An automated toy cloth cutting device

By designing the conveyor belt, clamping components, and peeling components, the problem of low fabric peeling efficiency after cutting is solved, achieving stable fabric transport and rapid peeling, and improving the adaptability and production efficiency of the cutting device.

CN119736783BActive Publication Date: 2025-12-30WENDENG HUAKAI TOYS CO LTD
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Patent Information

Application Number
CN202411958973.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-30
Estimated Expiration
2044-12-30

AI Technical Summary

Technical Problem

Existing automated toy fabric cutting devices are inefficient when peeling off the cut fabric, rely on manual operation, and are highly complex, which affects production efficiency and product quality.

Method used

The design incorporates a conveyor belt, a clamping assembly, and a peeling assembly. The conveyor belt ensures smooth fabric transport, the clamping assembly secures the fabric by sliding synchronously in opposite directions on both sides, and the peeling assembly achieves rapid peeling through the peeling rod on the rotating roller in conjunction with an elastic element.

Benefits of technology

It improves the continuity and stability of the cutting process, prevents fabric shifting or wrinkling, and ensures a smooth and efficient peeling process. It is suitable for fabrics of different sizes and materials, and enhances cutting accuracy and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to an automatic toy cloth cutting device, and relates to the technical field of automatic toy cloth cutting devices.The automatic toy cloth cutting device comprises a workbench and a cutting assembly, the upper end surface of the workbench is provided with a conveying belt, the cutting assembly is provided with clamping assemblies for clamping toy cloth on both sides in the sliding direction, the cutting assembly and the clamping assemblies are slidably connected with the workbench in the length direction of the workbench, the two clamping assemblies slide synchronously and reversely, a stripping assembly is arranged above the conveying belt, the stripping assembly comprises a rotating roller, a first lifting cylinder, two lifting blocks and two sliding seats, the two lifting blocks are rotationally connected to the two ends of the rotating roller, the lifting blocks are slidably connected with the sliding seats in the vertical direction, the sliding seats are slidably connected with the workbench, the cylinder body of the first lifting cylinder is fixedly connected to the upper end surface of the sliding seat, the lifting block at the extension end of the first lifting cylinder is fixedly connected, a bushing is formed in the side wall of the rotating roller, and a stripping rod is inserted in the bushing. The application has the effects of improving stripping effect and efficiency.
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Description

Technical Field

[0001] This application relates to the field of automated toy fabric cutting device technology, and in particular to an automated toy fabric cutting device. Background Technology

[0002] Fabric cutting is a crucial step in toy manufacturing. With increasing automation, traditional manual cutting methods have been gradually replaced by automated equipment. Automated fabric cutting devices not only improve production efficiency but also ensure consistent cutting quality and reduce labor costs, making them widely used in various toy manufacturing enterprises. However, in practical applications, efficiently peeling the cut fabric from the worktable has become a pressing issue.

[0003] Currently, common solutions mainly include manual stripping and semi-automatic stripping. Manual stripping requires workers to manually remove the cut fabric from the workbench. Although this method is simple, it is time-consuming and labor-intensive, easily leading to low production efficiency. Semi-automatic stripping involves setting up auxiliary tools on the workbench, such as air blowers or vibration devices, to help workers strip the fabric faster. However, this still cannot completely eliminate human intervention, and the equipment is more complex and has higher maintenance costs.

[0004] These existing stripping methods generally suffer from low efficiency, reliance on manual operation, and complex equipment, especially in large-scale production environments where these problems are particularly prominent, severely impacting production efficiency and product quality. Therefore, there is an urgent need for a solution that can achieve efficient and stable fabric stripping. Summary of the Invention

[0005] To improve the peeling effect and efficiency, this application provides an automated toy fabric cutting device.

[0006] This application provides an automated toy fabric cutting device, which adopts the following technical solution:

[0007] An automated toy fabric cutting device includes a worktable and a cutting assembly. The cutting assembly is slidably connected to the worktable above it along its length. A conveyor belt is provided on the upper surface of the worktable. Clamping assemblies for fixing and holding toy fabric are provided on both sides of the cutting assembly along the sliding direction. The clamping assemblies are slidably connected to the worktable along its length and slide synchronously in opposite directions. A peeling assembly is provided above the conveyor belt. The peeling assembly includes a rotating roller, a first lifting cylinder, two lifting blocks, and two sliding seats. The two lifting blocks are rotatably connected to both ends of the rotating roller. The lifting blocks are slidably connected to the corresponding sliding seats along the vertical direction. The sliding seats are slidably connected to the worktable along its length. The cylinder body of the first lifting cylinder is fixedly connected to the upper surface of the sliding seats. The telescopic end of the first lifting cylinder passes through the sliding seats and is fixedly connected to the lifting blocks. Several insertion holes are evenly arranged along the circumference and axial direction on the side wall of the rotating roller. Peeling rods are inserted into the insertion holes. A first elastic element is fixed between the peeling rods and the bottom of the insertion holes.

[0008] By adopting the above technical solution, the conveyor belt allows the fabric to be transported smoothly on the worktable, ensuring the continuity and stability of the cutting process. The double-sided synchronous reverse sliding design of the clamping assembly firmly fixes the fabric, preventing it from shifting or wrinkling during cutting, thereby improving cutting accuracy. The peeling assembly, through the peeling rod on the rotating roller cooperating with the first elastic element, can quickly and evenly peel the cut patterned fabric from the entire fabric after cutting, avoiding adhesion problems and improving work efficiency. The entire device is compact in structure, easy to operate, and suitable for toy fabrics of various sizes and materials, possessing high practicality and adaptability.

[0009] Optionally, the cutting assembly includes a frame, two supports, and several sets of tool holders. The two supports are slidably connected to both sides of the worktable along the width direction along the length direction of the worktable. The frame and several sets of tool holders are located between the two supports. The frame is slidably connected to the supports in the vertical direction. The several sets of tool holders are arranged along the width direction of the worktable and are slidably connected to the inside of the frame along their own arrangement direction.

[0010] By adopting the above technical solution, the cutting assembly can simultaneously move and adjust the height of multiple sets of cutter holders, making the cutting operation more flexible and precise, and improving work efficiency and cutting quality. The two supports positioned along the width of the worktable ensure the stability and positioning accuracy of the cutting assembly; the vertical sliding connection between the frame and the supports allows the cutter holders to be vertically adjusted to accommodate fabrics of different thicknesses and to cut multiple layers of fabric simultaneously; while the transverse sliding connection of the cutter holders themselves allows for fine-tuning along the width of the worktable, further enhancing the flexibility and accuracy of the cutting process.

[0011] Optionally, the tool holder includes a sliding plate, a sliding cylinder, a rotary motor, a lower turntable, and several blades. The sliding plate is slidably connected to the frame. The cylinder body of the sliding cylinder and the rotary motor are both fixedly connected to the upper end face of the sliding plate. The extension and retraction direction of the sliding cylinder is the same as the arrangement direction of the tool holder. The rotating shaft of the rotary motor passes through the sliding plate and is fixedly connected to the lower turntable. Several blades are evenly arranged on the lower turntable along the rotating axis of the rotary motor. Several through slots for the blades to pass through are opened on the lower turntable. A tool holder is fixedly connected to the upper end face of the blade. The tool holder and the blade are slidably connected to the lower turntable in the vertical direction. A tool cylinder is fixedly connected to the upper end face of the tool holder. An upper turntable is provided between the lower turntable and the sliding plate and is fixedly connected to the rotating shaft of the rotary motor. The cylinder body of the tool cylinder is fixedly connected to the upper turntable.

[0012] By adopting the above technical solution, the sliding cylinder controls the horizontal movement of the cutter holder, ensuring accurate cutting position. The rotating motor drives the lower turntable to rotate, distributing multiple blades evenly for rapid, continuous cutting. The blades are connected to the cutter cylinder via the cutter holder, allowing them to move vertically. Different blades can be selected based on the fabric material or thickness, improving the equipment's adaptability. Simultaneously, the cutter cylinder is fixedly connected to the upper turntable, ensuring blade stability during cutting and further enhancing cutting quality.

[0013] Optionally, the frame is slidably connected to leveling rollers on both sides along the length of the workbench in a vertical direction. Fixed seats are rotatably connected to both ends of the leveling rollers. A fixed plate is provided above the leveling rollers. A second elastic element is fixed between the fixed seat and the fixed plate. A leveling cylinder is fixed on the upper surface of the fixed plate. The cylinder body of the leveling cylinder is fixedly connected to the frame. A guide rod is fixed on the upper end of the fixed seat. The second elastic element is sleeved on the outside of the guide rod. A baffle is fixedly connected to the upper end of the guide rod through the fixed plate.

[0014] By adopting the above technical solutions, the leveling roller can effectively flatten toy fabric, ensuring a smooth and wrinkle-free fabric surface during the cutting process, thus improving cutting accuracy and quality. Simultaneously, the second elastic element between the leveling roller and the fixed base can adapt to fabrics of different thicknesses, guaranteeing a leveling effect. The leveling cylinder allows the leveling roller to flexibly adjust its height to meet different processing needs. Furthermore, the leveling roller can press the fabric below the cutting assembly, facilitating blade cutting, reducing fabric movement, and improving cutting quality.

[0015] Optionally, the clamping assembly includes a folding plate, a pressure plate, and a pressure cylinder. The folding plate is slidably connected to the worktable along its length. The lower end face of the folding plate abuts against the upper end face of the conveyor belt. Limiting plates are fixed at both ends of the folding plate along its length. The side of the limiting plate away from the folding plate is rotatably connected to the cylinder body of the pressure cylinder. A sliding groove is provided on the limiting plate. Fixed blocks are provided at both ends of the upper end face of the pressure plate along its length. A sliding rod is fixed at the end of the fixed block near the pressure cylinder. The sliding rod passes through the sliding groove and is rotatably connected to the telescopic end of the pressure cylinder. The sliding rod is slidably connected to the limiting plate along the extension direction of the sliding groove.

[0016] By adopting the above technical solutions, the clamping components can effectively fix and clamp the toy fabric, ensuring that the fabric will not shift or wrinkle during the cutting process, thereby improving cutting accuracy and efficiency. Under the action of the pressure cylinder, the folding plate and the pressure plate can firmly clamp the fabric, preventing it from moving during cutting. After cutting, the waste material can be lifted, making it easy for the cut fabric to be transported away by the conveyor belt. The chute design allows the pressure plate to be flexibly adjusted in different positions to adapt to fabrics of different sizes, further enhancing the applicability and stability of the equipment.

[0017] Optionally, the chute includes a vertical chute and a horizontal chute. The folding plate includes a bottom plate, a vertical plate, and a top plate from bottom to top. The bottom plate and the top plate are located on both sides of the vertical plate, the vertical chute is located on the side of the vertical plate away from the top plate, and the horizontal chute is located above the top plate.

[0018] By adopting the above technical solution, the chute is designed to include vertical and horizontal grooves. The folded plate structure enables the pressure plate to move flexibly, ensuring the stability and accuracy of the pressure plate in the vertical and horizontal directions. This improves the fixing effect of the clamping components on the toy fabric, prevents the fabric from shifting or loosening during the cutting process, and further ensures the cutting accuracy and quality.

[0019] Optionally, a displacement block is fixedly provided at the lower end of the limiting plate, and a clamping frame is provided on the upper surface of the worktable. The clamping frame is rotatably connected to a bidirectional lead screw, and the displacement block is threadedly connected to the bidirectional lead screw.

[0020] By adopting the above technical solution, precise movement and positioning of the clamping assembly are achieved, improving the accuracy and efficiency of fabric cutting. A displacement block is fixed at the lower end of the limiting plate, and a clamping frame is provided on the upper surface of the worktable. The clamping frame is rotatably connected to a bidirectional lead screw, and the displacement block is threadedly connected to the bidirectional lead screw. This allows the clamping assembly to move smoothly and accurately along the length of the worktable, thereby ensuring the stability and consistency of the fabric during the cutting process and further improving the cutting quality.

[0021] Optionally, the clamping frame includes two legs, which are inserted into the upper end of the worktable. The clamping frame is slidably connected to the worktable in the vertical direction. An installation hole is provided on the upper surface of the worktable, and a second lifting cylinder is fixedly installed in the installation hole. The telescopic end of the second lifting cylinder is fixedly connected to the clamping frame.

[0022] By adopting the above technical solution, the clamping frame can be adjusted vertically to accommodate toy fabrics of different thicknesses, thus expanding the applicability of the equipment. Simultaneously, the second lifting cylinder enables automatic lifting of the clamping frame, reducing manual operation and improving production efficiency. Furthermore, the structural design of the clamping frame allows for stable support and fixation of the clamping components, ensuring the stability of the fabric during the cutting process and further guaranteeing cutting accuracy and quality.

[0023] Optionally, a ball head is fixed at the end of the peeling bar away from the roller.

[0024] By adopting the above technical solution, the ball head can reduce the friction between the peeling rod and the fabric, making the peeling process smoother and preventing the fabric from being pulled or damaged during the peeling process, thereby improving the quality of the cut fabric and processing efficiency.

[0025] In summary, this application includes at least one of the following beneficial technical effects:

[0026] 1. The conveyor belt allows the fabric to be transported smoothly on the worktable, ensuring the continuity and stability of the cutting process; the double-sided synchronous reverse sliding design of the clamping component can firmly fix the fabric, preventing it from shifting or wrinkling during the cutting process, thereby improving cutting accuracy; the peeling component, through the peeling rod on the rotating roller and the cooperation of the first elastic element, can quickly and evenly peel the cut patterned fabric from the entire fabric after cutting, avoiding adhesion problems and improving work efficiency; the entire device has a compact structure, is easy to operate, and is suitable for toy fabrics of various sizes and materials, with high practicality and adaptability.

[0027] 2. The cutting assembly enables simultaneous movement and height adjustment of multiple cutter holders, making the cutting operation more flexible and precise, improving work efficiency and cutting quality; the two supports positioned along the width of the worktable ensure the stability and positioning accuracy of the cutting assembly; the vertical sliding connection between the frame and the supports allows the cutter holders to be vertically adjusted to accommodate fabrics of different thicknesses and to cut multiple layers of fabric simultaneously; while the transverse sliding connection of the cutter holders themselves allows for fine-tuning in the width of the worktable, further enhancing the flexibility and accuracy of cutting;

[0028] 3. The sliding cylinder controls the horizontal movement of the cutter holder, ensuring accurate cutting position; the rotating motor drives the lower turntable to rotate, distributing multiple blades evenly for rapid and continuous cutting; the blades are connected to the cutter cylinder via the cutter holder, allowing them to move vertically up and down, and different blades can be selected according to the fabric material or thickness, improving the equipment's adaptability; at the same time, the cutter cylinder is fixedly connected to the upper turntable, ensuring the blades remain stable during cutting, further improving cutting quality. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the overall structure of an automated toy fabric cutting device.

[0030] Figure 2 This is a structural diagram of the cutting assembly and the leveling roller.

[0031] Figure 3 This is a schematic diagram of the tool holder structure.

[0032] Figure 4 yes Figure 2 An enlarged schematic diagram of part A in the middle.

[0033] Figure 5 This is a structural diagram of the clamping assembly and the worktable.

[0034] Figure 6 yes Figure 5 Enlarged schematic diagram of part B.

[0035] Figure 7 This is a schematic diagram of the partial explosion structure of the leveling roller.

[0036] Figure 8 This is a partial structural diagram of an automated toy fabric cutting device.

[0037] Explanation of reference numerals in the attached drawings: 1. Workbench; 11. Clamping frame; 111. Support leg; 12. Double-acting lead screw; 13. Second lifting cylinder; 2. Cutting assembly; 21. Frame; 22. Support; 23. Tool holder; 231. Slide plate; 232. Sliding cylinder; 233. Rotary motor; 234. Lower turntable; 235. Blade; 236. Tool holder; 237. Tool cylinder; 238. Upper turntable; 24. Leveling roller; 241. Fixed base; 242. Fixed plate; 243. Second elastic element; 244. Leveling cylinder; 245. Guide 1. 246. 3. 4. 5. 6. 7. 8. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18 ... Detailed Implementation

[0038] The present application will be further described in detail below with reference to all the accompanying drawings.

[0039] This application discloses an automated toy fabric cutting device.

[0040] Reference Figure 1 An automated toy fabric cutting device includes a worktable 1 and a cutting assembly 2. The worktable 1 serves as the foundation of the entire device, and its upper surface is equipped with a conveyor belt 5 for carrying and transporting toy fabric. Plates with fixed rotating shafts at both ends of the conveyor belt 5 can extend upwards a certain distance to prevent the fabric from detaching from the conveyor belt 5.

[0041] Reference Figure 1 and Figure 2The cutting component 2 is slidably connected to the workbench 1 along the length of the workbench 1 above the workbench 1. The cutting component 2 includes a frame 21, two supports 22 and several sets of tool holders 23. The two supports 22 are slidably connected to the two sides of the workbench 1 along the width direction along the length of the workbench 1. A slide rail is installed on the workbench 1. One of the supports 22 is threaded with a lead screw, which is rotatably connected to the slide rail. A motor is installed on the slide rail to drive the lead screw to rotate, thereby driving the support 22 to slide. The other support 22 is inserted with a guide rod that is fixedly connected to the slide rail.

[0042] Reference Figure 2 The frame 21 and several sets of tool holders 23 are located between two supports 22. The frame 21 is slidably connected to the supports 22 in the vertical direction. One end of the frame 21 is threaded with a lead screw that is rotatably connected to one of the supports 22, and the other end is fitted with a guide rod that is fixedly connected to the other support 22. A motor is installed on the upper end of the support 22 to drive the lead screw to rotate, thereby driving the frame 21 to rise and fall. Several sets of tool holders 23 are arranged along the width of the worktable 1, and several sets of tool holders 23 are slidably connected to the inside of the frame 21 in their own arrangement direction.

[0043] Reference Figure 2 and Figure 3 The cutter holder 23 includes a slide plate 231, a sliding cylinder 232, a rotary motor 233, a lower turntable 234, and several blades 235. The slide plate 231 is slidably connected to the frame 21. The cylinder body of the sliding cylinder 232 and the rotary motor 233 are both fixedly connected to the upper surface of the slide plate 231. The extension and retraction direction of the sliding cylinder 232 is the same as the arrangement direction of the cutter holder 23. The sliding cylinder 232 controls the cutter holder 23 to move horizontally to ensure accurate cutting position.

[0044] The telescopic end of the sliding cylinder 232 on one of the tool holders 23 closest to the support 22 is fixedly connected to the frame 21. This sliding cylinder 232 is used to control all tool holders 23 to slide simultaneously within the frame 21. The telescopic ends of the sliding cylinders 232 on the other tool holders 23 are fixedly connected to the adjacent tool holders 23. These sliding cylinders 232 are used to control the distance between adjacent tool holders 23, which is adjusted according to the spacing of the pattern to be cut, reducing manual adjustment.

[0045] Reference Figure 3The rotating shaft of the rotating motor 233 passes through the sliding plate 231 and is fixedly connected to the lower turntable 234. The rotating motor 233 drives the lower turntable 234 to rotate. Several blades 235 are evenly arranged on the lower turntable 234 along the rotation axis of the rotating motor 233. Several through slots are opened on the lower turntable 234 for the blades 235 to pass through. A blade holder 236 is fixedly connected to the upper end face of the blades 235. Both the blade holder 236 and the blades 235 are slidably connected to the lower turntable 234 in the vertical direction. A tool cylinder 237 is fixedly connected to the upper end face of the blade holder 236. The blades 235 are connected to the tool cylinder 237 through the blade holder 236, and can move up and down in the vertical direction. Different blades 235 can be selected according to the material or thickness of the fabric, which improves the adaptability of the equipment. An upper turntable 238 is provided between the lower turntable 234 and the slide plate 231 and is fixedly connected to the rotating shaft of the rotating motor 233. The cylinder body of the cutter cylinder 237 is fixedly connected to the upper turntable 238. The rotating motor 233 drives the lower turntable 234 to rotate, ensuring that the blade 235 remains stable during the cutting process and further improving the cutting quality.

[0046] Reference Figure 2 and Figure 4 Both sides of the frame 21 along the length of the workbench 1 are vertically connected to leveling rollers 24. The leveling rollers 24 effectively flatten the toy fabric, ensuring a smooth, wrinkle-free surface during cutting. Simultaneously, the leveling rollers 24 press down on the fabric below the cutting assembly 2, facilitating cutting by the blade 235, reducing fabric movement, and improving cutting accuracy and quality. Fixed seats 241 are rotatably connected to both ends of the leveling rollers 24. A fixed plate 242 is located above the leveling rollers 24. A second elastic element 243 is fixed between the fixed seats 241 and the fixed plate 242. The second elastic element 243 between the leveling rollers 24 and the fixed seats 241 can adapt to fabrics of different thicknesses, ensuring a leveling effect. A leveling cylinder 244 is fixed to the upper surface of the fixed plate 242. The cylinder body of the leveling cylinder 244 is fixedly connected to the frame 21. The setting of the leveling cylinder 244 allows the leveling rollers 24 to flexibly adjust their height to adapt to different processing needs. A guide rod 245 is fixedly provided on the upper end of the fixed base 241, and a second elastic element 243 is sleeved on the outside of the guide rod 245. A baffle 246 is fixedly connected to the upper end of the guide rod 245 through the fixed plate 242.

[0047] Furthermore, the thickness and material of the fabric can be monitored in real time through sensors and a control system, automatically adjusting the height and pressure of the cutter to ensure the accuracy and stability of the cutting process. The sensors include a thickness sensor to detect the fabric thickness and a material recognition sensor to identify the fabric material. The control system includes a processor, a power supply, and switches. Based on the data detected by the sensors, the processor adjusts the working states of the sliding cylinder 232 and the cutter cylinder 237 in real time to ensure that the height and pressure of the cutter are adapted to the actual thickness and material of the fabric, thereby achieving precise cutting.

[0048] Reference Figure 1 The cutting component 2 is provided with clamping components 3 on both sides along the sliding direction for fixing and holding the toy fabric. The clamping components 3 are slidably connected to the worktable 1 along the length direction of the worktable 1. The two clamping components 3 slide in opposite directions synchronously to ensure that the fabric is always kept taut during the cutting process and to prevent the fabric from shifting or wrinkling.

[0049] Reference Figure 5 The main components of the clamping assembly 3 include a folding plate 31, a pressure plate 32, and a pressure cylinder 33. The folding plate 31 and the pressure plate 32 are made of high-strength aluminum alloy, which is wear-resistant and lightweight. The folding plate 31 is slidably connected to the worktable 1 along its length. The lower end face of the folding plate 31 abuts against the upper end face of the conveyor belt 5. Limiting plates 34 are fixed at both ends of the folding plate 31 along its length. The side of the limiting plate 34 away from the folding plate 31 is rotatably connected to the cylinder body of the pressure cylinder 33. A sliding groove 35 is provided on the limiting plate 34. Fixing blocks 321 are provided at both ends of the upper end face of the pressure plate 32 along its length. A sliding rod 322 is fixed at the end of the fixing block 321 near the pressure cylinder 33. The sliding rod 322 passes through the sliding groove 35 and is rotatably connected to the telescopic end of the pressure cylinder 33. The sliding rod 322 is slidably connected to the limiting plate 34 along the extension direction of the sliding groove 35.

[0050] Reference Figure 6 The slide 35 includes a vertical groove 351 and a horizontal groove 352. The folding plate 31 includes a bottom plate 311, a vertical plate 312, and a top plate 313 from bottom to top. The bottom plate 311 and the top plate 313 are located on both sides of the vertical plate 312. The vertical groove 351 is located on the side of the vertical plate 312 away from the top plate 313, and the horizontal groove 352 is located above the top plate 313. A displacement block 36 is fixedly provided at the lower end of the limiting plate 34. A clamping frame 11 is provided on the upper surface of the worktable 1. The clamping frame 11 is rotatably connected to a two-way lead screw 12. The displacement block 36 is threadedly connected to the two-way lead screw 12. The clamping frame 11 includes two support legs 111, which are inserted into the upper end of the worktable 1. The clamping frame 11 is slidably connected to the worktable 1 in the vertical direction. An installation hole is provided on the upper surface of the worktable 1. A second lifting cylinder 13 is fixedly provided in the installation hole. The telescopic end of the second lifting cylinder 13 is fixedly connected to the clamping frame 11.

[0051] Reference Figure 1 and Figure 7A stripping assembly 4 is provided above the conveyor belt 5. The stripping assembly 4 includes a rotating roller 41, a first lifting cylinder 42, two lifting blocks 43, and two sliding seats 44. The two lifting blocks 43 are rotatably connected to both ends of the rotating roller 41. The lifting blocks 43 are slidably connected to the corresponding sliding seats 44 in the vertical direction. The sliding seats 44 are slidably connected to the worktable 1 along the length direction of the worktable 1. A slide rail is installed on the worktable 1. One of the sliding seats 44 is threaded with a lead screw, which is rotatably connected to the slide rail. A motor is installed on the slide rail to drive the lead screw to rotate, thereby driving the sliding seat 44 to slide. The other sliding seat 44 is fitted with a guide rod that is fixedly connected to the slide rail. The cylinder body of the first lifting cylinder 42 is fixedly connected to the upper end face of the sliding seat 44. The telescopic end of the first lifting cylinder 42 passes through the sliding seat 44 and is fixedly connected to the lifting block 43.

[0052] Reference Figure 7 The roller 41 has several insertion holes 413 evenly arranged circumferentially and axially on its side wall. A peeling rod 411 is inserted into each insertion hole 413. A first elastic element 412 is fixed between the peeling rod 411 and the bottom of the insertion hole 413, thus improving cutting accuracy and efficiency. The first elastic element 412 is a spring, which has good elasticity and a long service life. A ball head 4111 is fixed at the end of the peeling rod 411 away from the roller 41. The ball head 4111 reduces the friction between the peeling rod 411 and the fabric, making the peeling process smoother and preventing the fabric from being pulled or damaged during peeling. During peeling, the movement of the sliding seat 44 drives the roller 41 to rotate, causing the peeling rod 411 to rotate and strike the cut fabric, improving the peeling effect.

[0053] Working principle of clamping component 3: In the first case, when the fabric to be processed is cut to a certain length, the second lifting cylinder 13 retracts so that the lower end face of the base plate 311 abuts against the upper end face of the conveyor belt 5. At this time, the pressure plate 32 is located above the top plate 313. The bidirectional screw 12 is rotated to adjust the distance between the two displacement blocks 36 to match the length of the fabric. The fabric is placed vertically on the base plate 311. The pressing cylinder 33 extends outward along the telescopic axis, driving the pressure plate 32 to move along the direction of the horizontal groove 352 and the vertical groove 351. The pressure plate 32 will not rotate until the lower end face of the pressure plate 32 presses the fabric. Then, the cutting component 2 is used to cut the fabric. After the cutting is completed, the second lifting cylinder 13 raises the clamping component 3, and the peeling component 4 peels the fabric. After peeling is completed, the conveyor belt 5 transports the peeled fabric away. The pressing cylinder 33 retracts, and the pressure plate 32 releases the pressure on the fabric, allowing the fabric to fall onto the conveyor belt 5 and be transported away by the conveyor belt 5. In the second scenario, when the fabric is a continuous roll, it is placed on the conveyor belt 5 and conveyed forward to the bottom plate 311. The second lifting cylinder 13 retracts to press the fabric together with the upper end of the conveyor belt 5, so that it will not move during the cutting process.

[0054] Reference Figure 8Since the cutting component 2, clamping component 3 and peeling component 4 all need to slide on the worktable 1, the positional relationship of the three needs to be set reasonably. For example, the slide rail of the peeling component 4 is located between the slide rail of the cutting component 2 and the clamping frame 11, the displacement block 36 is located below the sliding seat 44, and the sliding seat 44 is located between the support 22 and the frame 21.

[0055] The implementation principle of the automated toy fabric cutting device in this application embodiment is as follows: The conveyor belt 5 allows the fabric to be smoothly transported on the worktable 1, ensuring the continuity and stability of the cutting process. The double-sided synchronous reverse sliding design of the clamping component 3 can firmly fix the fabric, preventing the fabric from shifting or wrinkling during the cutting process, thereby improving cutting accuracy. The peeling component 4, through the peeling rod 411 on the rotating roller 41 cooperating with the first elastic element 412, can quickly and evenly peel the cut patterned fabric from the entire fabric after cutting, avoiding adhesion problems and improving work efficiency. The entire device has a compact structure, is easy to operate, and is suitable for toy fabrics of various sizes and materials, with high practicality and adaptability.

[0056] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An automated toy fabric cutting device, comprising a worktable (1) and a cutting assembly (2), wherein the cutting assembly (2) is slidably connected to the worktable (1) above the worktable (1) along the length of the worktable (1), characterized in that: The upper end face of the workbench (1) is provided with a conveying belt (5), the two sides of the cutting assembly (2) along the sliding direction are provided with clamping assemblies (3) for fixing and clamping toy cloth, the clamping assemblies (3) are slidably connected with the workbench (1) along the length direction of the workbench (1), the two clamping assemblies (3) slide synchronously and reversely, the upper side of the conveying belt (5) is provided with a stripping assembly (4), the stripping assembly (4) comprises a rotating roller (41), a first lifting cylinder (42), two lifting blocks (43) and two sliding seats (44), the two lifting blocks (43) are rotatably connected to the two ends of the rotating roller (41), the lifting blocks (43) are slidably connected with the corresponding sliding seats (44) along the vertical direction, the sliding seats (44) are slidably connected with the workbench (1) along the length direction of the workbench (1), the cylinder body of the first lifting cylinder (42) is fixedly connected to the upper end face of the sliding seat (44), the extension end of the first lifting cylinder (42) is fixedly connected with the lifting block (43) penetrating through the sliding seat (44), a plurality of insertion holes (413) are formed in the side wall of the rotating roller (41) and are uniformly arranged along the circumferential direction and the axial direction, a stripping rod (411) is inserted into the insertion hole (413), a first elastic element (412) is fixedly arranged between the stripping rod (411) and the bottom of the insertion hole (413), the clamping assembly (3) comprises a folding plate (31), a pressing plate (32) and a pressing cylinder (33), the folding plate (31) is slidably connected with the workbench (1) along the length direction of the workbench (1), limit plates (34) are fixedly arranged at the two ends of the folding plate (31) along the length direction, the cylinder body of the pressing cylinder (33) is rotatably connected to the side, away from the folding plate (31), of the limit plate (34), a sliding groove (35) is formed in the limit plate (34), fixed blocks (321) are arranged at the two ends of the upper end face of the pressing plate (32) along the length direction, a sliding rod (322) is fixedly arranged at the end, close to the pressing cylinder (33), of the fixed block (321), the sliding rod (322) is rotatably connected with the extension end of the pressing cylinder (33) penetrating through the sliding groove (35), the sliding rod (322) is slidably connected with the limit plate (34) along the extension direction of the sliding groove (35), the sliding groove (35) comprises a vertical groove (351) and a horizontal groove (352), the folding plate (31) comprises a bottom plate (311), a vertical plate (312) and a top plate (313) from bottom to top, the bottom plate (311) and the top plate (313) are located at the two sides of the vertical plate (312), the vertical groove (351) is located at the side, away from the top plate (313), of the vertical plate (312), and the horizontal groove (352) is located above the top plate (313), the lower end of the limit plate (34) is fixedly provided with a displacement block (36), the upper end face of the workbench (1) is provided with a clamping frame (11), the clamping frame (11) is rotatably connected with a bidirectional screw rod (12), the displacement block (36) is threadedly connected with the bidirectional screw rod (12), the clamping frame (11) comprises two supporting legs (111), the supporting legs (111) are inserted into the upper end of the workbench (1), the clamping frame (11) is slidably connected with the workbench (1) along the vertical direction, the upper end face of the workbench (1) is provided with a mounting hole, a second lifting cylinder (13) is fixedly arranged in the mounting hole,The second lifting cylinder (13) is fixedly connected with the clamping frame (11). When the cloth to be processed is cloth cut into a certain length, the second lifting cylinder (13) is retracted to make the lower end surface of the bottom plate (311) abut against the upper end surface of the conveying belt (5). When the cloth to be processed is continuous roll material, the cloth is placed on the conveying belt (5) and conveyed to below the bottom plate (311), and the second lifting cylinder (13) is retracted to make the lower end surface of the bottom plate (311) and the upper end of the conveying belt (5) jointly compress the cloth.

2. The automated toy cloth cutting device of claim 1, wherein: The cutting assembly (2) comprises a frame (21), two supports (22) and a plurality of groups of cutter seats (23), the two supports (22) are respectively slidably connected to the two sides of the workbench (1) along the length direction of the workbench (1), the frame (21) and the plurality of groups of cutter seats (23) are located between the two supports (22), the frame (21) is slidably connected with the supports (22) along the vertical direction, the plurality of groups of cutter seats (23) are arranged along the width direction of the workbench (1), and the plurality of groups of cutter seats (23) are slidably connected to the inside of the frame (21) along the arrangement direction thereof.

3. The automated toy cloth cutting device of claim 2, wherein: The cutter seat (23) comprises a sliding plate (231), a sliding cylinder (232), a rotating motor (233), a lower rotating disc (234) and a plurality of blades (235), the sliding plate (231) is slidably connected with the frame (21), the cylinder body of the sliding cylinder (232) and the rotating motor (233) are fixedly connected to the upper end face of the sliding plate (231), the extension direction of the sliding cylinder (232) is the same as the arrangement direction of the cutter seat (23), the rotating shaft of the rotating motor (233) penetrates through the sliding plate (231) and is fixedly connected with the lower rotating disc (234), the plurality of blades (235) are uniformly arranged on the lower rotating disc (234) along the rotating shaft line of the rotating motor (233), a plurality of through grooves for the blades (235) to pass through are formed in the lower rotating disc (234), the upper end face of each blade (235) is fixedly connected with a cutter seat (236), the cutter seat (236) and the blade (235) are slidably connected with the lower rotating disc (234) along the vertical direction, the upper end face of the cutter seat (236) is fixedly connected with a cutter cylinder (237), an upper rotating disc (238) fixedly connected with the rotating shaft of the rotating motor (233) is arranged between the lower rotating disc (234) and the sliding plate (231), and the cylinder body of the cutter cylinder (237) is fixedly connected with the upper rotating disc (238).

4. The automated toy cloth cutting device of claim 2, wherein: The frame (21) is slidably connected with a leveling roller (24) along the vertical direction on the two sides along the length direction of the workbench (1), the two ends of the leveling roller (24) are rotatably connected with a fixing seat (241), a fixed plate (242) is arranged above the leveling roller (24), a second elastic element (243) is fixedly arranged between the fixing seat (241) and the fixed plate (242), a leveling cylinder (244) is fixedly arranged on the upper end face of the fixed plate (242), the cylinder body of the leveling cylinder (244) is fixedly connected with the frame (21), a guide rod (245) is fixedly arranged on the upper end of the fixing seat (241), the second elastic element (243) is sleeved outside the guide rod (245), and a baffle (246) is fixedly connected with the upper end of the guide rod (245) and penetrates through the fixed plate (242).

5. The automated toy cloth cutting device of claim 1, wherein: The stripping rod (411) is fixedly provided with a ball head (4111) at one end away from the rotating roller (41).

Citation Information

Patent Citations

  • Cutting machine equipment for garment production

    CN216551280U

  • Cloth cutting device

    CN222160745U