Efficient integrated hydraulic flushing device

Through the integrated design of the hydraulic flushing device, the expansion rubber ball is used to adjust the liquid level and the air supply system is used for pressure detection and purging, which solves the high energy consumption and low efficiency problems of the existing hydraulic pipeline flushing equipment and realizes efficient and energy-saving hydraulic pipeline cleaning.

CN223417905UActive Publication Date: 2025-10-10MCC TIANGONG GROUP
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Patent Information

Application Number
CN202422545804.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-10-10
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

Existing hydraulic pipeline flushing equipment requires a large oil tank volume, consumes energy, requires frequent filter element replacement, is costly, has low flushing efficiency, and is difficult to meet production schedule requirements.

Method used

An efficient integrated hydraulic flushing device is designed, including a flushing system, an air supply system and a control system. It integrates a variable frequency oil pump, a screw air compressor, an expansion rubber ball and a controller to achieve automatic control. The liquid level is adjusted by the expansion rubber ball, and the air supply system performs pressure detection and purging to improve the flushing efficiency.

Benefits of technology

It saves the amount of flushing oil, improves flushing efficiency, reduces the difficulty of operation, is suitable for hydraulic pipelines of different space sizes, and is more energy-saving and environmentally friendly.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides an efficient integrated hydraulic flushing device which is used in the field of hydraulic pipeline cleaning and comprises a flushing system, an air supply system and a control system, and the flushing system comprises a flushing oil tank, a variable frequency oil pump, an oil supply pipeline and an oil return pipeline; the air supply system comprises a screw air compressor and an expansion rubber ball, and the expansion rubber ball is arranged in the flushing oil tank; the control system is electrically connected with the flushing system and the air supply system. According to the utility model, the gas supply system is arranged, so that multiple functions of pressure testing, purging and liquid level adjustment are integrated, the use amount of flushing oil is saved, pressure detection can be carried out on a pipeline connected to a hydraulic pipeline, particulate pollutants in the pipeline can be purged, and the flushing efficiency is improved; the automation degree is high, the operation difficulty of operators is reduced, and the working efficiency is improved; and the device is high in applicability, energy-saving and environment-friendly.
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Description

Technical Field

[0001] The utility model belongs to the field of hydraulic pipeline cleaning, in particular to a high-efficiency integrated hydraulic flushing device. Background Art

[0002] Hydraulic pipelines are characterized by compact structure, fast response, high output force, and easy control. They are widely used in industry, agriculture, aviation, transportation and other fields. However, when hydraulic pipelines are in operation, the cleanliness of the oil seriously affects the service life and performance. Therefore, flushing of hydraulic pipelines has become one of the important measures to ensure the cleanliness of the oil. Existing flushing equipment has the following limitations:

[0003] (1) A larger oil tank volume is required, which results in a lot of wasted work during oil filtration, which is time-consuming, labor-intensive, and energy-wasting.

[0004] (2) The filter element needs to be replaced frequently, which is costly. In addition, the pump needs to be stopped during the replacement process, which wastes time.

[0005] (3) The flushing efficiency is low. Purge and flushing are separated, and a separate gas source is required for purge, resulting in a long flushing time and difficulty in meeting production schedule requirements. Utility Model Content

[0006] In order to solve the above technical problems, the utility model provides a high-efficiency integrated hydraulic flushing device, which effectively reduces the amount of flushing oil used and effectively improves the flushing efficiency through automatic control.

[0007] The technical solution adopted by the utility model is: a high-efficiency integrated hydraulic flushing device, comprising:

[0008] A flushing system comprising a flushing oil tank, a variable frequency oil pump, an oil supply pipeline, and an oil return pipeline. The oil inlet of the variable frequency oil pump is connected to the flushing oil tank, and the oil outlet of the variable frequency oil pump is connected to the oil supply pipeline. The oil supply pipeline is used to communicate with the oil inlet of the hydraulic pipeline to be cleaned, and the oil outlet of the hydraulic pipeline is connected to the flushing oil tank through the oil return pipeline.

[0009] An air supply system, comprising a screw air compressor, an expansion rubber ball and an air supply pipeline, wherein the expansion rubber ball is arranged in the flushing oil tank and is connected to the screw air compressor through the air supply pipeline;

[0010] The control system is electrically connected to the flushing system and the air supply system respectively.

[0011] Furthermore, the air supply system also includes an air storage tank, which is connected to the air outlet end of the screw air compressor; and the air supply pipeline is connected to the air outlet end of the air storage tank.

[0012] Furthermore, the air supply pipeline includes a purge branch pipe, and the purge branch pipe is used to communicate with the hydraulic pipeline.

[0013] Furthermore, the flushing oil tank is provided with an oil return filter communicated with the interior thereof, and the oil return pipeline is communicated with the oil return filter.

[0014] Furthermore, the flushing oil tank is also provided with a filling hole, an electric heater, a thermometer, a liquid level gauge, an exhaust hole and an observation hole.

[0015] Furthermore, the oil supply pipeline includes an oil supply valve and at least two oil supply branches, the oil supply branches are provided with filters and are connected to the variable frequency oil pump; the oil supply valve is used to connect the oil inlet end of the hydraulic pipeline with the oil supply branches.

[0016] Furthermore, the oil return pipeline includes an oil return valve and at least two oil return branches, the oil return branches are connected to the oil return filter, and the oil return valve is used to connect the oil outlet end of the hydraulic pipeline with the oil return branches.

[0017] Furthermore, the plurality of hydraulic pipelines are connected in parallel through an oil inlet manifold and an oil outlet manifold, the oil inlet manifold is used to connect to the oil supply valve, and the oil outlet manifold is used to connect to the oil return valve.

[0018] Furthermore, the control system includes a controller and a power supply, the controller is electrically connected to the flushing system and the air supply system respectively; the power supply is electrically connected to the electric heater, the screw air compressor and the variable frequency oil pump respectively.

[0019] The advantages and positive effects of the present invention are as follows: the present application integrates multiple functions of pressure testing, purging and liquid level adjustment by setting up an air supply system. On the one hand, when the flushing oil level in the flushing tank is lowered, the air supply system can inflate the expansion rubber ball to make the liquid level rise to a sufficient height to meet the minimum operating state requirements of the variable frequency oil pump, thereby saving the amount of flushing oil; on the other hand, before the flushing operation is started, the air supply system can be used to perform pressure detection on the pipeline connected to the hydraulic pipeline to ensure that the pipeline is tightly connected and there are no leaks; thirdly, it can also be used to purge particulate pollutants in the pipeline to improve flushing efficiency; the device has a high degree of automation, reduces the operating difficulty of the operator, and improves work efficiency; it has strong applicability, can be applied to hydraulic pipelines of different space sizes, and is more energy-saving and environmentally friendly. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural schematic diagram of a specific embodiment of the utility model;

[0021] Figure 2 This is a schematic diagram of the structure of a flushing oil tank according to a specific embodiment of the present utility model;

[0022] Figure 3 It is a schematic diagram of the use of a flushing oil tank according to a specific embodiment of the utility model.

[0023] In the picture:

[0024] 10. Flushing system; 11. Flushing oil tank; 111. Return oil filter; 112. Liquid level gauge; 113. Electric heater; 114. Filling hole; 115. Observation hole; 116. Exhaust hole; 12. Frequency conversion oil pump; 13. Oil supply line; 131. Oil supply valve; 132. Oil supply branch pipe; 133. Filter; 134. Filter control valve; 14. Return oil line; 141. Return oil valve; 142. Return oil branch pipe; 20. Air supply system System; 21. Screw air compressor; 22. Expansion rubber ball; 23. Air supply pipeline; 231. Air supply main pipe; 2311. Oil-water separator; 232. Air supply branch pipe; 233. Expansion ball control valve; 234. Purge branch pipe; 235. Air blow valve; 236. Air storage tank; 237. Air storage valve; 238. Air release valve; 239. Safety valve; 30. Control system; 40. Hydraulic pipeline; 41. Oil inlet main pipe; 42. Oil outlet main pipe. DETAILED DESCRIPTION

[0025] The embodiments of the present invention are described below with reference to the accompanying drawings.

[0026] like Figure 1 As shown, the utility model proposes an efficient integrated hydraulic flushing device for flushing a hydraulic pipeline 40, comprising: a flushing system 10, an air supply system 20 and a control system 30, wherein the flushing system 10 comprises a flushing oil tank 11, a variable frequency oil pump 12, an oil supply pipeline 13 and an oil return pipeline 14, the oil inlet end of the variable frequency oil pump 12 is connected to the flushing oil tank 11, and the oil outlet end thereof is connected to the oil supply pipeline 13, the oil supply pipeline 13 is used to communicate with the oil inlet end of the hydraulic pipeline 40 to be cleaned, and to supply oil to the hydraulic pipeline 40 to be cleaned. Oil supply; the oil outlet end of the hydraulic pipeline 40 is connected to the flushing tank 11 through the return oil pipeline 14; the air supply system 20 includes a screw air compressor 21, an expansion rubber ball 22 and an air supply pipeline 23. The screw air compressor 21 can generate compressed air. The expansion rubber ball 22 is arranged in the flushing tank 11 and is connected to the screw air compressor 21 through the air supply pipeline 23; the control system 30 is electrically connected to the flushing system 10 and the air supply system 20 respectively, and is used to control the flushing system 10 and the air supply system 20 to automatically complete the flushing and air supply actions.

[0027] Through the above technical solution, such as Figure 2 、 Figure 3As shown, when the flushing oil in the flushing tank 11 flows to the oil supply line 13, the hydraulic line 40 and the return oil line 14 through the variable frequency oil pump 12 and the liquid level drops, the air supply system 20 can inflate the expansion rubber ball 22 of the flushing tank 11 so that it expands and occupies part of the volume in the flushing tank 11, so that the flushing oil level in the flushing tank 11 rises to a sufficient height to meet the minimum operating state requirement of the variable frequency oil pump 12, without having to add too much flushing oil to the flushing tank 11, thereby saving the amount of flushing oil; making this system applicable to hydraulic lines 40 of different sizes to be flushed, improving its applicability and flexibility; at the same time, saving the time for refueling and draining oil, reducing the workload of workers, and improving the flushing efficiency of the hydraulic lines 40.

[0028] Specifically, the flushing oil tank 11 is made of stainless steel and is internally welded with argon arc welding, which has good cleanliness; the expansion rubber ball 22 is made of oil-resistant rubber and has a spherical structure. It expands when inflated and shrinks when deflated; preferably, in order to further improve the fuel-saving effect, one side of the bottom of the flushing oil tank 11 is connected to the variable frequency oil pump 12, and the bottom of the flushing oil tank 11 away from the connection portion bulges inward to further reduce the volume of the flushing oil tank 11.

[0029] The oil inlet of the variable frequency oil pump 12 is equipped with an oil pump control valve. This valve is electrically connected to the control system 30 to control the operating state of the variable frequency oil pump 12 according to the progress of the flushing operation. Specifically, when the variable frequency oil pump 12 is operating, the oil pump control valve is opened; when the variable frequency oil pump 12 is shut down, the oil pump control valve is closed.

[0030] The above-mentioned air supply system 20 also includes an air tank 236, which is connected to the air outlet end of the screw air compressor 21. The compressed air generated by the screw air compressor 21 enters the air tank 236 and forms a certain pressure, so that the gas has good fluidity when it is discharged from the air tank 236; the air supply pipeline 23 is connected to the air outlet end of the air tank 236.

[0031] The air tank 236 is provided with air valves 237 at both its inlet and outlet ends. These valves are electrically connected to the control system 30 to control the operating state of the air tank 236 in conjunction with the flushing process. Specifically, when compressed air needs to be fed into the air tank 236, the air valve 237 at the inlet end of the air tank 236 is opened, while the air valve 237 at the outlet end of the air tank 236 is closed. When compressed air in the air tank 236 needs to be discharged into the air supply line 23, the air valve 237 at the inlet end of the air tank 236 is closed, while the air valve 237 at the outlet end of the air tank 236 is opened.

[0032] Furthermore, the air supply line 23 includes a purge branch 234, which is used to communicate with the hydraulic line 40; this solution allows the hydraulic line 40 to be pre-cleaned by compressed air before being cleaned with cleaning oil; specifically, the compressed air discharged from the purge branch 234 enters the hydraulic line 40, and cleans the hydraulic line 40 and pollutants such as floating dust and particulate matter in the line, thereby reducing the workload of subsequently using cleaning oil to clean the hydraulic line 40 and effectively improving the cleaning efficiency.

[0033] During the above-mentioned purging operation, the purging branch pipe 234 is connected to the oil inlet end of the hydraulic pipeline 40, and the oil outlet end of the hydraulic pipeline 40 is disconnected from the flushing oil tank 11, so as to discharge the pollutants to the outside.

[0034] Preferably, the above-mentioned air supply pipeline 23 also includes an air supply main pipe and an air supply branch pipe 232, the air inlet end of the air supply main pipe is connected to the air outlet end of the air storage tank 236; the air supply branch pipe 232 and the purge branch pipe 234 are both connected to the air supply main pipe, and each air supply branch pipe 232 is connected in parallel with a number of expansion rubber balls 22; further, the air supply main pipe is provided with an oil-water separator 2311, so that the air discharged through the air supply pipeline 23 can achieve an oil-free and water-free clean effect to meet its usage requirements.

[0035] The purge branch pipes 234 are each provided with an air blowing valve 235 . The air blowing valve 235 is electrically connected to the control system 30 and is opened under the control of the control system 30 to inflate the inflatable rubber ball 22 .

[0036] The above-mentioned air supply branch pipe 232 is also provided with an expansion ball control valve 233, an air release valve 238 and a safety valve 239, and the three are electrically connected to the controller; the expansion ball control valve 233 is arranged at one end close to the expansion rubber ball 22. When inflation operation is required, the control system 30 opens the expansion ball control valve 233; when the inflation operation is completed, the control system 30 closes the expansion ball control valve 233; the air release valve 238 is arranged on the pipeline between the expansion ball control valve 233 and the expansion rubber ball 22. Opening the air release valve 238 can discharge the gas in the expansion rubber ball 22; the safety valve 239 is arranged on the pipeline between the air release valve 238 and the expansion rubber ball 22. A safety alarm device is provided in the safety valve 239. When the pressure in the expansion rubber ball 22 reaches a preset value, an alarm is issued to enable the controller to control the safety valve 239 to open, so as to prevent the expansion rubber ball 22 from bursting due to excessive pressure.

[0037] The above-mentioned flushing oil tank 11 is provided with a return oil filter 111 connected to its interior, and the oil outlet section of the hydraulic pipeline 40 is connected to the return oil filter 111. The return oil filter 111 can filter the flushing oil returning to the flushing oil tank 11 to ensure the cleanliness of the flushing oil returning to the flushing oil tank 11, so that the cleaning operation can be carried out continuously, ensuring the cleaning effect of the hydraulic pipeline 40.

[0038] like Figure 1 As shown, the flushing oil tank 11 is also provided with a filling hole 114, an electric heater 113, a thermometer, a liquid level gauge 112, an exhaust hole 116 and an observation hole 115; wherein the filling hole 114 is used to add flushing oil to the flushing oil tank 11 before the cleaning operation begins; the electric heater 113 is used to heat the cleaning oil so that it can achieve a good cleaning effect, the thermometer is used to detect the temperature of the cleaning oil and transmit the signal to the control system 30, so that the control system 30 automatically controls the electric heater 113 to start or stop, so that the temperature of the flushing oil is maintained at an optimal temperature; the liquid level gauge 112 is used to detect the liquid level height of the flushing oil in the flushing oil tank 11 to ensure that it meets the use requirements, and is set at a position of the flushing oil tank 11 that is easy to observe; the exhaust valve is used to discharge the gas in the flushing oil tank 11; the observation hole 115 is used for the operator to observe the situation in the flushing oil tank 11 at all times to ensure the normal operation of the flushing operation.

[0039] Preferably, the oil supply line 13 includes an oil supply valve 131 and at least two oil supply branches 132. The oil supply branches 132 are provided with filters 133 and are in communication with the variable frequency oil pump 12. The oil outlet of the oil supply valve 131 is in communication with the oil inlet of the hydraulic line 40, and the oil inlet of the oil supply valve 131 is in communication with the oil supply branches 132. In other words, the variable frequency oil pump 12 delivers cleaning oil through the oil supply branches 132 to the oil supply valve 131, and then to the hydraulic line 40 for cleaning. During use, one of the oil supply branches 132 is in a connected state, while the other oil supply branches 132 are in a closed state. If the filter 133 on the used oil supply branch 132 malfunctions and requires repair or replacement, the oil supply branch 132 can be closed and the other oil supply branch 132 opened to ensure that the flushing operation can be carried out continuously.

[0040] Filter control valves 134 are installed at both ends of the filter 133. The oil supply valve 131 and filter control valve 134 are each electrically connected to a controller and are opened or closed under the controller's control. Specifically, the oil supply valve 131 and the filter control valve 134 of a branch oil supply pipe 132 are opened to ensure communication between them. The oil supply valve 131 and the filter control valve 134 of a branch oil supply pipe 132 are closed to allow maintenance or replacement of the filter 133 of the branch oil supply pipe 132.

[0041] The oil return line 14 includes an oil return valve 141 and at least two oil return branches 142. The oil return branches 142 are connected to the oil return filter 111. The oil inlet of the oil return valve 141 is connected to the oil outlet of the hydraulic line 40, and the oil outlet of the oil return valve 141 is connected to the oil return branches 142. The number of oil return branches 142 corresponds to the number of oil return filters 111. Multiple oil return branches 142 are connected simultaneously to improve oil return efficiency.

[0042] The above-mentioned return oil valve 141 is electrically connected to the controller and is opened or closed under the control of the controller; the return oil valve 141 is detachably connected to the oil outlet end of the hydraulic pipeline 40, so that the two can be disconnected during the purging operation to discharge pollutants to the outside.

[0043] Preferably, if Figure 2 As shown, multiple hydraulic pipelines 40 are connected in parallel through an oil inlet manifold 41 and an oil outlet manifold 42. The oil inlet manifold 41 is used to connect to the oil supply valve 131, and the oil outlet manifold 42 is used to connect to the oil return valve 141, so as to further improve the cleaning efficiency of the hydraulic pipelines 40.

[0044] The above-mentioned control system 30 includes a controller and a power supply. The controller is electrically connected to the flushing system 10 and the air supply system 20. Specifically, the controller is respectively electrically connected to the variable frequency oil pump 12, the oil pump control valve arranged at the oil inlet end of the variable frequency oil pump 12, the filter control valve 134 arranged at both ends of the filter 133, the oil supply valve 131 arranged on the oil supply pipeline 13, the return oil valve 141 arranged on the return oil pipeline 14, the oil-water separator and the blow valve 235 arranged on the air supply pipeline 23, the air storage valve 237 arranged at both ends of the air storage tank 236, the expansion ball control valve 233 arranged on the air supply pipeline 23, the air release valve 238 and the safety valve 239, as well as the thermometer and the electric heater 113; the power supply is respectively electrically connected to the electric heater 113, the screw air compressor 21 and the variable frequency oil pump 12 to supply power to the three.

[0045] The above-mentioned controller is electrically connected to the variable frequency oil pump 12 to adjust the working pressure according to different hydraulic pipelines 40; specifically, when the hydraulic pipeline 40 is larger, a higher flushing pressure is required, and the controller adjusts it by controlling the variable frequency motor of the variable frequency oil pump 12 to meet the larger pressure demand in the pipeline; if the hydraulic pipeline 40 is smaller, the required flushing pressure is lower, and the controller adjusts it by controlling the variable frequency motor of the variable frequency oil pump 12 to meet the smaller pressure demand in the pipeline; through the above-mentioned technical solution, the flushing needs of different hydraulic pipelines 40 can be ensured, and at the same time it is more energy-saving and environmentally friendly.

[0046] In a preferred embodiment, the flushing oil tank 11, the variable frequency oil pump 12, the oil supply pipeline 13, the oil return pipeline 14, the screw air compressor 21, the air storage tank 236 and the air supply main pipe 231 are all arranged in a shell, the oil supply valve 131 and the oil return valve 141 are arranged on the shell, and the oil inlet main pipe 41 and the oil outlet main pipe 42 are respectively connected to the oil supply valve 131 and the oil return valve 141; the purge branch pipe 234 passes through the shell and extends to the outside of the shell. A blowing valve 235 is provided on the pipeline to facilitate the connection of the oil inlet main pipe 41 of the hydraulic pipeline 40. The overall structure is compact and reasonable, and more integrated.

[0047] The method for cleaning hydraulic pipelines using the high-efficiency integrated hydraulic flushing device proposed in this application includes the following steps:

[0048] (1) Place the high-efficiency integrated hydraulic flushing device at the designated location, connect multiple hydraulic pipelines 40 in parallel, connect the oil inlet manifold 41 of the hydraulic pipeline 40 to the oil supply valve 131, and connect the oil outlet manifold 42 of the hydraulic pipeline 40 to the oil return valve;

[0049] (2) Start the screw air compressor 21 to make the compressed air in the air storage tank 236 reach the set pressure;

[0050] (3) Connect the purge branch pipe 234 with the oil inlet main pipe 41, open the air valve 235 of the purge branch pipe 234, close the oil supply valve 131 and the oil return valve 141, and allow the compressed air in the air tank 236 to enter the hydraulic pipeline 40 and the oil outlet main pipe 42 through the oil inlet main pipe 41 to perform a pressure test; in a specific embodiment, when the pressure in the pipeline is controlled at 0.6 MPa, perform a system leak test to ensure that each joint is tightly sealed to prevent leakage of flushing oil during the flushing operation.

[0051] (4) Start the purging operation to remove the particulate pollutants inside the oil inlet main pipe 41, the hydraulic pipeline 40 and the oil outlet main pipe 42; specifically, after the pressure test is passed, disconnect the connection between the oil outlet main pipe 42 and the oil return valve 141, so that the oil outlet main pipe 42 is connected to the outside, and the compressed air in the air storage tank 236 enters the hydraulic pipeline 40 through the oil inlet main pipe 41, takes away the particulate pollutants in the hydraulic pipeline 40 and is discharged through the oil outlet main pipe 42; when the gas discharged through the oil outlet main pipe 42 no longer contains particulate pollutants, the purging operation is completed, and at this time, close the air storage valve 237, stop inputting gas into the oil inlet main pipe 41, and connect the oil outlet main pipe 42 to the oil return valve 141.

[0052] (5) Fill the flushing oil tank 11 with flushing oil, start the electric heater 113, and heat the flushing oil to a preset temperature;

[0053] (6) Start the variable frequency oil pump 12 to supply oil to the oil supply pipe 13; the flushing oil flows back into the flushing oil tank 11 through the oil supply branch pipe 132, the oil inlet manifold 41, the hydraulic pipeline 40 oil outlet manifold 42 and the return oil branch pipe 142 in sequence. At this time, the flushing oil level in the flushing oil tank 11 decreases;

[0054] (7) Check the liquid level of the flushing oil tank 11. When the liquid level is lower than the preset height, open the expansion ball control valve 233 to inflate the expansion rubber ball 22. After ensuring that the liquid level meets the flushing operation requirements, close the expansion ball control valve 233.

[0055] (8) Start the flushing operation until the cleanliness of the flushing oil meets the flushing requirements and then remove the high-efficiency integrated hydraulic flushing device.

[0056] The present application integrates multiple functions of pressure testing, purging, and liquid level adjustment by setting up an air supply system. On the one hand, when the flushing oil level in the flushing tank drops, the air supply system can inflate the expansion rubber ball to make the flushing oil level in the flushing tank rise to a sufficient height to meet the minimum operating state requirements of the variable frequency oil pump, thereby saving the amount of flushing oil; on the other hand, before the flushing operation is started, the air supply system can be used to perform pressure detection on the pipeline connected to the hydraulic pipeline to ensure that the pipeline connection is tight and there are no leaks; thirdly, it can also be used to purge particulate pollutants in the pipeline to improve flushing efficiency; the device has a high degree of automation, which reduces the operating difficulty of the operator and improves work efficiency; it has strong applicability and can be applied to hydraulic pipelines of different space sizes, which is more energy-saving and environmentally friendly.

[0057] The above embodiments of the present invention are described in detail. However, the above contents are only preferred embodiments of the present invention and should not be considered to limit the scope of implementation of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.

Claims

1. A high-efficiency integrated hydraulic flushing device, characterized in that: include: A flushing system comprising a flushing oil tank, a variable frequency oil pump, an oil supply pipeline, and an oil return pipeline. The oil inlet of the variable frequency oil pump is connected to the flushing oil tank, and the oil outlet of the variable frequency oil pump is connected to the oil supply pipeline. The oil supply pipeline is used to communicate with the oil inlet of the hydraulic pipeline to be cleaned, and the oil outlet of the hydraulic pipeline is connected to the flushing oil tank through the oil return pipeline. An air supply system, comprising a screw air compressor, an expansion rubber ball and an air supply pipeline, wherein the expansion rubber ball is arranged in the flushing oil tank and is connected to the screw air compressor through the air supply pipeline; The control system is electrically connected to the flushing system and the air supply system respectively.

2. The high-efficiency integrated hydraulic flushing device according to claim 1, characterized in that: The air supply system further includes an air storage tank, which is connected to the air outlet end of the screw air compressor; and the air supply pipeline is connected to the air outlet end of the air storage tank.

3. The high-efficiency integrated hydraulic flushing device according to claim 1 or 2, characterized in that: The air supply pipeline includes a purge branch pipe, and the purge branch pipe is used to communicate with the hydraulic pipeline.

4. The high-efficiency integrated hydraulic flushing device according to claim 3, characterized in that: The flushing oil tank is provided with an oil return filter communicated with the interior thereof, and the oil return pipeline is communicated with the oil return filter.

5. The high-efficiency integrated hydraulic flushing device according to claim 4, characterized in that: The flushing oil tank is also provided with a filling hole, an electric heater, a thermometer, a liquid level gauge, an exhaust hole and an observation hole.

6. The high-efficiency integrated hydraulic flushing device according to claim 5, characterized in that: The oil supply pipeline includes an oil supply valve and at least two oil supply branches. The oil supply branches are provided with filters and are connected to the variable frequency oil pump. The oil supply valve is used to connect the oil inlet end of the hydraulic pipeline with the oil supply branches.

7. The high-efficiency integrated hydraulic flushing device according to claim 6, characterized in that: The oil return pipeline includes an oil return valve and at least two oil return branches, the oil return branches are connected to the oil return filter, and the oil return valve is used to connect the oil outlet end of the hydraulic pipeline with the oil return branches.

8. The high-efficiency integrated hydraulic flushing device according to claim 7, characterized in that: The plurality of hydraulic pipelines are connected in parallel through an oil inlet manifold and an oil outlet manifold. The oil inlet manifold is used to connect to the oil supply valve, and the oil outlet manifold is used to connect to the oil return valve.

9. The high-efficiency integrated hydraulic flushing device according to claim 7 or 8, characterized in that: The control system includes a controller and a power supply. The controller is electrically connected to the flushing system and the air supply system respectively; the power supply is electrically connected to the electric heater, the screw air compressor and the variable frequency oil pump respectively.