Seamless hot press for garment materials

By designing a seamless hot press for garment fabrics and using alternating cold and hot upper die components, the problem of low efficiency in seamless garment processing was solved, achieving efficient seamless processing and high-quality bonding effects.

CN223918721UActive Publication Date: 2026-02-17ZHEJIANG YISHUAI ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202520603048.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-02-17
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

In existing technologies, seamless garment manufacturing mainly relies on manual processing, which is inefficient.

Method used

A seamless hot press for garment fabrics has been designed, including a movable base, a frame, a cold upper die assembly, and a hot upper die assembly. Alternating cold and hot pressing is achieved through a linear displacement output assembly and a flipping assembly. Support and stability are provided by the mounting assembly to ensure stable operation of the equipment.

Benefits of technology

It achieves efficient and seamless processing of clothing fabrics, improves processing efficiency, ensures high-quality bonding effects, and avoids the inefficiency of manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a seamless hot press for garment materials, relates to the technical field of seamless hot presses, and aims to solve the technical problem that seamless processing of garments is completed by pure manual processing of workers, and the efficiency is low. According to the technical scheme, the device is characterized in that the device comprises a movable base and a rack, the rack is connected to the movable base through a mounting assembly, a lower die is arranged at the bottom of the rack, a linear displacement output assembly is arranged at the top of the rack, and a shaft seat connecting plate is arranged on the linear displacement output assembly; a plurality of bearing seat plates are fixed to the bottom of the shaft seat connecting plate through bolts, a cold and hot mold conversion seat plate is fixed to each of the bearing seat plates at the two ends through screws, a cold upper mold assembly and a hot upper mold assembly are arranged on the two cold and hot mold conversion seat plates, and a turnover shaft is further rotationally connected to each bearing seat plate; the two ends of the turnover shaft are each provided with a set of turnover assembly. The utility model aims to provide a seamless hot press for garment materials.
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Description

Technical Field

[0001] This utility model relates to a seamless hot press, and more specifically, to a seamless hot press for clothing fabrics. Background Technology

[0002] Seamless hot presses are widely used in various fields such as waterproof zipper bonding, seamless pockets in clothing, seamless shoe uppers, cuffs, logos, trademarks, computer embroidery, waterproof sleeping bags, mountaineering clothing, casual wear, raincoats, insoles, hat brims, waterproof decorative strips, elastic fabric lettering, elastic fabric bonding, embroidered badges, and automotive interior parts. These machines can bond instantly without damaging the fabric, ensuring high-quality bonding results.

[0003] In current technology, seamless garment processing is done entirely by hand by workers, which is relatively inefficient.

[0004] Therefore, a new technical solution is urgently needed to solve the above-mentioned technical problems. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a seamless hot press for clothing fabrics.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a seamless hot press for clothing fabrics, characterized in that: it includes a movable base and a frame, the frame is connected to the movable base through an installation component, a lower mold is provided at the bottom of the frame, a linear displacement output component is provided at the top of the frame, a shaft seat connecting plate is provided on the linear displacement output component, several bearing seat plates are bolted to the bottom of the shaft seat connecting plate, a cold and hot mold conversion seat plate is screwed to both ends of the bearing seat plate, a set of cold upper mold components and a set of hot upper mold components are provided on the two cold and hot mold conversion seat plates, a flipping shaft is rotatably connected to the bearing seat plate, and a set of flipping components for flipping the cold upper mold components and the hot upper mold components are provided at both ends of the flipping shaft.

[0007] By adopting the above technical solution: the movable base provides support for the mounting components, and the frame can be fixed by the mounting components and the movable base. The linear displacement output component moves the cold upper mold component or the hot upper mold component downward through the power source to process the clothes on the lower mold. Through the shaft seat connecting plate and the bearing seat plate, the linear displacement output component can establish a good connection with the cold upper mold component and the hot upper mold component. Through the cold and hot mold conversion seat plate, the rotating shaft and the flipping component, the cold upper mold component and the hot upper mold component can be alternated to perform cold pressing or hot pressing on the clothes on the lower mold as needed.

[0008] The present invention is further configured such that: the mounting assembly includes a base support tube and foot cups, the specific number of the base support tubes is two, the two base support tubes pass through the bottom of the frame, the specific number of the foot cups is four, the top of the four foot cups are respectively bolted to the two ends of the two base support tubes, and their bottoms are bolted to the upper surface of the movable base.

[0009] The present invention is further configured such that: the linear displacement output assembly includes an output cylinder, a cylinder base, and a guide rod; the output cylinder and the guide rod are disposed on the top of the frame; the piston rod of the output cylinder passes through the frame; one end of the cylinder base is bolted to the piston rod of the output cylinder, and the other end is bolted to the upper surface of the shaft seat connecting plate; the bottom of the guide rod passes through the frame and is bolted to the upper surface of the shaft seat connecting plate.

[0010] The present invention is further configured such that: the cold upper mold assembly includes a cold mold connecting plate, a cold mold connecting screw, a cold mold cover and a cold upper mold, the cold mold connecting plate is bolted to one side of two cold and hot mold conversion base plates, one end of the cold mold connecting screw is connected to the cold mold connecting plate and the other end is connected to the cold mold cover, and the cold upper mold is disposed at the bottom of the cold mold cover.

[0011] The present invention is further configured such that: the hot upper mold assembly includes a hot mold connecting plate, a hot mold connecting screw, a hot mold cover and a hot upper mold, the hot mold connecting plate is bolted to one side of two cold and hot mold conversion base plates, one end of the hot mold connecting screw is connected to the hot mold connecting plate and the other end is connected to the hot mold cover, and the hot upper mold is disposed at the bottom of the hot mold cover.

[0012] The present invention is further configured such that: the flipping assembly includes a flipping cylinder, a cylinder bracket, a cylinder connector, a flipping arm, and a flipping pressure plate; the flipping cylinder is mounted on the cylinder bracket, and its piston rod extends out of the cylinder bracket; the cylinder bracket is an L-shaped bracket, one end of which is bolted to a shaft seat connecting plate; the cylinder connector is mounted on the piston rod of the flipping cylinder; one end of the flipping arm is rotatably connected to the cylinder connector, and the other end is rotatably connected to the flipping shaft; the flipping pressure plate is bolted to the side of the flipping arm away from the flipping shaft.

[0013] The present invention has the following advantages: 1. The foot support tube and foot cup in the mounting assembly establish a connection between the frame and the mobile base, and provide corresponding support.

[0014] 2. The output cylinder provides the power source, which can drive the cold or hot upper mold to move down, thereby realizing the cold or hot pressing of the fabric on the lower mold.

[0015] 3. The tilting cylinder allows for alternation between the cold upper mold and the hot upper mold, enabling cold or hot pressing as needed. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of this embodiment;

[0017] Figure 2 This is a three-dimensional structural diagram of the linear displacement output component, cold upper mold component, hot upper mold component, and flipping component in this embodiment;

[0018] Figure 3 This is a three-dimensional structural diagram of the linear displacement output component, cold upper mold component, hot upper mold component, and flipping component from another perspective in this embodiment.

[0019] Figure 4 This is a three-dimensional structural diagram of the flipping component in this embodiment.

[0020] Figure Descriptions: 1. Movable base; 2. Frame; 3. Lower mold; 4. Shaft seat connecting plate; 5. Bearing seat plate; 6. Cold and hot mold conversion seat plate; 7. Tilting shaft; 8. Foot support tube; 9. Foot cup; 10. Output cylinder; 11. Cylinder base; 12. Guide rod; 13. Cold mold connecting plate; 14. Cold mold connecting screw; 15. Cold mold cover; 16. Cold upper mold; 17. Hot mold connecting plate; 18. Hot mold connecting screw; 19. Hot mold cover; 20. Hot upper mold; 21. Tilting cylinder; 22. Cylinder bracket; 23. Cylinder connector; 24. Tilting arm; 25. Tilting pressure plate. Detailed Implementation

[0021] The present invention will be further described in detail below with reference to the accompanying drawings.

[0022] Identical parts are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "bottom surface," "top surface," "inner," and "outer" refer to directions toward or away from the geometric center of a specific part, respectively.

[0023] like Figures 1 to 4 As shown, a seamless hot press for garment fabric includes a movable base 1 and a frame 2. The frame 2 is connected to the movable base 1 via an installation component. A lower mold 3 is provided at the bottom of the frame 2, and a linear displacement output component is provided at the top of the frame 2. A shaft seat connecting plate 4 is provided on the linear displacement output component. Several bearing seat plates 5 are bolted to the bottom of the shaft seat connecting plate 4. A cold and hot mold conversion seat plate 6 is screwed to both ends of the bearing seat plate 5. A set of cold upper mold components and a set of hot upper mold components are provided on the two cold and hot mold conversion seat plates 6. A flipping shaft 7 is also rotatably connected to the bearing seat plate 5. A set of flipping components for flipping the cold upper mold components and the hot upper mold components is provided at both ends of the flipping shaft 7.

[0024] The movable base 1 provides support for the mounting components. The frame 2 can be fixed by the mounting components and the movable base 1. The linear displacement output component moves the cold upper mold component or the hot upper mold component downward through the power source to process the clothes on the lower mold 3. Through the shaft seat connecting plate 4 and the bearing seat plate 5, the linear displacement output component can establish a good connection with the cold upper mold component and the hot upper mold component. Through the cold and hot mold conversion seat plate 6, the rotating shaft and the flipping component, the cold upper mold component and the hot upper mold component can be alternated to perform cold pressing or hot pressing on the clothes on the lower mold 3 as needed.

[0025] The mounting components include two foot support tubes 8 and four foot cups 9. The tops of the four foot cups 9 are bolted to the two ends of the two foot support tubes 8, and the bottoms are bolted to the upper surface of the movable base 1.

[0026] The two base support tubes 8 provide a stable support foundation for the frame 2; as the main load-bearing components, the base support tubes 8 can ensure that the frame 2 can withstand greater processing pressure and impact, extending the service life of the equipment; the four foot cups 9 are respectively fixed to the two ends of the two base support tubes 8 and the upper surface of the movable base 1, forming a stable support system; which can effectively prevent the equipment from tilting or shaking due to uneven force during processing, ensuring the stable operation of the equipment.

[0027] The linear displacement output assembly includes an output cylinder 10, a cylinder base 11, and a guide rod 12. The output cylinder 10 and the guide rod 12 are located on the top of the frame 2. The piston rod of the output cylinder 10 passes through the frame 2. One end of the cylinder base 11 is bolted to the piston rod of the output cylinder 10, and the other end is bolted to the upper surface of the shaft seat connecting plate 4. The bottom of the guide rod 12 passes through the frame 2 and is bolted to the upper surface of the shaft seat connecting plate 4.

[0028] The output cylinder 10 provides the power source, the cylinder base 11 enhances the connection strength between the cylinder and the shaft seat connecting plate 4, provides stable support, and prevents the cylinder from shaking or displacing during operation. The guide rod 12 provides precise guidance for the movement of the cylinder and improves positioning accuracy.

[0029] The cold upper mold assembly includes a cold mold connecting plate 13, a cold mold connecting screw 14, a cold mold cover 15, and a cold upper mold 16. The cold mold connecting plate 13 is bolted to one side of two cold and hot mold conversion base plates 6. One end of the cold mold connecting screw 14 is connected to the cold mold connecting plate 13, and the other end is connected to the cold mold cover 15. The cold upper mold 16 is located at the bottom of the cold mold cover 15.

[0030] The cold mold connecting plate 13 is fixed to one side of the two cold and hot mold conversion base plates 6 by bolts, ensuring a tight connection between the cold upper mold assembly and the cold and hot mold conversion base plates 6, and enhancing the stability of the overall structure; the cold mold connecting screw 14 provides a solid support for the cold mold connecting plate 13 and the cold mold cover 15, and the cold mold cover 15 effectively protects the cold upper mold from damage by the external environment.

[0031] The hot upper mold assembly includes a hot mold connecting plate 17, a hot mold connecting screw 18, a hot mold cover 19, and a hot upper mold 20. The hot mold connecting plate 17 is bolted to one side of two cold and hot mold conversion base plates. One end of the hot mold connecting screw 18 is connected to the hot mold connecting plate 17, and the other end is connected to the hot mold cover 19. The hot upper mold 20 is located at the bottom of the hot mold cover 19.

[0032] The hot mold connecting plate 17 is fixed to one side of the two hot and cold mold conversion base plates by bolts, ensuring a tight connection between the hot upper mold 20 assembly and the hot and cold mold conversion base plates, and enhancing the stability of the overall structure; the hot mold connecting screw 18 provides a solid support for the hot mold connecting plate 17 and the hot mold cover 19, and the hot mold cover 19 effectively protects the hot upper mold 20 from damage by the external environment.

[0033] The tilting assembly includes a tilting cylinder 21, a cylinder bracket 22, a cylinder connector 23, a tilting arm 24, and a tilting pressure plate 25. The tilting cylinder 21 is mounted on the cylinder bracket 22, and its piston rod extends out of the cylinder bracket 22. The cylinder bracket 22 is an L-shaped bracket, and one end of it is bolted to the shaft seat connecting plate 4. The cylinder connector 23 is mounted on the piston rod of the tilting cylinder 21. One end of the tilting arm 24 is rotatably connected to the cylinder connector 23, and the other end is rotatably connected to the tilting shaft 7. The tilting pressure plate 25 is bolted to the side of the tilting arm 24 away from the tilting shaft 7.

[0034] The tilting cylinder 21 provides power, and the piston rod of the tilting cylinder 21 drives the cylinder joint 23 to make linear displacement. The cylinder joint 23 can drive the tilting shaft 7 to rotate through the tilting arm 24. Since the tilting shaft 7 is connected to the cold and hot mold conversion seat plate 6, and the cold and hot mold conversion seat plate 6 is connected to the cold upper mold assembly or the hot upper mold assembly, the tilting shaft 7 can make the cold upper mold assembly and the hot upper mold assembly alternate to realize the cold pressing or hot pressing of the lower mold 3. The tilting pressure plate 25 plays the role of fixing the tilting arm 24 and the tilting shaft 7, so that they will not shake or shift during operation, thus improving the overall stability.

[0035] Working principle: The operator places the fabric to be processed onto the lower mold 3. The piston rod of the tilting cylinder 21 is extended, and the output cylinder 10 starts working. Through the cylinder base 11, shaft connecting plate 4, and bearing seat plate 5, the hot upper mold 20 is moved downward to heat press the fabric on the lower mold 3. After heat pressing, the output cylinder 10 drives the hot upper mold 20 to reset, the piston rod of the tilting cylinder 21 retracts, and the piston rod of the tilting cylinder 21 drives the cylinder connector 23 to perform linear displacement. The rotating arm 24 can drive the rotating shaft 7 to rotate. The rotating shaft 7 is connected to the hot and cold mold conversion base plate 6. The hot and cold mold conversion base plate 6 can achieve the alternation of the cold upper mold 16 and the hot upper mold 20 by connecting with the cold mold cover 15 and the hot mold cover 19. At this time, the cold upper mold 16 is located directly above the lower mold 3. The output cylinder 10 drives the cold upper mold 16 to move down and cold press the fabric on the lower mold 3. After the cold pressing is completed, the output cylinder 10 is reset. The operator removes the fabric on the lower mold 3 and puts on a new fabric, and so on.

[0036] The specific embodiments are merely explanations of this utility model and are not intended to limit it. After reading this specification, those skilled in the art can make modifications to these embodiments without contributing any inventive step, but such modifications are protected by patent law as long as they fall within the scope of the claims of this utility model.

Claims

1. A seamless hot press for a garment fabric, characterized by: The utility model provides a cold -hot mould conversion device, including mobile base (1) with frame (2), frame (2) is connected to mobile base (1) through mounting assembly, the bottom of frame (2) is provided with lower mould (3), the top of frame (2) is provided with linear displacement output assembly, be provided with axle seat connecting plate (4) on linear displacement output assembly, the bottom bolt fixing of axle seat connecting plate (4) is provided with a plurality of bearing seat plate (5), the bearing seat plate (5) on both ends is all fixed with a cold -hot mould conversion seat plate (6) with screw, a group of cold upper die assembly and a group of hot upper die assembly are provided on the bearing seat plate (5) still rotatably connected with a turnover shaft (7), the both ends of turnover shaft (7) are provided with a group of turnover assembly for turning over cold upper die assembly and hot upper die assembly.

2. A seamless hot press for garment fabric as claimed in claim 1, wherein: The mounting assembly includes foot support pipe (8) and foot cup (9), the specific number of foot support pipe (8) is two, two foot support pipe (8) are through the bottom of frame (2), the specific number of foot cup (9) is four, the top of four foot cup (9) is bolted to the both ends of two foot support pipe (8) respectively, and the bottom is bolted to the upper surface of mobile base (1).

3. A seamless hot press for garment fabric as claimed in claim 2, wherein: The linear displacement output assembly includes output cylinder (10), cylinder base (11) and guide rod (12), the output cylinder (10) and guide rod (12) are arranged on the top of frame (2), the piston rod of output cylinder (10) is through frame (2), one end of cylinder base (11) is bolted to the piston rod of output cylinder (10), and the other end is bolted to the upper surface of axle seat connecting plate (4), the bottom of guide rod (12) is through frame (2) and is bolted to the upper surface of axle seat connecting plate (4).

4. A seamless hot press for garment fabric as claimed in claim 3 wherein: The cold upper die assembly includes cold die connecting plate (13), cold die connecting screw (14), cold die cover (15) and cold upper die (16), the cold die connecting plate (13) is bolted to one side of two cold -hot mould conversion seat plates (6), one end of cold die connecting screw (14) is connected to cold die connecting plate (13), and the other end is connected to cold die cover (15), and the cold upper die (16) is arranged at the bottom of cold die cover (15).

5. A seamless hot press for garment fabric as claimed in claim 4 wherein: The hot upper die assembly includes hot die connecting plate (17), hot die connecting screw (18), hot die cover (19) and hot upper die (20), the hot die connecting plate (17) is bolted to one side of two cold -hot mould conversion seat plates, one end of hot die connecting screw (18) is connected to hot die connecting plate (17), and the other end is connected to hot die cover (19), and the hot upper die (20) is arranged at the bottom of hot die cover (19).

6. A seamless hot press for garment fabric as claimed in claim 5 wherein: The turnover assembly comprises a turnover cylinder (21), a cylinder support (22), a cylinder joint (23), a turnover arm (24) and a turnover pressing plate (25), the turnover cylinder (21) is arranged on the cylinder support (22), the piston rod of the turnover cylinder (21) extends out of the cylinder support (22), the cylinder support (22) is an L-shaped support, one end of the cylinder support (22) is bolted to the shaft base connecting plate (4), the cylinder joint (23) is arranged on the piston rod of the turnover cylinder (21), one end of the turnover arm (24) is rotatably connected to the cylinder joint (23), the other end of the turnover arm (24) is rotatably connected to the turnover shaft (7), and the turnover pressing plate (25) is bolted to one side of the turnover arm (24) away from the turnover shaft (7).