Environment-friendly chloride-free compounding device for wool fibers
By designing an environmentally friendly chlorine-free composite device, the problem of long-term production, precipitation and drying of harmful substances in wool fiber processing is solved, and rapid cleaning and drying is achieved, improving the quality and working efficiency of wool fibers.
Patent Information
- Application Number
- CN202422938977.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The existing equipment cannot avoid the production of harmful substances during the processing of wool fibers, resulting in precipitation and flocs, inconvenient cleaning, long drying time, and inability to preheat, which increases operating costs.
An environmentally friendly chlorine-free composite device is designed, including conveying, soaking, cleaning and drying components. The roller is driven by a motor to rotate, heat and stir and drying fan to achieve harmless treatment of wool fibers, rapid cleaning and drying.
It reduces the generation of harmful substances, prevents precipitation and residues, improves cleaning efficiency, shortens drying time, reduces operating costs, and improves the quality and working efficiency of wool fibers.
Smart Images

Figure CN223176263U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wool fibers, in particular to an environment-friendly chlorine-free composite device for wool fibers. Background Art
[0002] Wool fiber is a deformation of a sheep's skin, with excellent warmth retention properties and is mostly used in autumn and winter clothing, but it is extremely vulnerable to moth damage. The main wool fiber for textile use is sheep wool, usually called wool, or wool fiber, or simply wool for short. Wool fiber has an irregular crimp. The molecule of wool fiber is a peptide chain helix macromolecule composed of α-amino acids. There are disulfide bonds, salt bonds, and hydrogen bonds between and within molecules to keep the peptide chain in a stable spatial configuration. When treated under specific conditions, the molecular shape can change from α-helix to β-sheet, weakening the α-helix to straighten and fix it, achieving the purpose of elongation and thinning.
[0003] However, existing equipment cannot avoid generating harmful substances during the processing of wool fibers, which affects the environment and people's health and is not environmentally friendly. It cannot stir the soaking solution, resulting in precipitation and flocculation. It cannot quickly and conveniently clean the wool fibers, affecting the texture of the wool fibers. It cannot quickly dry the wool fibers, increasing the drying time. It cannot preheat the newly entered wool, increasing the operating cost of the equipment. Therefore, we propose a new device to solve the above problems. Summary of the Utility Model
[0004] (I) Technical Problems to be Solved
[0005] In view of the deficiencies of the prior art, the utility model provides an environment-friendly chlorine-free composite device for wool fibers, which solves the problems that harmful substances cannot be avoided during the processing of wool fibers, the soaking solution cannot be stirred, resulting in precipitation and flocculation, the wool fibers cannot be quickly and conveniently cleaned, the wool fibers cannot be quickly dried, and the newly entered wool cannot be preheated.
[0006] (II) Technical Solutions
[0007] To achieve the above objectives, the utility model is realized through the following technical solutions: An environment-friendly chlorine-free composite device for wool fibers, including a bottom plate. A conveying component is inserted on the upper surface of the bottom plate. A soaking component is inserted on the upper surface of the bottom plate. A cleaning component is inserted on the upper surface of the bottom plate. A cleaning water pipe is inserted on the upper surface of the bottom plate. A spray head is inserted on the lower surface of the cleaning water pipe. One end of the cleaning water pipe is inserted with a water pump. One end of the water pump is sleeved with a water tank. A leakage plate is clamped inside the bottom plate. A collection box is inserted on the lower surface of the bottom plate. A drying component is inserted on the upper surface of the bottom plate. An air duct is inserted on one side of the drying component.
[0008] Optionally, the conveying assembly includes a conveying seat, a driven roller, a conveying hydraulic rod, a docking seat, a conveying motor, and a driving roller. A driven roller is rotatably connected inside the conveying seat. A conveying hydraulic rod is inserted into the conveying seat. A docking seat is sleeved on the upper surface of the conveying hydraulic rod. A conveying motor is inserted into the docking seat. One end of the conveying motor is sleeved with a driving roller.
[0009] Optionally, the conveying assemblies are sequentially arranged on the upper surface of the bottom plate from left to right, and the number of the conveying assemblies is two.
[0010] Optionally, the soaking assembly includes a soaking tank, a heating plate, a soaking roller, a soaking motor, and a stirring shaft. A heating plate is inserted into the inner bottom of the soaking tank. A soaking roller is rotatably connected to the inner side wall of the soaking tank. A soaking motor is inserted into one side of the soaking tank. One end of the soaking motor is sleeved with a stirring shaft.
[0011] Optionally, the cleaning assembly includes a cleaning hydraulic rod, a cleaning seat, a cleaning motor, and a cleaning rod. A cleaning seat is sleeved on the upper surface of the cleaning hydraulic rod. A cleaning motor is inserted into the cleaning seat. One end of the cleaning motor is sleeved with a cleaning rod.
[0012] Optionally, the drying assembly includes a drying box, a drying fan, a waste heat fan, a heating wire, and a heat dissipation plate. A drying fan is clamped inside the drying box. A waste heat fan is inserted into the inner side wall of the drying box. A heating wire is inserted into the inner side wall of the drying box. A heat dissipation plate is inserted into the upper surface of the drying box.
[0013] Optionally, a water outlet pipe is arranged on one side of the collection box. Air outlet holes are formed on the lower surface of the air duct. A plurality of water outlet holes are formed on the lower surface of the spray head. The number of the spray heads is three. A water inlet pipe is arranged on the upper surface of the water tank.
[0014] Optionally, a guiding roller is rotatably connected to one side of the bottom plate, and a guiding roller is rotatably connected to the other side of the bottom plate.
[0015] In summary, the technical effects and advantages of the present utility model are as follows:
[0016] 1. The structure of the utility model is reasonable. The wool fibers are introduced into the equipment through the guiding roller on one side of the bottom plate. The driving roller is driven to rotate by the conveying motor, so that the driven roller also rotates, and the wool fibers pass between the driving roller and the driven roller. The distance between the docking seat and the conveying seat is adjusted by the conveying hydraulic rod. The soaking liquid is added into the soaking tank, and the soaking liquid is heated to a suitable temperature by the heating plate. The stirring shaft is driven to rotate by the soaking motor to stir the soaking liquid in the soaking tank. The wool fibers enter the soaking tank, and the wool fibers bypass the lower surface of the soaking roller to perform composite coating on the wool fibers. The used soaking liquid can be discharged through the water outlet pipe on one side of the soaking tank, and new soaking liquid is added, reducing the generation of toxic substances during the processing of wool fibers, which may harm the environment and affect the physical and mental health of the staff. The soaking liquid cannot be well coated on the wool fibers, so the stirring shaft is used to stir to prevent the soaking liquid from precipitating and forming floccules. After being coated with the soaking liquid, the stretchability is better, the fiber smoothness is higher, and the skin-friendly property is better, improving the product quality. The semi-cured wool fibers after soaking continue to move forward. Water is added into the water tank through the water inlet pipe on the upper surface of the water tank. The water is pumped up along the cleaning water pipe by the water pump and sprayed onto the wool fibers from the water outlet holes on the lower surface of the nozzle. The distance between the cleaning seat and the bottom plate is controlled by the cleaning hydraulic rod. The cleaning rod is driven to rotate by the cleaning motor to clean the moving wool fibers, reducing the attachment of excess residues on the surface of the wool fibers after soaking, which is inconvenient for cleaning, affects the subsequent processing and use of the wool fibers, and may affect the hand feeling and texture. Therefore, by cleaning the wool fibers, it is ensured that the wool fibers can remain clean after compounding without damaging the wool fibers. The cleaning water will flow into the collection box through the leakage plate and be discharged through the water outlet pipe on one side of the collection box.
[0017] 2. In the present utility model, the driving motor drives the driving roller to rotate, causing the driven roller to rotate accordingly, enabling the wool fibers to pass between the driving roller and the driven roller. The distance between the docking seat and the conveying seat is adjusted by the conveying hydraulic rod, making the rear conveying assembly rotate faster than the front conveying assembly to stretch the wool fibers. The heating wire inside the drying box is used for heating, and the hot air is blown onto the wool fibers by the drying blower to dry the wool fibers. This reduces the situation where the wool fibers are placed and stored without being dried, which may reduce the storage time of the wool fibers, is not convenient for quickly and comprehensively drying the wool fibers, and affects the texture of the wool fibers. Therefore, the drying assembly is used to dry the wool fibers, improving the work efficiency. The hot air is blown into the air duct by the waste heat blower, and the waste heat blower blows the hot air onto the wool fibers just entering the equipment through the air outlet holes of the air duct, reducing the situation where the wool fibers cannot fully adhere to the soaking liquid during soaking and increasing the operating cost of the equipment. Therefore, preheating the wool fibers enables the wool fibers to be better compounded, reducing the work cost and shortening the drying time. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of the present utility model;
[0019] Figure 2 is an exploded schematic diagram of the bottom plate structure of the present utility model;
[0020] Figure 3 is an exploded schematic diagram of the conveying assembly structure of the present utility model;
[0021] Figure 4 is an exploded schematic diagram of the soaking assembly structure of the present utility model;
[0022] Figure 5 is an exploded schematic diagram of the cleaning assembly structure of the present utility model;
[0023] Figure 6 is an exploded schematic diagram of the cleaning water pipe structure of the present utility model;
[0024] Figure 7 is an exploded schematic diagram of the air duct structure of the present utility model;
[0025] Figure 8 is an exploded schematic diagram of the drying assembly structure of the present utility model.
[0026] In the figure: 1. Bottom plate; 2. Conveyor assembly; 201. Conveyor seat; 202. Driven roller; 203. Conveyor hydraulic rod; 204. Docking seat; 205. Conveyor motor; 206. Driving roller; 3. Soaking assembly; 301. Soaking tank; 302. Heating plate; 303. Soaking roller; 304. Soaking motor; 305. Stirring shaft; 4. Cleaning assembly; 401. Cleaning hydraulic rod; 402. Cleaning seat; 403. Cleaning motor; 404. Cleaning rod; 5. Cleaning water pipe; 6. Sprinkler head; 7. Water pump; 8. Water tank; 9. Perforated plate; 10. Collection box; 11. Drying assembly; 1101. Drying box; 1102. Drying fan; 1103. Waste heat fan; 1104. Heating wire; 1105. Heat dissipation plate; 12. Air duct. Detailed implementation manners
[0027] 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.
[0028] Embodiment: Refer to Figures 1 - 8 An environmentally friendly chlorine-free composite device for wool fibers shown in the figure, which includes a bottom plate 1, a conveyor assembly 2 is inserted on the upper surface of the bottom plate 1, a soaking assembly 3 is inserted on the upper surface of the bottom plate 1, a cleaning assembly 4 is inserted on the upper surface of the bottom plate 1, a cleaning water pipe 5 is inserted on the upper surface of the bottom plate 1, a sprinkler head 6 is inserted on the lower surface of the cleaning water pipe 5, one end of the cleaning water pipe 5 is inserted with a water pump 7, one end of the water pump 7 is sleeved with a water tank 8, a perforated plate 9 is clamped inside the bottom plate 1, a collection box 10 is inserted on the lower surface of the bottom plate 1, a drying assembly 11 is inserted on the upper surface of the bottom plate 1, and an air duct 12 is inserted on one side of the drying assembly 11.
[0029] As a preferred implementation manner in this embodiment, as Figures 2 to 6As shown in the figure, a conveying component 2 is inserted on the upper surface of the bottom plate 1. The conveying component 2 includes a conveying seat 201, a driven roller 202, a conveying hydraulic rod 203, a docking seat 204, a conveying motor 205 and a driving roller 206. A driven roller 202 is rotatably connected inside the conveying seat 201. A conveying hydraulic rod 203 is inserted inside the conveying seat 201. A docking seat 204 is sleeved on the upper surface of the conveying hydraulic rod 203. A conveying motor 205 is inserted inside the docking seat 204. A driving roller 206 is sleeved at one end of the conveying motor 205. Conveying components 2 are arranged on the upper surface of the bottom plate 1 in sequence from left to right. The number of the conveying components 2 is two. An immersion component 3 is inserted on the upper surface of the bottom plate 1. The immersion component 3 includes an immersion tank 301, a heating plate 302, an immersion roller 303, an immersion motor 304 and a stirring shaft 305. A heating plate 302 is inserted at the inner bottom of the immersion tank 301. An immersion roller 303 is rotatably connected to the inner side wall of the immersion tank 301. A water outlet pipe is arranged on one side of the immersion tank 301. An immersion motor 304 is inserted on one side of the immersion tank 301. A stirring shaft 305 is sleeved at one end of the immersion motor 304. A cleaning component 4 is inserted on the upper surface of the bottom plate 1. The cleaning component 4 includes a cleaning hydraulic rod 401, a cleaning seat 402, a cleaning motor 403 and a cleaning rod 404. A cleaning seat 402 is sleeved on the upper surface of the cleaning hydraulic rod 401. A cleaning motor 403 is inserted inside the cleaning seat 402. A cleaning rod 404 is sleeved at one end of the cleaning motor 403. A cleaning water pipe 5 is inserted on the upper surface of the bottom plate 1. A spray head 6 is inserted on the lower surface of the cleaning water pipe 5. A plurality of water outlet holes are opened on the lower surface of the spray head 6. The number of the spray heads 6 is three. A water pump 7 is inserted at one end of the cleaning water pipe 5. A water tank 8 is sleeved at one end of the water pump 7. A water inlet pipe is arranged on the upper surface of the water tank 8. A leakage plate 9 is clamped inside the bottom plate 1. A collection box 10 is inserted on the lower surface of the bottom plate 1. A water outlet pipe is arranged on one side of the collection box 10. An inlet roller is rotatably connected to one side of the bottom plate 1. During the use process, the wool fibers are introduced into the equipment through the inlet roller on one side of the bottom plate 1. The driving roller 206 is driven to rotate by the conveying motor 205, so that the driven roller 202 also rotates, and the wool fibers pass between the driving roller 206 and the driven roller 202. The distance between the docking seat 204 and the conveying seat 201 is adjusted by the conveying hydraulic rod 203. An immersion liquid is added into the immersion tank 301. The immersion liquid is a milk protein fiber spinning dope. The preparation process of the milk protein fiber includes dehydrating, defatting, degreasing, separating and purifying the milk to obtain casein, and then blending, cross-linking and grafting it with polyacrylonitrile or polyvinyl alcohol to prepare the spinning dope. The immersion liquid is heated to a suitable temperature by the heating plate 302. The stirring shaft 305 is driven to rotate by the immersion motor 304 to stir the immersion liquid in the immersion tank 301. The wool fibers enter into the immersion tank 301. The wool fibers bypass the lower surface of the immersion roller 303 to perform composite coating on the wool fibers. The used immersion liquid can be discharged through the water outlet pipe on one side of the immersion tank 301.When adding a new soaking solution, it reduces the generation of toxic substances by wool fibers during processing, which can harm the environment and affect the physical and mental health of workers. The soaking solution cannot be well coated on the wool fibers. Therefore, stirring is carried out through the stirring shaft 305 to prevent flocculation after the soaking solution precipitates. After being coated with the soaking solution, the stretchability is better, the fiber smoothness is higher, and the skin-friendliness is better, improving the product quality. The semi-cured wool fibers after soaking continue to move forward. Water is added into the water tank 8 through the water inlet pipe on the upper surface of the water tank 8. The water is pumped up along the cleaning water pipe 5 by the water pump 7 and sprayed onto the wool fibers from the water outlet holes on the lower surface of the spray head 6. The distance between the cleaning seat 402 and the bottom plate 1 is controlled by the cleaning hydraulic rod 401. The cleaning rod 404 is driven by the cleaning motor 403 to clean the moving wool fibers, reducing the attachment of excess residues on the surface of the wool fibers after soaking, which is not convenient for cleaning and affects the subsequent processing and use of the wool fibers, and may affect the hand feeling and texture. Therefore, by cleaning the wool fibers, it is ensured that the wool fibers can remain clean after lamination without damaging the wool fibers. The cleaning water will flow into the collection box 10 through the leakage plate 9 and be discharged through the water outlet pipe on one side of the collection box 10.,
[0030] Such as Figures 7 to 8As shown in the figure, in this embodiment, a drying component 11 is inserted into the upper surface of the bottom plate 1. The drying component 11 includes a drying box 1101, a drying fan 1102, a waste heat fan 1103, a heating wire 1104 and a heat dissipation plate 1105. The drying fan 1102 is clamped inside the drying box 1101, the waste heat fan 1103 is inserted into the inner side wall of the drying box 1101, the heating wire 1104 is inserted into the inner side wall of the drying box 1101, and the heat dissipation plate 1105 is inserted into the upper surface of the drying box 1101. A wind duct 12 is inserted into one side of the drying component 11. An air outlet hole is opened on the lower surface of the wind duct 12. A guiding roller is rotatably connected to the other side of the bottom plate 1. During the use process, the driving roller 206 is driven to rotate by the conveying motor 205, so that the driven roller 202 also rotates, and the wool fibers pass between the driving roller 206 and the driven roller 202. The distance between the docking seat 204 and the conveying seat 201 is adjusted by the conveying hydraulic rod 203, so that the rear conveying component 2 rotates faster than the front conveying component 2, and the wool fibers are stretched. The heating wire 1104 inside the drying box 1101 is used for heating, and the hot air is blown onto the wool fibers by the drying fan 1102 to dry the wool fibers. It reduces the situation that the wool fibers are placed and stored without being dried, which may reduce the storage time of the wool fibers, is not convenient for quickly and comprehensively drying the wool fibers, and affects the texture of the wool fibers. Therefore, the drying component 11 is used to dry the wool fibers, improving the work efficiency. The waste heat fan 1103 blows the hot air into the wind duct 12, and the waste heat fan 1103 blows the hot air onto the wool fibers just entering the equipment through the air outlet hole of the wind duct 12, reducing the situation that the wool fibers cannot be completely attached to the soaking liquid during soaking, increasing the operation cost of the equipment. Therefore, by preheating the wool fibers, the wool fibers are better compounded, reducing the work cost and shortening the drying time.
[0031] The working principle of this utility model:
[0032] During use, wool fibers are introduced into the device through the inlet roller on one side of the bottom plate 1. The driving roller 206 is driven to rotate by the conveying motor 205, causing the driven roller 202 to rotate as well, enabling the wool fibers to pass between the driving roller 206 and the driven roller 202. The distance between the docking seat 204 and the conveying seat 201 is adjusted by the conveying hydraulic rod 203. The soaking liquid is added to the soaking tank 301, and the soaking liquid is heated to an appropriate temperature by the heating plate 302. The stirring shaft 305 is driven to rotate by the soaking motor 304 to stir the soaking liquid in the soaking tank 301. The wool fibers enter the soaking tank 301 and bypass the lower surface of the soaking roller 303 for composite coating of the wool fibers. The used soaking liquid can be discharged through the water outlet pipe on one side of the soaking tank 301, and new soaking liquid is added. The semi-cured wool fibers after soaking continue to move forward. Water is added into the water tank 8 through the water inlet pipe on the upper surface of the water tank 8. The water is pumped up along the cleaning water pipe 5 by the water pump 7 and sprayed onto the wool fibers from the water outlet holes on the lower surface of the nozzle 6. The distance between the cleaning seat 402 and the bottom plate 1 is controlled by the cleaning hydraulic rod 401. The cleaning rod 404 is driven to rotate by the cleaning motor 403 to clean the moving wool fibers, reducing the situation that after soaking, there are excess residues adhering to the surface of the wool fibers, which is inconvenient for cleaning, affects the subsequent processing and use of the wool fibers, and may affect the hand feeling and texture. The cleaning water will flow into the collection box 10 through the leakage plate 9 and be discharged through the water outlet pipe on one side of the collection box 10. The wool fibers continue to move into the conveying component 2. The driving roller 206 is driven to rotate by the conveying motor 205, causing the driven roller 202 to rotate as well, enabling the wool fibers to pass between the driving roller 206 and the driven roller 202. The distance between the docking seat 204 and the conveying seat 201 is adjusted by the conveying hydraulic rod 203, making the rear conveying component 2 rotate faster than the front conveying component 2 to stretch the wool fibers. The heating wire 1104 inside the drying box 1101 is used for heating, and the hot air is blown onto the wool fibers by the drying fan 1102 for drying the wool fibers, reducing the situation that the wool fibers are placed and stored without being dried, which may reduce the storage time of the wool fibers, is inconvenient for quickly and comprehensively drying the wool fibers, and affects the texture of the wool fibers. The hot air is blown into the air duct 12 by the waste heat fan 1103, and the waste heat fan 1103 blows the hot air onto the wool fibers just entering the device through the air outlet holes of the air duct 12, reducing the situation that the wool fibers cannot fully adhere to the soaking liquid during soaking and increasing the operating cost of the device.
[0033] All the electrical components mentioned in this article are electrically connected to the external main controller and the 220V mains electricity, and the main controller can be a conventional known device such as a computer for control.
[0034] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. An environmentally friendly chlorine-free composite device for wool fibers, comprising a bottom plate (1), characterized in that: The upper surface of the bottom plate (1) is inserted with a conveying component (2), the upper surface of the bottom plate (1) is inserted with a soaking component (3), the upper surface of the bottom plate (1) is inserted with a cleaning component (4), the upper surface of the bottom plate (1) is inserted with a cleaning water pipe (5), the lower surface of the cleaning water pipe (5) is inserted with a spray head (6), one end of the cleaning water pipe (5) is inserted with a water pump (7), one end of the water pump (7) is sleeved with a water tank (8), a leakage plate (9) is clamped inside the bottom plate (1), a collection box (10) is inserted into the lower surface of the bottom plate (1), a drying component (11) is inserted into the upper surface of the bottom plate (1), and an air duct (12) is inserted into one side of the drying component (11).
2. The environmentally friendly chlorine-free composite device for wool fibers according to claim 1, wherein: The conveying component (2) includes a conveying seat (201), a driven roller (202), a conveying hydraulic rod (203), a docking seat (204), a conveying motor (205) and a driving roller (206). The driven roller (202) is rotatably connected inside the conveying seat (201), the conveying hydraulic rod (203) is inserted into the conveying seat (201), the docking seat (204) is sleeved on the upper surface of the conveying hydraulic rod (203), the conveying motor (205) is inserted into the docking seat (204), and the driving roller (206) is sleeved on one end of the conveying motor (205).
3. The environmentally friendly chlorine-free composite device for wool fibers according to claim 1, wherein: The conveying components (2) are sequentially arranged on the upper surface of the bottom plate (1) from left to right, and the number of the conveying components (2) is two.
4. An environmentally friendly chlorine-free composite device for wool fibers according to claim 1, characterized in that: The soaking component (3) includes a soaking tank (301), a heating plate (302), a soaking roller (303), a soaking motor (304) and a stirring shaft (305). The heating plate (302) is inserted into the inner bottom of the soaking tank (301), the soaking roller (303) is rotatably connected to the inner side wall of the soaking tank (301), the soaking motor (304) is inserted into one side of the soaking tank (301), and the stirring shaft (305) is sleeved on one end of the soaking motor (304).
5. The environmentally friendly chlorine-free composite device for wool fibers according to claim 1, wherein: The cleaning component (4) includes a cleaning hydraulic rod (401), a cleaning seat (402), a cleaning motor (403) and a cleaning rod (404). The cleaning seat (402) is sleeved on the upper surface of the cleaning hydraulic rod (401), the cleaning motor (403) is inserted into the cleaning seat (402), and the cleaning rod (404) is sleeved on one end of the cleaning motor (403).
6. The environmentally friendly chlorine-free composite device for wool fibers according to claim 1, wherein: The drying component (11) includes a drying box (1101), a drying fan (1102), a waste heat fan (1103), a heating wire (1104) and a heat dissipation plate (1105). The drying fan (1102) is clamped inside the drying box (1101), the waste heat fan (1103) is inserted into the inner side wall of the drying box (1101), the heating wire (1104) is inserted into the inner side wall of the drying box (1101), and the heat dissipation plate (1105) is inserted into the upper surface of the drying box (1101).
7. An environmentally friendly chlorine-free composite device for wool fibers according to claim 1, characterized in that: One side of the collection box (10) is provided with a water outlet pipe, the lower surface of the air duct (12) is provided with air outlet holes, the lower surface of the spray head (6) is provided with a plurality of water outlet holes, the number of the spray heads (6) is three, and the upper surface of the water tank (8) is provided with a water inlet pipe.
8. An environmentally friendly chlorine-free composite device for wool fibers according to claim 1, characterized in that: One side of the bottom plate (1) is rotatably connected with an inlet roller, and the other side of the bottom plate (1) is rotatably connected with an outlet roller.