Fine sorting device for waste copper-based materials

By designing a fine sorting device that includes rust removal components and dust removal components, the problems of dust pollution and insufficient rust removal in existing devices are solved, efficient copper material sorting and cleaning are achieved, and the quality of copper materials and environmental protection are ensured.

CN120605859APending Publication Date: 2025-09-09BEIJING XINYI RESOURCES SCI & TECH CO LTD
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Patent Information

Application Number
CN202510974356.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

The existing sorting device lacks a dust removal structure at the feed inlet, which causes dust to pollute the environment and cannot effectively remove rust, affecting the quality of the copper material and subsequent processing.

Method used

A fine sorting device including rust removal components and dust removal components was designed. The rust was removed using an ultrasonic cleaning tank, dust was absorbed by a dust hood and water tank system, and material sorting was performed in combination with a multi-stage screening structure.

Benefits of technology

It effectively removes dust pollution, ensures the quality of copper materials, and improves the sorting accuracy and quality of copper materials through multi-stage screening and ultrasonic cleaning, avoiding environmental pollution and oxidation corrosion.

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Abstract

The invention discloses a fine sorting device for waste copper-based materials, and relates to the technical field of copper-based material sorting, the fine sorting device comprises a bottom plate, a sorting box is arranged above the bottom plate, the outer surface of the sorting box is fixedly connected with a group of supporting legs, the bottom end of each supporting leg is connected with the upper surface of the bottom plate, and a rust removal assembly is mounted on the upper surface of the bottom plate. Through cooperative arrangement of the sorting box, the rust removal assembly, the feeding hopper, the dust removal assembly, a coarse screening plate, a fine screening plate and a vibration motor, waste copper-based materials to be sorted are put into the sorting box to be subjected to multi-stage sorting, dust raised near the feeding hopper can be subjected to dust collection treatment through the arranged dust removal assembly, and the dust removal efficiency is improved. According to the device, dust is prevented from polluting the environment, the sorted waste copper-based materials are discharged from the interior of the sorting box, rust removal can be conducted on the sorted waste copper-based materials through the arranged rust removal assembly, the quality and value of the copper materials can be guaranteed, and adverse effects on follow-up machining and using are avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of copper-based material separation, in particular to a device for finely separating waste copper-based materials. Background Art

[0002] Waste copper materials refer to various materials containing copper elements generated in the process of industrial production, scrapping of electronic appliances, building demolition, etc. Waste copper materials are highly recyclable. Copper is an important non-ferrous metal with good electrical conductivity, thermal conductivity and ductility, and has a high recycling value. Through reasonable recycling and treatment, waste copper materials can be converted into reusable copper resources, reducing the mining of primary copper mines, reducing resource consumption and environmental pressure, and improving resource utilization. With the increasing tension of global resources, sorting and recycling waste copper materials can effectively improve the utilization rate of copper resources. The copper in the waste copper materials can be separated and, after further processing, made into new copper products to meet the market demand for copper. Sorting equipment is required in the sorting process of copper materials.

[0003] The existing sorting device still has certain defects when in use. When the existing sorting device is in use, the feed port lacks a dust removal structure. When the waste copper-based materials enter the feed port, a large amount of dust will be raised, and the raised dust will pollute the environment. In addition, the existing sorting device cannot remove the rust of the copper material after sorting. The copper material will form a layer of copper rust on the surface due to oxidation and corrosion, which will not only reduce the quality and value of the copper material, but also have an adverse effect on subsequent processing and use. To this end, we provide a waste copper material fine sorting device to solve the above problems. Summary of the Invention

[0004] The purpose of the present invention is to remedy the deficiencies of the prior art and provide a device for finely sorting waste copper-based materials.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a device for fine sorting of waste copper-based materials, comprising a bottom plate, a sorting box is arranged above the bottom plate, a group of supporting legs are fixedly connected to the outer surface of the sorting box, the bottom end of each supporting leg is connected to the upper surface of the bottom plate, a rust removal component is installed on the upper surface of the bottom plate, a feed hopper is fixedly connected to the upper surface of the sorting box, a dust removal component is installed on the upper surface of the sorting box, a coarse screen plate and a fine screen plate are installed on the inner wall of the sorting box, and the bottom surfaces of the coarse screen plate and the fine screen plate are both installed with a vibrating screen. The motor is driven, the left side of the sorting box is fixedly connected with a discharge pipe 1, and the discharge pipe 1 is adapted to the left end of the coarse screen plate, the right side of the sorting box is fixedly connected with a discharge pipe 2, and the discharge pipe 2 is adapted to the right end of the fine screen plate, two guide plates are installed on the inner bottom wall of the sorting box, the inner bottom wall of the sorting box is fixedly connected with a discharge pipe 3, the bottom end of the discharge pipe 1, the bottom end of the discharge pipe 2 and the bottom end of the discharge pipe 3 are all fixedly connected with a corrugated telescopic tube, and an inspection door is installed on the front of the sorting box, and a transparent observation panel is fixedly inlaid on the front of the inspection door.

[0006] Furthermore, the rust removal component includes an ultrasonic cleaning tank fixedly connected to the upper surface of the base plate, an ultrasonic generator is installed on the outer surface of the ultrasonic cleaning tank, and a group of transducers is installed on the inner wall of the ultrasonic cleaning tank.

[0007] Furthermore, the outer surface of the ultrasonic cleaning tank is fixedly connected to a sewage pipe 1, and the outer surface of the sewage pipe 1 is installed with a sewage valve 1.

[0008] Furthermore, a shaking frame is provided on the inner wall of the ultrasonic cleaning tank. Two guide grooves are opened on the inner wall of the ultrasonic cleaning tank. The inner walls of the two guide grooves are slidably connected to two guide blocks, and the guide blocks are connected to the shaking frame.

[0009] Furthermore, two electric push rods are installed on the outer surface of the ultrasonic cleaning tank, and the output ends of the electric push rods are connected to the outer surface of the shaking frame. A group of springs are installed between the shaking frame and the ultrasonic cleaning tank.

[0010] Furthermore, two groups of bearing grooves are provided on the upper surface of the shaking frame, and a group of net holding grooves are provided inside the ultrasonic cleaning tank. A limiting plate is installed on the outer surface of each net holding groove, and the limiting plate is adapted to the bearing groove, and two handles are installed on the upper surface of each net holding groove.

[0011] Furthermore, the dust removal assembly includes a water storage tank fixedly connected to the upper surface of the sorting box, a transparent plate is fixedly inlaid on the front of the water storage tank, and a water filling cover is installed on the upper surface of the water storage tank.

[0012] Furthermore, the dust removal assembly also includes a dust hood, two support frames are installed on the outer surface of the dust hood, and the support frames are connected to the feed hopper, the outer surface of the dust hood is fixedly connected to two dust suction pipes, and the end of the dust suction pipe away from the dust hood is connected to the interior of the water tank, and the upper surface of the water tank is fixedly embedded with an air pump.

[0013] Furthermore, the outer surface of the water storage tank is fixedly connected to a second sewage pipe, and the outer surface of the second sewage pipe is installed with a second sewage valve.

[0014] Compared with the existing technology, the waste copper material fine separation device has the following beneficial effects: The present invention coordinates the arrangement of a sorting box, a rust removal component, a feed hopper, a dust removal component, a coarse screen plate, a fine screen plate and a vibration motor. The waste copper-based materials to be sorted are put into the interior of the sorting box for multi-stage sorting. The dust removal component is used to absorb the dust raised near the feed hopper to avoid environmental pollution caused by the dust. The sorted waste copper-based materials are discharged from the interior of the sorting box. The rust removal component is used to remove rust from the sorted waste copper-based materials, which can ensure the quality and value of the copper materials and avoid adverse effects on subsequent processing and use.

[0015] The present invention cooperates with a feed hopper, a water storage tank, a transparent plate, a water filling cover, a dust suction hood, a support frame, a dust suction pipe, an air pump, a sewage pipe and a sewage valve. When the water filling cover is opened, a certain amount of water is added to the interior of the water storage tank. The air suction pump can extract the air inside the water storage tank, so that a negative pressure is generated inside the water storage tank, thereby generating a negative pressure inside the dust suction hood and the dust suction pipe, so that dust near the feed hopper enters the interior of the water storage tank through the dust suction hood and the dust suction pipe, and the water inside the water storage tank can absorb the sucked-in dust, so that the dust raised near the feed hopper can be easily processed to prevent dust from polluting the environment.

[0016] The present invention cooperates with discharge pipe one, discharge pipe two, discharge pipe three, corrugated telescopic tube, ultrasonic cleaning tank, ultrasonic generator, transducer, drain pipe one, drain valve one, shaking frame, guide groove, guide block, electric push rod, spring, bearing groove, holding net slot and limit plate. The sorted waste copper materials can be discharged downward into the holding net slot through discharge pipe one, discharge pipe two and discharge pipe three respectively. The ultrasonic generator and transducer work together to make the cleaning liquid inside the ultrasonic cleaning tank generate ultrasonic vibration, which can facilitate ultrasonic cleaning of the waste copper materials inside the holding net slot. The extension and retraction of the output end of the electric push rod can drive the shaking frame to shake inside the ultrasonic cleaning tank, which can ensure the cleaning effect of the waste copper materials. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 Schematic diagram of the internal structure of the sorting box of the present invention; Figure 3 This is a schematic diagram of the three-dimensional structure of the rust removal component of the present invention; Figure 4 Schematic diagram of the three-dimensional structure of the ultrasonic cleaning tank of the present invention; Figure 5 Schematic diagram of the three-dimensional structure of the dust removal component of the present invention; Figure 6 Schematic diagram of the internal structure of the water storage tank of the present invention.

[0018] Figure: 1, bottom plate; 2, sorting box; 3, support leg; 4, rust removal component; 401, ultrasonic cleaning tank; 402, ultrasonic generator; 403, transducer; 404, drain pipe 1; 405, drain valve 1; 406, shaking frame; 407, guide groove; 408, guide block; 409, electric push rod; 410, spring; 411, bearing groove; 412, net holding groove; 413, limit plate; 414, handle; 5, feed hopper; 6 , dust removal components; 601, water storage tank; 602, transparent plate; 603, water filling cover; 604, dust hood; 605, support frame; 606, dust suction pipe; 607, vacuum pump; 608, drain pipe 2; 609, drain valve 2; 7, coarse screen plate; 8, fine screen plate; 9, vibration motor; 10, discharge pipe 1; 11, discharge pipe 2; 12, guide plate; 13, discharge pipe 3; 14, corrugated telescopic pipe; 15, inspection door; 16, transparent observation panel. DETAILED DESCRIPTION

[0019] The principles and features of the present invention are described below with reference to the accompanying drawings. The examples given are only used to explain the present invention and are not used to limit the scope of the present invention.

[0020] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments. Example 1

[0021] like Figure 1 and Figure 2As shown, a waste copper material fine sorting device includes a bottom plate 1, a sorting box 2 is arranged above the bottom plate 1, a group of support legs 3 are fixedly connected to the outer surface of the sorting box 2, the bottom end of each support leg 3 is connected to the upper surface of the bottom plate 1, a rust removal component 4 is installed on the upper surface of the bottom plate 1, a feed hopper 5 is fixedly connected to the upper surface of the sorting box 2, a dust removal component 6 is installed on the upper surface of the sorting box 2, a coarse screen plate 7 and a fine screen plate 8 are installed on the inner wall of the sorting box 2, and a vibration motor 9 is installed on the bottom surface of the coarse screen plate 7 and the fine screen plate 8. The left side of the sorting box 2 is fixedly connected to There is a discharge pipe 10, and the discharge pipe 10 is adapted to the left end of the coarse screen plate 7. The right side of the sorting box 2 is fixedly connected with a discharge pipe 2 11, and the discharge pipe 2 11 is adapted to the right end of the fine screen plate 8. Two guide plates 12 are installed on the inner bottom wall of the sorting box 2. The inner bottom wall of the sorting box 2 is fixedly connected with a discharge pipe 3 13. The bottom end of the discharge pipe 10, the bottom end of the discharge pipe 2 11 and the bottom end of the discharge pipe 3 13 are all fixedly connected with a corrugated telescopic tube 14. An inspection door 15 is installed on the front of the sorting box 2, and a transparent observation panel 16 is fixedly inlaid on the front of the inspection door 15.

[0022] In this embodiment, there are four supporting legs 3, and each supporting leg 3 is located at the four corners of the outer surface of the sorting box 2. The supporting legs 3 are provided to support the sorting box 2, and the feed hopper 5 is provided to conveniently feed the waste copper-based materials to be sorted into the interior of the bottom plate 1 through the feed hopper 5. The coarse screen plate 7 and the fine screen plate 8 are provided to perform multi-stage screening on the waste copper-based materials. The coarse screen plate 7 and the fine screen plate 8 are both inclinedly provided inside the sorting box 2, and the top end of the discharge pipe 10 and the left end of the coarse screen plate 7 are located at the same horizontal plane, so that the screened waste copper-based materials can enter the interior of the discharge pipe 10, and the discharge pipe 2 The top end of 11 and the right end of the fine screen plate 8 are located at the same horizontal plane, which can allow the screened waste copper materials to enter the interior of the discharge pipe 2 11. The guide plate 12 is provided to guide the screened waste copper materials, so that the finest waste copper materials can enter the interior of the discharge pipe 3 13. The inspection door 15 is hinged to the sorting box 2 through a hinge. Opening the inspection door 15 can facilitate the inspection of the interior of the sorting box 2. The transparent observation panel 16 is provided to facilitate the observation of the sorting effect of the waste copper materials inside the sorting box 2. A handle is installed on the outer surface of the inspection door 15, which can facilitate the opening of the inspection door 15.

[0023] The working steps of this embodiment are as follows: like Figure 1 and Figure 2As shown, when the device is used to sort waste copper materials, the waste copper materials to be sorted are first put into the interior of the sorting box 2 through the feed hopper 5, and the dust removal component 6 is used to vacuum the dust raised near the feed hopper 5 to avoid dust pollution to the environment. The coarse screen plate 7 and the fine screen plate 8 are used to perform multi-stage screening on the waste copper materials, which can facilitate the sorting of waste copper materials of different sizes. The vibrating motor 9 is used to vibrate the coarse screen plate 7 and the fine screen plate 8 to avoid blockage of the coarse screen plate 7 and the fine screen plate 8. The sorted waste copper materials can be discharged from the interior of the sorting box 2 through the discharge pipe 1 10, the discharge pipe 2 11 and the discharge pipe 3 13 respectively. The rust removal component 4 is used to remove rust from the sorted waste copper materials, which can complete the fine sorting of the waste copper materials and ensure the use effect of the device. Example 2

[0024] like Figure 1 、 Figure 3 and Figure 4 As shown, the rust removal component 4 includes an ultrasonic cleaning tank 401 fixedly connected to the upper surface of the base plate 1, an ultrasonic generator 402 is installed on the outer surface of the ultrasonic cleaning tank 401, a group of equidistantly arranged transducers 403 are installed on the inner wall of the ultrasonic cleaning tank 401, a sewage pipe 404 is fixedly connected to the outer surface of the sewage pipe 404, a sewage valve 405 is installed on the outer surface of the sewage pipe 404, a shaking frame 406 is provided on the inner wall of the ultrasonic cleaning tank 401, two symmetrical guide grooves 407 are opened on the inner wall of the ultrasonic cleaning tank 401, and two symmetrical guide blocks 408 are slidably connected to the inner walls of the two guide grooves 407, and the guide blocks 408 are connected to the shaking frame 406. The ultrasonic cleaning tank 401 is connected to the shaking frame 406, and two symmetrical electric push rods 409 are installed on the outer surface of the ultrasonic cleaning tank 401, and the output end of the electric push rod 409 is connected to the outer surface of the shaking frame 406. A group of equidistantly arranged springs 410 are installed between the shaking frame 406 and the ultrasonic cleaning tank 401, and two groups of equidistantly arranged bearing grooves 411 are provided on the upper surface of the shaking frame 406. A group of equidistantly arranged net-holding grooves 412 are provided inside the ultrasonic cleaning tank 401, and a limit plate 413 is installed on the outer surface of each net-holding groove 412, and the limit plate 413 is adapted to the bearing groove 411, and two handles 414 are installed on the upper surface of each net-holding groove 412.

[0025] In this embodiment, the ultrasonic cleaning tank 401 is provided to hold the cleaning liquid. The ultrasonic cleaning tank 401 and the ultrasonic generator 402 work together to generate ultrasonic waves. The ultrasonic cleaning tank 401 converts low-frequency electrical energy into high-frequency AC signals. The transducer 403 converts this electrical energy into mechanical vibrations to generate ultrasonic waves. By opening the drain valve 405, the cleaning liquid inside the ultrasonic cleaning tank 401 can be easily discharged through the drain pipe 404. The two electric push rods 409 are exactly the same in model and size, and the two electric push rods 409 are controlled by the same controller to work simultaneously. The extension and retraction of the output end of the electric push rod 409 can drive the shaking frame 406 to shake inside the ultrasonic cleaning tank 401. When the shaking frame 406 is in the ultrasonic cleaning tank 40 1 shakes inside, the guide block 408 can slide on the inner wall of the guide groove 407, can guide and limit the shaking frame 406, can ensure the stability of the shaking frame 406 when moving, and the spring 410 is provided to facilitate the resetting of the shaking frame 406. When the holding net slot 412 is placed inside the ultrasonic cleaning tank 401, the limiting plate 413 installed on the outer surface of the holding net slot 412 can be placed inside the bearing slot 411, which can facilitate the bearing of the holding net slot 412. There are three holding net slots 412, and the positions of the three holding net slots 412 correspond to the bottom ends of the three corrugated telescopic tubes 14 respectively, which can facilitate the bearing of the sorted waste copper-based materials and facilitate ultrasonic cleaning of the waste copper-based materials.

[0026] The working steps of this embodiment are as follows: like Figure 1 、 Figure 3 and Figure 4 As shown, the waste copper materials after sorting inside the sorting box 2 can be discharged downward through the discharge pipe 10, the discharge pipe 2 11 and the discharge pipe 3 13 respectively, so that the sorted waste copper materials can enter the interior of the holding net slot 412 through the corrugated telescopic tube 14, and the ultrasonic generator 402 and the transducer 403 work together to enable the cleaning liquid inside the ultrasonic cleaning tank 401 to generate ultrasonic vibrations, which can facilitate ultrasonic cleaning of the waste copper materials inside the holding net slot 412, and the output end of the electric push rod 409 can be extended to drive the shaking frame 406 to shake inside the ultrasonic cleaning tank 401, which can ensure the cleaning effect of the waste copper materials, remove the copper rust on the outer surface of the waste copper materials, and ensure the quality and value of the copper materials. Example 3

[0027] like Figure 1 、 Figure 2 、 Figure 5 and Figure 6As shown, the dust removal component 6 includes a water tank 601 fixedly connected to the upper surface of the sorting box 2, a transparent plate 602 is fixedly inlaid on the front of the water tank 601, and a water filling cover 603 is installed on the upper surface of the water tank 601. The dust removal component 6 also includes a dust hood 604, and two symmetrical support frames 605 are installed on the outer surface of the dust hood 604, and the support frames 605 are connected to the feed hopper 5. The outer surface of the dust hood 604 is fixedly connected to two symmetrical dust suction pipes 606, and the end of the dust suction pipe 606 away from the dust hood 604 is connected to the interior of the water tank 601, and an air pump 607 is fixedly inlaid on the upper surface of the water tank 601. The outer surface of the water tank 601 is fixedly connected to a sewage pipe 2 608, and the outer surface of the sewage pipe 2 608 is installed with a sewage valve 2 609.

[0028] In this embodiment, the transparent plate 602 is provided to facilitate observation of the water volume and cleanliness inside the water tank 601. A threaded hole adapted to the water filling cover 603 is provided on the upper surface of the water tank 601, so that the water filling cover 603 can be threadedly connected to the inner wall of the threaded hole. A circle of anti-skid grooves is provided on the outer surface of the water filling cover 603, so that the water filling cover 603 can be opened conveniently and water can be added to the interior of the water tank 601 conveniently. The support frame 605 is provided to support the dust cover 604. Support, one end of the dust suction pipe 606 away from the dust suction cover 604 extends to the interior of the water tank 601 and is close to the inner bottom wall of the water tank 601 and does not touch the inner bottom wall of the water tank 601, and a mounting hole compatible with the air pump 607 is opened on the upper surface of the water tank 601, which can enable the air pump 607 to be connected to the inner wall of the mounting hole, and the input end of the air pump 607 is connected to the interior of the water tank 601. Opening the drain valve 609 can facilitate the discharge of water inside the water tank 601 through the drain pipe 608.

[0029] The working steps of this embodiment are as follows: like Figure 1 、 Figure 2 、 Figure 5 and Figure 6 As shown, open the water filling cover 603 and add a certain amount of water to the inside of the water tank 601. The water level must not be higher than the input end of the air pump 607. When waste copper materials are added to the inside of the sorting box 2 through the feed hopper 5, the dust in the waste copper materials will be lifted up by the feed hopper 5. At the same time, start the air pump 607. The air pump 607 can extract the air inside the water tank 601, which can generate negative pressure inside the water tank 601, thereby generating negative pressure inside the dust hood 604 and the dust pipe 606, so that the dust near the feed hopper 5 enters the inside of the water tank 601 through the dust hood 604 and the dust pipe 606, and the water inside the water tank 601 can absorb the inhaled dust, so that the dust raised near the feed hopper 5 can be easily processed to avoid dust pollution to the environment.

[0030] In the description of the present invention, it should be understood that the terms "upper", "lower", "left", "right" and the like indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, and a specific direction structure and operation, and therefore, cannot be understood as limiting the present invention. In addition, "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, unless otherwise specified, "multiple" means two or more.

[0031] It should be noted that the standard parts used in the present invention can all be purchased from the market, and special-shaped parts can be customized according to the description in the specification and drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the inventor will not elaborate on them here.

[0032] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.

[0033] The above is a detailed description of an embodiment of the present invention. However, the content described is only a preferred embodiment of the present invention and should not be considered to limit the scope 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 device for finely sorting waste copper-based materials, comprising a bottom plate (1), characterized in that: A sorting box (2) is provided above the bottom plate (1), a group of supporting legs (3) are fixedly connected to the outer surface of the sorting box (2), the bottom end of each supporting leg (3) is connected to the upper surface of the bottom plate (1), a rust removal component (4) is installed on the upper surface of the bottom plate (1), a feed hopper (5) is fixedly connected to the upper surface of the sorting box (2), a dust removal component (6) is installed on the upper surface of the sorting box (2), a coarse screen plate (7) and a fine screen plate (8) are installed on the inner wall of the sorting box (2), and a vibration motor (9) is installed on the bottom surface of the coarse screen plate (7) and the fine screen plate (8), and a discharge pipe (10) is fixedly connected to the left side of the sorting box (2). , and the discharge pipe 1 (10) is adapted to the left end of the coarse screen plate (7), the right side of the sorting box (2) is fixedly connected with the discharge pipe 2 (11), and the discharge pipe 2 (11) is adapted to the right end of the fine screen plate (8), the inner bottom wall of the sorting box (2) is installed with two guide plates (12), the inner bottom wall of the sorting box (2) is fixedly connected with the discharge pipe 3 (13), the bottom end of the discharge pipe 1 (10), the bottom end of the discharge pipe 2 (11) and the bottom end of the discharge pipe 3 (13) are all fixedly connected with a corrugated telescopic tube (14), the front of the sorting box (2) is installed with an inspection door (15), and the front of the inspection door (15) is fixedly inlaid with a transparent observation panel (16).

2. The device for finely separating waste copper-based materials according to claim 1, characterized in that: The rust removal assembly (4) comprises an ultrasonic cleaning tank (401) fixedly connected to the upper surface of the base plate (1), an ultrasonic generator (402) is installed on the outer surface of the ultrasonic cleaning tank (401), and a group of transducers (403) are installed on the inner wall of the ultrasonic cleaning tank (401).

3. The device for finely separating waste copper-based materials according to claim 2, characterized in that: The outer surface of the ultrasonic cleaning tank (401) is fixedly connected to a sewage pipe (404), and the outer surface of the sewage pipe (404) is installed with a sewage valve (405).

4. The device for finely separating waste copper-based materials according to claim 2, characterized in that: The inner wall of the ultrasonic cleaning tank (401) is provided with a shaking frame (406), and the inner wall of the ultrasonic cleaning tank (401) is provided with two guide grooves (407), and the inner walls of the two guide grooves (407) are both slidably connected to two guide blocks (408), and the guide blocks (408) are connected to the shaking frame (406).

5. The device for finely separating waste copper-based materials according to claim 4, characterized in that: Two electric push rods (409) are installed on the outer surface of the ultrasonic cleaning tank (401), and the output ends of the electric push rods (409) are connected to the outer surface of the shaking frame (406). A group of springs (410) are installed between the shaking frame (406) and the ultrasonic cleaning tank (401).

6. The device for finely separating waste copper-based materials according to claim 4, characterized in that: Two groups of bearing grooves (411) are provided on the upper surface of the shaking frame (406), and a group of net holding grooves (412) are provided inside the ultrasonic cleaning tank (401). A limiting plate (413) is installed on the outer surface of each net holding groove (412), and the limiting plate (413) is adapted to the bearing groove (411). Two handles (414) are installed on the upper surface of each net holding groove (412).

7. The device for finely separating waste copper-based materials according to claim 1, characterized in that: The dust removal assembly (6) comprises a water storage tank (601) fixedly connected to the upper surface of the sorting box (2), a transparent plate (602) is fixedly embedded on the front of the water storage tank (601), and a water filling cover (603) is installed on the upper surface of the water storage tank (601).

8. The device for finely separating waste copper-based materials according to claim 7, characterized in that: The dust removal assembly (6) further comprises a dust hood (604), the outer surface of which is mounted two support frames (605), the support frames (605) being connected to the feed hopper (5), the outer surface of which is fixedly connected two dust suction pipes (606), one end of which, away from the dust hood (604), is connected to the interior of the water storage tank (601), and an air pump (607) is fixedly embedded on the upper surface of the water storage tank (601).

9. The device for finely separating waste copper-based materials according to claim 7, characterized in that: The outer surface of the water storage tank (601) is fixedly connected to a second sewage pipe (608), and a second sewage valve (609) is installed on the outer surface of the second sewage pipe (608).

Citation Information

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