Filtering and cleaning device for aluminum profile production

By introducing a filter tank and a storage chamber into the filtration and cleaning device for aluminum profile production, and using a filter screen box driven by an electric motor to achieve primary and secondary filtration of raw materials, the problems of water affecting the working environment and poor filtration effect are solved, and efficient nickel slag separation is achieved.

CN224180361UActive Publication Date: 2026-05-01HEBEI ZHAOZHONG NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI ZHAOZHONG NEW MATERIAL TECH CO LTD
Filing Date
2025-04-24
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing aluminum profile production filtration and cleaning equipment causes water to affect the surrounding working environment during use, and the filtration effect is poor, requiring further filtration.

Method used

A device comprising a filtration tank, a storage chamber, and a filter screen box was designed. The device achieves primary and secondary filtration of raw materials through a feed pipe, a discharge pipe, and a filter screen box driven by an electric motor, ensuring the separation of water and nickel slag and improving the filtration effect.

Benefits of technology

It achieves efficient filtration of nickel slag without affecting the working environment, reduces the need for re-filtration, and improves the filtration effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a filtering and cleaning device for aluminum profile production, and belongs to the technical field of aluminum profiles. Comprising a filter tank, the interior of the filter tank is divided into a filter cavity and a storage cavity through a partition plate, a storage net cage is arranged in the storage cavity, a feeding pipe capable of changing the length of the filter cavity extending into the filter cavity is arranged on the outer side of the filter cavity, a discharging pipe is arranged below the filter cavity, and a discharging pipe connected with the discharging pipe is arranged at the lower end of the storage cavity. A motor with an output shaft located above the partition plate is arranged on the outer side of the filter tank, and a filter screen box is arranged below one side, located on the output shaft, of the motor; after raw materials enter the filter cavity of the filter tank from the feed pipe, the raw materials firstly penetrate through the filter screen box to filter nickel slag, then water is discharged from the discharge pipe, the nickel slag filtered by the filter screen box can be poured into the storage net box by starting the motor, the nickel slag is left in the storage net box at the moment, and the water penetrates through the filter screen box to enter the discharge pipe from the discharge pipe. Therefore, when the device is used, water cannot pollute the surrounding environment, and meanwhile secondary filtering of the nickel slag can be achieved.
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Description

A filtration and cleaning device for aluminum profile production Technical Field

[0001] This utility model provides a filtration and cleaning device for aluminum profile production, belonging to the field of aluminum profile technology. Background Technology

[0002] Aluminum profiles refer to materials made of aluminum alloy into various cross-sectional shapes through processes such as hot melting and extrusion. Due to their lightweight, high strength, good corrosion resistance, and good processing performance, they are widely used in many fields such as construction, industrial manufacturing, and transportation.

[0003] Publication No.: CN220169840U; discloses a filtration and cleaning device for aluminum profile production, including a base plate, a vibration structure fixedly installed on the top of the base plate, the vibration structure including a support rod, a first spring fixedly installed on the top of the support rod, a first receiving plate fixedly installed on the top of the first spring, a first inclined support plate fixedly installed on the top of the first receiving plate, a first support block fixedly installed on the top of the first inclined support plate, and a motor support sleeve fixedly installed on the top of the first support block.

[0004] The aforementioned patent uses a vibration structure. When the servo motor is activated, the motor shaft and eccentric block rotate, generating a shaking force. Multiple second springs and a first spring further intensify the shaking of the baffle, thus vibrating and filtering the nickel slag at the top of the micro-screen. This removes residual water after washing the nickel slag, resulting in more thorough water separation and facilitating subsequent processing. However, in actual use, water drips onto the bottom plate, affecting the working environment. Furthermore, the inclined flow of raw material from the feed plate not only causes nickel slag to flow into the storage tank but also allows some water to enter, leading to poor filtration and requiring further filtration. Summary of the Invention

[0005] The technical problem this invention aims to solve is that existing devices, when in use, cause water to affect the surrounding working environment, have poor filtration effects, and require further filtration.

[0006] To solve the above problems, the proposed technical solution is as follows: a filtration and cleaning device for aluminum profile production, comprising a filtration tank, the interior of which is divided into a filtration chamber and a storage chamber by a partition, a storage mesh box is provided in the storage chamber, an inlet pipe with an adjustable length extending into the filtration chamber is provided on the outside of the filtration chamber, an outlet pipe is provided below it, a discharge pipe connected to the outlet pipe is provided at the lower end of the storage chamber, and a motor with its output shaft located above the partition is provided on the outside of the filtration tank, and a filter mesh box is provided below the side of the output shaft where the motor is located.

[0007] As an improvement, support legs are provided at the four corners of the lower end of the filter tank;

[0008] As an improvement, the upper end of the baffle is located at the top of the filter tank;

[0009] As an improvement, handles are provided on both sides of the storage mesh box;

[0010] As an improvement, the feed pipe includes a main feed pipe located at the top of the filter tank, a secondary feed pipe slidably located at one end of the main feed pipe located on the inner wall of the filter chamber, a valve located at the end of the secondary feed pipe, and a cylinder located outside the filter tank that controls the movement of the secondary feed pipe.

[0011] As an improvement, when the motor drives the filter screen box to rotate, the filter screen box does not contact the side wall of the filter chamber. When the filter screen box rotates 30 degrees, the upper surface of the filter screen box is in contact with the upper surface of the storage screen box.

[0012] The beneficial effects of this utility model are:

[0013] By setting up a filter screen, the raw material enters the filter chamber of the filter tank from the feed pipe and first passes through the filter screen to filter out the nickel slag. Then, the water is discharged from the discharge pipe. After filtering for a period of time, the motor is started to drive the filter screen to rotate, causing the nickel slag filtered out by the filter screen to be poured into the storage screen. At this time, the nickel slag will remain in the storage screen, and the water will pass through the filter screen and enter the discharge pipe from the discharge pipe. In this way, when the device is in use, the water will be discharged from the discharge pipe, and the nickel slag can be filtered twice, further enhancing the filtration effect. Attached Figure Description

[0014] Figure 1 is a structural schematic diagram of a filtration and cleaning device for aluminum profile production according to this utility model.

[0015] Figure 2 is a schematic diagram of the lower structure of the filter tank of a filter cleaning device for aluminum profile production according to this utility model.

[0016] Figure 3 is a schematic diagram of the state of a filter and cleaning device for aluminum profile production according to this utility model.

[0017] 1. Filter tank; 101. Baffle plate; 102. Filter chamber; 103. Storage chamber; 104. Support leg; 2. Storage mesh box; 201. Handle; 3. Feed pipe; 301. Main feed pipe; 302. Secondary feed pipe; 303. Valve; 304. Cylinder; 4. Discharge pipe; 5. Discharge pipe; 6. Motor; 7. Filter mesh box. Detailed Implementation

[0018] The present invention will be further described below with reference to the accompanying drawings.

[0019] As shown in Figures 1-3, this utility model provides a filtration and cleaning device for aluminum profile production: it includes a filter tank 1; the filter tank 1 has four support legs 104 at its lower corners; the filter tank 1 is divided into a filter chamber 102 and a storage chamber 103 by a partition 101; the upper end of the partition 101 is located at the upper part of the filter tank 1; the outer side of the filter chamber 102 is provided with a feed pipe 3 whose length extending into the filter chamber 102 can be changed; the feed pipe 3 includes a main feed pipe 301 located at the upper part of the filter tank 1, a secondary feed pipe 302 slidably located at one end of the main feed pipe 301 located on the inner wall of the filter chamber 102, a valve 303 located at the end of the secondary feed pipe 302, and a cylinder 304 located outside the filter tank 1 and controlling the movement of the secondary feed pipe 302; thus, by activating the cylinder 304, the length of the secondary feed pipe 302 extending into the filter chamber 102 can be changed.

[0020] A discharge pipe 4 is provided below the filter chamber 102; a motor 6 with its output shaft located above the partition 101 is provided on the outside of the filter tank 1, and a filter screen box 7 is provided below the output shaft of the motor 6; when the motor 6 drives the filter screen box 7 to rotate, the filter screen box 7 does not contact the side wall of the filter chamber 102; when the filter screen box 7 rotates 180°, the upper end face of the filter screen box 7 is in contact with the upper end face of the storage screen box 2; when the auxiliary material pipe 302 extends into the middle of the filter chamber 102, the valve 303 is opened, and the raw material will enter the filter chamber 102 from the feed pipe 3 and fall into the filter screen box 7. The filter screen box 7 will filter the nickel slag in the filter tank, and the water will be discharged through the discharge pipe 4. After filtering for a period of time, the valve 303 is closed, and then the cylinder shaft of the cylinder 304 is retracted. Then the motor 6 is started, which can drive the filter screen box 7 to rotate.

[0021] The storage chamber 103 is equipped with a storage mesh box 2; handles 201 are provided on both sides of the storage mesh box 2; the lower end of the storage chamber 103 is equipped with a discharge pipe 5 connected to the discharge pipe 4. In this way, after the filter mesh box 7 rotates to the top of the storage mesh box 2, all the raw materials in the filter mesh box 7 will fall into the storage mesh box 2. During this process, the raw materials will move, causing water to fall into the filter pool 1. The water falling into the filter chamber 102 will be discharged through the discharge pipe 4, and the water falling into the storage chamber 103 will enter the discharge pipe 4 through the discharge pipe 5 and be discharged.

[0022] The principle of this utility model is as follows: In use, first connect the feed pipe 3 to the lower end of the electrostatic precipitator used for aluminum profile production. Then, extend the end of the discharge pipe 4 into another tank. Next, start the cylinder 304 to extend the auxiliary feed pipe 302 into the middle of the filter chamber 102. Then, open the valve 303. The raw material will enter the filter chamber 102 from the feed pipe 3 and fall into the filter screen box 7. The filter screen box 7 will filter the nickel slag, and the water will be discharged through the discharge pipe 4. After filtering for a period of time, close the valve 303, then retract the cylinder shaft of the cylinder 304. Then, start the motor 6 to drive the filter screen box 7 to rotate above the storage screen box 2. All the raw material in the filter screen box 7 will fall into the filter screen box. The raw material is placed into the storage mesh box 2. During this process, the raw material will move, causing water to fall into the filter tank 1. The water falling into the filter chamber 102 will be discharged through the discharge pipe 4, and the water falling into the storage chamber 103 will be discharged through the discharge pipe 5. Then, the output shaft of the reverse motor 6 will be reversed to filter the raw material again. At this time, the raw material entering the storage mesh box 2 will be filtered again. When the second batch of raw material is being filtered, after closing the valve 303, the storage mesh box 2 will be removed, the nickel slag will be cleaned, and then it will be put back. By following the above steps, when using this device, the filtered water will not affect the working environment, and the nickel slag can be filtered twice with good filtration effect.

[0023] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.

Claims

1. A filtering and cleaning device for aluminum profile production; characterized by: The filter includes a filter tank (1), which is divided into a filter chamber (102) and a storage chamber (103) by a partition (101). The storage chamber (103) is equipped with a storage mesh box (2). The filter chamber (102) is equipped with an inlet pipe (3) that can change the length of the filter chamber (102) and an outlet pipe (4) below it. The lower end of the storage chamber (103) is equipped with a discharge pipe (5) connected to the outlet pipe (4). The filter tank (1) is equipped with a motor (6) whose output shaft is located above the partition (101) on the outside of the filter tank (1). The filter mesh box (7) is located below the output shaft of the motor (6).

2. The filtering and cleaning device for producing aluminum profiles according to claim 1, characterized in that: The filter tank (1) is provided with support legs (104) at the four corners of its lower end.

3. The filtering and cleaning device for producing aluminum profiles according to claim 1, characterized in that: The upper end of the partition (101) is located at the upper part of the filter tank (1).

4. The filtration and cleaning device for aluminum profile production according to claim 1, characterized in that: The storage mesh box (2) is provided with handles (201) on both sides.

5. The filtering and cleaning device for producing aluminum profiles according to claim 1, characterized in that: The feed pipe (3) includes a main feed pipe (301) located on the upper part of the filter tank (1), a secondary feed pipe (302) slidably located at one end of the main feed pipe (301) on the inner wall of the filter chamber (102), a valve (303) located at the end of the secondary feed pipe (302), and a cylinder (304) located on the outside of the filter tank (1) and controlling the movement of the secondary feed pipe (302).

6. The filtration and cleaning device for aluminum profile production according to claim 1, characterized in that: When the motor (6) drives the filter box (7) to rotate, the filter box (7) does not contact the side wall of the filter chamber (102). When the filter box (7) rotates 180°, the upper surface of the filter box (7) is attached to the upper surface of the storage box (2).

Citation Information

Patent Citations

  • Filtering and cleaning device for aluminum profile production

    CN220169840U