which is arranged in the same direction as the slide rail 420. By moving the slider 430 to correspond to different positions of the scale mark 440, and by positioning the slider 430 at a specified position by the positioning component, a specified amount of gas can be inflated into the airbag 300 so that the airbag 300 can expand to the required size.

[0038] In some embodiments, the positioning element can be a spring and a ball. Several positioning holes can be opened inside the valve body 410 so that the ball can be inserted into the positioning holes at different positions under the action of the spring to achieve positioning and engagement, so as to position the slider 430 and the slide rail 420 relative to each other.

[0039] In this application, there are at least two airbags 300, at least two mounting slots, and at least two branches 311 of the connecting pipe 310. The airbags 300, mounting slots, and branches 311 are in one-to-one correspondence, so that the branches 311 are connected to the corresponding airbags 300.

[0040] Specifically, one end of the connecting pipe 310 is connected to the air outlet of the valve body 410 through a sealing joint, and the other end of the connecting pipe 310 is connected to at least two branches 311 through a diversion valve, so that the branches 311 are connected to the corresponding airbags 300 through sealing joints, so as to ensure that the inflation pressure between different airbags 300 is consistent, thereby improving the uniformity of the allowance between the lining layer and the fabric layer.

[0041] In this application, the airbag 300 is made of elastic rubber so that the airbag 300 has an expansion deformation force, so that the expansion and release of the reserve component can be realized through the expansion and contraction state of the airbag 300.

[0042] In this application, the inflated thickness of the airbag 300 ranges from 0 to 5 mm, and the deflated thickness of the airbag 300 is ≤ 3 mm, so as to adjust the inflated thickness of the airbag 300 to meet the size requirements of the allowance between the lining layer and the outer fabric layer of different garments.

[0043] Since both the lining layer and the outer fabric layer are sandwiched between the first template 100 and the second template 200, to avoid interference between the allowance reserve component and the second template 200, such as... Figure 1As shown, a through hole is provided on the second template 200 for avoiding the reserved component. The through hole includes an integrated airbag clearance hole 221, a connecting pipe clearance hole 222, and an adjusting component clearance hole 223, which correspondingly clearance the airbag 300, the connecting pipe 310, and the adjusting component 400. The airbag clearance hole 221 corresponds to the maximum expansion size of the airbag 300 to ensure the clamping operation of the first template 100 and the second template 200.

[0044] To facilitate the sewing of the lining and outer fabric layers, such as Figure 1 As shown, a first sewing groove 110 is provided on the first template 100, and a second sewing groove 210 is provided on the second template 200. The first sewing groove 110 and the second sewing groove 210 are provided correspondingly, and the projections of the first sewing groove 110 and the second sewing groove 210 do not coincide with the projection of the allowance reserved component.

[0045] like Figure 1 As shown, the airbag 300 has a strip-shaped structure, and the first sewing groove 110 has a strip-shaped groove. The length direction of the airbag 300 is parallel to the length direction of the first sewing groove 110, so that the airbag 300 is set in the interval between adjacent first sewing grooves 110, reducing the overall size of the first template 100, so as to facilitate sewing operations.

[0046] In this application, both the first template 100 and the second template 200 are flat structures. In practice, the first template 100 and the second template 200 can be fixed together by locking buckles so that the first template 100 and the second template 200 can provide uniform and stable clamping and fixing for the lining layer and the fabric layer, so as to ensure that there is no deviation in the sewing between the lining layer and the fabric layer.

[0047] In the garment production template provided in this embodiment, during operation, the first template 100 and the second template 200 are first flipped to a fully open state. According to production process requirements, the slider 430 is pushed to align with the designated scale mark 440, and the slider 430 is positioned and engaged with the slide rail 420 by a positioning component. The inflation / deflation device is activated to inflate the airbag 300. Then, the lining layer is laid flat on the first template 100, aligned with the sewing baseline, so that the lining layer, supported by the airbag 300, forms a reserved space in the corresponding area. The inflation / deflation device then rapidly releases the gas from the airbag 300, causing it to contract. The lining layer, due to its own flexibility, maintains the reserved allowance. Lay the fabric layer flat on top of the lining layer, aligning it with the sewing baseline. Due to the reserved capacity, the actual effective area of ​​the lining layer is 0.5%-1% larger than that of the fabric layer, allowing for a filling space between them. Then, close the first template 100 and the second template 200 and fasten the tightening buckle. The lining layer and the fabric layer are then sewn together using a sewing machine through the first sewing groove 110 and the second sewing groove 210. After sewing, open the first template 100 and the second template to remove the processed lining layer and fabric layer. This ensures a standardized allowance between the fabric layer and the lining layer, improving the accuracy of the allowance, product quality, and standardization.

[0048] The above description of the embodiments enables those skilled in the art to make or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A template for garment production, used for clamping and positioning lining and outer fabric layers, characterized in that, include: A first template (100) and a second template (200) are rotatably coupled to clamp the lining layer and the outer fabric layer. One of the first template (100) and the second template (200) is provided with a margin reservation component, which enables the lining layer and the outer fabric layer to have a reserved margin, and the margin reservation component can adjust the size of the reserved margin. The allowance reserve component has an expanded state and a released state. In the expanded state, the lining layer is placed on the allowance reserve component. Then, the allowance reserve component is switched to the released state, and the outer fabric layer is placed on the lining layer, so that the allowance is formed between the lining layer and the outer fabric layer.

2. The template for garment production according to claim 1, characterized in that, The first template (100) has an installation slot; The reserved margin components include: An airbag (300) is installed in the mounting groove; An adjusting component (400) is fixedly connected to the first template (100). One end of the adjusting component (400) is used to connect to an inflation / deflation device, and the other end of the adjusting component (400) is connected to the airbag (300) through a connecting pipe (310). The adjusting component (400) can adjust the inflation amount in the airbag (300).

3. The template for garment production according to claim 2, characterized in that, The adjusting member (400) includes: The valve body (410) is fixedly connected to the first template (100). The valve body (410) has an air inlet and an air outlet. The air inlet is connected to the air filling and discharging device, and the air outlet is connected to the connecting pipe (310). The valve body is equipped with a valve cavity and a slide rail (420). The slider (430) is slidably engaged with the slide rail (420), and the slider (430) and the slide rail (420) can be positioned and engaged by a positioning element; The valve body (410) has a scale mark (440) which is arranged in the same direction as the slide rail (420).

4. The template for garment production according to claim 3, characterized in that, There are at least two airbags (300), at least two mounting slots, and at least two branches (311) of the connecting pipe (310). The airbag (300), the mounting groove, and the branch (311) correspond one-to-one.

5. The template for garment production according to claim 4, characterized in that, One end of the connecting pipe (310) is connected to the air outlet through a sealing joint; The other end of the connecting pipe (310) is connected to at least two branches (311) via a diversion valve, and the branches are connected to the corresponding airbags (300) via sealing joints.

6. The template for garment production according to claim 2, characterized in that, The airbag (300) is made of elastic rubber. The thickness of the airbag (300) when inflated is 0-5mm, and the thickness of the airbag (300) after deflation is ≤3mm.

7. The template for garment production according to claim 2, characterized in that, The second template (200) has a through hole for avoiding the reserved component; The through hole includes an airbag clearance hole (221), a connecting pipe clearance hole (222), and an adjusting component clearance hole (223), which are integral structures. The airbag clearance hole (221) corresponds to the maximum expansion size of the airbag (300).

8. The template for garment production according to claim 2, characterized in that, The first template (100) has a first sewing groove (110), and the second template (200) has a second sewing groove (210), with the first sewing groove (110) and the second sewing groove (210) being provided correspondingly; The projections of the first sewing groove (110) and the second sewing groove (210) do not coincide with the projection of the allowance reserved component.

9. The template for garment production according to claim 8, characterized in that, The airbag (300) has a strip-shaped structure, and the first sewing groove (110) is a strip-shaped groove; The length direction of the airbag (300) is parallel to the length direction of the first sewing groove (110).

10. The template for garment production according to any one of claims 1-9, characterized in that, Both the first template (100) and the second template (200) are flat plate structures; The first template (100) and the second template (200) can be fixed together by locking buckles so that the first template (100) and the second template (200) clamp and fix the lining layer and the outer fabric layer.