Compact oil cooling circulation assembly

By designing a compact oil cooling circulation assembly, and employing filters and cleaning brushes to automatically filter the cooling oil, the problems of complex structure and impurities in the cooling oil in existing technologies are solved, thereby improving the system's stability and cooling efficiency.

CN223818325UActive Publication Date: 2026-01-23SUZHOU RESHENG ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520371702.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-01-23
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

Existing oil-cooled circulation components have complex and non-compact structures, and the cooling oil is prone to carrying impurities, which affects the cooling effect and increases maintenance costs.

Method used

A compact oil cooling circulation assembly was designed, comprising a cooling tank, an oil reservoir, and a filter assembly. It employs a filter and a cleaning brush for automatic filtration, and combines an adjustment component and a drive component to achieve automatic adjustment and cleaning.

Benefits of technology

It achieves automatic filtration and cleaning, extends filter life, reduces the frequency of manual maintenance, and improves system stability and cooling efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of oil cooling circulation assemblies, and particularly discloses a compact type oil cooling circulation assembly which comprises a cooling box, an oil storage box and a filtering assembly, the filtering assembly is located between the cooling box and the oil storage box, and the filtering assembly and the cooling box are communicated through an input pipeline. The filtering assembly is communicated with the oil storage tank through an output pipeline; the filtering assembly comprises a filter and a main shaft, the input pipeline is located above the filter, the main shaft is sleeved with the filter, the filter is of a circular structure, the output pipeline is located below the filter, and the upper portion of the end, close to the filter, of the output pipeline is of an open structure. According to the oil cooling device, oil cooling circulation can be carried out on equipment, cooling oil can be automatically filtered, and the filter can be automatically cleaned.
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Description

Technical Field

[0001] This utility model relates to the technical field of oil cooling circulation components, and specifically to a compact oil cooling circulation component. Background Technology

[0002] Oil cooling circulation is a highly efficient heat dissipation mechanism that uses cooling oil as a heat transfer medium, continuously flowing in a closed circulation system to absorb and remove the heat generated during equipment operation. Through the action of a pump, the cooling oil is forced to circulate, absorbing heat from the heat source, flowing through the radiator to dissipate heat, and then returning to the heat source to continue circulating. This achieves continuous and effective cooling of the equipment, ensuring stable operation at a suitable operating temperature.

[0003] Current technologies still have the following areas for improvement: Existing oil cooling circulation components are often too complex and not compact enough, making them difficult to deploy efficiently in limited spaces. During the oil cooling circulation process, the cooling oil easily carries impurities. After long-term circulation, these impurities accumulate in the cooling oil, which can easily damage the internal parts of the cooling tank, reduce the cooling rate of the oil, affect the cooling effect of the cooling tank, and increase maintenance costs. Utility Model Content

[0004] To address the aforementioned problems in the existing technology, this utility model provides a compact oil cooling circulation assembly that can perform oil cooling circulation for equipment, automatically filter the cooling oil, and automatically clean the filter.

[0005] The objective of this utility model can be achieved through the following technical solutions:

[0006] A compact oil cooling circulation assembly includes a cooling tank, an oil storage tank, and a filter assembly. The filter assembly is located between the cooling tank and the oil storage tank. The filter assembly and the cooling tank are connected by an input pipe, and the filter assembly and the oil storage tank are connected by an output pipe.

[0007] The filter assembly includes a filter and a main shaft. The input pipe is located above the filter. The filter is sleeved on the main shaft and has a circular structure. The output pipe is located below the filter and has an open structure at the end of the output pipe closest to the filter.

[0008] Furthermore, the cooling tank, the oil storage tank, and the filter assembly are all located inside the outer casing. An oil inlet pipe is fixedly installed on the cooling tank, and an oil outlet pipe is fixedly installed on the oil storage tank.

[0009] Furthermore, the filter is provided with six filter screens, the input pipe is located on one side of the main shaft, a cleaning brush is provided above the side of the input pipe away from the main shaft, and an impurity pipe is provided below the cleaning brush.

[0010] Furthermore, the lower end of the cleaning brush is fixedly provided with bristles, and a corner piece is fixedly provided on one side of the cleaning brush. The corner piece is sleeved on the drive shaft, and a cleaning motor is fixedly provided on the drive shaft. One end of the drive shaft is rotatably connected to the fixing piece.

[0011] Furthermore, the impurity conduit is tangent to the filter, and the upper part of the impurity conduit near the cleaning brush has an open structure.

[0012] Furthermore, an adjusting component is sleeved on the main shaft, and the adjusting component has six rotating grooves. The adjusting component cooperates with the driving component. An adjusting rod is fixedly installed on the driving component, and an adjusting head is fixedly installed at the end of the adjusting rod away from the driving component. The adjusting rod cooperates with the rotating grooves.

[0013] Furthermore, the driving component is sleeved on the adjusting shaft, and an adjusting motor is fixedly installed at one end of the adjusting shaft.

[0014] Furthermore, the filter assembly is located inside the filter housing, and a partition is fixedly installed at the middle position of the filter housing. The impurity pipe and the output pipe are both fixedly connected above the partition.

[0015] The beneficial effects of this utility model are as follows:

[0016] (1) By setting up a filter and a cleaning brush, the technical effect that can be achieved is that the input pipe is located above the filter, the filter is fitted on the main shaft, the filter has a circular structure, the output pipe is located below the filter, the output pipe is open at the end near the filter, the filter is equipped with six filter screens, the input pipe is located on one side of the main shaft, the cleaning brush is installed above the side of the input pipe away from the main shaft, and the impurity pipe is installed below the cleaning brush.

[0017] The filter and cleaning brush can automatically clean the filter, avoiding reduced flow and efficiency due to clogging, significantly extending the filter's lifespan, reducing the frequency and cost of manual cleaning, and providing a more stable and cleaner working environment for the entire cooling oil circulation system.

[0018] (2) By setting the adjusting component and the driving component, the technical effect that can be achieved is that the adjusting component is sleeved on the main shaft, the adjusting component has six rotating slots, the adjusting component and the driving component cooperate, the driving component is fixedly set with an adjusting rod, the end of the adjusting rod away from the driving component is fixedly set with an adjusting head, the adjusting rod cooperates with the rotating slots, the driving component is sleeved on the adjusting shaft, and one end of the adjusting shaft is fixedly set with an adjusting motor.

[0019] The regulating and driving components enable automatic filtration of cooling oil. The angle of the filter can be adjusted via the regulating components, allowing for remote or timed adjustment of the filter position. This reduces maintenance burden, enhances system stability and reliability, and further optimizes the cooling oil circulation process. Attached Figure Description

[0020] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings.

[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0022] Figure 2 This is a schematic diagram of the overall structure of the filter assembly in this utility model;

[0023] Figure 3 This is a top view of the filter and cleaning brush in this utility model;

[0024] Figure 4 This is a top view of the driving component and the adjusting component in this utility model;

[0025] Figure 5 This is a front view of the cleaning brush in this utility model;

[0026] Explanation of reference numerals in the attached figures:

[0027] In the diagram: 1. Oil inlet pipe; 2. Outer casing; 3. Cooling tank; 4. Output pipe; 5. Oil reservoir; 6. Oil outlet pipe; 7. Impurity pipe; 8. Cleaning motor; 9. Cleaning brush; 10. Filter housing; 11. Main shaft; 12. Input pipe; 13. Filter; 14. Adjusting component; 15. Adjusting head; 16. Adjusting rod; 17. Adjusting motor; 18. Drive component; 19. Fixing component; 20. Drive shaft; 21. Corner component; 22. Filter screen; 23. Rotating groove; 24. Brush bristles. Detailed Implementation

[0028] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0029] In the description of this application, it should be noted that the terms "upper," "lower," "inner," "outer," "top / bottom," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and 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. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0030] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installed," "equipped with," "sleeved / connected," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0031] Reference Figures 1 to 5 The present invention discloses a compact oil cooling circulation assembly, which includes a cooling tank 3, an oil storage tank 5 and a filter assembly. The filter assembly is located between the cooling tank 3 and the oil storage tank 5. The filter assembly and the cooling tank 3 are connected by an input pipe 12, and the filter assembly and the oil storage tank 5 are connected by an output pipe 4.

[0032] The filter assembly includes a filter 13 and a main shaft 11. The input pipe 12 is located above the filter 13. The filter 13 is sleeved on the main shaft 11. The filter 13 has a circular structure. The output pipe 4 is located below the filter 13. The upper part of the output pipe 4 near the filter 13 has an open structure.

[0033] The cooling tank 3, the oil storage tank 5, and the filter assembly are all located inside the outer shell 2. The cooling tank 3 is fixedly equipped with an oil inlet pipe 1, and the oil storage tank 5 is fixedly equipped with an oil outlet pipe 6.

[0034] The filter 13 is equipped with six filter screens 22. The input pipe 12 is located on one side of the main shaft 11. A cleaning brush 9 is provided above the side of the input pipe 12 away from the main shaft 11. An impurity pipe 7 is provided below the cleaning brush 9.

[0035] The lower end of the cleaning brush 9 is fixedly provided with bristles 24, and a corner piece 21 is fixedly provided on one side of the cleaning brush 9. The corner piece 21 is sleeved on the drive shaft 20, and a cleaning motor 8 is fixedly provided on the drive shaft 20. One end of the drive shaft 20 is rotatably connected to the fixing piece 19.

[0036] The impurity pipe 7 is tangent to the filter 13, and the upper part of the impurity pipe 7 near the cleaning brush 9 has an open structure. The filter 13 and the cleaning brush 9 can automatically clean the filter 13, avoiding the reduction in flow and efficiency of the filter 13 due to clogging, significantly extending the service life of the filter 13, reducing the frequency and cost of manual cleaning, and providing a more stable and cleaner working environment for the entire cooling oil circulation system.

[0037] An adjusting component 14 is fitted onto the main shaft 11. The adjusting component 14 has six rotating slots 23. The adjusting component 14 and the driving component 18 cooperate with each other. An adjusting rod 16 is fixedly installed on the driving component 18. An adjusting head 15 is fixedly installed at the end of the adjusting rod 16 away from the driving component 18. The adjusting rod 16 cooperates with the rotating slots 23.

[0038] The drive component 18 is mounted on the adjusting shaft, and an adjusting motor 17 is fixedly mounted on one end of the adjusting shaft. The adjusting component 14 and the drive component 18 can automatically filter the cooling oil. The angle of the filter 13 can be adjusted by the adjusting component 14, realizing the function of remote or timed adjustment of the position of the filter 13, reducing the maintenance burden, enhancing the stability and reliability of the system, and further optimizing the circulation process of the cooling oil.

[0039] The filter assembly is located inside the filter housing 10. A baffle is fixedly installed in the middle of the filter housing 10. The impurity pipe 7 and the output pipe 4 are both fixedly connected above the baffle.

[0040] The working principle and usage process of this utility model: After cooling, the cooling oil enters the cooling tank 3 through the oil inlet pipe 1 for cooling, and then enters the filter assembly through the input pipe 12. After the cooling oil is filtered through the filter screen 22, the impurities are left above the filter screen 22 and flow into the output pipe 4. The oil is then output to the oil storage tank 5 for storage through the output pipe 4, and then output through the oil outlet pipe 6.

[0041] Start the adjustment motor 17, which drives the drive component 18 to rotate. The drive component 18 drives the adjustment rod 16 to rotate. Since the drive component 18 and the adjustment component 14 cooperate, the adjustment rod 16 rotates into the rotation groove 23, causing the adjustment component 14 to rotate 30°. The adjustment rod 16 drives the main shaft 11 to rotate 30°, and the main shaft 11 drives the filter 13 to rotate 30°, thereby automatically replacing the clean filter screen 22.

[0042] Start the cleaning motor 8. The cleaning motor 8 drives the cleaning brush 9 to rotate within a certain angle, scraping the impurities above the filter screen 22 through the brush bristles 24 into the impurity pipe 7, and discharging the impurities.

[0043] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A compact oil-cooled circulation assembly, characterized in that: It includes a cooling tank, an oil storage tank, and a filter assembly. The filter assembly is located between the cooling tank and the oil storage tank. The filter assembly and the cooling tank are connected by an input pipe, and the filter assembly and the oil storage tank are connected by an output pipe. The filter assembly includes a filter and a main shaft. The input pipe is located above the filter. The filter is sleeved on the main shaft and has a circular structure. The output pipe is located below the filter and has an open structure at the end of the output pipe closest to the filter.

2. The compact oil cooling circulation assembly according to claim 1, characterized in that: The cooling tank, the oil storage tank, and the filter assembly are all located inside the outer casing. An oil inlet pipe is fixedly installed on the cooling tank, and an oil outlet pipe is fixedly installed on the oil storage tank.

3. A compact oil-cooling circulation assembly according to claim 1, characterized in that: The filter is equipped with six filter screens. The input pipe is located on one side of the main shaft. A cleaning brush is installed above the side of the input pipe away from the main shaft. An impurity pipe is installed below the cleaning brush.

4. A compact oil cooling circulation assembly according to claim 3, characterized in that: The cleaning brush has bristles fixedly installed at its lower end, and a corner piece is fixedly installed on one side of the cleaning brush. The corner piece is sleeved on the drive shaft, and a cleaning motor is fixedly installed on the drive shaft. One end of the drive shaft is rotatably connected to the fixed piece.

5. A compact oil cooling circulation assembly according to claim 4, characterized in that: The impurity pipe is tangent to the filter, and the upper part of the impurity pipe near the cleaning brush has an open structure.

6. A compact oil-cooling circulation assembly according to claim 4, characterized in that: An adjusting component is fitted onto the main shaft. The adjusting component has six rotating slots. The adjusting component cooperates with the driving component. An adjusting rod is fixedly installed on the driving component. An adjusting head is fixedly installed at the end of the adjusting rod away from the driving component. The adjusting rod cooperates with the rotating slots.

7. A compact oil cooling circulation assembly according to claim 6, characterized in that: The driving component is sleeved on the adjusting shaft, and an adjusting motor is fixedly installed at one end of the adjusting shaft.

8. A compact oil cooling circulation assembly according to claim 3, characterized in that: The filter assembly is located inside the filter housing, and a partition is fixedly installed at the middle position of the filter housing. The impurity pipe and the output pipe are both fixedly connected above the partition.