Oil filter circumferential oiling tool
Patent Information
- Application Number
- CN202522078544.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-09-26
AI Technical Summary
[0003]本实用新型的目的是:可实现机油滤胶圈润滑,且圆周润滑均匀,有效的解决了机油滤涂油不均匀、人工操作不方便的问题,同时避免机油滤外壳沾染机油造成误判,能够兼容圆柱胶圈、平面胶圈的机油滤,方便工作人员操作使用,其技术方案如下:
[0004] The beneficial effects of this utility model are: it can achieve lubrication of the oil filter rubber ring, and the circumferential lubrication is uniform, which effectively solves the problems of uneven oil application and inconvenience of manual operation of oil filter. At the same time, it avoids the oil filter housing from being contaminated with oil and causing misjudgment. It can be compatible with oil filters with cylindrical rubber rings and flat rubber rings, making it convenient for operators to operate and use.
Smart Images

Figure CN224749352U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of special oiling equipment for oil filter assemblies, specifically relating to a circumferential oiling tool for oil filters. Background Technology
[0002] The current method of applying oil to the circumference of oil filters is done manually. This method results in uneven oil application and is inconvenient. In addition, the oil filter housing is easily stained with oil during the application process, requiring staff to wipe it clean. This method cannot guarantee the quality of installation and has a high rate of misjudgment during hot testing. Summary of the Invention
[0003] The purpose of this invention is to achieve uniform lubrication of the oil filter's rubber ring, effectively solving the problems of uneven oil application and inconvenient manual operation. It also avoids oil contamination of the oil filter housing, preventing misjudgments. Furthermore, it is compatible with both cylindrical and flat rubber ring oil filters, facilitating operation and use by staff. The technical solution is as follows: A circumferential oiling fixture for an oil filter, characterized in that it includes a fixture housing 1 and an inner support 2 inserted into the lower periphery of the fixture housing 1. A plurality of applicator bearings 3 are evenly distributed and rotatably inserted around the upper surface of the inner support 2. Bearing pins 4 are rotatably inserted at the center of the side surface of each applicator bearing 3. The inner support 2 includes an outer plate 2-1, a groove 2-2, through holes 2-3, an inner ring 2-4, and insertion holes 2-5. A groove 2-2 is provided inside the center of the lower surface of the outer plate 2-1. A plurality of through holes 2-3 are evenly distributed around the periphery of the upper surface of the outer plate 2-1. An inner ring 2-4 is inserted at the center of the upper surface of the outer plate 2-1. The inner ring 2-4 is located at the lower part of its inner side surface and the upper part of the outer side surface of the outer plate 2-1. A plurality of insertion holes 2-5 are evenly distributed. The interior of the through hole 2-3 is connected to the interior of the groove 2-2. The interior of the through hole 2-3 is rectangular. The outer plate 2-1 is cylindrical. The size and position of the insertion holes 2-5 on the outer plate 2-1 correspond to the size and position of the insertion holes 2-5 on the inner ring 2-4. The coating bearing 3 is inserted into the through hole 2-3. The side surface of the coating bearing 3 is higher than the upper surface of the through hole 2-3. The bearing pin penetrates and is inserted into the insertion holes 2-5 on the outer plate 2-1 and the inner ring 2-4, and penetrates and is inserted into the center of the coating bearing 3. The outer plate 2-1 is inserted into the tooling housing 1 and contacts the bottom surface of the tooling housing 1.
[0004] The beneficial effects of this utility model are: it can achieve lubrication of the oil filter rubber ring, and the circumferential lubrication is uniform, which effectively solves the problems of uneven oil application and inconvenience of manual operation of oil filter. At the same time, it avoids the oil filter housing from being contaminated with oil and causing misjudgment. It can be compatible with oil filters with cylindrical rubber rings and flat rubber rings, making it convenient for operators to operate and use. Attached Figure Description
[0005] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the inner diameter 2 of this utility model; In the diagram: Tooling housing 1, inner support 2, coating bearing 3, bearing pin 4, outer plate 2-1, groove 2-2, through hole 2-3, inner ring 2-4, insertion hole 2-5. Detailed Implementation
[0006] Reference Figure 1 , Figure 2 The aforementioned oil filter circumferential oiling fixture cylinder The invention is characterized by comprising a tooling housing 1 and an inner support 2 inserted into the lower periphery of the tooling housing 1. A plurality of applicator bearings 3 are evenly distributed and rotatably inserted around the upper surface of the inner support 2. Bearing pins 4 are rotatably inserted at the center of the side surface of each applicator bearing 3. The inner support 2 includes an outer plate 2-1, a groove 2-2, through holes 2-3, an inner ring 2-4, and insertion holes 2-5. A groove 2-2 is provided inside the center of the lower surface of the outer plate 2-1. A plurality of through holes 2-3 are evenly distributed around the periphery of the upper surface of the outer plate 2-1. An inner ring 2-4 is inserted at the center of the upper surface of the outer plate 2-1. A plurality of through holes 2-3 are evenly distributed below the inner surface of the inner ring 2-4 and above the outer surface of the outer plate 2-1. The insertion hole 2-5 is provided. The interior of the through hole 2-3 is connected to the interior of the groove 2-2. The interior of the through hole 2-3 is rectangular. The outer plate 2-1 is cylindrical. The size and position of the insertion hole 2-5 on the outer plate 2-1 correspond to the size and position of the insertion hole 2-5 on the inner ring 2-4. The coating bearing 3 is inserted into the through hole 2-3. The side surface of the coating bearing 3 is higher than the upper surface of the through hole 2-3. The bearing pin penetrates and is inserted into the insertion hole 2-5 on the outer plate 2-1 and the inner ring 2-4, and penetrates and is inserted at the center of the coating bearing 3. The outer plate 2-1 is inserted into the tooling housing 1 and contacts the bottom surface of the tooling housing 1.
[0007] In use, first, insert the coating bearing 3 through the through hole 2-3 on the inner bracket 2 and into the groove 2-2. Then, insert the bearing pin 4 through the insertion hole 2-5 on the outer plate 2-1 and the coating bearing 3 into the insertion hole 2-5 on the inner ring 2-4. At the same time, the bearing pin 4 is inserted at the center of the coating bearing 3. Then, insert the outer plate 2-1 into the tool housing 1 and make contact with the bottom surface. Then, it is easier to inject lubricating oil between the outer plate 2-1 and the tool housing 1 and make contact with the lower side surface of the coating bearing 3. Then, it is easier to insert the oil filter into the tool housing 1 and make contact with the upper side surface of the coating bearing 3. Then, rotate the oil filter and drive the coating bearing 3 to rotate. At the same time, the coating bearing 3 will adhere the lubricating oil to the side surface of the coating bearing 3. Finally, apply the lubricant on the coating bearing 3 to the oil filter rubber ring.
[0008] Of course, the above description is not intended to limit the present utility model, and the present utility model is not limited to the examples given above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present utility model should also fall within the protection scope of the present utility model.
Claims
1. A tooling for circumferentially applying oil to an oil filter, characterized in that: It includes a tooling housing (1) and an inner bracket (2) inserted inside the tooling housing (1) at the lower four edges. Several coating bearings (3) are evenly distributed and rotatably inserted around the upper surface of the inner bracket (2). A bearing pin (4) is rotatably inserted at the center of the side surface of the coating bearing (3).
2. The oil filter circumferential oiling fixture according to claim 1, characterized in that: The inner support (2) includes an outer plate (2-1), a groove (2-2), a through hole (2-3), an inner ring (2-4), and a socket (2-5). The groove (2-2) is provided inside the center of the lower surface of the outer plate (2-1). Several through holes (2-3) are evenly distributed around the edges of the upper surface of the outer plate (2-1). The inner ring (2-4) is inserted into the center of the upper surface of the outer plate (2-1). Several sockets (2-5) are evenly distributed below the inner surface of the inner ring (2-4) and above the outer surface of the outer plate (2-1).
3. The oil filter circumferential oiling fixture according to claim 2, characterized in that: The interior of the through hole (2-3) is connected to the interior of the groove (2-2), and the interior of the through hole (2-3) is rectangular in shape.
4. The oil filter circumferential oiling fixture according to claim 2, characterized in that: The outer plate (2-1) is cylindrical in shape, and the size and position of the insertion hole (2-5) on the outer plate (2-1) correspond to the size and position of the insertion hole (2-5) on the inner ring (2-4).
5. The oil filter circumferential oiling fixture according to claim 2, characterized in that: The coating bearing (3) is inserted into the through hole (2-3), and the side surface of the coating bearing (3) is higher than the upper surface of the through hole (2-3).
6. The oil filter circumferential oiling fixture according to claim 2, characterized in that: The bearing pin (4) penetrates and is inserted into the insertion hole (2-5) on the outer plate (2-1) and the inner ring (2-4), and penetrates and is inserted into the center of the coated bearing (3).
7. The oil filter circumferential oiling fixture according to claim 2, characterized in that: The outer plate (2-1) is inserted inside the tooling housing (1) and contacts the bottom surface of the tooling housing (1).