Double-sided garment pressing machine and pressing method thereof in garment production

By designing a double-sided garment pressing machine, which employs servo motor drive and steam nozzle technology, the problems of slow production speed and wrinkles caused by single-sided pressing machines are solved. This enables simultaneous pressing and wrinkle removal on both sides of the garment, improving production efficiency and yield rate.

CN115517423BActive Publication Date: 2026-05-19ANHUI AC GARMENTS & TEXTILES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ANHUI AC GARMENTS & TEXTILES CO LTD
Filing Date
2021-09-28
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing lining presses can only smooth one side of the garment, requiring a flipping operation, which results in slow production speed, high manual labor intensity, and wrinkles that are easily generated during lining, affecting production efficiency and yield rate.

Method used

A double-sided garment pressing machine was designed, which adopts a servo motor driven threaded rod and support arm structure to achieve synchronous pressing of both sides of the garment. The garment is softened by a wrinkle removal device and a water vapor nozzle to ensure the consistency and efficiency of the pressing effect.

Benefits of technology

This technology enables simultaneous smoothing and lining of both sides of the garment, increasing production speed, reducing manual labor intensity, improving the yield rate, and lowering production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a double-sided garment pressing machine in garment production and a pressing method thereof, and relates to the technical field of pressing machines. The existing pressing machine can only perform single-sided pressing and is prone to causing wrinkles on garments during pressing. The application provides the following scheme. The double-sided garment pressing machine comprises a control box, a threaded rod, a driving rod and a supporting column. A base is fixedly installed at the bottom of the control box. The top end of the control box is fixedly installed with the supporting column. The top end of the control box is rotatably installed with the driving rod and the supporting column. First and second servo motors are fixedly installed in the control box. The application has a novel structure. When the garment is pressed, the two sides of the garment can be smoothed in advance to remove wrinkles. The two sides of the garment can be pressed simultaneously, the production speed of the garment is improved, the labor intensity of workers is reduced, the pressing effect is improved, the rate of qualified products in garment production is improved, and the production cost is reduced.
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Description

Technical Field

[0001] This invention relates to the field of lining press technology, and more particularly to a double-sided garment lining press machine and its lining press method used in garment production. Background Technology

[0002] Garment production refers to the garment production and processing process in the textile industry, including design, cutting, sewing, sizing and packaging. A lining press is a commonly used piece of equipment in garment production; it is a device used to remove wrinkles from clothes.

[0003] Existing lining presses can only smooth one side of a garment. After one side is smoothed, the garment needs to be flipped over and smoothed again, which slows down garment production, increases labor intensity, and requires the garment to be laid directly on the worktable. This can easily cause wrinkles during lining, affecting the lining effect and consequently reducing the yield rate and increasing production costs. Therefore, to solve these problems, we propose a double-sided garment lining press and its lining method for garment production. Summary of the Invention

[0004] This invention proposes a double-sided garment pressing machine and its pressing method for garment production, which solves the problem that existing pressing machines can only perform single-sided pressing and that garments are prone to wrinkles during pressing.

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

[0006] A double-sided garment pressing machine for garment production includes a control box, a threaded rod, a drive rod, and a support column. A base is fixedly installed at the bottom of the control box, and a support column is fixedly installed at the top of the control box. The drive rod and the support column are rotatably installed at the top of the control box. A first servo motor and a second servo motor are fixedly installed inside the control box. The bottom end of the threaded rod extends into the control box and is fixedly connected to the output shaft of the first servo motor. The bottom end of the drive rod extends into the control box and is fixedly connected to the output shaft of the second servo motor.

[0007] The support column is fixedly fitted with an upper moving plate, and the support column is slidably fitted with a middle moving plate and a lower fixed plate. The upper moving plate, middle moving plate, and lower fixed plate are arranged sequentially from top to bottom. The threaded rod passes through the upper moving plate, middle moving plate, and lower fixed plate and is threadedly connected to the upper moving plate. The drive rod slides through the upper moving plate, middle moving plate, and lower fixed plate and is rotatably connected to the upper moving plate, middle moving plate, and lower fixed plate. An upper pressure plate, a middle pressure plate, and a lower pressure plate are respectively fixedly installed on the same side ends of the upper moving plate, middle moving plate, and lower fixed plate. Heating rods are provided inside the upper pressure plate, middle pressure plate, and lower pressure plate. A first support arm is rotatably installed on the side wall of the upper moving plate, a second support arm is rotatably installed on the side wall of the middle moving plate, and a third support arm is rotatably installed on the side wall of the lower fixed plate. The two ends of the second support arm are rotatably connected to the ends of the first support arm and the third support arm, respectively. The upper pressure plate and the lower pressure plate are provided with wrinkle removal devices that are symmetrically distributed.

[0008] Preferably, the wrinkle removal device includes a sliding groove, a sliding block, a gear ring, a rack, a slide rod, a connecting rod, a wrinkle removal plate, an inclined block, and a return spring. The top of the upper pressure plate has a sliding groove, and a sliding block is slidably installed in the sliding groove. A gear ring is rotatably installed on the top of the upper moving plate, and a drive rod passes through the gear ring. A rack is fixedly installed on the side wall of the sliding block near the upper moving plate, and the rack meshes with the gear ring. A slide rod is slidably installed on the sliding block in the vertical direction, and the slide rod passes through the sliding block. Connecting rods are fixedly installed at both ends of the slide rod. A wrinkle removal plate is fixedly installed between the bottom ends of the two connecting rods. The wrinkle removal plate is located below the upper pressure plate. A uniformly distributed return spring connects the side wall of the slide rod away from the upper pressure plate and the sliding block. An inclined block is fixedly installed at both ends of the top of the upper pressure plate in a symmetrical arrangement.

[0009] Preferably, the cross-section of the inclined block is a right-angled triangle, and the inclined surface of the inclined block is slidably connected to the slide rod.

[0010] Preferably, the side wall of the drive rod is provided with symmetrically distributed limiting grooves, and the inner circumferential wall of the gear ring is fixedly installed with symmetrically distributed limiting blocks, the limiting blocks matching the limiting grooves and being slidably connected.

[0011] Preferably, the connection points of the upper movable plate and the first support arm, the connection points of the middle movable plate and the second support arm, and the connection points of the lower fixed plate and the third support arm are located on the same vertical line, the length of the first support arm is half the length of the second support arm, and the length of the first support arm is equal to the length of the third support arm.

[0012] Preferably, a water tank is provided at the top of the base, the water tank is located on the side of the control box near the threaded rod, a heater is provided inside the water tank, an air pump is provided at the top of the water tank, the air pump is connected to a spring tube, and guide tubes are installed at the upper and lower ends of the middle moving plate, a nozzle is installed at the end of the guide tube near the middle pressure plate, and the ends of the two guide tubes are connected to the ends of the spring tubes.

[0013] A method for pressing interlining in double-sided garments during garment production includes the following steps:

[0014] S1. Add water to the water tank and turn on the heater in the water tank. Put the garment that needs to be pressed onto the medium pressure plate.

[0015] S2. Start the second servo motor through the control box. The second servo motor drives the gear ring to rotate, which drives the sliding block to move in the sliding groove, so that the two wrinkle removal plates are in contact with the upper and lower ends of the middle pressure plate. The sliding block pushes the two wrinkle removal plates to move and remove wrinkles from both sides of the garment.

[0016] S3. Start the first servo motor through the control box. The first servo motor drives the upper moving plate to move downward. The upper moving plate, the middle moving plate and the lower fixed plate are hinged with the first support arm, the second support arm and the third support arm, which drive the middle moving plate to move downward, so that the distance between the upper moving plate and the middle moving plate and the middle moving plate and the lower fixed plate remains consistent until the upper pressure plate, the middle pressure plate and the lower pressure plate are in contact with each other to complete the pressing work.

[0017] S4. As the upper and middle pressure plates approach the lower pressure plate, start the air pump so that the water vapor in the water tank passes through the spring tube and the guide tube and is sprayed onto the garment by the nozzle.

[0018] S5. Start the first servo motor to rotate in the opposite direction, so that the upper pressure plate and the middle pressure plate move away from the lower pressure plate. Start the second servo motor to rotate in the opposite direction, so that the two wrinkle removal plates push the garment that has been pressed and removed from the middle pressure plate.

[0019] The beneficial effects of this invention are as follows:

[0020] 1. By setting up the first support arm, the second support arm, and the third support arm, the upper moving plate drives the middle moving plate to move equidistantly closer to the lower fixed plate. This ensures that the pressure and pressing time of the upper and lower pressure plates are consistent when they approach the middle pressure plate, maintaining a uniform pressing effect on both sides of the garment. At the same time as pressing, the air pump is activated. The air pump sprays the water vapor in the water tank through the spring tube and the conduit onto the garment through the nozzle, which can soften the garment and improve the pressing effect.

[0021] 2. By setting up a wrinkle removal device, two wrinkle removal plates can be used to smooth out wrinkles on the garment before pressing. The inclined blocks at both ends can easily put the garment on the middle pressing plate without affecting the pressing work. After pressing, the two wrinkle removal plates can push the pressed garment off the middle pressing plate during the return stroke, avoiding manual contact with the high-temperature pressed garment and preventing safety accidents.

[0022] 3. Add water to the water tank and turn on the heater inside. Place the garment to be pressed onto the middle pressure plate. Start the second servo motor via the control box. The second servo motor drives the gear ring to rotate, causing the sliding block to move within the sliding groove, so that the two wrinkle-removing plates are in contact with the upper and lower ends of the middle pressure plate. The sliding block pushes the two wrinkle-removing plates to move, removing wrinkles from both sides of the garment. Start the first servo motor via the control box. The first servo motor drives the upper moving plate to move downward. The upper moving plate, the middle moving plate, and the lower fixed plate are hinged with a first support arm, a second support arm, and a third support arm. The support arm moves the middle moving plate downwards, ensuring that the distance between the upper moving plate and the middle moving plate, and between the middle moving plate and the lower fixed plate, remains consistent until the upper pressure plate, middle pressure plate, and lower pressure plate are in contact with each other, completing the pressing work. As the upper and middle pressure plates approach the lower pressure plate, the air pump is activated, causing water vapor in the water tank to pass through the spring tube and conduit and be sprayed onto the garment through the nozzle. The first servo motor is activated to rotate in the reverse direction, moving the upper and middle pressure plates away from the lower pressure plate. The second servo motor is activated to rotate in the reverse direction, causing the two wrinkle-removing plates to push the pressed garment away from the middle pressure plate.

[0023] In summary, when using this equipment, both sides of the garment can be smoothed in advance during the interlining process to remove wrinkles, and interlining can be performed on both sides simultaneously. This increases garment production speed, reduces manual labor intensity, improves interlining effect, increases the yield rate of finished garments, and reduces production costs. Attached Figure Description

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

[0025] Figure 2 This is a cross-sectional view of the control box of the present invention;

[0026] Figure 3 This is a top view of the present invention;

[0027] Figure 4 This is a cross-sectional view of the sliding block of the present invention;

[0028] Figure 5 This is a cross-sectional view of the gear ring of the present invention.

[0029] The following are the labeling elements in the diagram: 1. Base; 2. Control box; 3. Threaded rod; 4. Drive rod; 5. Support column; 6. First servo motor; 7. Second servo motor; 8. Upper moving plate; 9. Middle moving plate; 10. Lower fixed plate; 11. Upper pressure plate; 12. Middle pressure plate; 13. Lower pressure plate; 14. First support arm; 15. Second support arm; 16. Third support arm; 17. Sliding groove; 18. Sliding block; 19. Gear ring; 20. Rack; 21. Slide rod; 22. Connecting rod; 23. Wrinkle removal plate; 24. Inclined block; 25. Return spring; 26. Limiting block; 27. Limiting groove; 28. Water tank; 29. ​​Air pump; 30. Bourdon tube; 31. Conduit; 32. Nozzle. Detailed Implementation

[0030] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0031] Example 1:

[0032] Reference Figure 1-2 A double-sided garment pressing machine for garment production includes a control box 2, a threaded rod 3, a drive rod 4, and a support column 5. A base 1 is fixedly installed at the bottom of the control box 2, and the support column 5 is fixedly installed at the top of the control box 2. The drive rod 4 and the support column 5 are rotatably installed at the top of the control box 2. A first servo motor 6 and a second servo motor 7 are fixedly installed inside the control box 2. The bottom end of the threaded rod 3 extends into the control box 2 and is fixedly connected to the output shaft of the first servo motor 6. The bottom end of the drive rod 4 extends into the control box 2 and is fixedly connected to the output shaft of the second servo motor 7.

[0033] The support column 5 is fixedly fitted with an upper movable plate 8, and the support column 5 is slidably fitted with a middle movable plate 9 and a lower fixed plate 10. The upper movable plate 8, the middle movable plate 9, and the lower fixed plate 10 are arranged sequentially from top to bottom. The threaded rod 3 passes through the upper movable plate 8, the middle movable plate 9, and the lower fixed plate 10, and is threadedly connected to the upper movable plate 8. The drive rod 4 slides through the upper movable plate 8, the middle movable plate 9, and the lower fixed plate 10, and is rotatably connected to the upper movable plate 8, the middle movable plate 9, and the lower fixed plate 10. An upper pressure plate 11, a middle pressure plate 12, and a lower pressure plate 13 are respectively fixedly installed on the same side of the upper movable plate 8, the middle movable plate 9, and the lower fixed plate 10. Heating rods are provided inside the upper pressure plate 11, the middle pressure plate 12, and the lower pressure plate 13.

[0034] A first support arm 14 is rotatably mounted on the side wall of the upper movable plate 8, a second support arm 15 is rotatably mounted on the side wall of the middle movable plate 9, and a third support arm 16 is rotatably mounted on the side wall of the lower fixed plate 10. The two ends of the second support arm 15 are rotatably connected to the ends of the first support arm 14 and the third support arm 16, respectively. The connection points between the upper movable plate 8 and the first support arm 14, the middle movable plate 9 and the second support arm 15, and the lower fixed plate 10 and the third support arm 16 are located on the same vertical line. The length of the first support arm 14 is half the length of the second support arm 15, and the length of the first support arm 14 is equal to the length of the third support arm 16.

[0035] A water tank 28 is provided at the top of the base 1. The water tank 28 is located on the side of the control box 2 near the threaded rod 3. A heater is provided inside the water tank 28. An air pump 29 is provided at the top of the water tank 28. The air pump 29 is connected to a spring tube 30. The upper and lower ends of the middle moving plate 9 are equipped with conduits 31. A nozzle 32 is installed at the end of the conduit 31 near the middle pressure plate 12. The ends of the two conduits 31 are connected to the ends of the spring tube 30.

[0036] The garment requiring lining is placed on the middle pressure plate 12. The first servo motor 6 of the control box 2 is started. The first servo motor 6 drives the threaded rod 3 to rotate. The threaded rod 3 drives the upper moving plate 8 to move downward along the drive rod 4 and the support column 5. The upper moving plate 8 drives the first support arm 14 to rotate. The first support arm 14 drives the second support arm 15 to rotate. The second support arm 15 drives the third support arm 16, which drives the middle moving plate 9 to move downward. This makes the upper moving plate 8 and the middle moving plate 9, and the middle moving plate 9 and the lower fixed plate 10 move at equal distances until the upper pressure plate 11, the middle pressure plate 12, and the lower pressure plate 13 are in contact with each other to complete the lining work. At the same time as pressing, the air pump 29 is started. The air pump 29 sprays the water vapor in the water tank 28 through the spring tube 30 and the conduit 31, and sprays it onto the garment through the nozzle 21 to soften the garment and improve the lining effect.

[0037] Example 2:

[0038] Reference Figure 3-5 The upper pressure plate 11 and the lower pressure plate 13 are provided with wrinkle removal devices that are symmetrically distributed. The wrinkle removal devices include a sliding groove 17, a sliding block 18, a gear ring 19, a rack 20, a slide rod 21, a connecting rod 22, a wrinkle removal plate 23, an inclined block 24, and a return spring 25. The top of the upper pressure plate 11 is provided with a sliding groove 17, and the sliding block 18 is slidably installed in the sliding groove 17. The top of the upper moving plate 8 is rotatably installed with a gear ring 19. The drive rod 4 passes through the gear ring 19. The side wall of the drive rod 4 is provided with a symmetrically distributed limiting groove 27. The inner circumference of the gear ring 19 is fixedly installed with a symmetrically distributed limiting block 26. The limiting block 26 matches the limiting groove 27 and is slidably connected. The sliding block 18 is fixedly installed with a rack 20 near the side wall of the upper moving plate 8. The rack 20 meshes with the gear ring 19.

[0039] A sliding rod 21 is slidably installed on the sliding block 18 in the vertical direction. The sliding rod 21 passes through the sliding block 18. Connecting rods 22 are fixedly installed at both ends of the sliding rod 21. A wrinkle-removing plate 23 is fixedly installed between the bottom ends of the two connecting rods 22. The wrinkle-removing plate 23 is located below the upper pressure plate 11. The side wall of the sliding rod 21 away from the upper pressure plate 11 is connected to the sliding block 18 by uniformly distributed return springs 25. Both ends of the top of the upper pressure plate 11 are fixedly installed with symmetrically distributed inclined blocks 24. The cross-section of the inclined block 24 is a right-angled triangular structure. The inclined surface of the inclined block 24 is slidably connected to the sliding rod 21.

[0040] Before pressing, the second servo motor 7 in the control box 2 is started. The second servo motor 7 drives the drive rod 4 to rotate. The drive rod 4 drives the gear ring 19 to rotate through the limit block 26 and the limit groove 27. The gear ring 19 drives the rack 20 to move. The rack 20 drives the sliding block 18 to move in the sliding groove 17 towards the drive rod 4. The sliding block 18 moves away from the right inclined block 24. The return spring 25 pushes the wrinkle removal plate 23, so that the two wrinkle removal plates 23 are in contact with the upper and lower ends of the middle pressure plate 12. When the sliding block 18 drives the two wrinkle removal plates 23 to move, wrinkles can be removed from both sides of the garment. When the sliding block 18 moves to the two inclined blocks 24 on the left, it drives the two wrinkle removal plates 23 away from the garment to be pressed, without affecting the pressing of the garment. After pressing is completed, the second servo motor 7 is started to rotate in the opposite direction, so that the two wrinkle removal plates 23 push the pressed garment away from the middle pressure plate 12, avoiding manual contact with the high-temperature pressed garment and avoiding safety accidents.

[0041] A method for pressing interlining in double-sided garments during garment production includes the following steps:

[0042] S1. Add water to the water tank 28 and start the heater in the water tank 28. Put the garment that needs to be pressed onto the middle pressure plate 12.

[0043] S2. Start the second servo motor 7 through the control box 2. The second servo motor 7 drives the gear ring 19 to rotate, which drives the sliding block 18 to move in the sliding groove 17, so that the two wrinkle removal plates 23 are in contact with the upper and lower ends of the middle pressure plate 12. The sliding block 18 pushes the two wrinkle removal plates 23 to move, and removes wrinkles from both sides of the garment.

[0044] S3. Start the first servo motor 6 through the control box 2. The first servo motor 6 drives the upper moving plate 8 to move downward. The upper moving plate 8, the middle moving plate 9 and the lower fixed plate 10 are hinged with the first support arm 14, the second support arm 15 and the third support arm 16, which drives the middle moving plate 9 to move downward, so that the distance between the upper moving plate 8 and the middle moving plate 9 and the middle moving plate 9 and the lower fixed plate 10 remains consistent until the upper pressure plate 11, the middle pressure plate 12 and the lower pressure plate 13 are in contact with each other to complete the pressing work.

[0045] S4. When the upper pressure plate 11 and the middle pressure plate 12 are close to the lower pressure plate 13, start the air pump 29 so that the water vapor in the water tank 28 passes through the spring tube 30 and the guide tube 31 and is sprayed onto the garment by the nozzle 21.

[0046] S5. Start the first servo motor 6 to rotate in the opposite direction, so that the upper pressure plate 11 and the middle pressure plate 12 move away from the lower pressure plate 13. Start the second servo motor 7 to rotate in the opposite direction, so that the two wrinkle removal plates 23 push the garment that has been pressed and removed from the middle pressure plate 12.

[0047] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A double-sided garment pressing machine for garment production, comprising a control box (2), a threaded rod (3), a drive rod (4), and a support column (5), characterized in that, The control box (2) has a base (1) fixedly installed at the bottom, a support column (5) fixedly installed at the top of the control box (2), a drive rod (4) and a support column (5) rotatably installed at the top of the control box (2), a first servo motor (6) and a second servo motor (7) fixedly installed inside the control box (2), the bottom end of the threaded rod (3) extends into the control box (2) and is fixedly connected to the output shaft of the first servo motor (6), and the bottom end of the drive rod (4) extends into the control box (2) and is fixedly connected to the output shaft of the second servo motor (7); The support column (5) is fixedly fitted with an upper movable plate (8), and the support column (5) is slidably fitted with a middle movable plate (9) and a lower fixed plate (10). The upper movable plate (8), the middle movable plate (9), and the lower fixed plate (10) are arranged sequentially from top to bottom. The threaded rod (3) passes through the upper movable plate (8), the middle movable plate (9), and the lower fixed plate (10) and is threadedly connected to the upper movable plate (8). The drive rod (4) slidably passes through the upper movable plate (8), the middle movable plate (9), and the lower fixed plate (10) and is rotatably connected to the upper movable plate (8), the middle movable plate (9), and the lower fixed plate (10). The upper movable plate (8), the middle movable plate (9), and the lower fixed plate (10) are rotatably connected. An upper pressure plate (11), a middle pressure plate (12), and a lower pressure plate (13) are fixedly installed on the same side. The upper pressure plate (11), the middle pressure plate (12), and the lower pressure plate (13) are all equipped with heating rods. A first support arm (14) is rotatably installed on the side wall of the upper moving plate (8). A second support arm (15) is rotatably installed on the side wall of the middle moving plate (9). A third support arm (16) is rotatably installed on the side wall of the lower fixed plate (10). The two ends of the second support arm (15) are rotatably connected to the ends of the first support arm (14) and the third support arm (16), respectively. The upper pressure plate (11) and the lower pressure plate (13) are provided with wrinkle removal devices that are symmetrically distributed. The wrinkle removal device includes a sliding groove (17), a sliding block (18), a gear ring (19), a rack (20), a slide rod (21), a connecting rod (22), a wrinkle removal plate (23), an inclined block (24), and a return spring (25). The top of the upper pressure plate (11) is provided with a sliding groove (17), and the sliding block (18) is slidably installed in the sliding groove (17). The top of the upper moving plate (8) is rotatably installed with a gear ring (19), and the drive rod (4) passes through the gear ring (19). The sliding block (18) is fixedly installed with a rack (20) near the side wall of the upper moving plate (8). Engaging with the gear ring (19), the sliding block (18) is slidably mounted with a sliding rod (21) in the vertical direction. The sliding rod (21) passes through the sliding block (18). Connecting rods (22) are fixedly mounted at both ends of the sliding rod (21). A wrinkle-removing plate (23) is fixedly mounted between the bottom ends of the two connecting rods (22). The wrinkle-removing plate (23) is located below the upper pressure plate (11). The side wall of the sliding rod (21) away from the upper pressure plate (11) is connected to the sliding block (18) with a uniformly distributed return spring (25). The top two ends of the upper pressure plate (11) are fixedly mounted with symmetrically distributed inclined blocks (24). The cross-section of the inclined block (24) is a right-angled triangle structure, and the inclined surface of the inclined block (24) is slidably connected to the slide rod (21); The drive rod (4) has symmetrically distributed limiting grooves (27) on its side wall, and the gear ring (19) has symmetrically distributed limiting blocks (26) fixedly installed on its inner circumference. The limiting blocks (26) match the limiting grooves (27) and are slidably connected.

2. A double-sided garment pressing machine for garment production according to claim 1, characterized in that, The connection points of the upper movable plate (8) and the first support arm (14), the connection points of the middle movable plate (9) and the second support arm (15), and the connection points of the lower fixed plate (10) and the third support arm (16) are located on the same vertical line. The length of the first support arm (14) is half the length of the second support arm (15), and the length of the first support arm (14) is equal to the length of the third support arm (16).

3. A double-sided garment pressing machine for garment production according to claim 1, characterized in that, A water tank (28) is provided at the top of the base (1). The water tank (28) is located on the side of the control box (2) near the threaded rod (3). A heater is provided inside the water tank (28). An air pump (29) is provided at the top of the water tank (28). The air pump (29) is connected to a spring tube (30). The upper and lower ends of the middle moving plate (9) are equipped with conduits (31). A nozzle (32) is installed at one end of the conduit (31) near the middle pressure plate (12). The ends of the two conduits (31) are connected to the ends of the spring tube (30).

4. A method of using a double-sided garment pressing machine in garment production as described in claim 1, characterized in that, Includes the following steps: S1. Add water to the water tank (28) and start the heater in the water tank (28). Put the garment that needs to be pressed onto the middle pressure plate (12). S2. Start the second servo motor (7) through the control box (2). The second servo motor (7) drives the gear ring (19) to rotate, which drives the sliding block (18) to move in the sliding groove (17), so that the two wrinkle removal plates (23) fit against the upper and lower ends of the middle pressure plate (12). The sliding block (18) pushes the two wrinkle removal plates (23) to move, and removes wrinkles from both sides of the garment. S3. Start the first servo motor (6) through the control box (2). The first servo motor (6) drives the upper moving plate (8) to move downward. The upper moving plate (8), the middle moving plate (9) and the lower fixed plate (10) are hinged with the first support arm (14), the second support arm (15) and the third support arm (16), which drives the middle moving plate (9) to move downward, so that the distance between the upper moving plate (8) and the middle moving plate (9) and the middle moving plate (9) and the lower fixed plate (10) remains consistent until the upper pressure plate (11), the middle pressure plate (12) and the lower pressure plate (13) are in contact with each other to complete the pressing work. S4. When the upper pressure plate (11) and the middle pressure plate (12) are close to the lower pressure plate (13), start the air pump (29) so that the water vapor in the water tank (28) passes through the spring tube (30) and the guide tube (31) and is sprayed onto the clothing by the nozzle (32). S5. Start the first servo motor (6) to rotate in the opposite direction, so that the upper pressure plate (11) and the middle pressure plate (12) move away from the lower pressure plate (13). Start the second servo motor (7) to rotate in the opposite direction, so that the two wrinkle removal plates (23) push the garment that has been pressed and removed from the middle pressure plate (12).