A detachable heat press machine base module

By designing a detachable heat press machine base module and using sliding and limiting components, the problems of base deformation, aging, and inconvenient replacement have been solved, enabling quick disassembly and safe replacement of the base, and improving operational convenience and stability.

CN224576340UActive Publication Date: 2026-07-31DONGGUAN SHANGCHENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN SHANGCHENG TECH CO LTD
Filing Date
2025-08-05
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing heat press machine bases are prone to deformation and aging after prolonged use, and replacement is difficult. The conventional base plate is fixed to the frame, making replacement inconvenient.

Method used

A detachable heat press machine base module is designed, which adopts a sliding component and a limiting component. The sliding component drives the base to move inside and outside the machine frame, and the limiting component enables quick assembly and disassembly of the base. The disassembly is assisted by a separation spring, and the operation is simple and tool-free.

Benefits of technology

It enables quick assembly and disassembly of the base, reduces the difficulty of replacement, improves operational safety and convenience, and has a compact structure with good stability.

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Abstract

This application relates to the field of heat transfer equipment, and in particular to a detachable heat transfer machine base module. Key features of the technical solution include: a frame; a sliding assembly disposed on the frame, the sliding assembly having a placement groove; a base placed in the placement groove, the sliding assembly being used to drive the base to reciprocate on the inner and outer sides of the frame; a first limiting assembly disposed on the frame, used to movably lock the sliding assembly and the base onto the frame; and a second limiting assembly disposed on the sliding assembly, used to movably lock the base into the placement groove. This application reduces the difficulty of replacing the base.
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Description

Technical Field

[0001] This application relates to the field of heat transfer equipment, and in particular to a detachable heat transfer machine base module. Background Technology

[0002] Heat press machines, as one of the key pieces of equipment in the fields of modern personalized customization and industrial printing, are based on the core technology of heat transfer printing. The essence of this process is to use heat and pressure, under the control of a specific time, to firmly transfer and adhere the pattern (usually composed of hot melt ink or hot melt adhesive layer) pre-printed on a special transfer carrier (such as release paper, PET film or heat transfer film) to the surface of the target substrate.

[0003] Typically, a common heat press machine mainly includes a frame, a base, and a heat pressing module. The base and the heat pressing module are set on the frame, with the base positioned below the heat pressing module. The material is placed on the base, and the transfer film is placed on the material. At this time, the heat pressing module is activated, pressing down and heating the material and the transfer film, so that the pattern can be transferred to the material, realizing the heat transfer process.

[0004] However, current heat press machines still have many areas for improvement. For example, the base is prone to deformation and aging due to the need to withstand high temperatures during prolonged use. The conventional base plate is fixed to the frame, making replacement very inconvenient. Therefore, improvements are needed. Utility Model Content

[0005] To reduce the difficulty of replacing the base, this application provides a detachable heat transfer base module.

[0006] The detachable heat press machine base module provided in this application adopts the following technical solution:

[0007] A detachable heat press machine base module includes:

[0008] frame;

[0009] A sliding assembly is disposed on the frame, and the sliding assembly has a placement slot;

[0010] The base is placed in the placement slot, and the sliding component is used to drive the base to reciprocate on the inner and outer sides of the frame;

[0011] A first limiting component is disposed on the frame and is used to movably lock the sliding component and the base onto the frame;

[0012] And a second limiting component, disposed on the sliding component, for movably locking the base into the placement groove.

[0013] By adopting the above technical solution, when the base needs to be disassembled and replaced, the first limiting component can be controlled to unlock the sliding component, allowing the sliding component to move the base to the outside of the frame. Then, the second limiting component is operated to unlock the base. At this time, the old base is taken out and the new base is placed in the placement slot. Then, the second limiting component is operated again to restrict the base within the sliding component. At this time, the base is not easy to loosen. Then, the sliding component and the base are pushed back into the frame. The first limiting component is operated to restrict the base within the frame through the sliding component, thus realizing the disassembly and replacement function of the base. In the above process, only the first and second limiting components need to be operated to complete the assembly of the base. No other tools are required, and the base can be quickly and conveniently disassembled and assembled, reducing the difficulty of base replacement.

[0014] Preferably, the sliding component includes:

[0015] A frame, wherein the placement slot is located within the frame and has an opening at the top of the frame;

[0016] A slider is located at the bottom of the frame;

[0017] A slide rail is provided on the frame, and the slider slides in cooperation with the slide rail.

[0018] By adopting the above technical solution, the frame provides an installation position for the base. With the sliding cooperation of the slider and the slide rail, the base can be smoothly guided to move to the outside of the frame, so as to facilitate the safe replacement of the base.

[0019] Preferably, the sliding assembly further includes a separation spring, the two ends of which are connected to the frame and the machine frame respectively. When the first limiting assembly is in the unlocked state, the separation spring is used to eject the frame outward from the machine frame.

[0020] By adopting the above technical solution, the separation spring can actively push the sliding component outward of the frame when the base is disassembled. At this time, the operator does not need to pull the base outward of the frame, making the disassembly work safer and more convenient.

[0021] Preferably, the frame has a receiving groove, the base and the slide are located in the receiving groove, and when the base is on the frame, the top of the base is flush with the surface of the frame.

[0022] By adopting the above technical solution, the receiving groove can accommodate the base and sliding components, making the structure more compact and ensuring the flatness of the base and frame.

[0023] Preferably, the first limiting component includes:

[0024] The first limiting block is slidably disposed on the frame;

[0025] The first spring is connected to the first limiting block and the frame respectively. When the first spring is in its natural state, the first spring pushes the first limiting block to abut against the sliding assembly, thereby restricting the base and the sliding assembly from displacing to the outside of the frame.

[0026] By adopting the above technical solution, when it is necessary to lock or unlock the sliding component, it is only necessary to move the first limit block, which is quick and convenient.

[0027] Preferably, the first limiting block has a first inclined surface that slides against the sliding component. When the sliding component moves into the frame, the sliding component pushes the first limiting block to avoid it by means of the first inclined surface.

[0028] By adopting the above technical solution, the first inclined surface can drive the first limiting block to avoid the base during the process of assembling the base into the sliding component, until the sliding component drives the base to fully enter the frame, thus optimizing and improving the ease of operation of the sliding component.

[0029] Preferably, the second limiting component includes:

[0030] The second limiting block is slidably disposed on the sliding component, and the base has a limiting groove, and the second limiting block is inserted into the limiting groove;

[0031] The second spring is connected to the sliding assembly and the second limiting block respectively. When the second spring is in its natural state, the second spring pushes the second limiting block into the limiting groove.

[0032] By adopting the above technical solution, when it is necessary to disassemble or assemble the base, it can be done simply by pulling the second limit block, which is quick and convenient.

[0033] Preferably, the second limiting block has a second inclined surface that slides against the base. During the process of the base being placed into the placement slot, the base pushes the second limiting block to avoid it by means of the second inclined surface.

[0034] By adopting the above technical solution, the second inclined surface can drive the second limiting block to avoid the base during the process of assembling the base into the sliding component, until the base is completely assembled in the placement slot, thus optimizing and improving the ease of installation of the base.

[0035] In summary, this application includes at least one of the following beneficial technical effects:

[0036] 1. The sliding assembly can guide the base to the outside of the frame. At this time, the base can be removed and replaced from the frame by disassembling and assembling the second limiting assembly. After the base is replaced, the base is pushed back into the frame and the first limiting assembly limits the base in the frame. The disassembly and assembly of the base does not require other tools, and the disassembly and assembly are simple and quick, reducing the difficulty of replacing the base.

[0037] 2. During the disassembly of the base, the release spring can pop the base from the inside of the frame to the outside of the frame, making the disassembly and assembly process safer and more convenient;

[0038] 3. The first and second limit components adopt a toggle control method, which is convenient and quick to operate. Attached Figure Description

[0039] Figure 1 This is a structural schematic diagram of a detachable heat press machine base module in a preferred embodiment of this application.

[0040] Figure 2 This is a schematic diagram of the assembly relationship of a detachable heat press machine base module in a preferred embodiment of this application.

[0041] Figure 3 This is a structural schematic diagram of a preferred embodiment of the heat press machine base module when the base is omitted.

[0042] Figure 4 This is a cross-sectional view of the first limiting component in a preferred embodiment of this application.

[0043] Figure 5 This is a cross-sectional view of the second limiting component in a preferred embodiment of this application.

[0044] Explanation of reference numerals in the attached figures:

[0045] 1. Frame; 11. Receiving slot; 2. Sliding assembly; 21. Frame body; 211. Placement slot; 22. Slider; 23. Slide rail; 24. Separation spring; 3. Base; 31. Limiting slot; 4. First limiting assembly; 41. First limiting block; 411. First inclined surface; 42. First spring; 43. First mounting slot; 5. Second limiting assembly; 51. Second limiting block; 511. Second inclined surface; 52. Second spring; 53. Second mounting slot. Detailed Implementation

[0046] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0047] This application discloses a detachable heat press machine base module. (Refer to...) Figure 1 The base module 3 includes a frame 1, a sliding assembly 2, a base 3, a first limiting assembly 4, and a second limiting assembly 5.

[0048] The frame 1 is used to provide installation positions for various components. In this embodiment, the frame 1 has a three-dimensional frame structure, and the top of the frame 1 also has a platform with a hot pressing module, which realizes the pressing and forming action.

[0049] Reference Figure 1 and Figure 2 The sliding assembly 2 is disposed on the frame 1 and has a placement groove 211. The base 3 is placed in the placement groove 211. Correspondingly, the base 3 can be removed from the placement groove 211. The sliding assembly 2 is used to drive the base 3 to move back and forth between the inner and outer sides of the frame 1. When the sliding assembly 2 moves to the outer side of the frame 1, the base 3 can be disassembled and replaced, thus avoiding the need to replace the base 3 inside the frame 1 and improving safety. In addition, when the base 3 moves to the inner side of the frame 1, the top of the base 3 can be used to place a carrier and a heat transfer film for heat transfer processing.

[0050] Meanwhile, the first limiting component 4 is disposed on the frame 1 to movably lock the sliding component 2 and the base 3 onto the frame 1, so as to ensure that the base 3 is not easy to shake or shift on the inner and outer sides of the frame 1 during the heat transfer process, thus ensuring structural stability; in addition, the second limiting component 5 is disposed on the sliding component 2 to movably lock the base 3 into the placement groove 211. The second limiting component 5 can fix the base 3 on the sliding component 2, so as to ensure that the base 3 and the sliding component 2 are not easy to loosen or shift.

[0051] Based on the above settings, when the base 3 needs to be disassembled and replaced, the first limiting component 4 can be controlled first, so that the sliding component 2 can move the base 3 to the outside of the frame 1. Then, the second limiting component 5 can be operated to open it. At this time, the old base 3 can be taken out and the new base 3 can be placed in the placement slot 211. Then, the second limiting component 5 can be operated again to restrict the base 3 within the sliding component 2. At this time, the base 3 is not easy to loosen. Then, the sliding component 2 and the base 3 can be pushed back into the frame 1, and the first limiting component 4 can be operated to restrict the base 3 within the frame 1 through the sliding component 2. The base 3 can be disassembled and replaced. The replacement process of the base 3 does not require the use of other tools, which is convenient, quick and easy, and has good operational safety.

[0052] Reference Figure 2 and Figure 3 In some embodiments, the sliding assembly 2 includes a frame 21, a slider 22, and a slide rail 23. The frame 21 has a flat frame structure with a rectangular edge outline. The frame 21 is horizontally positioned, and a placement groove 211 is located on the frame 21. Specifically, the placement groove 211 is recessed from the outside to the inside at the top of the frame 21, and the placement groove 211 opens at the top of the frame 21.

[0053] It is understood that the opening contour of the placement slot 211 is adapted to the outer edge contour of the base 3. In this embodiment, the base 3 is a rectangular plate structure, and correspondingly, the opening contour of the placement slot 211 is also a rectangular opening structure. At this time, when the base 3 is placed in the placement slot 211, the base 3 can be positioned inside the frame 21.

[0054] In addition, the slider 22 is located at the bottom of the frame 21. Normally, the slider 22 is fixedly located on the frame 21. At the same time, the slide rail 23 is located on the frame 1. Normally, the slide rail 23 is fixed on the frame 1, and the slider 22 slides and cooperates with the slide rail 23.

[0055] Based on the above settings, the frame 21 provides assembly positioning for the base 3. At this time, with the sliding cooperation of the slider 22 and the slide rail 23, the base 3 can be smoothly guided to move to the outside of the frame 1. The base 3 can move synchronously with the movement of the frame 21, so as to facilitate the safe replacement of the base 3.

[0056] Furthermore, to facilitate the removal of the base 3 from the placement slot 211, a perforated hole is provided through the bottom of the frame 21, allowing the user to push the base 3 out from the top of the bottom frame through the perforated hole, thus facilitating the disassembly of the base 3.

[0057] Reference Figure 3 The sliding assembly 2 also includes a separation spring 24, the two ends of which are connected to the frame 21 and the frame 1 respectively. When the first limiting assembly 4 is in the unlocked state, the separation spring 24 is used to pop the frame 21 out of the frame 1.

[0058] Specifically, the separation spring 24 is located on the side of the frame 21 away from the user's location, and both ends of the separation spring 24 are fixedly connected to the frame 21 and the frame 1, respectively. It can be understood that the first limiting component 4 has two states:

[0059] In the first state, the frame 21 is located inside the frame 1 and the frame 21 compresses the separation spring 24. At this time, the first limiting component 4 locks the frame 21 in place to prevent the frame 21 from moving to the outside of the frame 1.

[0060] In the second state, the first limiting component 4 is unlocked. At this time, neither the separation spring 24 nor the frame 21 is subject to external force constraint. Therefore, the separation spring 24 extends, and the frame 21 can move to the outside of the frame 1 on its own under the drive of the separation spring 24, realizing the pop-out action. During this process, the operator does not need to pull the base 3 out to the outside of the frame 1, making the disassembly work safer and more convenient.

[0061] Furthermore, the frame 1 has a receiving groove 11. Specifically, the receiving groove 11 is recessed at the top platform of the frame 1, and the receiving groove 11 has an opening on one side of the frame 1. The base 3 and the sliding assembly 2 are located in the receiving groove 11, and the base 3 enters the frame 1 or moves away from the frame 1 from the opening on one side of the receiving groove 11.

[0062] Based on the above configuration, the receiving slot 11 can accommodate the base 3 and the sliding assembly 2, making the structure more compact. Furthermore, when the base 3 is located on the frame 1, the top of the base 3 is flush with the surface of the frame 1. This allows the carrier and heat transfer film to have sufficient area to be spread out and laid flat on the base 3 and frame 1, so that the heat pressing module can smoothly heat transfer the carrier and heat transfer film.

[0063] Reference Figure 4 In some embodiments, the first limiting component 4 includes a first limiting block 41 and a first spring 42. The first limiting block 41 is slidably disposed on the frame 1, and the first spring 42 is connected to both the first limiting block 41 and the frame 1. When the first spring 42 is in its natural state, it pushes the first limiting block 41 to abut against the sliding component 2, thereby limiting the displacement of the base 3 and the sliding component 2 to the outside of the frame 1.

[0064] Specifically, a first mounting groove 43 is vertically provided on the frame 1. One end of the first mounting groove 43 opens at the side wall of the receiving groove 11, and at the same time, one side of the first mounting groove 43 opens at the outer wall of the frame 1, and is in the shape of an elongated groove. At this time, the first limiting block 41 is slidably disposed in the first mounting groove 43, and the end of the first limiting block 41 can reciprocate in and out of the receiving groove 11 through the end of the first mounting groove 43. A first lever can also be detachably disposed on the first limiting block 41. The first lever is usually disposed on the first limiting block 41 by means of a threaded connection. The first lever extends to the outside of the frame 1 through the opening on one side of the first mounting groove 43. At this time, by reciprocating the first lever, the first limiting block 41 can be controlled to slide back and forth in the first mounting groove 43.

[0065] Based on this, the first spring 42 is located in the first mounting groove 43, and the first spring 42 is also located on the side of the first limiting block 41 away from the receiving groove 11. The two ends of the first spring 42 are respectively connected to the first limiting block 41 and the groove wall of the first mounting groove 43.

[0066] Based on the above settings, when the first spring 42 is not subjected to external force, that is, when the first spring 42 is naturally extended, the first limiting block 41 is pushed to extend into the receiving groove 11. At this time, if the sliding component 2 and the base 3 are located in the frame 1, one side of the first limiting block 41 abuts against the frame 21, thereby restricting the frame 21 from leaving the frame 1. When it is necessary to replace the base 3, it can be achieved simply by moving the first limiting block 41. The operation is quick and convenient.

[0067] Furthermore, the first limiting block 41 has a first inclined surface 411 that slides against the sliding component 2. When the sliding component 2 moves into the frame 1, the sliding component 2 pushes the first limiting block 41 to avoid it by itself through the first inclined surface 411.

[0068] Based on the above settings, the first inclined surface 411 can drive the first limiting block 41 to move aside during the process of assembling the base 3 into the sliding component 2, until the sliding component 2 drives the base 3 to completely enter the frame 1, thus optimizing and improving the ease of operation of the sliding component 2.

[0069] In addition, refer to Figure 5 In some embodiments, the second limiting component 5 includes a second limiting block 51 and a second spring 52. The second limiting block 51 is slidably disposed on the sliding component 2. The base 3 has a limiting groove 31. The second limiting block 51 is inserted into the limiting groove 31. The second spring 52 is connected to the sliding component 2 and the second limiting block 51 respectively. When the second spring 52 is in its natural state, the second spring 52 pushes the second limiting block 51 to insert into the limiting groove 31.

[0070] Specifically, a second mounting groove 53 is provided on the frame 21. The second mounting groove 53 is horizontally arranged. One end of the second mounting groove 53 opens at the side wall of the placement groove 211. At the same time, one side of the second mounting groove 53 opens at the outer wall of the frame 1 and is in the shape of a long groove. The second limiting block 51 is slidably disposed in the second mounting groove 53, and the end of the second limiting block 51 can reciprocate in and out of the placement groove 211 through the end of the second mounting groove 53, and can also be inserted and cooperate with the limiting groove 31. In addition, a second lever is detachably provided on the second limiting block 51. For example, they can be assembled with each other by means of threaded connection. The second lever extends out of the frame 21 through the opening on one side of the second mounting groove 53. By reciprocating the second lever, the second limiting block 51 can be controlled to slide back and forth in the second mounting groove 53.

[0071] Based on this, the second spring 52 is located in the second mounting groove 53, and the second spring 52 is also located on the side of the second limiting block 51 away from the placement groove 211. The two ends of the second spring 52 abut against the second limiting block 51 and the groove wall of the second mounting groove 53, respectively.

[0072] Based on the above settings, when the second spring 52 is not subjected to external force, that is, when the second spring 52 is naturally extended, the second limiting block 51 is pushed to extend into the placement groove 211 and can be inserted into the limiting groove 31, thereby limiting the base 3 and making it difficult for the base 3 to loosen from the frame 21. When it is necessary to disassemble the base 3, it is only necessary to pull the second limiting block 51 to move it, so that the second limiting block 51 can be released from the limiting groove 31. The operation is quick and convenient.

[0073] Furthermore, the second limiting block 51 has a second inclined surface 511 that slides against the base 3. During the process of the base 3 being placed into the placement slot 211, the base 3 pushes the second limiting block 51 to avoid it by means of the second inclined surface 511.

[0074] Based on the above scheme, the second inclined surface 511 can drive the second limiting block 51 to avoid the base 3 during the process of assembling the base 3 into the sliding component 2, until the base 3 is fully assembled in the placement slot 211, thus optimizing and improving the ease of installation of the base 3.

[0075] The implementation principle of a detachable heat press machine base module in this application embodiment is as follows: When it is necessary to disassemble and replace the base 3, the first limiting component 4 can be moved to unlock the sliding component 2, so that the sliding component 2 can drive the base 3 to move to the outside of the frame 1. Then, the second limiting component 5 can be moved to unlock the base 3. At this time, the old base 3 is taken out and the new base 3 is placed in the placement slot 211. Then, the second limiting component 5 is operated again to restrict the base 3 within the sliding component 2. At this time, the base 3 is not easy to loosen. Then, the sliding component 2 and the base 3 are pushed back into the frame 1. Under the action of the first limiting component 4, the base 3 is restricted to the frame 1 by the sliding component 2, and the base 3 realizes the disassembly and replacement function.

[0076] 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 detachable heat press machine base module, characterized in that: include: Rack (1); A sliding assembly (2) is disposed on the frame (1), and the sliding assembly (2) has a placement groove (211); The base (3) is placed in the placement slot (211), and the sliding component (2) is used to drive the base (3) to reciprocate on the inner and outer sides of the frame (1); A first limiting component (4) is disposed on the frame (1) for movably locking the sliding component (2) and the base (3) onto the frame (1); And a second limiting component (5), disposed in the sliding component (2), for movably locking the base (3) in the placement groove (211).

2. The detachable iron painting machine base module according to claim 1, characterized in that: The sliding component (2) includes: A frame (21), wherein the placement slot (211) is located in the frame (21) and has an opening at the top of the frame (21); A slider (22) is located at the bottom of the frame (21); And a slide rail (23) is provided on the frame (1), and the slider (22) slides and cooperates with the slide rail (23).

3. The modular base unit of claim 2, wherein: The sliding assembly (2) also includes a separation spring (24), the two ends of which are connected to the frame (21) and the frame (1) respectively. When the first limiting assembly (4) is in the unlocked state, the separation spring (24) is used to pop the frame (21) out of the frame (1).

4. The detachable hot stamping machine base module according to any one of claims 1-3, characterized in that: The frame (1) has a receiving groove (11), the base (3) and the sliding assembly (2) are located in the receiving groove (11), and when the base (3) is on the frame (1), the top of the base (3) is flush with the surface of the frame (1).

5. The detachable iron painting machine base module according to claim 1, characterized in that: The first limiting component (4) includes: The first limiting block (41) is slidably disposed on the frame (1); The first spring (42) is connected to the first limiting block (41) and the frame (1) respectively. When the first spring (42) is in its natural state, the first spring (42) pushes the first limiting block (41) to abut against the sliding assembly (2) to limit the displacement of the base (3) and the sliding assembly (2) to the outside of the frame (1).

6. The modular base unit of claim 5, wherein: The first limiting block (41) has a first inclined surface (411) that slides against the sliding component (2). When the sliding component (2) moves into the frame (1), the sliding component (2) pushes the first limiting block (41) to avoid it by itself through the first inclined surface (411).

7. The modular base unit of claim 1, wherein: The second limiting component (5) includes: The second limiting block (51) is slidably disposed on the sliding component (2), and the base (3) has a limiting groove (31), and the second limiting block (51) is inserted into the limiting groove (31). The second spring (52) is connected to the sliding assembly (2) and the second limiting block (51) respectively. When the second spring (52) is in its natural state, the second spring (52) pushes the second limiting block (51) into the limiting groove (31).

8. The modular base unit of claim 7, wherein: The second limiting block (51) has a second inclined surface (511) that slides against the base (3). During the process of the base (3) being placed into the placement slot (211), the base (3) pushes the second limiting block (51) to avoid it by itself through the second inclined surface (511).