Nylon slice preparation device
By designing a hydraulically driven mixing and cleaning structure and combining it with materials such as polycarbonate and titanium dioxide, the problems of broken yarns and poor weather resistance of nylon chips during high-speed spinning were solved, efficient mixing and cleaning were achieved, and the performance and spinning efficiency of nylon chips were improved.
Patent Information
- Application Number
- CN202423275333.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing nylon chips are prone to broken fibers during high-speed spinning, and have poor weather resistance and tensile strength after processing. Residual mixture on the inner wall of the device affects subsequent processing.
A nylon chip preparation device was designed. The mixing and cleaning structures driven by a hydraulic device and a motor were used to achieve efficient mixing and cleaning of materials. Polycarbonate, titanium dioxide and other substances were added to improve the performance of nylon chips. High-quality cylindrical pellets were formed through a reactor and a pelletizer.
The weather resistance, tensile strength and thermal stability of nylon chips are improved, wire breakage is reduced, and processing efficiency and full winding rate are improved.
Smart Images

Figure CN223393432U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of nylon slice preparation, in particular to a nylon slice preparation device. Background Art
[0002] Currently, a trend in chemical fiber textile technology is to continuously increase spinning speeds. The spinning speed of nylon fiber, a key chemical fiber product, has increased from a few hundred meters per minute to several thousand meters per minute. This has significantly improved production efficiency and reduced unit costs. Furthermore, the fibers produced have high physical stability and are suitable for post-processing such as texturing, leading to their widespread adoption. However, high-speed spinning of nylon requires high raw material slices, whose viscosity, moisture content, and relative molecular weight distribution all affect the spinning process and fiber properties. Currently, nylon slices are prone to breakage during high-speed spinning, requiring manual processing, which reduces production efficiency and increases costs.
[0003] However, the existing device does not solve the problem that traditional nylon chips are prone to poor weather resistance and tensile strength after processing, and nylon chips are prone to broken wires during processing, thereby reducing processing efficiency. After the device mixes the materials, residues of the mixture will still remain on the inner wall, and these residues of the mixture will easily affect the subsequent mixing of materials. Therefore, we propose a new device to solve the above problems. Utility Model Content
[0004] (1) Technical problems solved
[0005] In view of the shortcomings of the existing technology, the utility model provides a nylon slice preparation device, which solves the problems that traditional nylon slices are prone to poor weather resistance and tensile strength after processing, and are prone to wire breakage during the processing.
[0006] (2) Technical solution
[0007] To achieve the above objectives, the utility model is implemented through the following technical solutions: a nylon slice preparation device comprises an equipment base plate, the upper surface of the equipment base plate is fixedly connected to a supply box, one side of the supply box is fixedly connected to a drive group, one side of the drive group is fixedly connected to a bracket, the interior of the bracket is fixedly connected to a fixed motor, one end of the fixed motor is plugged into a fixed plate, the interior of the fixed plate is fixedly connected to a cleaning motor, one end of the cleaning motor is plugged into a cleaning structure, the interior of the fixed plate is fixedly connected to a docking motor, one end of the docking motor is plugged into a mixing structure, one side of the equipment base plate is fixedly connected to a detergent box, one side of the detergent box is plugged into a water pump, one end of the water pump is plugged into a hose, the interior of the supply box is fixedly connected to a nozzle seat, a high-pressure nozzle is provided inside the nozzle seat, one side of the supply box is fixedly connected to a fixed valve, the upper surface of the equipment base plate is fixedly connected to a static box, one side of the static box is fixedly connected to the docking valve.
[0008] Optionally, the drive group includes a drive plate, a hydraulic device, a supply seat, a supply motor, and a supply plate. The upper surface of the drive plate is fixedly connected to the hydraulic device, the upper surface of the hydraulic device is fixedly connected to the supply seat, the interior of the supply seat is fixedly connected to the supply motor, and one end of the supply motor is plugged into the supply plate.
[0009] Optionally, a connecting strip is provided on one side of the supply plate, and a connecting hole is provided inside the supply seat, and the connecting hole is rotatably connected to the connecting strip.
[0010] Optionally, the fixed valve is located on one side of the supply box near the lower part, and the docking valve is located on one side of the static box near the upper part.
[0011] Optionally, the mixing structure is located on one side of the fixed plate, and the cleaning structure is located on the other side of the fixed plate.
[0012] Optionally, a water inlet hole is provided inside the supply box, and the hose is adapted to the nozzle seat by passing through the water inlet hole.
[0013] Optionally, a collection trough and a placement trough are provided on the upper surface of the bottom plate of the equipment from left to right, wherein the collection trough is located near the supply box, and the placement trough is located near the static box.
[0014] Optionally, a reactor is fixedly connected to the upper surface of the equipment base plate, and a pelletizer is fixedly connected to the upper surface of the equipment base plate. The reactor is located on the upper surface of the equipment base plate near the detergent tank, and the pelletizer is located on the upper surface of the equipment base plate away from the detergent tank.
[0015] In summary, the technical effects and advantages of the utility model are:
[0016] 1. The utility model has a reasonable structure. The polycarbonate, titanium dioxide, filler and cross-linking agent are placed in the supply box, the supply seat is moved upward by a hydraulic device, the supply plate is rotated by a supply motor, and the supply seat is moved downward by a hydraulic device, so that the bracket and the fixed plate are rotated to close the upper surface of the supply box. The mixing structure is rotated by a docking motor to mix the polycarbonate, titanium dioxide, filler and cross-linking agent to form a first mixed material. The detergent in the detergent box is discharged into the nozzle seat through a hose by a water pump. The inner wall of the supply box and the surface of the mixing structure are rinsed by a high-pressure nozzle. The supply seat is moved upward by a hydraulic device, and the supply motor is rotated. The supply plate is moved to rotate the bracket and the fixed plate to reset, and the supply seat is moved downward to reset by the hydraulic device. The fixed plate is rotated by the fixed motor to exchange the positions of the mixing structure and the cleaning structure. The supply seat is moved upward by the hydraulic device, and the supply plate is rotated by the supply motor. The supply seat is moved downward by the hydraulic device to rotate the bracket and the fixed plate to close the upper surface of the supply box. The cleaning motor rotates the cleaning structure to complete the scrubbing of the inner wall of the supply box. After scrubbing, the sewage is discharged through the fixed valve to complete the internal cleaning of the supply box, reducing the residue of the mixture on the inner wall after the device mixes the materials. The residue is likely to affect the situation where the subsequent mixing of materials is continued, so that after mixing the first mixed material in the supply box, the first material is removed, and the interior of the supply box is cleaned, pure water and caprolactam are put into the supply box, and the supply seat is moved upward by the hydraulic device, and the supply plate is rotated by the supply motor, and then the supply seat is moved downward by the hydraulic device, so that the bracket and the fixed plate are rotated to close the upper surface of the supply box, and the mixing structure is rotated by the docking motor to mix the first mixed material, pure water and caprolactam to form a dispersion of the first mixed material, and then the dispersion of the first mixed material is put into the still box and allowed to stand. After standing, By opening the docking valve, the upper suspension is discharged into the placement tank, and the caprolactam aqueous solution and the solution dissolved in the caprolactam aqueous solution are placed into the collection tank to form a regulator dispersion. By placing the toughening agent, light stabilizer, flame retardant and antioxidant into the supply box, the supply seat is moved upward by the hydraulic device, the supply plate is rotated by the supply motor, and then the supply seat is moved downward by the hydraulic device, and the bracket and the fixed plate are rotated to close the upper surface of the supply box. The mixing structure is rotated by the docking motor to mix the toughening agent, light stabilizer, flame retardant and antioxidant to form a second mixed material, and then the caprolactam aqueous solution is placed into the supply box to form a dispersion of the second mixed material.
[0017] 2. In the utility model, molten caprolactam, a first mixed material dispersion, a second mixed material dispersion and a regulator dispersion are placed in a reactor, and then the molten caprolactam, the first mixed material dispersion, the second mixed material dispersion and the regulator dispersion are reacted in the reactor to form a polymer solution, and then the polymer solution is cooled and placed in a pelletizer to be cut into cylindrical particles. This reduces the problems of poor weather resistance and tensile strength of traditional nylon chips after processing, as well as the problem of broken wires during processing, which reduces processing efficiency. The utility model uses caprolactam as a base material and adds polycarbonate and titanium dioxide at the same time. The addition of these two substances can enhance the weather resistance, tensile strength and thermal stability of the nylon chips. The nylon chips are modified by adding fillers, toughening agents, light stabilizers, crosslinking agents, flame retardants, antioxidants and regulators, which can play a good role in regulating the molecular weight. By changing the molecular weight distribution, the full roll rate of the nylon chips in the high-speed spinning process can be effectively improved, and the problem of broken wires is not easy to occur. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the structure of the utility model;
[0019] Figure 2 This is a schematic diagram of the explosion structure of the supply box of the utility model;
[0020] Figure 3 This is a schematic diagram of the structure of the drive plate of the utility model;
[0021] Figure 4 This is a schematic diagram of the explosion structure of the fixed plate of the utility model;
[0022] Figure 5 This is a schematic diagram of the explosion structure of the bottom plate of the equipment of this utility model.
[0023] In the figure: 1. Equipment base plate; 2. Supply box; 3. Drive group; 301. Drive plate; 302. Hydraulic device; 303. Supply seat; 304. Supply motor; 305. Supply plate; 4. Bracket; 5. Fixed motor; 6. Fixed plate; 7. Cleaning motor; 8. Cleaning structure; 9. Docking motor; 10. Mixing structure; 11. Detergent tank; 12. Water pump; 13. Hose; 14. Nozzle seat; 15. High-pressure nozzle; 16. Fixed valve; 17. Standing box; 18. Docking valve; 19. Reactor; 20. Pelletizer. DETAILED DESCRIPTION
[0024] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0025] Example: Reference Figure 1-Figure 5 The nylon slice preparation device shown includes an equipment base plate 1, a supply box 2 is fixedly connected to the upper surface of the equipment base plate 1, a drive group 3 is fixedly connected to one side of the supply box 2, a bracket 4 is fixedly connected to the inside of the bracket 4, a fixed motor 5 is fixedly connected to one end of the fixed motor 5, a fixed plate 6 is fixedly connected to the inside of the fixed plate 6, a cleaning motor 7 is fixedly connected to one end of the cleaning motor 7 is plugged into a cleaning structure 8, a docking motor 9 is fixedly connected to the inside of the fixed plate 6, and a mixing structure 10 is plugged into one end of the docking motor 9, a detergent box 11 is fixedly connected to one side of the detergent box 11, a water pump 12 is plugged into one side of the water pump 12, a hose 13 is plugged into one end of the water pump 12, a nozzle seat 14 is fixedly connected to the inside of the supply box 2, a high-pressure nozzle 15 is provided inside the nozzle seat 14, a fixed valve 16 is fixedly connected to one side of the supply box 2, a still box 17 is fixedly connected to the upper surface of the equipment base plate 1, and a docking valve 18 is fixedly connected to one side of the still box 17.
[0026] As a preferred implementation in this embodiment, Figures 1-4As shown, the upper surface of the equipment base plate 1 is fixedly connected to the supply box 2, and one side of the supply box 2 is fixedly connected to the driving group 3, and the driving group 3 includes a driving plate 301, a hydraulic device 302, a supply seat 303, a supply motor 304, and a supply plate 305. The upper surface of the driving plate 301 is fixedly connected to the hydraulic device 302, and the upper surface of the hydraulic device 302 is fixedly connected to the supply seat 303. The supply seat 303 is internally fixedly connected to the supply motor 304, and one end of the supply motor 304 is plugged with the supply plate 305. A connecting strip is provided on one side of the supply plate 305, and a connecting hole is provided inside the supply seat 303. The connecting hole is rotatably connected to the connecting strip. A bracket 4 is fixedly connected to one side of the driving group 3, and the bracket 4 is internally fixedly connected to the fixed motor 5. One end of the motor 5 is plugged with a fixed plate 6, and a cleaning motor 7 is fixedly connected to the inside of the fixed plate 6. One end of the cleaning motor 7 is plugged with a cleaning structure 8. The inside of the fixed plate 6 is fixedly connected to a docking motor 9, and one end of the docking motor 9 is plugged with a mixing structure 10. The mixing structure 10 is located on one side of the fixed plate 6, and the cleaning structure 8 is located on the other side of the fixed plate 6. A detergent tank 11 is fixedly connected to one side of the detergent tank 11, and a water pump 12 is plugged into one end of the water pump 12. A hose 13 is plugged into the inside of the water pump 12. A nozzle seat 14 is fixedly connected to the inside of the supply box 2. A water inlet hole is provided inside the supply box 2. The hose 13 is adapted to the nozzle seat 14 by passing through the water inlet hole. A high-pressure nozzle 15 is provided inside the nozzle seat 14. One side of the supply box 2 is fixedly connected A fixed valve 16 is connected, and a still box 17 is fixedly connected to the upper surface of the equipment base plate 1. A collection tank and a placement tank are sequentially provided on the upper surface of the equipment base plate 1 from left to right. The collection tank is located near the supply box 2, and the placement tank is located near the still box 17. A docking valve 18 is fixedly connected to one side of the still box 17. The fixed valve 16 is located near the lower part of one side of the supply box 2, and the docking valve 18 is located near the upper part of one side of the still box 17. During use, polycarbonate, titanium dioxide, filler and cross-linking agent are placed into the supply box 2, the supply seat 303 is moved upward by the hydraulic device 302, the supply plate 305 is rotated by the supply motor 304, and the supply seat 303 is moved downward by the hydraulic device 302. The bracket 4 and the fixed plate 6 rotate to close the upper surface of the supply box 2, and the mixing structure 10 is rotated by the docking motor 9 to mix the polycarbonate, titanium dioxide, filler and cross-linking agent to form a first mixed material. The detergent inside the detergent box 11 is discharged into the nozzle seat 14 through the hose 13 by the water pump 12, and the inner wall of the supply box 2 and the surface of the mixing structure 10 are rinsed by the high-pressure nozzle 15. The supply seat 303 is moved upward by the hydraulic device 302, and the supply plate 305 is rotated by the supply motor 304 to rotate the bracket 4 and the fixed plate 6 to reset. The supply seat 303 is then moved downward by the hydraulic device 302 to reset, and the fixed plate 6 is rotated by the fixed motor 5 to swap the positions of the mixing structure 10 and the cleaning structure 8.The supply seat 303 is moved upward by the hydraulic device 302, the supply plate 305 is rotated by the supply motor 304, and the supply seat 303 is moved downward by the hydraulic device 302, so that the bracket 4 and the fixed plate 6 are rotated to close the upper surface of the supply box 2, and the cleaning structure 8 is rotated by the cleaning motor 7 to complete the scrubbing of the inner wall of the supply box 2. After scrubbing, the sewage is discharged through the fixed valve 16 to complete the internal cleaning of the supply box 2, thereby reducing the situation where the device still has residues of the mixture on the inner wall after mixing the materials, and these residues of the mixture are easy to affect the subsequent mixing of materials, so that the first material can be removed after mixing the first mixed material in the supply box 2, and the interior of the supply box 2 is cleaned. Pure water and caprolactam are put into the supply box 2, the supply seat 303 is moved upward by the hydraulic device 302, the supply plate 305 is rotated by the supply motor 304, and the supply seat 303 is moved downward by the hydraulic device 302, so that the bracket 4 and the fixed plate 6 are rotated to close the upper surface of the supply box 2. The upper surface of the box 2 is closed, and the mixing structure 10 is rotated by the docking motor 9 to mix the first mixed material, pure water, and caprolactam to form a dispersion of the first mixed material. The dispersion of the first mixed material is then placed into the still box 17 and allowed to stand. After standing, the docking valve 18 is opened to discharge the upper suspension into the placement tank. The caprolactam aqueous solution and the solution dissolved in the caprolactam aqueous solution are placed into the collection tank to form a dispersion of the regulator. The toughening agent, light stabilizer, flame retardant, and antioxidant are placed into the supply box 2. The supply seat 303 is moved upward by the hydraulic device 302, and the supply plate 305 is rotated by the supply motor 304. The supply seat 303 is then moved downward by the hydraulic device 302, rotating the bracket 4 and the fixed plate 6 to close the upper surface of the supply box 2. The mixing structure 10 is rotated by the docking motor 9 to mix the toughening agent, light stabilizer, flame retardant, and antioxidant to form a second mixed material. The caprolactam aqueous solution is then placed into the supply box 2 to form a dispersion of the second mixed material.
[0027] like Figure 5As shown, in this embodiment, a reactor 19 is fixedly connected to the upper surface of the equipment base plate 1, and a pelletizer 20 is fixedly connected to the upper surface of the equipment base plate 1. The reactor 19 is located on the upper surface of the equipment base plate 1 near the detergent tank 11, and the pelletizer 20 is located on the upper surface of the equipment base plate 1 away from the detergent tank 11. During use, caprolactam melt, the first mixed material dispersion, the second mixed material dispersion and the regulator dispersion are placed in the reactor 19, and then the caprolactam melt, the first mixed material dispersion, the second mixed material dispersion and the regulator dispersion are reacted in the reactor 19 to form a polymer solution, and then the polymer solution is cooled and then placed in the pelletizer 20. Cutting it into cylindrical particles reduces the problems of poor weather resistance and tensile resistance of traditional nylon chips after processing, as well as the problem of broken wires during processing, which reduces processing efficiency. By using caprolactam as the base material and adding polycarbonate and titanium dioxide, the weather resistance, tensile strength and thermal stability of the nylon chips can be enhanced. The nylon chips are modified by adding fillers, toughening agents, light stabilizers, cross-linking agents, flame retardants, antioxidants and regulators, which can play a good role in regulating molecular weight. By changing the molecular weight distribution, the full roll rate of the nylon chips in the high-speed spinning process can be effectively improved, and the problem of broken wires is not easy to occur.
[0028] This utility works as follows:
[0029] During use, polycarbonate, titanium dioxide, filler and cross-linking agent are placed in the supply box 2, the supply seat 303 is moved upward by the hydraulic device 302, the supply plate 305 is rotated by the supply motor 304, and the supply seat 303 is moved downward by the hydraulic device 302, so that the bracket 4 and the fixing plate 6 are rotated to close the upper surface of the supply box 2, and the mixing structure 10 is rotated by the docking motor 9 to mix the polycarbonate, titanium dioxide, filler and cross-linking agent to form a first mixed material, and the detergent in the detergent box 11 is discharged into the nozzle seat 14 through the hose 13 by the water pump 12, and the inner wall of the supply box 2 and the surface of the mixing structure 10 are rinsed by the high-pressure nozzle 15, and the supply is made to The feeding seat 303 moves upward, and the feeding plate 305 is rotated by the feeding motor 304 to rotate the bracket 4 and the fixed plate 6 to reset, and then the feeding seat 303 is moved downward to reset by the hydraulic device 302, and the fixed plate 6 is rotated by the fixed motor 5 to swap the positions of the mixing structure 10 and the cleaning structure 8, and the feeding seat 303 is moved upward by the hydraulic device 302, and the feeding plate 305 is rotated by the feeding motor 304, and then the feeding seat 303 is moved downward by the hydraulic device 302 to rotate the bracket 4 and the fixed plate 6 to close the upper surface of the supply box 2, and the cleaning structure 8 is rotated by the cleaning motor 7 to complete the scrubbing of the inner wall of the supply box 2. After scrubbing, the sewage is discharged through the fixed valve 16 to complete the cleaning of the supply box. 2, pure water and caprolactam are placed in the supply box 2, the supply seat 303 is moved upward by the hydraulic device 302, the supply plate 305 is rotated by the supply motor 304, and the supply seat 303 is moved downward by the hydraulic device 302, so that the bracket 4 and the fixed plate 6 are rotated to close the upper surface of the supply box 2, and the mixing structure 10 is rotated by the docking motor 9 to mix the first mixed material, pure water and caprolactam to form a dispersion of the first mixed material, and then the dispersion of the first mixed material is placed in the still box 17 and allowed to stand. After standing, the upper suspension is discharged into the placement tank by opening the docking valve 18, and the caprolactam aqueous solution and the aqueous solution dissolved in caprolactam are placed in the collecting tank to form a dispersion of the first mixed material. A regulator dispersion is formed by placing a toughening agent, a light stabilizer, a flame retardant and an antioxidant into the supply box 2, moving the supply seat 303 upward by the hydraulic device 302, rotating the supply plate 305 by the supply motor 304, and then moving the supply seat 303 downward by the hydraulic device 302, rotating the bracket 4 and the fixing plate 6 to close the upper surface of the supply box 2, rotating the mixing structure 10 by the docking motor 9, mixing the toughening agent, the light stabilizer, the flame retardant and the antioxidant to form a second mixed material, and then placing a caprolactam aqueous solution into the supply box 2 to form a dispersion of the second mixed material, and placing caprolactam melt, the first mixed material dispersion, the second mixed material dispersion and the regulator dispersion into the reactor 19.Then, the caprolactam melt, the first mixed material dispersion, the second mixed material dispersion and the regulator dispersion are reacted in the reactor 19 to form a polymer solution, which is then cooled and placed in a pelletizer 20 to be cut into cylindrical pellets.
[0030] The electrical components mentioned in this article are all connected to an external main controller and 220V AC power, and the main controller can be a conventional known device that performs control such as a computer.
[0031] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A nylon chip preparation device, comprising a device base plate (1), characterized in that: The upper surface of the equipment bottom plate (1) is fixedly connected to a supply box (2), one side of the supply box (2) is fixedly connected to a drive group (3), one side of the drive group (3) is fixedly connected to a bracket (4), the interior of the bracket (4) is fixedly connected to a fixed motor (5), one end of the fixed motor (5) is plugged into a fixed plate (6), the interior of the fixed plate (6) is fixedly connected to a cleaning motor (7), one end of the cleaning motor (7) is plugged into a cleaning structure (8), the interior of the fixed plate (6) is fixedly connected to a docking motor (9), one end of the docking motor (9) is plugged into a mixing structure (9). The combined structure (10) comprises a detergent box (11) fixedly connected to one side of the equipment base plate (1), a water pump (12) plugged into one side of the detergent box (11), a hose (13) plugged into one end of the water pump (12), a nozzle seat (14) fixedly connected to the interior of the supply box (2), a high-pressure nozzle (15) provided inside the nozzle seat (14), a fixed valve (16) fixedly connected to one side of the supply box (2), a stationary box (17) fixedly connected to the upper surface of the equipment base plate (1), and a docking valve (18) fixedly connected to one side of the stationary box (17).
2. The nylon slice preparation device according to claim 1, characterized in that: The driving group (3) comprises a driving plate (301), a hydraulic device (302), a supply seat (303), a supply motor (304), and a supply plate (305). The upper surface of the driving plate (301) is fixedly connected to the hydraulic device (302), the upper surface of the hydraulic device (302) is fixedly connected to the supply seat (303), the interior of the supply seat (303) is fixedly connected to the supply motor (304), and one end of the supply motor (304) is plugged into the supply plate (305).
3. The nylon slice preparation device according to claim 2, characterized in that: A connecting strip is provided on one side of the supply plate (305), and a connecting hole is provided inside the supply seat (303), wherein the connecting hole is rotatably connected to the connecting strip.
4. The nylon slice preparation device according to claim 1, characterized in that: The fixed valve (16) is located on one side of the supply box (2) near the lower part, and the docking valve (18) is located on one side of the static box (17) near the upper part.
5. The nylon slice preparation device according to claim 1, characterized in that: The mixing structure (10) is located on one side of the fixed plate (6), and the cleaning structure (8) is located on the other side of the fixed plate (6).
6. The nylon slice preparation device according to claim 1, characterized in that: A water inlet hole is provided inside the supply box (2), and the hose (13) is adapted to the nozzle seat (14) by passing through the water inlet hole.
7. The nylon slice preparation device according to claim 1, characterized in that: The upper surface of the equipment bottom plate (1) is provided with a collecting trough and a placing trough in sequence from left to right. The collecting trough is located near the supply box (2), and the placing trough is located near the static box (17).
8. The nylon slice preparation device according to claim 1, characterized in that: A reactor (19) is fixedly connected to the upper surface of the equipment base plate (1), and a pelletizer (20) is fixedly connected to the upper surface of the equipment base plate (1). The reactor (19) is located on the upper surface of the equipment base plate (1) close to the detergent tank (11), and the pelletizer (20) is located on the upper surface of the equipment base plate (1) away from the detergent tank (11).