Natural cellulose composite jeans fabric stacking device
By designing automated placement racks and support components, the problem of time-consuming and labor-intensive operation of traditional denim fabric stacking devices has been solved, realizing automated and flat stacking of fabrics, improving processing efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BIEM L FDLKK GARMENT CO LTD
- Filing Date
- 2025-07-11
- Publication Date
- 2026-04-14
AI Technical Summary
Traditional natural cellulose composite denim fabric stacking devices require manual laying of the fabric, which is time-consuming and labor-intensive, reducing ease of use.
A stacking device including a placement rack, a support assembly, a toggle assembly, and a flattening assembly is designed. It uses an electric telescopic rod and a motor to drive the fabric to stack automatically, and combines guide wheels and screw adjustment to achieve automated flattening and positioning of the fabric.
It enables automated stacking of multi-layer fabrics, improves processing efficiency, ensures smooth and wrinkle-free fabric layers, and adapts to the stacking requirements of fabrics of different thicknesses.
Smart Images

Figure CN224118440U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fabric stacking technology, specifically a device for stacking denim fabric made of natural cellulose composite. Background Technology
[0002] Natural cellulose composite denim fabric, as a new type of environmentally friendly textile material, exhibits excellent performance characteristics in denim garment manufacturing. To integrate the advantages of different fabrics, the production process often requires the composite processing of multiple materials through layering and sewing or bonding techniques. This process demands that the fabrics be perfectly flat and precisely overlapped during layering to guarantee the final product's quality stability and wearing comfort.
[0003] Traditional stacking devices require manual laying of the fabric, but manually laying two layers of fabric is difficult, time-consuming, and labor-intensive, reducing the convenience of using the stacking device. To address this, we propose a stacking device for denim fabric made of natural cellulose composite. Utility Model Content
[0004] The technical problem to be solved by this utility model is to overcome the existing defects and provide a stacking device for denim fabric made of natural cellulose composite, which makes it convenient to stack the fabric together and can effectively solve the problems in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a stacking device for denim fabric made of natural cellulose composite, comprising a placement rack and a support assembly;
[0006] Placement rack: A movable rack is provided on the upper side. Two corresponding guide holes are opened on the lower side of the movable rack. Guide rods are slidably connected inside the guide holes. Two corresponding strip grooves are opened at the front and rear ends of the upper side of the placement rack. The guide rods are fixed inside the corresponding guide rods. Two corresponding first electric telescopic rods are installed on the left side inside the placement rack. The telescopic arms of the two first electric telescopic rods are fixed on the left side of the movable rack. Two corresponding second electric telescopic rods are installed on the upper side of the movable rack. Connecting frames are fixed on the telescopic arms of the two second electric telescopic rods. A fixing component is installed on the left end of the upper side of the placement rack. A toggle component is installed on the rear side of the connecting frame. Flattening components are installed on the left ends of the front and rear sides of the connecting frame.
[0007] Support assembly: includes a connecting column, a movable block, a bidirectional screw, a first motor, and a brush slip ring. Two corresponding rotating holes are opened on the left and right sides of the connecting frame. The connecting column is rotatably connected inside the two rotating holes. A strip-shaped opening is opened in the middle of the connecting column. Two corresponding movable blocks are slidably connected inside the strip-shaped opening. A threaded hole is opened in the middle of the movable block. The two threaded holes have opposite threads. A bidirectional screw is threadedly connected inside the two threaded holes. The bidirectional screw is welded from two threaded rods with opposite threads. The bidirectional screw is rotatably connected inside the strip-shaped opening. A mounting groove is opened at the front end of the circumferential surface of the connecting column. The first motor is installed inside the mounting groove. The output shaft of the first motor is fixed to the front end of the bidirectional screw. A brush slip ring is installed at the front end of the circumferential surface of the connecting column. A storage assembly is installed on the side of the movable block. The actuating assembly is connected to the connecting column. The support assembly drives the two movable rings to move.
[0008] Wherein: the input ends of the first electric telescopic rod, the second electric telescopic rod and the brush slip ring are all electrically connected to the output end of an external control switch group, and the output end of the brush slip ring is electrically connected to the input end of the first motor.
[0009] Furthermore, the storage assembly includes a moving ring, a turntable, and a storage roll. The moving ring is fixed to the surface of the moving block, and a storage roll is evenly distributed between the two moving rings. Two corresponding turntables are provided at the front and rear ends inside the storage roll. All the turntables are fixed to the two adjacent end faces of the two moving rings respectively. The storage roll is used to store the fabric that needs to be stacked.
[0010] Furthermore, the actuating assembly includes a second motor, a gear, and a gear ring. The second motor is mounted on the rear side of the connecting frame, and a gear is fixed on the output shaft of the second motor. A gear ring is fixed on the rear end of the circumferential surface of the connecting column. The gear meshes with the gear ring. The input end of the second motor is electrically connected to the output end of an external control switch group. The actuating assembly drives the connecting column to rotate.
[0011] Furthermore, the flattening assembly includes a fixing strip and a flattening rod. Two corresponding fixing strips are fixed to the left ends of the front and rear sides of the connecting frame, and a flattening rod is rotatably connected to the left end between the two fixing strips. By setting the flattening assembly, the flattening rod flattens the fabric when the connecting frame moves.
[0012] Furthermore, the fixing assembly includes a fixing frame, a third electric telescopic rod, and a fixing plate. The fixing frame is fixed on the upper side of the placement frame and is located at the left end of the connecting frame. The third electric telescopic rod is installed on the upper side of the fixing frame, and a fixing plate is fixed on the telescopic arm of the third electric telescopic rod. The input end of the third electric telescopic rod is electrically connected to the output end of an external control switch group. The left end of the fabric is fixed by setting the fixing assembly.
[0013] Furthermore, two corresponding guide wheels are rotatably connected to the left and right sides inside the connecting frame. The two guide wheels are located inside the two strip grooves opened at the front and rear ends of the upper side of the placement frame, respectively. The stability of the connecting frame movement is improved by setting the guide wheels.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: This natural cellulose composite denim fabric stacking device has the following advantages:
[0015] 1. Through the linkage design of the support component and the toggle component, the automatic switching of the storage roll is realized. Combined with the rapid positioning of the fixing component, the continuous stacking of multiple layers of fabric can be completed, which significantly improves the processing efficiency of composite fabrics.
[0016] 2. The flattening rod and guide wheel work together to roll and compact the fabric in real time during the lateral movement of the connecting frame. Combined with the spacing adjustment function of the bidirectional screw, it can adapt to the stacking requirements of fabrics of different thicknesses, ensuring that the layers are flat and wrinkle-free. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the front structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the guide wheel structure of this utility model;
[0019] Figure 3 This is a schematic diagram of the storage component structure of this utility model;
[0020] Figure 4 This is a schematic diagram of the toggle assembly structure of this utility model;
[0021] Figure 5 This is a schematic diagram of the flattening component structure of this utility model.
[0022] In the diagram: 1. Placement frame, 2. Support assembly, 21. Connecting column, 22. Moving block, 23. Bidirectional screw, 24. First motor, 25. Brush slip ring, 3. Storage assembly, 31. Moving ring, 32. Turntable, 33. Storage drum, 4. Actuating assembly, 41. Second motor, 42. Gear, 43. Gear ring, 5. Flattening assembly, 51. Fixing strip, 52. Flattening rod, 6. Fixing assembly, 61. Fixing frame, 62. Third electric telescopic rod, 63. Fixing plate, 7. Moving frame, 8. Guide rod, 9. First electric telescopic rod, 10. Connecting frame, 11. Second electric telescopic rod, 12. Guide wheel. Detailed Implementation
[0023] 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.
[0024] Please see Figure 1-5 This embodiment provides a technical solution: a stacking device for denim fabric made of natural cellulose composite, including a placement rack 1 and a support component 2;
[0025] Placement rack 1: A movable rack 7 is provided on the upper side. Two corresponding guide holes are opened on the lower side of the movable rack 7. Guide rods 8 are slidably connected inside the guide holes. Two corresponding strip grooves are opened at the front and rear ends of the upper side of the placement rack 1. Guide rods 8 are fixed inside the corresponding guide rods 8. Two corresponding first electric telescopic rods 9 are installed on the left side inside the placement rack 1. The telescopic arms of the two first electric telescopic rods 9 are fixed to the left side of the movable rack 7. Two corresponding second electric telescopic rods 11 are installed on the upper side of the movable rack 7. Connecting racks 10 are fixed on the telescopic arms of the two second electric telescopic rods 11. A fixing component 6 is installed on the left end of the upper side of the placement rack 1. A toggle component 4 is installed on the rear side of the connecting rack 10. Flattening components 5 are installed on the left ends of the front and rear sides of the connecting rack 10. The toggle component 4 includes a second motor 41, a gear 42 and a gear ring 43. A second motor 41 is installed on the rear side of the connecting rack 10. A gear 42 is fixed on the output shaft of the second motor 41. The circumferential surface of the connecting column 21 A gear ring 43 is fixed at the rear end, and a gear 42 meshes with the gear ring 43. The input end of the second motor 41 is electrically connected to the output end of an external control switch group. The flattening component 5 includes a fixing strip 51 and a flattening rod 52. Two corresponding fixing strips 51 are fixed at the left ends of the front and rear sides of the connecting frame 10. The flattening rod 52 is rotatably connected between the left ends of the two fixing strips 51. The fixing component 6 includes a fixing frame 61, a third electric telescopic rod 62, and a fixing plate 63. The fixing frame 61 is fixed on the upper side of the placement frame 1. The fixing frame 61 is located at the left end of the connecting frame 10. The third electric telescopic rod 62 is installed on the upper side of the fixing frame 61. The fixing plate 63 is fixed on the telescopic arm of the third electric telescopic rod 62. The input end of the third electric telescopic rod 62 is electrically connected to the output end of an external control switch group. The left end of the fabric is fixed by setting the fixing component 6. The flattening component 5 is set so that the flattening rod 52 flattens the fabric when the connecting frame 10 moves. The connecting column 21 is rotated by setting the toggle component 4.
[0026] Support component 2 includes a connecting column 21, a movable block 22, a bidirectional screw 23, a first motor 24, and a brush slip ring 25. Two corresponding rotating holes are opened on the left and right sides of the connecting frame 10. The connecting column 21 is rotatably connected to the inside of the two rotating holes. A strip-shaped opening is opened in the middle of the connecting column 21, and two corresponding movable blocks 22 are slidably connected inside the strip-shaped opening. A threaded hole is opened in the middle of the movable block 22, with opposite threads. A bidirectional screw 23 is threaded inside the two threaded holes. The bidirectional screw 23 is welded from two threaded rods with opposite threads and is rotatably connected inside the strip-shaped opening. A mounting groove is opened at the front end of the circumferential surface of the connecting column 21, and the first motor 24 is installed inside the mounting groove. The output shaft of a motor 24 is fixed to the front end of a bidirectional screw 23. A brush slip ring 25 is installed on the front end of the circumferential surface of a connecting post 21. A storage component 3 is installed on the side of a moving block 22. A toggle component 4 is connected to the connecting post 21. The storage component 3 includes a moving ring 31, a turntable 32, and a storage roll 33. A moving ring 31 is fixed on the surface of the moving block 22. A storage roll 33 is evenly distributed between two moving rings 31. Two corresponding turntables 32 are provided at the front and rear ends inside the storage roll 33. All the turntables 32 are fixed on the two adjacent end faces of the two moving rings 31. The storage roll 33 is used to store the fabric that needs to be stacked. The support component 2 is used to drive the two moving rings 31 to move.
[0027] Among them, the input ends of the first electric telescopic rod 9, the second electric telescopic rod 11 and the brush slip ring 25 are all electrically connected to the output end of the external control switch group, and the output end of the brush slip ring 25 is electrically connected to the input end of the first motor 24.
[0028] Among them, there are two corresponding guide wheels 12 rotatably connected to the left and right sides inside the connecting frame 10. The two guide wheels 12 are located inside the two strip grooves opened at the front and rear ends of the upper side of the placement frame 1, respectively. The stability of the movement of the connecting frame 10 is improved by setting the guide wheels 12.
[0029] The working principle of the natural cellulose composite denim fabric stacking device provided by this utility model is as follows: First, the natural cellulose composite fabric to be stacked is wound onto all the storage rolls 33. The first motor 24 in the support component 2 drives the bidirectional screw 23 to rotate, which drives the moving block 22 to move synchronously in the opposite direction along the strip opening. This causes the two sets of moving rings 31 to move, which in turn drives all the turntables 32 to move and fix all the storage rolls 33. After fixing, the lower fabric is pulled to the left and moved below the fixing plate 63. Then, the third electric telescopic rod 62 is activated to drive the fixing plate 63 to press down and fix the left end of the fabric. Then, the two first electric telescopic rods 9 are activated to move the connecting frame 10, which drives the fabric to unfold. After unfolding, the fabric can be laid flat on the top of the placement frame 1. After the single layer of fabric is laid, the second motor 41 of the actuating component 4 drives the connecting column 21 to rotate and switch to the adjacent storage roll 33 through the meshing of the gear 42 and the gear ring 43. Through repeated positioning, flattening and pressing processes, multi-layer precise stacking is achieved. Throughout the process, the brush slip ring 25 ensures continuous power supply to the rotating connecting column 21, and the guide wheel 12 rolls along the strip groove to ensure the stability of the moving trajectory of the connecting frame 10, ultimately completing the automated alignment and stacking of multi-layer fabrics.
[0030] It is worth noting that the external control switch group disclosed in the above embodiments is equipped with buttons that correspond one-to-one with the first motor 24, the second motor 41, the first electric telescopic rod 9, the second electric telescopic rod 11, and the third electric telescopic rod 63. The first motor 24 and the second motor 41 can be 1LE0003 three-phase asynchronous motors, and the first electric telescopic rod 9, the second electric telescopic rod 11, and the third electric telescopic rod 63 can be TGC-A high-thrust electric telescopic rods. The brush slip ring 25 can be freely configured according to the actual application scenario.
[0031] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A device for stacking denim fabric made of natural cellulose composite, characterized in that: Includes a placement rack (1) and a support assembly (2); Placement rack (1): A movable rack (7) is provided on the upper side. Two corresponding guide holes are opened on the lower side of the movable rack (7). A guide rod (8) is slidably connected inside the guide hole. Two corresponding strip grooves are opened at the front and rear ends of the upper side of the placement rack (1). The guide rod (8) is fixed inside the corresponding guide rod (8). Two corresponding first electric telescopic rods (9) are installed on the left side inside the placement rack (1). The telescopic arms of the two first electric telescopic rods (9) are fixed on the left side of the movable rack (7). Two corresponding second electric telescopic rods (11) are installed on the upper side of the movable rack (7). A connecting rack (10) is fixed on the telescopic arms of the two second electric telescopic rods (11). A fixing component (6) is installed on the left end of the upper side of the placement rack (1). A toggle component (4) is installed on the rear side of the connecting rack (10). A flattening component (5) is installed on the left end of the front and rear sides of the connecting rack (10). Support component (2): includes a connecting column (21), a moving block (22), a bidirectional screw (23), a first motor (24), and a brush slip ring (25). The connecting frame (10) has two corresponding rotating holes on its left and right sides. The connecting column (21) is rotatably connected to the inside of the two rotating holes. A strip-shaped opening is provided in the middle of the connecting column (21). Two corresponding moving blocks (22) are slidably connected inside the strip-shaped opening. A threaded hole is provided in the middle of the moving block (22). The threads of the two threaded holes are opposite. A bidirectional screw is connected to the internal threads of the two threaded holes. 23), the bidirectional screw (23) is welded from two threaded rods with opposite threads. The bidirectional screw (23) is rotatably connected to the inside of the strip-shaped opening. The front end of the circumferential surface of the connecting column (21) is provided with an installation groove. The first motor (24) is installed inside the installation groove. The output shaft of the first motor (24) is fixed to the front end of the bidirectional screw (23). The front end of the circumferential surface of the connecting column (21) is provided with a brush slip ring (25). The side of the moving block (22) is provided with a storage component (3). The actuating component (4) is connected to the connecting column (21). Wherein: the input ends of the first electric telescopic rod (9), the second electric telescopic rod (11) and the brush slip ring (25) are all electrically connected to the output end of the external control switch group, and the output end of the brush slip ring (25) is electrically connected to the input end of the first motor (24).
2. The device for stacking denim fabric made of natural cellulose composite according to claim 1, characterized in that: The storage component (3) includes a moving ring (31), a turntable (32) and a storage roll (33). The moving ring (31) is fixed on the surface of the moving block (22). The storage roll (33) is evenly distributed between the two moving rings (31). The storage roll (33) has two corresponding turntables (32) at the front and rear ends inside. All the turntables (32) are fixed on the two adjacent end faces of the two moving rings (31).
3. The device for stacking denim fabric made of natural cellulose composite according to claim 1, characterized in that: The toggle assembly (4) includes a second motor (41), a gear (42) and a gear ring (43). The second motor (41) is mounted on the rear side of the connecting frame (10). The gear (42) is fixed on the output shaft of the second motor (41). The gear ring (43) is fixed on the rear end of the circumferential surface of the connecting column (21). The gear (42) meshes with the gear ring (43). The input end of the second motor (41) is electrically connected to the output end of an external control switch group.
4. The device for stacking denim fabric made of natural cellulose composite according to claim 1, characterized in that: The flattening assembly (5) includes a fixing strip (51) and a flattening rod (52). Two corresponding fixing strips (51) are fixed on the left ends of the front and rear sides of the connecting frame (10), and the flattening rod (52) is rotatably connected between the left ends of the two fixing strips (51).
5. The device for stacking denim fabric made of natural cellulose composite according to claim 1, characterized in that: The fixing component (6) includes a fixing frame (61), a third electric telescopic rod (62) and a fixing plate (63). The fixing frame (61) is fixed on the upper side of the placement frame (1). The fixing frame (61) is located at the left end of the connecting frame (10). The third electric telescopic rod (62) is installed on the upper side of the fixing frame (61). The fixing plate (63) is fixed on the telescopic arm of the third electric telescopic rod (62). The input end of the third electric telescopic rod (62) is electrically connected to the output end of an external control switch group.
6. The device for stacking denim fabric made of natural cellulose composite according to claim 1, characterized in that: The connecting frame (10) has two corresponding guide wheels (12) rotatably connected to the left and right sides inside. The two guide wheels (12) are located inside the two strip grooves opened at the front and rear ends of the upper side of the placement frame (1).