Press fitting equipment

By introducing elastic components and pressure sensing devices into the press-fitting equipment, the pressure can be adjusted in real time, solving the quality and consistency problems of existing riveting devices in probe processing and realizing high-precision flexible press-fitting.

CN223833871UActive Publication Date: 2026-01-27SUZHOU FORKINS ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202423323873.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing riveting devices have difficulty ensuring product quality and production consistency when processing probes, and their adaptability is poor, failing to meet the requirements of high-precision processing.

Method used

The press-fitting equipment includes a pressurizing component, a pressure sensing device, an elastic component, and a driving component. It achieves flexible pressurization through the elastic deformation of the elastic element, and detects and adjusts the pressure value in real time to avoid excessive or insufficient pressure.

Benefits of technology

It improves product yield, ensures processing stability and consistency, adapts to probe products of different specifications or sizes, and meets the needs of high-precision processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides press-fitting equipment, and relates to the field of workpiece machining, the press-fitting equipment comprises a pressurizing assembly, a pressure sensing device, an elastic assembly and a driving assembly, the pressurizing assembly is used for abutting against a product to be machined; the driving assembly is in transmission connection with the elastic assembly and the pressurizing assembly, the pressurizing assembly is connected with the pressure sensing device, and the pressure sensing device is used for detecting the value of pressure applied to the to-be-machined product by the pressurizing assembly; the driving assembly drives the pressurizing assembly to move in the direction close to the to-be-machined product through the elastic assembly, and an elastic piece in the elastic assembly generates elastic deformation so that the compression amount of the elastic piece can be increased. Thus, the pressure sensing device can detect the value of the pressure applied by the pressurizing assembly in real time, product damage caused by too large pressure or the machining quality problem caused by insufficient pressure is avoided, the elastic piece can deform according to the applied pressure, too large instantaneous impact force can be absorbed, damage to the to-be-machined product is avoided, and the product yield is increased.
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Description

Technical Field

[0001] This application relates to the field of workpiece processing, and more particularly to a press-fitting device. Background Technology

[0002] As a key component in precision electronic components, the quality of the probe's end face machining directly affects the product's contact performance and lifespan. Riveting the probe's end face is a common manufacturing process, relying on precise downward pressure to achieve plastic deformation and meet product design requirements. However, due to the small size and high precision requirements of the probe, existing riveting devices have significant defects in the manufacturing process, making it difficult to guarantee product quality and production consistency.

[0003] Common riveting methods on the market typically employ rigidly fixed press-fit components, achieving riveting through Z-axis lifting motion or other structures. While this design is simple, its performance is easily affected by the accuracy of the Z-axis movement and the dimensional accuracy of the product height. Even slight deviations in the Z-axis trajectory or product height can lead to uneven riveting force, poor deformation, and other problems, severely impacting processing yield and product consistency. Furthermore, existing riveting devices have poor adaptability to probe products of different specifications or sizes, making it difficult to meet high-precision processing requirements. Utility Model Content

[0004] The purpose of this application is to address at least one of the aforementioned existing technical problems by providing a press-fitting device that uses flexible pressure to press the product to be pressurized by setting up an elastic element, thereby improving the product press-fitting yield.

[0005] This application provides a pressing device, which includes a pressurizing component, a pressure sensing device, an elastic component, and a driving component. The pressurizing component is used to contact the product to be processed.

[0006] The drive assembly is connected to the elastic assembly and the pressurizing assembly respectively. The pressurizing assembly is connected to the pressure sensing device, which is used to detect the pressure value applied by the pressurizing assembly to the product to be processed.

[0007] The driving component drives the pressurizing component to move in a direction closer to the product to be processed through the elastic component, and the elastic element in the elastic component undergoes elastic deformation to increase the compression of the elastic element.

[0008] In a possible implementation, the pressing device further includes an adjustment mechanism, which is kinetically connected to the elastic component.

[0009] The adjustment mechanism is also equipped with a measuring device for displaying the compression amount of the elastic element.

[0010] In a possible implementation, the pressing device further includes a spring stop and a spring mounting base, the spring mounting base being used to support the elastic element, and the spring stop being disposed between the adjusting mechanism and the spring mounting base.

[0011] In a possible implementation, a limiting fastener is provided inside the spring mounting base, and the limiting fastener is detachably connected to the elastic element.

[0012] In a possible implementation, the pressurization device includes a pressure sensor mounting base, and the pressurization assembly includes a pressure head mounting base and a pressure head;

[0013] The pressure sensor mounting base and the pressure head mounting base are fixedly connected, the pressure sensor mounting base and the pressure sensing device are fixedly connected, and the pressure head mounting base and the pressurizing assembly are fixedly connected.

[0014] In a possible implementation, the pressing device further includes a slide rail assembly and a mounting base, wherein the pressure sensor mounting base is slidably connected to the mounting base via the slide rail assembly.

[0015] In a possible implementation, the press-fitting device includes at least one fastener disposed between the slide rail assembly and the pressure sensor mounting base.

[0016] In a possible implementation, the at least one fixing member includes a first fixing member and a second fixing member, which are symmetrically arranged with respect to the pressure sensor mounting base.

[0017] In a possible implementation, the pressing device further includes reinforcing ribs disposed between the mounting base and the adjusting mechanism.

[0018] In a possible implementation, the slide rail assembly includes a linear guide rail, a slider, a first limiting block, and a second limiting block;

[0019] The linear guide rail is fixedly connected to the mounting base, the slider is fixedly connected to the pressure sensor mounting base, the first limiting block and the second limiting block are fixedly connected to the linear guide rail, and the slider can slide between the first limiting block and the second limiting block.

[0020] The press-fitting equipment provided in this application has the following beneficial effects:

[0021] This application provides a press-fitting device, relating to the field of workpiece processing. The press-fitting device includes a pressurizing component, a pressure sensing device, an elastic component, and a driving component. The pressurizing component is used to contact the product to be processed. The driving component is connected to both the elastic component and the pressurizing component. The pressurizing component is connected to the pressure sensing device, which detects the pressure applied by the pressurizing component to the product to be processed. The driving component drives the pressurizing component to move closer to the product to be processed via the elastic component. The elastic element in the elastic component undergoes elastic deformation, increasing its compression. Thus, the pressure sensing device can detect the pressure applied by the pressurizing component in real time, avoiding product damage due to excessive pressure or processing quality problems due to insufficient pressure. The elastic element can deform according to the applied pressure, absorbing excessive instantaneous impact force and preventing damage to the product to be processed, thereby improving product yield. Attached Figure Description

[0022] To more clearly illustrate the technical solution of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of the pressing equipment in an embodiment of this utility model;

[0024] Figure 2 This is a front view of the pressing equipment in an embodiment of this utility model;

[0025] Figure 3 This is a side view of the pressing equipment in an embodiment of this utility model;

[0026] Figure 4 This is a side view of the pressing equipment in an embodiment of this utility model;

[0027] Figure 5 This is a cross-sectional view of the pressing equipment in an embodiment of this utility model.

[0028] The following is supplementary explanation of the attached figures:

[0029] 10. Pressure sensing device; 11. Pressure sensor mounting base; 151. First slider; 152. Second slider; 153. First limiting block; 154. Second limiting block; 16. First fixing component; 17. Second fixing component; 18. Reinforcing rib; 20. Adjustment mechanism; 21. Micrometer mounting base; 22. Adjustment knob; 30. Elastic component; 31. Spring stop; 40. Pressurization assembly; 41. Pressure head mounting base; 42. Pressure head; 50. Mounting base. Detailed Implementation

[0030] The technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0031] As used herein, "an embodiment" or "embodiment" refers to a specific feature, structure, or characteristic that may be included in at least one implementation of this application. In the description of this application, it should be understood that the terms "upper," "lower," "top," "bottom," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are used only for the convenience of describing this application and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0032] The following describes a pressing device provided by an embodiment of this application with reference to the accompanying drawings. The pressing device of this application is particularly suitable for scenarios involving probe processing.

[0033] Please see Figure 1-5 This application provides a press fitting device, which includes a pressurizing component 40, a pressure sensing device 10, an elastic component and a driving component, wherein the pressurizing component 40 is used to contact the product to be processed.

[0034] The drive assembly is connected to the elastic assembly and the pressurizing assembly 40 respectively. The pressurizing assembly 40 is connected to the pressure sensing device 10. The pressure sensing device 10 is used to detect the pressure value applied by the pressurizing assembly 40 to the product to be processed.

[0035] The drive assembly drives the pressurizing assembly 40 to move closer to the product to be processed via the elastic component. The elastic element 30 in the elastic component undergoes elastic deformation, increasing its compression. The pressure sensing device 10 can detect the pressure applied by the pressurizing assembly 40 in real time, preventing product damage due to excessive pressure or processing quality problems due to insufficient pressure. The elastic element 30 deforms according to the applied pressure, absorbing excessive instantaneous impact force to avoid damage to the product to be processed and improve processing stability.

[0036] Specifically, the products to be processed include probes, electronic components, connectors, sensor elements, and so on.

[0037] Specifically, the drive assembly is used to drive the pressurizing assembly 40 to apply pressure to the product to be processed. The pressurizing assembly 40 includes a pressure head 42, which is detachably connected to a pressure head mounting base 41. The pressure head 42 directly contacts the product to be processed to apply pressure. In this embodiment, the pressure sensing device 10 includes a pressure sensor, and the pressure sensor mounting base 11 is connected to the pressurizing assembly 40 to detect the pressure applied by the pressurizing assembly 40 to the product to be processed in real time. The pressure sensor is communicatively connected to a terminal to feed back the real-time pressure value to the terminal. The press-fitting equipment also includes a control system, which adjusts the action of the drive assembly based on the pressure feedback to ensure the stability and accuracy of pressurization.

[0038] Specifically, the elastic component includes an elastic element 30, which can generate required elastic deformation when pressure is applied to support the movement of the pressurizing component 40. The driving component is used to drive the movement of the pressurizing component 40. In the embodiments of this application, the driving method is Z-axis motor drive; in other embodiments, the driving method is hydraulic drive or pneumatic drive.

[0039] Specifically, during the retraction process, the drive component drives the pressure component 40 to move away from the product to be processed through the elastic component. The elastic element 30 in the elastic component restores its elastic deformation, ensuring the separation between the pressure component 40 and the product to be processed.

[0040] Furthermore, the pressing equipment also includes an adjusting mechanism 20, which is connected to the elastic component via a transmission connection. The adjusting mechanism 20 is also equipped with a measuring device for displaying the compression amount of the elastic component 30. The measuring device can directly display the compression amount of the elastic component 30 to accurately control the deformation of the elastic component 30, thereby indirectly controlling the pressure applied by the pressing component 40.

[0041] The adjustment mechanism 20 allows the initial position or compression range of the elastic element 30 to be adjusted according to product and process requirements to adapt to different pressure demands.

[0042] Specifically, in this embodiment, the adjusting mechanism 20 is a high-precision micrometer. The high-precision micrometer abuts against the spring block. When the high-precision micrometer moves towards or away from the product to be processed, it drives the spring block to reciprocate. The spring block should move synchronously with the micrometer. Under the adjustment of the high-precision micrometer, the spring block can move along its axial direction, thereby increasing or decreasing the compression of the spring. One end of the spring is connected to the pressure assembly 40, and the other end is connected to the spring block.

[0043] Specifically, the adjustment mechanism 20 also includes an adjustment knob 22, which is used to adjust the extension or retraction length of the high-precision micrometer.

[0044] Furthermore, the press-fitting equipment also includes a spring stop 31 and a spring mounting base. The spring mounting base supports the elastic element 30, and the spring stop 31 is positioned between the adjusting mechanism 20 and the spring mounting base. In this way, the spring mounting base reduces the possibility of the elastic element 30 shifting or dislodging during operation, ensuring that the elastic element 30 always remains in the correct axial position and preventing abnormal deformation due to uneven force.

[0045] In one embodiment, such as Figure 5 As shown, the elastic element 30 is housed in the press-fitting equipment and is not exposed to the operator's view. The spring mounting seat is used to support the elastic element 30, ensuring that the elastic element 30 can work stably and support its elastic deformation. The spring stop 31 is used to limit the range of motion of the elastic element 30, ensuring that the elastic element 30 will not exceed the preset compression amount or deformation range.

[0046] Specifically, the adjustment mechanism 20 includes a micrometer mounting base 21, and a spring stop 31 is fixedly connected to the micrometer mounting base 21.

[0047] Furthermore, a limiting fastener is provided inside the spring mounting base, and the limiting fastener is detachably connected to the elastic element 30. In this way, the limiting fastener simplifies the installation and removal process of the elastic element 30, eliminating the need for additional processing of the mounting base, reducing maintenance and operation difficulty, and making the replacement process faster and more efficient, thus reducing equipment downtime.

[0048] Specifically, in the embodiments of this specification, the limiting fastener includes a round-headed pin, and both the round-headed pin and the elastic element 30 are disposed within the spring mounting seat.

[0049] Furthermore, the pressurization equipment includes a pressure sensor mounting base 11, and the pressurization assembly 40 includes a pressure head mounting base 41 and a pressure head 42; the pressure sensor mounting base 11 and the pressure head mounting base 41 are fixedly connected, the pressure sensor mounting base 11 and the pressure sensing device 10 are fixedly connected, and the pressure head mounting base 41 and the pressurization assembly 40 are fixedly connected. Thus, the fixed connection between the pressure sensor mounting base 11 and the pressure head mounting base 41 forms a robust integral structure, effectively resisting vibrations and impacts generated during equipment operation, ensuring that the pressure sensing device 10 maintains an accurate position during operation, and avoiding measurement errors due to loosening.

[0050] Specifically, the pressure sensor and the pressure sensor mounting base 11 are fixedly connected, the pressure sensor mounting base 11 is fixedly connected to the pressurizing assembly 40, the support surface of the pressure sensor faces the pressurizing assembly 40, and the support surface of the pressure sensor, the pressure head mounting base 41 and the pressure head 42 are connected in sequence.

[0051] Optionally, the pressure sensor mounting base 11 and the pressurization assembly 40 can be connected by welding or fastener fixing.

[0052] Furthermore, the press-fitting equipment also includes a slide rail assembly and a mounting base 50, with the pressure sensor mounting base 11 slidably connected to the mounting base 50 via the slide rail assembly. In this way, the pressure sensor mounting base 11 can slide on the slide rail assembly, which allows for rapid adjustment. The slide rail connection makes the positioning process more intuitive and controllable, reduces deviations introduced by manual adjustments, and ensures the consistency and reliability of the press-fitting operation.

[0053] Specifically, the slide rail assembly includes a slide rail and a slider. In this embodiment, the slide rail assembly includes a linear guide rail and a guide rail mounting plate. The linear guide rail is fixedly connected to the mounting base 50. The mounting base 50 is used to fix the pressurizing component 40 and the pressure sensing device 10. The guide rail mounting plate is fixedly connected to the pressure sensor mounting base 11. The slider is fixedly connected to the guide rail mounting plate. The slider drives the pressure sensing device 10 to slide relative to the linear guide rail.

[0054] Furthermore, the press-fitting equipment includes at least one fixing component, which is disposed between the slide rail assembly and the pressure sensor mounting base 11. In this way, the fixing component increases the overall rigidity of the connection between the slide rail assembly and the pressure sensor mounting base 11, making the equipment more stable and reliable during use. It also effectively fixes the moving parts of the slide rail assembly, preventing the accumulation of errors caused by repeated sliding adjustments and improving processing consistency.

[0055] Specifically, the fastener is used to ensure a stable connection between the slide rail assembly and the pressure sensor mounting base 11. The fastener is provided between the pressure sensor mounting base 11 and the guide rail mounting plate. During the sliding process, the pressure sensor assembly, the fastener, and the guide rail mounting plate slide relative to the linear guide rail.

[0056] Specifically, the fasteners are made of high-strength, corrosion-resistant, dustproof, and waterproof materials.

[0057] Specifically, at least one fixing member includes a first fixing member 16 and a second fixing member 17, which are symmetrically arranged about the pressure sensor mounting base 11. In this way, the symmetrically arranged first fixing member 16 and second fixing member 17 can apply a uniform locking force to the pressure sensor mounting base 11, avoiding uneven force distribution caused by single-point fixing, thereby improving the overall stability of the connection.

[0058] like Figure 3 and Figure 4As shown, both the first fixing member 16 and the second fixing member 17 are reinforcing members. The first fixing member 16 and the second fixing member 17 are used to ensure a stable connection between the pressure sensor mounting base 11 and the slide rail assembly. The first fixing member 16 and the second fixing member 17 should be symmetrically installed on both sides of the pressure sensor mounting base 11 to ensure uniform pressure distribution and maintain the balance of the equipment structure. The first fixing member 16 and the second fixing member 17 are connected to both sides of the pressure sensor mounting base 11 by means of bolts, rivets or welding.

[0059] Furthermore, the press-fitting equipment also includes reinforcing ribs 18, which are disposed between the mounting base 50 and the adjusting mechanism 20. Thus, the reinforcing ribs 18 increase the structural support, improve the bending resistance between the mounting base 50 and the adjusting mechanism 20, prevent deformation due to long-term use or high-pressure operation, enhance the equipment's ability to withstand lateral shear forces, and avoid displacement or damage between components.

[0060] Specifically, in the embodiments of this specification, the reinforcing rib 18 is disposed between the mounting base 50 and the micrometer mounting base 21, and the reinforcing rib 18 is in close contact with the contact surfaces of the mounting base 50 and the adjustment mechanism 20.

[0061] Optionally, the mounting base 50 and the adjustment mechanism 20 can be connected to the reinforcing rib 18 by welding, bolting, nut fixing, or clamp fixing.

[0062] Furthermore, the slide rail assembly includes a linear guide rail, a slider, a first limiting block 153, and a second limiting block 154. The linear guide rail is fixedly connected to the mounting base 50, the slider is fixedly connected to the pressure sensor mounting base 11, and the first limiting block 153 and the second limiting block 154 are fixedly connected to the linear guide rail. The slider can slide between the first limiting block 153 and the second limiting block 154. Thus, the sliding structure composed of the linear guide rail and the slider ensures that the pressure sensor mounting base 11 slides along a precise linear trajectory, reducing lateral offset and improving the positioning accuracy of the pressing equipment. The first limiting block 153 and the second limiting block 154 prevent the slider from exceeding the guide rail range, ensuring that the slider moves within a safe range and avoiding damage to the equipment or workpiece due to excessive sliding.

[0063] Specifically, the guide rail mounting plate is fixedly connected to the pressure sensor mounting base 11. The slider includes a first slider 151 and a second slider 152. The first slider 151 and the second slider 152 are fixedly connected to the guide rail mounting plate. The first slider 151 is disposed between the first limiting block 153 and the second limiting block 154. The second slider 152 is disposed between the first limiting block 153 and the second limiting block 154. The first limiting block 153 and the second limiting block 154 are fixedly connected to the mounting base 50.

[0064] The working process of the pressing equipment in this application embodiment is described below with reference to a specific application scenario:

[0065] First, the pressurizing component 40 is activated. The driving component, through power transmission, drives the pressurizing component 40 to move towards the product to be processed. The driving component is connected to the elastic component, and the elastic deformation of the elastic component provides the initial pre-pressure.

[0066] Subsequently, as the pressurizing assembly 40 moves toward the product to be processed, the pressure head 42 contacts the product to be processed through the pressure head mounting base 41, and the connection between the pressure sensor mounting base 11 and the pressurizing assembly 40 ensures that the pressure applied by the pressure head 42 is transmitted to the terminal.

[0067] Finally, the pressure sensor 10 detects the pressure value applied to the product to be processed by the pressurizing component 40 and feeds it back to the control system in real time through the pressure sensor until the real-time pressure value reaches the predetermined pressing force, and the product pressurization is completed.

[0068] The following describes specific embodiments of this application based on the above technical solution.

[0069] Example 1

[0070] See Figures 1-5 This embodiment provides a press-fitting device, which includes a pressurizing component 40, a pressure sensing device 10, an elastic component, and a driving component. The pressurizing component 40 is used to contact the product to be processed. The driving component is connected to both the elastic component and the pressurizing component 40. The pressurizing component 40 is connected to the pressure sensing device 10, which is used to detect the pressure applied by the pressurizing component 40 to the product to be processed. The driving component drives the pressurizing component 40 to move closer to the product to be processed through the elastic component. The elastic element 30 in the elastic component undergoes elastic deformation to increase the compression of the elastic element 30. The product to be processed is a probe.

[0071] The pressurizing assembly 40 includes a pressure head 42, which is detachably connected to a pressure head mounting base 41. The pressure head 42 directly contacts the product to be processed to apply pressure. The pressure sensing device 10 includes a pressure sensor, which is connected to the pressurizing assembly 40 and is used to detect the pressure applied by the pressurizing assembly 40 to the product to be processed in real time. The pressure sensor is also connected to a terminal to feed back the real-time pressure value to the terminal.

[0072] The pressing equipment also includes an adjusting mechanism 20, which is connected to the elastic component via a transmission connection. The adjusting mechanism 20 is also equipped with a measuring device for displaying the compression amount of the elastic component 30. The adjusting mechanism 20 is a high-precision micrometer, which abuts against the spring pressure block. The pressing equipment also includes a spring stop 31 and a spring mounting seat. The spring mounting seat supports the elastic component 30, and the spring stop 31 is positioned between the adjusting mechanism 20 and the spring mounting seat. The elastic component 30 is housed within the pressing equipment. The adjusting mechanism 20 includes a micrometer mounting seat 21, and the spring stop 31 is fixedly connected to the micrometer mounting seat 21. A limiting fastener is provided within the spring mounting seat, and the limiting fastener is detachably connected to the elastic component 30. The limiting fastener includes a round-headed pin, and both the round-headed pin and the elastic component 30 are located within the spring mounting seat.

[0073] The pressurization equipment includes a pressure sensor mounting base 11, and the pressurization assembly 40 includes a pressure head mounting base 41 and a pressure head 42. The pressure sensor mounting base 11 and the pressure head mounting base 41 are fixedly connected, the pressure sensor mounting base 11 and the pressure sensing device 10 are fixedly connected, the pressure head mounting base 41 and the pressurization assembly 40 are fixedly connected, the pressure sensor and the pressure sensor mounting base 11 are fixedly connected, and the pressure sensor mounting base 11 and the pressurization assembly 40 are fixedly connected.

[0074] The press-fitting equipment also includes a slide rail assembly and a mounting base 50. The pressure sensor mounting base 11 is slidably connected to the mounting base 50 via the slide rail assembly. The slide rail assembly includes a linear guide rail, a slider, a first limiting block 153, and a second limiting block 154. The linear guide rail is fixedly connected to the mounting base 50, the slider is fixedly connected to the pressure sensor mounting base 11, and the first limiting block 153 and the second limiting block 154 are fixedly connected to the linear guide rail. The slider can slide between the first limiting block 153 and the second limiting block 154. The guide rail mounting plate is fixedly connected to the pressure sensor mounting base 11. The slider includes a first slider 151 and a second slider 152. The first slider 151 and the second slider 152 are fixedly connected to the guide rail mounting plate. The first slider 151 is disposed between the first limiting block 153 and the second limiting block 154, and the second slider 152 is disposed between the first limiting block 153 and the second limiting block 154. The first limiting block 153 and the second limiting block 154 are fixedly connected to the mounting base 50.

[0075] Example 2

[0076] like Figure 3 and Figure 4As shown, the press-fitting device in this embodiment includes a first fixing member 16 and a second fixing member 17, which are symmetrically arranged about the pressure sensor mounting base 11. Both the first fixing member 16 and the second fixing member 17 are reinforcing members, used to ensure a stable connection between the pressure sensor mounting base 11 and the slide rail assembly. The first fixing member 16 and the second fixing member 17 should be symmetrically installed on both sides of the pressure sensor mounting base 11 to ensure uniform pressure distribution and maintain the balance of the device structure. The first fixing member 16 and the second fixing member 17 are connected to both sides of the pressure sensor mounting base 11 by bolts, rivets, or welding. The press-fitting device also includes a reinforcing rib 18, which is disposed between the mounting base 50 and the adjusting mechanism 20. The reinforcing rib 18 is disposed between the mounting base 50 and the micrometer mounting base 21, and is tightly fitted to the contact surfaces of the mounting base 50 and the adjusting mechanism 20.

[0077] The above-disclosed embodiments are merely several preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Therefore, any equivalent variations made in accordance with the claims of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A pressing device, characterized in that, The pressing equipment includes a pressurizing component (40), a pressure sensing device (10), an elastic component, and a driving component, wherein the pressurizing component is used to contact the product to be processed; The drive assembly is connected to the elastic assembly and the pressurizing assembly respectively. The pressurizing assembly (40) is connected to the pressure sensing device (10). The pressure sensing device (10) is used to detect the pressure value applied by the pressurizing assembly (40) to the product to be processed. The driving component drives the pressurizing component (40) to move in a direction close to the product to be processed through the elastic component, and the elastic element (30) in the elastic component generates elastic deformation to increase the compression of the elastic element.

2. The pressing equipment according to claim 1, characterized in that, The pressing equipment also includes an adjustment mechanism (20), which is connected to the elastic component in a transmission manner. The adjustment mechanism (20) is also provided with a measuring device for displaying the compression amount of the elastic element (30).

3. The pressing equipment according to claim 2, characterized in that, The pressing equipment also includes a spring stop (31) and a spring mounting seat, the spring mounting seat being used to support the elastic element, and the spring stop (31) being disposed between the adjusting mechanism (20) and the spring mounting seat.

4. The pressing equipment according to claim 3, characterized in that, The spring mounting base is provided with a limiting fastener, which is detachably connected to the elastic element (30).

5. The pressing equipment according to any one of claims 1-4, characterized in that, The press fitting equipment includes a pressure sensor mounting base (11), and the pressurizing assembly (40) includes a pressure head mounting base (41) and a pressure head (42). The pressure sensor mounting base (11) and the pressure head mounting base (41) are fixedly connected. The pressure sensor mounting base (11) and the pressure sensing device (10) are fixedly connected. The pressure head mounting base (41) and the pressurizing assembly (40) are fixedly connected.

6. The pressing equipment according to claim 5, characterized in that, The press-fitting equipment also includes a slide rail assembly and a mounting base (50), wherein the pressure sensor mounting base (11) and the mounting base (50) are slidably connected through the slide rail assembly.

7. The pressing equipment according to claim 6, characterized in that, The press-fitting device includes at least one fastener disposed between the slide rail assembly and the pressure sensor mounting base (11).

8. The pressing equipment according to claim 7, characterized in that, The at least one fastener includes a first fastener (16) and a second fastener (17), which are symmetrically arranged about the pressure sensor mounting base (11).

9. The pressing equipment according to claim 6, characterized in that, The press-fitting equipment also includes a reinforcing rib (18), which is disposed between the mounting base (50) and the adjustment mechanism (20).

10. The pressing equipment according to claim 6, characterized in that, The slide rail assembly includes a linear guide rail, a slider, a first limiting block (153), and a second limiting block (154). The linear guide rail is fixedly connected to the mounting base (50), the slider is fixedly connected to the pressure sensor mounting base (11), the first limiting block (153) and the second limiting block (154) are fixedly connected to the linear guide rail, and the slider can slide between the first limiting block (153) and the second limiting block (154).