Waste electronic product treatment device

The device addresses the challenge of synchronously transporting and removing crushed waste electronic products by using a rotating mechanism and heat management system, ensuring efficient processing and extended device lifespan.

CN120306056APending Publication Date: 2025-07-15HUNAN YIYANG TECH CO LTD
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Patent Information

Application Number
CN202510544271.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

The existing waste electronic product treatment device is inconvenient to synchronously transport and remove the crushed waste electronic product during the crushing stage, resulting in a low progress rate of device disposal operations, which is especially unfavorable during batch processing.

Method used

A waste electronic product treatment device including a crushing box, a collection unit, a thermal conduction unit, a transport unit and a transport unit are designed. The rotary wheel and a linkage bar system driven by a motor are efficiently separated and transported by the broken waste electronic products. The heat conduction unit is used to absorb heat during the crushing process, extend the device life, and finally the product is smoothly removed through the guide unit.

Benefits of technology

It improves the synchronous progress rate of crushing and transport and belt-off operations of waste electronic products, ensures efficient operation and heat management of the device, extends the service life of the device, and prevents product accumulation and poor circulation, and improves processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a waste electronic product treatment device, and belongs to the technical field of waste treatment, the waste electronic product treatment device comprises a crushing box, a crushing wheel is arranged in the crushing box, a collecting unit is arranged at the lower part of the crushing box, a heat conduction unit is arranged on the side surface of the collecting unit, and a conveying-out part of the collecting unit is provided with a guide conveying unit; and the conveying-out part of the guiding and conveying unit is provided with a guiding and separating unit. The waste electronic product processing device solves the problems that in the stage of crushing waste electronic products, an existing waste electronic product processing device is inconvenient to guide and transport the crushed waste electronic products and take away from the device synchronously, and the progress rate of processing operation of the device is not favorably improved under the condition that batch waste electronic products are crushed.
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Description

Technical Field

[0001] The present invention belongs to the technical field of waste treatment, and particularly relates to a waste electronic product treatment device. Background Art

[0002] Waste electronic products refer to discarded electrical appliances or obsolete electronic technologies that are no longer in use. Currently, the disposal methods for waste electronic products include chemical, incineration, and crushing methods. However, chemical and incineration methods are not environmentally friendly. Therefore, we usually use the crushing method to dispose of waste electronic products.

[0003] In the stage of crushing waste electronic products, the existing waste electronic product treatment device is inconvenient to synchronously transport and carry away the crushed waste electronic products. In the case of crushing a batch of waste electronic products, it is not conducive to improving the progress rate of the device's treatment operation. Summary of the Invention

[0004] The present invention provides a waste electronic product treatment device, aiming to solve the problem that in the stage of crushing waste electronic products, the existing waste electronic product treatment device is inconvenient to synchronously transport and carry away the crushed waste electronic products, and in the case of crushing a batch of waste electronic products, it is not conducive to improving the progress rate of the device's treatment operation.

[0005] An embodiment of the present invention provides a waste electronic product treatment device, including a crushing box, in which a crushing wheel is installed. A collection unit is installed at the lower part of the crushing box. A heat conduction unit is installed on the side of the collection unit. A transport unit is installed at the output part of the collection unit. A separation unit is installed at the output part of the transport unit.

[0006] The collection unit includes a support block three. A vertical block three is installed on the upper wall surface of the support block three. A motor three is installed on the vertical block three. A rotating disk three is installed at the output head of the motor three. A vertical block four is installed on the upper wall surface of the support block three. A linkage rod three is rotatably connected to the vertical block four. A rotating disk four is installed on the linkage rod three. A circular block three is installed on the back of the linkage rod three. A number of protrusions are installed on the side wall of the circular block three. A connecting rod is installed on the vertical block four. The connecting rod is located above the linkage rod three. A circular block four that engages with the circular block three is installed on the connecting rod. A number of protrusions are fixedly connected to the side wall of the circular block four. A support block four is installed on the upper wall surface of the support block three. A channel three is installed on the support block four. A collection tank three is installed above the support block four. A support frame three corresponding to the collection tank three is installed on the support block three. A collection tank four corresponding to the collection tank three is installed on the support frame three. Linkage circular blocks are installed on both sides of the collection tank three. A rotating rod is installed in the collection tank three through the linkage circular blocks. A connecting block is installed on the rotating rod. A screw shaft is rotatably connected in the channel three;

[0007] The heat conduction unit includes a support frame four, on which a storage box is installed. A pump body is installed on the support frame four at the right part of the storage box. A channel four is installed at the lower part of the storage box. A channel five is installed on the channel four. A channel six is installed on the pump body. A channel seven is installed at the upper part of the storage box. A channel eight is installed on the channel seven;

[0008] The material guiding unit includes a collection tank five, in which a linkage rod four is rotatably connected. An output wheel is installed in the collection tank five through the linkage rod four. A support block five is installed on the side wall surface of the collection tank five. A motor four is installed on the support block five. A turntable five is installed on the output head of the motor four. A torque enhancer is installed on the support block five. A turntable six is installed on the torque enhancer. A ring block five is installed on the torque enhancer. A number of protrusions are installed on the side wall of the ring block five. A ring block six corresponding to the ring block five is installed on the linkage rod four. A number of protrusions are installed on the outer side wall of the ring block six;

[0009] The material guiding and separating unit includes a support frame five, on which a support frame six is installed. Drum rollers three are rotatably connected to the front and rear parts of the support frame six. A motor five corresponding to the drum roller three is installed on the back of the left support frame six. A conveying rubber sheet is installed on the drum roller three. A material receiving box is installed at the front part of the support frame six. A material output box is installed at the back of the support frame six. A connecting piece is installed inside the support frame six in the part of the conveying rubber sheet. A blocking block is installed at the upper part of the support frame six. A top cover is installed on the upper part of the blocking block.

[0010] The turntable three and the turntable four are connected through a flat rope. A housing three corresponding to the turntable three and the turntable four is installed on the support block three. A housing four corresponding to the ring block three and the ring block four is installed on the back of the vertical block four.

[0011] The back of the connecting rod is connected to the inner cavity of the rotating rod. The linkage rod three is connected to the screw conveyor shaft.

[0012] An inlet corresponding to the material guiding and separating port of the collection tank three is installed on the channel three. A heat conduction inner cavity is installed between the inner cover and the outer cover of the channel three.

[0013] The channel five is connected to the pump body. A channel nine is installed on the channel four. A liquid gate is installed on the channel nine.

[0014] The channel six extends into the heat conduction inner cavity at the upper part of the channel three, and the channel eight extends into the heat conduction inner cavity at the lower part of the channel three.

[0015] The collecting trough five is arranged corresponding to the discharge position of the channel three, a discharge port is reserved at the lower part of the collecting trough five, and the discharge wheel is located at the front position of the collecting trough five.

[0016] The receiving box is arranged corresponding to the outlet of the collecting slot 5, and an inclined block is arranged in the receiving box.

[0017] The support frame five is arranged at an incline, and a roller four is arranged on the support frame five at the lower part of the conveying rubber, and a pressure block is arranged on the support frame five at the lower part of the connecting piece. The pressure block has the characteristics of deforming when subjected to external force and returning to its original shape after the external force is removed, and a pressure-touch roller is arranged on one side of the pressure block.

[0018] Beneficial effects of the present invention:

[0019] 1. The present invention guides the crushed waste electronic products to the collecting tank four through the crushing box, the motor three runs through the turntable three, the turntable four, the circle block three, and the circle block four, so that the linkage lever three and the connecting lever rotate together, and the crushed waste electronic products guided to the collecting tank three are further separated and separated through the connecting lever and the connecting block, so as to improve the smoothness of the introduction of the crushed waste electronic products into the channel three, and the screw shaft is rotated through the linkage lever three, so as to facilitate the transportation and conveyance of the crushed waste electronic products guided to the channel three. When the crushed waste electronic products are guided in the channel three, the pump body guides the heat transfer fluid into the heat transfer chamber of the channel three, so as to absorb the heat on the crushed waste electronic products in the channel three, and prolong the service life of the device;

[0020] 2. In the present invention, after the crushed waste electronic products absorb heat in the channel three, they are transported to the collecting tank five. The operation of the motor four causes the linkage lever four to rotate, and the crushed waste electronic products transported to the collecting tank five are discontinuously discharged through the discharge wheel, and the crushed waste electronic products are transported to the collection box between the diversion units. The motor five causes the roller three to rotate so that the conveying rubber can transport the crushed waste electronic products to the discharge box and then discharge them, which is beneficial to the synchronous progress of the crushing and conveying and taking away operations of the waste electronic products by the device.

[0021] 3. The present invention transfers the heat transfer fluid in the storage box back and forth through the pump body in the heat transfer unit, which is beneficial for channel three to absorb the heat from the crushed waste electronic products. Channel nine installed on channel four is beneficial for adding heat transfer fluid into the storage box. Channel six and channel eight are located on both sides of channel three, which is beneficial for the replacement of heat transfer fluid in channel three and for channel three to absorb the heat from the crushed waste electronic products.

[0022] 4. The present invention facilitates the collection of the broken and discarded electronic products after heat absorption through the collection tank five in the guiding unit, and intermittently discharges the discarded electronic products entering the collection tank five through the discharge wheel, preventing the accumulation and unsmooth flow of the broken discarded electronic products, and facilitating the guiding and transporting of the broken discarded electronic products away from the device.

[0023] Other features and advantages of the present invention will be described in the following specification, and partly will become obvious from the specification, or will be understood by implementing the present invention. The objectives and other advantages of the present invention can be achieved and obtained through the structures specifically pointed out in the specification and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention. In the drawings:

[0025] Figure 1 is the structural diagram of the device of the present invention;

[0026] Figure 2 is the structural diagram of the crushing box of the present invention;

[0027] Figure 3 is the structure of the collection unit of the present invention Figure 1 ;

[0028] Figure 4 is the structure of the collection unit of the present invention Figure 2 ;

[0029] Figure 5 is the structure of the collection unit of the present invention Figure 3 ;

[0030] Figure 6 is the structural diagram of the heat conduction unit of the present invention;

[0031] Figure 7 is the structural diagram of the guiding unit of the present invention;

[0032] Figure 8 is the structural diagram of the discharge wheel in the present invention;

[0033] Figure 9 is the structure of the guiding-away unit of the present invention Figure 1 ;

[0034] Figure 10 is the structure of the guiding-away unit of the present invention Figure 2 ;

[0035] Figure 11 is the structure of the guiding-away unit of the present invention Figure 3 .

[0036] Reference Signs: 1, crushing wheel; 2, crushing box; 3, collection unit; 4, heat conduction unit; 5, conveying unit; 6, guiding unit; 310, connecting bar; 312, support block three; 313, vertical block three; 314, motor three; 315, turntable three; 316, vertical block four; 317, linkage bar three; 318, turntable four; 319, ring block three; 320, screw conveyor shaft; 321, ring block four; 322, support block four; 323, channel three; 324, collection tank three; 325, support frame three; 326, collection tank four; 327, linkage ring block; 328, rotating bar; 329, connecting block; 331, flat rope; 332, housing three; 333, housing four; 410, channel eight; 412, support frame four; 414, storage box; 415, pump body; 416, channel four; 417, channel five; 418, channel six; 419, channel seven; 421, channel nine; 510, ring block five; 512, collection tank five; 513, linkage bar four; 514, discharging wheel; 515, support block five; 516, motor four; 517, turntable five; 518, torque enhancer; 519, turntable six; 521, ring block six; 610, stop block; 612, support frame five; 613, support frame six; 614, roller three; 615, motor five; 616, conveying rubber sheet; 617, receiving box; 618, discharging box; 619, connecting piece; 621, top cover; 622, inclined block; 623, roller four; 624, pressing block; 625, pressing contact roller. Detailed Implementation Manner

[0037] In order to make the objectives, technical solutions, and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of specific embodiments of the present invention. The same reference signs in the drawings represent the same components. It should be noted that the described embodiments are some embodiments of the present invention, rather than all embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0038] Referring to Figures 1 - 11 , an electronic waste treatment device is proposed in an embodiment of the present invention, which includes a crushing box 2, a crushing wheel 1 is installed in the crushing box 2, a collection unit 3 is installed below the crushing box 2, a heat conduction unit 4 is installed on the side of the collection unit 3, a conveying unit 5 is installed at the output part of the collection unit 3, and a guiding unit 6 is installed at the output part of the conveying unit 5;

[0039] The collection unit 3 includes a third support block 312. An upright block 313 is installed on the upper wall surface of the third support block 312. A third motor 314 is installed on the upright block 313. A third turntable 315 is installed on the output head of the third motor 314. An upright block 316 is installed on the upper wall surface of the third support block 312. A third linkage rod 317 is rotatably connected to the upright block 316. A fourth turntable 318 is installed on the third linkage rod 317. A third ring block 319 is installed on the back of the third linkage rod 317. A number of protrusions are installed on the side wall of the third ring block 319. A connecting rod 310 is installed on the upright block 316. The connecting rod 310 is located above the third linkage rod 317. A fourth ring block 321 that engages with the third ring block 319 is installed on the connecting rod 310. A number of protrusions are fixedly connected to the side wall of the fourth ring block 321. A fourth support block 322 is installed on the upper wall surface of the third support block 312. A third channel 323 is installed on the fourth support block 322. A third collection trough 324 is installed above the fourth support block 322. A third support frame 325 corresponding to the third collection trough 324 is installed on the third support block 312. A fourth collection trough 326 corresponding to the third collection trough 324 is installed on the third support frame 325. A linkage ring block 327 is installed on both sides of the third collection trough 324. The linkage ring block 327 generally consists of an outer ring, an inner ring, and rolling elements. The linkage ring block 327 is used to support the rotating body and reduce the friction coefficient during the movement of the rotating body. A rotating rod 328 is installed in the third collection trough 324 via the linkage ring block 327. A connecting block 329 is installed on the rotating rod 328. A screw shaft 320 is rotatably connected in the third channel 323; through the third collection trough 324 installed in the collection unit 3, it is beneficial to collect the broken waste electronic products. The broken waste electronic products gathered in the third collection trough 324 are flushed and separated by the connecting block 329, so that the broken waste electronic products can smoothly enter the third channel 323 for heat absorption and conduction operation.

[0040] The third turntable 315 and the fourth turntable 318 are connected via a flat rope 331. A third housing 332 corresponding to the third turntable 315 and the fourth turntable 318 is installed on the third support block 312. A fourth housing 333 corresponding to the third ring block 319 and the fourth ring block 321 is installed on the back of the upright block 316. The back of the connecting rod 310 is connected to the inner chamber of the rotating rod 328. The third linkage rod 317 is connected to the screw shaft 320. An inlet corresponding to the discharge port of the third collection trough 324 is installed on the third channel 323. A heat conduction inner chamber is installed between the inner cover and the outer cover of the third channel 323. When the waste electronic products are broken by an external force, work is done on the waste electronic products by the external force, and mechanical energy is converted into internal energy. Through the heat conduction inner chamber reserved in the third channel 323, it is beneficial for the heat conduction fluid to cover the third channel 323 and absorb the heat on the broken waste electronic products in the third channel 323.

[0041] The heat conduction unit 4 includes a support frame four 412, on which a central control box and a storage box 414 are installed. A pump body 415 is installed on the support frame four 412 at the right part of the storage box 414. A channel four 416 is installed at the lower part of the storage box 414, and a channel five 417 is installed on the channel four 416. A channel six 418 is installed on the pump body 415. A channel seven 419 is installed at the upper part of the storage box 414, and a channel eight 410 is installed on the channel seven 419. When the waste electronic products are broken by an external force, the external force does work on the waste electronic products, and the mechanical energy is converted into internal energy. The pump body 415 in the heat conduction unit 4 transports the heat conduction fluid in the storage box 414 back and forth, which is beneficial for the channel three 323 to absorb the heat on the broken waste electronic products.

[0042] The channel five 417 is connected to the pump body 415. A channel nine 421 is installed on the channel four 416, and a liquid gate is installed on the channel nine 421. The channel six 418 is at the upper part of the channel three 323 and extends into the heat conduction inner chamber, and the channel eight 410 is at the lower part of the channel three 323 and extends into the heat conduction inner chamber. Through the channel nine 421 installed on the channel four 416, it is beneficial to add the heat conduction fluid into the storage box 414. The channel six 418 and the channel eight 410 are on both sides of the channel three 323, which is beneficial for the replacement of the heat conduction fluid in the channel three 323 and is beneficial for the channel three 323 to absorb the heat on the broken waste electronic products.

[0043] The transportation unit 5 includes a collection tank five 512, in which a linkage rod four 513 is rotated. An output wheel 514 is installed in the collection tank five 512 through the linkage rod four 513. A support block five 515 is installed on the side wall surface of the collection tank five 512. A motor four 516 is installed on the support block five 515. A turntable five 517 is installed on the output head of the motor four 516. A torque enhancer 518 is installed on the support block five 515. A turntable six 519 is installed on the torque enhancer 518. A ring block five 510 is installed on the torque enhancer 518. A number of protrusions are installed on the side wall of the ring block five 510. A ring block six 521 corresponding to the ring block five 510 is installed on the linkage rod four 513. A number of protrusions are installed on the outer side wall of the ring block six 521. Through the collection tank five 512 in the transportation unit 5, it is beneficial to collect the broken waste electronic products that have absorbed heat. The output wheel 514 intermittently exports the waste electronic products that enter the collection tank five 512, preventing the accumulation and unsmooth flow of the broken waste electronic products and facilitating the transportation and removal of the broken waste electronic products from the device.

[0044] The collection tank five 512 is correspondingly arranged at the output part of the channel three 323. An output port is reserved at the lower part of the collection tank five 512. The output wheel 514 is at the front position in the collection tank five 512. Through the installation of the output wheel 514, it is beneficial to smoothly export the broken waste electronic products.

[0045] The separation unit 6 includes a support frame five 612, on which a support frame six 613 is installed. At the front and rear of the support frame six 613, a roller three 614 is rotatably connected. On the back of the left support frame six 613, a motor five 615 corresponding to the roller three 614 is installed. On the roller three 614, a conveying rubber sheet 616 is installed. At the front of the support frame six 613, a receiving box 617 is installed. At the back of the support frame six 613, a discharging box 618 is installed. Inside the support frame six 613 and inside the conveying rubber sheet 616, a connecting piece 619 is installed. On the upper part of the support frame six 613, a stop block 610 is installed. On the upper part of the stop block 610, a top cover 621 is installed. Through the stop block 610 and the top cover 621 installed in the separation unit 6, it is beneficial to enclose and block the broken and discarded electronic products conveyed through the separation unit 6 to prevent the dispersion of fine particles and improve the space quality of the waste electronic product treatment operation.

[0046] The receiving box 617 is correspondingly arranged with the outlet of the collecting groove five 512. An inclined block 622 is installed in the receiving box 617. The support frame five 612 is inclined. Below the conveying rubber sheet 616 on the support frame five 612, a roller four 623 is installed. Below the connecting piece 619 on the support frame five 612, a pressing block 624 is installed. The pressing block 624 has the characteristic of deforming when subjected to an external force and returning to its original state after the external force is removed. On one side of the pressing block 624, a pressing contact roller 625 is installed. Through the inclined block 622 and the conveying rubber sheet 616, it is convenient to convey and carry away the broken waste electronic products. Through the top cover 621, it is convenient to clean and maintain the separation unit 6. Through the pressing block 624 and the pressing contact roller 625, it is beneficial to maintain the tensile stress of the conveying rubber sheet 616 and promote the smooth conveyance of the broken waste electronic products by the conveying rubber sheet 616.

[0047] The specific implementation method is as follows: The crushing box 2 guides the crushed waste electronic products into the collecting groove four 326. The motor three 314 runs through the turntable three 315, turntable four 318, ring block three 319, and ring block four 321, causing the linkage lever three 317 and the connecting lever 310 to rotate together. Through the connecting lever 310 and the connecting block 329, the crushed waste electronic products guided into the collecting groove three 324 are further flushed and separated to improve the smoothness of the guiding channel three 323 for the crushed waste electronic products. Through the linkage lever three 317, the screw conveyor shaft 320 is caused to rotate to facilitate the guiding and conveying of the crushed waste electronic products guided into the channel three 323. During the stage when the crushed waste electronic products are conveyed in the channel three 323, the pump body 415 guides the heat-conducting fluid into the heat-conducting inner chamber of the channel three 323 to absorb the heat on the crushed waste electronic products in the channel three 323 and extend the service life of the device;

[0048] After the broken waste electronic products absorb heat in the third channel 323, they are transported to the fifth collection tank 512. The operation of the fourth motor 516 causes the fourth linkage rod 513 to rotate, and the broken waste electronic products transported to the fifth collection tank 512 are intermittently exported through the material outlet wheel 514. The broken waste electronic products are transported to the collection box 617 in the separation unit 6. The third roller 614 is rotated by the fifth motor 615, so that the conveyor rubber 616 transports the broken waste electronic products to the outlet box 618 and then exports them, which is beneficial to the synchronous progress of the device for crushing and transporting the waste electronic products away;

[0049] When the waste electronic products are broken by an external force, the external force does work on the waste electronic products, and the mechanical energy is converted into internal energy. The pump body 415 in the heat conduction unit 4 transports the heat conduction fluid in the storage tank 414 back and forth, which is beneficial to the third channel 323 to absorb the heat on the broken waste electronic products. Through the ninth channel 421 installed on the fourth channel 416, it is beneficial to add the heat conduction fluid into the storage tank 414. The sixth channel 418 and the eighth channel 410 are on both sides of the third channel 323, which is beneficial to the replacement of the heat conduction fluid in the third channel 323 and is beneficial to the third channel 323 to absorb the heat on the broken waste electronic products;

[0050] Through the fifth collection tank 512 in the transportation unit 5, it is beneficial to collect the broken waste electronic products that have absorbed heat. The waste electronic products entering the fifth collection tank 512 are intermittently exported through the material outlet wheel 514 to prevent the accumulation and poor circulation of the broken waste electronic products, and it is convenient to transport the broken waste electronic products away from the device.

[0051] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. Waste electronic product processing device, comprising a crushing box (2), wherein a crushing wheel (1) is installed in the crushing box (2), characterized in that, A collection unit (3) is installed at the lower part of the crushing box (2), a heat conduction unit (4) is installed on the side of the collection unit (3), a conveying unit (5) is installed at the output part of the collection unit (3), and a guiding unit (6) is installed at the output part of the conveying unit (5).

2. The waste electronic product processing device according to claim 1, wherein The collection unit (3) includes a third support block (312). A third vertical block (313) is installed on the upper wall surface of the third support block (312). A third motor (314) is installed on the third vertical block (313). A third turntable (315) is installed at the output head of the third motor (314). A fourth vertical block (316) is installed on the upper wall surface of the third support block (312). A third linkage rod (317) is rotatably connected to the fourth vertical block (316). A fourth turntable (318) is installed on the third linkage rod (317). A third ring block (319) is installed on the back of the third linkage rod (317). A number of protrusions are installed on the side wall of the third ring block (319). A connecting rod (310) is installed on the fourth vertical block (316). The connecting rod (310) is located above the third linkage rod (317). A fourth ring block (321) that engages with the third ring block (319) is installed on the connecting rod (310). A number of protrusions are fixedly connected to the side wall of the fourth ring block (321). A fourth support block (322) is installed on the upper wall surface of the third support block (312). A third channel (323) is installed on the fourth support block (322). A third collection tank (324) is installed above the fourth support block (322). A third support frame (325) corresponding to the third collection tank (324) is installed on the third support block (312). A fourth collection tank (326) corresponding to the third collection tank (324) is installed on the third support frame (325). Linkage ring blocks (327) are installed on both sides of the third collection tank (324). A rotating rod (328) is installed in the third collection tank (324) via the linkage ring blocks (327). A connecting block (329) is installed on the rotating rod (328). A screw shaft (320) is rotatably connected in the third channel (323); The heat conduction unit (4) includes a fourth support frame (412). A storage box (414) is installed on the fourth support frame (412). A pump body (415) located on the right side of the storage box (414) is installed on the fourth support frame (412). A fourth channel (416) is installed at the lower part of the storage box (414). A fifth channel (417) is installed on the fourth channel (416). A sixth channel (418) is installed on the pump body (415). A seventh channel (419) is installed at the upper part of the storage box (414). An eighth channel (410) is installed on the seventh channel (419); The guiding and transporting unit (5) includes a fifth collecting trough (512). A fourth linkage rod (513) is rotatably connected in the fifth collecting trough (512). An object discharging wheel (514) is installed in the fifth collecting trough (512) via the fourth linkage rod (513). A fifth supporting block (515) is installed on the side wall surface of the fifth collecting trough (512). A fourth motor (516) is installed on the fifth supporting block (515). A fifth turntable (517) is installed on the output head of the fourth motor (516). A torque enhancer (518) is installed on the fifth supporting block (515). A sixth turntable (519) is installed on the torque enhancer (518). A fifth ring block (510) is installed on the torque enhancer (518). A number of protrusions are installed on the side wall of the fifth ring block (510). A sixth ring block (521) corresponding to the fifth ring block (510) is installed on the fourth linkage rod (513). A number of protrusions are installed on the outer side wall of the sixth ring block (521). The guiding and separating unit (6) includes a fifth supporting frame (612). A sixth supporting frame (613) is installed on the fifth supporting frame (612). Third rollers (614) are rotatably connected to both the front and rear parts of the sixth supporting frame (613). A fifth motor (615) corresponding to the third roller (614) is installed on the back of the left sixth supporting frame (613). A conveying rubber sheet (616) is installed on the third roller (614). A receiving box (617) is installed at the front of the sixth supporting frame (613). An object discharging box (618) is installed on the back of the sixth supporting frame (613). A connecting piece (619) is installed inside the sixth supporting frame (613) where the conveying rubber sheet (616) is located. A stop block (610) is installed on the upper part of the sixth supporting frame (613). A top cover (621) is installed on the upper part of the stop block (610).

3. The waste electronic product processing device according to claim 2, characterized in that, The third turntable (315) and the fourth turntable (318) are connected via a flat rope (331). A third housing (332) corresponding to the third turntable (315) and the fourth turntable (318) is installed on the third supporting block (312). A fourth housing (333) corresponding to the third ring block (319) and the fourth ring block (321) is installed on the back of the fourth vertical block (316).

4. The waste electronic product processing device according to claim 2, characterized in that The back of the connecting rod (310) is connected to the inner chamber of the rotating rod (328). The third linkage rod (317) is connected to the screw conveyor shaft (320).

5. The waste electronic product processing device according to claim 2, characterized in that, An object inlet corresponding to the separating opening of the third collecting trough (324) is installed on the third channel (323). A heat-conducting inner chamber is installed between the inner cover and the outer cover of the third channel (323).

6. The waste electronic product processing device according to claim 2, wherein The fifth channel (417) is connected to the pump body (415). A ninth channel (421) is installed on the fourth channel (416). A liquid gate is installed on the ninth channel (421).

7. The waste electronic product processing device according to claim 5, wherein, The sixth channel (418) extends into the heat-conducting inner chamber at the upper part of the third channel (323). The eighth channel (410) extends into the heat-conducting inner chamber at the lower part of the third channel (323).

8. The waste electronic product processing device according to claim 2, wherein The collecting groove five (512) is provided corresponding to the discharging part of the channel three (323). A discharging port is reserved at the lower part of the collecting groove five (512). The discharging wheel (514) is located at a position closer to the front in the collecting groove five (512).

9. The waste electronic product processing device according to claim 2, wherein The object receiving box (617) is provided corresponding to the discharging port of the collecting groove five (512). An inclined block (622) is installed in the object receiving box (617).

10. The waste electronic product processing device according to claim 2, wherein The support frame five (612) is inclined. A roller four (623) is installed at the lower part of the conveying rubber sheet (616) on the support frame five (612). A pressing block (624) is installed at the lower part of the connecting piece (619) on the support frame five (612). The pressing block (624) has the property of deforming when subjected to an external force and restoring its original shape after the external force is removed. A pressing contact roller (625) is installed on one side of the pressing block (624).

Citation Information

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