Plane hot press for producing regenerated fiber jacket

By combining the design of the circulating sliding garment plate with the cooling components of the hot pressing assembly, the problem of low production efficiency of the hot press machine is solved, achieving efficient fabric hot pressing processing and safe production.

CN224119286UActive Publication Date: 2026-04-14CHANGZHOU LINKE GARMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU LINKE GARMENT CO LTD
Filing Date
2025-03-31
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing hot press machines require the fabric to remain stationary after hot pressing to ensure quality, resulting in low production efficiency.

Method used

The garment board adopts a circulating sliding design, combined with hot pressing components and cooling components. The conveyor drives the garment board to circulate and slide for hot pressing, and the cooling components cool down the garment board that is being hot pressed. At the same time, the worker places the fabric on another garment board that has been cooled down, so as to achieve continuous production.

Benefits of technology

It improves the efficiency of hot pressing production of fabrics, reduces waiting time, increases processing speed, and reduces the risk of workers being burned.

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Abstract

The utility model relates to the field of garment processing equipment, in particular to a plane hot press for regenerated fiber jacket production, which comprises a rack, a hot-pressing platform, a hot-pressing assembly, a conveying part and a cooling part, the hot-pressing platform is arranged on the rack, and a plurality of clothes placing plates are arranged on the hot-pressing platform along the length direction of the rack in a circulating and sliding manner; the hot-pressing assembly is used for hot-pressing the fabric on the clothes placing plate, the conveying part is used for driving the clothes placing plate to circularly slide on the hot-pressing platform, and the cooling part is used for cooling the hot-pressed clothes placing plate. The fabric processing device has the effect of improving the fabric processing efficiency.
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Description

Technical Field

[0001] This application relates to the field of garment processing equipment, and in particular to a flat hot press for producing recycled fiber jackets. Background Technology

[0002] Hot presses can transfer various heat transfer designs onto fabrics such as cotton, linen, and chemical fibers. They can also perform heat treatment processes such as screen printing, plastisol, and foaming. Furthermore, they can bake color labels, portrait photos, and landscape patterns onto ceramic plates and metal plates. In current garment manufacturing processes, hot presses are often used for printing, pressing, and bonding garment fabrics.

[0003] Chinese Patent No. CN219903411U discloses a planar hot-pressing mechanism for ski suit production, including a base, a hot-pressing mechanism on the top of the base, an adjustment component on the top of the base, a handle component on one side of the hot-pressing mechanism, a moving component on the bottom of the base, and a fixing component on one side of the moving component. By setting up the hot-pressing mechanism, the planar hot-pressing operation of the ski suit can be manually adjusted during use.

[0004] In the process of using the above technology, when the hot press is used to heat press the fabric, in order to ensure the quality of the heat pressing, the flat hot press needs to remain stationary for a period of time after pressing down. At this time, the staff can only wait, which greatly affects the production efficiency of the hot pressing of the fabric and has shortcomings. Utility Model Content

[0005] In order to improve the efficiency of hot pressing production of fabrics, this application provides a flat hot press for producing recycled fiber jackets.

[0006] The flat hot press for producing recycled fiber jackets provided in this application adopts the following technical solution:

[0007] A planar hot press for producing recycled fiber jackets includes a frame, a hot pressing platform, a hot pressing assembly, a conveying component, and a cooling component. The hot pressing platform is mounted on the frame, and a plurality of garment placement boards are cyclically slidably arranged on the hot pressing platform along the length of the frame. The hot pressing assembly is used to hot press the fabric on the garment placement boards. The conveying component is used to drive the garment placement boards to cyclically slide on the hot pressing platform. The cooling component is used to cool the garment placement boards after hot pressing.

[0008] By adopting the above technical solution, the worker places the fabric on the garment placement board, and then the conveyor drives several garment placement boards to slide in a cycle on the hot pressing platform. During the cycle of the garment placement boards, the hot pressing component will hot press the fabric placed on the garment placement board. During the hot pressing process, the cooling component will cool down the garment placement board in front of the one that is currently being hot pressed. At the same time, the worker will place the fabric on another garment placement board that has been cooled down. This cycle is repeated until the fabric is hot pressed, thereby improving the processing efficiency of the fabric.

[0009] Optionally, the conveying component includes drive shafts rotatably mounted on the frame and located at both ends of the hot press platform along its length. The frame is equipped with a drive motor electrically connected to the control system. One of the drive shafts is coaxially mounted on the output shaft of the drive motor. Both drive shafts are equipped with sprockets. A chain is wound between the sprockets on the two drive shafts. A connecting plate is provided between the garment placement plate and the chain link. The chain is sleeved on the outside of the hot press platform.

[0010] By adopting the above technical solution, the control system starts the drive motor, the output shaft of the drive motor drives one of the transmission shafts to rotate, the transmission shaft drives the chain to rotate through the sprocket, and the chain drives the garment shelf to move cyclically through the connecting plate.

[0011] Optionally, multiple sets of sprockets and chains are provided at intervals along the axial direction of the drive shaft.

[0012] By adopting the above technical solution, it is beneficial for the clothes shelf to remain stable during the sliding process.

[0013] Optionally, both ends of the hot pressing platform in the length direction are provided with clearance slopes, and the upper surface of the hot pressing platform is provided with clearance grooves for the chain to slide. The garment plate located above the hot pressing platform slides in cooperation with the upper surface of the hot pressing platform.

[0014] By adopting the above technical solution, the garment placement board can be supported by the upper surface of the hot pressing platform, reducing the possibility of the garment placement board shaking during transportation and improving the quality of hot pressing of the fabric on the garment placement board.

[0015] Optionally, a plurality of balls are rolled on the upper surface of the hot press platform, and the plurality of balls are distributed along the length direction of the hot press platform. The balls are used to contact the lower surface of the garment board.

[0016] By adopting the above technical solution, the friction between the garment tray and the hot pressing platform is reduced, and the degree of wear on the garment tray is reduced, which helps to improve the service life of the garment tray.

[0017] Optionally, the hot pressing assembly includes a hot pressing frame slidably mounted on the frame, a heating plate electrically connected to the control system being vertically slidably mounted on the hot pressing frame, a lifting cylinder electrically connected to the control system being mounted on the hot pressing frame, the heating plate being mounted on the piston rod of the lifting cylinder, a guide post being mounted on the heating plate, the axis of the guide post being parallel to the axis of the piston rod of the lifting cylinder, the guide post being slidably engaged with the hot pressing frame, and a sliding member being mounted on the frame to drive the hot pressing frame to slide.

[0018] By adopting the above technical solution, when the garment board slides to the bottom of the heat press frame, the sliding component starts the heat press frame to slide, so that the heating plate on the heat press frame can be aligned with the fabric on the garment board. Then, the control system starts the lifting cylinder, and the piston rod of the lifting cylinder pushes the heating plate to press onto the fabric. At the same time, the control system starts the heating plate, which generates high temperature and heats fabrics of different thicknesses.

[0019] Optionally, the sliding component includes a vision lens disposed on the hot press frame, the vision lens being electrically connected to the control system, a bottom frame slidably disposed on the frame along its length, a longitudinal cylinder electrically connected to the control system disposed on the frame, the bottom frame being disposed on the piston rod of the longitudinal cylinder, an intermediate frame slidably disposed on the bottom frame, the hot press frame being disposed on the intermediate frame, a transverse cylinder electrically connected to the control system disposed on the bottom frame, the intermediate frame being disposed on the piston rod of the transverse cylinder, and the piston rod axis of the longitudinal cylinder being perpendicular to the piston rod axis of the transverse cylinder.

[0020] By adopting the above technical solution, after the worker lays the fabric flat on the garment board, as the garment board slides under the heat press frame, the vision lens will feed back the condition of the fabric to the control system. The control system will activate the longitudinal cylinder and the transverse cylinder. By extending or retracting the piston rod of the longitudinal cylinder and the piston rod of the transverse cylinder, the position of the heat press frame will be continuously changed, so that the heating plate can be aligned with the fabric on the garment board.

[0021] Optionally, the hot press platform is hollow inside and open at the bottom. The cooling component includes multiple fans disposed between the inner and outer walls of the hot press platform. The air outlets of the fans face the garment plate. The multiple fans are distributed on both sides of the length direction of the hot press platform. The fans are electrically connected to the control system.

[0022] By adopting the above technical solution, when the garment placement board moves to the bottom of the hot press platform, the control system starts the fan. The fan makes the airflow inside the hot press platform flow continuously, and the flowing airflow makes the garment placement board cool down continuously, thereby reducing the possibility of workers being burned.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. Workers place the fabric on the garment placement board, and then the conveyor drives several garment placement boards to slide in a cycle on the hot pressing platform. During the cycle of the garment placement boards, the hot pressing component will hot press the fabric placed on the garment placement board. During the hot pressing process, the cooling component will cool down the garment placement board in front of the one that is currently being hot pressed. At the same time, the worker will place the fabric on another garment placement board that has been cooled down. This cycle is repeated until the fabric is hot pressed, thereby improving the processing efficiency of the fabric.

[0025] 2. When the garment board slides to the bottom of the heat press frame, the sliding mechanism activates the heat press frame to slide, so that the heating plate on the heat press frame can be aligned with the fabric on the garment board. Then, the control system activates the lifting cylinder. The piston rod of the lifting cylinder pushes the heating plate to press onto the fabric. At the same time, the control system activates the heating plate, which generates high temperature and heats fabrics of different thicknesses.

[0026] 3. Once the garment placement board is moved below the hot press platform, the control system starts the fan. The fan causes the airflow inside the hot press platform to circulate continuously, which in turn cools the garment placement board, thereby reducing the possibility of workers being burned. Attached Figure Description

[0027] Figure 1 This is a structural schematic diagram of an embodiment of this application.

[0028] Figure 2 This is a structural schematic diagram in the embodiments of this application used to illustrate the positional relationship between the bottom frame, the middle frame, and the hot press frame.

[0029] Figure 3 This is a cross-sectional view used in the embodiments of this application to illustrate the positional relationship between the connecting plate, the hot pressing platform and the ball bearings.

[0030] Explanation of reference numerals in the attached drawings: 1. Frame; 2. Hot pressing platform; 3. Hot pressing assembly; 31. Hot pressing frame; 32. Heating plate; 33. Lifting cylinder; 34. Guide column; 35. Sliding component; 351. Vision lens; 352. Base frame; 353. Longitudinal cylinder; 354. Middle frame; 355. Transverse cylinder; 4. Conveying component; 41. Drive shaft; 42. Drive motor; 43. Sprocket; 44. Chain; 45. Connecting plate; 5. Cooling component; 51. Fan; 6. Garment placement board; 7. Avoidance slope; 8. Avoidance groove; 9. Ball bearing; 10. Fabric box. Detailed Implementation

[0031] The following is in conjunction with the appendix Figures 1-3 This application will be described in further detail.

[0032] This application discloses a flat hot press for producing recycled fiber jackets.

[0033] Reference Figure 1 A flat hot press for producing recycled fiber jackets includes a frame 1, a hot press platform 2, a hot press assembly 3, a conveyor 4, and a cooling assembly 5. Fabric boxes 10 are placed at both ends of the frame 1 along its length. The hot press platform 2 is hollow inside and open at the bottom. The open end of the bottom of the hot press platform 2 is welded to the frame 1.

[0034] Reference Figure 1 and Figure 2 Several garment placement boards 6 are arranged on the hot pressing platform 2 and circulate along the length of the frame 1. The garment placement boards 6 are distributed on the top, bottom and both sides of the length of the hot pressing platform 2. The hot pressing assembly 3 is used to hot press the fabric on the garment placement boards 6. The conveying component 4 is used to drive the garment placement boards 6 to circulate on the hot pressing platform 2. The cooling component 5 is used to cool the garment placement boards 6 after hot pressing.

[0035] Reference Figure 1 and Figure 2 The cooling component 5 includes multiple fans 51 bolted between the vertical inner and outer walls of the hot press platform 2. The fans 51 are electrically connected to the control system. The air outlets of the fans 51 face the clothing plate 6. The multiple fans 51 are distributed on both sides of the length direction of the hot press platform 2.

[0036] Reference Figure 1 and Figure 2 The conveying component 4 includes a drive shaft 41 rotatably connected to the frame 1 and located at both ends of the length of the hot pressing platform 2. A drive motor 42 electrically connected to the control system is bolted to the frame 1. The drive motor 42 can be a geared motor in the prior art. One of the drive shafts 41 is coaxially bolted to the output shaft of the drive motor 42. Both drive shafts 41 are welded with sprockets 43. Two sprockets 43 are arranged at intervals along the axial direction of the drive shafts 41.

[0037] Reference Figure 1 , Figure 2 and Figure 3 The sprockets 43 on the two drive shafts 41 correspond one to one, and a chain 44 is wound between the two corresponding sprockets 43 on the two drive shafts 41. A connecting plate 45 is welded between the garment plate 6 and a single link of the chain 44. The vertical line between the connecting plates 45 on the two chains 44 corresponding to the same garment plate 6 is parallel to the axis of the drive shaft 41. The chain 44 is sleeved on the outside of the hot press platform 2.

[0038] Reference Figure 1 , Figure 2 and Figure 3Both ends of the hot press platform 2 in the length direction are provided with clearance slopes 7. The upper surface of the hot press platform 2 is provided with clearance grooves 8 for the chain 44 to slide. Multiple balls 9 are rolled on the upper surface of the hot press platform 2. The multiple balls 9 are evenly arranged along the length direction of the hot press platform 2. The balls 9 are used to contact the lower surface of the garment board 6.

[0039] The worker lays the fabric flat on the garment placement board 6, and then the control system starts the drive motor 42. The output shaft of the drive motor 42 drives one of the transmission shafts 41 to rotate. The transmission shaft 41 drives the chain 44 to rotate through the sprocket 43. The rotating chain 44 drives the garment placement board 6 to move cyclically between the two transmission shafts 41. When the garment placement board 6 slides above the hot pressing platform 2, the bottom of the hot pressing platform 2 contacts the ball bearing 9 and rolls in cooperation.

[0040] Reference Figure 1 and Figure 2 The hot pressing assembly 3 includes a hot pressing frame 31 that is slidably arranged on the frame 1. A heating plate 32 that is electrically connected to the control system is vertically slidably arranged on the hot pressing frame 31. The heating plate 32 contains a large number of heating wires (not shown in the figure). A lifting cylinder 33 that is electrically connected to the control system is bolted to the hot pressing frame 31.

[0041] Reference Figure 1 and Figure 2 The heating plate 32 is bolted to the piston rod of the lifting cylinder 33. Multiple guide posts 34 are welded on the heating plate 32. The axis of the guide posts 34 is parallel to the axis of the piston rod of the lifting cylinder 33. The guide posts 34 are slidably engaged with the hot press frame 31. A sliding component 35 for driving the hot press frame 31 to slide is arranged on the frame 1.

[0042] Reference Figure 1 and Figure 2 The sliding component 35 includes a vision lens 351 bolted to the hot press frame 31. The vision lens 351 is electrically connected to the control system. A bottom frame 352 is slidably arranged on the frame 1 along its length direction. A longitudinal cylinder 353, which is electrically connected to the control system, is bolted to the frame 1. The bottom frame 352 is bolted to the piston rod of the longitudinal cylinder 353.

[0043] Reference Figure 1 and Figure 2 A middle frame 354 is slidably arranged on the bottom frame 352. The hot press frame 31 is welded to the middle frame 354. A transverse cylinder 355 electrically connected to the control system is bolted to the bottom frame 352. The middle frame 354 is bolted to the piston rod of the transverse cylinder 355. The piston rod axis of the longitudinal cylinder 353 is perpendicular to the piston rod axis of the transverse cylinder 355.

[0044] When the garment board 6 slides the fabric to directly below the heat press frame 31, the vision lens 351 feeds back the placement of the fabric to the control system. The control system then activates the longitudinal cylinder 353 and the transverse cylinder 355. The piston rod of the longitudinal cylinder 353 extends and retracts to push the bottom frame 352 to slide, and the piston rod of the transverse cylinder 355 extends and retracts to push the middle frame 354 to slide.

[0045] The intermediate frame 354 drives the hot press frame 31 to move continuously, so that the heating plate 32 on the hot press frame 31 can be aligned with the fabric on the garment board 6. Then the control system starts the lifting cylinder 33 and the heating plate 32. The piston rod of the lifting cylinder 33 pushes the heating plate 32 down onto the fabric, and the high temperature generated on the heating plate 32 heats the fabric on the garment board 6.

[0046] When the heated garment board 6 moves to the fabric box 10, as the garment board 6 moves from above the hot pressing platform 2 to below it, the hot-pressed fabric will fall into the fabric box 10. At the same time, the control system starts the fan 51. The garment board 6 located below the hot pressing platform 2 is continuously cooled by the airflow blown out by the fan 51 during the movement.

[0047] When the garment placement board 6, which is located below the hot press platform 2, moves back above the hot press platform 2, the temperature of the garment placement board 6 has dropped to a suitable temperature. Then, the worker lays the fabric that has not been hot-pressed in the fabric box 10 on the garment placement board 6 again, and repeats the operation.

[0048] The implementation principle of a flat hot press machine for producing recycled fiber jackets according to an embodiment of this application is as follows: the worker lays the fabric flat on the garment plate 6, and then the control system starts the drive motor 42. The output shaft of the drive motor 42 drives one of the transmission shafts 41 to rotate. The transmission shaft 41 drives the chain 44 to rotate through the sprocket 43. The rotating chain 44 drives the garment plate 6 to move cyclically between the two transmission shafts 41. When the garment plate 6 slides above the hot press platform 2, the bottom of the hot press platform 2 contacts the ball bearings 9 and rolls in cooperation.

[0049] When the garment board 6 slides the fabric to directly below the heat press frame 31, the vision lens 351 feeds back the placement of the fabric to the control system. The control system then activates the longitudinal cylinder 353 and the transverse cylinder 355. The piston rod of the longitudinal cylinder 353 extends and retracts to push the bottom frame 352 to slide, and the piston rod of the transverse cylinder 355 extends and retracts to push the middle frame 354 to slide.

[0050] The intermediate frame 354 drives the hot press frame 31 to move continuously, so that the heating plate 32 on the hot press frame 31 can be aligned with the fabric on the garment board 6. Then the control system starts the lifting cylinder 33 and the heating plate 32. The piston rod of the lifting cylinder 33 pushes the heating plate 32 down onto the fabric, and the high temperature generated on the heating plate 32 heats the fabric on the garment board 6.

[0051] When the heated garment board 6 moves to the fabric box 10, as the garment board 6 moves from above the hot pressing platform 2 to below it, the hot-pressed fabric will fall into the fabric box 10. At the same time, the control system starts the fan 51. The garment board 6 located below the hot pressing platform 2 is continuously cooled by the airflow blown out by the fan 51 during the movement.

[0052] When the garment placement board 6, which is located below the hot press platform 2, moves back above the hot press platform 2, the temperature of the garment placement board 6 has dropped to a suitable temperature. Then, the worker lays the fabric that has not been hot-pressed in the fabric box 10 on the garment placement board 6 again, and repeats the operation.

[0053] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A flat hot press for producing recycled fiber jackets, characterized in that: The device includes a frame (1), a hot pressing platform (2), a hot pressing assembly (3), a conveyor (4), and a cooling component (5). The hot pressing platform (2) is mounted on the frame (1). Several garment placement boards (6) are cyclically slidably mounted on the hot pressing platform (2) along the length of the frame (1). The hot pressing assembly (3) is used to hot press the fabric on the garment placement boards (6). The conveyor (4) is used to drive the garment placement boards (6) to cyclically slide on the hot pressing platform (2). The cooling component (5) is used to cool the garment placement boards (6) after hot pressing.

2. The flat hot press for producing recycled fiber jackets according to claim 1, characterized in that: The conveying component (4) includes a drive shaft (41) rotatably mounted on the frame (1) and located at both ends of the hot press platform (2) along its length. The frame (1) is equipped with a drive motor (42) electrically connected to the control system. One of the drive shafts (41) is coaxially mounted on the output shaft of the drive motor (42). Both drive shafts (41) are equipped with sprockets (43). A chain (44) is wound between the sprockets (43) on the two drive shafts (41). A connecting plate (45) is provided between the garment plate (6) and the links of the chain (44). The chain (44) is sleeved on the outside of the hot press platform (2).

3. A flat hot press for producing recycled fiber jackets according to claim 2, characterized in that: Multiple sets of sprockets (43) and chains (44) are arranged at intervals along the axial direction of the drive shaft (41).

4. A flat hot press for producing recycled fiber jackets according to claim 2, characterized in that: Both ends of the hot pressing platform (2) in the length direction are provided with clearance slopes (7), and clearance grooves (8) for the chain (44) to slide are provided on the upper surface of the hot pressing platform (2). The garment plate (6) located above the hot pressing platform (2) slides in cooperation with the upper surface of the hot pressing platform (2).

5. A flatbed hot press for producing recycled fiber jackets according to claim 4, characterized in that: Multiple balls (9) are rolled on the upper surface of the hot press platform (2). The multiple balls (9) are distributed along the length direction of the hot press platform (2). The balls (9) are used to contact the lower surface of the garment board (6).

6. A flat hot press for producing recycled fiber jackets according to claim 2, characterized in that: The hot pressing assembly (3) includes a hot pressing frame (31) slidably disposed on the frame (1). A heating plate (32) electrically connected to the control system is vertically slidably disposed on the hot pressing frame (31). A lifting cylinder (33) electrically connected to the control system is disposed on the hot pressing frame (31). The heating plate (32) is disposed on the piston rod of the lifting cylinder (33). A guide column (34) is disposed on the heating plate (32). The axis of the guide column (34) is parallel to the axis of the piston rod of the lifting cylinder (33). The guide column (34) is slidably engaged with the hot pressing frame (31). A sliding member (35) for driving the hot pressing frame (31) to slide is disposed on the frame (1).

7. A flatbed hot press for producing recycled fiber jackets according to claim 6, characterized in that: The sliding member (35) includes a vision lens (351) disposed on the hot press frame (31), the vision lens (351) being electrically connected to the control system. A bottom frame (352) is slidably disposed on the frame (1) along its length direction. A longitudinal cylinder (353) electrically connected to the control system is disposed on the frame (1). The bottom frame (352) is disposed on the piston rod of the longitudinal cylinder (353). An intermediate frame (354) is slidably disposed on the bottom frame (352). The hot press frame (31) is disposed on the intermediate frame (354). A transverse cylinder (355) electrically connected to the control system is disposed on the bottom frame (352). The intermediate frame (354) is disposed on the piston rod of the transverse cylinder (355). The piston rod axis of the longitudinal cylinder (353) is perpendicular to the piston rod axis of the transverse cylinder (355).

8. A flat hot press for producing recycled fiber jackets according to claim 1, characterized in that: The hot press platform (2) is hollow inside and open at the bottom. The cooling component (5) includes a plurality of fans (51) disposed between the inner and outer walls of the hot press platform (2). The air outlets of the fans (51) face the garment plate (6). The plurality of fans (51) are distributed on both sides of the length direction of the hot press platform (2). The fans (51) are electrically connected to the control system.

Citation Information

Patent Citations

  • Plane hot-pressing mechanism for ski suit production

    CN219903411U