Clothing fabric processing device

By designing an automatic cutting device, the problem of low fabric cutting efficiency in existing technologies has been solved, realizing automatic reciprocating cutting and fixed limiting, thereby improving cutting quality and efficiency.

CN224299695UActive Publication Date: 2026-05-29ZHEJIANG KEMANQI BIOTECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG KEMANQI BIOTECHNOLOGY CO LTD
Filing Date
2025-05-14
Publication Date
2026-05-29

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    Figure CN224299695U_ABST
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Abstract

The utility model discloses a kind of garment cloth processing devices, including rack, rack left side transverse extension has extension platform, and extension platform is equipped with cloth storage rack, and rack is equipped with support, and support is equipped with cutting component, and cutting component is used to cut cloth, and rack is equipped with fixed limiting component and pulling component, and fixed limiting component is used to limit cloth fixed, and pulling component is pulled to cloth on cloth storage rack and cloth that has been cut, and cloth is pulled to rack above the material collecting box of one cutting, and cloth on cloth storage rack is pulled to rack simultaneously and is limited by fixed limiting component, and pulling component resets and is clamped fixed to cloth pulled to rack, and cutting component starts new round cutting, and cutting component, fixed limiting component and pulling component are commonly configured with controller, and controller is used to control the opening and closing of corresponding component, and the device can realize the effect of automatic cutting, improve cutting quality and efficiency.
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Description

Technical Field

[0001] This utility model relates to a garment fabric processing device. Background Technology

[0002] Fabric is the material used to make clothing. As one of the three essential elements of clothing, fabric not only interprets the style and characteristics of clothing, but also directly influences the color and shape of the garment. During garment processing, cutting devices are needed to cut the fabric. However, existing cutting devices lack the ability to stretch the fabric to achieve automatic reciprocating cutting.

[0003] A fabric processing cutting machine with publication number CN218951821U includes a top plate and a driver. The driver is installed at the bottom of the top plate. A flow divider is installed on the inner rear wall of the driver. A first motor is installed on the outer wall of the flow divider. A rotating shaft is installed at the output end of the first motor. Multiple cams are installed on the outer wall of the rotating shaft. Multiple air extraction pipes are installed on the top of the flow divider. The automatic fabric adsorption function can be realized by installing the flow divider.

[0004] The aforementioned existing technology uses an adsorption design to fix the fabric without the need for other devices, reducing the workload of workers. However, the adsorption causes the cutter to pull on the fabric during the cutting process, lacking a limit on the fabric. At the same time, the cutting machine requires manual placement of the fabric on the work platform, and the lack of fabric pulling prevents it from achieving automatic reciprocating cutting. Utility Model Content

[0005] To address the shortcomings of existing technologies, this application proposes a garment fabric processing device that enables automatic cutting, thereby improving cutting quality and efficiency.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A garment fabric processing device includes a frame with an extension platform extending laterally from the left side. A fabric storage rack is provided on the extension platform. A support frame is mounted on the frame, and a cutting component is provided on the support frame. The cutting component is used to cut the fabric. The frame is equipped with a fixing and limiting component and a pulling component. The fixing and limiting component is used to limit and fix the fabric. The pulling component pulls the cut fabric and the fabric on the fabric storage rack, pulling the cut fabric above the collection box and simultaneously pulling the fabric on the fabric storage rack to the frame and limiting it through the fixing and limiting component. The pulling component resets and clamps and fixes the fabric pulled to the frame. The cutting component begins a new round of cutting. The cutting component, the fixing and limiting component, and the pulling component are all equipped with a controller, which is used to control the opening and closing of the corresponding components.

[0008] Furthermore, the fixed limiting component includes a first limiting part and a second limiting part, the pulling component includes a first pulling part and a second pulling part arranged symmetrically, the first pulling part is located to the left of the first limiting part, the second pulling part is located to the left of the second limiting part, and the cutting component is disposed above the first pulling part and the first limiting part.

[0009] Furthermore, both the first limiting part and the second limiting part include an inverted U-shaped frame disposed at a relative position on the frame. The inverted U-shaped frame is provided with a telescopic drive component, and the telescopic end of the telescopic drive component is connected to a pressing plate. The frame is provided with an inverted isosceles trapezoidal abutment plate corresponding to the pressing plate. The fabric is limited and fixed by the setting of the pressing plate and the abutment plate. The lower end surface of the pressing plate and the upper end surface of the abutment plate are both provided with an anti-slip layer.

[0010] Furthermore, rectangular through slots are provided on both sides of the frame, and a driving component and a sliding groove are provided in the rectangular through slots. The first pulling part is slidably connected to the sliding groove through a slider. The driving component is used to drive the first pulling part to move back and forth along the length of the rectangular through slot. The first pulling part is fixedly connected to the second pulling part through a connecting rod.

[0011] Furthermore, both the first and second pulling parts include a C-shaped plate. The vertical end face of the C-shaped plate has a first through groove, and a bidirectional threaded rod runs vertically through the first through groove. The bidirectional threaded rod is equipped with a motor and is threadedly connected to a first serrated plate and a second serrated plate. The first serrated plate and the second serrated plate are vertically slidably connected to the vertical guide groove on the side wall of the first through groove through a guide block. When the motor is not running, the first serrated plate and the second serrated plate abut against the upper and lower end faces of the C-shaped plate, respectively. When the motor rotates in the forward direction, the first serrated plate and the second serrated plate move closer to each other to clamp and fix the side wall of the fabric. When the motor rotates in the reverse direction, the first serrated plate and the second serrated plate are reset.

[0012] Furthermore, the inverted U-shaped frame of the second limiting part is equipped with a sensor. The sensor is used to sense whether the first pulling part has moved directly below the inverted U-shaped frame. When the first pulling part is in the directly below position, the controller controls the first limiting part and the second limiting part to limit and fix the fabric. After the limiting and fixing, the controller controls the motor to reset the first serrated plate and the second serrated plate. After the reset, the controller controls the drive component to reset the position of the first pulling part and the second pulling part.

[0013] Furthermore, a reinforcing limiting part is provided between the frame and the first pulling part. The reinforcing limiting part opens and closes synchronously with the first limiting part and the second limiting part. The reinforcing limiting part includes a lifting frame. A moving roller is rotatably connected to the inner wall of the lifting frame. A fixed roller is provided between the frame and the moving roller. The moving roller and the fixed roller are provided with anti-slip rubber sleeves.

[0014] Furthermore, the cutting assembly includes a movable seat mounted on a support frame, the movable seat being equipped with a longitudinal adjustment component controlled by a controller, a first electric telescopic rod mounted on the movable seat, a cutter fixedly mounted at the bottom of the first electric telescopic rod, and a groove provided on the frame corresponding to the longitudinal movement path of the cutter.

[0015] Furthermore, the fabric storage rack is a fabric roller, on which fabric is wound. An electric auxiliary roller is installed on the side of the frame near the fabric roller, and the fabric is conveyed towards the frame under the drive of the electric auxiliary roller.

[0016] Beneficial effects: 1. This application, through the setting of a pulling component, includes a first pulling part and a second pulling part. After the cutting component cuts the fabric, the second pulling part moves the cut fabric to the collection box. At the same time, the first pulling part and the electric auxiliary roller work together to pull the fabric on the fabric storage rack to the machine frame. Then, the new fabric that has moved to the machine frame is clamped and fixed by the fixing limiting component and the reinforcing limiting part. During the resetting process of the second pulling part and the first pulling part, the cut fabric clamped in the second pulling part will fall into the collection box due to its own weight. There is no need for the staff to manually disassemble the cut fabric, nor is there a need to manually pull the fabric on the fabric storage rack to the machine frame.

[0017] 2. This application can fix the fabric by setting the fixed limiting component and the reinforced limiting part, so as to ensure that the fabric will not shift during the cutting process of the cutting component, thus ensuring the cutting quality; together with the pulling component, the fabric can be automatically cut, avoiding the problem of low efficiency in the manual cutting process of the prior art. Attached Figure Description

[0018] Figure 1 A three-dimensional schematic diagram of a garment fabric processing device;

[0019] Figure 2 for Figure 1 Side view;

[0020] Figure 3 This is a schematic diagram of the pull component;

[0021] Figure 4 This is a front view of the fixed limit component;

[0022] Figure 5 This is a front view of the electrically assisted roller;

[0023] Figure 6 To enhance the front view of the limiting part;

[0024] Figure 7 This is a partial cross-sectional view of the trimmed component.

[0025] Reference numerals: 1. Frame; 11. Rectangular through slot; 12. Drive unit; 13. Slide groove; 2. Extension platform; 3. Fabric storage rack; 31. Fabric roller; 4. Support; 5. Cutting assembly; 51. Moving seat; 52. Longitudinal adjustment component; 53. First electric telescopic rod; 54. Cutting blade; 6. Fixed limiting assembly; 61. First limiting part; 62. Second limiting part; 63. Inverted U-shaped frame; 64. Telescopic drive unit; 65. Pressure plate ; 66. Abutment plate; 67. Anti-slip layer; 7. Pulling assembly; 71. First pulling part; 72. Second pulling part; 73. Connecting rod; 74. C-shaped plate; 75. First through groove; 76. Bidirectional threaded rod; 77. First serrated plate; 78. Second serrated plate; 8. Reinforced limiting part; 81. Lifting frame; 82. Moving roller; 83. Fixed roller; 84. Anti-slip rubber sleeve; 9. Electric auxiliary roller; 10. Controller; 14. Collection box. Detailed Implementation

[0026] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.

[0027] For reference Figures 1-7 As shown, this application provides a garment fabric processing device, which is not limited to processing garment fabrics worn in daily life, but is also applicable to processing garment fabrics in arts and crafts.

[0028] Specifically, the system includes a frame 1, with an extension platform 2 extending laterally to the left side of the frame 1. A fabric storage rack 3 is mounted on the extension platform 2, and the fabric storage rack 3 is a fabric roller 31 on which fabric is wound. A support frame 4 is mounted on the frame 1, and a cutting component 5 is mounted on the support frame 4 for cutting the fabric. The frame 1 also includes a fixing and limiting component 6 and a pulling component 7. The fixing and limiting component 6 is used to limit and fix the fabric, while the pulling component 7 pulls the cut fabric and the fabric on the fabric storage rack 3, moving the cut fabric above the collection box 14 and simultaneously pulling the fabric on the fabric storage rack 3 to the frame 1, where it is limited by the fixing and limiting component 6. The moving component 7 resets and clamps and fixes the fabric pulled onto the frame 1. The cutting component 5 starts a new round of cutting. The cutting component 5, the fixing and limiting component 6, and the pulling component 7 are all equipped with a controller 10. The controller 10 is used to control the opening and closing of the corresponding components. In order to facilitate the pulling component 7 to pull the fabric on the fabric roller 31, an electric auxiliary roller 9 is installed on the side of the frame 1 near the fabric roller 31. The fabric is conveyed towards the frame 1 under the drive of the electric auxiliary roller 9, reducing the hard pulling of the fabric by the pulling component 7. When the pulling component 7 pulls the fabric on the fabric roller 31, the electric auxiliary roller 9 starts synchronously. In other cases, the electric auxiliary roller 9 does not start working.

[0029] Specifically, see, for example Figure 1 , Figure 4 The fixing and limiting component 6 includes a first limiting part 61 and a second limiting part 62. The pulling component 7 includes a first pulling part 71 and a second pulling part 72 symmetrically arranged. The first pulling part 71 is located to the left of the first limiting part 61, and the second pulling part 72 is located to the left of the second limiting part 62. The cutting component 5 is arranged above the first pulling part 71 and the first limiting part 61. Both the first limiting part 61 and the second limiting part 62 include an inverted U-shaped frame 63 arranged at opposite positions on the frame 1. The inverted U-shaped frame 63 is provided with a telescopic drive component 64. The telescopic end of the telescopic drive component 64 is connected to a pressure plate. The telescopic drive component 64 is a hydraulic telescopic rod, which is prior art and will not be described in detail here. An inverted isosceles trapezoidal abutment plate 66 is provided on the frame 1 corresponding to the pressure plate 65. The fixing is limited and fixed by the arrangement of the pressure plate 65 and the abutment plate 66. At this time, the first pulling part 71 and the second pulling part 72 also clamp and fix the side of the fabric. The first pulling part 71 is located on the left side of the fabric cutting position, that is, the head of the newly cut fabric, while the second pulling part 72 is located at the head of the fabric being cut. The cutting component 5 starts to cut the fabric to the required length.

[0030] For reference Figure 1 , Figure 7As shown, the cutting assembly 5 includes a movable seat 51 mounted on the support 4. The movable seat 51 is equipped with a longitudinal adjustment component 52, which is controlled by the controller 10. The movable seat 51 is equipped with a first electric telescopic rod 53. The longitudinal adjustment component 52 can be a hydraulic telescopic rod or a screw-driven component, either of which is acceptable. A cutter 54 is fixedly mounted at the bottom of the first electric telescopic rod 53. The frame 1 has a groove corresponding to the longitudinal movement path of the cutter 54. When the first electric telescopic rod 53 is extended, the cutter 54 moves vertically downward. The head of the cutter 54, carrying the fabric, is in the groove. A sensor is installed in the groove. When the sensor detects the cutter 54, it activates the longitudinal adjustment component 52, causing the cutter 54 to move longitudinally and cut the fabric. The sensor is existing technology and will not be described in detail again.

[0031] For reference Figure 6 As shown, since the pulling part pulls the side of the fabric, the limiting and fixing effect of the middle part of the fabric is not good. At the same time, it is convenient for the cutting component 5 to cut. A reinforcing limiting part 8 is provided between the first pulling part 71 and the frame. The reinforcing limiting part 8 opens and closes synchronously with the first limiting part 61 and the second limiting part 62 to clamp the fabric. The reinforcing limiting part 8 includes a lifting frame 81, which is hydraulically driven. A moving roller 82 is rotatably connected to the inner wall of the lifting frame 81. A fixed roller 83 is provided on the frame 1 corresponding to the moving roller 82. The moving roller 82 and the fixed roller 83 are fitted with anti-slip rubber sleeves 84. The moving roller 82 and the fixed roller 83 are used to clamp and fix the part of the first pulling part 71 that is not limited and fixed.

[0032] For reference Figure 1 , Figure 3As shown, after cutting, the cutting assembly 5 resets, and simultaneously the first limiting part 61, the reinforcing limiting part 8, and the second limiting part 62 reset, releasing the limiting and fixing of the fabric. At this time, the pulling assembly 7 is activated. Rectangular through slots 11 are provided on both sides of the frame 1. The rectangular through slots 11 are provided with a driving component 12 and a sliding groove 13. The first pulling part 71 is slidably connected to the sliding groove 13 through a slider. The driving component 12 is a lead screw drive, driving the first pulling part 71 to move back and forth along the length direction of the rectangular through slot 11. The first pulling part 71 is fixedly connected to the first pulling part 72 through a connecting rod 73. Both the first pulling part 71 and the second pulling part 72 include A C-shaped plate 74 has a first through groove 75 longitudinally formed on its vertical end face, through which a bidirectional threaded rod 76 extends vertically. The bidirectional threaded rod 76 has threaded sections in opposite directions, corresponding to a first serrated plate 77 and a second serrated plate 78. The first serrated plate 77 and the second serrated plate 78 are vertically slidably connected to a vertical guide groove on the side wall of the first through groove 75 via a guide block. The guide block and the vertical guide groove allow the first serrated plate 77 and the second serrated plate 78 to move vertically. When the motor is not running, the first serrated plate 77 and the second serrated plate 78 abut against the upper and lower end faces of the C-shaped plate 74, respectively. When the motor rotates in the forward direction, the first serrated plate 77 and the second serrated plate 78 move closer together to clamp and fix the side of the fabric. When the motor rotates in the reverse direction, the first serrated plate 77 and the second serrated plate 78 return to their original positions. The first serrated plate 77 and the second serrated plate 78 cooperate to clamp and fix the side of the fabric. The drive unit 12 drives the first pulling part 71 to move the second pulling part 72 toward the position of the second limiting part 62. At the same time, the electric auxiliary roller 9 is started. At this time, the first pulling part 71 pulls the fabric on the fabric roller 31 to move toward the second limiting part 62, and the second pulling part 72 pulls the cut fabric toward the collection box 14. When the sensor on the inverted U frame 63 of the second limiting part 62 senses that the first pulling part 71 has moved to the underside of the inverted U frame 63, the controller 10 controls the first limiting part 61, the second limiting part 62 and the reinforcing limiting part 8 to clamp and fix the fabric. After the fixing is completed, the second pulling part 72 and the first serrated plate 77 and the second serrated plate 78 on the first pulling part 71 are reset, releasing the restriction on the fabric, so that the fabric on the second pulling part 72 will fall into the collection box 14 due to its own weight. After the cut fabric falls into the collection box 14, the drive unit 12 drives the first pulling part 71 and the second pulling part 72 back to their original positions, clamping and fixing the side of the fabric at that position. After clamping and fixing, the cutting assembly 5 starts working again to cut the fabric. Following the above repeated steps, the fabric on the fabric roller 31 is cut to a certain length.

[0033] Operating mode: Initially, the fabric on the fabric roller 31 passes through the electric auxiliary roller 9 and the pulling assembly 7, and is fixed by the fixed limiting assembly 6 and the reinforcing limiting part 8. The pulling assembly 7 simultaneously clamps and fixes the side of the fabric. After clamping and fixing, the cutting assembly 5 is started to cut the fabric. After cutting, the cutting assembly 5 is reset, and the fixed limiting assembly 6 and the reinforcing limiting part 8 release the restriction on the fabric. The electric auxiliary roller 9 and the pulling assembly 7 start to pull the cut fabric and the fabric on the fabric roller 31. The cut fabric is pulled to the top of the collection box 14. After the fabric on the fabric roller 31 is pulled to the position of the second limiting part 62, the fixed limiting assembly 6 and the reinforcing limiting part 8... The strong limiting part 8 is activated to limit and fix the fabric. After the fabric is limited and fixed, the first serrated plate 77 and the second serrated plate 78 in the pulling assembly 7 are reset. During the reset process, the cut fabric on the second pulling part 72 will fall into the collection box 14 due to its own weight. At the same time, after the pulling assembly 7 is reset to its original position, the bidirectional threaded rod 76 activates the first serrated plate 77 and the second serrated plate 78 in the first pulling part 71 and the second pulling part 72 to clamp and fix the side of the fabric at the original position again. After clamping and fixing, the cutting assembly 5 is activated to cut the fabric. The above-described steps are repeated until the fabric on the fabric roller 31 is completely cut and a new fabric is replaced.

Claims

1. A garment fabric processing device, comprising a frame (1), wherein an extension platform (2) extends laterally from the left side of the frame (1), and a fabric storage rack (3) is provided on the extension platform (2), characterized in that: The frame (1) is supported by a support (4), and the support (4) is equipped with a cutting component (5). The cutting component (5) is used to cut the fabric. The frame (1) is equipped with a fixed limiting component (6) and a pulling component (7). The fixed limiting component (6) is used to limit and fix the fabric. The pulling component (7) pulls the cut fabric and the fabric on the fabric storage rack (3) to the top of the collection box (14). At the same time, it pulls the fabric on the fabric storage rack (3) to the frame (1) and limits it through the fixed limiting component (6). The pulling component (7) resets and clamps and fixes the fabric pulled to the frame (1). The cutting component (5) starts a new round of cutting. The cutting component (5), the fixed limiting component (6) and the pulling component (7) are all equipped with a controller (10). The controller (10) is used to control the opening and closing of the corresponding components.

2. The garment fabric processing apparatus according to claim 1, characterized in that: The fixed limiting component (6) includes a first limiting part (61) and a second limiting part (62). The pulling component (7) includes a first pulling part (71) and a second pulling part (72) arranged symmetrically. The first pulling part (71) is located to the left of the first limiting part (61), and the second pulling part (72) is located to the left of the second limiting part (62). The cutting component (5) is arranged above the first pulling part (71) and the first limiting part (61).

3. The garment fabric processing device according to claim 2, characterized in that: The first limiting part (61) and the second limiting part (62) both include an inverted U-shaped frame (63) set at a relative position on the frame (1). The inverted U-shaped frame (63) is provided with a telescopic drive member (64). The telescopic drive member (64) is connected to a pressing plate (65) at its telescopic end. The frame (1) is provided with an inverted isosceles trapezoidal abutment plate (66) corresponding to the pressing plate (65). The fabric is limited and fixed by the setting of the pressing plate (65) and the abutment plate (66). The lower end surface of the pressing plate (65) and the upper end surface of the abutment plate (66) are both provided with an anti-slip layer (67).

4. The garment fabric processing apparatus according to claim 3, characterized in that: The frame (1) has rectangular through slots (11) on both sides. The rectangular through slots (11) are provided with a drive member (12) and a slide groove (13). The first pulling part (71) is slidably connected to the slide groove (13) through a slider. The drive member (12) is used to drive the first pulling part (71) to move back and forth along the length of the rectangular through slot (11). The first pulling part (71) is fixedly connected to the second pulling part (72) through a connecting rod (73).

5. The garment fabric processing apparatus according to claim 4, characterized in that: Both the first pulling part (71) and the second pulling part (72) include a C-shaped plate (74). The vertical end face of the C-shaped plate (74) is provided with a first through groove (75), and a bidirectional threaded rod (76) is vertically passed through the first through groove (75). The bidirectional threaded rod (76) is equipped with a motor. The bidirectional threaded rod (76) is threadedly connected to a first serrated plate (77) and a second serrated plate (78). The first serrated plate (77) and the second serrated plate (78) are vertically slidably connected to the vertical guide groove on the side wall of the first through groove (75) through a guide block. When the motor is not started, the first serrated plate (77) and the second serrated plate (78) abut against the upper and lower end faces of the C-shaped plate (74) respectively. When the motor rotates in the forward direction, the first serrated plate (77) and the second serrated plate (78) move closer to each other to achieve clamping and fixing of the side of the fabric. When the motor rotates in the reverse direction, the first serrated plate (77) and the second serrated plate (78) are reset.

6. The garment fabric processing apparatus according to claim 5, characterized in that: The inverted U-shaped frame (63) of the second limiting part (62) is equipped with a sensor. The sensor is used to sense whether the first pulling part (71) has moved directly below the inverted U-shaped frame (63). When the first pulling part (71) is directly below, the controller (10) controls the first limiting part (61) and the second limiting part (62) to limit and fix the fabric. After the limiting and fixing, the controller (10) controls the motor to reset the first sawtooth plate (77) and the second sawtooth plate (78). After the reset, the controller (10) controls the drive (12) to reset the position of the first pulling part (71) and the second pulling part (72).

7. The garment fabric processing apparatus according to claim 6, characterized in that: The frame (1) is provided with a reinforcing limiting part (8) between the first pulling part (71) and the frame (1). The reinforcing limiting part (8) opens and closes synchronously with the first limiting part (61) and the second limiting part (62). The reinforcing limiting part (8) includes a lifting frame (81). The inner wall of the lifting frame (81) is rotatably connected to a moving roller (82). The frame (1) is provided with a fixed roller (83) corresponding to the moving roller (82). The moving roller (82) and the fixed roller (83) are fitted with anti-slip rubber sleeves (84).

8. The garment fabric processing apparatus according to claim 7, characterized in that: The cutting assembly (5) includes a movable seat (51) mounted on a bracket (4). The movable seat (51) is equipped with a longitudinal adjustment component (52), which is controlled by a controller (10). The movable seat (51) is provided with a first electric telescopic rod (53), and a cutter (54) is fixedly mounted on the bottom of the first electric telescopic rod (53). The frame (1) is provided with a groove corresponding to the longitudinal movement path of the cutter (54).

9. The garment fabric processing apparatus according to claim 8, characterized in that: The fabric storage rack (3) is a fabric roller (31), on which fabric is wound. An electric auxiliary roller (9) is installed on the side of the frame (1) near the fabric roller (31). The fabric is conveyed towards the frame (1) under the drive of the electric auxiliary roller (9).