Cleaning device for filter shell production

By designing a filter housing production cleaning device with locking and cleaning mechanisms, the problem of difficult cleaning of the inner and outer sides of the housing in the existing technology is solved, and a highly efficient cleaning effect of the inner and outer walls is achieved.

CN224237689UActive Publication Date: 2026-05-15JIANGXI TAIYUE FILTER CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI TAIYUE FILTER CO LTD
Filing Date
2025-05-26
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing technologies are insufficient for effectively cleaning both the inner and outer sides of the oil filter housing, thus limiting its applicability.

Method used

A filter housing production and cleaning device was designed, which includes a locking mechanism and a cleaning mechanism. The filter housing is fixed by the locking mechanism, and the cleaning mechanism is driven by the lifting mechanism to clean the inner and outer walls of the filter housing at the same time. The device achieves efficient cleaning by combining the guide slope and the drainage channel.

Benefits of technology

It achieves simultaneous cleaning of the inner and outer walls of the filter housing, improving cleaning efficiency and effectiveness.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224237689U_ABST
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Abstract

The utility model relates to a filter shell production cleaning device which comprises a barrel body, a cylindrical base is arranged in the barrel body, a circle of flow guide inclined face is arranged on the edge of the outer side of the top of the base in a surrounding mode, a groove is further formed in the top of the base, and a locking mechanism is arranged in the groove. A cleaning mechanism driven by a lifting mechanism is further arranged above the base. The locking mechanism comprises two sets of inclined rods, the bottom ends of the inclined rods extend into the groove, an inverted-V-shaped structure is formed between the two sets of inclined rods, and the groove is internally provided with a positive and negative screw rod which penetrates through the side walls of the inclined rods and is driven by a motor I; the cleaning mechanism comprises a cleaning pipe connected with the water tank through a pipeline, nozzles I are evenly arranged on the side wall of the cleaning pipe, a nozzle II is further arranged in the middle of the cleaning pipe, and the cleaning pipe is connected with the nozzle II through a U-shaped pipe arranged in an inverted mode. While the stability of the product is improved, the inner side and the outer side of the product can be cleaned.
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Description

Technical Field

[0001] This invention relates to the field of filter processing, and in particular to a filter housing production and cleaning device. Background Technology

[0002] An oil filter, also known as an oil strainer, is used to protect the engine. During the production of oil filters, the processed oil filter housing needs to be cleaned to remove impurities adhering to the surface of the oil filter housing, ensuring that the oil filter housing is clean, thus facilitating the installation of the filter membrane.

[0003] For example, the cleaning device for processing oil filter housings, patent number CN218873009U, only uses a nozzle to spray water to clean the filter housing during rotation. However, this method can only clean the outside of the housing and cannot effectively clean the inside of the housing, which seriously limits its applicability. Summary of the Invention

[0004] The purpose of this invention is to provide a filter housing production and cleaning device.

[0005] The technical problem of this invention is mainly solved by the following technical solution:

[0006] A filter housing production and cleaning device includes a barrel body, a cylindrical base is provided inside the barrel body, a flow guiding slope is provided around the outer corner edge of the top of the base, a groove is also provided on the top of the base, a locking mechanism is provided in the groove, and a cleaning mechanism driven by a lifting mechanism is also provided above the base.

[0007] The locking mechanism includes two sets of inclined rods extending into the groove at the bottom end, wherein the two sets of inclined rods form an inverted figure-eight structure, and the groove is provided with a positive and negative lead screw that penetrates the side wall of the inclined rod and is driven by motor I;

[0008] The cleaning mechanism includes a cleaning pipe connected to a water tank via a pipeline. Spray nozzles I are evenly arranged on the side wall of the cleaning pipe, and spray nozzle II is also arranged in the middle of the cleaning pipe. The cleaning pipe is connected to spray nozzle II via an inverted U-shaped pipe.

[0009] Preferably, the bottom of the groove is provided with a drainage channel that penetrates the side wall of the base at an angle downwards. The groove is also provided with a sliding rod I that penetrates the sliding holes I on the two sets of inclined rods. The inclined rod is provided with a screw hole I that is screwed to the positive and negative lead screws.

[0010] Preferably, multiple sets of guide grooves are provided on the guide slope along its slope direction.

[0011] Preferably, a cylinder is provided above the base, the cleaning pipe is fixed on the inner wall of the cylinder, one vertical end of the U-shaped tube is fixedly connected to the inner wall of the cylinder, the lifting mechanism includes a mounting seat provided on one side of the top of the barrel, a C-shaped frame driven by motor II is provided on the top of the mounting seat, a protrusion extending into the opening of the C-shaped frame is provided on the outer side of the cylinder, a drive screw penetrating the screw hole II on the protrusion and a slide rod II penetrating the slide hole II on the protrusion are provided in the C-shaped frame, and the drive screw is driven by motor III.

[0012] Preferably, the flow guiding slope is located above the barrel body, and a ring of mounting slope is provided around the top corner edge of the groove, with the inclination direction of the flow guiding slope being opposite to that of the mounting slope.

[0013] The beneficial effects of the present invention are: the present invention locks and fixes the filter housing to the base through the locking mechanism, and at the same time, the cleaning mechanism that moves up and down can clean the inner and outer side walls of the housing simultaneously, thereby improving its cleaning efficiency and effect. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of the present invention;

[0015] Figure 2 This is a cross-sectional view of the present invention.

[0016] In the diagram: 1. Barrel body, 2. Base, 3. Guide slope, 4. Groove, 5. Locking mechanism, 51. Slant rod, 52. Positive and negative lead screws, 53. Motor I, 6. Lifting mechanism, 61. Mounting base, 62. Motor II, 63. C-shaped frame, 64. Boss, 65. Drive lead screw, 66. Motor III, 67. Slide rod II, 7. Cleaning mechanism, 71. Cleaning pipe, 72. Nozzle I, 73. Nozzle II, 74. U-shaped pipe, 8. Drainage channel, 9. Slide rod I, 10. Guide groove, 11. Cylinder, 12. Mounting slope. Detailed Implementation

[0017] The technical solution of the present invention will be further described in detail below through embodiments and in conjunction with the accompanying drawings.

[0018] A filter housing production and cleaning device includes a barrel 1, a cylindrical base 2 inside the barrel 1, a guide slope 3 around the outer corner of the top of the base 2, a plurality of guide grooves 10 along the slope direction of the guide slope 3, a groove 4 on the top of the base 2, a locking mechanism 5 inside the groove 4, and a cleaning mechanism 7 driven by a lifting mechanism 6 above the base 2.

[0019] The locking mechanism 5 includes two sets of inclined rods 51 extending into the groove 4 at the bottom end, wherein the two sets of inclined rods 51 form an inverted figure-eight structure, and the groove 4 is provided with a positive and negative lead screw 52 that penetrates the side wall of the inclined rods 51 and is driven by the motor I53.

[0020] The cleaning mechanism 7 includes a cleaning pipe 71 connected to a water tank via a pipe. The pipe is a flexible hose, which allows the cleaning mechanism 7 to move up and down, preventing the pipe from affecting the vertical displacement of the cleaning mechanism 7. A water pump is installed on the pipe to pump liquid from the water tank into the cleaning pipe 71 for water supply. Spray nozzles I72 are evenly arranged on the side wall of the cleaning pipe 71, and a spray nozzle II73 is also provided in the middle of the cleaning pipe 71. The cleaning pipe 71 is connected to the spray nozzles II73 via an inverted U-shaped pipe 74.

[0021] The bottom of the groove 4 is inclined downward and has a drainage channel 8 that penetrates the side wall of the base 2. The groove 4 is also provided with a slide rod I9 that penetrates the sliding hole I on the two sets of inclined rods 51. The inclined rod 51 is provided with a screw hole I that is screwed to the positive and negative screw rods 52.

[0022] A cylinder 11 is provided above the base 2. The cleaning pipe 71 is fixed on the inner wall of the cylinder 11. One vertical end of the U-shaped tube 74 is fixedly connected to the inner wall of the cylinder 11. The lifting mechanism 6 includes a mounting seat 61 provided on one side of the top of the barrel 1. A U-shaped frame 63 driven by a motor II 62 is provided on the top of the mounting seat 61. A protrusion 64 extending into the opening of the U-shaped frame 63 is provided on the outer side of the cylinder 11. A drive screw 65 penetrating the screw hole II on the protrusion 64 and a slide rod II 67 penetrating the sliding hole II on the protrusion 64 are provided inside the U-shaped frame 63. The drive screw 65 is driven by a motor III 66.

[0023] like Figure 1 , 2 As shown, the flow guiding slope 3 is located above the barrel body 1, and a ring of mounting slope 12 is arranged around the top corner edge of the groove 4. The inclination direction of the flow guiding slope 3 is opposite to the inclination direction of the mounting slope 12.

[0024] The working principle of this invention is as follows: The filter housing is fastened onto the guide slope 3 for support and fixation. At this time, the two sets of inclined rods 51 are located inside the opening of the housing. Then, the motor I53 drives the positive and negative lead screws 52 to rotate in the screw holes I on the inclined rods 51, thereby driving the inclined rods 51 to move to both sides. Finally, the top of the inclined rods 51 abuts against the inner wall of the housing, and the housing is locked and fixed on the base 2 by the two sets of moved inclined rods 51.

[0025] During the above process, the cleaning mechanism 7 is located outside the barrel 1 to prevent it from interfering with the removal and placement of the outer shell on the base 2. After the outer shell is fixed on the base 2, motor II 62 drives the U-shaped frame 63 to rotate the cleaning mechanism 7 and other components. Once the cleaning mechanism 7 is positioned directly above the base 2, motor II 62 stops working. Motor III 66 drives the drive screw 65 to rotate in the screw hole II on the protrusion 64, causing the protrusion 64 to move downward. The protrusion 64 then causes the cylinder 11 and the cleaning mechanism 7 to move downward, so that the cylinder 11 and the cleaning pipe 71 are fitted onto the outer shell and move downward. The cleaning pipe 71, through the U-shaped tube 74, drives the nozzle II 73 to slide into the opening of the outer shell. At this time, the U-shaped tube 74 is fastened to the side wall of the outer shell. As the cleaning mechanism 7 moves downward, the water pump injects the cleaning fluid into the cleaning pipe 71 through the pipe, which is then sprayed out by the nozzle I 72 to the outside. The outer wall of the shell is cleaned, and the cleaning pipe 71 injects liquid into the nozzle II 73 through the U-shaped pipe 74 and sprays it in all directions to clean the entire inner wall of the shell. During the above process, the liquid sprayed from the nozzle I 72 is restricted by the cylinder 11 to prevent the sprayed liquid from being refracted by the shell and splashed to the outside of the barrel 1. At this time, the cylinder 11 can refract the splashed liquid to prevent it from splashing to the outside of the barrel 1. The liquid that falls into the barrel flows into the barrel through the guide slope 3 and is finally discharged from the water outlet pipe at the bottom of the barrel 1. When the liquid sprayed from the nozzle II 73 cleans the inner wall of the shell, some of the liquid falls into the groove 4 and flows into the barrel 1 through the drainage channel 8, or some of the liquid drips into the angle formed between the inner wall of the shell and the guide slope 3. At this time, the liquid can flow down through several guide grooves 10 and flow into the barrel 1.

[0026] The present invention has been described in detail above, but the content described is only a preferred embodiment of the present invention and should not be considered as limiting the scope of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the patent coverage of the present invention.

Claims

1. A filter housing production and cleaning device, comprising a tank, characterized in that: The barrel is equipped with a cylindrical base. A guide slope is arranged around the outer edge of the top of the base. The top of the base is also equipped with a groove, and a locking mechanism is arranged in the groove. A cleaning mechanism driven by a lifting mechanism is also arranged above the base. The locking mechanism includes two sets of inclined rods extending into the groove at the bottom end, wherein the two sets of inclined rods form an inverted figure-eight structure, and the groove is provided with a positive and negative lead screw that penetrates the side wall of the inclined rod and is driven by motor I; The cleaning mechanism includes a cleaning pipe connected to a water tank via a pipeline. Spray nozzles I are evenly arranged on the side wall of the cleaning pipe, and spray nozzle II is also arranged in the middle of the cleaning pipe. The cleaning pipe is connected to spray nozzle II via an inverted U-shaped pipe.

2. The filter housing production and cleaning device according to claim 1, characterized in that: The bottom of the groove is inclined downward and has a drainage channel that penetrates the side wall of the base. The groove is also provided with a sliding rod I that penetrates the sliding holes I on the two sets of inclined rods. The inclined rod is provided with a screw hole I that is screwed to the positive and negative lead screws.

3. The filter housing production and cleaning device according to claim 1, characterized in that: Multiple sets of guide grooves are provided on the guide slope along its slope direction.

4. The filter housing production and cleaning device according to claim 1, characterized in that: A cylinder is provided above the base, and the cleaning pipe is fixed on the inner wall of the cylinder. One vertical end of the U-shaped tube is fixedly connected to the inner wall of the cylinder. The lifting mechanism includes a mounting seat provided on one side of the top of the barrel. A C-shaped frame driven by motor II is provided on the top of the mounting seat. A protrusion extending into the opening of the C-shaped frame is provided on the outer side of the cylinder. A drive screw penetrating the screw hole II on the protrusion and a slide rod II penetrating the slide hole II on the protrusion are provided in the C-shaped frame. The drive screw is driven by motor III.

5. A filter housing production and cleaning device according to claim 1, characterized in that: The flow guiding slope is located above the barrel body, and a ring of mounting slopes is arranged around the top corner edge of the groove. The inclination direction of the flow guiding slope is opposite to the inclination direction of the mounting slopes.