Cyclone oil-water separation equipment

By introducing a filter screen and brush plate cleaning system inside the support ring into the cyclone oil-water separator, the problem of the cyclone oil-water separator being unable to effectively filter impurities is solved, achieving effective removal of impurities and stable operation of the equipment, improving the separation effect and ease of use of the equipment.

CN223542606UActive Publication Date: 2025-11-14中化蓝星清洗科技(北京)有限公司
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Patent Information

Application Number
CN202422838548.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-11-14
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

Existing hydrocyclone oil-water separators cannot effectively filter impurities in oil-water mixtures during use, which can easily lead to clogging and affect the separation effect.

Method used

A cyclone oil-water separator was designed, comprising a filter screen and a brush plate inside a support ring. A drive motor drives a connecting rod to rotate, and the brush inside the support ring cleans the filter screen to prevent impurities from clogging it. At the same time, a sealing mechanism is used to improve the stability of the cyclone tube.

Benefits of technology

It achieves effective filtration of impurities in oil-water mixtures, avoids clogging of the cyclone oil-water separator, improves separation efficiency and equipment stability, and ensures the continuous normal operation of the cyclone oil-water separator.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of rotational flow oil-water separators, and discloses rotational flow oil-water separation equipment which comprises a rotational flow oil-water separator, supporting legs, a water outlet, a feeding opening, a supporting disc and a rotational flow pipe, the supporting legs are installed at the bottom of the rotational flow oil-water separator, the water outlet is formed in one end of the rotational flow oil-water separator, and the feeding opening is formed in the other end of the rotational flow oil-water separator. The feeding port is communicated with the top of the cyclone oil-water separator, the supporting discs are welded to the inner side of the cyclone oil-water separator, the two ends of the cyclone pipe are installed on the inner sides of the two supporting discs, a filtering mechanism is arranged in the cyclone oil-water separator, and sealing mechanisms are arranged between the supporting discs and the cyclone pipe. According to the rotational flow oil-water separation equipment, impurities in oil-water mixed liquid can be filtered through the filter screen on the inner side of the supporting ring, so that the impurities cannot block the rotational flow oil-water separator, the brush on the inner side of the supporting ring cleans the filter screen, the filter screen cannot be blocked, the impurities can be continuously filtered, and the rotational flow oil-water separator is more convenient to use.
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Description

Technical Field

[0001] This application relates to the field of cyclone oil-water separator technology, specifically to a cyclone oil-water separation device. Background Technology

[0002] The working principle of a hydrocyclone oil-water separator is based on the density difference between two immiscible liquids. Centrifugal force generated by rotation achieves oil-water separation. After the oil-water mixture enters the hydrocyclone tube, it forms a spiral flow within the hydrocyclone chamber. The heavy phase water is thrown against the inner wall of the hydrocyclone tube under strong centrifugal force and discharged from the underflow outlet, while the light phase oil gathers towards the center of the hydrocyclone tube and is discharged from the overflow outlet, thus achieving oil-water separation. However, existing hydrocyclone oil-water separators cannot effectively filter impurities in the oil-water mixture, easily causing clogging and affecting their operation.

[0003] Therefore, there is an urgent need for a cyclone oil-water separation device to solve the problem that cyclone oil-water separators cannot effectively filter impurities in oil-water mixtures. Utility Model Content

[0004] To address the shortcomings of existing technologies, this application provides a cyclone oil-water separation device that has the advantage of removing impurities from oil-water mixtures, thus solving the problem that cyclone oil-water separators cannot effectively filter impurities from oil-water mixtures.

[0005] To achieve the above objectives, this application provides the following technical solution: a cyclone oil-water separation device, comprising a cyclone oil-water separator, support legs, a water outlet, a feed inlet, a support plate, and a cyclone tube. The support legs are installed at the bottom of the cyclone oil-water separator, the water outlet is located at one end of the cyclone oil-water separator, the feed inlet is connected to the top of the cyclone oil-water separator, the support plate is welded to the inside of the cyclone oil-water separator, the two ends of the cyclone tube are installed on the inside of two sets of support plates, a filtration mechanism is provided inside the cyclone oil-water separator, and a sealing mechanism is provided between the support plate and the cyclone tube.

[0006] The filtration mechanism includes a drive motor, a connecting rod, a support plate, a brush plate, a support ring, and a filter screen. The drive motor is located at the other end of the cyclone oil-water separator. One end of the connecting rod is fixedly connected to the output end of the drive motor. The outer surfaces of the two sets of support plates are fixed to the outer surfaces of the connecting rod with screws. The brush plate is installed on the inner side of the support plate. The two sets of support rings are welded to the inner side of the cyclone oil-water separator. The filter screen is located on the inner side of the support ring. The inner side of the brush plate is in contact with the outer side of the filter screen.

[0007] The filter screen inside the support ring can filter impurities in the oil-water mixture, preventing them from clogging the cyclone oil-water separator. The brush inside the support ring cleans the filter screen, ensuring it remains clogged and continuously filters impurities, making the cyclone oil-water separator more convenient to use.

[0008] Preferably, a filter screen is welded to the bottom of the cyclone oil-water separator at the position corresponding to the support ring, and the bottom of the two sets of filter screens are connected to a storage tank, and the bottom of the two sets of storage tanks are connected to a waste outlet pipe.

[0009] Preferably, the inner side of the support ring has a fan-shaped slot.

[0010] Preferably, the outer surface of the connecting rod is rotatably connected to the support ring.

[0011] Preferably, the sealing mechanism includes a rubber pad, a pressure plate, and a bolt. The rubber pad is inserted into the inner side of the support plate at a position corresponding to the cyclone tube. The pressure plate is pressed against the inner side of the rubber pad. The bolt passes through the pressure plate and is threadedly connected to the support plate.

[0012] Preferably, the support plate has a hollow structure inside, and oil outlets are connected to the upper and lower sides of the support plate.

[0013] Preferably, the liquid outlet on the outside of the cyclone tube is connected to the support plate.

[0014] In summary, this application includes at least one of the following beneficial effects:

[0015] 1. In this cyclone oil-water separator, when the oil-water mixture is fed into the cyclone oil-water separator through the inlet, the filter screen inside the support ring can filter impurities in the oil-water mixture, preventing impurities from clogging the cyclone oil-water separator. At the same time, the connecting rod can drive the brush plate and support ring to rotate through the support plate, and the brush inside the support ring cleans the filter screen, preventing the filter screen from clogging and allowing for continuous filtration of impurities, making the cyclone oil-water separator more convenient to use.

[0016] 2. In this hydrocyclone oil-water separator, when the hydrocyclone tube is installed inside the support plate, the rubber gasket and pressure plate seal the hydrocyclone tube, making the connection between the hydrocyclone tube and the support plate tighter, making the installation of the hydrocyclone tube more stable, and enabling the hydrocyclone tube to stably separate the oil-water mixture, thereby improving the separation effect of the hydrocyclone oil-water separator. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this application;

[0018] Figure 2 This is a schematic diagram of the structure of this application;

[0019] Figure 3This is a schematic diagram of the structure of this application;

[0020] Figure 4 This is a schematic diagram of the structure of this application;

[0021] Figure 5 This is a schematic diagram of the structure of this application.

[0022] The components are as follows: 1. Cyclone oil-water separator; 111. Drive motor; 112. Connecting rod; 113. Support plate; 114. Brush plate; 115. Support ring; 116. Filter screen; 117. Storage box; 118. Impurity outlet pipe; 2. Support leg; 211. Rubber pad; 212. Pressing plate; 213. Bolt; 3. Oil outlet; 4. Water outlet; 5. Feed inlet; 6. Support plate; 7. Cyclone tube. Detailed Implementation

[0023] The technical solutions of 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. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0024] Please see Figure 1-5 A cyclone oil-water separator includes a cyclone oil-water separator 1, a support leg 2, a water outlet 4, a feed inlet 5, a support plate 6, and a cyclone tube 7. The support leg 2 is installed at the bottom of the cyclone oil-water separator 1, the water outlet 4 is located at one end of the cyclone oil-water separator 1, the feed inlet 5 is connected to the top of the cyclone oil-water separator 1, the support plate 6 is welded to the inside of the cyclone oil-water separator 1, the two ends of the cyclone tube 7 are installed inside the two sets of support plates 6, a filtration mechanism is provided inside the cyclone oil-water separator 1, and a sealing mechanism is provided between the support plate 6 and the cyclone tube 7.

[0025] Through the above technical solution, the support leg 2 supports the cyclone oil-water separator 1. The oil-water mixture is introduced into the cyclone oil-water separator 1 from the feed port 5. The oil-water mixture is separated into oil and water through the cyclone tube 7. The separated oil is discharged into a set of support plates 6, and the water is discharged from the outlet 4, so that the oil and water can be completely separated.

[0026] Specifically, the filtration mechanism includes a drive motor 111, a connecting rod 112, a support plate 113, a brush plate 114, a support ring 115, and a filter screen 116. The drive motor 111 is located at the other end of the cyclone oil-water separator 1. One end of the connecting rod 112 is fixedly connected to the output end of the drive motor 111. The outer surfaces of the two sets of support plates 113 are fixed to the outer surfaces of the connecting rod 112 by screws. The brush plate 114 is installed on the inner side of the support plate 113. The two sets of support rings 115 are welded to the inner side of the cyclone oil-water separator 1. The filter screen 116 is located on the inner side of the support ring 115. The outer surface of the connecting rod 112 is rotatably connected to the support ring 115. The inner side of the brush plate 114 is in contact with the outer side of the filter screen 116. The bottom of the cyclone oil-water separator 1 is welded with the filter screen 116 at the position corresponding to the support ring 115. The bottom of the two sets of filter screens 116 is connected to a storage tank 117. The bottom of the two sets of storage tanks 117 is connected to a waste outlet pipe 118.

[0027] Through the above technical solution, after the oil-water mixture is introduced into the cyclone oil-water separator 1 through the feed inlet 5, the filter screen 116 inside the support ring 115 can filter impurities in the oil-water mixture, so that the impurities will not clog the cyclone oil-water separator 1. At the same time, the drive motor 111 is started, and the drive motor 111 drives the connecting rod 112 to rotate. The connecting rod 112 can drive the brush plate 114 and the support ring 115 to rotate through the support plate 113. The brush inside the support ring 115 cleans the filter screen 116, so that the filter screen 116 will not be clogged and can continuously filter impurities, making the cyclone oil-water separator 1 more convenient to use. Impurities can fall into the storage tank 117 and be discharged from the impurity outlet pipe 118.

[0028] Specifically, the sealing mechanism includes a rubber gasket 211, a pressure plate 212, and a bolt 213. The rubber gasket 211 is inserted into the inner side of the support plate 6 at the position corresponding to the cyclone tube 7. The pressure plate 212 is pressed against the inner side of the rubber gasket 211. The bolt 213 passes through the pressure plate 212 and is threadedly connected to the support plate 6. The support plate 6 has a hollow internal structure. The upper and lower sides of the support plate 6 are connected to oil outlets 3. The liquid outlet on the outer side of the cyclone tube 7 is connected to the support plate 6.

[0029] With the above technical solution, the rubber pad 211 and the pressure plate 212 are fitted on the outside of the cyclone tube 7, and the bolt 213 passes through the rubber pad 211 and the pressure plate 212, which tightly fixes the rubber pad 211 and the pressure plate 212 to the support plate 6, making the connection between the support plate 6 and the cyclone tube 7 tighter, improving the stability of the cyclone tube 7, and preventing the oil-water mixture from leaking into the space between the two sets of support plates 6.

[0030] During use, the filter screen 116 inside the support ring 115 can filter impurities in the oil-water mixture, preventing them from clogging the cyclone oil-water separator 1. At the same time, the connecting rod 112 can drive the brush plate 114 and the support ring 115 to rotate through the support plate 113. The brush inside the support ring 115 cleans the filter screen 116, preventing it from clogging and allowing for continuous filtration of impurities, making the cyclone oil-water separator 1 more convenient to use.

[0031] Although embodiments of this application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A hydrocyclone oil-water separation device, comprising a hydrocyclone oil-water separator (1), a support leg (2), a water outlet (4), a feed inlet (5), a support plate (6), and a hydrocyclone tube (7), characterized in that: The support leg (2) is installed at the bottom of the cyclone oil-water separator (1), the outlet (4) is located at one end of the cyclone oil-water separator (1), the feed inlet (5) is connected to the top of the cyclone oil-water separator (1), the support plate (6) is welded to the inside of the cyclone oil-water separator (1), the two ends of the cyclone tube (7) are installed on the inside of the two sets of support plates (6), the cyclone oil-water separator (1) is equipped with a filter mechanism, and a sealing mechanism is provided between the support plate (6) and the cyclone tube (7); The filtration mechanism includes a drive motor (111), a connecting rod (112), a support plate (113), a brush plate (114), a support ring (115), and a filter screen (116). The drive motor (111) is located at the other end of the cyclone oil-water separator (1). One end of the connecting rod (112) is fixedly connected to the output end of the drive motor (111). The outer surfaces of the two sets of support plates (113) are fixed to the outer surfaces of the connecting rod (112) by screws. The brush plate (114) is installed on the inner side of the support plate (113). The two sets of support rings (115) are welded to the inner side of the cyclone oil-water separator (1). The filter screen (116) is located on the inner side of the support ring (115). The inner side of the brush plate (114) is in contact with the outer side of the filter screen (116).

2. The hydrocyclone oil-water separator according to claim 1, characterized in that: The bottom of the cyclone oil-water separator (1) is welded with a filter screen (116) at the position corresponding to the support ring (115). The bottom of the two sets of filter screens (116) is connected to a storage tank (117), and the bottom of the two sets of storage tanks (117) is connected to a waste outlet pipe (118).

3. The hydrocyclone oil-water separator according to claim 1, characterized in that: The inner side of the support ring (115) is provided with a fan-shaped slot.

4. The cyclone oil-water separator according to claim 1, characterized in that: The outer surface of the connecting rod (112) is rotatably connected to the support ring (115).

5. The hydrocyclone oil-water separator according to claim 1, characterized in that: The sealing mechanism includes a rubber pad (211), a pressure plate (212), and a bolt (213). The rubber pad (211) is inserted into the inner side of the support plate (6) at the position corresponding to the cyclone tube (7). The pressure plate (212) is pressed against the inner side of the rubber pad (211). The bolt (213) passes through the pressure plate (212) and is threadedly connected to the support plate (6).

6. The hydrocyclone oil-water separator according to claim 5, characterized in that: The support plate (6) has a hollow structure inside, and oil outlets (3) are connected to the upper and lower sides of the support plate (6).

7. The hydrocyclone oil-water separator according to claim 6, characterized in that: The liquid outlet on the outside of the cyclone tube (7) is connected to the support plate (6).