A fabric flat pressing mechanism for garment processing

By introducing a chute and positioning hole design into the fabric flattening device, flexible adjustment according to the fabric length is achieved, and an automatic cleaning function is provided, which solves the problems of low clamping efficiency and inconvenient cleaning in the existing technology, and improves work efficiency and processing quality.

CN224513851UActive Publication Date: 2026-07-17HUBEI WANSHISHUN CLOTHING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI WANSHISHUN CLOTHING CO LTD
Filing Date
2025-08-12
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing fabric flattening device cannot adjust the clamping device according to the actual length of the fabric, and it cannot automatically clean up the debris on the platform, which increases the labor intensity of the workers.

Method used

A fabric flattening mechanism including an operating table, a chute, a flattening device, and a cleaning end is designed. By setting chute on both sides of the operating table and opening positioning holes at equal intervals in one of the chute, the position can be flexibly adjusted in conjunction with the slider and positioning end on the flattening device. At the same time, a cleaning end is rotatably connected to the frame, which can automatically remove debris or impurities from the operating table.

Benefits of technology

It improves clamping efficiency and equipment versatility, reduces manual cleaning workload, ensures fabric processing quality and consistency, and reduces operational complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a fabric flattening mechanism for garment processing, comprising an operating table with sliding grooves on both sides, wherein each sliding groove has a plurality of positioning holes equidistantly spaced; a flattening device including an n-shaped frame and a pressure plate; a slider is provided at one end of the frame and slidably connected to the sliding groove, and a positioning end is provided on the other side of the frame, which engages with the positioning hole; both sides of the frame have strip-shaped holes, and a limit hole is provided at the top; the pressure plate is located below the frame and extends through the strip-shaped holes on both sides. The beneficial effects of this utility model are: solving the technical problems of existing fabric flattening devices having low fabric clamping efficiency, inconvenience in adjusting the clamping device according to the actual length of the fabric, and the inability to clean up fabric scraps on the platform after processing, which increases the labor intensity of workers.
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Description

Technical Field

[0001] This utility model relates to the field of textile technology, specifically to a fabric flat pressing mechanism for garment processing. Background Technology

[0002] As a basic material, fabric is widely used in many fields. The most direct and common application areas of fabric include various types of clothing for daily wear, work clothes, sportswear, and protective clothing for special working environments. Different types of clothing have different requirements for fabric. For example, sportswear needs to have good breathability and elasticity. With the improvement of people's living standards and the growth of demand for functional and comfortable textiles.

[0003] Chinese utility model CN222613754U proposes a "fabric flattening device for garment processing". This device solves the problem that existing fabric flattening devices for garment processing cannot adjust the pressing force of the flattening device. However, this device cannot adjust the distance of the flattening device during the clamping process. At the same time, it cannot clean up the fragments left on the platform during the fabric processing process during the adjustment process, which requires the staff to clean them up separately afterward, which increases the labor intensity of the staff. Utility Model Content

[0004] The purpose of this utility model is to overcome the above-mentioned technical deficiencies and provide a fabric flattening mechanism for garment processing. This solves the technical problems of existing fabric flattening devices having low clamping efficiency for fabric, inconvenience in adjusting the clamping device according to the actual length of the fabric, and inability to clean up the scraps on the platform after fabric processing, which increases the labor intensity of workers.

[0005] To achieve the above-mentioned technical objectives, the present invention adopts the following technical solution:

[0006] In a first aspect, this utility model provides a fabric flattening mechanism for garment processing, comprising:

[0007] The operating table has sliding grooves on both sides, and each of the sliding grooves has several positioning holes equidistantly spaced.

[0008] A pressure device includes an n-shaped frame and a pressure plate; one end of the frame is provided with a slider, which is slidably connected in the groove; the other side of the frame is provided with a positioning end, which engages in the positioning hole; both sides of the frame are provided with strip-shaped holes, and the top of the frame is provided with a limiting hole; the pressure plate is provided below the frame and extends through the strip-shaped holes on both sides, and is connected to the pressure ends on both sides of the frame; the upper end of the pressure plate is provided with a cylinder, and a lifting end is rotatably connected inside the cylinder, which extends through the limiting hole and to the top of the frame; a cleaning end for cleaning the operating table is also rotatably connected to the frame.

[0009] In some embodiments, the positioning end includes a column, a disc, a first spring strip, and a pull block. One axial end of the column passes through the frame and extends into the positioning hole. The disc is fixed on the column. The first spring strip is wrapped around the outer wall of the column, with one end connected to the disc and the other end connected to the frame. The pull block is connected to the end of the column away from the positioning hole.

[0010] In some embodiments, a square hollow cylinder is provided on the outer periphery of the column, and the hollow cylinder is slidably connected in the groove.

[0011] In some embodiments, extension blocks are provided on both sides of the pressure plate, the extension blocks passing through the strip hole and slidably connected to the pressure end.

[0012] In some embodiments, the pressure end includes a limiting post and a second spring strip; the limiting post is fixed on both sides of the frame, an extension block is slidably connected to the limiting post, and a second spring strip is wound around the outer periphery of the limiting post, the bottom of the second spring strip abuts against the extension block, and the other end is connected to the protruding end of the frame.

[0013] In some embodiments, the pressure end further includes a plurality of spring dampers, which are equidistantly arranged on the pressure plate, and the upper ends of the spring dampers are connected to the frame.

[0014] In some embodiments, the lifting end includes a rotating rod, a connecting handle, and a limiting block. The rotating rod is rotatably connected to the cylinder body, and the upper end of the rotating rod passes through the limiting hole and is fixed with the connecting handle. The limiting block is also fixed on the rotating rod. The limiting block can be located in a first position or a second position. When the limiting block is in the first position, the limiting block coincides with the limiting hole, and the spring damper can push the pressure plate to move towards the operating table. When the limiting block is in the second position, the limiting block is located above the frame, and the limiting block and the limiting hole form a cross shape, preventing the pressure plate from moving downward.

[0015] In some embodiments, the cleaning end includes a mounting block, a rotating shaft, and a scraper. Mounting blocks are provided on both sides of the frame, and a rotating shaft is rotatably connected between the two mounting blocks. A scraper is fixed on the rotating shaft.

[0016] In some embodiments, the scraper is provided with an adsorption element, which includes an iron sheet and a magnet, the iron sheet being fixed to the frame and the magnet being mounted on the scraper.

[0017] Compared with existing technologies, this utility model provides a fabric flattening mechanism for garment processing. By setting grooves on both sides of the operating table and opening several positioning holes at equal intervals in one of the grooves, and cooperating with the slider and positioning end on the flattening device, the flattening mechanism can flexibly adjust its position according to actual needs to adapt to the flattening of fabrics of different lengths or widths, thus improving the versatility and applicability of the equipment. A cleaning end for cleaning the operating table is rotatably connected to the frame, which can automatically remove residual debris or impurities on the operating table after the flattening process, reducing the amount of manual cleaning and improving work efficiency. At the same time, it ensures that the quality of the next batch of fabric is not affected. The pressure plate moves up and down by engaging with the limiting hole through the lifting end inside the cylinder, and adjustable pressure support is provided by the spring damper, realizing effective flattening and pressing of the fabric, ensuring the quality and consistency of the fabric after processing. The positioning end allows users to easily fix the flattening device in the required position without the need for complicated tools. The pressure end provides stable downward pressure to the pressure plate, ensuring that the pressure plate can effectively press the fabric on the operating table. Attached Figure Description

[0018] Figure 1 This is an overall schematic diagram of the fabric flat pressing mechanism for garment processing provided in this embodiment of the utility model;

[0019] Figure 2 This is a side view of the fabric flat pressing mechanism for garment processing provided in this embodiment of the utility model;

[0020] Figure 3 This is a schematic diagram of the pressure plate structure of the fabric flat pressing mechanism for garment processing provided in this embodiment of the utility model;

[0021] Figure 4 This is a schematic diagram of the frame and pressure plate assembly of the fabric flat pressing mechanism for garment processing provided in this embodiment of the utility model;

[0022] Figure 5 This is a schematic diagram of the positioning end structure of the fabric flat pressing mechanism for clothing processing provided in this embodiment of the utility model.

[0023] Explanation of reference numerals in the attached drawings: 1. Operating table; 11. Slide groove; 111. Positioning hole; 2. Flat pressing device; 3. Frame; 301. Strip hole; 302. Limiting hole; 31. Sliding block; 32. Positioning end; 321. Column; 322. Disc; 323. First spring bar; 324. Pull block; 4. Pressure plate; 401. Extension block; 41. Cylinder; 42. Lifting end; 421. Rotating rod; 422. Connecting handle; 423. Limiting block; 43. Pressure end; 431. Limiting post; 432. Second spring bar; 433. Spring damper; 5. Cleaning end; 51. Mounting block; 52. Rotating shaft; 53. Scraper; 54. Adsorption component; 541. Iron sheet; 542. Magnet block. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0025] To address the technical problems of existing fabric flattening devices, such as low fabric clamping efficiency, inconvenience in adjusting the clamping device according to the actual length of the fabric, and inability to clean up fabric scraps on the platform after processing, which increases the labor intensity of workers, this utility model provides a fabric flattening mechanism for garment processing. This mechanism can improve the clamping efficiency of the clamping end, facilitate adjustment according to the fabric length, and allow for timely cleaning of the worktable surface after fabric processing.

[0026] It should be noted that the fabric flat pressing mechanism for garment processing described in this utility model is applicable to, but not limited to, the textile field. For ease of explanation, this utility model only uses the application of the fabric flat pressing mechanism for garment processing in the textile field as an example for illustration. The principle of the fabric flat pressing mechanism for garment processing applied to other types of equipment is essentially the same as that applied to the textile field, and will not be elaborated here.

[0027] Please see Figure 1 , Figure 1 This is a schematic diagram of the structure of a fabric flattening mechanism for garment processing according to an embodiment of the present invention. A fabric flattening mechanism for garment processing includes:

[0028] The operating table 1 has sliding grooves 11 on both sides, and a number of positioning holes 111 are equally spaced in any one of the sliding grooves 11.

[0029] The flat pressure device 2 includes an n-shaped frame 3 and a pressure plate 4. One end of the frame 3 is provided with a slider 31, which is slidably connected in the slide groove 11. The other side of the frame 3 is provided with a positioning end 32, which is engaged in the positioning hole 111. Both sides of the frame 3 are provided with strip holes 301, and the top of the frame 3 is provided with a limiting hole 302. The pressure plate 4 is provided below the frame 3, and both sides are connected through the strip holes 301 and connected to the pressure ends 43 on both sides of the frame 3. The upper end of the pressure plate 4 is provided with a cylinder 41, and a lifting end 42 is rotatably connected inside the cylinder 41. The lifting end 42 passes through the limiting hole 302 and extends to the top of the frame 3. A cleaning end 5 for cleaning the operating table 1 is also rotatably connected to the frame 3.

[0030] In this embodiment, by setting slide grooves 11 on both sides of the operating table 1, and opening a plurality of positioning holes 111 at equal intervals in one of the slide grooves 11, and cooperating with the slider 31 and positioning end 32 on the flat pressing device 2, the flat pressing mechanism can flexibly adjust its position according to actual needs to adapt to flat pressing of fabrics of different lengths or widths, thereby improving the versatility and applicability of the equipment. A cleaning end 5 for cleaning the operating table 1 is rotatably connected to the frame 3, which can automatically remove residual debris or impurities on the operating table 1 after the flat pressing process, reducing the amount of manual cleaning and improving work efficiency. At the same time, it ensures that the quality of the next batch of fabric processing is not affected. The pressure plate 4 moves up and down by cooperating with the lifting end 42 in the cylinder 41 and the limiting hole 302. The spring damper 433 provides adjustable pressure support, which realizes effective flat pressing of the fabric and ensures the quality and consistency of the fabric after processing. The positioning end 32 allows users to easily fix the flat pressing device 2 in the required position without complicated tools. The pressure end 43 provides stable downward pressure to the pressure plate 4, ensuring that the pressure plate 4 can effectively press the fabric on the operating table 1.

[0031] In one embodiment, please refer to Figure 1 , Figure 3 , Figure 4 and Figure 5 To facilitate positioning of the frame 3, the positioning end 32 includes a column 321, a disc 322, a first spring strip 323, and a pull block 324. One axial end of the column 321 passes through the frame 3 and extends into the positioning hole 111. The disc 322 is fixed on the column 321. The first spring strip 323 is wrapped around the outer wall of the column 321, with one end connected to the disc 322 and the other end connected to the frame 3. The pull block 324 is connected to the end of the column 321 away from the positioning hole 111. A square hollow cylinder 41 is provided on the outer periphery of the column 321. The hollow cylinder 41 is slidably connected in the slide groove 11.

[0032] In this embodiment, one axial end of the column 321 passes through the frame 3 and extends into the positioning hole 111. This allows the flat pressing device 2 to be precisely positioned on the slide 11 and to be securely fixed by inserting the column 321 into the positioning hole 111, thus ensuring the stability of the frame 3. The end of the column 321 away from the positioning hole 111 is connected to a pull block 324. The operator can easily pull the column 321 out of the positioning hole 111 by pulling the pull block 324, thereby quickly adjusting the position of the flat pressing device 2, greatly simplifying the operation process of the equipment, reducing adjustment time, and improving work efficiency. The first spring strip 323 is wrapped around the outer wall of the column 321, with one end connected to the disc 322 and the other end connected to the frame 3. When it is necessary to move or reposition the flat pressing device 2, simply pull the pull block 324 to disengage the column 321 from the positioning hole 111, at which time the first spring strip 323 will be stretched. Once the desired position is reached, the pull block 324 is released. Under the elastic action of the first spring bar 323, the column 321 will automatically spring back into the nearest positioning hole 111, achieving automatic reset without manual alignment. The outer periphery of the column 321 is provided with a square hollow cylinder 41, which is slidably connected in the slide groove 11. The square structure increases the contact area, provides more stable support, and prevents the column 321 from rotating or shifting during use. At the same time, the design of the hollow cylinder 41 reduces weight, lowers material costs, and facilitates manufacturing and installation. Since the spring bar is used as part of the reset mechanism, it can effectively absorb impact force, reduce wear caused by frequent use, and extend the service life of the entire mechanism. In addition, the presence of the first spring bar 323 also means that even after long-term use, it can still maintain good reset performance, ensuring the long-term stable operation of the equipment.

[0033] In one embodiment, please refer to Figure 2 - Figure 5 To facilitate the pressure plate 4 in limiting the fabric, extension blocks 401 are provided on both sides of the pressure plate 4. The extension blocks 401 pass through the strip hole 301 and are slidably connected to the pressure end 43. The pressure end 43 includes a limiting post 431 and a second spring strip 432. Limiting posts 431 are fixed on both sides of the frame 3. Extension blocks 401 are slidably connected to the limiting posts 431. The second spring strip 432 is wound around the outer periphery of the limiting posts 431. The bottom of the second spring strip 432 abuts against the extension block 401, and the other end is connected to the protruding end of the frame 3. The pressure end 43 also includes several spring dampers 433. Several spring dampers 433 are equidistantly arranged on the pressure plate 4, and the upper end of the spring dampers 433 is connected to the frame 3.

[0034] In this embodiment, extension blocks 401 are provided on both sides of the pressure plate 4. The extension blocks 401 pass through the strip hole 301 and are slidably connected to the pressure end 43, ensuring that the pressure plate 4 can remain stable when moving up and down, avoiding deviation or jamming. The strip hole 301 provides a guiding function for the extension blocks 401, allowing the pressure plate 4 to move freely within a limited range, thereby achieving effective flattening of the fabric. The pressure end 43 includes a limiting post 431 and a second spring strip 432. The extension blocks 401 are slidably connected to the limiting post 431, and the second spring strip 432 is wound around the outer periphery of the limiting post 431. The bottom of the second spring strip 432 abuts against the extension block 401, and the other end is connected to the protruding end of the frame 3. The second spring strip 432 and the spring damper 433 provide downward pressure to the pressure plate 4, which is used to push the pressure plate 4 to move downward and apply pressure to the fabric, ensuring that the fabric is uniformly and without excessive pressure, thus improving the processing quality.

[0035] In one embodiment, please refer to Figure 1 - Figure 5 To facilitate the cleaning of waste materials on the operating table 1 by the frame 3, the lifting end 42 includes a rotating rod 421, a connecting handle 422, and a limiting block 423. The rotating rod 421 is rotatably connected to the cylinder 41, and the upper end of the rotating rod 421 passes through the limiting hole 302 and is fixed with the connecting handle 422. The limiting block 423 is also fixed on the rotating rod 421. The limiting block 423 can be located in a first position or a second position. When the limiting block 423 is located in the first position, the limiting block 423 coincides with the limiting hole 302, and the spring damper 433 can push the pressure plate 4 to move towards the operating table 1. When the position block 423 is in the second position, the limiting block 423 is located above the frame 3, and the limiting block 423 and the limiting hole 302 form a cross shape, so the pressure plate 4 cannot move downward. The cleaning end 5 includes a mounting block 51, a rotating shaft 52 and a scraper 53. Mounting blocks 51 are provided on both sides of the frame 3. A rotating shaft 52 is rotatably connected between the two mounting blocks 51. A scraper 53 is fixed on the rotating shaft 52. An adsorption component 54 is provided on the scraper 53. The adsorption component 54 includes an iron sheet 541 and a magnet 542. The iron sheet 541 is fixed on the frame 3, and the magnet 542 is installed on the scraper 53.

[0036] In this embodiment, the rotating rod 421 is rotatably connected inside the cylinder 41 and achieves two position states through the limiting block 423. When the limiting block 423 coincides with the limiting hole 302, i.e., the first position, the spring damper 433 can push the pressure plate 4 towards the operating table 1 to complete the pressing of the fabric. When the limiting block 423 is in the second position, it forms a cross shape with the limiting hole 302, preventing the pressure plate 4 from moving further down. This allows the operator to easily control the up and down movement of the pressure plate 4, ensuring the accuracy and controllability of the pressing process. A connecting handle 422 is fixed on the rotating rod 421. The user can adjust the position of the limiting block 423 by rotating the connecting handle 422, thereby easily controlling the movement of the pressure plate 4. This not only simplifies the operation process but also improves work efficiency and reduces the risk of equipment damage or safety accidents caused by improper manual adjustment. Due to the lifting end 42's ability to... By quickly and accurately adjusting the state of the pressure plate 4, operators can complete the pressing task of the fabric in a short time, thereby improving the overall production efficiency. Mounting blocks 51 are set on both sides of the frame 3, and a rotating shaft 52 is installed between them. A scraper 53 is fixed on the rotating shaft 52. This allows the scraper 53 to effectively remove residual fabric fragments or other impurities on the worktable 1, keeping the work area clean and avoiding potential quality problems in subsequent processing. The scraper 53 is equipped with an adsorption element 54, an iron sheet 541, and a magnet 542. The iron sheet 541 is fixed to the frame 3, while the magnet 542 is installed on the scraper 53. The magnetic connection increases the tightness between the scraper 53 and the frame 3, preventing unnecessary loosening or displacement of the scraper 53 during storage, and improving the storage effect of the scraper 53. At the same time, by sliding the frame 3, the scraper 53 can be driven to quickly clean the surface of the worktable 1.

[0037] To better understand this utility model, the following is combined with... Figures 1 to 5The technical solution of this utility model is described in detail as follows: The operator slides the frame 3 of the flat pressing device 2 into the slide grooves 11 on both sides of the operating table 1. Since multiple positioning holes 111 are equidistantly arranged in one of the slide grooves 11, the operator can move the device to a suitable position according to the size of the fabric to be processed. The operator pulls the pull block 324, which compresses the first spring strip 323 through the disc 322 on the column 321, causing the column 321 to move away from the positioning hole 111. When the frame 3 moves to the target position, the operator stops pulling the pull block 324, and the column 321 automatically inserts into the corresponding positioning hole 11 on the slide groove 11 under the elastic force of the first spring strip 323. In step 1, a fast and precise mechanical locking is achieved. This process requires no additional tools, improving positioning efficiency. If the position needs to be adjusted, the operator only needs to pull the pull block 324, causing the column 321 to overcome the elastic force of the first spring strip 323 and exit from the positioning hole 111. After sliding the frame 3 to the new position, the pull block 324 is released, and the column 321 automatically resets and inserts into the new positioning hole 111. The fabric to be processed is laid flat on the operating table 1, located in the area directly below the pressure plate 4. The operator rotates the connecting handle 422 on the lifting end 42, causing the rotating rod 421 to rotate inside the cylinder 41, so that the limiting block 423 fixed thereon moves from the "second position" to the "tenth position". In the locked position, rotate to the "first position" and align with the limiting hole 302. The pressure plate 4 automatically presses down. When the limiting block 423 aligns with the limiting hole 302, the spring damper 433 and the second spring strip 432 release their stored elastic potential energy, pushing the pressure plate 4 downward along the guide direction of the strip hole 301 to press the fabric. The extension block 401 slides on the limiting post 431 to ensure that the pressure plate 4 moves smoothly and without deviation. The spring damper 433 provides adjustable buffer pressure to avoid damage to thin or sensitive fabrics. The second spring strip 432 assists in providing stable downward pressure and has buffering and reset functions, ensuring that the pressure plate 4 stably presses the fabric. In this state, cutting, drawing lines, sewing and positioning operations can be performed to ensure that the fabric does not shift. After processing, pull the rotating handle 422 upward again and rotate it to extend the limiting block 423 to the top of the frame 3 and then rotate it back to the "second position" to limit the pressure plate 4, preventing the pressure plate 4 from moving downward and maintaining a gap between it and the operating table 1. If it is necessary to clean the residue on the operating table 1, the operator pushes the entire frame 3 to slide along the slide groove 11, and rotates the scraper 53 connected to the frame 3 to move with the frame 3. Its bottom contacts the surface of the operating table 1, pushing and cleaning the remaining thread ends, scraps and other impurities after the fabric is cut.

[0038] The specific embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model. Any other corresponding changes and modifications made based on the technical concept of this utility model should be included within the scope of protection of the claims of this utility model.

Claims

1. A fabric flat pressing mechanism for garment processing, characterized in that, include: The operating table has sliding grooves on both sides, and each of the sliding grooves has several positioning holes equidistantly spaced. A pressure device includes an n-shaped frame and a pressure plate; one end of the frame is provided with a slider, which is slidably connected in the groove; the other side of the frame is provided with a positioning end, which engages in the positioning hole; both sides of the frame are provided with strip-shaped holes, and the top of the frame is provided with a limiting hole; the pressure plate is provided below the frame and extends through the strip-shaped holes on both sides, and is connected to the pressure ends on both sides of the frame; the upper end of the pressure plate is provided with a cylinder, and a lifting end is rotatably connected inside the cylinder, which extends through the limiting hole and to the top of the frame; a cleaning end for cleaning the operating table is also rotatably connected to the frame.

2. The fabric flat pressing mechanism for garment processing according to claim 1, characterized in that: The positioning end includes a column, a disc, a first spring strip, and a pull block. One axial end of the column passes through the frame and extends into the positioning hole. The disc is fixed on the column. The first spring strip is wrapped around the outer wall of the column, with one end connected to the disc and the other end connected to the frame. The pull block is connected to the end of the column away from the positioning hole.

3. The fabric flattening mechanism for clothing processing according to claim 2, characterized in that: The outer periphery of the column is provided with a square hollow cylinder, which is slidably connected to the groove.

4. The fabric flattening mechanism for clothing processing according to claim 1, characterized in that: Both sides of the pressure plate are provided with extension blocks, which pass through the strip hole and are slidably connected to the pressure end.

5. The fabric flattening mechanism for clothing processing according to claim 4, characterized in that: The pressure end includes a limiting post and a second spring strip; the limiting post is fixed on both sides of the frame, and an extension block is slidably connected to the limiting post. The second spring strip is wound around the outer periphery of the limiting post, the bottom of the second spring strip abuts against the extension block, and the other end is connected to the protruding end of the frame.

6. The fabric flattening mechanism for clothing processing according to claim 5, characterized in that: The pressure end also includes a plurality of spring dampers, which are equidistantly arranged on the pressure plate, and the upper end of each spring damper is connected to the frame.

7. A fabric flat pressing mechanism for garment processing according to claim 6, characterized in that: The lifting end includes a rotating rod, a connecting handle, and a limiting block. The rotating rod is rotatably connected to the cylinder body, and the upper end of the rotating rod passes through the limiting hole and is fixed with the connecting handle. The limiting block is also fixed on the rotating rod. The limiting block can be located in a first position or a second position. When the limiting block is in the first position, the limiting block coincides with the limiting hole, and the spring damper can push the pressure plate to move towards the operating table. When the limiting block is in the second position, the limiting block is located above the frame, and the limiting block and the limiting hole form a cross shape, preventing the pressure plate from moving downward.

8. The fabric flattening mechanism for clothing processing according to claim 1, characterized in that: The cleaning end includes a mounting block, a rotating shaft, and a scraper. Mounting blocks are provided on both sides of the frame, and a rotating shaft is rotatably connected between the two mounting blocks. A scraper is fixed on the rotating shaft.

9. The fabric flattening mechanism for clothing processing according to claim 8, characterized in that: The scraper is provided with an adsorption element, which includes an iron sheet and a magnet. The iron sheet is fixed to the frame, and the magnet is mounted on the scraper.