Material distributing, feeding, cutting and collecting integrated processing equipment
By designing fabric processing equipment that integrates feeding, cutting and collecting functions, the problem of low manual loading and material collection efficiency in the prior art is solved, and automatic loading and cutting of fabrics is realized, and processing efficiency is improved.
Patent Information
- Application Number
- CN202421959302.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-13
AI Technical Summary
Existing fabric cutting machines require manual feeding and collection, which is inefficient and cannot directly deal with fabrics that are curled into one barrel, which affects the cutting efficiency.
Design a fabric feeding, cutting and harvesting integrated processing equipment, integrating feeding, cutting and harvesting functions. It realizes automatic loading and cutting of fabrics through the conveyor belt and clamping assembly of the feeding and conveying mechanism, which is suitable for continuous processing of long roll fabrics.
It realizes automatic loading and cutting of fabrics, improves processing efficiency, reduces labor costs, and is suitable for continuous processing of large-piece cloth rolls.
Smart Images

Figure CN223047789U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cloth cutting, in particular to an integrated processing device for feeding, cutting and collecting cloth. Background Art
[0002] In the clothing processing industries such as clothing and shoes, cotton cloth, denim, felt and other cloths are often used. In the process of product processing and production, these cloths usually need to be cut. At present, although some cloth cutting machines on the market can automatically cut cloth, when the cloth cutting machine is working, it is still necessary to manually place a piece of cloth on the workbench, and then run the machine to cut the cloth. After cutting the cloth, it is also necessary to manually take down the cut cloth, and then place the next piece of cloth on the workbench. This process is repeated. However, the cloth cutting machine has the following problems: First, it is necessary to manually feed the cloth, resulting in high labor costs and low work efficiency; Second, it is necessary to manually take out the cloth that has completed the previous processing from the equipment, and then the next piece of cloth to be cut can be fed onto the workbench of the equipment for cutting, resulting in low overall cloth cutting efficiency; Third, the cloth cutting machine can only cut pieces of cloth, and cannot directly cut the cloth wound into a roll. If the cloth is to be wound into a roll, it is necessary to first cut the cloth into pieces, and then use the cloth cutting machine to cut the pieces of cloth, which also affects the cloth cutting efficiency.
[0003] Therefore, it is necessary to provide an integrated processing device for feeding, cutting and collecting cloth with high processing efficiency. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an integrated processing device for feeding, cutting and collecting cloth with high processing efficiency.
[0005] To achieve the above object, the present utility model provides an integrated processing device for feeding, cutting, and collecting fabrics, which includes a frame, a feeding mechanism, a feeding and conveying mechanism, and a cutting mechanism. The frame is sequentially provided with a feeding station, a cutting station, and a collecting station along a straight line direction; the feeding mechanism is arranged on the frame and located at the feeding station, and the feeding mechanism is used to provide fabrics; the feeding and conveying mechanism includes a conveying component, a feeding movement driving component, a first feeding clamping component, and a second feeding clamping component. The conveying component is arranged on the frame, and the conveying component has a conveyor belt arranged at the feeding station, the cutting station, and the collecting station. The conveyor belt is located on one side of the feeding mechanism. The feeding movement driving component is arranged on the frame and located at the feeding station. The first feeding clamping component is arranged on the feeding movement driving component. The second feeding clamping component is arranged on the frame and located at the feeding station, and the first feeding clamping component is located between the feeding mechanism and the second feeding clamping component. The first feeding clamping component is used to clamp the conveyor belt and the fabric located on the conveyor belt. The feeding movement driving component is used to drive the first feeding clamping component to move back and forth between the feeding mechanism and the second feeding clamping component. The second feeding clamping component is used to clamp and position the fabric on the conveyor belt; the cutting mechanism is arranged on the frame and located at the cutting station, and the cutting mechanism is used to cut the fabric located on the conveyor belt.
[0006] Preferably, the feeding mechanism includes a feeding frame body and a feeding guiding roller assembly. The feeding frame body is arranged on the frame and used for placing fabrics. The feeding guiding roller assembly is arranged on the frame and located on one side of the conveyor belt. The feeding guiding roller assembly is used for the fabric to pass through and guide the fabric.
[0007] Preferably, the feeding mechanism further includes a feeding rotating shaft. The feeding frame body is provided with a placing groove and at least two supporting rollers located on the lower side of the placing groove. The feeding rotating shaft is placed in the placing groove and rotatably supported on the supporting rollers. The feeding rotating shaft is used for a roll-shaped fabric to be sleeved.
[0008] Preferably, a plurality of the placing grooves are respectively arranged on the feeding frame body in the vertical direction, and at least two of the supporting rollers are correspondingly arranged below each of the placing grooves.
[0009] Preferably, the feeding movement driving assembly includes a feeding rotation driving module and a ball screw module. The feeding rotation driving module and the ball screw module are respectively arranged on the frame. The output end of the feeding rotation driving module is connected to the screw part of the ball screw module. The first feeding clamping assembly is connected to the ball part of the ball screw module. The feeding rotation driving module drives the screw part of the ball screw module to rotate, so that the ball part of the ball screw module drives the first feeding clamping assembly to move.
[0010] Preferably, the first feeding clamping assembly is slidably arranged on the frame.
[0011] Preferably, the first feeding clamping assembly includes a first clamping frame body, a first clamping fixing part, a first clamping cylinder and a first clamping movable part. The first clamping frame body is arranged on the feeding movement driving assembly. A plurality of the first clamping fixing parts are respectively arranged on the first clamping frame body and are located below the upper part of the conveyor belt. The first clamping cylinder is arranged on the first clamping frame body. The output end of the first clamping cylinder is connected to the first clamping movable part. The first clamping movable part is located above the upper part of the conveyor belt. By driving the first clamping movable part to descend towards the first clamping fixing part through the first clamping cylinder, the first clamping movable part and the first clamping fixing part clamp the conveyor belt and the fabric located on the conveyor belt.
[0012] Preferably, the second feeding clamping assembly includes a second clamping frame body, a second clamping fixing part, a second clamping cylinder and a second clamping movable part. The second clamping frame body is arranged on the frame. The second clamping fixing part is arranged on the second clamping frame body and is located below the upper part of the conveyor belt. The second clamping cylinder is arranged on the second clamping frame body. The output end of the second clamping cylinder is connected to the second clamping movable part. The second clamping movable part is located above the upper part of the conveyor belt. By driving the second clamping movable part to descend towards the second clamping fixing part through the second clamping cylinder, the second clamping movable part and the second clamping fixing part clamp the conveyor belt and the fabric located on the conveyor belt.
[0013] Preferably, the cutting mechanism includes a cutting movement driving assembly and a cutting module. The cutting movement driving assembly is arranged on the frame. The cutting module is arranged on the cutting movement driving assembly. The cutting movement driving assembly is used to drive the cutting module to move. The cutting module is used to cut and / or punch the fabric located on the conveyor belt.
[0014] Preferably, the two cutting mechanisms are arranged on the frame at intervals.
[0015] Compared with the prior art, the integrated processing equipment for feeding, cutting and collecting fabric of the present utility model sets a feeding station, a cutting station and a collecting station on the frame, and arranges the conveyor belt of the conveying component of the feeding conveyor mechanism on the feeding station, the cutting station and the collecting station. The feeding and moving driving component of the feeding conveyor mechanism drives the first feeding clamping component to reciprocate between the feeding mechanism and the second feeding clamping component, so that the first feeding clamping component reciprocally clamps the conveyor belt and the fabric provided by the feeding mechanism, and pulls the conveyor belt to move, thereby continuously driving the fabric to move to the cutting station and the collecting station in sequence, thus realizing the automatic feeding of the fabric, being applicable to feeding long-roll fabrics, without manual feeding, and greatly improving the processing efficiency. And because the fabric can be continuously fed to the cutting station, the cutting mechanism can continuously perform automatic cutting on the fabric, further improving the processing efficiency. When the fabric is at the collecting station, the cut fabric can be collected. Also, after the first feeding clamping component pulls the fabric close to the second feeding clamping component, the second feeding clamping component clamps the fabric on the conveyor belt. When the first feeding clamping component releases the fabric and the conveyor belt and moves towards the feeding mechanism, the fabric can be stably positioned on the conveyor belt without moving, ensuring that the cutting mechanism can accurately cut the fabric at the cutting station. Therefore, the integrated processing equipment for feeding, cutting and collecting fabric of the present utility model has the characteristics of high processing efficiency, integrates the functions of feeding, cutting and collecting, can quickly and efficiently process the fabric, and is applicable to continuous processing of large-piece fabric rolls. Description of the Drawings
[0016] Figure 1 is a three-dimensional structure diagram of the integrated processing equipment for feeding, cutting and collecting fabric of the present utility model.
[0017] Figure 2 is a top view of the integrated processing equipment for feeding, cutting and collecting fabric of the present utility model.
[0018] Figure 3 is a partial structure diagram of the integrated processing equipment for feeding, cutting and collecting fabric of the present utility model.
[0019] Figure 4 is Figure 3 an enlarged view of part A in
[0020] Figure 5 is a partial structure diagram of the integrated processing equipment for feeding, cutting and collecting fabric of the present utility model at the position of the feeding conveyor mechanism.
[0021] Figure 6 is a partial structure diagram of the integrated processing equipment for feeding, cutting and collecting fabric of the present utility model at the position of the cutting mechanism. Detailed Embodiments
[0022] To describe the technical content and structural features of the present utility model in detail, the following further description is made in conjunction with the embodiments and with reference to the drawings.
[0023] Please refer to Figures 1 to 3 , the integrated processing equipment 100 for feeding, cutting, and collecting fabric of the present utility model includes a frame 1, a feeding mechanism 2, a feeding conveyor mechanism 3, and a cutting mechanism 4. The frame 1 is sequentially provided with a feeding station 11, a cutting station 12, and a collecting station 13 along a straight line direction; the feeding mechanism 2 is arranged on the frame 1 and located at the feeding station 11, and the feeding mechanism 2 is used to provide fabric; the feeding conveyor mechanism 3 includes a conveying component 31, a feeding movement driving component 32, a first feeding clamping component 33, and a second feeding clamping component 34. The conveying component 31 is arranged on the frame 1, and the conveying component 31 has a conveyor belt 311 arranged at the feeding station 11, the cutting station 12, and the collecting station 13. The conveyor belt 311 is located on one side of the feeding mechanism 2. The feeding movement driving component 32 is arranged on the frame 1 and located at the feeding station 11. The first feeding clamping component 33 is arranged on the feeding movement driving component 32. The second feeding clamping component 34 is arranged on the frame 1 and located at the feeding station 11, and the first feeding clamping component 33 is located between the feeding mechanism 2 and the second feeding clamping component 34. The first feeding clamping component 33 is used to clamp the conveyor belt 311 and the fabric located on the conveyor belt 311. The feeding movement driving component 32 is used to drive the first feeding clamping component 33 to move back and forth between the feeding mechanism 2 and the second feeding clamping component 34. The second feeding clamping component 34 is used to clamp and position the fabric on the conveyor belt 311; the cutting mechanism 4 is arranged on the frame 1 and located at the cutting station 12, and the cutting mechanism 4 is used to cut the fabric located on the conveyor belt 311.
[0024] The utility model can drive the first feeding clamping assembly 33 to reciprocate between the feeding mechanism 2 and the second feeding clamping assembly 34 through the feeding movement driving assembly 32 of the feeding conveying mechanism 3, so that the first feeding clamping assembly 33 reciprocally clamps the conveyor belt 311 and the fabric provided by the feeding mechanism 2, and pulls the conveyor belt 311 to move, thereby continuously driving the fabric to move to the cutting station 12 and the material receiving station 13 in sequence, realizing the automatic feeding of the fabric, being applicable to feeding long-roll fabrics, eliminating the need for manual feeding, and greatly improving the processing efficiency; and since the fabric can be continuously fed to the cutting station 12, the cutting mechanism 4 can continuously perform automatic cutting on the fabric, further improving the processing efficiency; when the fabric is at the material receiving station 13, the cut fabric can be collected; in addition, after the first feeding clamping assembly 33 pulls the fabric close to the second feeding clamping assembly 34, the second feeding clamping assembly 34 clamps the fabric on the conveyor belt 311, so that when the first feeding clamping assembly 33 releases the fabric and the conveyor belt 311 and moves towards the feeding mechanism 2, the fabric can be stably positioned on the conveyor belt 311 without moving, ensuring that the cutting mechanism 4 can accurately cut the fabric at the cutting station 12.
[0025] Please refer to Figure 1 , Figure 3 and Figure 4 , in this embodiment, the feeding mechanism 2 includes a feeding frame body 21 and a feeding guiding roller assembly 22. The feeding frame body 21 is arranged on the frame 1 and is used for placing the fabric, and the feeding guiding roller assembly 22 is arranged on the frame 1 and is located on one side of the conveyor belt 311. The feeding guiding roller assembly 22 is used for the fabric to pass through and guide the fabric. Further, the feeding mechanism 2 further includes a feeding rotating shaft 23. The feeding frame body 21 is provided with a placing groove 211 and at least two supporting rollers 212 located below the placing groove 211. The feeding rotating shaft 23 is placed in the placing groove 211 and is rotatably supported on the supporting rollers 212. The feeding rotating shaft 23 is used for the coiled fabric to be sleeved. By arranging the supporting rollers 212 below the placing groove 211, when the feeding rotating shaft 23 is placed in the placing groove 211, it can be supported on the supporting rollers 212. At the same time, the supporting rollers 212 enable the feeding rotating shaft 23 to rotate. During the process that the first feeding clamping assembly 33 reciprocally clamps the conveyor belt 311 and the fabric provided by the feeding mechanism 2, the feeding rotating shaft 23 rotates and continuously conveys the fabric to the feeding station 11 through the feeding guiding roller assembly 22. In this embodiment, the number of the supporting rollers 212 is two, but it is not limited thereto. Among them, the specific structure and principle of the feeding guiding roller assembly 22 are well known to those skilled in the art, so they will not be elaborated here.
[0026] Please refer to Figure 3 and Figure 4, in this embodiment, a plurality of placement grooves 211 are respectively arranged on the feeding frame body 21 in the up-and-down direction, and at least two support rollers 212 are correspondingly arranged below each placement groove 211. By providing a plurality of placement grooves 211 and the corresponding support rollers 212, multiple rolls of fabric can be placed, and alternative feeding of the fabric can be achieved.
[0027] Please refer to Figure 5 , in this embodiment, the feeding movement driving assembly 32 includes a feeding rotation driving module 321 and a ball screw module 322. The feeding rotation driving module 321 and the ball screw module 322 are respectively arranged on the frame 1. The output end of the feeding rotation driving module 321 is connected to the screw rod portion of the ball screw module 322, and the first feeding clamping assembly 33 is connected to the ball portion of the ball screw module 322. The feeding rotation driving module 321 drives the screw rod portion of the ball screw module 322 to rotate, so that the ball portion of the ball screw module 322 drives the first feeding clamping assembly 33 to move. Among them, the feeding rotation driving module 321 can adopt a structure in which a rotary motor is connected to a belt pulley group. The rotary motor drives the driving pulley of the belt pulley group to rotate, so as to drive the driven pulley to rotate through the belt, and the driven pulley is connected to the screw rod portion of the ball screw module 322, so that the screw rod portion of the ball screw module 322 can be driven to rotate, thereby enabling the ball portion of the ball screw module 322 to drive the first feeding clamping assembly 33 to move. Specifically, the first feeding clamping assembly 33 is slidably arranged on the frame 1. Among them, a guiding slide rail can be arranged on the frame 1, and the first feeding clamping assembly 33 is slidably arranged on this guiding slide rail, but it is not limited thereto.
[0028] Please refer to Figure 1 and Figure 5, in this embodiment, the first feeding and clamping assembly 33 includes a first clamping frame 331, a first clamping fixing member 332, a first clamping cylinder 333 and a first clamping movable member 334. The first clamping frame 331 is arranged on the feeding and moving driving assembly 32. A plurality of first clamping fixing members 332 are respectively arranged on the first clamping frame 331 and located below the upper part of the conveyor belt 311. The first clamping cylinder 333 is arranged on the first clamping frame 331. The output end of the first clamping cylinder 333 is connected to the first clamping movable member 334. The first clamping movable member 334 is located above the upper part of the conveyor belt 311. By driving the first clamping movable member 334 to descend towards the first clamping fixing member 332 through the first clamping cylinder 333, the first clamping movable member 334 and the first clamping fixing member 332 clamp the conveyor belt 311 and the fabric located on the conveyor belt 311. During the process that the feeding and moving driving assembly 32 of the feeding and conveying mechanism 3 drives the first feeding and clamping assembly 33 to move back and forth between the feeding mechanism 2 and the second feeding and clamping assembly 34, when the first feeding and clamping assembly 33 moves to a position close to the feeding mechanism 2, by driving the first clamping movable member 334 to descend towards the first clamping fixing member 332 through the first clamping cylinder 333, the first clamping movable member 334 and the first clamping fixing member 332 clamp the conveyor belt 311 and the fabric located on the conveyor belt 311; when the first feeding and clamping assembly 33 moves to a position close to the second feeding and clamping assembly 34, by driving the first clamping movable member 334 to ascend through the first clamping cylinder 333, the conveyor belt 311 and the fabric located on the conveyor belt 311 are released, and the second feeding and clamping assembly 34 clamps the fabric on the conveyor belt 311 at the feeding station 11, and the cutting mechanism 4 at the cutting station 12 cuts the fabric at the cutting station 12.
[0029] Please continue to refer to Figure 1 and Figure 5, in this embodiment, the second feeding and clamping assembly 34 includes a second clamping frame 341, a second clamping fixing member 342, a second clamping cylinder 343 and a second clamping movable member 344. The second clamping frame 341 is disposed on the frame 1. The second clamping fixing member 342 is disposed on the second clamping frame 341 and is located below the upper part of the conveyor belt 311. The second clamping cylinder 343 is disposed on the second clamping frame 341. The output end of the second clamping cylinder 343 is connected to the second clamping movable member 344. The second clamping movable member 344 is located above the upper part of the conveyor belt 311. By driving the second clamping movable member 344 to descend towards the second clamping fixing member 342 by the second clamping cylinder 343, the second clamping movable member 344 and the second clamping fixing member 342 clamp the conveyor belt 311 and the fabric located on the conveyor belt 311. When the first feeding and clamping assembly 33 moves to a position close to the second feeding and clamping assembly 34, the first feeding and clamping assembly 33 releases the conveyor belt 311 and the fabric located on the conveyor belt 311. The second clamping cylinder 343 of the second feeding and clamping assembly 34 drives the second clamping movable member 344 to descend towards the second clamping fixing member 342, so that the second clamping movable member 344 and the second clamping fixing member 342 clamp the conveyor belt 311 and the fabric located on the conveyor belt 311.
[0030] Please refer to Figure 1 and Figure 6 , in this embodiment, the cutting mechanism 4 includes a cutting movement driving assembly 41 and a cutting module 42. The cutting movement driving assembly 41 is disposed on the frame 1. The cutting module 42 is disposed on the cutting movement driving assembly 41. The cutting movement driving assembly 41 is used to drive the cutting module 42 to move. The cutting module 42 is used to cut and / or punch the fabric located on the conveyor belt 311. Specifically, two cutting mechanisms 4 are arranged on the frame 1 at intervals. Among them, the cutting movement driving assembly 41 of the cutting mechanism 4 can adopt an existing three-axis movement driving mechanism, but not limited thereto. For example, the cutting movement driving assembly 41 can also adopt an existing four-axis manipulator or six-axis manipulator, etc. The cutting module 42 can adopt an existing mechanism that can both cut and punch, but not limited thereto. For example, the cutting module 42 only has a cutting function. Since the specific structures and principles of the cutting movement driving assembly 41 and the cutting module 42 are well known to those skilled in the art, they will not be elaborated here. When the cutting mechanism 4 cuts the fabric, a projection mechanism can be set up to project the pattern or shape to be cut onto the fabric by the projection mechanism, and a visual recognition and positioning mechanism is used to take pictures and position the pattern or shape on the fabric. Thus, according to the information of the picture taking and positioning, the cutting movement driving assembly 41 of the cutting mechanism 4 is controlled to drive the cutting module 42 to accurately move to the position corresponding to the fabric cutting, and then the cutting module 42 cuts and punches the fabric. However, the cutting method of the cutting mechanism 4 for cutting the fabric is not limited thereto.
[0031] Combined with Figures 1 to 6 , the specific working principle of the integrated fabric feeding, cutting and collecting processing equipment 100 of the present utility model is as follows:
[0032] The feeding shaft 23 of the feeding mechanism 2 is wound with fabric. One end of the fabric passes through the feeding guide roller assembly 22 and extends onto the conveyor belt 311 at the feeding station 11. The first clamping cylinder 333 of the first feeding clamping assembly 33 drives the first clamping movable member 334 to descend towards the first clamping fixed member 332, so that the first clamping movable member 334 and the first clamping fixed member 332 clamp the conveyor belt 311 and the fabric on the conveyor belt 311. The feeding rotation drive module 321 of the feeding movement drive assembly 32 rotates the screw part of the ball screw module 322 through driving, so that the ball part of the ball screw module 322 drives the first feeding clamping assembly 33 to move, thereby driving the clamped conveyor belt 311 and the fabric to move. When the first feeding clamping assembly 33 moves to a position close to the second feeding clamping assembly 34, the first clamping cylinder 333 drives the first clamping movable member 334 to rise, so as to release the conveyor belt 311 and the fabric on the conveyor belt 311, while the second feeding clamping assembly 34 clamps the fabric on the conveyor belt 311 at the feeding station 11. The cutting mechanism 4 at the cutting station 12 cuts the fabric at the cutting station 12, and the fabric on the conveyor belt 311 at the collecting station 13 can be collected. The feeding rotation drive module 321 of the feeding movement drive assembly 32 rotates the screw part of the ball screw module 322 through driving, so that the ball part of the ball screw module 322 drives the first feeding clamping assembly 33 to move close to the feeding mechanism 2 and reset. Repeat this process.
[0033] In summary, the integrated processing equipment 100 for feeding, cutting, and collecting fabrics of the present utility model sets a feeding station 11, a cutting station 12, and a collecting station 13 on the frame 1, and arranges the conveyor belt 311 of the conveying component 31 of the feeding conveyor mechanism 3 on the feeding station 11, the cutting station 12, and the collecting station 13. The feeding and moving driving component 32 of the feeding conveyor mechanism 3 drives the first feeding clamping component 33 to reciprocate between the feeding mechanism 2 and the second feeding clamping component 34, so that the first feeding clamping component 33 reciprocally clamps the conveyor belt 311 and the fabric provided by the feeding mechanism 2, and pulls the conveyor belt 311 to move, thereby continuously driving the fabric to move to the cutting station 12 and the collecting station 13 in sequence, thus realizing the automatic feeding of the fabric, being applicable to feeding long roll fabrics, without manual feeding, and greatly improving the processing efficiency; and because the fabric can be continuously fed to the cutting station 12, the cutting mechanism 4 can continuously perform automatic cutting on the fabric, further improving the processing efficiency; when the fabric is at the collecting station 13, the cut fabric can be collected; moreover, after the first feeding clamping component 33 pulls the fabric close to the second feeding clamping component 34, the second feeding clamping component 34 clamps the fabric on the conveyor belt 311, so that when the first feeding clamping component 33 releases the fabric and the conveyor belt 311 and moves towards the feeding mechanism 2, the fabric can be stably positioned on the conveyor belt 311 without moving, ensuring that the cutting mechanism 4 can accurately cut the fabric at the cutting station 12. Therefore, the integrated processing equipment 100 for feeding, cutting, and collecting fabrics of the present utility model has the characteristics of high processing efficiency, integrates the functions of feeding, cutting, and collecting, can quickly and efficiently process fabrics, and is applicable to continuously processing large fabric rolls.
[0034] The above-disclosed are only the preferred examples of the present utility model, and the scope of rights of the present utility model cannot be limited thereby. Therefore, all equivalent changes made according to the claims of the present utility model fall within the scope covered by the present utility model.
Claims
1. A cloth feeding, cutting and collecting integrated processing equipment, characterized in that: include: A frame, wherein the frame is provided with a feeding station, a cutting station and a receiving station in sequence along a straight line; A feeding mechanism, the feeding mechanism is arranged on the frame and located at the feeding station, and the feeding mechanism is used to provide cloth; A feeding and conveying mechanism, the feeding and conveying mechanism comprises a conveying assembly, a feeding movement driving assembly, a first feeding clamping assembly and a second feeding clamping assembly, the conveying assembly is arranged on the frame, the conveying assembly has a conveyor belt arranged on the feeding station, the cutting station and the receiving station, the conveyor belt is located on one side of the feeding mechanism, the feeding movement driving assembly is arranged on the frame and located at the feeding station, the first feeding clamping assembly is arranged on the feeding movement driving assembly, the second feeding clamping assembly is arranged on the frame and located at the feeding station, and the first feeding clamping assembly is located between the feeding mechanism and the second feeding clamping assembly, the first feeding clamping assembly is used to clamp the conveyor belt and the cloth located on the conveyor belt, the feeding movement driving assembly is used to drive the first feeding clamping assembly to and from between the feeding mechanism and the second feeding clamping assembly, and the second feeding clamping assembly is used to clamp and position the cloth on the conveyor belt; A cutting mechanism is arranged on the frame and located at the cutting station, and is used for cutting the cloth on the conveyor belt.
2. The integrated fabric feeding, cutting and collecting processing equipment according to claim 1 is characterized in that: The feeding mechanism includes a feeding frame and a feeding guide roller assembly, wherein the feeding frame is arranged on the frame and is used for placing the cloth, the feeding guide roller assembly is arranged on the frame and is located on one side of the conveyor belt, and the feeding guide roller assembly is used for allowing the cloth to pass through and guiding the cloth.
3. The integrated fabric feeding, cutting and collecting processing equipment according to claim 2 is characterized in that: The feeding mechanism also includes a feeding shaft. The feeding frame is provided with a placement groove and at least two supporting rollers located at the lower side of the placement groove. The feeding shaft is placed in the placement groove and rotatably supported on the supporting rollers. The feeding shaft is used to supply rolled cloth.
4. The integrated fabric feeding, cutting and collecting processing equipment according to claim 3 is characterized in that: A plurality of placement grooves are respectively arranged on the feeding frame along the up-down direction, and at least two supporting rollers are correspondingly arranged below each of the placement grooves.
5. The integrated fabric feeding, cutting and collecting processing equipment according to claim 1, characterized in that: The feeding movement drive assembly includes a feeding rotation drive module and a ball screw module, the feeding rotation drive module and the ball screw module are respectively arranged on the frame, the output end of the feeding rotation drive module is connected to the screw part of the ball screw module, the first feeding clamping assembly is connected to the ball part of the ball screw module, the feeding rotation drive module drives the screw part of the ball screw module to rotate, so that the ball part of the ball screw module drives the first feeding clamping assembly to move.
6. The integrated fabric feeding, cutting and collecting processing equipment according to claim 5, characterized in that: The first feeding clamping assembly is slidably arranged on the frame.
7. The integrated fabric feeding, cutting and collecting processing equipment according to claim 1, characterized in that: The first feeding clamping assembly includes a first clamping frame, a first clamping fixed part, a first clamping cylinder and a first clamping movable part. The first clamping frame is arranged on the feeding moving driving assembly. Several first clamping fixed parts are respectively arranged on the first clamping frame and are located below the upper part of the conveyor belt. The first clamping cylinder is arranged on the first clamping frame. The output end of the first clamping cylinder is connected to the first clamping movable part. The first clamping movable part is located above the upper part of the conveyor belt. The first clamping movable part is driven to descend toward the direction of the first clamping fixed part by the first clamping cylinder, so that the first clamping movable part and the first clamping fixed part clamp the conveyor belt and the cloth located on the conveyor belt.
8. The integrated fabric feeding, cutting and collecting processing equipment according to claim 1, characterized in that: The second feeding clamping assembly includes a second clamping frame, a second clamping fixing part, a second clamping cylinder and a second clamping movable part. The second clamping frame is arranged on the frame, the second clamping fixing part is arranged on the second clamping frame and is located below the upper part of the conveyor belt, the second clamping cylinder is arranged on the second clamping frame, the output end of the second clamping cylinder is connected to the second clamping movable part, the second clamping movable part is located above the upper part of the conveyor belt, and the second clamping movable part is driven to descend toward the direction of the second clamping fixing part by the second clamping cylinder, so that the second clamping movable part and the second clamping fixing part clamp the conveyor belt and the cloth located on the conveyor belt.
9. The integrated fabric feeding, cutting and collecting processing equipment according to claim 1, characterized in that: The cutting mechanism includes a cutting mobile drive component and a cutting module, wherein the cutting mobile drive component is arranged on the frame, and the cutting module is arranged on the cutting mobile drive component, and the cutting mobile drive component is used to drive the cutting module to move, and the cutting module is used to switch and / or punch the cloth on the conveyor belt.
10. The integrated fabric feeding, cutting and collecting processing equipment according to claim 1, characterized in that: The two cutting mechanisms are arranged on the frame at intervals.