Translation type cold pressing and hot ironing all-in-one machine

By adopting the double-station reciprocating movement of hot pressing and cold pressing mechanisms in the translational cold pressing and hot ironing all-in-one machine, the problem that existing equipment cannot cold press and shape is solved, and efficient processing and low-cost production of fabrics are achieved, which is suitable for small business applications.

CN223420284UActive Publication Date: 2025-10-10DONGGUAN MEISHUN ELECTROMECHANICAL TECH CO LTD

Patent Information

Application Number
CN202423001044.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-10
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Existing pressing equipment cannot realize cold pressing and shaping of fabrics after hot pressing, and has a complex structure and high production cost, which is not conducive to popularization and use by small enterprises.

Method used

A translational cold pressing and hot ironing machine is designed. The hot pressing and cold pressing mechanisms move back and forth on the same support table to achieve dual-station processing of hot pressing and cold pressing shaping. The combined structure of elastic telescopic components and sliding parts is adopted to simplify the equipment structure.

Benefits of technology

It realizes the flexible switching between hot pressing and cold pressing of fabrics, reduces the labor intensity of operators, improves processing efficiency, reduces production costs, and is suitable for small businesses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of hot pressing, in particular to a translation type cold pressing and hot pressing all-in-one machine which comprises a machine table, a support, a hot pressing mechanism, two supporting tables and a cold pressing mechanism, the hot pressing mechanism and the cold pressing mechanism can reciprocate above the two supporting tables, and the cold pressing mechanism comprises a cold pressing plate, an elastic telescopic assembly and a sliding piece. The cold pressing plate is located between the hot pressing mechanism and the supporting table, elastic telescopic assemblies are arranged on the two sides of the cold pressing plate, and the sliding pieces are arranged at the bottom ends of the elastic telescopic assemblies and are in sliding connection with the machine table. The hot-pressing and cold-pressing forming device belongs to semi-automatic equipment, is simple in structure and low in production cost, and can complete hot-pressing and cold-pressing forming processing without transferring or carrying a single piece of cloth among different stations through switching movement of the hot-pressing mechanism and the cold-pressing mechanism on the two supporting tables, so that the labor intensity of operators is reduced, double-station processing production is realized, and the production efficiency is improved. And the efficiency of hot pressing and cold pressing shaping processing is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of pressing and ironing, in particular to a translation type cold pressing and hot ironing integrated machine. Background Art

[0002] Among the existing patents, the applicant applied for a Chinese patent document with application number 202321619163.9 on June 21, 2023, which discloses a pressing machine, including a machine table, a sliding guide mechanism, a sliding seat, a pressing mechanism and multiple pressing bases. The pressing mechanism is movably arranged above the multiple pressing bases. The sliding guide mechanism includes a guide slide, a support rod, a plurality of upper rollers and a plurality of lower rollers. The upper rollers and the lower rollers are arranged at a vertical distance to form a rolling space. There is a gap between the support rod and the rolling space. The guide slide slides through the middle of the sliding seat. Although this patent document realizes a double-station hot pressing process, it cannot realize cold pressing and shaping of the fabric after hot pressing. Therefore, when the operator cannot remove the fabric immediately, even if the operator can remove the fabric immediately, it is easy to cause deformation of the fabric.

[0003] In addition, the Chinese patent document with application number 202321491502.X discloses a fully automatic hot and cold pressing machine, comprising: a frame; at least two sets of plywood assemblies slidably mounted on the frame for clamping the materials to be sewn, the frame being provided with a circulating feeding mechanism for driving the plywood assemblies to move back and forth in a circular shape; a hot pressing forming device carried by the frame for hot pressing the materials to be sewn; and a cold pressing and shaping device carried by the frame for cold pressing the materials after hot pressing, the cold pressing and shaping device being connected to a refrigeration device; adjacent plywood assemblies can correspond to the hot pressing forming device and the cold pressing and shaping device respectively at the same time. This patent document sets the hot pressing forming device and the cold pressing and shaping device at two workstations respectively, and then drives the plywood assembly to move back and forth in a circular shape through a circulating feeding mechanism to transport the fabric to the hot pressing forming device and the cold pressing and shaping device in sequence, thereby hot pressing and cold pressing the materials pressed and fixed by the plywood assemblies respectively. In addition, since the circulating feeding mechanism transports the material, a clamping plate assembly is required to compress and secure the material to prevent it from shifting during transport. The patent document requires a circulating feeding mechanism to transport the material and a clamping plate assembly to compress and secure the material, resulting in a complex machine structure and high production costs, making it unsuitable for widespread use by small businesses.

[0004] In addition, the Chinese patent document with application number 202311105481.8 discloses a fabric pressing machine for underwear back buckle straps that can automatically cool down and enhance bonding strength, including a hot pressing mechanism and a cold pressing mechanism. The cold pressing mechanism includes a first cold pressing plate and a second cold pressing plate. The cooling medium is driven to flow in the cooling circuit through a cooling medium circulation component, thereby shortening the cooling and solidification time of the hot melt adhesive. At the same time, the machine base is provided with a traction mechanism and a guide mechanism to realize continuous and automatic pressing work and improve production efficiency. This patent document requires the continuous material strip to be pulled and conveyed by a traction mechanism and a guide mechanism. The structure of the machine is complex and the production cost is high, which is not conducive to the popularization of small businesses, and it is impossible to perform hot pressing and cold pressing on a single piece of material.

[0005] Therefore, the defects are very obvious and a solution is urgently needed. Utility Model Content

[0006] In order to solve the above technical problems, the purpose of the present invention is to provide a translational cold pressing and hot stamping machine.

[0007] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0008] A translational cold pressing and hot ironing machine comprises a machine platform, a bracket mounted on the top surface of the machine platform, a hot pressing and ironing mechanism horizontally slidably connected to the bracket, two support platforms arranged side by side along the moving direction of the hot pressing and ironing mechanism and installed on the top surface of the machine platform, and a cold pressing mechanism horizontally slidably connected to the machine platform and mounted above the support platforms. Both the hot pressing and ironing mechanisms can move back and forth above the two support platforms. The cold pressing mechanism comprises a cold pressing plate, an elastic telescopic component and a sliding part. The cold pressing plate is located between the hot pressing and ironing mechanism and the support platform. Elastic telescopic components are provided on both sides of the cold pressing plate. The elastic telescopic components are located on the outside of the support platform. The sliding part is arranged at the bottom end of the elastic telescopic component. The sliding part is slidably connected to the machine platform.

[0009] Furthermore, the elastic telescopic component includes a guide rod installed on the top of the sliding part, a guide sleeve installed on the side of the cold pressing plate, a limit cover installed on the top of the guide rod and an elastic part arranged between the guide sleeve and the sliding part. The limit cover is located above the guide sleeve and is used to resist the top of the guide sleeve. The guide rod slides through the guide sleeve.

[0010] Furthermore, the machine is equipped with two parallel guide rails, the support platform is located between the two guide rails, and the sliding member is slidably connected to the guide rails; both ends of the guide rails are equipped with limit blocks, which are used to interfere with the sliding member.

[0011] Furthermore, the sliding member includes a mounting plate mounted on the bottom end of the elastic telescopic component and a pulley rotatably connected to the mounting plate, and the pulley is in rolling engagement with the guide rail.

[0012] Furthermore, the sliding member includes a mounting plate mounted on the bottom end of the elastic telescopic component and a slider mounted on the mounting plate, and the slider is slidably matched with the guide rail.

[0013] Furthermore, a cooling channel is provided inside the cold pressing plate.

[0014] Furthermore, the hot pressing mechanism includes a slide slidably connected to the bracket, a hot pressing driver installed on the slide, a buffer assembly installed at the output end of the hot pressing driver, and a hot pressing plate installed at the bottom end of the buffer assembly.

[0015] Furthermore, the sliding seat is provided with a handle, and the cold-pressed plate, the elastic telescopic component or the sliding member is provided with a handle.

[0016] Furthermore, the bracket is equipped with a hot pressing movable drive mechanism, the movable end of the hot pressing movable drive mechanism is driven and connected to the slide seat, and the machine is equipped with a cold pressing movable drive mechanism, the movable end of the cold pressing movable drive mechanism is driven and connected to the cold pressing plate, elastic telescopic component or sliding part.

[0017] Furthermore, the bracket is equipped with two trigger blocks, which are respectively arranged corresponding to the two support platforms. The hot pressing mechanism is equipped with an in-place sensor. The trigger block is used to trigger the in-place sensor, and the in-place sensor is electrically connected to the hot pressing mechanism.

[0018] The beneficial effects of the present invention are as follows: in actual application, at the beginning, the hot pressing mechanism and the cold pressing mechanism are located above the same support platform, and the cold pressing plate of the cold pressing mechanism is located between the hot pressing mechanism and the support platform. At this time, the operator can place a piece of cloth to be processed on the other support platform, and then the hot pressing mechanism moves to the top of the support platform carrying the cloth, and the hot pressing end of the hot pressing mechanism descends to heat-press the cloth on the support platform. After the hot pressing is completed, the hot pressing end of the hot pressing mechanism rises and resets, and then the cold pressing mechanism moves to the top of the support platform carrying the cloth after heat pressing, and the cold pressing plate of the cold pressing mechanism is located between the hot pressing mechanism and the support platform, and then the hot pressing end of the hot pressing mechanism descends and applies downward pressure to the cold pressing plate, so that the cold pressing plate moves downward and compresses the elastic telescopic component until the cold pressing plate is pressed tightly on the cloth, and the cold pressing plate cold-presses the cloth to cool down and solidify the cloth. During the cold pressing process, the operator can place the cloth on another support platform to realize loading and unloading of the cloth. The hot pressing mechanism and the cold pressing mechanism switch back and forth between the two support tables to continuously perform hot pressing and cold pressing on the fabrics on the two support tables. Of course, when only hot pressing is required for the fabric, the cold pressing mechanism does not work or can be directly disassembled, or when only cold pressing is required for the fabric, the hot pressing mechanism does not perform hot pressing on the fabric, which is flexible to use and highly practical. The utility model is a semi-automatic device with a simple structure and low production cost. By switching and moving the hot pressing mechanism and the cold pressing mechanism on the two support tables, the hot pressing and cold pressing shaping processes can be completed without transferring or transporting the single piece of fabric between different workstations, thereby reducing the labor intensity of the operator and realizing dual-station processing and production, greatly improving the efficiency of the hot pressing and cold pressing shaping processes. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Fig. 1 It is a schematic diagram of the three-dimensional structure of the utility model.

[0020] Fig. 2 It is a schematic diagram of the three-dimensional structure of an embodiment of the cold pressing mechanism of the present invention.

[0021] Fig. 3 It is a schematic three-dimensional structural diagram of another embodiment of the cold pressing mechanism of the present invention.

[0022] Description of reference numerals:

[0023] 1. Machine; 2. Bracket; 3. Hot pressing mechanism; 4. Support platform; 5. Cold pressing mechanism; 6. Cold pressing plate; 7. Elastic telescopic component; 8. Sliding part; 9. Guide rod; 10. Guide sleeve; 11. Limit cover; 12. Elastic part; 13. Guide rail; 14. Mounting plate; 15. Pulley; 16. Slider; 17. Slide seat; 18. Hot pressing driver; 19. Buffer component; 20. Hot pressing plate; 21. Handle; 22. Grip. DETAILED DESCRIPTION

[0024] In order to facilitate understanding by those skilled in the art, the present invention is further described below with reference to embodiments and drawings. The contents mentioned in the embodiments are not intended to limit the present invention.

[0025] like Figs. 1 to 3 As shown, the utility model provides a translational cold pressing and hot ironing integrated machine, which includes a machine platform 1, a bracket 2 mounted on the top surface of the machine platform 1, a hot pressing and ironing mechanism 3 horizontally slidably connected to the bracket 2, two support platforms 4 arranged side by side along the moving direction of the hot pressing and ironing mechanism 3 and installed on the top surface of the machine platform 1, and a cold pressing mechanism 5 horizontally slidably connected to the machine platform 1 and mounted above the support platforms 4. Both the hot pressing and ironing mechanisms 3 and the cold pressing mechanism 5 can move back and forth above the two support platforms 4. The cold pressing mechanism 5 includes a cold pressing plate 6, an elastic telescopic component 7 and a sliding member 8. The cold pressing plate 6 is located between the hot pressing and ironing mechanism 3 and the support platform 4. Elastic telescopic components 7 are provided on both sides of the cold pressing plate 6. The elastic telescopic components 7 are located on the outside of the support platform 4. The sliding member 8 is provided at the bottom end of the elastic telescopic component 7. The sliding member 8 is slidably connected to the machine platform 1; among the two support platforms 4, when one support platform 4 is in a working state, the other support platform 4 is in a loading and unloading state.

[0026] In actual application, at the beginning, the hot pressing mechanism 3 and the cold pressing mechanism 5 are located above the same support table 4, and the cold pressing plate 6 of the cold pressing mechanism 5 is located between the hot pressing mechanism 3 and the support table 4, at this time, the operator can place a piece of fabric to be processed on another support table 4, then the hot pressing mechanism 3 moves above the support table 4 carrying the fabric, the hot pressing end of the hot pressing mechanism 3 descends to hot press the fabric on the support table 4, after hot pressing, the hot pressing end of the hot pressing mechanism 3 rises to reset, then the cold pressing mechanism 5 moves above the support table 4 carrying the hot pressed fabric, and the cold pressing plate 6 of the cold pressing mechanism 5 is located between the hot pressing mechanism 3 and the support table 4, then the hot pressing end of the hot pressing mechanism 3 descends and applies a downward pressure to the cold pressing plate 6, so that the cold pressing plate 6 moves downward and compresses the elastic telescopic assembly 7, until the cold pressing plate 6 is pressed on the fabric, the cold pressing plate 6 cold presses the fabric to cool and solidify the fabric, during the cold pressing process, the operator can place the fabric on another support table 4 to realize the feeding and discharging of the fabric. The hot pressing mechanism 3 and the cold pressing mechanism 5 reciprocate between the two support tables 4 to continuously hot press and cold press the fabric on the two support tables 4. Of course, when only hot pressing is required, the cold pressing mechanism 5 does not work or is directly disassembled, or when only cold pressing is required, the hot pressing mechanism 3 does not hot press the fabric, which is flexible and practical. The utility model belongs to semi-automatic equipment, the structure is simple, the production cost is low, through the hot pressing mechanism 3 and the cold pressing mechanism 5 are switched and moved on the two support tables 4, the hot pressing and cold pressing and shaping processing can be completed without transferring or carrying the single fabric between different stations, which reduces the labor intensity of the operator, realizes double-station processing and production, and greatly improves the efficiency of hot pressing and cold pressing and shaping processing.

[0027] In the embodiment, the elastic telescopic assembly 7 comprises a guide rod 9 arranged on the top of the sliding piece 8, a guide sleeve 10 arranged on the side of the cold pressing plate 6, a limiting cover 11 arranged on the top of the guide rod 9 and an elastic piece 12 arranged between the guide sleeve 10 and the sliding piece 8, the limiting cover 11 is located above the guide sleeve 10 and is used for abutting against the top of the guide sleeve 10, and the guide rod 9 slides through the guide sleeve 10.

[0028] In actual application, in normal state, the elastic member 12 is in an extended state, the limit cover 11 contacts the top of the guide sleeve 10 and limits the guide sleeve 10 to prevent the guide sleeve 10 from separating from the guide rod 9, the cold pressing plate 6 is located above the support platform 4 and is set at a distance from the support platform 4. After the hot pressing end of the hot pressing mechanism 3 completes the hot pressing of the fabric on the support platform 4, the hot pressing end of the hot pressing mechanism 3 rises and resets, and the cold pressing mechanism 5 can be moved to the bottom of the hot pressing mechanism 3, so that the cold pressing plate 6 is located between the hot pressing end of the hot pressing mechanism 3 and the support platform 4. Between the platforms 4, the hot pressing end of the hot pressing mechanism 3 then descends and presses down the cold pressing plate 6, causing the cold pressing plate 6 to move downward and compress the elastic member 12 until the cold pressing plate 6 presses the hot pressed fabric, and the cold pressing plate 6 performs cold pressing and shaping on the fabric. After the cold pressing and shaping is completed, the hot pressing end of the hot pressing mechanism 3 rises and resets, and the cold pressing plate 6 rises and resets under the action of the rebound force of the elastic member 12, so that the cold pressing plate 6 is separated from the fabric; in the process of the cold pressing plate 6 rising and falling, the guide sleeve 10 and the guide rod 9 slide in cooperation, thereby improving the stability of the cold pressing plate 6 rising and falling.

[0029] Specifically, the elastic member 12 is a spring, and the spring is sleeved outside the guide rod 9. The guide rod 9 plays a role in positioning and guiding the spring, which facilitates the assembly of the spring and improves the working stability of the spring.

[0030] In this embodiment, the machine 1 is equipped with two parallel guide rails 13, with the support platform 4 located between the two guide rails 13, and the slide 8 slidably connected to the guide rails 13; each end of the guide rails 13 is equipped with a limit block, which is used to contact the slide 8. The provision of the guide rails 13 improves the stability of the reciprocating movement of the slide 8; in actual application, when the slide 8 contacts the limit block at one end, it proves that the cold pressing mechanism 5 has moved into place and the cold pressing mechanism 5 moves above one support platform 4; when the slide 8 contacts the limit block at the other end, the cold pressing mechanism 5 moves above the other support platform 4.

[0031] In this embodiment, the sliding member 8 includes a mounting plate 14 mounted on the bottom end of the elastic expansion assembly 7 and a pulley 15 rotatably connected to the mounting plate 14. The pulley 15 rolls with the guide rail 13. When the cold press mechanism 5 moves, the pulley 15 rolls on the guide rail 13 to improve the movement stability of the cold press mechanism 5. When the cold press mechanism 5 needs to be disassembled, it can be disassembled by simply lifting the cold press mechanism 5 upward, making the disassembly of the cold press mechanism 5 convenient and can be completed without the need for disassembly tools.

[0032] In another embodiment, the sliding member 8 includes a mounting plate 14 mounted on the bottom end of the elastic expansion assembly 7 and a slider 16 mounted on the mounting plate 14. The slider 16 slides with the guide rail 13. When the cold pressing mechanism 5 moves, the slider 16 slides on the guide rail 13 to improve the movement stability and movement accuracy of the cold pressing mechanism 5.

[0033] In this embodiment, the cold platen 6 is internally provided with a circuitous cooling channel. When the cold platen 6 is air-cooled, one end of the cooling channel is connected to an exhaust fan, and the other end is connected to the external environment. Heat is transferred between the cold platen 6 and the fabric, and the exhaust fan removes the hot air from the cooling channel to achieve cooling. When the cold platen 6 is water-cooled, a water circulation device drives the coolant in the cooling channel to circulate, removing heat to achieve cooling.

[0034] In this embodiment, the hot pressing mechanism 3 includes a slide 17 slidably connected to the bracket 2, a hot pressing driver 18 mounted on the slide 17, a buffer assembly 19 mounted at the output end of the hot pressing driver 18, and a hot pressing plate 20 mounted at the bottom end of the buffer assembly 19. Specifically, the hot pressing driver 18 can be a pneumatic cylinder. In actual use, the hot pressing driver 18 drives the buffer assembly 19 to move the hot pressing plate 20 downward, allowing the hot pressing plate 20 to hot press the fabric. During the hot pressing process, the buffer assembly 19 acts as a buffer to prevent excessive hot pressing force that could damage the fabric. When the moving hot pressing plate 20 presses the cold pressing plate 6, the buffer assembly 19 acts as a buffer to prevent the hot pressing plate 20 from hard impact with the cold pressing plate 6. In addition, the buffer assembly 19 ensures a closer fit between the hot pressing plate 20 and the cold pressing plate 6 or the fabric.

[0035] Specifically, the buffer assembly 19 includes a buffer plate installed at the output end of the hot pressing driver 18 and multiple buffer modules connected between the buffer plate and the hot pressing plate 20. The structure of the buffer module can be the same as that of the elastic telescopic assembly 7, which will not be repeated here.

[0036] Specifically, a pad is provided on the top surface of the support platform 4. Specifically, the pad is an elastic pad, such as a soft rubber pad. During the hot pressing and cold pressing of the fabric, the pad acts as a buffer. Because the pad has a certain degree of elasticity, it can undergo adaptive elastic deformation during the hot pressing and cold pressing process to compensate for processing errors of the hot pressing plate 20, the cold pressing plate 6, and / or the fabric, thereby achieving better hot pressing and cold pressing shaping effects.

[0037] In this embodiment, the slide 17 is provided with a handle 21 ; in actual application, the operator can hold the handle 21 to pull the hot pressing mechanism 3 to switch and move between the two support platforms 4 to achieve manual control of the switching of the hot pressing mechanism 3 .

[0038] In this embodiment, the cold pressing plate 6, the elastic telescopic component 7 or the sliding member 8 is provided with a handle 22; in actual application, the operator can hold the handle 22 to pull the cold pressing mechanism 5 to switch between the two support platforms 4 to realize manual control of the switching of the cold pressing mechanism 5.

[0039] Specifically, two elastic telescopic components 7 are provided on the outside of the cold platen 6, and the handle 22 is connected between the sliding members 8 corresponding to the two elastic telescopic components 7. At least one elastic telescopic component 7 is provided on the inside of the cold platen 6. Preferably, one elastic telescopic component 7 is provided on the inside of the cold platen 6, and the one elastic telescopic component 7 on the inside and the two elastic telescopic components 7 on the outside are arranged in an isosceles triangle. Since the triangle is a stable structure, the three elastic telescopic components 7 of this structural design provide good stability in supporting the cold platen 6.

[0040] In this embodiment, the bracket 2 is equipped with a hot pressing movable drive mechanism, the movable end of which is drivingly connected to the slide 17. The machine 1 is equipped with a cold pressing movable drive mechanism, the movable end of which is drivingly connected to the cold pressing plate 6, the elastic expansion assembly 7, or the slide 8. In actual use, the hot pressing movable drive mechanism drives the slide 17 to switch between the two support platforms 4 to achieve automated movement of the hot pressing mechanism 3; the cold pressing movable drive mechanism drives the cold pressing mechanism 5 to switch between the two support platforms 4 to achieve automated movement of the cold pressing mechanism 5.

[0041] In this embodiment, the bracket 2 is equipped with two trigger blocks, each corresponding to the two support platforms 4. The hot pressing mechanism 3 is equipped with an in-position sensor. The trigger block is used to trigger the in-position sensor, which is electrically connected to the hot pressing mechanism 3. When one trigger block triggers the in-position sensor, it proves that the hot pressing mechanism 3 has moved above one support platform 4 and has moved into position. The in-position sensor feeds back a signal to the hot pressing mechanism 3, causing the hot pressing mechanism 3 to operate according to the program. When the other trigger block triggers the in-position sensor, it proves that the hot pressing mechanism 3 has moved above the other support platform 4 and has moved into position. The in-position sensor feeds back a signal to the hot pressing mechanism 3, causing the hot pressing mechanism 3 to operate according to the program.

[0042] Specifically, a proximity switch or magnetic induction switch is installed on the outside of the cold platen 6 or the guide sleeve 10, and the slide 17 is used to trigger the proximity switch or magnetic induction switch. In actual use, when the cold platen 6 moves below the slide 17, the slide 17 triggers the proximity switch or magnetic induction switch, confirming that the cold platen 6 has moved into position. The proximity switch or magnetic induction switch then feeds back a signal to the hot pressing mechanism 3, causing the hot pressing mechanism 3 to operate according to the program.

[0043] All technical features in this embodiment can be freely combined according to actual needs.

[0044] The above embodiments are preferred implementation schemes of the present invention. In addition, the present invention can also be implemented in other ways. Any obvious replacement without departing from the concept of the present technical solution is within the scope of protection of the present invention.

Claims

1. A translational cold pressing and hot stamping machine, characterized by: The invention comprises a machine (1), a bracket (2) mounted on the top surface of the machine (1), a hot pressing mechanism (3) horizontally slidably connected to the bracket (2), two support platforms (4) arranged side by side along the moving direction of the hot pressing mechanism (3) and installed on the top surface of the machine (1), and a cold pressing mechanism (5) horizontally slidably connected to the machine (1) and mounted above the support platforms (4). Both the hot pressing mechanism (3) and the cold pressing mechanism (5) can move back and forth above the two support platforms (4). The cold pressing mechanism (5) comprises a cold pressing plate (6), an elastic telescopic component (7) and a sliding member (8). The cold pressing plate (6) is located between the hot pressing mechanism (3) and the support platform (4). Both sides of the cold pressing plate (6) are provided with elastic telescopic components (7). The elastic telescopic components (7) are located outside the support platform (4). The sliding member (8) is arranged at the bottom end of the elastic telescopic component (7). The sliding member (8) is slidably connected to the machine (1).

2. The translational cold pressing and hot stamping machine according to claim 1, characterized in that: The elastic telescopic component (7) comprises a guide rod (9) mounted on the top of the sliding member (8), a guide sleeve (10) mounted on the side of the cold pressing plate (6), a limit cover (11) mounted on the top of the guide rod (9), and an elastic member (12) arranged between the guide sleeve (10) and the sliding member (8). The limit cover (11) is located above the guide sleeve (10) and is used to resist the top of the guide sleeve (10). The guide rod (9) slides through the guide sleeve (10).

3. The translational cold pressing and hot stamping machine according to claim 1, characterized in that: The machine (1) is provided with two parallel guide rails (13), the support platform (4) is located between the two guide rails (13), and the sliding member (8) is slidably connected to the guide rails (13); both ends of the guide rails (13) are provided with limit blocks, which are used to abut against the sliding member (8).

4. The translational cold pressing and hot stamping machine according to claim 3, characterized in that: The sliding member (8) comprises a mounting plate (14) mounted on the bottom end of the elastic telescopic component (7) and a pulley (15) rotatably connected to the mounting plate (14); the pulley (15) and the guide rail (13) are in rolling cooperation.

5. The translational cold pressing and hot stamping machine according to claim 3, characterized in that: The sliding member (8) comprises a mounting plate (14) mounted on the bottom end of the elastic telescopic component (7) and a slider (16) mounted on the mounting plate (14); the slider (16) is in sliding cooperation with the guide rail (13).

6. The translational cold pressing and hot stamping machine according to claim 1, characterized in that: A cooling channel is provided inside the cold pressing plate (6).

7. The translational cold pressing and hot stamping machine according to claim 1, characterized in that: The hot pressing mechanism (3) comprises a slide (17) slidably connected to the bracket (2), a hot pressing driver (18) mounted on the slide (17), a buffer assembly (19) mounted on the output end of the hot pressing driver (18), and a hot pressing plate (20) mounted on the bottom end of the buffer assembly (19).

8. The translational cold pressing and hot stamping machine according to claim 7, characterized in that: The sliding seat (17) is provided with a handle (21), and the cold pressing plate (6), the elastic telescopic component (7) or the sliding member (8) is provided with a handle (22).

9. The translational cold pressing and hot stamping machine according to claim 7, characterized in that: The bracket (2) is equipped with a hot pressing movable driving mechanism, the movable end of which is drivingly connected to the slide (17), and the machine (1) is equipped with a cold pressing movable driving mechanism, the movable end of which is drivingly connected to the cold pressing plate (6), the elastic telescopic component (7) or the sliding member (8).

10. The translational cold pressing and hot stamping machine according to claim 1, characterized in that: The bracket (2) is equipped with two trigger blocks, which are respectively arranged corresponding to the two support platforms (4). The hot pressing mechanism (3) is equipped with an in-place sensor. The trigger blocks are used to trigger the in-place sensor, and the in-place sensor is electrically connected to the hot pressing mechanism (3).

Citation Information

Patent Citations

  • Underwear back buckle belt cloth pressing machine capable of automatically cooling and enhancing bonding strength

    CN117137217A

  • Press ironing machine

    CN220031454U

  • Full-automatic hot and cold pressing machine

    CN220349078U

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