An aluminum-plastic separation and recycling device

By designing an aluminum-plastic separation and recycling equipment including a separation chamber, a hydraulic telescopic device and a vacuum adsorption device, the problem of difficult to separate aluminum-plastic composite materials with thin thickness or firm bonds in the prior art is solved, and effective separation and recycling of aluminum foil and plastic sheets are realized, and dust pollution is avoided.

CN119658874BActive Publication Date: 2025-06-24JIANGSU HONGXIN ENVIRONMENTAL PROTECTION EQUIP MFG CO LTD
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Patent Information

Application Number
CN202411951839.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-06-24
Estimated Expiration
2044-12-27

AI Technical Summary

Technical Problem

The existing aluminum-plastic composite material recycling technology is difficult to effectively separate aluminum-plastic composite materials with thin thickness or firm bonding, and the finished products obtained are pelletized materials, which easily produces fine dust during processing, affecting the environment and production efficiency.

Method used

An aluminum-plastic separation and recycling equipment is designed, including a separation chamber, a hydraulic telescopic device, a vacuum adsorption device, etc. The installation plate is driven by the hydraulic telescopic device to drive the vacuum adsorption device to move, so that the aluminum-plastic raw material and the film removal liquid are fully in contact, and the separation of aluminum foil and plastic sheets is realized, and the sheet-like material is quickly removed through the vacuum adsorption device.

Benefits of technology

Effective separation of aluminum and plastic is achieved. The obtained aluminum foil and plastic sheet are all sheet-like materials, which are easy to recycle, avoid dust pollution, and improve production efficiency and environmental protection effects.

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Abstract

An aluminum-plastic separation and recycling device, comprising: a separation component, the separation component includes: a separation bin; a hydraulic telescopic device, arranged on the separation bin, and an installation plate is arranged on the telescopic end of the hydraulic telescopic device; a first overall vacuum adsorption device, arranged under the installation plate, for simultaneously adsorbing the aluminum foil and plastic sheet below it; a first aluminum foil vacuum adsorption device, arranged under the installation plate, for adsorbing the aluminum foil below it; a second overall vacuum adsorption device, arranged on the inner wall of the lower part of the separation bin, for simultaneously adsorbing the aluminum foil and plastic sheet above it, and the second overall vacuum adsorption device is arranged directly below the first aluminum foil vacuum adsorption device; a second aluminum foil vacuum adsorption device, arranged on the inner wall of the lower part of the separation bin, for adsorbing the aluminum foil above it, and the second aluminum foil vacuum adsorption device is arranged directly below the first overall vacuum adsorption device. Thus, the aluminum and plastic can be effectively separated, and at the same time, sheet-shaped aluminum foil and plastic sheets can be obtained.
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Description

Technical Field

[0001] The present invention relates to the technical field of aluminum-plastic separation, and particularly to an aluminum-plastic separation and recycling device. Background Art

[0002] Waste aluminum-plastic composite materials can be recycled and reused after certain recycling processing, which can not only play an environmental protection role but also reduce the production cost of enterprises. Aluminum-plastic separation refers to completely separating aluminum-plastic composite materials into aluminum and plastic without causing secondary environmental pollution.

[0003] In related technologies, it is usually necessary to first crush the aluminum-plastic composite materials, and then pass the crushed mixture through an eddy current separator to achieve the separation of aluminum and plastic. This separation and recycling method has poor effects on materials with relatively thin thickness or firmly bonded materials, and it is difficult to completely separate them. Moreover, the obtained finished products are granular materials (aluminum particles and plastic particles). And the granular materials may require additional surface treatment after forming to achieve a higher smoothness, which increases the difficulty of recycling and reuse. In addition, fine dust is easily generated during the processing of granular materials, which has an adverse impact on the working environment. Summary of the Invention

[0004] The present invention aims to solve at least one of the technical problems in the above technologies to some extent.

[0005] For this purpose, the object of the present invention is to provide an aluminum-plastic separation and recycling device, which can effectively separate aluminum and plastic, and at the same time, sheet aluminum foil and plastic sheets can be obtained.

[0006] To achieve the above object, the present invention provides an aluminum-plastic separation and recycling device, including: a separation component, the separation component includes: a separation chamber; a hydraulic telescopic device arranged on the separation chamber, and an installation plate is arranged on the telescopic end of the hydraulic telescopic device; a first overall vacuum adsorption device arranged below the installation plate for simultaneously adsorbing the aluminum foil and plastic sheets below it; a first aluminum foil vacuum adsorption device arranged below the installation plate for adsorbing the aluminum foil below it; a second overall vacuum adsorption device arranged on the inner wall of the lower part of the separation chamber for simultaneously adsorbing the aluminum foil and plastic sheets above it, the second overall vacuum adsorption device is arranged directly below the first aluminum foil vacuum adsorption device, wherein the aluminum-plastic composite material is arranged between the second overall vacuum adsorption device and the first aluminum foil vacuum adsorption device; a second aluminum foil vacuum adsorption device arranged on the inner wall of the lower part of the separation chamber for adsorbing the aluminum foil above it, the second aluminum foil vacuum adsorption device is arranged directly below the first overall vacuum adsorption device, wherein the aluminum-plastic composite material is arranged between the second aluminum foil vacuum adsorption device and the first overall vacuum adsorption device.

[0007] In one embodiment of the present invention, the first integral vacuum adsorption device and the first aluminum foil vacuum adsorption device are arranged side by side. The adsorption holes of the first aluminum foil vacuum adsorption device are smaller in aperture and more in number than those of the first integral vacuum adsorption device. The second integral vacuum adsorption device and the second aluminum foil vacuum adsorption device are arranged side by side. The adsorption holes of the second aluminum foil vacuum adsorption device are smaller in aperture and more in number than those of the second integral vacuum adsorption device. Among them, pressure sensors are provided on the first integral vacuum adsorption device, the first aluminum foil vacuum adsorption device, the second integral vacuum adsorption device, and the second aluminum foil vacuum adsorption device.

[0008] In one embodiment of the present invention, a hydraulic sensor is provided on the inner wall of the separation chamber.

[0009] In one embodiment of the present invention, a stripping solution replenishing device is provided on the separation chamber. The stripping solution replenishing device includes: a stripping solution tank, a pump body, and an infusion pipe. Among them, the stripping solution tank is provided on the separation chamber, the pump body is provided on the stripping solution tank, and the liquid suction end of the pump body is communicated with the stripping solution tank. The liquid outlet end of the pump body is communicated with the separation chamber through the infusion pipe.

[0010] In one embodiment of the present invention, the mounting plate is provided above the separation chamber. The first integral vacuum adsorption device and the first aluminum foil vacuum adsorption device are slidably connected to the separation chamber.

[0011] In one embodiment of the present invention, it further includes: a placement rack. A plurality of receiving grooves are formed in the placement rack. Sliding grooves are formed in the inner side walls of the receiving grooves. A plurality of separation components are provided. The plurality of receiving grooves correspond to the plurality of separation components one by one. The separation components are slidably connected to the receiving grooves.

[0012] In one embodiment of the present invention, it further includes: a moving component. The moving component includes: a vertical driving device, a horizontal driving device, an electric telescopic rod, and an electromagnet. Among them, the horizontal driving device is provided on the vertical driving device, the electric telescopic rod is provided on the horizontal driving device, and the electromagnet is provided at the driving end of the electric telescopic rod. Among them, the electromagnet is slidably connected to the sliding groove, and the electromagnet is magnetically connected to the separation chamber.

[0013] In one embodiment of the present invention, the vertical driving device includes: a driving chamber, a motor, a ball screw, a ball slider, and a connecting piece. Among them, the motor is provided in the driving chamber, the ball screw is provided at the driving end of the motor, the ball slider is provided on the ball screw, and the ball slider is connected to the horizontal driving device through the connecting piece.

[0014] In one embodiment of the present invention, the horizontal driving device and the vertical driving device have the same structure, and the axis of the ball screw on the horizontal driving device and the axis of the ball screw on the vertical driving device are arranged perpendicular to each other.

[0015] Advantages of the present invention:

[0016] The moving top vacuum adsorption device can evenly press the aluminum-plastic raw material into the stripping solution, enabling the aluminum-plastic raw material to come into full contact with the stripping solution. Through sufficient immersion in the stripping solution, aluminum-plastic separation can be fully achieved for aluminum-plastic raw materials with a relatively thin thickness or strong adhesion.

[0017] The first overall vacuum adsorption device and the first aluminum foil vacuum adsorption device can control the vertical upward movement of the aluminum foil above the plastic sheet, and the second overall vacuum adsorption device and the second aluminum foil vacuum adsorption device can fix the aluminum foil below the plastic sheet. At this time, the plastic sheet forms an S-shaped under the adsorption of the first overall vacuum adsorption device and the second overall vacuum adsorption device, so that the separated plastic sheet and aluminum foil can be quickly taken out from the separation chamber. The obtained aluminum foil and plastic sheet are both sheet materials, which are convenient for recycling and no fine dust is generated during the processing.

[0018] Additional aspects and advantages of the present invention will be given in part in the following description, become apparent in part from the following description, or be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The above and / or additional aspects and advantages of the present invention will become apparent and be readily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:

[0020] Figure 1 is a schematic structural diagram of a separation component according to an embodiment of the present invention;

[0021] Figure 2 is a schematic side view structural diagram of a separation component according to an embodiment of the present invention;

[0022] Figure 3 is a schematic cross-sectional structural diagram of a separation component according to an embodiment of the present invention;

[0023] Figure 4 is a schematic overall structural diagram of an aluminum-plastic separation and recycling device according to an embodiment of the present invention;

[0024] Figure 5 is a schematic cross-sectional structural diagram of an aluminum-plastic separation and recycling device according to an embodiment of the present invention;

[0025] Figure 6 is a schematic cross-sectional structural diagram of a horizontal driving device according to an embodiment of the present invention;

[0026] Figure 7 Usage state diagram of a separation component according to an embodiment of the present invention.

[0027] As shown in the figure: 1. Separation component, 2. Separation bin, 3. Hydraulic telescopic device, 4. Mounting plate, 5. First overall vacuum adsorption device, 6. First aluminum foil vacuum adsorption device, 7. Second overall vacuum adsorption device, 8. Second aluminum foil vacuum adsorption device, 9. Pressure sensor, 10. Demoulding liquid replenishing device, 11. Demoulding liquid bin, 12. Pump body, 13. Liquid delivery pipe, 14. Placing rack, 15. Accommodating groove, 16. Moving component, 17. Vertical driving device, 18. Horizontal driving device, 19. Electric telescopic rod, 20. Electromagnet, 21. Sliding groove, 22. Driving bin, 23. Motor, 24. Ball screw, 25. Ball slider, 26. Connecting piece. Detailed implementation manners

[0028] The embodiments of the present invention will be described in detail below. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present invention, and should not be construed as a limitation to the present invention.

[0029] The aluminum-plastic separation and recycling equipment of the embodiments of the present invention will be described below with reference to the drawings.

[0030] As Figure 1 、 Figure 2 and Figure 7 shown, the aluminum-plastic separation and recycling equipment of the embodiments of the present invention may include: a separation component 1, and the separation component 1 includes: a separation bin 2, a hydraulic telescopic device 3, a first overall vacuum adsorption device 5, a first aluminum foil vacuum adsorption device 6, a second overall vacuum adsorption device 7, and a second aluminum foil vacuum adsorption device 8.

[0031] The hydraulic telescopic device 3 is arranged on the separation bin 2, and a mounting plate 4 is arranged on the telescopic end of the hydraulic telescopic device 3. The first overall vacuum adsorption device 5 is arranged below the mounting plate 4, and the first overall vacuum adsorption device 5 is used for simultaneously adsorbing the aluminum foil and the plastic sheet below it. The first aluminum foil vacuum adsorption device 6 is arranged below the mounting plate 4, and the first aluminum foil vacuum adsorption device 6 is used for adsorbing the aluminum foil below it. The second overall vacuum adsorption device 7 is arranged on the inner wall of the lower part of the separation bin 2, and the second overall vacuum adsorption device 7 is used for simultaneously adsorbing the aluminum foil and the plastic sheet above it. The second overall vacuum adsorption device 7 is arranged directly below the first aluminum foil vacuum adsorption device 6. The second aluminum foil vacuum adsorption device 8 is arranged on the inner wall of the lower part of the separation bin 2, and the second aluminum foil vacuum adsorption device 8 is used for adsorbing the aluminum foil above it. The second aluminum foil vacuum adsorption device 8 is arranged directly below the first overall vacuum adsorption device 5.

[0032] It can be understood that the hydraulic telescopic device 3 described in this embodiment can drive the first overall vacuum adsorption device 5 and the first aluminum foil vacuum adsorption device 6 to move vertically through the mounting plate 4, so that the first overall vacuum adsorption device 5 approaches or moves away from the second aluminum foil vacuum adsorption device 8, and the first aluminum foil vacuum adsorption device 6 approaches or moves away from the second overall vacuum adsorption device 7.

[0033] The first overall vacuum adsorption device 5 and the first aluminum foil vacuum adsorption device 6 are arranged side by side. The adsorption holes of the first aluminum foil vacuum adsorption device 6 are smaller in aperture and more in number than those of the first overall vacuum adsorption device 5. The second overall vacuum adsorption device 7 and the second aluminum foil vacuum adsorption device 8 are arranged side by side. The adsorption holes of the second aluminum foil vacuum adsorption device 8 are smaller in aperture and more in number than those of the second overall vacuum adsorption device 7. Pressure sensors 9 are provided on the first overall vacuum adsorption device 5, the first aluminum foil vacuum adsorption device 6, the second overall vacuum adsorption device 7, and the second aluminum foil vacuum adsorption device 8. The mounting plate 4 is arranged above the separation chamber 2, and the first overall vacuum adsorption device 5 and the first aluminum foil vacuum adsorption device 6 are slidably connected to the separation chamber 2.

[0034] It should be noted that the first overall vacuum adsorption device 5 corresponds to the second aluminum foil vacuum adsorption device 8, and the first aluminum foil vacuum adsorption device 6 corresponds to the second overall vacuum adsorption device 7.

[0035] It should be noted that the vacuum adsorption devices (the first overall vacuum adsorption device 5, the first aluminum foil vacuum adsorption device 6, the second overall vacuum adsorption device 7, and the second aluminum foil vacuum adsorption device 8) described in this embodiment can adsorb aluminum foil and / or plastic sheets through their own adsorption holes. The pressure sensor 9 is used to sense the pressure exerted on itself by the target object during the adsorption process to adjust the suction force of the corresponding vacuum adsorption device.

[0036] Specifically, after the aluminum-plastic raw material is put into the separation chamber 2, the hydraulic telescopic device 3 can drive the mounting plate 4 to move towards the opening direction of the separation chamber 2. The mounting plate 4 immerses the first overall vacuum adsorption device 5 and the first aluminum foil vacuum adsorption device 6 into the separation chamber 2. The top vacuum adsorption devices (the first overall vacuum adsorption device 5 and the first aluminum foil vacuum adsorption device 6) can press the aluminum-plastic raw material flat into the stripping liquid, so that the aluminum-plastic raw material is in full contact with the stripping liquid.

[0037] In the stripping solution, the aluminum foil in the aluminum-plastic raw material is gradually separated from the plastic sheet. When it is necessary to separately take out the separated aluminum foil and plastic sheet, the four vacuum adsorption devices are respectively activated. The suction force of the first overall vacuum adsorption device 5 is stronger than that of the second aluminum foil vacuum adsorption device 8, and the suction force of the first aluminum foil vacuum adsorption device 6 is stronger than that of the second overall vacuum adsorption device 7. The first overall vacuum adsorption device 5 adsorbs both the plastic sheet and the aluminum foil above the plastic sheet simultaneously. The second aluminum foil vacuum adsorption device 8 adsorbs the aluminum foil below the plastic sheet, while the first aluminum foil vacuum adsorption device 6 adsorbs the aluminum foil below the plastic sheet, and the second overall vacuum adsorption device 7 adsorbs both the plastic sheet and the aluminum foil below the plastic sheet simultaneously.

[0038] The hydraulic telescopic device 3 can drive the mounting plate 4 away from the separation chamber 2. The first overall vacuum adsorption device 5 and the first aluminum foil vacuum adsorption device 6 can control the aluminum foil above the plastic sheet to move vertically upward, and the second overall vacuum adsorption device 7 and the second aluminum foil vacuum adsorption device 8 can fix the aluminum foil below the plastic sheet. At this time, the plastic sheet forms an S-shaped under the adsorption of the first overall vacuum adsorption device 5 and the second overall vacuum adsorption device 7. After taking out the plastic sheet and the aluminum foil above it, the bottom vacuum adsorption device (the second overall vacuum adsorption device 7 and the second aluminum foil vacuum adsorption device 8) can be made to lose the adsorption force on the aluminum foil, and the aluminum foil below the plastic sheet can be taken out from the separation chamber 2 through the top vacuum adsorption device. In this way, the separated plastic sheet and aluminum foil can be quickly taken out from the separation chamber 2. The obtained aluminum foil and plastic sheet are both sheet materials, which are convenient for recycling, and no fine dust will be generated during the processing, preventing the accumulated dust from affecting the working efficiency and service life of mechanical equipment and precision instruments. And the dust is suspended in the air and is easily inhaled by the human body, affecting the physical health of the staff. In addition, the presence of dust also makes it more difficult to keep the working area clean, increasing the workload of daily cleaning and maintenance.

[0039] In an embodiment of the present invention, as Figure 2 and Figure 3 shown, a hydraulic sensor is provided on the inner wall of the separation chamber 2, and a stripping solution replenishing device 10 is provided on the separation chamber 2. The stripping solution replenishing device 10 includes: a stripping solution tank 11, a pump body 12, and an infusion tube 13. Among them, the stripping solution tank 11 is provided on the separation chamber 2, the pump body 12 is provided on the stripping solution tank 11, and the liquid suction end of the pump body 12 is communicated with the stripping solution tank 11, and the liquid outlet end of the pump body 12 is communicated with the separation chamber 2 through the infusion tube 13.

[0040] It can be understood that the hydraulic sensor described in this embodiment monitors the stripping solution in the separation chamber 2 in real time. When the amount of the stripping solution does not meet the standard, the pump body 12 can suck out the stripping solution in the stripping solution tank 11 and supplement the stripping solution into the separation chamber 2 through the infusion tube 13. It should be noted that an electric control valve is provided on the infusion tube 13.

[0041] In one embodiment of the present invention, as Figures 4 - 6 shown, it may further include: a placement rack 14 and a moving component 16. A plurality of receiving grooves 15 are formed in the placement rack 14. A sliding groove 21 is formed in the inner side wall of the receiving groove 15. A plurality of separating components 1 are provided, and the plurality of receiving grooves 15 correspond to the plurality of separating components 1 one by one. The separating component 1 is slidably connected to the receiving groove 15.

[0042] The moving component 16 includes: a vertical driving device 17, a horizontal driving device 18, an electric telescopic rod 19, and an electromagnet 20. Among them, the horizontal driving device 18 is arranged on the vertical driving device 17, the electric telescopic rod 19 is arranged on the horizontal driving device 18, and the electromagnet 20 is arranged at the driving end of the electric telescopic rod 19. Among them, the electromagnet 20 is slidably connected to the sliding groove 21, and the electromagnet 20 is magnetically connected to the separation bin 2. The horizontal driving device 18 and the vertical driving device 17 have the same structure, and the axis of the ball screw 24 on the horizontal driving device 18 and the axis of the ball screw 24 on the vertical driving device 17 are arranged in a vertically intersecting manner.

[0043] It can be understood that in this embodiment, the electric telescopic rod 19 described can control the electromagnet 20 to be in contact connection with the separation bin 2. Through the magnetic attraction connection between the electromagnet 20 and the separation bin 2, the horizontal driving device 18 can take out the separation bin 2 from the receiving groove 15, and the vertical driving device 17 can move the separating component 1 to the material taking area through the horizontal driving device 18.

[0044] Further, the vertical driving device 17 includes: a driving bin 22, a motor 23, a ball screw 24, a ball slider 25, and a connecting piece 26. Among them, the motor 23 is arranged in the driving bin 22, the ball screw 24 is arranged at the driving end of the motor 23, the ball slider 25 is arranged on the ball screw 24, and the ball slider 25 is connected to the horizontal driving device 18 through the connecting piece 26.

[0045] It can be understood that in this embodiment, it is described that the motor 23 can rotate the ball screw 24, the ball slider 25 can move on the rotating ball screw 24, and the ball slider 25 can move the target object through the connecting piece 26 (for example, the target object of the vertical driving device 17 is the horizontal driving device 18, and the target object of the horizontal driving device 18 is the electric telescopic rod 19).

[0046] It should be noted that the motor 23 described in the above embodiments is equipped with a brake. The brake can make the motor 23 stop running quickly. A speed reducer is provided on the driving end of the motor 23. The driving end of the motor 23 is connected to the input end of the speed reducer, and the output end of the speed reducer constitutes the driving end of the motor 23. The speed of the output of the motor 23 is adjusted through the speed reducer.

[0047] In summary, the aluminum-plastic separation and recycling equipment of the embodiments of the present invention can effectively separate aluminum and plastic, and at the same time, flaky aluminum foil and plastic sheets can be obtained.

[0048] In the description of this specification, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present invention, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined.

[0049] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0050] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be construed as limiting the present invention. Those of ordinary skill in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. An aluminum-plastic separation and recovery device, characterized in that: include: A separation component (1), wherein the separation component (1) comprises: Separation chamber (2); A hydraulic telescopic device (3) is arranged on the separation bin (2), and a mounting plate (4) is arranged on the telescopic end of the hydraulic telescopic device (3); A first integral vacuum adsorption device (5), arranged at the lower part of the mounting plate (4), and used for simultaneously adsorbing the aluminum foil and the plastic sheet thereunder; A first aluminum foil vacuum adsorption device (6), arranged at the lower part of the mounting plate (4) and used for adsorbing the aluminum foil thereunder; A second integral vacuum adsorption device (7) is arranged on the inner wall of the lower part of the separation chamber (2) and is used to simultaneously adsorb the aluminum foil and the plastic sheet above the separation chamber (2); the second integral vacuum adsorption device (7) is arranged directly below the first aluminum foil vacuum adsorption device (6), wherein the aluminum-plastic composite material is arranged between the second integral vacuum adsorption device (7) and the first aluminum foil vacuum adsorption device (6); A second aluminum foil vacuum adsorption device (8) is arranged on the lower inner wall of the separation chamber (2) and is used to adsorb the aluminum foil above the separation chamber, and the second aluminum foil vacuum adsorption device (8) is arranged directly below the first integral vacuum adsorption device (5), wherein the aluminum-plastic composite material is arranged between the second aluminum foil vacuum adsorption device (8) and the first integral vacuum adsorption device (5); The first integral vacuum adsorption device (5) and the first aluminum foil vacuum adsorption device (6) are arranged side by side, and the adsorption holes of the first aluminum foil vacuum adsorption device (6) have a smaller diameter and a larger number than the adsorption holes of the first integral vacuum adsorption device (5); the second integral vacuum adsorption device (7) and the second aluminum foil vacuum adsorption device (8) are arranged side by side, and the adsorption holes of the second aluminum foil vacuum adsorption device (8) have a smaller diameter and a larger number than the adsorption holes of the second integral vacuum adsorption device (7), wherein: The first overall vacuum adsorption device (5), the first aluminum foil vacuum adsorption device (6), the second overall vacuum adsorption device (7), and the second aluminum foil vacuum adsorption device (8) are all provided with pressure sensors (9).

2. The aluminum-plastic separation and recycling equipment according to claim 1, characterized in that: The inner wall of the separation bin (2) is provided with a hydraulic sensor.

3. The aluminum-plastic separation and recovery equipment according to claim 1, characterized in that: The separation chamber (2) is provided with a film stripping liquid replenishing device (10), and the film stripping liquid replenishing device (10) comprises: a film stripping liquid chamber (11), a pump body (12), and a liquid infusion tube (13), wherein the film stripping liquid chamber (11) is arranged on the separation chamber (2), the pump body (12) is arranged on the film stripping liquid chamber (11), and the liquid pumping end of the pump body (12) is connected to the film stripping liquid chamber (11), and the liquid outlet end of the pump body (12) is connected to the separation chamber (2) via the liquid infusion tube (13).

4. The aluminum-plastic separation and recycling equipment according to claim 1, characterized in that: The mounting plate (4) is arranged above the separation bin (2), and the first integral vacuum adsorption device (5) and the first aluminum foil vacuum adsorption device (6) are slidably connected to the separation bin (2).

5. The aluminum-plastic separation and recycling equipment according to claim 1, characterized in that: Also includes: A placement rack (14), wherein a plurality of receiving grooves (15) are provided in the placement rack (14), wherein the inner wall of the receiving groove (15) is provided with a sliding groove (21), wherein a plurality of separation components (1) are provided, wherein the plurality of receiving grooves (15) correspond one to one with the plurality of separation components (1), and the separation components (1) and the receiving grooves (15) are slidably connected.

6. The aluminum-plastic separation and recovery equipment according to claim 5, characterized in that: Also includes: A moving assembly (16), the moving assembly (16) comprising: a vertical drive device (17), a horizontal drive device (18), an electric telescopic rod (19) and an electromagnet (20), wherein the horizontal drive device (18) is arranged on the vertical drive device (17), the electric telescopic rod (19) is arranged on the horizontal drive device (18), and the electromagnet (20) is arranged at the driving end of the electric telescopic rod (19), wherein the electromagnet (20) is slidably connected to the slide groove (21), and the electromagnet (20) is magnetically connected to the separation bin (2).

7. The aluminum-plastic separation and recovery equipment according to claim 6, characterized in that: The vertical drive device (17) comprises: a drive bin (22), a motor (23), a ball screw (24), a ball slider (25) and a connecting piece (26), wherein the motor (23) is arranged in the drive bin (22), the ball screw (24) is arranged at the driving end of the motor (23), the ball slider (25) is arranged on the ball screw (24), and the ball slider (25) is connected to the horizontal drive device (18) via the connecting piece (26).

8. The aluminum-plastic separation and recovery equipment according to claim 6, characterized in that: The horizontal drive device (18) and the vertical drive device (17) have the same structure, and the axis of the ball screw (24) on the horizontal drive device (18) and the axis of the ball screw (24) on the vertical drive device (17) are arranged to be vertically crossed.

Citation Information

Patent Citations

  • Aluminum-plastic panel reworking and disassembling machine

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