Multi-station cloth spreading equipment for cloth processing and working method of multi-station cloth spreading equipment

By designing multi-station laying equipment, using the combination of laying plates, sliding plates, limiting components and cutting mechanisms, the automatic conveying, limiting and cutting of fabrics is achieved, solving the problems of low efficiency and inaccurate cutting of existing equipment, and improving production efficiency and product quality.

CN120024745APending Publication Date: 2025-05-23AN HUI HUA LV ZHI NENG KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202510482805.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-05-23

AI Technical Summary

Technical Problem

Existing rigging equipment requires manual operation when cutting and smoothing fabrics, is inefficient and is not accurate in cutting.

Method used

A multi-station laying equipment is designed, which adopts a combination of laying plates, sliding plates, limiting components, linear molds and cutting mechanisms to realize automated fabric conveying, limiting and cutting.

Benefits of technology

通过自动化操作,提高了布料加工的效率和准确性,减少了人工干预,提升了生产效率和产品质量。

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses multi-station cloth spreading equipment for cloth processing and a working method thereof, and belongs to the technical field of cloth spreading. Multi-station cloth spreading equipment for cloth processing comprises an equipment main body, the equipment main body comprises a frame body, a horizontally-arranged laying plate is arranged at the frame body, at least three parallel grooves are formed in the laying plate in the cloth conveying direction, sliding plates are arranged in the grooves in a sliding mode, limiting assemblies corresponding to the grooves are arranged at the sliding plates, and the limiting assemblies correspond to the grooves. The limiting assembly is used for being matched with the sliding plate to limit the cloth leftover. A cutting mechanism and a linear module are arranged at the laying plate, the cutting mechanism is used for cutting cloth, the linear module is used for conveying cloth heads to the pressing mechanism for limiting, and a releasing part and a driving part are arranged at the positions, located at the two ends of the cutting mechanism, of the laying plate correspondingly. And at least three parallel grooves, a sliding plate and a limiting assembly are arranged on the laying plate, so that the equipment can be used for carrying out cloth pulling operation on a plurality of cloth rolls at the same time, and the processing efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of cloth pulling, and in particular to a multi-station cloth pulling device for cloth processing and a working method thereof. Background Art

[0002] In the textile industry, most fabrics are produced and transported in rolls. Therefore, when they arrive at the user's factory, the rolled materials need to be turned into a multi-layer flat state, so the cloth-pulling machine plays a vital role.

[0003] However, the existing cloth pulling equipment requires manual labor to pull the cloth head to the pressing mechanism to press the cloth head during cutting, and then the cutting cannot be performed. The cut cloth head needs to be pulled and flattened again manually, and the work efficiency is low. Summary of the invention

[0004] The present invention provides a multi-station cloth-pulling device for cloth processing and a working method thereof, which can overcome certain or some defects of the prior art.

[0005] According to the present invention, a multi-station cloth-pulling device for cloth processing comprises a device body, the device body comprises a frame, a horizontally arranged laying plate is provided on the frame, at least three parallel grooves are formed on the laying plate along the cloth conveying direction, a sliding plate is slidably provided in the groove, a limiting assembly corresponding to the groove is provided on the sliding plate, and the limiting assembly is used to cooperate with the sliding plate to limit the cloth head; A cutting mechanism and a linear module are provided at the laying plate. The cutting mechanism is used to cut the cloth, and the linear module is used to transport the cloth head to the pressing mechanism for limiting. A releasing part and a driving part are respectively provided at both ends of the cutting mechanism of the laying plate. The releasing part is used to drive the limiting component to press the cloth, and the driving part is used to drive the limiting component to release the cloth.

[0006] The present invention discloses a multi-station cloth-pulling device for cloth processing. By arranging at least three parallel grooves, a sliding plate and a limit assembly on a laying plate, the device can handle the cloth-pulling operations of multiple cloth rolls at the same time, thereby improving the processing efficiency.

[0007] In addition, through the coordinated setting of the linear module, the sliding plate and the limit assembly, the cloth head can be automatically transported to the clamping mechanism for limiting through the limit assembly and the sliding plate. This can not only stably limit the cloth head to ensure that the cloth head will not move during the cutting process, thereby improving the cutting accuracy, but also eliminate the need for manual pulling of the cloth head, thereby improving work efficiency.

[0008] It can be understood that, through the setting of the release member and the driving member, the linear module transports the cloth heads at the limit assembly and the sliding plate to the clamping mechanism for clamping, and then the limit assembly and the sliding plate are released from the limit on the cloth heads through the release member, and then the limit assembly and the sliding plate are transported to the original position through the linear module, and the cloth is clamped again through the driving member, and then the cutting mechanism is used for cutting, so that the limit assembly and the sliding plate transported to the original position form a limit for the cut cloth heads, and the whole process does not require human participation, and the degree of automation is high.

[0009] Preferably, an installation groove for installing the linear module is formed on the laying plate, an installation gap is formed between the installation groove and the groove, fixed parts penetrating the installation gap and arranged at the moving end of the linear module are formed at both ends of the sliding plate, and a through groove for installing the sliding plate is formed between adjacent grooves.

[0010] Through the above structure, the sliding plate can slide inside the groove without occupying the top position of the laying plate, thereby ensuring the flatness of the top surface of the laying plate.

[0011] Preferably, a plurality of auxiliary components are provided at the groove, an opening portion is formed at the groove, and the plurality of auxiliary components are used to seal the opening portion. The auxiliary components include a plurality of first springs provided at the groove, and a top plate is commonly provided on the top of the plurality of first springs, wherein the top wall of the top plate is flush with the opening portion.

[0012] Through the above structure, the opening of the groove forms a plane, thereby avoiding interference with the cloth when pulling the cloth.

[0013] It can be understood that the groove is provided with a plurality of auxiliary components, which work together to seal the opening, prevent dust, debris, etc. from entering the interior of the groove, and protect key components such as the sliding plate and the limit assembly from external pollution and damage, thereby extending the service life of the equipment.

[0014] Preferably, a convex portion corresponding to the limit assembly is formed on the top wall of the sliding plate, inclined surfaces inclined toward each other are formed at both ends of the top plate along the length direction of the groove, and inclined portions cooperating with the inclined surfaces are formed at both ends of the bottom walls corresponding to the sliding plate and the top plate.

[0015] By setting the convex part, the convex part can extend into the opening part and be flush with the top surface of the laying board, thereby improving the limiting effect of the limiting component on the cloth head.

[0016] By setting the inclined surface and the inclined portion, the sliding plate can press down the top plate as shown in the figure when moving, so that the top plate is always flush with the top surface of the laying plate after the sliding plate moves. At the same time, the contact between the sliding plate and the top plate is smoother during the sliding process, reducing friction and wear.

[0017] Preferably, a mounting plate for mounting the limit assembly is detachably provided at the top of the sliding plate, and a recess for the clamping mechanism to extend into is formed at the side wall of the mounting plate.

[0018] A space is provided for the pressing mechanism to extend into. When the cloth head is pulled to the pressing mechanism, the pressing mechanism can extend into the recess to perform a pressing operation on the cloth, thereby avoiding interference between the pressing mechanism and the limiting assembly.

[0019] Preferably, an installation cavity is formed at the installation plate, and the limiting assembly includes a sliding rod slidably arranged at the installation cavity, the sliding rod passes through one end of the installation plate, a pressure plate is provided at the bottom wall, a fixing plate is provided at the top wall of the sliding rod, a second spring is provided between the installation cavity and the bottom wall of the fixing plate, the second spring is used to provide elastic force to keep the pressure plate pressed upward, a rotating seat is provided at the top wall of the installation plate, a mating piece is rotatably provided at the rotating seat, and a snap-in groove is formed at the top wall of the fixing plate, the snap-in groove is used to limit the mating piece.

[0020] The slide bar is slidably arranged in the installation cavity formed at the installation plate, and a pressing plate is provided at the bottom wall of one end of the slide bar passing through the installation plate, so that the pressing plate can move up and down as needed, thereby pressing or releasing the cloth.

[0021] In addition, through the matching arrangement of the matching piece and the clamping groove, when the cloth needs to be pressed, the matching piece can be clamped into the clamping groove to lock the position of the slide rod, thereby maintaining the pressing force of the pressing plate on the cloth.

[0022] It can be understood that the second spring between the fixed plate at the top wall of the slide rod and the bottom wall of the mounting cavity provides an upward elastic force for the pressure plate, so that the pressure plate remains in an upward pressed state by default, ensuring that the pressure plate is always in contact with the bottom wall of the mounting plate when the linear module is reset, avoiding interference with the fabric.

[0023] Preferably, a matching plate matching with the driving member is provided at the top wall of the matching member, and a counterweight roller matching with the matching groove is provided at one end of the matching plate close to the driving member.

[0024] By providing a matching plate matching with the driving member on the top wall of the matching member, the driving member can drive the matching member to rotate, and the connection between the matching member and the connecting groove can be conveniently controlled, thereby realizing automatic driving of the limiting component to limit the cloth.

[0025] It can be understood that, through the setting of the counterweight roller, after the mating part is driven by the release part, the mating plate at the mating part is always tilted due to the deadweight of the mating plate, as shown in the figure, thereby improving the linkage stability between the mating part and the driving part.

[0026] Preferably, a rotating shaft is formed at the matching piece and is arranged at the rotating seat. The rotating shaft passes through one end of the rotating seat and a driving arm corresponding to the releasing piece is arranged at the end thereof.

[0027] The mating piece is formed with a rotating shaft arranged at the rotating seat, so that the mating piece can flexibly rotate around the rotating shaft, and then the mating piece can be easily engaged or separated from the engaging groove, thereby realizing rapid limiting and unlocking of the cloth.

[0028] It is understandable that the rotating shaft passes through one end of the rotating seat and is provided with a driving arm corresponding to the release member, so that the release member can drive the matching member to rotate through the driving arm. When the release member is activated, it pushes the driving arm, thereby driving the matching member to rotate, thereby realizing the release operation of the cloth head.

[0029] Preferably, a mounting roller is provided at the frame, and at least two mounting portions for mounting cloth rolls are formed at the mounting roller.

[0030] At least two mounting parts for mounting cloth rolls are formed at the mounting roller, so that the equipment can install multiple cloth rolls at the same time, which improves the flexibility and adaptability of the equipment and can meet the simultaneous processing of multiple cloths under different production requirements.

[0031] A working method of a multi-station cloth-pulling device for cloth processing comprises the following steps: The cloth head is laid flat and limited by the limiting assembly and the sliding plate; The cloth head is transported to the clamping mechanism through the linear module, and the cloth head is limited by the clamping mechanism, and at the same time, the release part drives the limiting component to release the cloth head; The limiting component is transported to the original position by the linear module, and the driving part drives the limiting component to press the fabric; The cloth is cut by the cutting mechanism to complete the cloth pulling and cutting operation.

[0032] Through the above, the entire work process is automated, reducing manual intervention and improving production efficiency and product quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 This is a schematic diagram of the overall structure of a multi-station cloth-pulling device for cloth processing.

[0034] Figure 2 This is a schematic diagram of the top view of the structure of a multi-station cloth-pulling equipment for cloth processing.

[0035] Figure 3 This is a schematic diagram of the cross-sectional structure of the auxiliary components of a multi-station cloth-pulling device for cloth processing.

[0036] Figure 4 This is a schematic diagram of the cross-sectional structure of the through groove and sliding plate of a multi-station cloth pulling equipment for cloth processing.

[0037] Figure 5This is a schematic diagram of the structure of the sliding plate, mounting plate and limit assembly of a multi-station cloth pulling equipment for cloth processing.

[0038] Figure 6 This is a schematic diagram of the cross-sectional structure of the limiting components of a multi-station cloth-pulling device for cloth processing.

[0039] Figure 7 This is a schematic diagram of the driving arm structure of a multi-station cloth pulling equipment for cloth processing.

[0040] 100. Equipment body; 110. Frame; 120. Mounting roller; 130. Cutting mechanism; 210. Laying plate; 220. Auxiliary component; 230. Release member; 240. Driving member; 310. Groove; 320. First spring; 330. Top plate; 410. Through groove; 420. Linear module; 510. Sliding plate; 520. Oblique portion; 530. Protrusion; 540. Mounting plate; 541. Concave portion; 550. Limiting component; 610. Mounting cavity; 620. Sliding rod; 630. Pressing plate; 640. Fixed plate; 641. Snap-in groove; 650. Second spring; 660. Rotating seat; 670. Matching member; 680. Matching plate; 690. Counterweight roller; 710. Driving arm. DETAILED DESCRIPTION

[0041] In order to further understand the content of the present invention, the present invention is described in detail in conjunction with the embodiments. It should be understood that the embodiments are only for explaining the present invention and are not intended to limit it.

[0042] Example 1 See also Figure 1-7 The present embodiment provides a multi-station cloth-pulling device for cloth processing, which includes a device body 100, the device body 100 includes a frame 110, a horizontally arranged laying plate 210 is provided at the frame 110, and at least three parallel grooves 310 are formed on the laying plate 210 along the cloth conveying direction, a sliding plate 510 is slidably provided in the groove 310, and a limiting component 550 corresponding to the groove 310 is provided at the sliding plate 510, and the limiting component 550 is used to cooperate with the sliding plate 510 to limit the cloth head; A cutting mechanism 130 and a linear module 420 are provided at the laying plate 210. The cutting mechanism 130 is used to cut the cloth, and the linear module 420 is used to transport the cloth head to the pressing mechanism for limiting. A release member 230 and a driving member 240 are respectively provided at both ends of the cutting mechanism 130 of the laying plate 210. The release member 230 is used to drive the limiting assembly 550 to press the cloth, and the driving member 240 is used to drive the limiting assembly 550 to release the cloth.

[0043] The present invention discloses a multi-station cloth-pulling device for cloth processing. By arranging at least three parallel grooves 310, a sliding plate 510 and a limiting assembly 550 on a laying plate 210, the device can simultaneously handle the cloth-pulling operations of multiple cloth rolls, thereby improving processing efficiency.

[0044] In addition, through the coordinated arrangement of the linear module 420, the sliding plate 510 and the limiting assembly 550, the cloth head can be automatically transported to the clamping mechanism for limiting through the limiting assembly 550 and the sliding plate 510, which can not only stably limit the cloth head to ensure that the cloth head will not move during the cutting process, thereby improving the cutting accuracy, but also eliminate the need for manual pulling of the cloth head, thereby improving work efficiency.

[0045] It can be understood that, through the setting of the release member 230 and the driving member 240, the linear module 420 transports the cloth heads at the limit assembly 550 and the sliding plate 510 to the clamping mechanism for clamping, and then the limit assembly 550 and the sliding plate 510 are released from the limit on the cloth heads through the release member 230, and then the limit assembly 550 and the sliding plate 510 are transported to the original position through the linear module 420, and the cloth is clamped again through the driving member 240, and then the cutting mechanism 130 is used for cutting, so that the limit assembly 550 and the sliding plate 510 transported to the original position form a limit for the cut cloth heads, and the whole process does not require human intervention, and the degree of automation is high.

[0046] In this embodiment, an installation groove for installing the linear module 420 is formed at the laying plate 210, an installation gap is formed between the installation groove and the groove 310, and fixed parts that penetrate the installation gap and are arranged at the moving end of the linear module 420 are formed at both ends of the sliding plate 510, and a through groove 410 for installing the sliding plate 510 is formed between adjacent grooves 310.

[0047] Through the above structure, the sliding plate 510 can slide inside the groove 310 without occupying the top position of the laying plate 210, thereby ensuring the flatness of the top surface of the laying plate 210.

[0048] In this embodiment, a plurality of auxiliary components 220 are provided at the groove 310, and an opening portion is formed at the groove 310. The plurality of auxiliary components 220 are used to seal the opening portion. The auxiliary components 220 include a plurality of first springs 320 provided at the groove 310, and a top plate 330 is commonly provided on the top of the plurality of first springs 320, wherein the top wall of the top plate 330 is flush with the opening portion.

[0049] Through the above structure, the opening of the groove 310 forms a plane, thereby avoiding interference with the cloth when pulling the cloth.

[0050] It can be understood that a plurality of auxiliary components 220 are provided at the groove 310, and these auxiliary components 220 work together to seal the opening, thereby preventing dust, debris, etc. from entering the interior of the groove 310, protecting key components such as the sliding plate 510 and the limit assembly 550 from external pollution and damage, thereby extending the service life of the equipment.

[0051] In this embodiment, a protrusion 530 corresponding to the limiting assembly 550 is formed on the top wall of the sliding plate 510, and inclined surfaces inclined toward each other are formed at both ends of the top plate 330 along the length direction of the groove 310, and inclined portions 520 matching the inclined surfaces are formed at both ends of the bottom walls corresponding to the sliding plate 510 and the top plate 330.

[0052] By disposing the convex portion 530 , the convex portion 530 can extend into the opening and be flush with the top surface of the laying board 210 , thereby improving the limiting effect of the limiting component 550 on the cloth head.

[0053] By setting the inclined surface and the inclined portion 520, the sliding plate 510 can press down the top plate 330 when moving. Figure 3 In the state shown, after the sliding plate 510 moves, the top plate 330 is always flush with the top surface of the laying plate 210. At the same time, the contact between the sliding plate 510 and the top plate 330 during the sliding process is smoother, reducing friction and wear.

[0054] In this embodiment, a mounting plate 540 for mounting the limiting assembly 550 is detachably provided at the top of the sliding plate 510 , and a recess 541 for the pressing mechanism to extend into is formed at the side wall of the mounting plate 540 .

[0055] A space is provided for the pressing mechanism to extend in. When the cloth head is pulled to the pressing mechanism, the pressing mechanism can extend into the recess 541 to press the cloth, thereby avoiding interference between the pressing mechanism and the limiting assembly 550.

[0056] In this embodiment, a mounting cavity 610 is formed at the mounting plate 540, and the limiting assembly 550 includes a slide rod 620 slidably arranged at the mounting cavity 610, the slide rod 620 passes through one end of the mounting plate 540, a pressure plate 630 is provided at the bottom wall, a fixing plate 640 is provided at the top wall of the slide rod 620, a second spring 650 is provided between the mounting cavity 610 and the bottom wall of the fixing plate 640, the second spring 650 is used to provide an elastic force to keep the pressure plate 630 pressed upward, a rotating seat 660 is provided at the top wall of the mounting plate 540, a mating piece 670 is rotatably provided at the rotating seat 660, and a snap-in groove 641 is formed at the top wall of the fixing plate 640, and the snap-in groove 641 is used to limit the mating piece 670.

[0057] The slide rod 620 is slidably arranged in the installation cavity 610 formed at the installation plate 540, and a pressure plate 630 is provided at the bottom wall of one end of the slide rod 620 that passes through the installation plate 540, so that the pressure plate 630 can move up and down as needed to compress or release the cloth.

[0058] In addition, through the matching arrangement of the matching piece 670 and the clamping groove 641, when the cloth needs to be pressed, the matching piece 670 can be clamped into the clamping groove 641 to lock the position of the slide bar 620, thereby maintaining the pressing force of the pressing plate 630 on the cloth.

[0059] It can be understood that the second spring 650 between the fixed plate 640 at the top wall of the slide rod 620 and the bottom wall of the mounting cavity 610 provides an upward elastic force for the pressure plate 630, so that the pressure plate 630 remains in an upward pressed state by default, ensuring that the pressure plate 630 is always in contact with the bottom wall of the mounting plate 540 when the linear module 420 is reset, thereby avoiding interference with the fabric.

[0060] In this embodiment, a matching plate 680 matching with the driving member 240 is provided at the top wall of the matching member 670 , and a counterweight roller 690 matching with the matching groove 641 is provided at one end of the matching plate 680 close to the driving member 240 .

[0061] A matching plate 680 matching with the driving member 240 is provided on the top wall of the matching member 670, so that the driving member 240 can drive the matching member 670 to rotate, and the connection between the matching member 670 and the connecting groove 641 can be conveniently controlled, thereby realizing automatic driving of the limiting component 550 to limit the cloth.

[0062] It can be understood that, by setting the counterweight roller 690, after the mating member 670 is driven by the release member 230, the mating plate 680 at the mating member 670 is always tilted due to the deadweight of the mating plate 680, such as Figure 6 The state shown improves the linkage stability between the matching member 670 and the driving member 240.

[0063] In this embodiment, a rotating shaft is formed at the matching member 670 and is disposed at the rotating seat 660 . The rotating shaft passes through one end of the rotating seat 660 and a driving arm 710 corresponding to the releasing member 230 is disposed at the end thereof.

[0064] The fitting part 670 is formed with a rotating shaft arranged at the rotating seat 660, so that the fitting part 670 can flexibly rotate around the rotating shaft, and then the fitting part 670 can be easily engaged or separated with the engaging groove 641, thereby realizing rapid limiting and unlocking of the cloth.

[0065] It can be understood that the rotating shaft passes through one end of the rotating seat 660 and is provided with a driving arm 710 corresponding to the release member 230, so that the release member 230 can drive the matching member 670 to rotate through the driving arm 710. When the release member 230 is activated, it pushes the driving arm 710, thereby driving the matching member 670 to rotate, thereby realizing the release operation of the cloth head.

[0066] In this embodiment, a mounting roller 120 is disposed at the frame 110 , and at least two mounting portions for mounting the cloth rolls are formed at the mounting roller 120 .

[0067] At least two mounting portions for mounting fabric rolls are formed at the mounting roller 120, so that the device can simultaneously mount multiple fabric rolls, thereby improving the flexibility and adaptability of the device and meeting the simultaneous processing of multiple fabrics under different production requirements.

[0068] Example 2 This embodiment provides a working method of a multi-station cloth-pulling device for cloth processing, comprising the following steps: The cloth head is laid flat and limited by the limiting assembly 550 and the sliding plate 510; The cloth head is transported to the clamping mechanism through the linear module 420, and the cloth head is limited by the clamping mechanism, and at the same time, the release member 230 drives the limiting assembly 550 to release the cloth head; The limiting assembly 550 is transported to the original position by the linear module 420, and at the same time, the driving member 240 drives the limiting assembly 550 to press the cloth; The cloth is cut by the cutting mechanism 130 to complete the cloth pulling and cutting operation.

[0069] Through the above, the entire work process is automated, reducing manual intervention and improving production efficiency and product quality.

[0070] It is easy to understand that those skilled in the art can combine, split, reorganize, etc. the embodiments of the present application to obtain other embodiments based on one or several embodiments provided in the present application, and these embodiments do not exceed the protection scope of the present application.

[0071] The present invention and its implementation methods are described schematically above, and the description is not restrictive. The embodiments shown in the embodiments are only part of the implementation methods of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by the embodiments and designs a structure and an implementation method similar to the technical solution without creativity without departing from the purpose of the invention, they should all fall within the protection scope of the present invention.

Claims

1. Multi-station cloth pulling equipment for cloth processing, characterized in that: The device comprises an equipment body (100), wherein the equipment body (100) comprises a frame (110), wherein a horizontally arranged laying plate (210) is provided on the frame (110), wherein the laying plate (210) is formed with at least three parallel grooves (310) along the cloth conveying direction, wherein a sliding plate (510) is slidably provided in the groove (310), wherein a position limiting component (550) corresponding to the groove (310) is provided on the sliding plate (510), and wherein the position limiting component (550) is used to cooperate with the sliding plate (510) to limit the position of the cloth head; A cutting mechanism (130) and a linear module (420) are provided at the laying plate (210); the cutting mechanism (130) is used to cut the cloth; the linear module (420) is used to transport the cloth head to the pressing mechanism for limiting; a release member (230) and a driving member (240) are provided at both ends of the cutting mechanism (130) of the laying plate (210); the release member (230) is used to drive the limiting assembly (550) to press the cloth; and the driving member (240) is used to drive the limiting assembly (550) to release the cloth.

2. The multi-station cloth-pulling equipment for cloth processing according to claim 1 is characterized in that: An installation groove for installing the linear module (420) is formed at the laying plate (210), an installation gap is formed between the installation groove and the groove (310), fixed parts penetrating the installation gap and arranged at the moving end of the linear module (420) are formed at both ends of the sliding plate (510), and a through groove (410) for installing the sliding plate (510) is formed between adjacent grooves (310).

3. The multi-station cloth-pulling equipment for cloth processing according to claim 1 is characterized in that: A plurality of auxiliary components (220) are provided at the groove (310), an opening portion is formed at the groove (310), the plurality of auxiliary components (220) are used to seal the opening portion, the auxiliary components (220) include a plurality of first springs (320) provided at the groove (310), a top plate (330) is commonly provided on the top of the plurality of first springs (320), wherein a top wall of the top plate (330) is flush with the opening portion.

4. The multi-station cloth-pulling device for cloth processing according to claim 3 is characterized in that: A convex portion (530) corresponding to the limit assembly (550) is formed on the top wall of the sliding plate (510), inclined surfaces inclined towards each other are formed at both ends of the top plate (330) along the length direction of the groove (310), and inclined portions (520) cooperating with the inclined surfaces are formed at both ends of the bottom walls corresponding to the sliding plate (510) and the top plate (330).

5. The multi-station cloth-pulling device for cloth processing according to claim 4 is characterized in that: A mounting plate (540) for mounting the limit assembly (550) is detachably provided at the top of the sliding plate (510), and a recess (541) for the pressing mechanism to extend into is formed at the side wall of the mounting plate (540).

6. The multi-station cloth-pulling equipment for cloth processing according to claim 1 is characterized in that: A mounting cavity (610) is formed at the mounting plate (540), and the limiting assembly (550) includes a slide rod (620) slidably arranged at the mounting cavity (610), the slide rod (620) passes through the mounting plate (540), a pressure plate (630) is provided at the bottom wall at one end, a fixing plate (640) is provided at the top wall of the slide rod (620), a second spring (650) is provided between the mounting cavity (610) and the bottom wall of the fixing plate (640), the second spring (650) is used to provide an elastic force to keep the pressure plate (630) pressed upward, a rotating seat (660) is provided at the top wall of the mounting plate (540), a matching piece (670) is rotatably provided at the rotating seat (660), and a clamping groove (641) is formed at the top wall of the fixing plate (640), and the clamping groove (641) is used to limit the matching piece (670).

7. The multi-station cloth-pulling device for cloth processing according to claim 6 is characterized in that: A matching plate (680) matching with the driving member (240) is provided on the top wall of the matching member (670), and a counterweight roller (690) matching with the matching groove (641) is provided at one end of the matching plate (680) close to the driving member (240).

8. The multi-station cloth-pulling device for cloth processing according to claim 6 is characterized in that: A rotating shaft disposed at the rotating seat (660) is formed at the matching piece (670), and the rotating shaft passes through the rotating seat (660). A driving arm (710) corresponding to the releasing piece (230) is disposed at one end thereof.

9. The multi-station cloth-pulling device for cloth processing according to claim 1, characterized in that: A mounting roller (120) is provided at the frame body (110), and at least two mounting portions for mounting cloth rolls are formed at the mounting roller (120).

10. A working method of a multi-station cloth-pulling device for cloth processing, characterized in that: The steps include: The cloth head is laid flat and limited in position by means of a limiting assembly (550) and a sliding plate (510); The cloth head is conveyed to the clamping mechanism through the linear module (420), and the cloth head is limited by the clamping mechanism, while the release member (230) drives the limiting component (550) to release the cloth head; The limiting assembly (550) is transported to the original position by the linear module (420), and at the same time, the driving member (240) drives the limiting assembly (550) to press the cloth; The cloth is cut by the cutting mechanism (130) to complete the cloth pulling and cutting operation.

Citation Information

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