Bonding tooling and bonding method for garment
By using a one-time bonding tooling and method, the efficiency and quality issues of bonding the lining fabric and outer fabric of down garments were solved, achieving a highly efficient and precise bonding process and reducing reliance on the skills of workers.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- BOSIDENG DOWN WEAR LTD
- Filing Date
- 2025-11-19
- Publication Date
- 2026-06-18
Smart Images

Figure CN2025135908_18062026_PF_FP_ABST
Abstract
Description
A bonding tool for clothing and a bonding method
[0001] This application claims priority to Chinese Patent Application No. 202411819651.3, filed on December 11, 2024, entitled "An adhesive workwear and adhesive method for clothing", the entire contents of which are incorporated herein by reference. Technical Field
[0002] This application relates to the field of garment production technology, and in particular to an adhesive tooling and adhesive method for garments. Background Technology
[0003] In the manufacturing process of down-filled garments, an insulating layer is placed between the filling material (such as down, cotton, etc.) and the outer fabric to enclose the filling and prevent leakage. Currently, this insulating layer is mostly made of lining fabric, which uses high-density lining cloth that has been calendered or coated to form a tight fiber structure, effectively preventing down leakage. The lining fabric is bonded to the outer fabric with adhesive strips, forming a unified whole. This effectively prevents the garment from deforming during wear or washing, ensuring garment quality and improving the user experience.
[0004] Currently, the bonding of the inner fabric to the outer fabric is mostly done in two steps. First, the adhesive strip is placed on the outer fabric and pressed together using a heat press. Then, the inner fabric is placed on the adhesive strip and pressed together using a heat press. This two-step bonding method involves many steps, is complex, and time-consuming, impacting garment production efficiency. Furthermore, during the bonding process, relative movement can easily occur between the outer fabric and the adhesive strip, and between the adhesive strip and the inner fabric, affecting the bonding position and thus the quality of the garment. In addition, the position of the adhesive strip between the outer and inner fabrics, as well as the positions of the outer fabric, adhesive strip, and inner fabric during heat pressing, require precise control by the workers, demanding a high level of bonding skill.
[0005] Therefore, there is an urgent need for an adhesive tooling and adhesive method for clothing to solve the above problems. Summary of the Invention
[0006] The purpose of this application is to provide an adhesive tooling and adhesive method for clothing, which improves the efficiency of bonding the outer fabric to the inner fabric, ensures the quality of clothing production, and reduces the adhesive skills required of workers.
[0007] To achieve this objective, the following technical solution is adopted in this application:
[0008] On one hand, a bonding fixture for garments is provided, wherein the outer fabric and the inner lining are bonded together by a plurality of adhesive strips. This bonding fixture for garments includes:
[0009] The base plate and the cover plate are stacked together.
[0010] The positioning component is movably positioned between the base plate and the cover plate. The positioning component has an adhesive position that overlaps with the base plate and an installation position that is angled to the base plate or separate from the base plate. In the adhesive position, the outer fabric can be laid flat between the base plate and the positioning component, and the inner lining can be laid flat between the positioning component and the cover plate. The positioning component has positioning holes that correspond one-to-one with several adhesive strips, and the adhesive strips are placed in the corresponding positioning holes. In the installation position, the positioning component has a placement opening, through which the outer fabric can be placed onto the base plate.
[0011] Optionally, the positioning component includes a first movable member and a second movable member, both of which are bendable. The first movable member is provided with a first concave-convex portion, and the second movable member is provided with a second concave-convex portion. In the adhesive position, the first concave-convex portion and the second concave-convex portion are fitted together with a gap, and the positioning hole is formed by the first concave-convex portion and the second concave-convex portion. In the installation position, the first movable member and the second movable member are bent relative to the base plate, and the placement opening is located between the first concave-convex portion and the second concave-convex portion.
[0012] Optionally, the adhesive fitting for clothing includes a first connector and a second connector, wherein the first movable part is bonded to the base plate via the first connector, and the second movable part is bonded to the base plate via the second connector.
[0013] Optionally, the positioning component includes a first movable member and a second movable member that both slide in cooperation with the base plate. The first movable member is provided with a first concave-convex portion, and the second movable member is provided with a second concave-convex portion. When in the adhesive position, the first concave-convex portion and the second concave-convex portion are fitted together with a gap, and the positioning hole is formed by the first concave-convex portion and the second concave-convex portion. When the positioning component is driven to switch from the adhesive position to the installation position, the first movable member and the second movable member slide relative to the base plate, and the first concave-convex portion and the second concave-convex portion move in a direction away from each other, and a placement opening is gradually formed between the first concave-convex portion and the second concave-convex portion.
[0014] Optionally, the bonding fixture for garments also includes a pressing element, which, when in the bonding position, is located between the positioning component and the lining fabric and presses against the ends of several adhesive strips.
[0015] Optionally, both the positioning components and the cover plate are made of high-temperature paper.
[0016] On the other hand, a bonding method for garments is provided, which uses the aforementioned bonding fixture for garments to bond the outer fabric and the inner lining, including the following steps:
[0017] S1. Lay the outer fabric flat on the base plate through the placement opening;
[0018] S2. Drive the positioning component from the installation position to the bonding position and place the adhesive strip into the corresponding positioning hole;
[0019] S3. Lay the liner flat on the positioning assembly and place the cover plate on the liner;
[0020] S4. Use an adhesive device to press the cover plate so that the adhesive strips bond the outer fabric to the inner fabric.
[0021] Optionally, the positioning component includes a first movable member and a second movable member, both of which are bendable. The first movable member is provided with a first concave-convex portion, and the second movable member is provided with a second concave-convex portion that can be engaged with the first concave-convex portion.
[0022] When driving the positioning component from the installation position to the bonding position in step S2, the following steps are included: flattening the bent first movable part and the second movable part, and driving the first concave and convex parts and the second concave and convex parts to approach each other until the first movable part and the second movable part are laid flat on the outer fabric and the first concave and convex parts and the second concave and convex parts are interlocked.
[0023] Optionally, after step S4, the following steps are also included: removing the cover plate from the inner fabric, separating the bottom plate from the outer fabric, and removing the positioning component from between the outer fabric and the inner fabric.
[0024] Optionally, the bonding tooling for garments also includes a press-fitting element located between the positioning component and the lining fabric;
[0025] The steps following step S2 and before step S3 include: laying the pressed part flat on the ends of several adhesive strips;
[0026] Step S4 is followed by the following step: removing the press-fit component from between the positioning component and the inner lining.
[0027] Compared with the prior art, the beneficial effects of this application are as follows:
[0028] This application provides a bonding fixture and method for garments. First, a positioning component is switched to the installation position, allowing the outer fabric to be placed on the base plate through the placement opening. Then, the positioning component is switched from the installation position to the bonding position, and an adhesive strip is placed into the positioning hole. The underlayer fabric is then laid flat on the positioning component. At this point, the underlayer fabric, positioning component, and outer fabric are stacked, and the adhesive strip is positioned between the underlayer fabric and the outer fabric. Finally, a cover plate is placed on the underlayer fabric, and the cover plate is pressed using a bonding device. During the pressing process, the base plate provides support, and the cover plate provides pressure, stably clamping the underlayer fabric, adhesive strip, and outer fabric between the cover plate and the base plate. This restricts movement of the underlayer fabric and outer fabric, ensuring garment production quality. When placing the adhesive strip, the positioning hole allows for accurate and rapid placement on the outer fabric, eliminating the need for manual control by workers, reducing the skill requirements for bonding, and ensuring the accuracy of the adhesive strip's placement. During subsequent pressing, the positioning hole further restricts the movement of the adhesive strip, ensuring garment production quality. Furthermore, compared to the existing technology which requires two bonding operations, the bonding fixture and bonding method provided in this application only require one bonding operation, significantly improving the efficiency of bonding the outer fabric to the inner lining. Attached Figure Description
[0029] Figure 1 is an exploded view of the adhesive workwear for clothing provided in this application;
[0030] Figure 2 is a plan view of the base plate of the adhesive workwear for clothing provided in this application;
[0031] Figure 3 is a plan view of the positioning component of the adhesive workwear for clothing provided in this application;
[0032] Figure 4 is a plan view of the positioning assembly and base plate of the adhesive garment for clothing provided in this application;
[0033] Figure 5 is a plan view of the cover plate of the adhesive garment for clothing provided in this application;
[0034] Figure 6 is a plan view of the pressing part of the adhesive tooling for clothing provided in this application;
[0035] Figure 7 is a flowchart of the bonding method for clothing provided in this application.
[0036] In the diagram: 100, outer fabric; 200, lining fabric; 300, adhesive strip; 1, base plate; 11, positioning line; 2, cover plate; 3, positioning assembly; 31, positioning hole; 32, first movable part; 321, first concave-convex part; 33, second movable part; 331, second concave-convex part; 41, first connecting part; 42, second connecting part; 5, pressing part. Detailed Implementation
[0037] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the application and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present application, not the entire structure.
[0038] In the description of this application, unless otherwise expressly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0039] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature being directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature being directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0040] In the description of this embodiment, the terms "upper," "lower," "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application. In addition, the terms "first" and "second" are used only for distinction in description and have no special meaning.
[0041] Example 1
[0042] As shown in Figures 1 to 6, this embodiment provides an adhesive tooling for clothing, which improves the efficiency of bonding the outer fabric 100 to the inner fabric 200, ensures the quality of clothing production, and reduces the requirements for the adhesive skills of workers.
[0043] Referring to Figure 1, the outer fabric 100 and the inner fabric 200 are bonded together by a plurality of adhesive strips 300. The bonding fixture for clothing includes a base plate 1, a cover plate 2, and a positioning component 3. The base plate 1 and the cover plate 2 are stacked. The positioning component 3 is movably disposed between the base plate 1 and the cover plate 2. The positioning component 3 has a bonding position that is stacked with the base plate 1 and an installation position that is angled to the base plate 1 or separated from the base plate 1. In the bonding position, the outer fabric 100 can be laid flat between the base plate 1 and the positioning component 3, and the inner fabric 200 can be laid flat between the positioning component 3 and the cover plate 2. The positioning component 3 has positioning holes 31 that correspond one-to-one with the plurality of adhesive strips 300, and the adhesive strips 300 can be placed in the corresponding positioning holes 31. In the installation position, the positioning component 3 has a placement opening (not shown in the figure), and the outer fabric 100 can be placed on the base plate 1 through the placement opening.
[0044] The bonding fixture for garments provided in this embodiment first switches the positioning component 3 to the installation position, allowing the outer fabric 100 to be placed onto the base plate 1 through the placement opening. Then, the positioning component 3 is switched from the installation position to the bonding position, and the adhesive strip 300 is placed into the positioning hole 31. The underlay fabric 200 is then laid flat on the positioning component 3. At this point, the underlay fabric 200, the positioning component 3, and the outer fabric 100 are stacked, and the adhesive strip 300 is positioned between the underlay fabric 200 and the outer fabric 100. Finally, the cover plate 2 is placed on the underlay fabric 200, and the cover plate 2 is pressed using a bonding device. During the pressing process, the base plate 1 provides support, and the cover plate 2 provides pressure, ensuring that the underlay fabric 200, the adhesive strip 300, and the outer fabric 100 are stably clamped between the cover plate 2 and the base plate 1, thus restricting the movement of the underlay fabric 200 and the outer fabric 100 and ensuring the quality of garment production. When placing the adhesive strip 300, the positioning hole 31 allows the adhesive strip 300 to be accurately and quickly placed on the outer fabric 100 without manual control by the operator, reducing the skill requirements for the operator and ensuring the accuracy of the adhesive strip 300's bonding position. During subsequent ironing, the positioning hole 31 restricts the movement of the adhesive strip 300, further ensuring the quality of garment production. Furthermore, compared to existing technologies that require two bonding operations, the bonding fixture and method provided in this application only require one bonding operation, significantly improving the efficiency of bonding the outer fabric 100 to the inner fabric 200.
[0045] In this embodiment, referring to Figure 2, a positioning line 11 with the same cross-sectional shape as the outer fabric 100 is provided on the base plate 1. The outer fabric 100 can be quickly laid on the base plate 1 according to the positioning line 11, improving the efficiency and accuracy of the outer fabric 100 laying. In other embodiments, a positioning groove with the same cross-sectional shape as the outer fabric 100 is provided on the base plate 1. The outer fabric 100 is laid flat in the positioning groove, which can improve the efficiency and accuracy of the outer fabric 100 laying. The groove wall can also restrain the movement of the outer fabric 100, ensuring the quality of garment production.
[0046] For example, the base plate 1 is made of a high-temperature resistant material such as polypropylene, and the cover plate 2 is made of high-temperature paper. On the one hand, the base plate 1 and the cover plate 2 will not be damaged during the heat pressing process. On the other hand, the cover plate 2 will not affect the heat transfer, so that the adhesive strip 300 can soften and bond the outer fabric 100 and the inner fabric 200.
[0047] For example, the adhesive strip 300 is a double-sided adhesive strip 300, and the bonding equipment is a heat press.
[0048] In an optional embodiment, referring to Figures 1 and 3, the positioning component 3 includes a first movable member 32 and a second movable member 33, both of which are bendable. The first movable member 32 is provided with a first concave-convex portion 321, and the second movable member 33 is provided with a second concave-convex portion 331. In the adhesive position, the first concave-convex portion 321 and the second concave-convex portion 331 are fitted together with a gap, and the positioning hole 31 is formed by the first concave-convex portion 321 and the second concave-convex portion 331. In the installation position, the first movable member 32 and the second movable member 33 are bent relative to the base plate 1, and the placement opening is located between the first concave-convex portion 321 and the second concave-convex portion 331. After the outer fabric 100 and the inner fabric 200 are bonded together, when the positioning component 3 is switched from the bonding position to the installation position, the angle between the first movable part 32 and the second movable part 33 and the base plate 1 is changed by bending the first movable part 32 and the second movable part 33, and the gap between the first concave and convex parts 321 and the second concave and convex parts 331 gradually increases, so that the first movable part 32 and the second movable part 33 can be pulled out from between the outer fabric 100 and the inner fabric 200 without remaining between the outer fabric 100 and the inner fabric 200, thus not affecting the subsequent production of the garment; when the positioning component 3 is switched from the installation position to the bonding position... The first movable part 32 and the second movable part 33 are bent so that the first movable part 32 and the second movable part 33 can gradually be laid flat on the outer fabric 100. The first movable part 32 and the second movable part 33 are both stacked with the base plate 1. The first concave and convex parts 321 and the second concave and convex parts 331 are fitted together so that the first concave and convex parts 321 and the second concave and convex parts 331 can form positioning holes 31 between each other after they are fitted together. The setting of the first concave and convex parts 321 and the second concave and convex parts 331 allows the first movable part 32 and the second movable part 33 to be bent to form a placement opening, and at the bonding position, they can also form positioning holes 31 without affecting each other.
[0049] In this embodiment, the shapes of the first concave-convex portion 321 and the second concave-convex portion 331 are determined by the number of adhesive strips 300 and the positions where the adhesive strips 300 are bonded. Specifically, referring to Figures 1 and 3, four adhesive strips 300 are provided. The first concave-convex portion 321 includes two first protrusions, and three first grooves are formed between the two first protrusions. Correspondingly, the second concave-convex portion 331 includes three second protrusions, and two second grooves are formed between the three second protrusions. The two first protrusions are fitted into the two second grooves in a one-to-one correspondence, and the three first grooves are fitted into the three second protrusions in a one-to-one correspondence. Four positioning holes 31 are formed between the first concave-convex portion 321 and the second concave-convex portion 331.
[0050] Furthermore, when the bonding position is established, the cross-sectional shape of the whole formed by the first movable part 32 and the second movable part 33 is the same as the cross-sectional shape of the outer fabric 100, so that after the positioning component 3 is placed, the staff can still observe the position of the outer fabric 100 and adjust the position of the outer fabric 100 to ensure the quality of the garment after bonding.
[0051] For example, the positioning component 3 is made of high-temperature paper, which will not be damaged during the heat pressing process and will not affect the heat transfer, so that the adhesive strip 300 can be softened smoothly for bonding.
[0052] In this embodiment, referring to Figures 3 and 4, the adhesive fitting for clothing also includes a first connector 41 and a second connector 42. The first movable part 32 is bonded to the base plate 1 through the first connector 41, and the second movable part 33 is bonded to the base plate 1 through the second connector 42. This allows the positioning component 3 to be connected to the base plate 1 in both the installation and bonding positions, eliminating the need to repeatedly disassemble and reassemble the positioning component 3 on the base plate 1, thus improving the bonding efficiency and preventing the positioning component 3 from being lost due to being left lying around.
[0053] For example, both the first connector 41 and the second connector 42 are adhesive tape. The adhesive tape sticks the end of the first movable member 32 away from the second movable member 33 and the end of the second movable member 33 away from the first movable member 32 to the base plate 1. The adhesive tape achieves bonding without affecting the bending of the first movable member 32 and the second movable member 33.
[0054] In another optional embodiment, the positioning component 3 includes a first movable member 32 and a second movable member 33, both of which slide in cooperation with the base plate 1. The first movable member 32 is provided with a first concave-convex portion 321, and the second movable member 33 is provided with a second concave-convex portion 331. When in the adhesive position, the first concave-convex portion 321 and the second concave-convex portion 331 are fitted together with a gap, and the positioning hole 31 is formed by the first concave-convex portion 321 and the second concave-convex portion 331. When the positioning component 3 is driven to switch from the adhesive position to the installation position, the first movable member 32 and the second movable member 33 slide relative to the base plate 1, and the first concave-convex portion 321 and the second concave-convex portion 331 move in a direction away from each other, and a placement opening is gradually formed between the first concave-convex portion 321 and the second concave-convex portion 331. After the outer fabric 100 and the inner fabric 200 are bonded together, when the positioning component 3 is switched from the bonding position to the installation position, the first movable part 32 and the second movable part 33 are driven to slide relative to the base plate 1 in a direction away from each other, so that the first movable part 32 and the second movable part 33 can be pulled out from between the outer fabric 100 and the inner fabric 200, and the first movable part 32 and the second movable part 33 are separated from the base plate 1.
[0055] For example, the first movable member 32 is provided with a first operating part on the side opposite to the second movable member 33. The first operating part is configured to drive the first movable member 32 to slide. The second movable member 33 is provided with a second operating part on the side opposite to the first movable member 32. The second operating part is configured to drive the second movable member 33 to slide. When the positioning component 3 is driven to switch from the adhesive position to the installation position, pulling the first operating part and the second operating part can pull the first movable member 32 and the second movable member 33 out from between the outer fabric 100 and the inner fabric 200.
[0056] Optionally, referring to Figures 1 and 6, the bonding fixture for clothing also includes a pressing component 5. When in the bonding position, the pressing component 5 is located between the positioning component 3 and the inner fabric 200, and presses against the ends of several adhesive strips 300 to prevent the adhesive strips 300 from curling up and affecting the bonding effect.
[0057] For example, the pressing component 5 uses 200 strips of inner fabric.
[0058] Example 2
[0059] Referring to Figure 7, this embodiment provides a bonding method for clothing, using the bonding fixture for clothing from Embodiment 1 to bond the outer fabric 100 and the inner fabric 200, including the following steps:
[0060] S1. Lay the outer fabric 100 flat on the base plate 1 through the placement opening.
[0061] Step S1 specifically includes the following steps:
[0062] S11. Determine whether the positioning component 3 is in the installation position. If yes, proceed directly to step S12. If no, bend the first movable part 32 and the second movable part 33 to switch the positioning component 3 to the installation position.
[0063] S12. According to the markings on the positioning line 11, lay the outer fabric 100 flat on the base plate 1 through the placement opening.
[0064] S2. Drive the positioning component 3 from the installation position to the bonding position and place the adhesive strip 300 into the corresponding positioning hole 31.
[0065] Specifically, when driving the positioning component 3 from the installation position to the bonding position in step S2, the following steps are included: flattening the bent first movable part 32 and second movable part 33, and driving the first concave and convex part 321 and the second concave and convex part 331 to approach each other until the first movable part 32 and the second movable part 33 are laid flat on the outer fabric 100, and the first concave and convex part 321 and the second concave and convex part 331 are fitted together. At this time, a positioning hole 31 is formed between the first concave and convex part 321 and the second concave and convex part 331.
[0066] S3. Lay the liner 200 flat on the positioning component 3, and place the cover plate 2 on the liner 200.
[0067] In this embodiment, after step S2 and before step S3, the following steps are also included: laying the pressing component 5 flat on the ends of several adhesive strips 300 to press the several adhesive strips 300 together and prevent the adhesive strips 300 from curling.
[0068] Furthermore, when laying the inner fabric 200, it is necessary to align the inner fabric 200 with the outer fabric 100 to ensure the quality of garment production.
[0069] S4. Use an adhesive device to press the cover plate 2 so that the adhesive strip 300 bonds the outer fabric 100 to the inner fabric 200.
[0070] Specifically, the bonding equipment uses a heat press. The bonding fixture, along with the inner fabric 200, adhesive strip 300, and outer fabric 100, are moved onto the heat press as a whole. The heat press is turned on, and the pressure plate of the heat press applies pressure to the cover plate 2. The heating plate of the heat press heats the adhesive strip 300 placed on the bonding fixture. Under the action of high temperature, the adhesive strip 300 softens and flows in the positioning hole 31, thereby tightly adhering to the outer fabric 100 and the inner fabric 200. Subsequently, the heat press is turned off and the bonding fixture is removed from the heat press. The bonding fixture, outer fabric 100, adhesive strip 300, and inner fabric 200 are cooled. The softened adhesive strip 300 solidifies, thereby completing the bonding of the outer fabric 100 and the inner fabric 200.
[0071] Furthermore, after step S4, the following steps are also included: removing the pressing component 5 from between the positioning component 3 and the inner lining 200.
[0072] S5. Remove the cover plate 2 from the inner fabric 200, separate the bottom plate 1 from the outer fabric 100, and remove the positioning component 3 from between the outer fabric 100 and the inner fabric 200 so that the bonding fixture will not affect the next processing step of the newly bonded outer fabric 100 and inner fabric 200.
[0073] Specifically, when the positioning component 3 is pulled out from between the outer fabric 100 and the inner fabric 200, the first movable part 32 and the second movable part 33 bend, forming a placement opening between the first concave-convex part 321 and the second concave-convex part 331, that is, the positioning component 3 switches to the installation position. At this time, the bonding fixture can be used to perform the bonding operation of the next garment, improving the efficiency of garment manufacturing.
[0074] Obviously, the above embodiments of this application are merely examples for clear illustration and are not intended to limit the implementation of this application. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the scope of protection of this application. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the scope of protection of the claims of this application.
Claims
1. A bonding garment for clothing, wherein an outer fabric (100) and a lining fabric (200) are bonded together by a plurality of adhesive strips (300), characterized in that, The bonding fixture for garments includes: A base plate (1) and a cover plate (2) are stacked together; A positioning component (3) is movably disposed between the base plate (1) and the cover plate (2). The positioning component (3) has an adhesive position that overlaps with the base plate (1) and an installation position that is angled to or separated from the base plate (1). In the adhesive position, the outer fabric (100) can be laid flat between the base plate (1) and the positioning component (3), and the inner lining fabric (200) can be laid flat between the positioning component (3) and the cover plate (2). The positioning component (3) has positioning holes (31) that correspond one-to-one with a plurality of adhesive strips (300), and the adhesive strips (300) are placed in the corresponding positioning holes (31). In the installation position, the positioning component (3) has a placement opening, and the outer fabric (100) can be placed onto the base plate (1) through the placement opening. The positioning component (3) includes a first movable part (32) and a second movable part (33) that are both bendable. The first movable part (32) is provided with a first concave-convex part (321), and the second movable part (33) is provided with a second concave-convex part (331). In the bonding position, the first concave-convex part (321) and the second concave-convex part (331) are fitted together with a gap. The positioning hole (31) is formed by the first concave-convex part (321) and the second concave-convex part (331). In the installation position, the first movable part (32) and the second movable part (33) are bent relative to the base plate (1). The placement opening is located between the first concave-convex part (321) and the second concave-convex part (331).
2. The adhesive garment for clothing according to claim 1, characterized in that, The adhesive fitting for clothing includes a first connector (41) and a second connector (42). The first movable part (32) is bonded to the base plate (1) through the first connector (41), and the second movable part (33) is bonded to the base plate (1) through the second connector (42).
3. The adhesive garment for clothing according to claim 1, characterized in that, The positioning component (3) includes a first movable part (32) and a second movable part (33) that are slidably engaged with the base plate (1). The first movable part (32) is provided with a first concave-convex portion (321), and the second movable part (33) is provided with a second concave-convex portion (331). In the adhesive position, the first concave-convex portion (321) and the second concave-convex portion (331) are fitted together with a gap, and the positioning hole (31) is formed by the first concave-convex portion (321) and the second concave-convex portion (331). When the positioning component (3) is driven to switch from the adhesive position to the installation position, the first movable part (32) and the second movable part (33) slide relative to the base plate (1), and the first concave-convex portion (321) and the second concave-convex portion (331) move away from each other. The placement opening is gradually formed between the first concave-convex portion (321) and the second concave-convex portion (331).
4. The adhesive garment for clothing according to any one of claims 1-3, characterized in that, The adhesive fitting for clothing also includes a pressing component (5), which, when in the adhesive position, is located between the positioning component (3) and the inner fabric (200) and presses against the ends of several adhesive strips (300).
5. The adhesive garment for clothing according to any one of claims 1-3, characterized in that, Both the positioning component (3) and the cover plate (2) are made of high-temperature paper.
6. A bonding method for clothing, characterized in that, Bonding the outer fabric (100) and the inner lining (200) using the bonding fixture for garments according to any one of claims 1-5 includes the following steps: S1. Lay the outer fabric (100) flat on the base plate (1) through the placement opening; S2. Drive the positioning component (3) from the installation position to the bonding position and place the adhesive strip (300) into the corresponding positioning hole (31); S3. Lay the lining cloth (200) flat on the positioning component (3) and place the cover plate (2) on the lining cloth (200); S4. Use an adhesive device to press the cover plate (2) so that the adhesive strip (300) bonds the outer fabric (100) to the inner fabric (200).
7. The bonding method for clothing according to claim 6, characterized in that, The positioning component (3) includes a first movable part (32) and a second movable part (33) that are both bendable. The first movable part (32) is provided with a first concave-convex part (321), and the second movable part (33) is provided with a second concave-convex part (331) that can be fitted with the first concave-convex part (321). When driving the positioning component (3) from the installation position to the bonding position in step S2, the following steps are included: flattening the bent first movable part (32) and the second movable part (33), and driving the first concave and convex part (321) and the second concave and convex part (331) to approach each other until the first movable part (32) and the second movable part (33) are laid flat on the outer fabric (100), and the first concave and convex part (321) and the second concave and convex part (331) are engaged with each other.
8. The bonding method for clothing according to claim 6, characterized in that, Step S4 is followed by the following steps: removing the cover plate (2) from the inner lining fabric (200), separating the bottom plate (1) from the outer fabric (100), and removing the positioning component (3) from between the outer fabric (100) and the inner lining fabric (200).
9. The bonding method for clothing according to claim 6, characterized in that, The adhesive tooling for clothing also includes a pressing member (5) located between the positioning component (3) and the inner fabric (200); The steps following step S2 and before step S3 include: laying the pressing component (5) flat on the ends of several adhesive strips (300); Step S4 is followed by the following step: removing the pressing member (5) from between the positioning component (3) and the inner lining (200).