A device for recycling plastics from dismantling of parts

By employing methods such as activated carbon column purification, stirring components, and cleaning solution injection, the problem of ineffective oil and dirt removal from disassembled plastic parts has been solved, achieving efficient plastic recycling and cleaning results.

CN120962900BActive Publication Date: 2025-12-12JIANGSU CHUANGTONG MOTOR VEHICLE RECYCLING & DISMANTLING CO LTD
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Patent Information

Application Number
CN202511499337.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2025-12-12
Estimated Expiration
2045-10-20

AI Technical Summary

Technical Problem

In existing technologies, the plastic parts disassembled cannot be effectively degreased and cleaned, resulting in poor recycling performance.

Method used

By employing a combination of methods, including activated carbon column purification, stirring component agitation, cleaning solution injection, and high-temperature treatment, deep cleaning and recycling of plastics can be achieved.

Benefits of technology

It improves the purification effect and processing precision of plastic recycling, reduces the difficulty of subsequent recycling, and enhances the cleaning effect of oil stains and the decontamination ability of equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of plastic recycling, in particular to a plastic recycling equipment for part disassembly. The plastic recycling equipment comprises a working box assembly, a drainage assembly is installed on the inner wall of the bottom of the working box assembly, and a plurality of groups of stirring assemblies are installed on the drainage assembly at equal intervals; in the application, the constant-temperature box drives the activated carbon column into the storage tube for replenishment in the ascending movement process; the end port inner wall of the storage tube scrapes the outer wall of the activated carbon column in the sliding process in the storage tube, waste pollution is avoided, and the purification effect is improved; the cleaning liquid in the liquid storage tank enters a plurality of groups of sleeve connecting tubes, then the second electric push rod is started to drive a plurality of groups of punching needles to penetrate into the plastic, the punching needles are driven to penetrate into the sleeve connecting tubes in the process of continuous extrusion, and the cleaning solution in the sleeve connecting tubes enters the plastic holes along the gaps to perform cleaning and recycling work, the subsequent recycling effect is improved, and the machining precision is improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of plastic recycling, and particularly relates to a plastic recycling equipment for part disassembly. BACKGROUND

[0002] Plastic recycling refers to a process of converting waste plastics into renewable raw materials through pretreatment, melt granulation and other technologies, mainly including cleaning, crushing, classification and other steps, and finally generating renewable plastic particles that can be reused.

[0003] Through retrieval, in the prior art, Chinese patent publication No. CN102441949A, published on May 9, 2012, discloses a waste plastic recycling equipment, which comprises a tank, a stirring unit, and a plurality of slag removal units. The tank is designed in a cylindrical shape to effectively save the overall use space, and has a liquid storage space inside for storing a predetermined liquid. The stirring unit has a stirrer extending into the liquid storage space to drive the liquid in the liquid storage space to circulate. Each slag removal unit has a rotatable slag remover extending into the liquid storage space and located at the liquid surface after the liquid storage space to remove the waste plastic floating on the liquid surface. The above embodiment can effectively reduce the size of the originally required large volume to save the use space and reduce the requirement for the setting site, so that the waste plastic recycling operation can play the greatest benefit under the most compact size.

[0004] However, the device still has the following defects:

[0005] The plastic disassembled from the parts cannot achieve the effect of oil removal and decontamination, and the inside of the plastic cannot be cleaned, thereby reducing the plastic recycling effect of part disassembly. SUMMARY

[0006] In view of the above problems, the application provides a plastic recycling equipment for part disassembly. The working tank assembly is provided with a drainage assembly on the bottom inner wall, a plurality of groups of stirring assemblies are installed on the drainage assembly at equal intervals, a group of recycling treatment assemblies are installed on each group of stirring assemblies, and a plurality of groups of drainage assemblies are installed on the drainage assembly at equal intervals.

[0007] The stirring assembly comprises a storage pipe capable of supplementing material, and a group of activated carbon columns are slidably connected to the inner wall of each storage pipe capable of scraping the outer wall of the activated carbon column.

[0008] The recycling processing assembly comprises a liquid storage tank and a thermostat, a plurality of sets of sleeve sockets are connected to the bottom of each set of the thermostat at equal intervals, a set of inclined plates is installed on the inner wall of one side of each set of the sleeve sockets, one end of a set of compression springs is installed on the bottom of each set of the inclined plates, a set of sliding rods is installed on the other end of each set of the compression springs, and a set of punching needles for cleaning solution to enter the plastic holes through gaps are installed on the bottom of each set of the sliding rods.

[0009] Further, the working tank assembly comprises a water accumulation bucket body, a sealing cover is rotatably connected to the top of the water accumulation bucket body, a water tank is connected to the outer wall of the water accumulation bucket body, a plurality of sets of recycling tanks are connected to the outer wall of the water accumulation bucket body at equal intervals, a set of water suction pipes is connected to each set of the recycling tanks, a set of water pumps is installed on the top of each set of the recycling tanks, and a set of first heaters is installed on the outer wall of each set of the water accumulation bucket body.

[0010] Further, the water drainage assembly comprises a vacuum cylinder, the bottom of the vacuum cylinder is installed on the inner wall of the bottom of the water accumulation bucket body, a first electric push rod is installed on the bottom inner wall of the vacuum cylinder, a first motor is installed on the output end of the first electric push rod, a sliding disc is drivingly connected to the output end of the first motor, and the outer wall of the sliding disc is slidingly connected to the inner wall of the water accumulation bucket body.

[0011] Further, a fixing frame is installed on the top of the sliding disc, a plurality of sets of gas sensors are installed on the fixing frame at equal intervals, a plurality of sets of communication pipes are connected to the sliding disc at equal intervals, a set of isolation gauze is installed on the inner wall of each set of the communication pipes, and a set of first electric ball valves is installed on the bottom of each set of the communication pipes.

[0012] Further, the stirring assembly further comprises a fixing block, one end of each set of the fixing block is installed on the fixing frame, each set of the storage pipes is installed on one side wall of the fixing block, a set of connecting cylinders is installed on the bottom of each set of the activated carbon columns, and one end of a set of connecting blocks is installed on the outer wall of each set of the connecting cylinders.

[0013] Further, a set of cavities is formed in the bottom of each set of the connecting cylinders, a set of second motors is installed on the top inner wall of each set of the cavities, a set of disc bodies is drivingly connected to the output end of each set of the second motors, a plurality of sets of sleeve pipes are annularly arranged at the bottom edge of each set of the disc bodies, a set of stirring pipes is slidingly connected in each set of the sleeve pipes, and a set of annular wire meshes is sleeved on the outer wall of each set of the stirring pipes.

[0014] Further, each group of the liquid storage tanks is installed on a fixed frame, a second heater is installed on the top of each group of the liquid storage tanks, a plurality of groups of first installation pipes are communicated at equal intervals on the bottom of each group of the liquid storage tanks, and a group of second electric ball valves are installed on each group of the first installation pipes.

[0015] Further, a group of pressure sensors are installed on the outer wall of each group of the first installation pipes, a group of second electric push rods are installed on the outer wall of each group of the liquid storage tanks, a group of rectangular blocks are installed on the output end of each group of the second electric push rods, each group of the constant temperature boxes is installed on one side wall of the rectangular block, a plurality of groups of second installation pipes are communicated at equal intervals on the top of each group of the constant temperature boxes, the inner wall of each group of the second installation pipes is slidingly connected to the outer wall of the first installation pipe, and the other end of each group of the connecting blocks is installed on the outer wall of the constant temperature box.

[0016] Further, the drainage assembly comprises two groups of third motors, each group of the third motors is installed on a fixed frame, and a vacuum rod is rotatably connected between the output ends of the two groups of third motors.

[0017] Further, a group of vacuum sleeve rings are sleeved on the outer wall of each group of the vacuum rods, and a plurality of groups of filter screens are arranged in an annular array on the outer wall of each group of the vacuum sleeve rings.

[0018] The beneficial effects of the present application are:

[0019] 1. The constant temperature box drives the activated carbon column into the storage pipe for replenishment during the upward movement, and the inner wall of the port of the storage pipe scrapes the outer wall of the activated carbon column during the sliding process in the storage pipe, which avoids waste pollution and improves the purification effect; the cleaning liquid in the liquid storage tank enters a plurality of sleeve barrels, and then the second electric push rod is started to drive a plurality of punching needles to penetrate into the plastic, and the punching needles penetrate into the sleeve barrels during the continuous extrusion process, and at this time, the cleaning solution in the sleeve barrel enters the plastic hole through the gap for cleaning and recycling, which improves the subsequent recycling effect and improves the processing precision.

[0020] 2. The second motor in the cavity drives the stirring pipe to stir the plastic debris at the bottom, and the debris is clamped in the gap of a plurality of annular iron wire meshes during the rapid rotation, which reduces the subsequent recycling difficulty, the first electric ball valve is opened, the water source is filtered through the gauze pad and then discharged into the bottom of the water bucket body, the first heater is started to heat the water bucket body, which accelerates the drying progress and detects the gas through the gas sensor, and the first heater synchronously drives the wastewater to be heated during the heating process, the heat volatilized from the wastewater can accelerate the plastic drying progress, and the auxiliary effect of recycling is improved.

[0021] 3. Place the disassembled plastic parts on the sliding disc. Water is supplied to the water collection tank through the water tank. During the subsequent cleaning of the plastic with cleaning fluid, the oil and debris on the plastic surface will be carried to the top of the water source. After the water settles, the first electric push rod will move the water source to the same height as the water pump. Then, the water pump will be started to collect the oil and debris at the top of the water source. This improves the oil cleaning effect and avoids the problem of oil sticking to the plastic surface again during the subsequent drainage process.

[0022] 4. Start the first motor to drive the sliding disc to rotate. At the same time, start two sets of third motors to drive the vacuum rod to rotate. The rotation of the vacuum rod drives several sets of filter screens on the vacuum sleeve ring to rotate. During the rotation, the water source is pushed and the plastic at the bottom of the sediment is turned over. During the operation, several sets of second electric ball valves are opened, so that the cleaning solution in the storage tank can be well integrated into the water source for cleaning. The second heater can be pre-started to heat the storage tank, so that the cleaning solution can be better evaporated and the cleaning effect of the equipment is improved.

[0023] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures pointed out in the description, claims and drawings. Attached Figure Description

[0024] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 A schematic diagram of a plastic recycling device according to an embodiment of the present invention is shown;

[0026] Figure 2 A schematic diagram of a drainage assembly structure according to an embodiment of the present invention is shown;

[0027] Figure 3 A schematic diagram of the workbox assembly structure according to an embodiment of the present invention is shown;

[0028] Figure 4 A schematic diagram of a vacuum cylinder structure according to an embodiment of the present invention is shown;

[0029] Figure 5 A schematic diagram of the agitation component structure according to an embodiment of the present invention is shown;

[0030] Figure 6 A schematic diagram of a disc body structure according to an embodiment of the present application is shown;

[0031] Figure 7 A schematic diagram of a recycling processing assembly structure according to an embodiment of the present application is shown;

[0032] Figure 8 A schematic diagram of a sleeve socket cross-section according to an embodiment of the present application is shown;

[0033] Figure 9 A schematic diagram of a drainage assembly structure according to an embodiment of the present application is shown.

[0034] In the figure: 1, work tank assembly; 101, accumulated water bucket body; 102, sealing cover; 103, water tank; 104, recycling tank; 105, water pumping pipe; 106, water pump; 107, first heater; 2, drainage assembly; 201, vacuum cylinder; 202, first electric push rod; 203, first motor; 204, sliding disc; 205, fixed frame; 206, gas sensor; 207, communication pipe; 208, first electric ball valve; 3, stirring assembly; 301, fixed block; 302, storage pipe; 303, activated carbon column; 304, connecting cylinder; 305, connecting block; 306, cavity; 307, second motor; 308, disc body; 309, sleeve pipe; 310, stirring pipe; 311, annular iron wire mesh; 4, recycling processing assembly; 401, liquid storage tank; 402, second heater; 403, first mounting pipe; 404, second electric ball valve; 405, pressure sensor; 406, second electric push rod; 407, rectangular block; 408, constant temperature box; 409, second mounting pipe; 410, sleeve cylinder; 411, inclined plate; 412, compression spring; 413, sliding rod; 414, perforating needle; 5, drainage assembly; 501, third motor; 502, vacuum rod; 503, vacuum sleeve ring; 504, filter screen. DETAILED DESCRIPTION

[0035] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0036] The embodiments of the present application provide a parts disassembling plastic recycling equipment. Including work tank assembly 1, for example, Figure 1 and Figure 2As shown, the bottom inner wall of the working box assembly 1 is provided with a drainage assembly 2, and a plurality of groups of stirring assemblies 3 are equidistantly arranged on the drainage assembly 2. Each group of the stirring assemblies 3 is provided with a group of recycling treatment assemblies 4. A plurality of groups of drainage assemblies 5 are equidistantly arranged on the drainage assembly 2.

[0037] As shown, Figure 3 As shown, the working box assembly 1 comprises a water accumulation barrel body 101, and a sealing cover 102 is rotatably connected to the top of the water accumulation barrel body 101. A water tank 103 is in communication with the outer wall of the water accumulation barrel body 101, and a plurality of groups of recycling tanks 104 are equidistantly in communication with the outer wall. Each group of the recycling tanks 104 is in communication with a group of water suction pipes 105, and each group of the recycling tanks 104 is provided with a group of water pumps 106. Each group of the water accumulation barrel bodies 101 is provided with a group of first heaters 107.

[0038] As shown, Figure 4 As shown, the drainage assembly 2 comprises a vacuum cylinder 201, and the bottom of the vacuum cylinder 201 is mounted on the bottom inner wall of the water accumulation barrel body 101. A first electric push rod 202 is mounted on the bottom inner wall of the vacuum cylinder 201, and a first motor 203 is mounted on the output end of the first electric push rod 202. A sliding disc 204 is drivingly connected to the output end of the first motor 203, and the outer wall of the sliding disc 204 is slidingly connected to the inner wall of the water accumulation barrel body 101. A fixing frame 205 is mounted on the top of the sliding disc 204, and a plurality of groups of gas sensors 206 are equidistantly mounted on the fixing frame 205. A plurality of groups of communication pipes 207 are equidistantly in communication with the sliding disc 204, and each group of the communication pipes 207 is provided with a group of isolation gauze and a group of first electric ball valves 208.

[0039] The first electric push rod 202 drives the sliding disc 204 to rise in the water accumulation barrel body 101, and then the plastic parts disassembled from the parts are placed on the sliding disc 204. Then the first electric push rod 202 drives the sliding disc 204 to reset, and then the sealing cover 102 is rotated to seal the water accumulation barrel body 101. Then the water source in the water accumulation barrel body 101 is conveyed through the water tank 103. Since the sliding disc 204 is slidingly fitted in the water accumulation barrel body 101, the water source cannot enter the area at the bottom of the sliding disc 204. During the subsequent cleaning of the plastic with the cleaning liquid, the oil stains and debris on the surface of the plastic are collected at the top of the water source, so that the height of the water source is flush with the height of the water suction pipe 105 after the water source is deposited. Then the water pump 106 is started to recycle the oil stains and debris at the top of the water source, which improves the oil stain cleaning effect and avoids the problem of oil stains sticking to the surface of the plastic again during the subsequent drainage process.

[0040] The first motor 203 is started to drive the sliding disc 204 to rotate, and the third motor 501 is started to drive the vacuum rod 502 to rotate, and the vacuum sleeve ring 503 on the vacuum rod 502 is driven to rotate, and the filter screen 504 on the vacuum sleeve ring 503 is driven to rotate, and the water source is pushed to flow and the plastic at the bottom of the sediment is turned over, and the second electric ball valve 404 is opened, so that the cleaning liquid in the liquid storage tank 401 can be well mixed into the water source for decontamination, and the second heater 402 can be started to heat the liquid storage tank 401, so that the cleaning liquid can be better volatilized, and the decontamination effect of the equipment is improved.

[0041] As shown in Figure 5 and Figure 6 The stirring assembly 3 includes a fixed block 301, one end of each of the fixed blocks 301 is mounted on the fixed frame 205, one side wall of each of the fixed blocks 301 is mounted with a set of storage pipes 302, the inner wall of each of the storage pipes 302 is slidably connected with a set of activated carbon columns 303, the bottom of each of the activated carbon columns 303 is mounted with a set of connecting barrels 304, one end of each of the connecting barrels 304 is mounted with a set of connecting blocks 305 on the outer wall, the bottom of each of the connecting barrels 304 is provided with a set of cavities 306, the top inner wall of each of the cavities 306 is mounted with a set of second motors 307, the output end of each of the second motors 307 is drivingly connected with a set of disc bodies 308, the bottom edge of each of the disc bodies 308 is annularly arranged with a plurality of sets of sleeve pipes 309, each of the sleeve pipes 309 is slidably connected with a set of stirring pipes 310, and each of the stirring pipes 310 is sleeved with a set of annular iron wire meshes 311 on the outer wall.

[0042] The connecting block 305 is driven to move synchronously with the constant temperature box 408 moving up and down, and the activated carbon column 303 is driven to enter the storage pipe 302 when the connecting block 305 moves upward, and an equal amount of activated carbon powder is placed in the storage pipe 302, so that the activated carbon column can be replenished when it enters the storage pipe 302, and the outer wall of the activated carbon column 303 is scraped by the inner wall of the port of the storage pipe 302 during the sliding process in the storage pipe 302, so that waste is prevented from entering the storage pipe 302 to cause pollution, and the purification effect is improved.

[0043] The connecting block 305 starts the second motor 307 in the cavity 306 during the descending movement to drive the disc body 308 to rotate, and the disc body 308 drives a plurality of groups of stirring pipes 310 to stir the plastic debris at the bottom end, and the debris is clamped in the gaps of a plurality of groups of annular wire meshes 311 in the process of rapid rotation, which reduces the difficulty of subsequent recycling. After working to the specified time, the first electric ball valve 208 on a plurality of groups of communication pipes 207 is opened, the water source is filtered through the gauze pad and discharged into the bottom end of the water bucket body 101, and then the first heater 107 is started to heat the water bucket body 101, which accelerates the drying progress and detects the gas through the gas sensor 206 to judge the quality of the recycling, and the first heater 107 synchronously drives the wastewater to heat in the heating process. The heat volatilized by the wastewater can accelerate the work progress of plastic drying and improve the auxiliary effect of recycling.

[0044] As shown in Figure 7 and Figure 8 The recycling processing assembly 4 includes a liquid storage tank 401, each group of the liquid storage tank 401 is installed on the fixed frame 205, a second heater 402 is installed on the top of each group of the liquid storage tank 401, a plurality of groups of first installation pipes 403 are communicated at equal intervals on the bottom of each group of the liquid storage tank 401, a second electric ball valve 404 is installed on each group of the first installation pipe 403, a pressure sensor 405 is installed on the outer wall of each group of the first installation pipe 403, a second electric push rod 406 is installed on the outer wall of each group of the liquid storage tank 401, a rectangular block 407 is installed on the output end of each group of the second electric push rod 406, a constant temperature box 408 is installed on one side wall of each group of the rectangular block 407, a plurality of groups of second installation pipes 409 are communicated at equal intervals on the top of each group of the constant temperature box 408, the inner wall of each group of the second installation pipe 409 is slidingly connected to the outer wall of the first installation pipe 403, the other end of each group of the connecting block 305 is installed on the outer wall of the constant temperature box 408, a plurality of groups of sleeve sockets 410 are communicated at equal intervals on the bottom of each group of the constant temperature box 408, a inclined plate 411 is installed on one side inner wall of each group of the sleeve socket 410, one end of a compression spring 412 is installed on the bottom of each group of the inclined plate 411, a sliding rod 413 is installed on the other end of each group of the compression spring 412, and the sliding rod 413 is slidingly connected to the inner wall of the sleeve socket 410. A punching needle 414 is installed on the bottom of each group of the sliding rod 413.

[0045] And the oven 408 in the process of moving up and down will drive the connection block 305 synchronous movement, and the connection block 305 in the process of moving up and down drive the activated carbon column 303 into the storage tube 302, and the storage tube 302 is placed in the same amount of activated carbon powder, when the activated carbon column enters the storage tube 302, it can be replenished, and the activated carbon column 303 in the process of sliding in the storage tube 302 will make the port inner wall of the storage tube 302 scrape the outer wall of the activated carbon column 303, avoid the waste into the storage tube 302 to cause pollution, improve the working effect of purification.

[0046] In order to better improve the cleaning and recycling effect, the second electric push rod 406 is started to drive the oven 408 to rise, the oven 408 rises at the same time drive several groups of second installation pipe 409 sleeve on the outer wall of the first installation pipe 403, and in the process of sleeveing, the pressure sensor 405 is extruded, and then drive several groups of second electric ball valve 404 to open, so that the cleaning liquid in the liquid tank 401 enters into several groups of sleeve cylinder 410 through the first installation pipe 403, the second installation pipe 409 and the oven 408 in turn, and then the second electric push rod 406 is started to drive several groups of punching needle 414 to penetrate into the plastic, and the sliding rod 413 is extruded and compressed spring 412 in the process of continuous extrusion, and the punching needle 414 is driven into the sleeve cylinder 410, and at this time the cleaning solution in the sleeve cylinder 410 enters into the plastic hole through the gap to clean and recycle, which improves the subsequent recycling effect and improves the machining precision.

[0047] As shown in Figure 9 As shown in

[0048] The oven 408 in the process of moving up and down will drive the connection block 305 synchronous movement, and the connection block 305 in the process of moving up and down drive the activated carbon column 303 into the storage tube 302, and the storage tube 302 is placed in the same amount of activated carbon powder, when the activated carbon column enters the storage tube 302, it can be replenished, and the activated carbon column 303 in the process of sliding in the storage tube 302 will make the port inner wall of the storage tube 302 scrape the outer wall of the activated carbon column 303, avoid the waste into the storage tube 302 to cause pollution, improve the working effect of purification.

[0049] The second motor 307 in the starting cavity 306 drives the stirring pipe 310 to stir the plastic debris at the bottom end, and in the process of rapid rotation, the debris is clamped in the gaps of the several groups of annular wire meshes 311, reducing the difficulty of subsequent recycling. The first electric ball valve 208 is opened, the water source is filtered through the gauze pad and discharged into the bottom end of the water bucket body 101, the first heater 107 is started to heat the water bucket body 101, the gas sensor 206 is used for gas detection during the drying process, and the first heater 107 synchronously drives the wastewater to be heated during the heating process. The heat volatilized by the wastewater can accelerate the work progress of the plastic drying, and improve the auxiliary effect of recycling.

[0050] The plastic parts disassembled from the parts are placed on the sliding disc 204, the water tank 103 is used for conveying water source in the water bucket body 101, and in the subsequent cleaning process of the plastic by the cleaning liquid, the oil stains and debris on the surface of the plastic are gathered at the top end of the water source, so that the water source is precipitated and the water source height is leveled with the height of the water pump 105 by the first electric push rod 202. Then the water pump 106 is started to recycle the oil stains and debris at the top end of the water source, which improves the oil stain cleaning effect and avoids the problem that the oil stains are adhered to the surface of the plastic again in the subsequent drainage process.

[0051] The first motor 203 is started to drive the sliding disc 204 to rotate, and the sliding disc 204 rotates while the two groups of third motors 501 are started to drive the vacuum rod 502 to rotate. The vacuum rod 502 rotates while driving the several groups of filter screens 504 on the vacuum sleeve ring 503 to rotate. In the process of rotation, the water source is pushed and the plastic at the bottom of the sediment is turned over. In the working process, the several groups of second electric ball valves 404 are opened, so that the cleaning liquid in the liquid storage tank 401 can be well mixed into the water source for decontamination work, and the second heater 402 can be started in advance to heat the liquid storage tank 401, so that the cleaning liquid can be better volatilized, and the decontamination work effect of the equipment is improved.

[0052] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalent ones. The modifications or replacements do not change the essence of the corresponding technical solutions, and do not deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A plastic recycling device for dismantling parts, comprising a working box assembly, characterized in that: A drainage assembly is installed on the bottom inner wall of the working box assembly. Several sets of agitation assemblies are installed on the drainage assembly at equal intervals. Each set of agitation assemblies is equipped with a set of recycling and processing assemblies. Several sets of diversion assemblies are installed on the drainage assembly at equal intervals. The stirring assembly includes a storage tube capable of feeding materials. Each set of storage tubes, capable of scraping the outer wall of the activated carbon column, has a set of activated carbon columns slidably connected to its inner wall. Each set of activated carbon columns has a connecting cylinder installed at its bottom. The recycling and processing assembly includes a storage tank and a constant temperature chamber. Each set of constant temperature chambers has several sets of connecting sleeves at equal intervals on its bottom. Each set of connecting sleeves has a set of inclined plates installed on one inner wall. Each set of inclined plates has one end of a compression spring installed on its bottom. Each set of compression springs has a set of sliding rods installed on its other end. Each set of sliding rods has a set of perforating needles installed at its bottom, which allow the cleaning solution to enter the plastic hole through the gap. The working box assembly includes a water collection tank body, a sealing cover rotatably connected to the top of the water collection tank body, a water tank connected to the outer wall of the water collection tank body, and several sets of recycling boxes connected at equal intervals on the outer wall. Each set of recycling boxes is connected to a set of water pumping pipes, a set of water pumps is installed on the top of each set of recycling boxes, and a set of first heaters is installed on the outer wall of each set of water collection tank bodies. The drainage assembly includes a vacuum cylinder, the bottom of which is installed on the bottom inner wall of the water collection tank body. A first electric push rod is installed on the bottom inner wall of the vacuum cylinder. A first motor is installed on the output end of the first electric push rod. A sliding disc is driven to the output end of the first motor. The outer wall of the sliding disc is slidably connected to the inner wall of the water collection tank body. Each set of connecting cylinders has a cavity at its bottom, and a second motor is installed on the top inner wall of each cavity. A set of disc bodies is driven to the output end of each set of second motors. Several sets of sleeves are arranged in a ring array on the bottom edge of each set of disc bodies. A set of stirring tubes is slidably connected inside each set of sleeves. A set of annular wire mesh is sleeved on the outer wall of each set of stirring tubes.

2. The plastic recycling equipment for parts dismantling according to claim 1, characterized in that: A fixed frame is installed on the top of the sliding disc, and several sets of gas sensors are installed at equal intervals on the fixed frame. Several sets of connecting pipes are connected at equal intervals on the sliding disc. A set of insulating gauze is installed on the inner wall of each set of connecting pipes, and a set of first electric ball valves is installed at the bottom of each set of connecting pipes.

3. The plastic recycling equipment for parts dismantling according to claim 2, characterized in that: The stirring assembly also includes a fixing block, one end of each set of fixing blocks is mounted on a fixing frame, each set of storage tubes is mounted on one side wall of the fixing block, and one end of a set of connecting blocks is mounted on the outer wall of each set of connecting cylinders.

4. The plastic recycling equipment for parts dismantling according to claim 3, characterized in that: Each set of liquid storage tanks is mounted on a fixed frame. A second heater is installed on the top of each set of liquid storage tanks. Several sets of first mounting pipes are connected at equal intervals on the bottom of each set of liquid storage tanks. A set of second electric ball valves is installed on each set of first mounting pipes.

5. The plastic recycling equipment for parts dismantling according to claim 4, characterized in that: Each group of first mounting tubes has a set of pressure sensors installed on its outer wall. Each group of liquid storage tanks has a set of second electric push rods installed on its outer wall. Each group of second electric push rods has a set of rectangular blocks installed on its output end. Each group of constant temperature chambers is installed on one side wall of the rectangular blocks. Each group of constant temperature chambers has several sets of second mounting tubes connected at equal intervals on its top. The inner wall of each set of second mounting tubes is slidably connected to the outer wall of the first mounting tube. The other end of each set of connecting blocks is installed on the outer wall of the constant temperature chamber.

6. The plastic recycling equipment for parts dismantling according to claim 2, characterized in that: The drainage assembly includes two sets of third motors, each set of third motors is mounted on a fixed frame, and a vacuum rod is rotatably connected between the output ends of the two sets of third motors.

7. A plastic recycling equipment for parts dismantling according to claim 6, characterized in that: Each set of vacuum rods has a set of vacuum sleeve rings fitted on its outer wall, and each set of vacuum sleeve rings has several sets of filter screens arranged in a ring array on its outer wall.

Citation Information

Patent Citations

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