Pressing machine used on table top

By designing the support legs and arranging the heat dissipation components in a partitioned manner, the problems of bulky movement and insufficient heat dissipation of desktop presses are solved, achieving a balance between portability and stability, and improving the applicability of the equipment in multiple scenarios and its long-term reliability.

CN224059788UActive Publication Date: 2026-03-31TIGER ROBOT TECH (JIANGSU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional desktop presses have significant drawbacks in terms of portability and heat dissipation, resulting in poor environmental adaptability, insufficient portability, and decreased stability and accuracy.

Method used

The frame adopts a support design, including a linkage structure of support blocks, rollers, pads and moving parts, which enables the frame to quickly switch between moving and fixed modes. The heat dissipation parts and the pushing parts are placed in different areas to enhance heat dissipation and structural stability.

Benefits of technology

It enables the press to operate stably and be easily moved in multiple scenarios, reduces the risk of heat buildup, extends equipment life, improves environmental adaptability and operational reliability, and reduces production and maintenance costs.

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Abstract

The utility model relates to a pressing machine used on a table top. The pressing machine comprises a frame, a workbench arranged in the middle of the frame, a support arranged on the workbench, a pushing piece arranged on the support, a heat dissipation piece for dissipating heat in the frame and supporting legs facilitating fixing and moving of the frame. The supporting legs are arranged at four legs of the frame; the workbench divides the frame into a first space and a second space. The support and the pushing piece are arranged in the first space; the heat dissipation piece is arranged in the second space. The problems that a table top pressing machine mostly adopts a fixed structure or a simple supporting leg design, so that the environment adaptability is poor, equipment is heavy and is lack of portable design (such as a folding handle and a lockable universal wheel), and the equipment is difficult to quickly transfer in a narrow workshop and a multi-workbench scene are solved; the contradiction between stability and portability is that the mobility of part of products is improved through light weight, but the structural stability of a press during operation is sacrificed, and the precision is easily reduced due to vibration.
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Description

Technical Field

[0001] This utility model relates to the field of presses, and more particularly to a press for desktop use. Background Technology

[0002] In existing technologies, desktop presses, as small pressure devices, are widely used in industrial manufacturing, electronic assembly, and manual processing for material pressing, parts assembly, and precision machining. However, traditional desktop presses have significant shortcomings in terms of mobility and heat dissipation, limiting their application scenarios and long-term reliability. Most existing desktop presses employ fixed structures or simple support leg designs, leading to the following problems: poor environmental adaptability: the equipment is bulky and lacks portable design (such as folding handles or lockable casters), making it difficult to move quickly in narrow workshops or multi-workbench scenarios; a conflict between stability and portability: some products improve mobility through lightweighting, but sacrifice structural stability during operation, making them prone to decreased accuracy due to vibration. Utility Model Content

[0003] This application provides a desktop press, which solves the problems caused by the fixed structure or simple support design of desktop presses in the prior art, such as poor environmental adaptability: the equipment is bulky and lacks portable design (such as folding handles and lockable casters), making it difficult to move quickly in narrow workshops or multi-workbench scenarios; the contradiction between stability and portability: some products improve mobility by being lightweight, but sacrifice the structural stability of the press during operation, which is prone to decrease in accuracy due to vibration.

[0004] The technical solutions adopted in the embodiments of this application are as follows.

[0005] A press for desktop use includes a frame, a worktable disposed in the middle of the frame, a support disposed on the worktable, a pusher disposed on the support, a heat sink for dissipating heat within the frame, and legs for facilitating fixing and moving the frame; the legs are disposed at the four corners of the frame; the worktable divides the frame into a first space and a second space; the support and the pusher are disposed in the first space; the heat sink is disposed in the second space.

[0006] As a further improvement to the above technical solution: the support leg includes a support block, a roller rotating on the support block, a pad supporting the frame, and a moving member that drives the pad to move up and down; the pad moves up and down along the support block; the moving member rotates on the support block and is threaded through the pad.

[0007] As a further improvement to the above technical solution: rotating the moving part causes the pad to move up and down; when the bottom of the pad is at its lowest point, the pad contacts the ground, and the frame is fixed; when the bottom of the pad is at its highest point, the roller contacts the ground, and the frame moves.

[0008] As a further improvement to the above technical solution: the support block is rotatable on the frame.

[0009] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0010] 1. Utilizing a linkage design between the casters and pads on the support legs, the rotating moving parts allow for rapid switching between mobile and stationary modes. This solves the problems of traditional presses being cumbersome and prone to displacement, while also avoiding the stability degradation caused by lightweight design, ensuring the press is stable during operation and portable when moved. The worktable divides the frame into a first and second space, with the pushing and heat dissipation components located in different areas to prevent heat from spreading to the working area. The concentrated heat dissipation components provide forced cooling to the second space, specifically reducing the temperature of the motor and hydraulic system, minimizing the risk of downtime due to heat buildup, and extending equipment lifespan. Enhanced environmental adaptability: The rotatable support block design allows the legs to automatically adjust their angle according to the flatness of the ground. Combined with the increased contact surface of the pad, it ensures stable fixation on rough or tilted tabletops, improving applicability in multiple scenarios; Compact structure and integrated functions: The legs integrate rollers, pads, and adjustment mechanisms into one unit, allowing for state switching without external auxiliary tools, saving space and simplifying operation; The heat sink and core components are isolated, reducing vibration transmission interference with heat dissipation performance and ensuring long-term operational reliability; The modular leg design reduces component wear caused by frequent movement, and the centralized maintenance of the heat sink facilitates overall structural simplification, reducing production and subsequent maintenance costs. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the press used on a desktop in this utility model.

[0012] Figure 2 This is a schematic diagram of the press used on a desktop in this utility model.

[0013] Figure 3 for Figure 1 A magnified view of part A in the image.

[0014] In the diagram: 1. Frame; 2. Workbench; 21. First space; 22. Second space; 3. Support; 4. Pushing component; 5. Heat dissipation component; 6. Support leg; 61. Support block; 62. Roller; 63. Pad; 64. Moving component. Detailed Implementation

[0015] This application provides a desktop press, which solves the problems caused by the fixed structure or simple support design of desktop presses in the prior art, such as poor environmental adaptability: the equipment is bulky and lacks portable design (such as folding handles and lockable casters), making it difficult to move quickly in narrow workshops or multi-workbench scenarios; the contradiction between stability and portability: some products improve mobility by being lightweight, but sacrifice the structural stability of the press during operation, which is prone to decrease in accuracy due to vibration.

[0016] The technical solution in this application embodiment is to solve the above problems, and the overall idea is as follows:

[0017] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.

[0018] A press for desktop use includes a frame 1, a worktable 2 disposed in the middle of the frame 1, a support 3 disposed on the worktable 2, a pusher 4 disposed on the support 3, a heat sink 5 for dissipating heat within the frame 1, and legs 6 for facilitating fixing and moving the frame 1; the legs 6 are disposed at the four corners of the frame 1; the worktable 2 divides the frame 1 into a first space 21 and a second space 22; the support 3 and the pusher 4 are disposed in the first space 21; the heat sink 5 is disposed in the second space 22.

[0019] The support leg 6 includes a support block 61, a roller 62 rotating on the support block 61, a pad 63 supporting the frame 1, and a moving member 64 that drives the pad 63 to move up and down; the pad 63 moves up and down along the support block 61; the moving member 64 rotates on the support block 61 and is threaded through the pad 63.

[0020] The rotating moving part 64 drives the pad 63 to move up and down; when the bottom of the pad 63 is at its lowest point, the pad 63 contacts the ground, and the frame 1 is fixed; when the bottom of the pad 63 is at its highest point, the roller 62 contacts the ground, and the frame 1 moves.

[0021] The support block 61 is rotatable on the frame 1.

[0022] Thanks to the linkage design between the rollers 62 and pads 63 via the support legs 6, the rotating moving component 64 allows the frame 1 to quickly switch between moving and fixed modes. This solves the problems of traditional presses being bulky and prone to displacement, while also avoiding the stability loss caused by lightweight design, ensuring the press is stable during operation and portable when moving. The worktable 2 divides the frame 1 into a first space 21 and a second space 22. The pushing component 4 and the heat dissipation component 5 are placed in different areas to prevent heat from spreading to the working area. The heat dissipation component 5 provides concentrated forced cooling to the second space 22, which can specifically reduce the temperature of the motor and hydraulic system, reduce the risk of downtime due to heat accumulation, and extend the equipment's lifespan. Enhanced environmental adaptability: The rotatable design of the support block 61 allows the legs 6 to automatically adjust their angle according to the flatness of the ground. Combined with the increased contact surface of the pad block 63, it ensures stable fixation on rough or tilted tabletops, improving applicability in multiple scenarios; Compact structure and integrated functions: The legs 6 integrate the rollers 62, pad block 63, and adjustment mechanism into one unit, allowing for state switching without the need for external auxiliary tools, saving space and simplifying operation; The heat sink 5 is isolated from the core components, reducing the interference of vibration transmission on heat dissipation performance and ensuring long-term operational reliability; The modular design of the legs 6 reduces component wear caused by frequent movement, and the centralized maintenance of the heat sink 5 facilitates overall structural simplification, reducing production and subsequent maintenance costs.

[0023] Although preferred embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention.

[0024] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A press for use on a table, characterized in that The utility model provides a frame (1), workbench (2) setting in the middle of the frame (1), support (3) setting on the workbench (2), pusher (4) setting on the support (3), heat dissipation piece (5) to the heat dissipation in the frame (1) and the support (6) of facilitating fixed and remove the frame (1), the support (6) sets up at the four legs of the frame (1), the workbench (2) divides the frame (1) into first space (21) with second space (22), the support (3), pusher (4) set up in first space (21), heat dissipation piece (5) set up in second space (22).

2. Press for tables as in claim 1, characterized in that, The support (6) includes support block (61), gyro wheel (62) on the support block (61), the cushion block (63) of supporting the frame (1) and the moving piece (64) of driving the cushion block (63) up and down, the cushion block (63) moves up and down along the support block (61), the moving piece (64) is rotated on the support block (61) and the moving piece (64) is screwed in the cushion block (63).

3. Press for tables as claimed in claim 2, characterized in that, Rotating the moving piece (64) drives the cushion block (63) to move up and down, when the bottom of the cushion block (63) is at the lowest point, the cushion block (63) contacts the ground, at this time, the frame (1) is fixed, when the bottom of the cushion block (63) is at the highest point, the gyro wheel (62) contacts the ground, at this time, the frame (1) moves.

4. The press for use on a table top as claimed in claim 2, wherein, The support block (61) can be rotated on the frame (1).