A modular fabric splicing device for easy disassembly and cleaning
By using a modular splicing structure and sliding snap-fit method, the compatibility and cleanliness issues of existing garment fabric support devices have been solved, enabling convenient disassembly, cleaning, and flexible adjustment, thereby improving the quality and efficiency of fabric production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- VERSINO FASHION CO LTD SHENZHEN
- Filing Date
- 2025-08-08
- Publication Date
- 2026-07-03
AI Technical Summary
Existing garment fabric support devices are difficult to adjust flexibly according to the size and material of different fabrics, resulting in mismatched support, easy slippage or uneven force, and difficulty in cleaning, with the accumulation of pollutants affecting the quality of the fabric.
It adopts a modular splicing structure, connecting the support plate and the base frame through a sliding snap-fit method. The support plate is removable and washable, and elastic elements are used to ensure the stability of the snap-fit. The sliding groove and toothed slot cooperate to achieve convenient disassembly and assembly.
It enables flexible adjustment and convenient disassembly and cleaning of the support device, avoids pollutant residue, ensures fabric cleanliness, and improves production efficiency.
Smart Images

Figure CN224448548U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of garment fabric production and processing technology, specifically to a modular splicing garment fabric device that is easy to disassemble and clean. Background Technology
[0002] In the production and processing of garment fabrics, specialized support devices are needed to place and transport spare or finished fabrics to ensure the stability of the fabrics during the transfer process and to avoid problems such as wrinkles and contamination. The adaptability and cleanliness of these support devices directly affect the subsequent processing quality and production efficiency of the fabrics. Therefore, support devices that are flexible, easy to adjust and maintain have become an important requirement in the garment fabric production field.
[0003] However, most existing garment fabric support devices are fixed structures, which are difficult to adjust flexibly according to the size and material of different fabrics. This leads to a mismatch between the support surface and the fabric, which can easily cause the fabric to slip or be subjected to uneven force. At the same time, since the device is difficult to disassemble, dust, fibers and other pollutants will accumulate on the surface after long-term use, making cleaning difficult. These pollutants may contaminate the fabrics placed later, affecting the fabric quality and causing inconvenience to production. To address this, we propose a modular splicing garment fabric device that is easy to disassemble and clean. Utility Model Content
[0004] To address the shortcomings of existing technologies, this invention provides a modular splicing garment fabric device that is easy to disassemble and clean, thus solving the aforementioned problems.
[0005] To achieve the above-mentioned objectives, this utility model provides the following technical solution: a modular splicing garment fabric device that is easy to disassemble and clean, comprising:
[0006] The base frame is in the form of a rectangular plate structure, and four rectangular slots are equally spaced inside the base frame;
[0007] A modular support assembly is disposed on the top of the base frame. The modular support assembly includes a support plate, a clamping member, and an elastic member. The main body of the modular support assembly is the support plate. The bottom of the support plate is provided with a clamping member. The top of the clamping member is slidably connected to the inside of the support plate. The elastic member is provided between the outer side of the top of the clamping member and the support plate. The bottom of the clamping member is slidably engaged with the inside of the base frame.
[0008] Preferably, the base frame has five equally spaced sliding grooves inside, and the sliding grooves are intersecting with the rectangular slots. The base frame also has two axisymmetrically distributed transport holes at the bottom, which are perpendicular to the sliding grooves.
[0009] Preferably, both ends of the slide groove are open structures, the internal cross-section of the slide groove is inverted T-shaped, and a set of toothed grooves are equally distributed on both opposite sides of the top of the slide groove, and corresponding locking and clamping parts are engaged inside the slide groove.
[0010] Preferably, the top of the support plate is a square structure, and the bottom of the support plate is provided with a matching slider. The matching slider is a cuboid structure and is slidably connected to the top groove of the slide. The bottom side of the support plate is provided with a set of reinforcing ribs arranged in a ring array. The top center of the support plate is provided with a control groove, and the bottom of the control groove is provided with a sliding hole. The sliding hole passes through the matching slider, and the inner wall of the sliding hole is provided with four sliding cavities arranged in a ring array.
[0011] Preferably, the clamping member has a set of toothed blocks evenly distributed on both sides of its top. The toothed blocks are engaged with toothed slots. A sliding rod is provided at the center of the top of the clamping member. The sliding rod is placed inside the sliding hole. Four guide strips are arranged in a circular array at the bottom of the outer side of the sliding rod. The guide strips are slidably connected to the sliding cavity. A limiting ring is provided at the top of the guide strip group on the outer side of the sliding rod. The limiting ring is slidably connected to the inner wall of the sliding hole. A control plate is provided at the top shaft end of the sliding rod. The control plate is placed inside the control groove.
[0012] Preferably, the bottom of the elastic element is provided with a first mating ring, the bottom of the first mating ring being in contact with the top of the sliding cavity assembly, and the top of the elastic element is provided with a second mating ring, the second mating ring being in contact with the bottom of the limiting ring, and the first mating ring and the second mating ring have the same structure.
[0013] Compared with the prior art, this utility model provides a modular splicing garment fabric device that is easy to disassemble and clean, and has the following beneficial effects:
[0014] This modular fabric assembly device, designed for easy disassembly and cleaning, utilizes a sliding snap-fit connection between the modular support components and the base frame. When cleaning is required, simply press the control plate on the support plate to disengage the toothed latches from the toothed slots in the base frame's sliding groove. The support plate can then slide out and be removed. This simple and convenient disassembly method requires no complex tools and allows for quick and easy separation of each support plate and other components for cleaning, effectively removing accumulated dust, fibers, and other contaminants. After cleaning, the support plate is slid back into the sliding groove using the sliding block, the control plate is released, and the toothed latches re-engage with the toothed slots under the elastic force of the elastic components, completing the assembly. This convenient disassembly and cleaning process effectively prevents residual contaminants from polluting subsequent fabric placement, ensuring fabric cleanliness. Attached Figure Description
[0015] Figure 1This is a cross-sectional schematic diagram of the modular splicing garment fabric device of this utility model that is easy to disassemble and clean.
[0016] Figure 2 for Figure 1 A magnified view of part A in the diagram;
[0017] Figure 3 This is a cross-sectional schematic diagram of the base frame of this utility model;
[0018] Figure 4 This is a cross-sectional schematic diagram of the support plate of this utility model;
[0019] Figure 5 This is a schematic diagram of the clamping component of this utility model;
[0020] Figure 6 This is a schematic diagram of the elastic element of this utility model.
[0021] In the diagram: 1. Base frame; 2. Support plate; 3. Clamping component; 4. Elastic component; 5. Slide groove; 6. Toothed slot; 7. Transfer insertion hole; 8. Rectangular slot; 9. Control groove; 10. Slide hole; 11. Mating slider; 12. Slide cavity; 13. Reinforcing rib; 14. Toothed block; 15. Slide rod; 16. Guide slide bar; 17. Limiting ring; 18. Control plate; 19. Mating ring one; 20. Mating ring two. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figure 1-6 This utility model provides a technical solution;
[0024] A modular garment fabric assembly device that is easy to disassemble and clean includes:
[0025] The base frame 1 is a rectangular plate structure, and four rectangular slots 8 are equally spaced inside the base frame 1.
[0026] A modular support assembly is set on the top of the base frame 1. The modular support assembly includes a support plate 2, a clamping member 3, and an elastic member 4. The main body of the modular support assembly is the support plate 2. The bottom of the support plate 2 is provided with a clamping member 3. The top of the clamping member 3 is slidably connected to the inside of the support plate 2. An elastic member 4 is provided between the outer side of the top of the clamping member 3 and the support plate 2. The bottom of the clamping member 3 is slidably engaged with the inside of the base frame 1.
[0027] Furthermore, the base frame 1 has five equally spaced sliding grooves 5 inside, and the sliding grooves 5 are intersected with the rectangular slots 8. The base frame 1 also has two axisymmetrically distributed transport insertion holes 7 at its bottom, which are perpendicular to the sliding grooves 5. The rectangular slots 8 of the base frame 1 can effectively reduce the overall weight, achieve lightweighting, and facilitate subsequent handling. In addition, the transport insertion holes 7 enhance the overall load-bearing capacity and facilitate cooperation with forklifts and other equipment.
[0028] Furthermore, both ends of the slide groove 5 are open structures, the internal cross section of the slide groove 5 is inverted T-shaped, and a set of toothed slots 6 are equally distributed on both opposite sides of the top of the slide groove 5. The slide groove 5 is also fitted with a corresponding fastening member 3. The slide groove 5 provides adjustment and fixing space for the modular support assembly.
[0029] Furthermore, the top of the support plate 2 is a square structure, and the bottom of the support plate 2 is provided with a matching slider 11. The matching slider 11 is a cuboid structure and is slidably connected to the top groove of the slide groove 5. The bottom side of the support plate 2 is provided with a set of reinforcing ribs 13 arranged in a ring array. The top center of the support plate 2 is provided with a control groove 9, and the bottom of the control groove 9 is provided with a sliding hole 10. The sliding hole 10 passes through the matching slider 11, and the inner wall of the sliding hole 10 is provided with four sliding cavities 12 arranged in a ring array. During the production and processing of clothing fabrics, the modular support components can be freely replaced according to the fabric material, and the overall area of the splicing between the modular support components can be freely adjusted according to the fabric size to achieve the best fit support surface. The overall modular support components are easy to disassemble and can be disassembled and cleaned immediately to prevent contamination of the fabrics that are subsequently handled or placed.
[0030] Furthermore, the top two opposite sides of the clamping component 3 are provided with a set of toothed blocks 14 evenly distributed, which are engaged with the toothed slots 6. A sliding rod 15 is provided at the center of the top of the clamping component 3, and the sliding rod 15 is placed inside the sliding hole 10. Four guide rails 16 arranged in a circular array are provided on the bottom outer side of the sliding rod 15, which are slidably connected to the sliding cavity 12. A limiting ring 17 is provided on the top of the guide rails 16 on the outer side of the sliding rod 15, and the limiting ring 17 is slidably connected to the inner wall of the sliding hole 10. A control plate 18 is provided at the top shaft end of the sliding rod 15, and the control plate 18 is placed inside the control groove 9. Replacement and disassembly begin from the outer modular support assembly, specifically... Pressing the clamping member 3 inside the support plate 2 causes the control plate 18 at the top of the clamping member 3 to slide down inside the control groove 9. The control plate 18 is lower than the top opening of the control groove 9, so no downward pressure is applied to the control plate 18 when the fabric is stacked, ensuring the safety and stability of the clamping. The slide rod 15 of the clamping member 3 slides downward, thus compressing the elastic member 4. At this time, the toothed block 14 of the clamping member 3 loses its engagement with the toothed groove 6, and the support plate 2 can be slid until it is disengaged from the slide groove 5. Conversely, it can be assembled. The overall connection is convenient, greatly improving the efficiency of disassembly and cleaning. The spacing and area can be freely adjusted, making it highly practical. The guide slide 16 and the slide cavity 12 slide together to prevent the support plate 2 from rotating, improving stability.
[0031] Furthermore, the bottom of the elastic element 4 is provided with a mating ring 19, the bottom of which is in contact with the top of the sliding cavity 12, and the top of the elastic element 4 is provided with a mating ring 20, which is in contact with the bottom of the limiting ring 17. The mating ring 19 and the mating ring 20 have the same structure. The elastic element 4 is always in a compressed state, and its rebound force effectively ensures the stability of the toothed block 14 and the toothed groove 6.
[0032] Structural Description:
[0033] Base frame 1: The whole is a rectangular plate structure with equidistant rectangular slots 8 and cross-distributed sliding grooves 5 inside. There are handling insertion holes 7 at the bottom. It is the basic load-bearing structure of the device.
[0034] Support plate 2: The top is square, the bottom has a matching slider 11 and reinforcing ribs 13, and the top center has a control groove 9. It is the main body of the modular support assembly and is used to support the fabric.
[0035] Clamping component 3: The top has a toothed clamping block 14 and a sliding rod 15, which slides in cooperation with the support plate 2, and the bottom is clamped to the base frame 1, which serves to fix the support plate 2.
[0036] Elastic element 4: Located between the top outer side of the clamping element 3 and the support plate 2, it has a mating ring 19 at the bottom and a mating ring 20 at the top. It is always compressed to ensure stable clamping.
[0037] Slide 5: It is opened in the base frame 1, evenly distributed and intersecting with the rectangular slot 8, with open ends and toothed groove 6 inside, providing adjustment space for modular components;
[0038] Toothed grooves 6: They are evenly distributed on both sides of the top end inside the slide groove 5, and engage with the toothed blocks 14 of the clamping member 3 to fix the support plate 2.
[0039] Transport sockets 7 are symmetrically distributed at the bottom of the base frame 1 and perpendicular to the slide 5, which enhances the load-bearing capacity and facilitates cooperation with forklifts and other transport devices.
[0040] Rectangular slots 8: Equally distributed within the base frame 1, intersecting with the slide 5, which can reduce the overall weight and achieve lightweighting, making subsequent handling easier;
[0041] Control slot 9: It is located at the top center of the support plate 2, with a sliding hole 10 at the bottom, and the control plate 18 is placed inside, providing space for the control plate 18 to move.
[0042] Sliding hole 10: It passes through the sliding block 11 of the support plate 2 and is connected to the bottom of the control groove 9. The inner wall has a sliding cavity 12 for the sliding rod 15 of the clamping part 3 to slide.
[0043] Sliding slider 11: It has a cuboid structure at the bottom of the support plate 2 and slides in conjunction with the top groove of the slide groove 5, so that the support plate 2 can move along the slide groove 5;
[0044] Sliding cavity 12: It is arranged in a ring array on the inner wall of the sliding hole 10 and slides in cooperation with the guide slide bar 16 of the clamping member 3 to ensure the sliding stability of the clamping member 3;
[0045] Reinforcing ribs 13 are arranged in a ring array on the bottom side of the support plate 2 to enhance the structural strength of the support plate 2 and improve the support stability;
[0046] Toothed locking blocks 14 are evenly distributed on both sides of the top of the clamping member 3, and engage with the toothed locking grooves 6 of the slide groove 5 to fix the position of the support plate 2.
[0047] Slide rod 15: Located at the top center of the clamping part 3, placed inside the slide hole 10, with guide slide 16 and limit ring 17 on the outside, and connected to control plate 18 at the top;
[0048] Guide rails 16: They are arranged in a ring array on the bottom outer side of the slide bar 15 and slide in conjunction with the slide cavity 12 to prevent the support plate 2 from rotating and improve stability;
[0049] Limiting ring 17: Located on the top of the guide rail 16 on the outer side of the slide rod 15, it slides and engages with the inner wall of the slide hole 10 to limit the sliding of the clamping part 3;
[0050] Control plate 18: Located at the top shaft end of slide bar 15, placed in control groove 9. Pressing it can move the clamping part 3 down, making it easy to disassemble or adjust the support plate 2.
[0051] Matching ring 19: Located at the bottom of elastic element 4, it fits against the top of sliding cavity 12 and cooperates with matching ring 20 to assist elastic element 4 in its function;
[0052] Matching ring 20: Located at the top of the elastic element 4, it fits against the bottom of the limiting ring 17 and has the same structure as matching ring 19, enhancing the stability of the elastic element 4.
[0053] Working Principle: Install the modular splicing garment fabric device for easy disassembly and cleaning according to the diagram. This device achieves quick disassembly and installation through the sliding engagement and clamping fixation of multiple modular support components with the base frame 1. The base frame 1 has five equidistantly distributed sliding grooves 5 inside. The two ends of the sliding grooves 5 are open, and the internal cross-section is an inverted T-shape. Equidistant toothed slots 6 are opened on both sides of the top, providing adjustment and fixing space for the modular support components. The base frame 1 also has four equidistant rectangular slots 8, which can reduce the overall weight and achieve lightweighting. The two transport holes 7 at the bottom facilitate forklift handling. The main body of the modular support component is the support plate 2. The sliding slider 11 at its bottom slides with the top slot of the sliding groove 5, allowing the support plate 2 to move along the sliding groove 5. The control groove 9 at the top center of the support plate 2 has a sliding hole 10 that passes through the sliding slider 11. The four sliding cavities 12 on the inner wall of the sliding hole 10 slide with the guide rail 16 on the outside of the top sliding rod 15 of the clamping component 3. To ensure the stability of the clamping part 3 during sliding, the toothed blocks 14 on both sides of the top of the clamping part 3 engage with the toothed grooves 6 in the slide groove 5 to fix the support plate 2. The elastic element 4 between the top of the clamping part 3 and the support plate 2 is always in a compressed state. Its rebound force is transmitted through the mating ring 19 and the mating ring 20. The rebound force ensures that the toothed blocks 14 and the toothed grooves 6 are stably engaged. The control plate 18 on the top of the slide rod 15 is placed in the control groove 9. Pressing the control plate 18 can cause the slide rod 15 to move the clamping part 3 down, compress the elastic element 4, and disengage the toothed blocks 14 from the toothed grooves 6. At this time, the support plate 2 can slide along the slide groove 5 to adjust its position or disengage from the slide groove 5 to complete the disassembly. At the same time, the reinforcing ribs 13 at the bottom of the support plate 2 enhance the structural strength, and the position and number of multiple support plates 2 on the slide groove 5 can be freely adjusted according to the fabric size to form a suitable support area, achieving stable support for different fabrics, and also facilitating the disassembly and cleaning of one or more support plates 2.
[0054] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A modular spliced garment fabric arrangement for ease of removal for cleaning, characterised in that, include: The base frame (1) is a rectangular plate structure, and four rectangular slots (8) are equally spaced inside the base frame (1). A modular support assembly is disposed on the top of the base frame (1). The modular support assembly includes a support plate (2), a clamping member (3), and an elastic member (4). The main body of the modular support assembly is the support plate (2). The bottom of the support plate (2) is provided with a clamping member (3). The top of the clamping member (3) is slidably connected to the inside of the support plate (2). The elastic member (4) is provided between the outer side of the top of the clamping member (3) and the support plate (2). The bottom of the clamping member (3) is slidably engaged with the inside of the base frame (1).
2. A modular spliced garment fabric arrangement according to claim 1, wherein, The base frame (1) has five equally spaced sliding grooves (5) inside, and the sliding grooves (5) and the rectangular slots (8) are intersected. The base frame (1) has two axially symmetrically distributed transport holes (7) at the bottom, and the transport holes (7) are perpendicular to the sliding grooves (5).
3. A modular spliced garment fabric arrangement according to claim 2, wherein, The slide groove (5) has an open structure on both shaft ends. The internal cross section of the slide groove (5) is an inverted T-shape. A set of toothed slots (6) are provided on both opposite sides of the top of the slide groove (5) and are distributed at equal intervals. The slide groove (5) is also fitted with a corresponding fastening member (3).
4. The modular spliced garment fabric device of claim 1, wherein, The top of the support plate (2) is a square structure, and the bottom of the support plate (2) is provided with a matching slider (11). The matching slider (11) is a cuboid structure. The matching slider (11) is slidably connected to the top groove of the slide groove (5). The bottom side of the support plate (2) is provided with a set of reinforcing ribs (13) arranged in a ring array. The top center of the support plate (2) is provided with a control groove (9). The bottom of the control groove (9) is provided with a sliding hole (10). The sliding hole (10) passes through the matching slider (11). The inner wall of the sliding hole (10) is provided with four sliding cavities (12) arranged in a ring array.
5. The modular spliced garment fabric device of claim 3, wherein, The clamping member (3) has a set of toothed blocks (14) evenly distributed on both sides of its top. The toothed blocks (14) are engaged with the toothed slots (6). The clamping member (3) has a sliding rod (15) at its top center. The sliding rod (15) is placed inside the sliding hole (10). The bottom of the outer side of the sliding rod (15) has four guide strips (16) arranged in a ring array. The guide strips (16) are slidably connected to the sliding cavity (12). The top of the guide strips (16) on the outer side of the sliding rod (15) is provided with a limiting ring (17). The limiting ring (17) is slidably connected to the inner wall of the sliding hole (10). The top shaft end of the sliding rod (15) is provided with a control plate (18). The control plate (18) is placed inside the control groove (9).
6. The modular spliced garment fabric device of claim 1, wherein, The elastic element (4) has a mating ring 1 (19) at the bottom, the bottom of which is in contact with the top of the sliding cavity (12) group, and the elastic element (4) has a mating ring 2 (20) at the top, the mating ring 2 (20) being in contact with the bottom of the limiting ring (17). The mating ring 1 (19) and the mating ring 2 (20) have the same structure.