Ski suit processing method and automatic positioning device for processing

The ski suit fabric is accurately positioned and smoothed through a multi-dimensional positioning mechanism, which solves the problem of inaccurate positioning in the existing technology and improves the quality and efficiency of ski suit processing.

CN120382270AActive Publication Date: 2025-07-29JIAXIANG MEIER CLOTHING CO LTD
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Patent Information

Application Number
CN202510577371.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-07-29
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

The fabric positioning in the existing ski suits is inaccurate, resulting in large cutting errors and easy wrinkles on the surface of the fabric, affecting the processing quality.

Method used

A multi-dimensional positioning mechanism is adopted, including a first positioning mechanism and a second positioning mechanism. Through the cooperation of the L-shaped insert plate and the compression strip, precise positioning of both sides and front end of the fabric is achieved, and the wrinkles on the surface of the fabric are smoothed during the positioning process.

Benefits of technology

It improves the accuracy of fabric positioning, reduces cutting errors, ensures neat cuts, and improves the quality and efficiency of ski suit processing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120382270A_ABST
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Abstract

The invention belongs to the technical field of fabric cutting, and particularly discloses an automatic positioning device for ski suit processing, which comprises a conveying assembly, the conveying assembly is used for conveying fabric, support plates are mounted on two sides of the conveying assembly, first positioning mechanisms are arranged on two sides of the conveying assembly, and a second positioning mechanism is arranged at the front end of the conveying assembly in the output direction; the ski suit processing method comprises the following steps that S1, the fabric is moved to the surface of the conveying assembly through the conveying assembly; s2, an L-shaped inserting plate moves towards the side face of the conveying assembly, the bottom of a first pressing strip can flatten the surface of the fabric, and when the L-shaped inserting plate stops moving, the first pressing strip just moves to the side end of the fabric; s3, when the L-shaped inserting plate moves, a first inclined block at the end of the connecting plate gradually gets close to a second inclined block at one end of a second pressing strip, and along with continuous movement of the L-shaped inserting plate, the first inclined block pushes the second inclined block, so that the second pressing strip moves downwards, and the front end of the fabric is pressed.
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Description

Technical Field

[0001] The invention belongs to the technical field of fabric cutting, and in particular relates to a ski suit processing method and an automatic positioning device for the processing. Background Art

[0002] Skiwear is a type of sportswear made from specialized functional fabrics, primarily designed to withstand the cold, wind, snow, and humidity of skiing. Skiwear production, primarily using modern machinery with a supplementary handcrafting method, is a crucial component of the textile and garment manufacturing industry. The production process encompasses fabric testing, pattern making, cutting, sewing, laminating, and ironing. Fabric cutting, which involves cutting the fabric into the desired shape according to the design drawings, directly impacts the shape and quality of the finished product. Modern production utilizes precise cutting methods such as lasers or mechanical blades to ensure cutting accuracy while maximizing fabric utilization and minimizing waste.

[0003] Existing ski suit processing uses conveyor belts to transport fabrics, and the friction on the conveyor belt surface is used to position the fabrics. This makes it impossible to accurately position the fabrics when they are cut, and wrinkles easily appear on the surface of the fabrics. As a result, large errors are generated due to inaccurate positioning in subsequent cutting and other processing links, making it difficult to ensure the accuracy of the ski suit pattern. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a ski suit processing method and an automatic positioning device for processing.

[0005] To achieve the above objectives, the present invention provides an automatic positioning device for processing ski clothes, including a conveying component, which is used to transmit fabrics. Support plates are installed on both sides of the conveying component, and a laser cutting component is slidably installed on the top of the support plate. A first positioning mechanism is provided on both sides of the conveying component, and a second positioning mechanism is provided at the front end of the output direction of the conveying component. The first positioning mechanism is used to position the two sides of the fabric, and the second positioning mechanism is used to position the front end of the fabric.

[0006] Preferably, the first positioning mechanism includes an L-shaped insertion plate. The top of the L-shaped insertion plate movably penetrates through the support plate. A manipulation chamber is formed in the middle of the top end of the L-shaped insertion plate. A first through groove is provided at the bottom of one end of the manipulation chamber close to the middle of the conveying assembly, and a second through groove is provided at the top of the other end of the manipulation chamber. A first pressing strip is slidably installed inside the first through groove, and the bottom of the first pressing strip is used to press the side surface of the fabric. A first sliding groove is formed at the top of the first pressing strip, and a first positioning frame is slidably installed inside the first sliding groove. An extrusion column is movably installed inside the second through groove. A lifting plate is fixedly installed at the bottom of the extrusion column. A second sliding groove is formed at the bottom of the lifting plate, and a second positioning frame is slidably installed inside the second sliding groove. A connecting rod is connected between the second positioning frame and the first positioning frame through a rotating shaft, and the middle of the connecting rod is connected to the inner wall of the manipulation chamber through a rotating shaft.

[0007] Preferably, a side guiding groove is formed in the inner wall of the manipulation chamber and below the second through groove. The end of the lifting plate is slidably installed in the side guiding groove, and a spring is arranged inside the side guiding groove. The top end of the spring is connected to the lifting plate.

[0008] Preferably, a pressing plate is installed inside the second through groove through a rotating shaft. A protruding plate is arranged on the outer surface of the support plate, and the protruding plate cooperates with the pressing plate.

[0009] Preferably, the second positioning mechanism includes two fixing blocks. The two fixing blocks are respectively installed on the tops of the two support plates through bolts. The end of the fixing block protrudes towards the middle of the conveying assembly. A guiding column penetrates through the end of the fixing block. The bottom ends of the two guiding columns are connected to a second pressing strip, and the bottom of the second pressing strip is used to press the end face of the fabric.

[0010] Preferably, a tension spring is arranged on the surface of the guiding column and between the second pressing strip and the fixing block. A second inclined block is arranged at one end of the second pressing strip close to the L-shaped insertion plate. A connecting plate is installed at the bottom of the L-shaped insertion plate close to the second pressing strip through a bolt. A first inclined block is fixedly installed at the front end of the connecting plate. The first inclined block is located at the front end of the L-shaped insertion plate, and the first inclined block cooperates with the second inclined block.

[0011] Preferably, a base platform is installed below the support plate. A cavity is arranged inside the base platform, and a driving assembly is installed in the cavity.

[0012] Preferably, the driving assembly includes a cylinder fixedly installed in the cavity. The output end of the cylinder is connected with a pushing block. The bottom end of the L-shaped inserting plate is fixedly installed with a cross plate. The surface of the cross plate is slidably installed at the bottom of the support plate through a T-shaped slider. The end of the cross plate and the end of the pushing block are connected by a rotating shaft to a pushing rod.

[0013] Preferably, the movement of the cross plate inside the cavity can drive the pushing rod to move, so that the movement of the cross plate can drive the L-shaped inserting plate to move.

[0014] Preferably, the second inclined block is installed on the side of the second pressing strip and is close to the support plate. After the L-shaped inserting plate moves towards the side of the conveying assembly, the surface of the first inclined block has a certain thrust on the surface of the second inclined block, and the second inclined block will move downward under the thrust of the first inclined block.

[0015] A processing method for ski suits, comprising the following steps:

[0016] S1. The fabric moves to the surface of the conveying assembly through the conveying assembly;

[0017] S2. The L-shaped inserting plate moves towards the side of the conveying assembly, the protruding plate cancels the pressure on the pressing plate, the spring naturally extends, lifts the lifting plate to the top of the side guiding groove. Through the connection of the connecting rod, the first pressing strip can press on the surface of the fabric. Thus, during the movement of the L-shaped inserting plate towards the side of the conveying assembly, the bottom of the first pressing strip can smooth the surface of the fabric. When the L-shaped inserting plate stops moving, the first pressing strip just moves to the side end of the fabric;

[0018] S3. When the L-shaped inserting plate moves, the first inclined block at the end of the connecting plate will gradually approach the second inclined block at one end of the second pressing strip. As the L-shaped inserting plate continues to move, the first inclined block and the second inclined block cooperate with each other. The first inclined block pushes the second inclined block, causing the second pressing strip to move downward to achieve the pressing operation on the front end of the fabric.

[0019] Compared with the prior art, the present invention has the following beneficial effects:

[0020] Through the multi-dimensional positioning method of positioning the two sides of the fabric by the first positioning mechanism and positioning the front end of the fabric by the second positioning mechanism, compared with the traditional manual positioning or single-way positioning, it can accurately position the position of the fabric, greatly improving the positioning accuracy and reducing the cutting error caused by asynchronous positioning;

[0021] During the process of the first positioning mechanism positioning the two sides of the fabric, the bottom of the first pressing strip can smooth the surface of the fabric, avoiding wrinkles on the fabric, improving the flatness of the fabric, and being beneficial to the subsequent processing quality of the ski suit. For example, it can ensure a neat cut during the cutting process. Brief Description of the Drawings

[0022] Figure 1 It is a schematic structural diagram of the transmission component of the present invention;

[0023] Figure 2 It is a schematic structural diagram of another perspective of the transmission component of the present invention;

[0024] Figure 3 It is a schematic structural diagram of the bottom of the transmission component of the present invention;

[0025] Figure 4 It is a schematic structural diagram of the first positioning mechanism of the present invention;

[0026] Figure 5 It is a schematic internal structure diagram of the L-shaped plug board of the present invention;

[0027] Figure 6 For the present invention Figure 5 An enlarged view of part A;

[0028] Figure 7 For the present invention Figure 5 An enlarged view of part B;

[0029] Figure 8 For the present invention Figure 4 An enlarged view of part C;

[0030] Figure 9 It is a schematic structural diagram of the second positioning mechanism of the present invention;

[0031] Figure 10 For the present invention Figure 2 An enlarged view of part D;

[0032] Figure 11 It is a schematic structural diagram of the L-shaped plug board of the present invention.

[0033] In the figure: 1. Transmission component; 2. Support plate; 3. Laser cutting component; 4. First positioning mechanism; 5. Second positioning mechanism; 6. L-shaped plug board; 7. First through groove; 8. Second through groove; 9. First pressing strip; 10. First sliding groove; 11. First positioning frame; 12. Side guiding groove; 13. Lifting plate; 14. Extrusion column; 15. Second sliding groove; 16. Second positioning frame; 17. Connecting rod; 18. Pressing plate; 19. Spring; 20. Protruding plate; 21. Fixed block; 22. Guide post; 23. Tension spring; 24. Second pressing strip; 25. Second inclined block; 26. Connecting plate; 27. First inclined block; 28. Cross plate; 29. Cylinder; 30. Pushing block; 31. Pushing rod. Detailed Description of the Invention

[0034] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0035] like Figures 1-11 The automatic positioning device for ski suit processing shown includes a conveying component 1, which is used to transport fabrics. The worker places the end of the fabric on the conveying component 1, and then transports it through the conveyor belt inside the conveying component 1. The fabric is transported by the transmission of the conveyor belt. The surface of the conveyor belt usually has a certain friction, which can drive the fabric to move smoothly. The existing conveyor belt transmission method is a mature technology and will not be elaborated on here. Support plates 2 are installed on both sides of the conveying component 1, and a laser cutting component 3 is slidably installed on the top of the support plate 2. First positioning mechanisms 4 are provided on both sides of the conveying component 1, and a second positioning mechanism 5 is provided at the front end of the output direction of the conveying component 1. The first positioning mechanism 4 is used to position the two sides of the fabric, and the second positioning mechanism 5 is used to position the front end of the fabric. Through multi-dimensional positioning, the position of the fabric can be accurately located, the positioning accuracy is improved, and the surface of the fabric can be smoothed, which helps subsequent laser cutting and other processing links to operate according to the accurate size and shape, thereby improving the quality of ski suit fabric processing and the accuracy of the pattern.

[0036] The first positioning mechanism 4 includes an L-shaped insertion plate 6. The top of the L-shaped insertion plate 6 movably penetrates through the support plate 2. In the middle of the top end of the L-shaped insertion plate 6, an operation chamber is provided. At the bottom of one end of the operation chamber close to the middle of the conveying assembly 1, a first through groove 7 is provided. At the top of the other end of the operation chamber, a second through groove 8 is provided. A first pressing strip 9 is slidably installed inside the first through groove 7. The bottom of the first pressing strip 9 is used to press the side surface of the fabric. A first sliding groove 10 is provided at the top of the first pressing strip 9. A first positioning frame 11 is slidably installed inside the first sliding groove 10. An extrusion column 14 is movably installed inside the second through groove 8. A lifting plate 13 is fixedly installed at the bottom of the extrusion column 14. A second sliding groove 15 is provided at the bottom of the lifting plate 13. A second positioning frame 16 is slidably installed inside the second sliding groove 15. A connecting rod 17 is connected between the second positioning frame 16 and the first positioning frame 11 through a rotating shaft. The middle of the connecting rod 17 is connected to the inner wall of the operation chamber through a rotating shaft. When the extrusion column 14 moves upward, it will drive the lifting plate 13 to move upward at the same time. Since the second positioning frame 16 can slide in the second sliding groove 15, the upward movement of the lifting plate 13 will cause the second positioning frame 16 to move upward accordingly. Because the second positioning frame 16 is connected to the first positioning frame 11 through the connecting rod 17, and the middle of the connecting rod 17 is fixed to the inner wall of the operation chamber, according to the lever principle, the upward movement of the second positioning frame 16 will cause the first positioning frame 11 to move downward. At this time, the first positioning frame 11 slides in the first sliding groove 10 and will drive the first pressing strip 9 to move downward at the same time. The bottom of the first pressing strip 9 can thus complete the operation of pressing the fabric. In the state where the first pressing strip 9 presses the side surface of the fabric, the two L-shaped insertion plates 6 move synchronously toward the side of the conveying assembly 1. During the movement, the bottom of the first pressing strip 9 can smooth the surface of the fabric. When the L-shaped insertion plates 6 stop moving, the first pressing strip 9 just moves to the side end of the fabric, thus realizing precise positioning and preliminary arrangement of both sides of the fabric. During the positioning process, the bottom of the first pressing strip 9 can smooth the surface of the fabric, avoid wrinkles on the fabric, improve the flatness of the fabric, and is beneficial to the processing quality of subsequent ski suits. For example, it can ensure neat cut edges during the cutting process.

[0037] A side guiding groove 12 is provided on the inner wall of the operation chamber and below the second through groove 8. The end of the lifting plate 13 is slidably installed in the side guiding groove 12. A spring 19 is provided inside the side guiding groove 12. The top end of the spring 19 is connected to the lifting plate 13. When there is no external force acting on the extrusion column 14, the spring 19 is in a natural stretched state, supporting the lifting plate 13 and making the lifting plate 13 located at the top of the side guiding groove 12. At this time, through the connection of the connecting rod 17, the first pressing strip 9 can press on the surface of the fabric, and the first pressing strip 9 is in a pressing state against the fabric by using the natural stretching force of the spring 19. After the fabric is conveyed in place, there is no need for additional manual operation to start the pressing action, which can realize the preliminary positioning and fixing of the fabric, improve the processing efficiency, reduce the manual intervention link, and reduce the labor intensity.

[0038] A pressing plate 18 is installed inside the second through slot 8 through a rotating shaft. A protruding plate 20 is arranged on the outer surface of the support plate 2. The protruding plate 20 cooperates with the pressing plate 18. After the L-shaped insertion plate 6 moves towards the middle of the conveying assembly 1, the protruding plate 20 will exert a squeezing effect on the surface of the pressing plate 18, forcing the pressing plate 18 to rotate around the rotating shaft. The pressing plate 18 will rotate into the second through slot 8. At the same time, the pressing plate 18 can exert a downward pressure on the extrusion column 14. The extrusion column 14 moves downward to drive the lifting plate 13 to slide downward along the side guide groove 12, compressing the spring 19. The movement of the lifting plate 13 drives the first positioning frame 11 to slide in the first sliding groove 10 through the linkage of the connecting rod 17, thereby driving the first pressing strip 9 to move upward. At this time, the first pressing strip 9 releases the pressing on the fabric. Through the cooperation of the pressing plate 18 and the protruding plate 20, a simple and intuitive operation method is provided to control the pressing and releasing actions of the first pressing strip 9. The operator does not need complex operation steps, reducing the labor intensity. And by manually pushing the pressing plate 18 to rotate around the rotating shaft, the lifting of the first pressing strip 9 can also be achieved.

[0039] The second positioning mechanism 5 includes two fixing blocks 21. The two fixing blocks 21 are respectively installed on the tops of the two support plates 2 through bolts. The two fixing blocks 21 are firmly installed on the tops of the support plates 2 through bolts. This installation method ensures the stability of the entire second positioning mechanism 5. The end of the fixing block 21 protrudes towards the middle of the conveying assembly 1. A guide post 22 is penetrated through the end of the fixing block 21. The bottoms of the two guide posts 22 are connected with a second pressing strip 24. The bottom of the second pressing strip 24 is used to press the end face of the fabric. When the fabric is conveyed to the specified position, the second pressing strip 24 moves downward along the guide post 22 until its bottom is in close contact with the end face of the fabric, thereby realizing the pressing and positioning of the end face of the fabric.

[0040] A tension spring 23 is arranged on the surface of the guide post 22 and between the second pressing strip 24 and the fixed block 21. The tension spring 23 is between the second pressing strip 24 and the fixed block 21. In the natural state, the tension spring 23 has a certain tensile force, which will pull the second pressing strip 24 upward, keeping a certain distance from the fabric and being in a standby state ready to press. One end of the second pressing strip 24 close to the L-shaped insertion plate 6 is provided with a second inclined block 25. A connecting plate 26 is installed at the bottom of the L-shaped insertion plate 6 close to the second pressing strip 24 through bolts. A first inclined block 27 is fixedly installed at the front end of the connecting plate 26. The first inclined block 27 is located at the front end of the L-shaped insertion plate 6. The first inclined block 27 cooperates with the second inclined block 25. When the L-shaped insertion plate 6 of the first positioning mechanism 4 moves to the side of the conveying assembly 1 for side positioning of the fabric, the first inclined block 27 at the end of the connecting plate 26 will gradually approach the second inclined block 25 at one end of the second pressing strip 24. As the L-shaped insertion plate 6 continues to move, the first inclined block 27 and the second inclined block 25 cooperate with each other. The first inclined block 27 pushes the second inclined block 25, causing the second pressing strip 24 to move downward, further enhancing the pressing effect on the front end of the fabric. The cooperation between the first inclined block 27 and the second inclined block 25 realizes the linkage between the first positioning mechanism 4 and the second positioning mechanism 5, enabling the side and front positioning operations of the fabric to be carried out in coordination, ensuring the accuracy of the overall positioning of the fabric and reducing the cutting error caused by asynchronous positioning.

[0041] A base table is installed below the support plate 2. A cavity is arranged inside the base table, and a driving assembly is installed in the cavity. The driving assembly is used to drive the first positioning mechanism 4 to move above the conveying assembly 1.

[0042] The driving assembly includes a cylinder 29. The cylinder 29 is fixedly installed in the cavity. The output end of the cylinder 29 is connected with a pushing block 30. A cross plate 28 is fixedly installed at the bottom end of the L-shaped insertion plate 6. The surface of the cross plate 28 is slidably installed at the bottom of the support plate 2 through a T-shaped slider. The end of the cross plate 28 and the end of the pushing block 30 are connected with a push rod 31 through a rotating shaft. When the output end of the cylinder 29 extends, the pushing block 30 moves, and the push rod 31 will transmit the linear motion of the pushing block 30 to the cross plate 28, causing the cross plate 28 to slide linearly along the T-shaped chute at the bottom of the support plate 2. Since the cross plate 28 is fixedly installed at the bottom end of the L-shaped insertion plate 6, the L-shaped insertion plate 6 will move horizontally as the cross plate 28 slides, thus realizing the approach of the L-shaped insertion plate 6 to the conveying assembly 1. When the output end of the cylinder 29 retracts, the pushing block 30 moves in the reverse direction, the push rod 31 drives the cross plate 28 to slide in the reverse direction, and the L-shaped insertion plate 6 also moves in the reverse direction back to the initial position.

[0043] The movement of the cross plate 28 inside the cavity can drive the push rod 31 to move, so the movement of the cross plate 28 can drive the L-shaped insertion plate 6 to move, and thus the driving assembly can control the synchronous movement of the first positioning mechanisms 4 on both sides of the conveying assembly 1.

[0044] The second inclined block 25 is installed on the side of the second pressing strip 24. The second inclined block 25 is close to the support plate 2. Thus, when the first pressing strip 9 moves towards the side of the conveying assembly 1, the first inclined block 25 moves together with the L-shaped insertion plate 6. The first inclined block 27 and the second inclined block 25 are in a separated state, and the second inclined block 25 will not be subjected to the thrust of the first inclined block 27. Thus, under the action of the tension spring 23, the second pressing strip 24 will maintain a certain distance from the conveying assembly 1. After the L-shaped insertion plate 6 moves towards the side of the conveying assembly 1, the surface of the first inclined block 27 has a certain thrust on the surface of the second inclined block 25, and the second inclined block 25 will move downward under the thrust of the first inclined block 27.

[0045] A ski suit processing method includes the following steps:

[0046] S1. The fabric moves to the surface of the conveying assembly 1 through the conveying assembly 1;

[0047] S2. The L-shaped insertion plate 6 moves towards the side of the conveying assembly 1, the protruding plate 20 cancels the pressure on the pressing plate 18, the spring 19 naturally extends, and the lifting plate 13 is lifted to the top of the side guide groove 12. Through the connection of the connecting rod 17, the first pressing strip 9 can press on the surface of the fabric. Thus, during the movement of the L-shaped insertion plate 6 towards the side of the conveying assembly 1, the bottom of the first pressing strip 9 can smooth the surface of the fabric. When the L-shaped insertion plate 6 stops moving, the first pressing strip 9 just moves to the side end of the fabric;

[0048] S3. When the L-shaped insertion plate 6 moves, the first inclined block 27 at the end of the connecting plate 26 will gradually approach the second inclined block 25 at one end of the second pressing strip 24. As the L-shaped insertion plate 6 continues to move, the first inclined block 27 and the second inclined block 25 cooperate with each other, and the first inclined block 27 pushes the second inclined block 25, so that the second pressing strip 24 moves downward to realize the pressing operation on the front end of the fabric.

[0049] Working principle:

[0050] First, the output end of the air cylinder 29 extends, pushing the block 30 to move. The push rod 31 will transmit the linear motion of the block 30 to the cross plate 28, causing the cross plate 28 to slide linearly along the T-shaped sliding groove at the bottom of the support plate 2. Since the cross plate 28 is fixedly installed at the bottom end of the L-shaped insertion plate 6, the L-shaped insertion plate 6 will move horizontally as the cross plate 28 slides. The L-shaped insertion plate 6 gradually moves towards the middle of the conveying assembly 1. After the movement is completed, the protruding plate 20 will exert a squeezing effect on the surface of the pressing plate 18, forcing the pressing plate 18 to rotate around the rotating shaft. The pressing plate 18 rotates into the second through groove 8. At the same time, the pressing plate 18 exerts a downward pressure on the extrusion column 14. The extrusion column 14 moves downward, driving the lifting plate 13 to slide downward along the side guiding groove 12, compressing the spring 19. The movement of the lifting plate 13 drives, through the linkage of the connecting rod 17, the first positioning frame 11 to slide in the first sliding groove 10, thereby driving the first pressing strip 9 to move upward. At this time, there is a certain distance between the first pressing strip 9 and the conveying assembly 1 for placing the fabric;

[0051] Meanwhile, under the action of the tension spring 23, the tensile force of the tension spring 23 will pull the second pressing strip 24 upward, keeping a certain distance from the conveying assembly 1 and being in a standby state ready to press;

[0052] Subsequently, the worker places the end of the fabric on the conveying assembly 1 and then conveys it through the conveyor belt inside the conveying assembly 1. Using the transmission of the conveyor belt to convey the fabric, the friction force on the surface of the conveyor belt can drive the fabric to move smoothly;

[0053] Next, the output end of the air cylinder 29 retracts, the block 30 moves in the reverse direction, the push rod 31 drives the cross plate 28 to slide in the reverse direction, and the L-shaped insertion plate 6 also moves towards the side of the conveying assembly 1. During this process, the protruding plate 20 cancels the pressure on the pressing plate 18, and the spring 19 is in a natural stretching state, supporting the lifting plate 13 at the top in the side guiding groove 12. Through the connection of the connecting rod 17, the first pressing strip 9 can press on the surface of the fabric. Thus, during the movement of the L-shaped insertion plate 6 towards the side of the conveying assembly 1, the bottom of the first pressing strip 9 can smooth the surface of the fabric. When the L-shaped insertion plate 6 stops moving, the first pressing strip 9 just moves to the side end of the fabric, achieving precise positioning and preliminary arrangement of both sides of the fabric. Immediately afterwards, the first inclined block 27 at the end of the connecting plate 26 will gradually approach the second inclined block 25 at one end of the second pressing strip 24. As the L-shaped insertion plate 6 continues to move, the first inclined block 27 and the second inclined block 25 cooperate with each other. The first inclined block 27 pushes the second inclined block 25, causing the second pressing strip 24 to move downward, further enhancing the pressing effect on the front end of the fabric;

[0054] When the first pressing strip 9 moves towards the side of the conveying assembly 1, the first inclined block 25 moves together with the L-shaped insertion plate 6. Therefore, during the process of smoothing the fabric surface opposite to the bottom of the first pressing strip 9, the first inclined block 27 and the second inclined block 25 are in a separated state, and the second inclined block 25 will not be pushed by the first inclined block 27. Thus, under the action of the tension spring 23, the second pressing strip 24 will maintain a certain distance from the conveying assembly 1;

[0055] Next, the laser cutting assembly 3 can cut the fabric between the two first pressing strips 9 and the second pressing strip 24. After the laser cutting is completed, the laser cutting assembly 3 resets to the rear of the conveying assembly 1. At this time, the staff can take out the required fabric. The output end of the cylinder 29 retracts, and the L-shaped insertion plate 6 moves towards the middle of the conveying assembly 1. At the same time, under the action of the tension spring 23, the second pressing strip 24 moves upward;

[0056] Finally, the conveying assembly 1 transports the remaining fabric to the frontmost position for the convenience of the staff to recycle.

[0057] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. An automatic positioning device for ski suit processing, comprising a conveying assembly (1), characterized in that, The conveying assembly (1) is used to convey the fabric. Support plates (2) are installed on both sides of the conveying assembly (1). A laser cutting assembly (3) is slidably installed on the top of the support plates (2). First positioning mechanisms (4) are arranged on both sides of the conveying assembly (1). A second positioning mechanism (5) is arranged at the front end in the output direction of the conveying assembly (1). The first positioning mechanism (4) is used for positioning both sides of the fabric, and the second positioning mechanism (5) is used for positioning the front end of the fabric.

2. The automatic positioning device for ski wear processing according to claim 1, wherein, The first positioning mechanism (4) includes an L-shaped insertion plate (6). The top of the L-shaped insertion plate (6) movably penetrates through the support plate (2). An operation chamber is formed in the middle of the top end of the L-shaped insertion plate (6). A first through groove (7) is arranged at the bottom of one end of the operation chamber close to the middle of the conveying assembly (1). A second through groove (8) is arranged at the top of the other end of the operation chamber. A first pressing strip (9) is slidably installed inside the first through groove (7). The bottom of the first pressing strip (9) is used to press the side surface of the fabric. A first sliding groove (10) is formed at the top of the first pressing strip (9). A first positioning frame (11) is slidably installed inside the first sliding groove (10). An extrusion column (14) is movably installed inside the second through groove (8). A lifting plate (13) is fixedly installed at the bottom of the extrusion column (14). A second sliding groove (15) is formed at the bottom of the lifting plate (13). A second positioning frame (16) is slidably installed inside the second sliding groove (15). A connecting rod (17) is connected between the second positioning frame (16) and the first positioning frame (11) through a rotating shaft. The middle of the connecting rod (17) is connected to the inner wall of the operation chamber through a rotating shaft.

3. The automatic positioning device for skiwear processing according to claim 2, wherein, A side guiding groove (12) is formed on the inner wall of the operation chamber and below the second through groove (8). The end of the lifting plate (13) is slidably installed in the side guiding groove (12). A spring (19) is arranged inside the side guiding groove (12). The top end of the spring (19) is connected to the lifting plate (13).

4. The automatic positioning device for processing ski suits according to claim 2, wherein, A pressing plate (18) is installed inside the second through groove (8) through a rotating shaft. A protruding plate (20) is arranged on the outer surface of the support plate (2). The protruding plate (20) cooperates with the pressing plate (18).

5. The automatic positioning device for ski suit processing according to claim 2, wherein, The second positioning mechanism (5) includes two fixing blocks (21). The two fixing blocks (21) are respectively installed on the tops of the two support plates (2) through bolts. The end of the fixing block (21) protrudes towards the middle of the conveying assembly (1). A guiding column (22) is arranged through the end of the fixing block (21). The bottom ends of the two guiding columns (22) are connected to a second pressing strip (24). The bottom of the second pressing strip (24) is used to press the end face of the fabric.

6. The automatic positioning device for processing ski suits according to claim 5, wherein, A tension spring (23) is arranged on the surface of the guiding column (22) and between the second pressing strip (24) and the fixed block (21). A second inclined block (25) is arranged at one end of the second pressing strip (24) close to the L-shaped insertion plate (6). A connecting plate (26) is installed at the bottom of the L-shaped insertion plate (6) close to the second pressing strip (24) through bolts. A first inclined block (27) is fixedly installed at the front end of the connecting plate (26). The first inclined block (27) is located at the front end of the L-shaped insertion plate (6), and the first inclined block (27) cooperates with the second inclined block (25).

7. The automatic positioning device for ski clothing processing according to claim 2, characterized in that, A base platform is installed below the support plate (2). A cavity is arranged inside the base platform. A driving component is installed in the cavity. The driving component includes a cylinder (29). The cylinder (29) is fixedly installed in the cavity. The output end of the cylinder (29) is connected with a pushing block (30). A cross plate (28) is fixedly installed at the bottom end of the L-shaped insertion plate (6). The surface of the cross plate (28) is slidably installed at the bottom of the support plate (2) through a T-shaped slider. The end of the cross plate (28) and the end of the pushing block (30) are connected by a rotating shaft to a pushing rod (31).

8. The automatic positioning device for processing ski suits according to claim 7, characterized in that, The movement of the cross plate (28) inside the cavity can drive the pushing rod (31) to move, so that the movement of the cross plate (28) can drive the L-shaped insertion plate (6) to move.

9. The automatic positioning device for processing ski suits according to claim 6, characterized in that, The second inclined block (25) is installed on the side surface of the second pressing strip (24). The second inclined block (25) is close to the support plate (2). After the L-shaped insertion plate (6) moves to the side of the conveying component (1), the surface of the first inclined block (27) has a certain thrust on the surface of the second inclined block (25), and the second inclined block (25) will move downward under the thrust of the first inclined block (27).

10. A method for processing ski suits, which is applied to the automatic positioning device for processing ski suits described in any one of claims 1-9, and is characterized in that, Including the following steps: S1. The fabric moves to the surface of the conveying component (1) through the conveying component (1). S2. The L-shaped insertion plate (6) moves to the side of the conveying component (1). The protruding plate (20) cancels the pressure on the pressing plate (18). The spring (19) naturally extends, lifting the lifting plate (13) to the top of the side guiding groove (12). Through the connection of the connecting rod (17), the first pressing strip (9) can press on the surface of the fabric. Thus, during the movement of the L-shaped insertion plate (6) to the side of the conveying component (1), the bottom of the first pressing strip (9) can smooth the surface of the fabric. When the L-shaped insertion plate (6) stops moving, the first pressing strip (9) just moves to the side end of the fabric. S3. When the L-shaped insertion plate (6) moves, the first inclined block (27) at the end of the connecting plate (26) will gradually approach the second inclined block (25) at one end of the second pressing strip (24). As the L-shaped insertion plate (6) continues to move, the first inclined block (27) and the second inclined block (25) cooperate with each other. The first inclined block (27) pushes the second inclined block (25), causing the second pressing strip (24) to move downward to achieve the pressing operation on the front end of the fabric.

Citation Information

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