Automatic shock pad assembling device
By designing an automatic assembly device for shock-absorbing pads that includes a mounting base, driver, sleeve, top cover, and transmission mechanism, the problem of low efficiency in traditional manual installation has been solved, and the precise installation and efficient production of rubber shock-absorbing pads have been achieved.
Patent Information
- Application Number
- CN202520194395.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-08
AI Technical Summary
Traditional manual installation of rubber shock absorbers is inefficient and can easily damage components, failing to meet diverse installation needs.
An automatic assembly device for shock-absorbing pads was designed, comprising a mounting base, a driver, a sleeve, a top cover, a transmission mechanism, and clamping flaps. The device achieves precise installation of rubber shock-absorbing pads by adjusting the position and diameter of the mechanical components.
It improved installation efficiency, reduced the difficulty of manual operation, ensured the accuracy and consistency of installation, reduced operating costs, and enhanced product competitiveness.
Smart Images

Figure CN223801934U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of automobile, new energy technology, especially relates to a shock pad automatic assembly device. BACKGROUND
[0002] In the assembly process of electronic components, in order to effectively reduce the potential interference and damage caused by vibration to components, engineers will configure rubber shock pads at each connecting part. This measure can significantly weaken the negative effects of vibration waves on the overall performance of electronic equipment, thereby enhancing the stability and reliability of equipment operation. However, it is worth noting that the traditional manual installation method is not only inefficient, but also easily causes unnecessary damage to the shock pads or surrounding components during operation. In view of this situation, it is particularly important to introduce mechanical auxiliary devices to optimize the installation process. SUMMARY
[0003] According to the utility model embodiment, a shock pad automatic assembly device is provided, which includes:
[0004] a mounting base;
[0005] a driver, the driver is arranged at the bottom of the mounting base, the output end of the driver penetrates the mounting base, and the driver provides driving force for lifting;
[0006] a sleeve, the sleeve is arranged at the top of the mounting base;
[0007] a top cover, the top cover is arranged at the top of the sleeve, and the top cover is provided with a movable opening;
[0008] a transmission mechanism, the transmission mechanism is arranged in the interior of the sleeve and connected with the output end of the driver, and is used for transmitting the power of the driver;
[0009] four clamping petals, the bottom ends of the four clamping petals penetrate the movable opening and are connected with the transmission mechanism, and under the action of the power of the driver transmitted by the transmission mechanism, the four clamping petals perform opening and closing movements.
[0010] Further, the transmission mechanism includes:
[0011] a first clamping piece, the first clamping piece is arranged in the interior of the sleeve in a guided sliding mode, and the first clamping piece is connected with the output end of the driver;
[0012] a second clamping piece, the second clamping piece is arranged in the interior of the sleeve in a guided sliding mode, the second clamping piece is fixed at the top of the first clamping piece, and the middle part of the second clamping piece is hollowed out;
[0013] four transmission blocks, the four transmission blocks are located between the first clamping piece and the second clamping piece, one side of each of the four transmission blocks is provided with a transmission inclined surface, and the four transmission blocks are respectively connected with the bottom ends of the four clamping petals;
[0014] Four first springs, four first springs are located between adjacent two transmission blocks respectively;
[0015] A cylindrical surface, the cylindrical surface is arranged on the inner wall of the sleeve;
[0016] A conical surface, the conical surface is arranged on the inner wall of the sleeve, and is connected with the bottom of the cylindrical surface.
[0017] Further, the transmission mechanism further comprises:
[0018] Four guide grooves, four guide grooves are arranged on the four transmission blocks respectively;
[0019] Four supporting guide columns, four supporting guide columns are arranged between the first clamping piece and the second clamping piece, and the four supporting guide columns are located in the four guide grooves respectively.
[0020] Further, the transmission mechanism further comprises:
[0021] Four guide channels, four guide channels are arranged on the inner wall of the sleeve;
[0022] Four first guide blocks, four first guide blocks are arranged on the circumferential side of the first clamping piece, and are connected with the four guide channels respectively.
[0023] Further, the transmission mechanism further comprises: four second guide blocks, four second guide blocks are arranged on the circumferential side of the second clamping piece, and are connected with the four guide channels respectively.
[0024] Further, the four first guide blocks and the first clamping piece are integrally formed, and the four second guide blocks and the second clamping piece are integrally formed.
[0025] Further, the transmission mechanism further comprises: four second springs, four second springs are arranged between adjacent two clamping petals respectively.
[0026] According to the shock pad automatic assembly device, the position variable diameter adjustment between mechanical parts is realized, so that the elastic size of the rubber shock pad can be flexibly changed to adapt to different installation requirements. This innovative design enables the shock pad to be accurately installed into the position with an inner circular opening, greatly reducing the difficulty of manual operation, and significantly improving the production efficiency.
[0027] The device has the following several significant advantages:
[0028] 1. High compatibility: flexible and variable design, can easily cope with various complex working conditions and technical challenges, ensure efficient and accurate to meet the diversified installation requirements.
[0029] 2. Low operating cost and high stability: The entire device is completely assembled with pure mechanical assembly, greatly reducing the operating cost. At the same time, the design of pure mechanical structure also gives the device high stability and durability, reducing maintenance and failure rate.
[0030] 3. Improve product competitiveness: By precisely controlling the installation position and elastic size of the shock pad, the device not only ensures the consistency and reliability of the product, but also further improves the product's competitive advantage in the market.
[0031] It is to be understood that both the foregoing general description and the following detailed description are exemplary and intended to provide further explanation of the subject technology claimed. BRIEF DESCRIPTION OF DRAWINGS
[0032] Fig. 1 It is a whole structure schematic view of a shock pad automatic assembly device according to an embodiment of the present application.
[0033] Fig. 2 It is a structure explosion schematic view of a shock pad automatic assembly device according to an embodiment of the present application.
[0034] Fig. 3 It is a schematic view of the main view structure of a shock pad automatic assembly device according to an embodiment of the present application. DETAILED DESCRIPTION
[0035] The preferred embodiments of the present application will be described in detail below with reference to the accompanying drawings, which further illustrate the present application.
[0036] First, the application will be described in combination with Figs. 1-3 A shock pad automatic assembly device according to an embodiment of the present application is described, which is used to clamp rubber shock pads, and has a wide range of application scenarios.
[0037] As Figs. 1-3 shown, a shock pad automatic assembly device according to an embodiment of the present application has a mounting base 100, a driver 200, a sleeve 300, a top cover 400, a transmission mechanism, and four clamping petals 600.
[0038] Specifically, as Figs. 1-3 shown, the driver 200 is arranged at the bottom of the mounting base 100, and the output end of the driver 200 penetrates the mounting base 100 to provide lifting driving force. The driver 200 can be a pneumatic cylinder.
[0039] Specifically, as Figs. 1-3 shown, the sleeve 300 is arranged at the top of the mounting base 100.
[0040] Specifically, as Figs. 1-3As shown, the top cover 400 is arranged at the top of the sleeve 300, and the movable opening 401 is arranged on the top cover 400, which provides a movable space for the four clamping petals 600.
[0041] Specifically, as shown in the figure, Figs. 1-3 The transmission mechanism is arranged inside the sleeve 300 and connected with the output end of the driver 200, which is used to transmit the power of the driver 200.
[0042] Specifically, as shown in the figure, Figs. 1-3 The bottom end of the four clamping petals 600 penetrates the movable opening 401 and is connected with the transmission mechanism, which performs opening and closing movement under the action of the power transmitted by the transmission mechanism of the driver 200.
[0043] Further, as shown in the figure, Figs. 1-3 The transmission mechanism includes: a first clamping piece 501, a second clamping piece 502, four transmission blocks 503, four first springs 504, a cylindrical surface 505, and a conical surface 506. The first clamping piece 501 is arranged inside the sleeve 300 in a guided sliding manner, and the first clamping piece 501 is connected with the output end of the driver 200; the second clamping piece 502 is arranged inside the sleeve 300 in a guided sliding manner, and the second clamping piece 502 is fixed at the top of the first clamping piece 501, and the middle part of the second clamping piece 502 is hollow; the four transmission blocks 503 are located between the first clamping piece 501 and the first clamping piece 501, one side of each of the four transmission blocks 503 is provided with a transmission inclined surface 5031, and each of the four transmission blocks 503 is connected with the bottom end of one of the four clamping petals 600; the four first springs 504 are respectively located between two adjacent transmission blocks 503; the cylindrical surface 505 is opened on the inner wall of the sleeve 300; and the conical surface 506 is opened on the inner wall of the sleeve 300 and is connected with the bottom of the cylindrical surface 505.
[0044] Further, as shown in the figure, Figs. 1-3 The transmission mechanism further includes: four guide grooves 507 and four support guide columns 508. The four guide grooves 507 are respectively opened on the four transmission blocks 503; and the four support guide columns 508 are arranged between the first clamping piece 501 and the second clamping piece 502, and are respectively located in the four guide grooves 507. Through the arrangement of the four guide grooves 507 and the four support guide columns 508, the stability of the movement of the four transmission blocks 503 can be ensured.
[0045] Further, as shown in the figure, Figs. 1-3 The transmission mechanism further includes: four guide channels 509 and four first guide blocks 510. The four guide channels 509 are opened on the inner wall of the sleeve 300; and the four first guide blocks 510 are arranged on the circumferential side of the first clamping piece 501 and are respectively connected with the four guide channels 509 in a sliding manner. Through the arrangement of the four guide channels 509 and the four first guide blocks 510, the first clamping piece 501 is more stable when performing lifting movement.
[0046] Furthermore, such as Figs. 1-3 As shown, the transmission mechanism also includes four second guide blocks 511, which are disposed around the second clamping piece 502 and slidably connected to four guide channels 509 respectively. The arrangement of the four second guide blocks 511, in cooperation with the four guide channels 509, makes the lifting and lowering movement of the second clamping piece 502 more stable.
[0047] Furthermore, such as Figs. 1-3 As shown, the four first guide blocks 510 and the first clamping piece 501 are integrally formed, and the four second guide blocks 511 and the second clamping piece 502 are integrally formed, which improves strength and ensures the stability of the equipment.
[0048] Furthermore, such as Figs. 1-3 As shown, the transmission mechanism also includes: four second springs 512, which are respectively disposed between two adjacent clamping segments 600.
[0049] Working principle:
[0050] When the actuator 200 extends, the four clamping flaps 600 open under the action of the four second springs 512 and the four first springs 504, and the rubber shock-absorbing pad is manually placed inside.
[0051] When the driver 200 is pulled down, the first clamp 501, the second clamp 502, and the four transmission blocks 503 descend together with the driver 200. When the contact area of the transmission inclined surface 5031 of the four transmission blocks 503 changes from the cylindrical surface 505 to the conical surface 506, the four transmission blocks 503 will move closer to each other, thereby causing the four clamping petals 600 to move closer to each other, thus tightening the rubber shock-absorbing pad. When the four clamping petals 600 descend to the designated position, the rubber shock-absorbing pad is installed into the inner circular opening of the external component.
[0052] Above, refer to Figs. 1-3 An automatic assembly device for shock-absorbing pads according to an embodiment of the present invention is described, which realizes positional adjustment between mechanical components, thereby flexibly changing the elastic dimensions of the rubber shock-absorbing pads to adapt to different installation requirements. This innovative design allows the shock-absorbing pads to be precisely installed into parts with inner circular openings, greatly reducing the difficulty of manual operation and significantly improving production efficiency.
[0053] This device has the following significant advantages:
[0054] 1. High compatibility: Its flexible design can easily cope with the technical challenges under various complex working conditions, ensuring efficient and accurate fulfillment of diverse installation needs.
[0055] 2. Low operating cost and high stability: The entire device is completely assembled with pure mechanical assembly, which greatly reduces the operating cost. At the same time, the design of pure mechanical structure also gives the device high stability and durability, reduces maintenance and failure rate.
[0056] 3. Improve product competitiveness: By accurately controlling the installation position and elastic size of the shock pad, the device not only ensures the consistency and reliability of the product, but also further improves the product's competitive advantage in the market.
[0057] It should be noted that in this specification, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or device. Without more limitations, the elements defined by the statement "contain" do not exclude the presence of other identical elements in the process, method, article or device including the elements.
[0058] Although the content of the present application has been described in detail by the above preferred embodiments, it should be recognized that the above description should not be considered as a limitation of the present application. After reading the above content, various modifications and alternatives of the present application will be obvious to those skilled in the art. Therefore, the protection scope of the present application should be defined by the appended claims.
Claims
1. A shock pad automatic assembly device, characterized by, The utility model relates to a kind of lifting device, including: mounting base;Drive, the bottom of the mounting base is provided, the output end of the drive penetrates the mounting base, provides the driving force of lifting;Sleeve, the top of the mounting base is provided;Top cover, the top of the sleeve is provided, and movable mouth is equipped on the top cover;Transmission mechanism, the inside of the sleeve is provided, and it is connected with the output end of the drive for transmitting the power of the drive;Four clamping petals, the bottom end of the four clamping petals penetrates the movable mouth and is connected with the transmission mechanism, under the action of the transmission mechanism transmitting the power of the drive, carry out opening and closing movement. The transmission mechanism includes: first clamping piece, the inside of the sleeve is provided in the first clamping piece guiding sliding, and the output end of the drive is connected with the first clamping piece;Second clamping piece, the inside of the sleeve is provided in the second clamping piece guiding sliding, and the top of the first clamping piece is fixed in the second clamping piece, and the middle part of the second clamping piece is hollow;Four transmission blocks, the four transmission blocks are located between the first clamping piece and first clamping piece, one side of the four transmission blocks is equipped with transmission inclined plane, and the bottom end of the four clamping petals is connected with the four transmission blocks respectively;Four first springs, the four first springs are located between adjacent two transmission blocks respectively; Cylindrical surface, the inner wall of the sleeve is opened in the cylindrical surface; Conical surface, the inner wall of the sleeve is opened in the conical surface, and the bottom of the cylindrical surface is connected with the conical surface. The transmission mechanism further includes: four guide grooves, the four guide grooves are opened in the four transmission blocks respectively; Four support guide columns, the four support guide columns are arranged between the first clamping piece and the second clamping piece, and the four support guide columns are located in the four guide grooves respectively. The transmission mechanism further includes: four guide channels, the four guide channels are opened in the inner wall of the sleeve; 2. The automatic assembly device for shock pads according to claim 1, characterized in that, Four first guide blocks, the four first guide blocks are arranged on the circumferential side of the first clamping piece, and are slidably connected with the four guide channels respectively. The transmission mechanism further includes: four second guide blocks, the four second guide blocks are arranged on the circumferential side of the second clamping piece, and are slidably connected with the four guide channels respectively. The four first guide blocks are integrally formed with the first clamping piece, and the four second guide blocks are integrally formed with the second clamping piece. The transmission mechanism further includes: four second springs, the four second springs are arranged between adjacent two clamping petals respectively. The drive is air cylinder. 3. The automatic assembly device for shock pads according to claim 2, wherein 4. The automatic assembly device for shock pads according to claim 2, wherein 5. The automatic assembly device for shock pads according to claim 4, characterized in that, 6. The automatic assembly device for shock pads according to claim 5, wherein 7. The automatic assembly device for shock pads according to claim 2, wherein 8. The automatic assembly device for shock pads according to claim 1, wherein