Cloth anti-wrinkle processing and pressing device
By designing a flattening and cushioning mechanism for the fabric anti-wrinkle processing and pressing device, the problem of fabric wrinkles was solved, achieving efficient and uniform fabric flattening and pressing, and reducing labor costs.
Patent Information
- Application Number
- CN202423302493.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Fabrics are prone to wrinkles during processing and storage, which leads to a decrease in aesthetics and uneven quality in subsequent processing. The existing technology of manually smoothing the fabric increases the labor costs for enterprises.
A fabric anti-wrinkle processing and pressing device was designed, which includes a flattening mechanism and a buffer mechanism. The device uses a motor to drive a synchronous wheel and a threaded rod to move the fabric in a fixed position. Combined with a hydraulic cylinder and a buffer spring, the fabric is evenly flattened and pressed.
It achieves efficient fabric laying and fixing, reduces manual intervention, improves processing efficiency, and protects fabric quality.
Smart Images

Figure CN223738325U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fabric anti-wrinkle processing technology, specifically to a fabric anti-wrinkle processing pressing device. Background Technology
[0002] Fabrics are prone to wrinkles during processing and storage, which not only affects their appearance but may also affect the quality of subsequent processing. To solve this problem, fabric anti-wrinkle processing and pressing devices have emerged. These devices use pressing to make the fabric surface smoother, reduce wrinkles, and improve the overall quality of the fabric.
[0003] Compared with existing technologies: Uneven fabric may cause uneven contact between the pressing head and the fabric during the pressing process. This will result in uneven distribution of heat and pressure, causing some areas of the fabric to be over-pressed while other areas may be under-pressed. This uneven pressing effect will reduce the overall quality of the fabric. Since manual flattening is required, this will increase the company's labor costs.
[0004] Therefore, a fabric anti-wrinkle processing pressing device is proposed. Utility Model Content
[0005] The purpose of this invention is to provide a fabric anti-wrinkle processing and pressing device to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a fabric anti-wrinkle processing and pressing device, including a processing table, the top surface of the processing table being provided with through grooves, a support plate being provided on the rear side of the processing table, the support plate being fixedly connected to the processing table, a flattening mechanism being provided on the top surface of the processing table, and a buffer mechanism being provided on the inner side of the support plate;
[0007] The paving mechanism includes a paving section and a fixing section;
[0008] The fixing part is located on the top surface of the paving part;
[0009] The buffer mechanism includes a buffer section and a pressing section;
[0010] The pressing part is located on the bottom surface of the buffer part.
[0011] Preferably, the leveling section includes two L-shaped plates, one at the front and one at the back. The L-shaped plates are fixedly connected to the left side of the processing table. A motor is installed on the inner side of the front L-shaped plate and is fixedly connected to the front L-shaped plate. Each output end of the motor is equipped with a synchronous pulley. The front synchronous pulley is fixedly connected to the output end face of the motor. A rotating rod is fixedly installed on the left end face of the rear synchronous pulley. The rotating rod is rotatably connected to the inner side of the rear L-shaped plate through a bearing seat.
[0012] Preferably, the synchronous pulley surface is provided with a synchronous belt, the synchronous belt is connected to the synchronous pulley for transmission, and a bidirectional threaded rod is provided on the right side of the synchronous belt. The left end face of the bidirectional threaded rod is fixedly connected to the right end face of the synchronous pulley. The bidirectional threaded rod extends through to the inner side of the through groove and is threaded to the inner wall of the processing table. The right end face of the bidirectional threaded rod is rotatably connected to the inner side of the through groove through a bearing seat.
[0013] Preferably, the fixing part includes a portal plate, two portal plates are arranged on the left and right sides, the portal plate is sleeved on the surface of the bidirectional threaded rod, the portal plate is threadedly connected to the bidirectional threaded rod, a cylinder is provided through the inner wall of each portal plate, the cylinder is movably connected to the portal plate, and a slide rod is provided on the outer side of each cylinder.
[0014] Preferably, the slide rod extends through to the outer side of the gantry panel, and the slide rod is slidably connected to the inner wall of the gantry panel. A limiting sleeve is provided on the top surface of the slide rod, and the limiting sleeve is fixedly connected to the slide rod. A paving plate is provided below each limiting sleeve, and the top surface of the paving plate is fixedly connected to the cylinder output end face. The top surface of the paving plate is also fixedly connected to the bottom end face of the slide rod. Through the paving part and the fixing part in the paving mechanism, the paving and fixing effect is achieved.
[0015] Preferably, the buffer part includes a hydraulic cylinder that extends through to the bottom of the support plate and is movably connected to the inner wall of the support plate. A top plate is provided on the output end face of the hydraulic cylinder, and the top plate is fixedly connected to the hydraulic cylinder. A buffer sleeve is provided on the bottom surface of the top plate and is fixedly connected to the top plate. A sliding groove is provided on the inner side of the buffer sleeve.
[0016] Preferably, the pressing part includes a buffer spring, the buffer spring is located on the inner side of the buffer sleeve, the buffer spring is fixedly connected to the buffer sleeve, and each buffer spring has a slider at its bottom end, the slider is fixedly connected to the buffer spring, and the slider is slidably connected to the slide groove.
[0017] Preferably, each slider has a light rod on its bottom surface, the light rod is fixedly connected to the slider, the light rod extends through to the bottom of the buffer sleeve, the light rod is slidably connected to the inner wall of the buffer sleeve, and a pressing plate is provided on the bottom end of the light rod, the pressing plate is fixedly connected to the light rod. The buffering effect is achieved through the buffering part and the pressing part in the buffering mechanism.
[0018] Compared with the prior art, the beneficial effects of this utility model are: this fabric anti-wrinkle processing and pressing device,
[0019] 1) The flattening mechanism uses a motor in the flattening section to place the fabric on the processing table. When the motor is started, it drives a synchronous pulley, which in turn drives a synchronous belt. This drives a double-threaded rod, which in turn adjusts the fixing part, moving it above the fabric. This, in turn, drives a cylinder, which in turn drives a flattening plate. The flattening plate descends under the action of a sliding rod and a limiting sleeve until it reaches a suitable position with the fabric. This drives the motor in the opposite direction, causing the fixing part to move repulsively, thus flattening the fabric. After flattening, the fixing part stays at the edge of the fabric to fix it, smoothing out wrinkles and eliminating the need to smooth the fabric, thereby improving work efficiency and fixing the fabric.
[0020] 2) Through the buffer mechanism, the hydraulic cylinder in the buffer section drives the entire pressing section to move, so that the pressing section comes into contact with the fabric. Due to the pressure of the hydraulic cylinder, the smooth rod slides with the buffer sleeve, and at the same time acts on the slider, so that the slider slides with the groove. The slider squeezes the buffer spring, thereby buffering, improving its performance and protecting the fabric from damage. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural schematic diagram of the present utility model;
[0022] Figure 2 This is a three-dimensional cross-sectional view of the overall structure of this utility model;
[0023] Figure 3 This is a three-dimensional schematic diagram of the flattened structure of this utility model;
[0024] Figure 4 This is a three-dimensional schematic diagram of the buffer structure of this utility model.
[0025] In the diagram: 1. Processing table, 2. Support plate, 3. Flattening mechanism, 31. Flattening part, 32. Fixing part, 311. L-shaped plate, 312. Motor 1, 313. Synchronous pulley, 314. Synchronous belt, 315. Bidirectional threaded rod, 321. Door-shaped plate, 322. Cylinder, 323. Slide rod, 324. Limit sleeve, 325. Flat paving plate, 4. Buffer mechanism, 41. Buffer part, 42. Pressing part, 411. Hydraulic cylinder, 412. Top plate, 413. Buffer sleeve, 421. Buffer spring, 422. Slider, 423. Smooth rod, 424. Pressing plate. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Example 1: Please refer to Figures 1-3 This utility model provides a technical solution: a fabric anti-wrinkle processing and pressing device, including a processing table 1, a through groove is provided on the top surface of the processing table 1, a support plate 2 is provided on the rear side of the processing table 1, the support plate 2 is fixedly connected to the processing table 1, a flattening mechanism 3 is provided on the top surface of the processing table 1, and a buffer mechanism 4 is provided on the inner side of the support plate 2.
[0028] The leveling mechanism 3 includes a leveling part 31 and a fixing part 32;
[0029] The fixing part 32 is located on the top surface of the paving part 31;
[0030] The buffer mechanism 4 includes a buffer section 41 and a pressing section 42;
[0031] The pressing part 42 is located on the bottom surface of the buffer part 41.
[0032] The leveling section 31 includes an L-shaped plate 311, with two L-shaped plates 311 arranged at the front and back. The L-shaped plates 311 are fixedly connected to the left side of the processing table 1. A motor 312 is arranged on the inner side of the front L-shaped plate 311 and is fixedly connected to the front L-shaped plate 311. A synchronous wheel 313 is arranged at the output end of the motor 312. The front synchronous wheel 313 is fixedly connected to the output end face of the motor 312. A rotating rod is fixedly arranged on the left end face of the rear synchronous wheel 313. The rotating rod is rotatably connected to the inner side of the rear L-shaped plate 311 through a bearing seat.
[0033] A synchronous belt 314 is provided on the surface of the synchronous pulley 313. The synchronous belt 314 is connected to the synchronous pulley 313 for transmission. A double-threaded rod 315 is provided on the right side of the synchronous belt 314. The left end face of the double-threaded rod 315 is fixedly connected to the right end face of the synchronous pulley 313. The double-threaded rod 315 extends through to the inner side of the through groove. The double-threaded rod 315 is threadedly connected to the inner wall of the processing table 1. The right end face of the double-threaded rod 315 is rotatably connected to the inner side of the through groove through the bearing seat 2.
[0034] The fixing part 32 includes a portal plate 321. Two portal plates 321 are arranged on the left and right sides. The portal plate 321 is sleeved on the surface of the bidirectional threaded rod 315. The portal plate 321 is threadedly connected to the bidirectional threaded rod 315. A cylinder 322 is provided through the inner wall of each portal plate 321. The cylinder 322 is movably connected to the portal plate 321. A slide rod 323 is provided on the outer side of each cylinder 322.
[0035] The slide rod 323 extends through to the outside of the gantry plate 321. The slide rod 323 is slidably connected to the inner wall of the gantry plate 321. The top surface of the slide rod 323 is provided with a limit sleeve 324, which is fixedly connected to the slide rod 323. The bottom of the limit sleeve 324 is provided with a paving plate 325. The top surface of the paving plate 325 is fixedly connected to the output end face of the cylinder 322. The top surface of the paving plate 325 is fixedly connected to the bottom end face of the slide rod 323.
[0036] Furthermore, in this embodiment, the fabric to be processed is placed on the processing table 1 by using the motor 312 in the flattening part 31 through the flattening mechanism 3. The motor 312 is started, and its rotational power is transmitted to the synchronous pulley 313. Through the transmission action of the synchronous belt 314, the power is smoothly transmitted. During this process, the synchronous pulley 313 not only rotates itself but also drives the connected bidirectional threaded rod 315 to rotate. The rotation of the bidirectional threaded rod 315 causes the fixed part 32 connected to it to move linearly. Through the flattening part 31, the fixed part 32 is precisely moved above the fabric. Next, the cylinder 322 is activated. The movement of the motor 312 causes the laying plate 325 to descend along the guide of the slide bar 323 and the limiting sleeve 324. This descent ensures that the laying plate 325 can accurately contact the fabric and reach a suitable flat position. Once the laying plate 325 contacts the fabric and reaches the predetermined position, the motor 312 is driven in the opposite direction. This reverse rotation causes the bidirectional threaded rod 315 to drive the fixing part 32 to move linearly again, but this time in a repulsive direction. This movement allows the laying plate 325 to apply force evenly to the fabric, thereby effectively flattening the fabric. After the flattening process is completed, the fixing part 32 stays at the edge of the fabric to fix the fabric.
[0037] Furthermore, in this embodiment, the flattening mechanism 3 utilizes the motor 312 in the flattening part 31 to place it on the processing table 1. The motor 312 is started, driving the synchronous pulley 313, which in turn drives the synchronous belt 314. This causes the synchronous pulley 313 to drive the bidirectional threaded rod 315, which in turn adjusts the fixing part 32, moving it above the fabric. This drives the cylinder 322, which in turn drives the flattening plate 325. The flattening plate 325 descends under the action of the sliding rod 323 and the limiting sleeve 324, reaching a suitable position with the fabric. This reverses the direction of the motor 312, causing the fixing part 32 to move repulsively, thus flattening the fabric. After flattening, the fixing part 32 remains at the edge of the fabric to fix it, smoothing out wrinkles and eliminating the need to smooth the fabric, thereby improving work efficiency and simultaneously fixing the fabric.
[0038] Example 2: Please refer to Figure 1, Figure 2 , Figure 4 Furthermore, based on Embodiment 1, the following is obtained: the buffer part 41 includes a hydraulic cylinder 411, which extends through to the bottom of the support plate 2. The hydraulic cylinder 411 is movably connected to the inner wall of the support plate 2. A top plate 412 is provided on the output end face of the hydraulic cylinder 411. The top plate 412 is fixedly connected to the hydraulic cylinder 411. A buffer sleeve 413 is provided on the bottom surface of the top plate 412. The buffer sleeve 413 is fixedly connected to the top plate 412. A sliding groove is provided on the inner side of the buffer sleeve 413.
[0039] The pressing part 42 includes a buffer spring 421, which is located on the inner side of the buffer sleeve 413. The buffer spring 421 is fixedly connected to the buffer sleeve 413. A slider 422 is provided at the bottom of the buffer spring 421. The slider 422 is fixedly connected to the buffer spring 421 and is slidably connected to the slide groove.
[0040] Each slider 422 has a smooth rod 423 on its bottom surface. The smooth rod 423 is fixedly connected to the slider 422. The smooth rod 423 extends through to the bottom of the buffer sleeve 413. The smooth rod 423 is slidably connected to the inner wall of the buffer sleeve 413. The bottom end of the smooth rod 423 is provided with a pressing plate 424. The pressing plate 424 is fixedly connected to the smooth rod 423.
[0041] Furthermore, in this embodiment, the buffer mechanism 4 utilizes the hydraulic cylinder 411 in the buffer section 41. When the hydraulic cylinder 411 starts working, the pressure it generates pushes the pressing section 42 closer to the fabric until it contacts the fabric. Simultaneously, the pressure of the hydraulic cylinder 411 also acts on the guide rod 423, causing the guide rod 423 to slide against the buffer sleeve 413. This allows the guide rod 423 to slide along the slide groove onto the slider 422. During this sliding process, the slider 422 compresses the buffer spring 421. As an elastic element, the buffer spring 421 can absorb and disperse the impact force generated by the hydraulic cylinder 411, thereby achieving buffering and adjustment of the falling speed of the pressing section 42.
[0042] Furthermore, in this embodiment, the hydraulic cylinder 411 in the buffer part 41 is used by the buffer mechanism 4 to drive the pressing part 42 to move as a whole, so that the pressing part 42 comes into contact with the fabric. Under the pressure of the hydraulic cylinder 411, the smooth rod 423 slides with the buffer sleeve 413, and at the same time acts on the slider 422, so that the slider 422 slides with the groove. Thus, the slider 422 squeezes the buffer spring 421, thereby buffering, improving its performance and protecting the fabric from damage.
[0043] In use, the fabric to be processed is placed on the processing table 1 by the motor 312 in the flattening part 31 via the flattening mechanism 3. The motor 312 is started, and its rotational power is transmitted to the synchronous pulley 313. Through the transmission action of the synchronous belt 314, the power is smoothly transmitted. During this process, the synchronous pulley 313 not only rotates itself but also drives the connected bidirectional threaded rod 315 to rotate. The rotation of the bidirectional threaded rod 315 causes the fixed part 32 connected to it to move linearly. Through the flattening part 31, the fixed part 32 is precisely moved above the fabric. Next, the cylinder 322 is activated, pushing the flattening plate 325 downwards along the guide action of the slide rod 323 and the limiting sleeve 324. This downward movement ensures that the flattening plate 325 accurately contacts the fabric and reaches a suitable flattening position. Once the flattening plate 325 contacts the fabric and reaches the desired flattening position... Upon reaching the predetermined position, motor 312 is driven in the reverse direction. This reverse rotation causes the bidirectional threaded rod 315 to drive the fixing part 32 to move linearly again, but this time in a repulsive direction. This movement allows the spreading plate 325 to apply force evenly to the fabric, thereby effectively spreading the fabric. After the spreading process is completed, the fixing part 32 stays at the edge of the fabric to fix it. After fixing, the buffer mechanism 4 uses the hydraulic cylinder 411 in the buffer part 41. When the hydraulic cylinder 411 starts working, the pressure it generates pushes the pressing part 42 closer to the fabric until it contacts the fabric. At the same time, the pressure of the hydraulic cylinder 411 also acts on the smooth rod 423. The smooth rod 423 slides with the buffer sleeve 413, causing the smooth rod 423 to slide on the slider 422, causing the slider 422 to slide along the groove. During this sliding process, the slider 422 compresses the buffer spring 421. As an elastic element, the buffer spring 421 can absorb and disperse the impact force generated by the hydraulic cylinder 411, thereby buffering and adjusting the falling speed of the pressing part 42, and thus pressing it with the pressing plate 424.
[0044] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A fabric anti-crease finishing press device comprising a finishing table (1), characterized in that: The processing platform (1) top surface is provided with a through groove, the processing platform (1) rear side is provided with a support plate (2), the support plate (2) is fixedly connected with the processing platform (1), the processing platform (1) top surface is provided with a flattening mechanism (3), the support plate (2) inner side is provided with a buffer mechanism (4); The flattening mechanism (3) includes a flattening part (31) and a fixed part (32); The fixed part (32) is located on the top surface of the flattening part (31); The buffer mechanism (4) includes a buffer part (41) and a pressing part (42); The pressing part (42) is located on the bottom surface of the buffer part (41).
2. A fabric anti-crease finishing press device according to claim 1, characterized in that: The flattening part (31) includes an L-shaped plate (311), two L-shaped plates (311) are arranged front and back, the L-shaped plate (311) is fixedly connected with the left side of the processing platform (1), the inner side of the front L-shaped plate (311) is provided with a motor one (312), the motor one (312) is fixedly connected with the front L-shaped plate (311), the output end of the motor one (312) is provided with a synchronous wheel (313), the front synchronous wheel (313) is fixedly connected with the output end surface of the motor one (312), the rear synchronous wheel (313) is fixedly provided with a rotating rod on the left end surface, and the rotating rod is rotatably connected with the inner side of the rear L-shaped plate (311) through a bearing seat one.
3. A fabric anti-crease finishing press device according to claim 2, characterized in that: The surface of the synchronous wheel (313) is provided with a synchronous belt (314), the synchronous belt (314) is in transmission connection with the synchronous wheel (313), the right side of the synchronous belt (314) is provided with a bidirectional screw rod (315), the left end surface of the bidirectional screw rod (315) is fixedly connected with the right end surface of the synchronous wheel (313), the bidirectional screw rod (315) extends through to the inner side of the through groove, and the bidirectional screw rod (315) is in screw connection with the inner wall of the processing platform (1).
4. A fabric anti-crease finishing press device according to claim 3, characterized in that: The fixed part (32) includes a door-shaped plate (321), two door-shaped plates (321) are arranged left and right, the door-shaped plate (321) is sleeved on the surface of the bidirectional screw rod (315), and the door-shaped plate (321) is in screw connection with the bidirectional screw rod (315); a gas cylinder (322) is arranged in the inner wall of the door-shaped plate (321) and extends through; the gas cylinder (322) is movably connected with the door-shaped plate (321); and a sliding rod (323) is arranged on the outer side of the gas cylinder (322).
5. A fabric anti-crease finishing press device according to claim 4, characterized in that: The sliding rod (323) extends through to the outer side of the door-shaped plate (321), and the sliding rod (323) is in sliding connection with the inner wall of the door-shaped plate (321); a limiting sleeve (324) is arranged on the top surface of the sliding rod (323); the limiting sleeve (324) is fixedly connected with the sliding rod (323); a flattening plate (325) is arranged below the limiting sleeve (324); the top surface of the flattening plate (325) is fixedly connected with the output end surface of the gas cylinder (322); and the top surface of the flattening plate (325) is fixedly connected with the bottom end surface of the sliding rod (323).
6. A fabric anti-crease finishing press device according to claim 1, characterized in that: The buffer part (41) includes a hydraulic cylinder (411) which extends through to below the support plate (2), the hydraulic cylinder (411) is movably connected with the inner wall of the support plate (2), the output end surface of the hydraulic cylinder (411) is provided with a top plate (412), the top plate (412) is fixedly connected with the hydraulic cylinder (411), the bottom surface of the top plate (412) is provided with a buffer sleeve (413), the buffer sleeve (413) is fixedly connected with the top plate (412), and the inner side surface of the buffer sleeve (413) is provided with a sliding groove.
7. A fabric anti-crease finishing press device according to claim 1, characterized in that: The pressing part (42) includes a buffer spring (421) which is located on the inner side surface of the buffer sleeve (413), the buffer spring (421) is fixedly connected with the buffer sleeve (413), the bottom end of the buffer spring (421) is provided with a sliding block (422), the sliding block (422) is fixedly connected with the buffer spring (421), and the sliding block (422) is slidably connected with the sliding groove.
8. A fabric anti-crease finishing press device according to claim 7, characterized in that: The bottom surface of the sliding block (422) is provided with a polished rod (423), the polished rod (423) is fixedly connected with the sliding block (422), the polished rod (423) extends through to below the buffer sleeve (413), the polished rod (423) is slidably connected with the inner wall of the buffer sleeve (413), and the bottom end surface of the polished rod (423) is provided with a pressing plate (424), the pressing plate (424) is fixedly connected with the polished rod (423).