Automobile bearing bush machining equipment
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SICHUAN BOFIT AUTOMOTIVE TECH CO LTD
- Filing Date
- 2024-09-12
- Publication Date
- 2026-08-07
AI Technical Summary
[0003]为解决轴瓦的内表面呈弧形,由于轴瓦的弧形状,轴瓦的内表面润滑不便的技术问题,本实用新型提供一种汽车轴瓦加工设备
[0013] 1. This utility model utilizes the movement of an electric push rod to drive the telescopic shaft frame to extend and retract. The telescopic shaft frame rotates around the movable axis and is pushed forward. Simultaneously, the clamping claws connected to the top of the telescopic shaft frame are driven to move, and the two sets of clamping claws perform clamping operations. The two sets of opposing clamping claws clamp and fix the bearing body, ensuring the stability of the bearing body coating.
Smart Images

Figure CN224607444U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bearing processing, and in particular to an automotive bearing processing equipment. Background Technology
[0002] Bearing shells, also known as sliding bearings, are located between the engine spindle and the bearing housing. They mainly support loads and transmit motion. Bearing shells are key components of the engine. Because their shape resembles a tile, they are called bearing shells. During the manufacturing process, lubricating oil is usually sprayed onto the surface of the bearing shell for easy testing. However, due to the arc shape of the inner surface of the bearing shell, lubrication of the inner surface is inconvenient. Utility Model Content
[0003] To address the technical problem of inconvenient lubrication of the inner surface of the bearing bush due to its arc shape, this utility model provides an automotive bearing bush processing equipment.
[0004] This utility model is achieved by the following technical solution: an automotive bearing processing equipment, comprising a processing equipment body, the processing equipment body including a bearing positioning mechanism and an adjusting lubrication mechanism;
[0005] The bearing positioning mechanism includes:
[0006] The mounting platform is installed at the bottom of the main body of the processing equipment; the sliding rod is installed above the mounting platform; the sliding frame is engaged with the surface of the sliding rod and slides on the sliding rod; the moving block is installed above the sliding frame; the telescopic shaft frame is connected at its bottom end to the moving block; the movable shaft is composed of intersecting rods, and the movable shaft is located at the connection point of the intersecting rods; and the clamping claws are installed at the top of the telescopic shaft frame. The clamping claws have a V-shaped cross-section and are arranged in two opposing sets, clamping the bearing body between the two sets of clamping claws.
[0007] By pulling the sliding frame, the sliding frame slides on the surface of the sliding rod, adjusting the position of the sliding frame. The moving block connected above the sliding frame adjusts the position synchronously. An existing electric push rod is installed on the telescopic shaft frame. Through the movement of the electric push rod, the electric push rod drives the telescopic shaft frame to extend and retract. The telescopic shaft frame rotates around the movable axis and is pushed forward. At the same time, the clamping claws connected to the top of the telescopic shaft frame are driven to move. The two sets of clamping claws perform clamping operations, and the two sets of opposing clamping claws clamp and fix the bearing body, ensuring the stability of the brush coating on the bearing body.
[0008] As a further improvement to the above solution, an existing electric push rod is connected to the telescopic shaft frame, and the telescopic shaft frame can be extended by pushing the electric push rod.
[0009] As a further improvement to the above solution, the lubrication adjustment mechanism includes: an adjustment frame, which is installed above the mounting platform; an adjustment block, which is sleeved on the surface of the adjustment frame; a movable rod, which is installed on the top of the adjustment block; a support frame, which is fixedly connected to the top of the movable rod; a drive motor, which is connected below the support frame; a drive rod, which is connected below the drive motor; and a lubrication cylinder, which is installed below the drive rod.
[0010] The lubrication cylinder is made of sponge material and is pre-soaked in lubricating oil. When the drive motor is working, it drives the drive rod connected to it to rotate, and the drive rod drives the lubrication cylinder to rotate synchronously. The lubrication cylinder then coats the inner surface of the bearing body. The sliding frame slides on the surface of the sliding rod. Adjusting the position of the sliding frame allows the bearing body being clamped to be adjusted laterally, ensuring that all parts of the bearing body can fully contact the lubrication cylinder for lubrication.
[0011] As a further improvement to the above solution, the lubrication cylinder is cylindrical and made of sponge material, and the lubrication cylinder lubricates the bearing body.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] 1. This utility model utilizes the movement of an electric push rod to drive the telescopic shaft frame to extend and retract. The telescopic shaft frame rotates around the movable axis and is pushed forward. Simultaneously, the clamping claws connected to the top of the telescopic shaft frame are driven to move, and the two sets of clamping claws perform clamping operations. The two sets of opposing clamping claws clamp and fix the bearing body, ensuring the stability of the bearing body coating.
[0014] 2. This utility model uses a drive rod to drive the lubrication cylinder to rotate synchronously, thereby brushing the inner surface of the bearing body. The sliding frame slides on the surface of the sliding rod, and the position of the sliding frame can be adjusted to allow the lateral position of the clamped bearing body to be adjusted, so that all positions of the bearing body can fully contact the lubrication cylinder for lubrication. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the connection structure of the bearing positioning mechanism of this utility model;
[0017] Figure 3This is a schematic diagram of the connection structure of the adjusting lubrication mechanism of this utility model.
[0018] Explanation of key symbols:
[0019] 1. Main body of processing equipment; 2. Bearing positioning mechanism; 21. Mounting platform; 22. Sliding rod; 23. Sliding frame; 24. Moving block; 25. Telescopic shaft frame; 26. Movable shaft; 27. Clamping claw; 3. Adjustment and lubrication mechanism; 31. Adjustment frame; 32. Adjustment block; 33. Movable rod; 34. Support frame; 35. Drive motor; 36. Drive rod; 37. Lubrication cylinder; 4. Bearing body. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments. Example
[0021] Please combine Figures 1-3 This embodiment proposes an automotive bearing processing equipment, including a processing equipment body 1, which includes a bearing positioning mechanism 2 and an adjusting lubrication mechanism 3.
[0022] The bearing positioning mechanism 2 includes:
[0023] Mounting platform 21 is installed at the bottom of the main body 1 of the processing equipment;
[0024] Sliding rod 22 is installed above the mounting platform 21;
[0025] The sliding frame 23 is engaged with the surface of the sliding rod 22, and the sliding frame 23 slides on the sliding rod 22;
[0026] Movable block 24 is mounted above sliding frame 23;
[0027] The telescopic shaft frame 25 has its bottom end connected to the movable block 24. The telescopic shaft frame 25 is connected to an existing electric push rod, which extends the telescopic shaft frame 25 by pushing it.
[0028] The movable shaft 26 and the telescopic shaft frame 25 are composed of intersecting rods, and the movable shaft 26 is located at the connection of the intersecting rods.
[0029] Clamping claws 27 are installed at the top of the telescopic shaft bracket 25. The cross-section of the clamping claws 27 is V-shaped, and two sets of clamping claws 27 are arranged in opposite directions, with the bearing body 4 clamped between the two sets of clamping claws 27.
[0030] By pulling the sliding frame 23, the sliding frame 23 slides on the surface of the sliding rod 22, adjusting the position of the sliding frame 23. The moving block 24 connected above the sliding frame 23 is then adjusted synchronously. An existing electric push rod is installed on the telescopic shaft frame 25. Through the movement of the electric push rod, the electric push rod drives the telescopic shaft frame 25 to perform telescopic operation. The telescopic shaft frame 25 rotates around the movable axis 26 and is pushed forward. At the same time, the clamping claws 27 connected to the top of the telescopic shaft frame 25 are driven to move. The two sets of clamping claws 27 perform clamping operation, and the two sets of opposing clamping claws 27 clamp and fix the bearing body 4, ensuring the stability of the brush coating on the bearing body 4.
[0031] The lubrication adjustment mechanism 3 includes:
[0032] Adjustment bracket 31 is installed above the mounting platform 21;
[0033] Adjusting block 32, which is sleeved on the surface of adjusting frame 31;
[0034] Movable rod 33 is mounted on the top of adjusting block 32;
[0035] Support frame 34 is fixedly connected to the top of movable rod 33;
[0036] Drive motor 35 is connected to the lower part of support frame 34;
[0037] Drive rod 36, drive rod 36 is connected below drive motor 35;
[0038] The lubrication cylinder 37 is installed below the drive rod 36. The lubrication cylinder 37 is cylindrical and made of sponge material. The lubrication cylinder 37 lubricates the bearing body 4.
[0039] The lubrication cylinder 37 is made of sponge material and is pre-soaked in lubricating oil. When the drive motor 35 is working, the drive motor 35 drives the drive rod 36 connected to it to rotate. The drive rod 36 then drives the lubrication cylinder 37 to rotate synchronously. The lubrication cylinder 37 then brushes the inner surface of the bearing body 4. The sliding frame 23 slides on the surface of the sliding rod 22. Adjusting the position of the sliding frame 23 allows the bearing body 4 to be adjusted laterally, so that all parts of the bearing body 4 can fully contact the lubrication cylinder 37 for lubrication.
[0040] Specific implementation steps of this utility model:
[0041] In use, by pulling the sliding frame 23, the sliding frame 23 slides on the surface of the sliding rod 22, adjusting the position of the sliding frame 23. The moving block 24 connected above the sliding frame 23 is adjusted synchronously. An electric push rod of the prior art is set on the telescopic shaft frame 25. Through the movement of the electric push rod, the electric push rod drives the telescopic shaft frame 25 to perform telescopic operation. The telescopic shaft frame 25 rotates around the movable axis 26 and is pushed forward. At the same time, the clamping claws 27 connected to the top of the telescopic shaft frame 25 are driven to move. The two sets of clamping claws 27 perform clamping operation, and the two sets of opposing clamping claws 27 clamp and fix the bearing body 4, ensuring the stability of the brush coating of the bearing body 4.
[0042] Meanwhile, the lubrication cylinder 37 is made of sponge material and is pre-soaked in lubricating oil. Through the operation of the drive motor 35, the drive motor 35 drives the drive rod 36 connected to it to rotate. The drive rod 36 then drives the lubrication cylinder 37 to rotate synchronously. The lubrication cylinder 37 then brushes the inner surface of the bearing body 4. The sliding frame 23 slides on the surface of the sliding rod 22. Adjusting the position of the sliding frame 23 allows the clamped bearing body 4 to be adjusted laterally, so that all positions of the bearing body 4 can fully contact the lubrication cylinder 37 for lubrication.
[0043] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.
Claims
1. An automotive bearing processing equipment, comprising a processing equipment body, characterized in that, The main body of the processing equipment includes a bearing positioning mechanism and an adjusting lubrication mechanism; The bearing positioning mechanism includes: The mounting platform is installed at the bottom of the main body of the processing equipment; A sliding rod, which is mounted above the mounting platform; A sliding frame, which is engaged with the surface of the sliding rod and slides on the sliding rod; A movable block, which is mounted above the sliding frame; A telescopic shaft frame, the bottom end of which is connected to the movable block; The movable shaft and telescopic shaft frame are composed of intersecting rods, and the movable shaft is located at the connection of the intersecting rods; A clamping claw is mounted on the top of the telescopic shaft frame.
2. The automotive bearing processing equipment as described in claim 1, characterized in that, The adjusting lubrication mechanism includes: An adjustment frame is mounted above the mounting platform; An adjusting block, which is fitted onto the surface of the adjusting frame; A movable lever, which is mounted on the top of the adjusting block; A support frame, which is fixedly connected to the top end of the movable rod; A drive motor is connected below the support frame; A drive rod, which is connected below the drive motor; A lubrication cylinder is installed below the drive rod.
3. The automotive bearing processing equipment as described in claim 1, characterized in that, The clamping claws have a V-shaped cross section and are arranged in two opposing sets, with the bearing body clamped between the two sets of clamping claws.
4. The automotive bearing processing equipment as described in claim 2, characterized in that, The lubrication cylinder is cylindrical and made of sponge material. The lubrication cylinder lubricates the bearing body.
5. The automotive bearing processing equipment as described in claim 1, characterized in that, The telescopic shaft frame is connected to an existing electric push rod, which extends the telescopic shaft frame by pushing it.