Intelligent waste silk treatment device

Through the design of the intelligent waste wire treatment device, cleaning and drying technology are used to remove dust and impurities in the waste wire, and hot melting and reuse it in the hot melt box, solving the problem of low waste wire treatment efficiency in the existing technology, and achieving efficient and environmentally friendly waste wire reuse.

CN120060989APending Publication Date: 2025-05-30薛雪扬
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Patent Information

Application Number
CN202510228428.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The dust impurities mixed in waste silk produced during chemical fiber spinning production are the existing technology that rely on manual cleaning, and are labor-intensive and inefficient.

Method used

An intelligent waste wire treatment device is designed, including a treatment tank, a cleaning mechanism, a waste wire cutting mechanism, a J-shaped hot air duct and a hot melt box. The cleaning mechanism realizes humidification and impurity removal of waste wires through an annular water supply pipe, a first nozzle, a stirring assembly, an ultrasonic generator and a vibration plate, and is then dried through a J-shaped hot air duct, and is hot melted and reused in a hot melt box.

Benefits of technology

It realizes efficient cleaning, drying and reuse of waste wires, reduces the labor intensity of staff, improves work efficiency, and effectively avoids waste wire blockage and pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent waste silk treatment device which comprises a treatment tank, a feeding channel inclining upwards is arranged on the left side of the treatment tank, a cleaning mechanism is arranged in the treatment tank, and the cleaning mechanism comprises an annular water supply pipe, a plurality of first spray heads, a stirring assembly, an ultrasonic generator and a plurality of vibration plates. A discharging channel inclining downwards is arranged at the lower end of the gate assembly, a J-shaped hot air pipe is rotationally connected to the inner wall of the upper end of the discharging channel, a hot melting box is arranged on the right side of the discharging opening, and a spiral extrusion shredding mechanism is arranged in the hot melting box. Waste silk can be cleaned through the cleaning mechanism, the waste silk can be dried through the J-shaped hot air pipe, the cleaned waste silk can be subjected to hot melting through the hot melting box to form chemical fiber liquid, and the molten chemical fiber liquid can be extruded out through the spiral extrusion silk making mechanism to be made into chemical fiber silk again. The whole device achieves cleaning, processing and recycling of waste silk, the labor intensity of workers is effectively reduced, and the working efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of chemical fiber textile, and particularly to an intelligent waste silk processing device. Background Art

[0002] Chemical fiber spinning refers to the process of processing chemical fiber raw materials into fibers through specific technological processes. Chemical fiber spinning technology occupies an important position in the textile industry and is widely used in the production of various synthetic fibers, such as polyester, nylon, etc.

[0003] During the production and processing of chemical fiber spinning, some tailing waste silk will be generated. After collection, these waste silk will be mixed with some dust and impurities. At present, manual methods are often used to clean the collected waste silk, then dry it, and then process it. This method has a high labor intensity for workers and low efficiency. Therefore, how to clean the impurities in the waste silk and realize the treatment and reuse of the waste silk has become a problem to be solved at present. Summary of the Invention

[0004] The purpose of the present invention is to provide an intelligent waste silk processing device to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: An intelligent waste silk processing device, including a processing tank. An upwardly inclined feed channel is provided on the left side of the processing tank. A waste silk cutting mechanism is provided on the feed channel. An electromagnetic valve is provided at the lower end opening of the processing tank. A gate assembly that can be opened and closed is provided at the lower end of the processing tank. A cleaning mechanism is provided inside the processing tank. The cleaning mechanism includes an annular water supply pipe, a plurality of first spray nozzles, a stirring assembly, an ultrasonic generator, and a plurality of vibrating plates. The annular water supply pipe is fixedly connected to the inner wall top of the processing tank. The plurality of first spray nozzles are arranged in an annular array on the lower surface of the annular water supply pipe. The plurality of vibrating plates are fixedly connected to the inner wall of the processing tank in an annular array. The stirring assembly is rotatably connected inside the processing tank. The ultrasonic generator is provided on the front and rear sides of the processing tank;

[0006] A downwardly inclined discharge channel is provided at the lower end of the gate assembly. A J-shaped hot air pipe is rotatably connected to the upper end inner wall of the discharge channel. A filter screen is provided on the inner wall of the discharge channel. An outlet is provided on the upper right side of the filter screen and a waste discharge port is provided on the lower right side of the filter screen in the discharge channel. A hot melt tank is provided on the right side of the outlet. A spiral extrusion wire-making mechanism is provided inside the hot melt tank. An exhaust gas treatment mechanism is provided on the upper surface of the hot melt tank.

[0007] Preferably, the waste silk cutting mechanism includes an L-shaped support frame, two reciprocating push rods, and a cutting knife. The L-shaped support frame is fixedly connected to the upper surface of the feed channel. The two reciprocating push rods are fixedly connected to the lower surface of the L-shaped support frame. The cutting knife is fixedly connected to the lower end of the reciprocating push rod and penetrates to the inside of the feed channel.

[0008] Preferably, the stirring assembly includes a stirring motor, a stirring paddle and a knocking rod. The stirring motor is fixedly connected to the upper surface of the processing tank. The stirring paddle is rotatably connected to the inner wall of the processing tank. The knocking rod is fixedly connected to the surface of the stirring paddle, and the output end of the stirring motor is fixedly connected to the stirring paddle.

[0009] Preferably, the gate assembly includes a limiting frame and a mesh gate. The limiting frame is fixedly connected between the processing tank and the discharge channel. The mesh gate is slidably connected to the inner wall of the limiting frame through an adjusting mechanism.

[0010] Preferably, the adjusting mechanism includes a servo motor, an adjusting lead screw and a moving block. The servo motor is fixedly connected to the side surface of the limiting frame. The adjusting lead screw is fixedly connected to the output end of the servo motor. The moving block is fixedly connected to the side surface of the mesh gate, and the moving block is threadedly connected to the adjusting lead screw.

[0011] Preferably, four support legs are fixedly connected to the lower surface of the processing tank. A transverse plate is fixedly connected to the surface of the support legs. A blower bracket and an electric telescopic rod are fixedly connected to the surface of the transverse plate. The upper end of the blower bracket is fixedly connected to a hot air blower, and the output end of the hot air blower is rotatably connected to the left end of a J-shaped hot air pipe. A gear is arranged on the outer surface of the J-shaped hot air pipe. The upper end of the electric telescopic rod is fixedly connected to a rack meshing with the gear.

[0012] Preferably, a sewage collection box is arranged at the impurity discharge port. A sewage filter plate is detachably installed on the inner wall of the sewage collection box. An injection pipe is arranged on the side surface of the sewage collection box. A water outlet pipe is arranged on the rear surface of the sewage collection box. A circulation pump is arranged on the surface of the processing tank, and the input end of the circulation pump is fixedly communicated with the water outlet pipe through a pipeline. The output end of the circulation pump is fixedly communicated with an annular water supply pipe.

[0013] Preferably, the waste gas treatment mechanism includes an air suction pump, a gas treatment box, a conical cover, a plurality of baffles, an exhaust pipe, a gas purification layer and a medicine spraying assembly. The conical cover is fixedly connected to the inner wall of the gas treatment box, and a plurality of leakage holes are formed in the surface of the conical cover. The air suction end of the air suction pump extends into the melting tank, and the exhaust end of the air suction pump extends to directly below the conical cover. The plurality of baffles are fixedly connected to the inner wall of the gas treatment box in a left-right staggered manner. The exhaust pipe is arranged at the upper end of the gas treatment box. The gas purification layer is detachably installed on the inner wall of the exhaust pipe. The medicine spraying assembly is arranged on the inner wall of the gas treatment box. The medicine spraying assembly includes a U-shaped pipe, a plurality of second spray heads, a medicine pumping pump and a medicine box. The U-shaped pipe is fixedly connected to the inner wall of the gas treatment box. The plurality of second spray heads are arranged on the surface of the U-shaped pipe. The input end of the medicine pumping pump extends into the medicine box, and the output end of the medicine pumping pump is fixedly communicated with the U-shaped pipe.

[0014] Preferably, a liquid medicine filter plate is fixedly connected to the inner wall of the gas treatment box, and the medicine box and the bottom of the gas treatment box are communicated with each other through a plastic pipe.

[0015] Preferably, a serpentine tube is embedded in the back surface of the hot melt tank, and the upper end of the serpentine tube can be fixedly communicated with the input end of the circulation pump, and the lower end of the serpentine tube can be fixedly communicated with the water outlet pipe.

[0016] Beneficial effects

[0017] The present invention provides an intelligent waste filament treatment device, which has the following beneficial effects:

[0018] 1. For this intelligent waste filament treatment device, by setting a cleaning mechanism, water is supplied to a plurality of first nozzles through an annular water supply pipe, and then water is sprayed through the plurality of first nozzles, so that the waste filaments can be humidified. The treatment tank stores water, and then through the rotation of the stirring assembly, the dust and impurities on the surface of the waste filaments can be dissolved in the water. In cooperation with the operation of the ultrasonic generator and the vibration of the vibration plate, the water stored in the treatment tank can be vibrated at a high frequency, thereby further improving the removal effect of impurities and dust on the surface of the waste filaments.

[0019] 2. For this intelligent waste filament treatment device, the waste filaments can be cut by setting a waste filament cutting mechanism, the waste filaments can be cleaned by using the cleaning mechanism, the waste filaments can be dried by using a J-shaped hot air pipe, the cleaned waste filaments can be melted into chemical fiber liquid by using a hot melt tank, and the melted chemical fiber liquid can be extruded and remade into chemical fiber filaments by using a spiral extrusion wire making mechanism. The whole device realizes the cleaning, treatment and reuse of waste filaments, effectively reduces the labor intensity of workers and improves the work efficiency.

[0020] 3. For this intelligent waste filament treatment device, by setting a J-shaped hot air pipe, the electric telescopic rod is used for telescoping, which can drive the rack to move. By the mutual meshing of the rack and the gear, the gear can be driven to rotate, and thus the J-shaped hot air pipe can be driven to rotate. When the right end opening of the J-shaped hot air pipe faces upward, hot air is blown out of the J-shaped hot air pipe to the mesh gate. In cooperation with the operation of the stirring assembly, rapid air drying of the waste filaments can be realized, and the air drying effect is good. After the waste filaments are air dried, the gate assembly is opened, and the J-shaped hot air pipe is rotated 180 degrees. By blowing air through the J-shaped hot air pipe to the discharge channel, it is beneficial for the waste filaments in the discharge channel to enter the hot melt tank, effectively avoiding the blockage of waste filaments in the discharge channel, and the waste filaments are melted after being dried, effectively improving the hot melt efficiency of the waste filaments.

[0021] 4. The intelligent waste silk treatment device, by setting up an exhaust gas treatment mechanism and using a conical cover and multiple baffles, can effectively increase the residence time of the exhaust gas in the gas treatment tank, thereby increasing the exhaust gas treatment time. When the spraying component works, liquid medicine can be sprayed into the gas treatment tank, so as to remove sulfides and harmful substances in the exhaust gas. The liquid medicine flows downward and falls on the surface of the conical cover, and then flows down through the leakage holes, so that the exhaust gas and the liquid medicine can better contact each other, improving the removal effect of harmful substances in the exhaust gas. Finally, the exhaust gas is purified by the gas purification layer and discharged from the exhaust pipe, effectively avoiding the pollution of the surrounding working environment by the exhaust gas.

[0022] 5. The intelligent waste silk treatment device, by setting up a serpentine pipe, fixing and communicating the upper part of the serpentine pipe with the input end of the circulation pump, and then enabling the lower end of the serpentine pipe to be fixedly communicated with the water outlet pipe. After the sewage in the sewage collection tank is filtered, it passes through the serpentine pipe and then enters the annular water supply pipe. This design can not only effectively utilize the waste heat dissipated by the hot melt tank to preheat the water sprayed by the first nozzle, which is beneficial to the dissolution and shedding of dust and impurities on the surface of the waste silk, but also be more energy-saving and environmentally friendly. Brief Description of the Drawings

[0023] Figure 1 It is a schematic diagram of the overall three-dimensional structure of an intelligent waste silk treatment device proposed by the present invention;

[0024] Figure 2 It is a schematic diagram of the sectional structure of the treatment tank and the discharge channel of an intelligent waste silk treatment device proposed by the present invention;

[0025] Figure 3 It is a schematic diagram of the bottom sectional view of the treatment tank of an intelligent waste silk treatment device proposed by the present invention;

[0026] Figure 4 It is a schematic diagram of the three-dimensional structure of the gate assembly of an intelligent waste silk treatment device proposed by the present invention;

[0027] Figure 5 It is a schematic diagram of the three-dimensional structure of the J-shaped hot air pipe of an intelligent waste silk treatment device proposed by the present invention;

[0028] Figure 6 It is a schematic diagram of the sectional structure of the hot melt tank and the exhaust gas treatment mechanism of an intelligent waste silk treatment device proposed by the present invention;

[0029] Figure 7 It is a schematic diagram of the top view of the conical cover of an intelligent waste silk treatment device proposed by the present invention;

[0030] Figure 8 It is a schematic diagram of the rear view of the hot melt tank of an intelligent waste silk treatment device proposed by the present invention.

[0031] In the figure: 1, processing tank; 2, feeding channel; 3, waste silk cutting mechanism; 4, solenoid valve; 5, gate assembly; 6, annular water supply pipe; 7, first spray head; 8, stirring assembly; 9, ultrasonic generator; 10, vibrating plate; 11, discharging channel; 12, J-shaped hot air pipe; 13, filter screen; 14, discharging port; 15, impurity discharging port; 16, hot melting box; 17, screw extrusion wire making mechanism; 18, waste gas treatment mechanism; 19, L-shaped support frame; 20, reciprocating push rod; 21, cutter; 22, stirring motor; 23, stirring paddle; 24, knocking rod; 25, limiting frame; 26, mesh gate; 27, servo motor; 28, adjusting lead screw; 29, moving block; 30, support leg; 31, transverse plate; 32, fan support; 33, electric telescopic rod; 34, hot air blower; 35, gear; 36, rack; 37, sewage collection tank; 38, sewage filter plate; 39, injection pipe; 40, water outlet pipe; 41, circulation pump; 42, suction pump; 43, gas treatment box; 44, conical cover; 45, baffle plate; 46, exhaust pipe; 47, gas purification layer; 48, leakage hole; 49, U-shaped pipe; 50, second spray head; 51, medicine pumping pump; 52, medicine box; 53, medicine liquid filter plate; 54, plastic pipe; 55, serpentine pipe. Detailed implementation manner

[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the 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.

[0033] Example 1, please refer to Figures 1-7, the present invention provides a technical solution: an intelligent waste silk processing device, including a processing tank 1, an upwardly inclined feed channel 2 is provided on the left side of the processing tank 1, a waste silk cutting mechanism 3 is provided on the feed channel 2, a solenoid valve 4 is provided at the lower end opening of the processing tank 1, a gate assembly 5 that can be opened and closed is provided at the lower end of the processing tank 1, and a cleaning mechanism is provided inside the processing tank 1. The cleaning mechanism includes an annular water supply pipe 6, a plurality of first nozzles 7, a stirring assembly 8, an ultrasonic generator 9, and a plurality of vibrating plates 10. The annular water supply pipe 6 is fixedly connected to the top inner wall of the processing tank 1. The plurality of first nozzles 7 are arranged in an annular array on the lower surface of the annular water supply pipe 6. The plurality of vibrating plates 10 are fixedly connected to the inner wall of the processing tank 1 in an annular array. The stirring assembly 8 is rotatably connected inside the processing tank 1. The ultrasonic generator 9 is provided on the front and rear sides of the processing tank 1. By setting the cleaning mechanism, water is supplied to the plurality of first nozzles 7 through the annular water supply pipe 6, and then water is sprayed through the plurality of first nozzles 7, so that the waste silk can be humidified. By storing water in the processing tank 1 and then rotating the stirring assembly 8, the dust and impurities on the surface of the waste silk can be dissolved in the water. With the cooperation of the ultrasonic generator 9 working and the vibration of the vibrating plates 10, the stored water in the processing tank 1 can be vibrated at a high frequency, thereby further improving the removal effect of impurities and dust on the surface of the waste silk.

[0034] A downwardly inclined discharge channel 11 is provided at the lower end of the gate assembly 5. A J-shaped hot air pipe 12 is rotatably connected to the upper end inner wall of the discharge channel 11. A filter screen 13 is provided on the inner wall of the discharge channel 11. An outlet 14 located above the filter screen 13 and a waste discharge port 15 located below the filter screen 13 are respectively provided at the right end of the discharge channel 11. A hot melt box 16 is provided on the right side of the outlet 14. A spiral extrusion wire-making mechanism 17 is provided inside the hot melt box 16. An exhaust gas treatment mechanism 18 is provided on the upper surface of the hot melt box 16. By setting the waste silk cutting mechanism 3, the waste silk can be cut. By using the cleaning mechanism, the waste silk can be cleaned. By using the J-shaped hot air pipe 12, the waste silk can be dried. By using the hot melt box 16, the cleaned waste silk can be melted to form chemical fiber liquid. By using the spiral extrusion wire-making mechanism 17, the melted chemical fiber liquid can be extruded to re-make chemical fiber filaments. The whole device realizes the cleaning, processing and recycling of waste silk, effectively reducing the labor intensity of workers and improving work efficiency.

[0035] The waste silk cutting mechanism 3 includes an L-shaped support frame 19, two reciprocating push rods 20 and a cutting knife 21. The L-shaped support frame 19 is fixedly connected to the upper surface of the feed channel 2. The two reciprocating push rods 20 are fixedly connected to the lower surface of the L-shaped support frame 19. The cutting knife 21 is fixedly connected to the lower end of the reciprocating push rod 20 and penetrates to the inside of the feed channel 2. By setting the waste silk cutting mechanism 3, the reciprocating movement of the reciprocating push rod 20 can drive the cutting knife 21 to move up and down, so that the waste silk put into the feed channel 2 can be cut into small sections.

[0036] The stirring assembly 8 includes a stirring motor 22, a stirring paddle 23 and a knocking rod 24. The stirring motor 22 is fixedly connected to the upper surface of the treatment tank 1. The stirring paddle 23 is rotatably connected to the inner wall of the treatment tank 1. The knocking rod 24 is fixedly connected to the surface of the stirring paddle 23. And the output end of the stirring motor 22 is fixedly connected to the stirring paddle 23. By setting the stirring assembly 8, the stirring motor 22 can drive the stirring paddle 23 and the knocking rod 24 to rotate when working. The rotation of the stirring paddle 23 can stir the waste silk and water in the treatment tank 1. The rotation of the knocking rod 24 can make the knocking rod 24 intermittently strike the vibration plate 10, so that a plurality of vibration plates 10 vibrate, thereby strengthening the vibration of the water body in the treatment tank 1.

[0037] The gate assembly 5 includes a limit frame 25 and a mesh gate 26. The limit frame 25 is fixedly connected between the treatment tank 1 and the discharge channel 11. The mesh gate 26 is slidably connected to the inner wall of the limit frame 25 through an adjustment mechanism. The adjustment mechanism includes a servo motor 27, an adjustment lead screw 28 and a moving block 29. The servo motor 27 is fixedly connected to the side of the limit frame 25. The adjustment lead screw 28 is fixedly connected to the output end of the servo motor 27. The moving block 29 is fixedly connected to the side of the mesh gate 26. And the moving block 29 is threadedly connected to the adjustment lead screw 28. By setting the adjustment mechanism, the servo motor 27 can drive the adjustment lead screw 28 to rotate when working. With the threaded connection of the moving block 29 and the adjustment lead screw 28, the moving block 29 can be driven to move horizontally, so that the mesh gate 26 can be driven to slide in the limit frame 25, and then the mesh gate 26 can be opened or closed. By closing the solenoid valve 4, the water in the treatment tank 1 can be prevented from flowing out, so that the treatment tank 1 can store water. By opening the solenoid valve 4 and closing the mesh gate 26, the sewage and impurities in the treatment tank 1 can be discharged conveniently, and the waste silk can be left in the treatment tank 1, which provides convenience for air-drying the waste silk. By opening the mesh gate 26, the waste silk in the treatment tank 1 can enter the discharge channel 11 conveniently. The setting of the filter screen 13 can separate the waste silk from the waste water and impurities.

[0038] The lower surface of the treatment tank 1 is fixedly connected with four support legs 30. The surface of the support legs 30 is fixedly connected with a transverse plate 31. The surface of the transverse plate 31 is fixedly connected with a fan bracket 32 and an electric telescopic rod 33. The upper end of the fan bracket 32 is fixedly connected with a hot air blower 34. And the output end of the hot air blower 34 is rotationally connected with the left end of the J-shaped hot air pipe 12. A gear 35 is arranged on the outer surface of the J-shaped hot air pipe 12. The upper end of the electric telescopic rod 33 is fixedly connected with a rack 36 that meshes with the gear 35. By setting the J-shaped hot air pipe 12 and using the electric telescopic rod 33 to expand and contract, the rack 36 can be driven to move. By using the mutual meshing of the rack 36 and the gear 35, the gear 35 can be driven to rotate, and thus the J-shaped hot air pipe 12 can be driven to rotate. When the right end opening of the J-shaped hot air pipe 12 faces upward, hot air is blown out from the J-shaped hot air pipe 12 to the mesh gate 26. Cooperating with the stirring assembly 8 to work, rapid air drying of the waste silk can be realized, and the air drying effect is good. After the waste silk is air dried, the gate assembly 5 is opened, and the J-shaped hot air pipe 12 is rotated 180 degrees. By blowing air into the discharge channel 11 through the J-shaped hot air pipe 12, it is beneficial for the waste silk in the discharge channel 11 to enter the hot melt tank 16, effectively avoiding the blockage of the waste silk in the discharge channel 11. And the waste silk is hot melted after being dried, effectively improving the hot melting efficiency of the waste silk.

[0039] A sewage collection box 37 is arranged at the impurity discharge port 15. A sewage filter plate 38 is detachably installed on the inner wall of the sewage collection box 37. An injection pipe 39 is arranged on the side surface of the sewage collection box 37. A water outlet pipe 40 is arranged on the rear surface of the sewage collection box 37. A circulating pump 41 is arranged on the surface of the treatment tank 1. And the input end of the circulating pump 41 is fixedly communicated with the water outlet pipe 40 through a pipeline. The output end of the circulating pump 41 is fixedly communicated with the annular water supply pipe 6. By setting the sewage collection box 37, the sewage filter plate 38, the injection pipe 39, the water outlet pipe 40 and the circulating pump 41, the sewage and impurities discharged from the impurity discharge port 15 can be collected by using the sewage collection box 37. The sewage can be filtered by using the sewage filter plate 38. The injection pipe 39 can be used to conveniently inject pure water into the sewage tank for the use of the first spray head 7. By the operation of the circulating pump 41, the filtered water can be input into the annular water supply pipe 6 again, thus realizing the recycling of water resources, being beneficial to saving resources and avoiding the waste of water resources.

[0040] In addition, in practical applications, a box door that can be opened can be added to the surface of the sewage collection box 37, so as to facilitate opening the sewage collection box 37 to clean the impurities on the surface of the sewage filter plate 38.

[0041] The exhaust gas treatment mechanism 18 includes a suction pump 42, a gas treatment tank 43, a conical cover 44, a plurality of baffles 45, an exhaust pipe 46, a gas purification layer 47 and a medicine spraying assembly. The conical cover 44 is fixedly connected to the inner wall of the gas treatment tank 43, and a plurality of leakage holes 48 are formed on the surface of the conical cover 44. The suction end of the suction pump 42 extends into the interior of the hot melt tank 16, and the exhaust end of the suction pump 42 extends to directly below the conical cover 44. The plurality of baffles 45 are fixedly connected to the inner wall of the gas treatment tank 43 with left - right dislocation. The exhaust pipe 46 is arranged at the upper end of the gas treatment tank 43. The gas purification layer 47 is detachably installed on the inner wall of the exhaust pipe 46. The medicine spraying assembly is arranged on the inner wall of the gas treatment tank 43. The medicine spraying assembly includes a U - shaped pipe 49, a plurality of second nozzles 50, a medicine pumping pump 51 and a medicine tank 52. The U - shaped pipe 49 is fixedly connected to the inner wall of the gas treatment tank 43. The plurality of second nozzles 50 are arranged on the surface of the U - shaped pipe 49. The input end of the medicine pumping pump 51 extends into the interior of the medicine tank 52, and the output end of the medicine pumping pump 51 is fixedly communicated with the U - shaped pipe 49. By providing the exhaust gas treatment mechanism 18, when the suction pump 42 works, the exhaust gas in the gas treatment tank 43 can be sucked into the gas treatment tank 43. By using the conical cover 44 and the plurality of baffles 45, the residence time of the exhaust gas in the gas treatment tank 43 can be effectively increased, thereby increasing the exhaust gas treatment time. When the medicine spraying assembly works, specifically, when the medicine pumping pump 51 works, the liquid medicine in the medicine tank 52 can be sent into the second nozzles 50 to be sprayed, and the liquid medicine can be sprayed into the gas treatment tank 43, so as to remove sulfides and harmful substances in the exhaust gas. The flowing - down liquid medicine will fall on the surface of the conical cover 44 and then flow down from the leakage holes 48, so that the exhaust gas and the liquid medicine can better contact each other, improving the removal effect of harmful substances in the exhaust gas. Finally, the exhaust gas is purified by the gas purification layer 47 and discharged from the exhaust pipe 46, effectively avoiding the pollution of the surrounding working environment by the exhaust gas.

[0042] Example 2, please refer to Figures 6-7 , including Example 1, and on the basis of Example 1, the present invention provides a technical solution: A liquid medicine filter plate 53 is fixedly connected to the inner wall of the gas treatment tank 43, and the medicine tank 52 and the bottom of the gas treatment tank 43 are interconnected through a plastic pipe 54. By providing the liquid medicine filter plate 53 and the plastic pipe 54, the used liquid medicine in the gas treatment tank 43 can be filtered by using the liquid medicine filter plate 53, and the filtered liquid medicine can flow back into the medicine tank 52 through the plastic pipe 54, thus realizing the recycling of the liquid medicine and avoiding the waste of the liquid medicine.

[0043] Example 3, please refer to Figure 8, including Embodiment 1, and based on Embodiment 1, the present invention provides a technical solution: a serpentine pipe 55 is embedded in the back of the hot melt tank 16, and the upper end of the serpentine pipe 55 can be fixedly communicated with the input end of the circulation pump 41, and the lower end of the serpentine pipe 55 can be fixedly communicated with the water outlet pipe 40. By setting the serpentine pipe 55, by fixedly communicating the upper part of the serpentine pipe 55 with the input end of the circulation pump 41, and then fixedly communicating the lower end of the serpentine pipe 55 with the water outlet pipe 40, the sewage in the sewage collection tank 37 is filtered and then passes through the serpentine pipe 55 and is then input into the annular water supply pipe 6. This design can not only effectively utilize the waste heat dissipated by the hot melt tank 16 to preheat the water sprayed by the first nozzle 7, which is beneficial to the dissolution and shedding of dust and impurities on the surface of the waste silk, but also be more energy-saving and environmentally friendly.

[0044] Working principle: When the intelligent waste silk treatment device is in use, first, the collected waste silk is put in from the feeding channel 2. Using the waste silk cutting mechanism 3, the waste silk can be cut into small sections. After the waste silk is cut into sections, it will slide into the treatment tank 1. By setting the cleaning mechanism, the annular water supply pipe 6 is used to supply water to a plurality of first nozzles 7, and then the waste silk can be humidified by spraying water through the plurality of first nozzles 7. By storing water in the treatment tank 1 and then rotating the stirring assembly 8, the dust and impurities on the surface of the waste silk can be dissolved in the water. Cooperating with the operation of the ultrasonic generator 9 and the vibration of the vibration plate 10, the water stored in the treatment tank 1 can be vibrated at a high frequency, thereby further improving the removal effect of impurities and dust on the surface of the waste silk;

[0045] After the waste silk is cleaned, the solenoid valve 4 is opened. At this time, the sewage and impurities will pass through the mesh gate 26 and the filter screen 13 and be discharged into the sewage collection tank 37 from the waste discharge port 15 of the discharge channel 11. Then, the J-shaped hot air pipe 12 is controlled to rotate 180 degrees. When the right end opening of the J-shaped hot air pipe 12 faces upward, by operating the hot air blower 34, hot air is blown through the J-shaped hot air pipe 12 to the mesh gate 26. After the hot air passes through the mesh gate 26, the waste silk in the treatment tank 1 can float, and by rotating the stirring paddle 23, the waste silk can be air-dried;

[0046] After the waste silk is air-dried, the mesh gate 26 is opened, and the air-dried waste silk will fall into the discharge channel 11. At this time, the J-shaped hot air pipe 12 is controlled to rotate 180 degrees again. By blowing air through the J-shaped hot air pipe 12 to the discharge channel 11, it is beneficial for the waste silk in the discharge channel 11 to enter the hot melt tank 16, effectively avoiding the blockage of the waste silk in the discharge channel 11;

[0047] After the waste silk enters the hot melt tank 16, the hot melt tank 16 can be used to melt the cleaned waste silk to form chemical fiber liquid. Using the spiral extrusion wire-making mechanism 17, the melted chemical fiber liquid can be extruded to re-make chemical fiber filaments. The whole device realizes the cleaning, treatment and reuse of waste silk, effectively reducing the labor intensity of workers and improving work efficiency.

[0048] In the accompanying drawings of the disclosed embodiments of the present invention, only the structures related to the disclosed embodiments are involved. For other structures, reference may be made to the general design. Without conflict, the same embodiment and different embodiments of the present invention may be combined with each other;

[0049] Finally, the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. An intelligent waste silk processing device, comprising a processing tank (1), characterized in that: The left side of the processing tank (1) is provided with an upwardly inclined feed channel (2), a waste wire cutting mechanism (3) is provided on the feed channel (2), a solenoid valve (4) is provided at the lower end of the processing tank (1), a gate assembly (5) that can be opened and closed is provided at the lower end of the processing tank (1), a cleaning mechanism is provided inside the processing tank (1), the cleaning mechanism comprises an annular water supply pipe (6), a plurality of first nozzles (7), a stirring assembly (8), an ultrasonic generator (9) and a plurality of vibration plates (10), the annular water supply pipe (6) is fixedly connected to the top of the inner wall of the processing tank (1), the plurality of first nozzles (7) are arranged in an annular array on the lower surface of the annular water supply pipe (6), the plurality of vibration plates (10) are fixedly connected to the inner wall of the processing tank (1) in an annular array, the stirring assembly (8) is rotatably connected inside the processing tank (1), and the ultrasonic generator (9) is arranged on the front and rear sides of the processing tank (1); The lower end of the gate assembly (5) is provided with a downwardly inclined discharge channel (11), the upper inner wall of the discharge channel (11) is rotatably connected with a J-shaped hot air pipe (12), the inner wall of the discharge channel (11) is provided with a filter screen (13), the right end of the discharge channel (11) is provided with a discharge port (14) located on the upper side of the filter screen (13) and a debris discharge port (15) located on the lower side of the filter screen (13), a hot melt box (16) is provided on the right side of the discharge port (14), a spiral extrusion wire making mechanism (17) is provided inside the hot melt box (16), and an exhaust gas treatment mechanism (18) is provided on the upper surface of the hot melt box (16).

2. The intelligent waste silk processing device according to claim 1, characterized in that: The waste wire cutting mechanism (3) comprises an L-shaped support frame (19), two reciprocating push rods (20) and a cutter (21); the L-shaped support frame (19) is fixedly connected to the upper surface of the feed channel (2); the two reciprocating push rods (20) are fixedly connected to the lower surface of the L-shaped support frame (19); the cutter (21) is fixedly connected to the lower end of the reciprocating push rod (20), and the cutter (21) penetrates to the inner side of the feed channel (2).

3. The intelligent waste silk processing device according to claim 1, characterized in that: The stirring assembly (8) comprises a stirring motor (22), a stirring paddle (23) and a knocking rod (24); the stirring motor (22) is fixedly connected to the upper surface of the processing tank (1); the stirring paddle (23) is rotatably connected to the inner wall of the processing tank (1); the knocking rod (24) is fixedly connected to the surface of the stirring paddle (23); and the output end of the stirring motor (22) is fixedly connected to the stirring paddle (23).

4. The intelligent waste silk processing device according to claim 1, characterized in that: The gate assembly (5) comprises a limit frame (25) and a mesh gate (26); the limit frame (25) is fixedly connected between the processing tank (1) and the discharge channel (11); and the mesh gate (26) is slidably connected to the inner wall of the limit frame (25) via an adjustment mechanism.

5. The intelligent waste silk processing device according to claim 4, characterized in that: The adjusting mechanism comprises a servo motor (27), an adjusting lead screw (28) and a moving block (29); the servo motor (27) is fixedly connected to the side of the limit frame (25); the adjusting lead screw (28) is fixedly connected to the output end of the servo motor (27); the moving block (29) is fixedly connected to the side of the mesh gate (26); and the moving block (29) is threadedly connected to the adjusting lead screw (28).

6. The intelligent waste silk processing device according to claim 1, characterized in that: The lower surface of the processing tank (1) is fixedly connected to four supporting legs (30), the surface of the supporting legs (30) is fixedly connected to a transverse plate (31), the surface of the transverse plate (31) is fixedly connected to a fan bracket (32) and an electric telescopic rod (33), the upper end of the fan bracket (32) is fixedly connected to a hot air blower (34), and the output end of the hot air blower (34) is rotatably connected to the left end of the J-shaped hot air pipe (12), the outer surface of the J-shaped hot air pipe (12) is provided with a gear (35), and the upper end of the electric telescopic rod (33) is fixedly connected to a rack (36) meshing with the gear (35).

7. The intelligent waste silk processing device according to claim 1, characterized in that: A sewage collection box (37) is provided at the impurity discharge port (15), a sewage filter plate (38) is detachably mounted on the inner wall of the sewage collection box (37), an injection pipe (39) is provided on the side of the sewage collection box (37), a water outlet pipe (40) is provided on the rear surface of the sewage collection box (37), a circulation pump (41) is provided on the surface of the treatment tank (1), and an input end of the circulation pump (41) is fixedly connected to the water outlet pipe (40) through a pipeline, and an output end of the circulation pump (41) is fixedly connected to the annular water supply pipe (6).

8. The intelligent waste silk processing device according to claim 1, characterized in that: The waste gas treatment mechanism (18) comprises an air suction pump (42), a gas treatment box (43), a conical cover (44), a plurality of baffles (45), an exhaust pipe (46), a gas purification layer (47) and a spraying assembly. The conical cover (44) is fixedly connected to the inner wall of the gas treatment box (43), and a plurality of leakage holes (48) are opened on the surface of the conical cover (44). The air suction end of the air suction pump (42) extends to the inside of the hot melt box (16), and the exhaust end of the air suction pump (42) extends to the bottom of the conical cover (44). The plurality of baffles (45) are fixedly connected to the inner wall of the gas treatment box (43) in a left-right offset manner. The pipe (46) is arranged at the upper end of the gas treatment box (43), the gas purification layer (47) is detachably installed on the inner wall of the exhaust pipe (46), and the spraying assembly is arranged on the inner wall of the gas treatment box (43), and the spraying assembly includes a U-shaped pipe (49), a plurality of second nozzles (50), a medicine pump (51) and a medicine box (52), the U-shaped pipe (49) is fixedly connected to the inner wall of the gas treatment box (43), the plurality of second nozzles (50) are arranged on the surface of the U-shaped pipe (49), the input end of the medicine pump (51) extends to the interior of the medicine box (52), and the output end of the medicine pump (51) is fixedly connected to the U-shaped pipe (49).

9. The intelligent waste silk processing device according to claim 8, characterized in that: A liquid medicine filter plate (53) is fixedly connected to the inner wall of the gas treatment box (43), and the medicine box (52) and the bottom of the gas treatment box (43) are connected to each other through a plastic pipe (54).

10. The intelligent waste silk processing device according to claim 7, characterized in that: A serpentine tube (55) is embedded on the back of the hot melt box (16), and the upper end of the serpentine tube (55) can be fixedly connected to the input end of the circulation pump (41), and the lower end of the serpentine tube (55) can be fixedly connected to the water outlet pipe (40).