A cloth flattening device for cloth production and processing

By designing an automated cloth leveling device for fabric production and processing, using components such as clamping claws, snap rings, cutting knives and reverse stops, the problem of low automation of traditional cloth leveling and winding devices is solved, and an efficient and automated fabric production process is achieved.

CN119735039BActive Publication Date: 2025-05-23ZHUHAI ORITICK FASHION CO LTD
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Patent Information

Application Number
CN202510262628.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2025-05-23
Estimated Expiration
2045-03-06

AI Technical Summary

Technical Problem

The traditional fabric flattening and winding device has low degree of automation, and requires a lot of manual replacement and unloading of winding rollers, which cannot achieve continuous automated production.

Method used

A cloth leveling device for fabric production and processing including a first support frame and a second support frame is designed, and components such as clamping claws, snap rings, cutting knives and reverse stops are used to realize automatic winding, replacement and unloading.

Benefits of technology

It improves the efficiency and quality of fabric production and processing, reduces manual intervention, realizes automated control, and reduces labor intensity and operating costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a cloth flattening device for cloth production and processing, which belongs to the field of cloth processing and comprises a first support frame and a second support frame, wherein a first finishing roller and a second finishing roller are rotatably mounted on the first support frame, a spreading plate for flattening the cloth is fixedly mounted between the first support frame and the second support frame, a winding component for winding the cloth is mounted at the middle upper end position of the second support frame, the winding component comprises two mutually symmetrical fixed disks, the fixed disks are fixedly mounted on the second support frame, a center column is rotatably connected between the two fixed disks, and three groups of evenly distributed clamping claws are fixedly mounted on the center column, and the device is provided with clamping claws so that the device can automatically replace the winding roller after winding by utilizing the weight of the cloth roll itself after winding, without the need for manual replacement by workers and without the need for machine shutdown during replacement, thereby improving the production and processing efficiency of the cloth.
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Description

Technical Field

[0001] The invention relates to the field of cloth processing, and more particularly to a cloth flattening device for cloth production and processing. Background Art

[0002] Flattening the fabric before winding it after processing can ensure that it remains flat during the winding process, avoiding wrinkles, unevenness and other problems. Wrinkled fabrics may increase the complexity of curling when winding, resulting in uneven winding or forming loose rolls, affecting subsequent storage, transportation and use. By flattening, the fabric can be ensured to be rolled in a flat state, thereby improving the quality of winding;

[0003] During the winding process, if the fabric is wrinkled or uneven, it may cause additional pulling force or squeezing on the fabric surface, thereby increasing the risk of surface damage. Flattening the fabric can reduce these unnecessary pulling forces and squeezing, protect the fabric surface from damage, and improve the overall quality of the product.

[0004] Therefore, during the fabric processing and production process, the fabric needs to be flattened before it can be rolled up. However, most traditional flattening and rolling devices have a low degree of automation and require a large amount of labor costs for tasks such as replacing the winding roller and unloading the material, making it impossible to achieve continuous automated production.

[0005] In view of this, in order to solve the above-mentioned shortcomings, the present invention provides a cloth flattening device for cloth production and processing. Summary of the invention

[0006] In view of the problems existing in the prior art, the purpose of the present invention is to provide a cloth flattening device for cloth production and processing, which can realize highly automated continuous flattening and winding work and has high production efficiency.

[0007] To solve the above problems, the present invention adopts the following technical solutions.

[0008] A cloth flattening device for cloth production and processing, comprising a first support frame and a second support frame, a first finishing roller and a second finishing roller are rotatably mounted on the first support frame, a flattening plate for flattening the cloth is fixedly mounted between the first support frame and the second support frame, and a winding component for winding the cloth is mounted at the middle upper end of the second support frame;

[0009] The winding component includes two symmetrical fixed disks, which are fixedly installed on the second support frame. A center column is rotatably connected between the two fixed disks. Three groups of evenly distributed clamping claws are fixedly installed on the center column. Each group of clamping claws has two clamping claws and are symmetrically arranged. A winding roller is provided between two opposite clamping claws. The winding roller is used to wind up the cloth. The clamping claw has a placement groove, and the placement groove is used to sleeve the two ends of the winding roller.

[0010] Furthermore, a retaining ring is rotatably installed on the side where the two clamping claws are away from each other, and a matching groove used in conjunction with the placement groove is opened on the retaining ring, and the matching groove and the placement groove cooperate to limit the two ends of the winding roller, and a spring telescopic rod is fixedly installed under the outer surface of the fixed disk, and an annular toothed plate is fixedly installed on the side of the spring telescopic rod away from the fixed disk, and a toothed ring used in conjunction with the annular toothed plate is fixedly installed on the side of the retaining ring away from the clamping claw, and a third spring is fixedly connected between the retaining ring and the clamping claw.

[0011] Furthermore, a U-shaped rod is slidably installed between the two opposite clamping claws, and a first sliding rod is fixedly installed on both sides of the end of the U-shaped rod away from the center column, and the first sliding rod passes through the clamping claws and extends to the outside of the clamping claws, and a second sliding rod is fixedly installed on both sides of the end of the U-shaped rod close to the center column, and the second sliding rod passes through the clamping claws and extends to the inside of the fixed plate.

[0012] Furthermore, a first rotation groove is provided inside the fixed disk, a limiting groove for clamping the second sliding rod is provided at the upper right position inside the fixed disk, and a second spring is fixedly connected between the U-shaped rod and the clamping claw.

[0013] Furthermore, two symmetrically distributed blocking rings are provided at the outer ring of the central column. The two blocking rings are respectively located on the side away from each other of the two clamping claws and are fixedly installed on the corresponding clamping claws. The blocking rings are provided with a plurality of spacing grooves corresponding to the placement grooves.

[0014] Furthermore, a plurality of ring-shaped Velcro strips are bonded to the outer surface of the winding roller, and the Velcro strips are used to stick to the cloth. Gears are fixedly installed at both ends of the winding roller, and a connecting block is fixedly installed on the side of the gear away from the winding roller.

[0015] Furthermore, a conical plate is slidably installed on the outer side of the fixed disk at a position corresponding to the limit groove, and a connecting sleeve is rotatably clamped at one end of the conical plate away from the fixed disk, and the connecting sleeve is slidably sleeved on the outside of the connecting block, and a fixed sleeve is fixedly installed on the position of the second support frame corresponding to the conical plate, and the connecting sleeve is movably clamped inside the fixed sleeve, and a first spring is fixedly connected between the conical plate and the fixed sleeve.

[0016] Furthermore, a winding motor for providing winding kinetic energy to the winding roller is provided on the side of the fixed sleeve away from the conical plate. The winding motor is fixedly mounted on the second support frame, and the driving end of the winding motor is slidably clamped inside the end of the connecting sleeve away from the clamping claw.

[0017] Furthermore, two symmetrical unloading guide rails are fixedly installed on the inner bottom end of the second support frame, and the end of the unloading guide rail close to the second support frame is inclined. The two unloading guide rails correspond to two gears, and the unloading guide rails have gear teeth used in conjunction with the gears. A blocking block is fixedly installed on the end of the unloading guide rail away from the second support frame, and a cutting knife is fixedly installed on the side of the second support frame away from the first support frame, and the cutting knife is located above the two unloading guide rails.

[0018] Furthermore, a first rotating rod is rotatably installed above the spreading plate, a connecting rod is fixedly installed at the lower end of the first rotating rod, a smoothing plate for smoothing the cloth is fixedly installed at one end of the connecting rod away from the first rotating rod, and a plurality of evenly distributed anti-return spikes are fixedly installed on the lower surface of the smoothing plate, and the anti-return spikes are inclined.

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

[0020] 1. The device is provided with a clamping claw so that the device can automatically replace the winding roller after the winding is completed by using the weight of the cloth roll itself, without the need for manual replacement by workers, and without stopping the machine during replacement, thereby improving the production and processing efficiency of the cloth.

[0021] 2. This device can automatically unload the wound fabric roll by setting a clamping ring, without the need for workers to unload manually, thereby reducing labor intensity and operating costs. At the same time, the design of this device simplifies the operating procedures in the fabric production process, making the entire production process smoother and more efficient, and further improving the automation capability of the device.

[0022] 3. This device is equipped with a cutting knife so that the fabric roll can be automatically cut when unloading, and the kinetic energy generated by the rolling and sliding of the fabric roll is used for cutting. It is efficient and practical, and there is no need to stop the machine for cutting, which reduces manual dependence and further improves the continuous operation capability of the equipment.

[0023] 4. This device is equipped with a check bar so that the cloth can only pass through the spreading plate in one direction, and as the winding component automatically unloads the cloth, the cloth will not slide down due to loss of traction. This can not only achieve the flattening of the cloth but also ensure the stable operation of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0025] Figure 2 It is a structural schematic diagram of the winding component in the present invention;

[0026] Figure 3 It is a schematic diagram of the structure of the blocking ring in the present invention;

[0027] Figure 4 is a schematic diagram of the connection structure between the conical plate and the first sliding rod in the present invention;

[0028] Figure 5 It is a schematic diagram of the cross-section structure of the fixed disk in the present invention;

[0029] Figure 6 It is a structural schematic diagram of the winding roller in the present invention;

[0030] Figure 7 It is a schematic diagram of the structure of the cutting knife and the unloading guide rail in the present invention;

[0031] Figure 8 It is a schematic diagram of the structure of the stroking plate and the anti-return thorn in the present invention.

[0032] Description of the numbers in the figure:

[0033] 1. First support frame; 2. Spreading plate; 3. Winding component; 4. Unloading guide rail; 5. Winding motor; 11. Second support frame; 12. First finishing roller; 13. Second finishing roller; 21. First rotating rod; 22. Connecting rod; 23. Stroking plate; 24. Backstop; 31. Fixed plate; 32. Center column; 33. Winding roller; 34. Blocking ring; 35. Snap ring; 41. Cutting knife; 42. Blocking block; 301. First rotating groove; 302. Limiting groove; 303. 11. Spring telescopic rod; 312. Annular tooth plate; 313. Conical plate; 314. Connecting sleeve; 315. Fixed sleeve; 316. First spring; 321. Clamping claw; 322. Placement groove; 323. U-shaped rod; 324. First slide bar; 325. Second slide bar; 326. Second spring; 331. Velcro; 332. Gear; 333. Connecting block; 341. Spacer groove; 351. Gear ring; 352. Matching groove; 353. Third spring. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments, and all other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making creative work are within the scope of protection of the present invention.

[0035] See also Figures 1 to 8A cloth flattening device for cloth production and processing comprises a first support frame 1 and a second support frame 11, a first finishing roller 12 and a second finishing roller 13 are rotatably mounted on the first support frame 1, a flat plate 2 for flattening the cloth is fixedly mounted between the first support frame 1 and the second support frame 11, a first rotating rod 21 is rotatably mounted above the flat plate 2, a connecting rod 22 is fixedly mounted at the lower end of the first rotating rod 21, and a connecting rod 22 is fixedly mounted at one end of the connecting rod 22 away from the first rotating rod 21 for flattening the cloth The smoothing plate 23 has a plurality of evenly distributed check spikes 24 fixedly mounted on its lower surface. The check spikes 24 are inclined. When the cloth passes through the check spikes 24 in the forward direction, the check spikes 24 will deform and act as an internal wire brush to smooth the cloth. A coil spring is fixedly connected between the first rotating rod 21 and the spreading plate 2. The coil spring can increase the smoothing force of the smoothing plate 23 and the check spikes 24 on the cloth. A winding component 3 for winding the cloth is installed at the middle upper end of the second support frame 11.

[0036] When actually using, the operator first starts the equipment, passes the cloth through the first finishing roller 12 and the second finishing roller 13, and then the cloth will be spread on the spreading plate 2. The first finishing roller 12 and the second finishing roller 13 can initially flatten the cloth, and then the cloth will pass through the surface of the spreading plate 2, and when passing through, it will be further flattened by the connecting rod 22 and the smoothing plate 23 driven by the first rotating rod 21, and finally the cloth will be neatly rolled up onto the winding component 3. The whole process is efficient and smooth, ensuring the stability of the cloth quality and the convenience of operation. The cloth can only pass through the smoothing plate 23 in the forward direction. When the cloth reverses, the reverse check thorn 24 will play a blocking role to ensure that the cloth can only pass in the correct direction, thereby avoiding damage to the cloth and reducing production efficiency. When the winding component 3 reaches the set limit, it can be automatically replaced to ensure the continuity of the production process. The cloth flattening device for cloth production and processing of the present invention not only improves the efficiency and quality of cloth processing, but also greatly reduces manual intervention in actual operation and realizes automatic control.

[0037] The winding component 3 includes two symmetrical fixed disks 31, which are fixedly mounted on the second support frame 11. A center column 32 is rotatably connected between the two fixed disks 31. Three groups of evenly distributed clamping claws 321 are fixedly mounted on the center column 32. The number of clamping claws 321 in each group is two and they are symmetrically arranged. A winding roller 33 is provided between two opposing clamping claws 321. The winding roller 33 is used to wind up the cloth. The clamping claws 321 are provided with a placement groove 322, and the placement groove 322 is used to sleeve the two ends of the winding roller 33.

[0038] After the cloth passes through the flat plate 2, it will pass through the surface of the upper left winding roller 33 and finally wrap around the surface of the upper right winding roller 33. Then the upper right winding roller 33 will work to wind up the cloth. When the upper right winding roller 33 reaches the set cloth thickness, the center column 32 can be disconnected from the fixed disk 31. At this time, the upper right winding roller 33 will naturally fall down under the influence of gravity because there is more cloth wrapped around its surface, driving the center column 32 and multiple clamping claws 321 to rotate, and then form an alternating winding mechanism with the winding roller 33 on the left, forming a three-dimensional interactive winding system. The newly replaced winding roller 33 immediately starts a new round of cloth winding work, ensuring the continuous supply of cloth and avoiding production delays caused by equipment stoppage. When the falling center column 32 reaches the bottom, it will automatically reconnect with the fixed disk 31 to complete a winding cycle. This cycle is repeated to ensure an efficient and stable cloth processing process.

[0039] A snap ring 35 is rotatably installed on the side where the two clamping claws 321 are away from each other, and a matching groove 352 used in conjunction with the placement groove 322 is opened on the snap ring 35. The matching groove 352 and the placement groove 322 cooperate to limit the two ends of the winding roller 33. A spring telescopic rod 311 is fixedly installed under the outer surface of the fixed disk 31, and an annular tooth plate 312 is fixedly installed on the side of the spring telescopic rod 311 away from the fixed disk 31. A toothed ring 351 used in conjunction with the annular toothed plate 312 is fixedly installed on the side of the snap ring 35 away from the clamping claw 321, and a third spring 353 is fixedly connected between the snap ring 35 and the clamping claw 321.

[0040] When the clamping claw 321 rotates due to the weight of the cloth roll, the annular tooth plate 312 contacts the toothed ring 351, and the toothed ring 351 is driven by the annular tooth plate 312 to rotate, thereby driving the retaining ring 35 to rotate, so that the matching groove 352 is flipped. When the cloth roll is completely rotated to the bottom of the center column 32, the matching groove 352 coincides with the position of the placement groove 322, thereby losing the sleeve effect on the winding roller 33. The winding roller 33 and the cloth roll thereon will naturally fall down under the action of gravity to unload, and the spring telescopic rod 311 can ensure that the annular tooth plate 312 and the toothed ring 351 are tightly fitted.

[0041] A U-shaped rod 323 is slidably installed between two opposing clamping claws 321, and second slide rods 325 are fixedly installed on both sides of one end of the U-shaped rod 323 close to the center column 32. The second slide rod 325 penetrates the clamping claw 321 and extends to the interior of the fixed disk 31. A first rotating groove 301 is provided inside the fixed disk 31, and a limiting groove 302 for clamping the second slide rod 325 is provided at the upper right position inside the fixed disk 31. A second spring 326 is fixedly connected between the U-shaped rod 323 and the clamping claw 321.

[0042] When the wound cloth roll rotates to the bottom of the center column 32, the new second slide bar 325 will re-enter the interior of the limiting groove 302 under the action of the second spring 326, and re-realize the fixed connection with the fixing disk 31, which is convenient for the next winding work.

[0043] The first slide bar 324 is fixedly installed on both sides of the end of the U-shaped rod 323 away from the center column 32, and the first slide bar 324 passes through the clamping claw 321 and extends to the outside of the clamping claw 321. Two symmetrically distributed blocking rings 34 are provided on the outer ring of the center column 32. The two blocking rings 34 are respectively located on the side where the two clamping claws 321 are away from each other, and are fixedly installed on the corresponding clamping claws 321. A plurality of spacing grooves 341 corresponding to the placement grooves 322 are opened on the blocking ring 34. A plurality of ring-shaped Velcro 331 is bonded to the outer surface of the winding roller 33. The Velcro 331 is used to stick to the cloth. Gears 332 are fixedly installed at both ends of the winding roller 33. A connecting block 333 is fixedly installed on the side of the gear 332 away from the winding roller 33. A conical plate 313 is slidably installed at the position corresponding to the limit groove 302 on the side, and a connecting sleeve 314 is rotatably clamped at the end of the conical plate 313 away from the fixed disk 31, and the connecting sleeve 314 is slidably sleeved on the outside of the connecting block 333, and a fixing sleeve 315 is fixedly installed at the position of the second support frame 11 corresponding to the conical plate 313, and the connecting sleeve 314 is movably clamped inside the fixing sleeve 315, and a first spring 316 is fixedly connected between the conical plate 313 and the fixing sleeve 315, and a winding motor 5 for providing winding kinetic energy to the winding roller 33 is provided on the side of the fixing sleeve 315 away from the conical plate 313, and the winding motor 5 is fixedly installed on the second support frame 11, and the driving end of the winding motor 5 is slidably clamped inside the end of the connecting sleeve 314 away from the clamping claw 321.

[0044] When the first slide bar 324 is in the position of being pressed down, the first slide bar 324 will be moved, and the movement of the first slide bar 324 will push the conical plate 313. Because the conical plate 313 is conical, it can move away from the clamping claw 321 as the first slide bar 324 slides. When the conical plate 313 gradually moves away from the clamping claw 321, it will drive the connecting sleeve 314 to gradually move away from the winding roller 33. When the cloth roll reaches the set value, the connecting sleeve 314 will be disconnected from the connecting block 333, and the winding motor 5 will not be able to drive the winding roller 33 to rotate. The winding roller 33 loses the connection with the connecting sleeve 314, thereby realizing automatic unloading of the cloth roll. When the new winding roller 33 is rotated to the position of the retaining ring 35, the connecting sleeve 314 is connected to the connecting block 333 again, and the fixing sleeve 314 is fixed to the fixing sleeve 314. The drive action of the drum 315 causes the new take-up roller 33 to begin to bond the fabric and rotate accordingly, completing a new round of fabric winding operation. When the connecting sleeve 314 is driven to disengage from the take-up roller 33, the connecting sleeve 314 will also disengage from the inside of the spacing groove 341. When the blocking ring 34 is driven to rotate, the first slide bar 324 loses its pushing effect on the conical plate 313, thereby causing the connecting sleeve 314 to tend to return to its original position under the pushing action of the first spring 316. At this time, because the position of the take-up roller 33 is rotated and deflected, the connecting sleeve 314 will be blocked by the blocking ring 34. Until the new take-up roller 33 reaches the specified position, the connecting sleeve 314 will re-pass through the spacing groove 341 and reconnect with the corresponding connecting block 333. The Velcro 331 can stick to the fabric, making it easier for the take-up roller 33 to rotate and rewind the fabric.

[0045] Two symmetrical unloading guide rails 4 are fixedly installed at the inner bottom end of the second support frame 11, and the end of the unloading guide rail 4 close to the second support frame 11 is inclined. The two unloading guide rails 4 correspond to the two gears 332, and the unloading guide rails 4 have gear teeth used in conjunction with the gears 332. A blocking block 42 is fixedly installed at the end of the unloading guide rail 4 away from the second support frame 11, and a cutting knife 41 is fixedly installed on the side of the second support frame 11 away from the first support frame 1, and the cutting knife 41 is located above the two unloading guide rails 4.

[0046] When the wound cloth rotates to the bottom of the center column 32, the gears 332 at both ends of the winding roller 33 will fall on the corresponding unloading guide rail 4, and the gears 332 will mesh with the gear teeth on the unloading guide rail 4. The front end of the unloading guide rail 4 is inclined. When the winding roller 33 and the cloth roll fall on the unloading guide rail 4, they will gradually slide along the inclined surface of the unloading guide rail 4 to the end of the unloading guide rail 4 away from the second support frame 11 under the action of gravity. And because the gear 332 is meshed with the gear teeth on the unloading guide rail 4, the winding roller 33 will move along the unloading guide rail 4. The winding roller 33 is driven to rotate, and the direction in which the winding roller 33 is driven to rotate is consistent with the winding direction of the cloth roll, ensuring that the cloth roll can be wound tightly during unloading to prevent the cloth from being loose, and as the winding roller 33 moves along the surface of the unloading guide rail 4, because the cloth is not cut at this time, the cloth will be cut by the cutting knife 41 as the winding roller 33 moves. The blade surface of the cutting knife 41 is inclined, which can cut more efficiently. The winding roller 33 that has been wound will eventually be blocked by the blocking block 42, and the worker can transport it at the position of the blocking block 42.

[0047] Working principle: When actually using the device, the operator first starts the equipment, passes the cloth through the first finishing roller 12 and the second finishing roller 13, and then the cloth will be spread on the spreading plate 2. The first finishing roller 12 and the second finishing roller 13 can initially flatten the cloth, and then the cloth will pass through the surface of the spreading plate 2. When passing through, the connecting rod 22 and the smoothing plate 23 driven by the first rotating rod 21 will further smoothen the cloth. Finally, the cloth is neatly rolled onto the winding component 3. The cloth can only pass through the smoothing plate 23 in the forward direction. When the cloth reverses, the reverse check thorn 24 will play a blocking role to ensure that the cloth can only pass in the correct direction. When the winding component 3 reaches the set limit, it can be automatically replaced, and the winding motor 5 can be automatically connected with the replacement of the winding roller 33;

[0048] When the wound cloth rotates to the bottom of the center column 32, the gears 332 at both ends of the winding roller 33 will fall onto the corresponding unloading guide rail 4, the gears 332 will mesh with the gear teeth on the unloading guide rail 4, and the front end of the unloading guide rail 4 is inclined. When the winding roller 33 and the cloth roll fall on the unloading guide rail 4, they will gradually slide along the inclined surface of the unloading guide rail 4 to the end of the unloading guide rail 4 away from the second support frame 11 under the action of gravity, and because the gears 332 are meshed with the gear teeth on the unloading guide rail 4, the winding roller 33 will be driven to rotate along the unloading guide rail 4, and the direction in which the winding roller 33 is driven to rotate is consistent with the winding direction of the cloth roll, ensuring that the cloth roll can ensure the tightness of the winding when unloading, preventing the cloth from being loose, and as the winding roller 33 moves along the surface of the unloading guide rail 4, because the cloth has not been cut at this time, the cloth will be cut by the cutting knife 41 as the winding roller 33 moves.

[0049] The above is only a preferred specific implementation of the present invention; however, the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solution and its improved conception within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A cloth flattening device for cloth production and processing, comprising a first support frame (1) and a second support frame (11), characterized in that: A first finishing roller (12) and a second finishing roller (13) are rotatably mounted on the first support frame (1); a spreading plate (2) for spreading the cloth is fixedly mounted between the first support frame (1) and the second support frame (11); and a winding component (3) for winding the cloth is mounted at the middle upper end of the second support frame (11); The winding component (3) comprises two mutually symmetrical fixed disks (31), the fixed disks (31) being fixedly mounted on the second support frame (11), a central column (32) being rotatably connected between the two fixed disks (31), three groups of evenly distributed clamping claws (321) being fixedly mounted on the central column (32), each group of clamping claws (321) having two clamping claws (321) and being symmetrically arranged, a winding roller (33) being arranged between two opposing clamping claws (321), the winding roller (33) being used for winding up fabric, the clamping claws (321) having a placement groove (322), the placement groove (322) being used for sleeve-mounting the two ends of the winding roller (33); A clamping ring (35) is rotatably mounted on the side of the two clamping claws (321) that is away from each other. The clamping ring (35) is provided with a matching groove (352) used in conjunction with the placement groove (322). The matching groove (352) and the placement groove (322) cooperate to limit the two ends of the winding roller (33). A spring telescopic rod (311) is fixedly mounted below the outer surface of the fixed disk (31). An annular toothed plate (312) is fixedly mounted on the side of the spring telescopic rod (311) that is away from the fixed disk (31). A toothed ring (351) used in conjunction with the annular toothed plate (312) is fixedly mounted on a side of the snap ring (35) away from the clamping claw (321), and a third spring (353) is fixedly connected between the snap ring (35) and the clamping claw (321); A U-shaped rod (323) is slidably mounted between the two opposing clamping claws (321); first sliding rods (324) are fixedly mounted on both sides of an end of the U-shaped rod (323) away from the central column (32); the first sliding rods (324) penetrate the clamping claws (321) and extend to the outside of the clamping claws (321); and second sliding rods (325) are fixedly mounted on both sides of an end of the U-shaped rod (323) close to the central column (32); the second sliding rods (325) penetrate the clamping claws (321) and extend to the inside of the fixed plate (31).

2. The cloth flattening device for cloth production and processing according to claim 1, characterized in that: A first rotation groove (301) is provided inside the fixed disk (31), a limiting groove (302) for clamping a second sliding rod (325) is provided at the upper right position inside the fixed disk (31), and a second spring (326) is fixedly connected between the U-shaped rod (323) and the clamping claw (321).

3. The cloth flattening device for cloth production and processing according to claim 2, characterized in that: Two symmetrically distributed blocking rings (34) are provided at the outer ring of the central column (32); the two blocking rings (34) are respectively located on the sides of the two clamping claws (321) that are away from each other and are fixedly mounted on the corresponding clamping claws (321); and the blocking rings (34) are provided with a plurality of spacing grooves (341) corresponding to the placement grooves (322).

4. The cloth flattening device for cloth production and processing according to claim 3, characterized in that: The outer surface of the winding roller (33) is bonded with a plurality of ring-shaped Velcro strips (331), the Velcro strips (331) being used to adhere to the cloth, gears (332) being fixedly mounted on both ends of the winding roller (33), and a connecting block (333) being fixedly mounted on the side of the gear (332) away from the winding roller (33).

5. The cloth flattening device for cloth production and processing according to claim 4, characterized in that: A conical plate (313) is slidably mounted on the outer side of the fixed disk (31) at a position corresponding to the limiting groove (302); a connecting sleeve (314) is rotatably mounted on one end of the conical plate (313) away from the fixed disk (31); the connecting sleeve (314) is slidably mounted on the outside of the connecting block (333); a fixing sleeve (315) is fixedly mounted on the second support frame (11) at a position corresponding to the conical plate (313); the connecting sleeve (314) is movably mounted inside the fixing sleeve (315); and a first spring (316) is fixedly connected between the conical plate (313) and the fixing sleeve (315).

6. The cloth flattening device for cloth production and processing according to claim 5, characterized in that: A winding motor (5) for providing winding kinetic energy to the winding roller (33) is provided on a side of the fixed sleeve (315) away from the conical plate (313); the winding motor (5) is fixedly mounted on the second support frame (11); and a driving end of the winding motor (5) is slidably clamped inside an end of the connecting sleeve (314) away from the clamping claw (321).

7. The cloth flattening device for cloth production and processing according to claim 6, characterized in that: Two symmetrical unloading guide rails (4) are fixedly mounted on the inner bottom end of the second support frame (11); one end of the unloading guide rail (4) close to the second support frame (11) is inclined; the two unloading guide rails (4) correspond to two gears (332); the unloading guide rails (4) have gear teeth for use with the gears (332); a blocking block (42) is fixedly mounted on one end of the unloading guide rail (4) away from the second support frame (11); a cutting knife (41) is fixedly mounted on the side of the second support frame (11) away from the first support frame (1); the cutting knife (41) is located above the two unloading guide rails (4).

8. The cloth flattening device for cloth production and processing according to claim 7, characterized in that: A first rotating rod (21) is rotatably mounted above the spreading plate (2); a connecting rod (22) is fixedly mounted at the lower end of the first rotating rod (21); a smoothing plate (23) for smoothing the cloth is fixedly mounted at one end of the connecting rod (22) away from the first rotating rod (21); a plurality of evenly distributed anti-return spikes (24) are fixedly mounted on the lower surface of the smoothing plate (23); the anti-return spikes (24) are inclined.

Citation Information

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