Combing device for combed cashmere and camel hair production

By designing the moving components, humidifying components, and cleaning components of the combing device, the problems of steel needle adjustment, humidification, and fiber cleaning and collection were solved, improving the combing efficiency of cashmere and camel hair and the service life of the equipment, thereby enhancing the quality and production efficiency of cashmere and camel hair.

CN224227312UActive Publication Date: 2026-05-12TONGXIANG YUNSHENG TEXTILE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TONGXIANG YUNSHENG TEXTILE
Filing Date
2025-05-30
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing equipment cannot adjust the depth of the steel needles, making it inconvenient to humidify cashmere and camel hair, and it is also inconvenient to clean and collect the fibers scattered during combing, which affects the quality of cashmere and camel hair and the service life of the equipment.

Method used

A combing device was designed, comprising a moving component, a humidifying component, and a cleaning component. By adjusting the depth of the steel needles, humidifying the process, and automatically cleaning and collecting fibers, the efficiency of the combing device and the service life of the equipment are improved.

Benefits of technology

It achieves high-efficiency combing of cashmere and camel hair, increasing flexibility, reducing static electricity and tangling, extending equipment life, and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of combing devices, and discloses a combing device for combed cashmere camel hair production, which comprises a main bottom plate, a feeding bin is inserted into the lower surface of the main bottom plate, and a moving component, a side plate, a push plate and a spring are inserted into the upper surface of the main bottom plate. The cashmere and camel hair gilling device is reasonable in structure, cashmere and camel hair needing gilling are put into the feeding bin and pass through the space between the driving roller and the driven roller, the lower needle lead screw is driven by the rotating motor to rotate, the lower needle plate moves up and down in the lower needle box, the upper needle lead screw is driven by the butt joint motor to rotate, and the cashmere and camel hair is gilled. The upper needle plate moves up and down in the upper needle box, the steel needles penetrate through the holes in the material passing plate to gill cashmere and camel hair on the material passing plate, and impurities and dirt in the cashmere and camel hair are effectively removed, so that impurity residues of the cashmere and camel hair are reduced, up-and-down depth adjustment of the steel needles is inconvenient, and the working efficiency is improved. Therefore, gilling of different degrees is inconvenient to carry out on the inner parts of the cashmere and camel hair.
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Description

Technical Field

[0001] This utility model relates to the technical field of combing equipment, specifically a combing equipment for the production of combed cashmere and camel hair. Background Technology

[0002] Cashmere is a thin layer of fine down that grows on the outer skin of goats, hidden beneath the coarse hair. Cashmere is highly absorbent, fluffy, and soft. Currently, cashmere is generally used to make clothing worn close to the skin, and rarely to make fabrics from pure cashmere. This is because cashmere is very soft, and pure cashmere fabrics would lack crispness and require frequent ironing. Camel hair, short for camel wool, is the downy hair from the belly of camels and is one of the important raw materials for making high-end wool textiles.

[0003] The main function of a combing machine is to remove shorter fibers, remove knots (neps, wool, grass clippings, cocoon skins, etc.) from the fibers, and further straighten and parallel the fibers to finally produce combed slivers with relatively uniform thickness.

[0004] However, existing equipment cannot adjust the depth of the steel needles, making it inconvenient and difficult to quickly comb cashmere and camel hair, resulting in poor removal of impurities, inconvenience in humidifying the cashmere and camel hair, potential static electricity generation during combing that reduces the cashmere and camel hair's flexibility, difficulty in cleaning and collecting loose fibers during combing that reduces the equipment's lifespan, inconvenience in removing compressed loose fibers, inconvenience in replacing filter plates, and inconvenience in discharging and collecting the combed cashmere and camel hair. Therefore, we propose a new device to solve the above problems. Utility Model Content

[0005] (a) Technical problems to be solved

[0006] To address the shortcomings of existing technologies, this utility model provides a combing device for the production of combed cashmere and camel hair, which solves the problems of not being able to adjust the depth of the steel needles, the inconvenience of humidifying cashmere and camel hair, and the inconvenience of cleaning and collecting the fibers scattered during combing.

[0007] (II) Technical Solution

[0008] To achieve the above objectives, this utility model provides the following technical solution: a combing device for producing combed cashmere and camel hair, comprising a main base plate, a feeding hopper inserted into the lower surface of the main base plate, a moving component inserted into the upper surface of the main base plate, a lower needle box inserted into one side of the main base plate, a rotary motor inserted inside the lower needle box, a lower needle screw inserted into one end of the rotary motor, a lower needle plate slidably connected inside the lower needle box, a feed plate inserted into the upper surface of the lower needle box, an upper needle box inserted into the upper surface of the lower needle box, a docking motor inserted inside the upper needle box, an upper needle screw inserted into one end of the docking motor, an upper needle plate slidably connected inside the upper needle box, and a humidifying component inserted into the upper surface of the upper needle box.

[0009] Optionally, a sub-base plate is inserted into one side of the needle box, a cleaning component is inserted into one side of the needle box, a discharge box is inserted into the lower surface of the sub-base plate, a discharge hydraulic rod is inserted into the inside of the discharge box, a discharge plate is sleeved on one end of the discharge hydraulic rod, a docking plate is inserted into one side of the discharge box, a spring is inserted into one side of the docking plate, and a pressure plate is sleeved on one end of the spring.

[0010] Optionally, the moving assembly includes a fixed base, a driven roller, a moving hydraulic rod, a moving seat, a moving motor, and a driving roller. The driven roller is rotatably connected inside the fixed base. The moving hydraulic rod is inserted inside the fixed base. One end of the moving hydraulic rod is sleeved with the moving seat. The moving motor is inserted inside the moving seat. One end of the moving motor is sleeved with the driving roller.

[0011] Optionally, the humidification assembly includes a humidification box, an atomizing plate, a humidifying fan, a humidifying cover plate, and a humidification pipe. The atomizing plate is inserted into the inner bottom wall of the humidification box, the humidifying fan is inserted into the inner side wall of the humidification box, the humidifying cover plate is inserted into the upper surface of the humidification box, and the humidification pipe is inserted into one side of the humidification box.

[0012] Optionally, a fixing bolt is threaded through the upper surface of the humidifying cover, and a humidifying box is threaded through the fixing bolt on the humidifying cover. A water inlet pipe is provided on the upper surface of the humidifying cover.

[0013] Optionally, the cleaning assembly includes a cleaning box, a collecting fan, a collecting hydraulic rod, a push plate, a side plate, a cleaning cover plate, a filter plate, and a collecting pipe. The collecting fan is inserted into the inner wall of the cleaning box, the collecting hydraulic rod is inserted into the inside of the cleaning box, a push plate is inserted into one end of the collecting hydraulic rod, a side plate is snapped onto one side of the cleaning box, a cleaning cover plate is inserted into the upper surface of the cleaning box, a filter plate is snapped into the inside of the cleaning cover plate, and a collecting pipe is inserted into the upper surface of the cleaning cover plate.

[0014] Optionally, a limiting rod is inserted into one side of the cleaning box, and the limiting rod limits the side plate.

[0015] Optionally, the lower needle plate has a threaded hole inside, the lower needle screw passes through the threaded hole, the upper surface of the lower needle plate has a steel needle and a hole, the upper surface of the feed plate has a hole, the upper needle plate has a threaded hole inside, the upper needle screw passes through the threaded hole, and the lower surface of the upper needle plate has a steel needle.

[0016] Optionally, the docking plate is located at the four corners on one side of the discharge box, and the number of the moving components is two, which are respectively installed on the upper surface of the main base plate and the auxiliary base plate.

[0017] In summary, the technical effects and advantages of this utility model are as follows:

[0018] 1. This utility model has a reasonable structure. The cashmere and camel hair to be combed are placed into the feeding hopper. After adjusting the fixed and moving seats to the appropriate positions using a moving hydraulic rod, a moving motor drives the active roller to rotate, causing the cashmere and camel hair to pass between the active and driven rollers and enter the feed plate. A rotary motor drives the lower needle screw to rotate, causing the lower needle plate to move up and down within the lower needle box. A connecting motor drives the upper needle screw to rotate, causing the upper needle plate to move up and down within the upper needle box. Steel needles pass through the holes in the feed plate, combing the cashmere and camel hair on the feed plate. This achieves convenient and quick combing of the cashmere and camel hair, improving combing efficiency and effectively removing the cashmere and camel hair. The process removes impurities and dirt, improving the quality of cashmere and camel hair. It reduces residual impurities and makes it difficult to adjust the depth of the steel needles, hindering the combing of the cashmere and camel hair to different degrees. Pure water is added to the humidification chamber through the water inlet pipe on the upper surface of the humidification cover. Water mist is generated by vibration through the atomizing plate and blown into the equipment through the humidification pipe by the humidification fan. This humidifies the cashmere and camel hair being combed, increasing its flexibility, reducing breakage during combing, increasing combing output, and facilitating combing operations. It also reduces static electricity and tangling during combing.

[0019] 2. In this utility model, the collecting fan inside the cleaning box rotates, causing the loose fibers combed down from the needle plate to be sucked down through the holes in the lower needle plate and enter the cleaning box through the collection pipe. After a portion is collected, the collecting hydraulic rod moves the push plate to compress and consolidate the loose fibers in the cleaning box. When the cleaning box is full, the side plate is removed by pulling out the limit rod, and the compressed loose fibers are taken out and collected. This achieves convenient and quick cleaning and collection of loose fibers combed down from the needle plate, increasing the service life of the equipment and improving the efficiency of each needle combing operation. The effect will not weaken, thus reducing the inconvenience of removing compressed loose fibers and replacing filter plates. When the discharge box is full, the staff places the bags on the connecting plates around the perimeter. By pulling the pressure plate, the pressure plate and connecting plate fix the bags. The discharge hydraulic rod moves the discharge plate in the discharge box, putting the combed cashmere and camel hair into the bags. This achieves convenient and quick collection and bagging of combed cashmere and camel hair, saving a lot of manpower and resources, improving work efficiency, and reducing the inconvenience of collecting and processing combed cashmere and camel hair. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the main base plate structure of this utility model;

[0022] Figure 3 This is an exploded view of the mobile component structure of this utility model;

[0023] Figure 4 This is an exploded view of the lower needle plate structure of this utility model;

[0024] Figure 5 This is an exploded view of the upper needle plate structure of this utility model;

[0025] Figure 6 This is an exploded view of the humidification component structure of this utility model;

[0026] Figure 7 This is a schematic diagram of the upper needle box structure of this utility model;

[0027] Figure 8 This is an exploded view of the cleaning component structure of this utility model;

[0028] Figure 9 This is an exploded view of the discharge box structure of this utility model.

[0029] In the diagram: 1. Main base plate; 2. Feed hopper; 3. Moving assembly; 301. Fixed base; 302. Driven roller; 303. Moving hydraulic rod; 304. Moving seat; 305. Moving motor; 306. Driving roller; 4. Lower needle box; 5. Rotary motor; 6. Lower needle screw; 7. Lower needle plate; 8. Feeding plate; 9. Upper needle box; 10. Connecting motor; 11. Upper needle screw; 12. Upper needle plate; 13. Humidification assembly; 1301. Humidification box; 1302. Atomizing plate 1303 Humidifying fan; 1304 Humidifying cover plate; 1305 Humidifying pipe; 14 Sub-base plate; 15 Cleaning assembly; 1501 Cleaning box; 1502 Collection fan; 1503 Collection hydraulic rod; 1504 Push plate; 1505 Side plate; 1506 Cleaning cover plate; 1507 Filter plate; 1508 Collection pipe; 16 Discharge box; 17 Discharge hydraulic rod; 18 Discharge plate; 19 Connecting plate; 20 Spring; 21 Pressure plate. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] Example: Reference Figures 1-9 The combing device shown includes a main base plate 1, a feed bin 2 inserted into the lower surface of the main base plate 1, a moving assembly 3 inserted into the upper surface of the main base plate 1, a lower needle box 4 inserted into one side of the main base plate 1, a rotary motor 5 inserted inside the lower needle box 4, a lower needle screw 6 inserted into one end of the rotary motor 5, a lower needle plate 7 slidably connected inside the lower needle box 4, a feed plate 8 inserted into the upper surface of the lower needle box 4, an upper needle box 9 inserted into the upper surface of the lower needle box 4, a docking motor 10 inserted into the upper needle box 9, and a docking motor 10 inserted into one end of the docking motor 10. The upper needle box 9 is connected to an upper needle screw 11. An upper needle plate 12 is slidably connected inside the upper needle box 9. A humidifying component 13 is inserted into the upper surface of the upper needle box 9. A secondary bottom plate 14 is inserted into one side of the lower needle box 4. A cleaning component 15 is inserted into one side of the lower needle box 4. A discharge box 16 is inserted into the lower surface of the secondary bottom plate 14. A discharge hydraulic rod 17 is inserted into the inside of the discharge box 16. A discharge plate 18 is sleeved at one end of the discharge hydraulic rod 17. A docking plate 19 is inserted into one side of the discharge box 16. A spring 20 is inserted into one side of the docking plate 19. A pressure plate 21 is sleeved at one end of the spring 20.

[0032] As a preferred embodiment of this example, Figures 2 to 7As shown, a feed bin 2 is inserted into the lower surface of the main base plate 1, and a moving assembly 3 is inserted into the upper surface of the main base plate 1. The moving assembly 3 includes a fixed base 301, a driven roller 302, a moving hydraulic rod 303, a moving seat 304, a moving motor 305, and a driving roller 306. The driven roller 302 is rotatably connected inside the fixed base 301. The moving hydraulic rod 303 is inserted into the fixed base 301, and the moving seat 304 is sleeved at one end of the moving hydraulic rod 303. The moving motor 305 is inserted into the moving seat 304, and the driving roller 306 is sleeved at one end of the moving motor 305. There are two moving assemblies 3, which are respectively installed on the upper surfaces of the main base plate 1 and the auxiliary base plate 14. A needle box 4 is inserted into one side of the main base plate 1. The needle box 4 contains... A rotary motor 5 is inserted into the lower needle box 4, and a lower needle screw 6 is inserted into one end of the rotary motor 5. A lower needle plate 7 is slidably connected inside the lower needle box 4. A threaded hole is opened inside the lower needle plate 7, through which the lower needle screw 6 passes. A steel needle and a hole are provided on the upper surface of the lower needle plate 7. A feed plate 8 is inserted into the upper surface of the lower needle box 4. A hole is opened on the upper surface of the feed plate 8, corresponding to the position of the steel needle. An upper needle box 9 is inserted into the upper needle box 4. A docking motor 10 is inserted into the upper needle box 9, and an upper needle screw 11 is inserted into one end of the docking motor 10. An upper needle plate 12 is slidably connected inside the upper needle box 9. A threaded hole is opened inside the upper needle plate 12, through which the upper needle screw 11 passes. A steel needle is provided on the lower surface of the upper needle plate 12. A lower needle plate 12 is inserted into the upper surface of the upper needle box 9. The device includes a humidification assembly 13, comprising a humidification chamber 1301, an atomizing plate 1302, a humidifying fan 1303, a humidification cover 1304, and a humidification pipe 1305. The atomizing plate 1302 is inserted into the inner bottom wall of the humidification chamber 1301. The atomizing plate 1302 utilizes high-frequency electronic oscillation; through the high-frequency resonance of the ceramic atomizing plate, it disperses the liquid water molecules to produce naturally drifting water mist, requiring no heating or addition of any chemical reagents. The humidifying fan 1303 is inserted into the inner side wall of the humidification chamber 1301. The humidification cover 1304 is inserted into the upper surface of the humidification chamber 1301. A fixing bolt is threaded through the upper surface of the humidification cover 1304, and the humidification cover 1304 is threaded through the humidification chamber 1301 via the fixing bolt. The upper surface is equipped with a water inlet pipe, and a humidification pipe 1305 is inserted into one side of the humidification box 1301. A sub-base plate 14 is inserted into one side of the lower needle box 4. During use, the cashmere and camel hair to be combed are placed into the feeding hopper 2. After the fixed seat 301 and the moving seat 304 are adjusted to the appropriate position by moving the hydraulic rod 303, the moving motor 305 drives the active roller 306 to rotate, so that the cashmere and camel hair pass between the active roller 306 and the driven roller 302, and enter the feed plate 8. The rotary motor 5 drives the lower needle screw 6 to rotate, so that the lower needle plate 7 moves up and down in the lower needle box 4. The docking motor 10 drives the upper needle screw 11 to rotate, so that the upper needle plate 12 moves up and down in the upper needle box 9.The steel needles pass through the holes in the feed plate 8 to comb the cashmere and camel hair on the feed plate 8, achieving convenient and quick combing of the cashmere and camel hair, improving combing efficiency, effectively removing impurities and dirt from the cashmere and camel hair, improving the quality of the cashmere and camel hair, and thus reducing the amount of impurity residue in the cashmere and camel hair. However, it is inconvenient to adjust the vertical depth of the steel needles, making it difficult to comb the cashmere and camel hair to different degrees. Water is supplied to the humidification box 13 through the water inlet pipe on the upper surface of the humidification cover plate 1304. 01. Pure water is added to the device, and water mist is generated by the atomizing plate 1302. The water mist is then blown into the equipment through the humidification pipe 1305 by the humidifying fan 1303, humidifying the cashmere and camel hair being combed. This increases the softness of the cashmere and camel hair, reduces breakage during combing, increases the combing output, and facilitates the combing process. It also reduces static electricity and tangling during combing.

[0033] like Figure 2 and Figures 7 to 9As shown, in this embodiment, a cleaning assembly 15 is inserted into one side of the lower needle box 4. The cleaning assembly 15 includes a cleaning box 1501, a collecting fan 1502, a collecting hydraulic rod 1503, a push plate 1504, a side plate 1505, a cleaning cover plate 1506, a filter plate 1507, and a collecting pipe 1508. The collecting fan 1502 is inserted into the inner wall of the cleaning box 1501. The collecting hydraulic rod 1503 is inserted into the inside of the cleaning box 1501. One end of the collecting hydraulic rod 1503 is inserted into the push plate 1504. The side plate 1505 is snapped onto one side of the cleaning box 1501. A limit rod is inserted into one side of the cleaning box 1501. The limit rod is positioned opposite the side... Plate 1505 provides a limiting position. A cleaning cover plate 1506 is inserted into the upper surface of the cleaning box 1501. A filter plate 1507 is snapped into the inside of the cleaning cover plate 1506. A collection pipe 1508 is inserted into the upper surface of the cleaning cover plate 1506. A discharge box 16 is inserted into the lower surface of the sub-bottom plate 14. A discharge hydraulic rod 17 is inserted into the inside of the discharge box 16. A discharge plate 18 is sleeved on one end of the discharge hydraulic rod 17. A docking plate 19 is inserted into one side of the discharge box 16. The docking plate 19 is located at the four corners of one side of the discharge box 16. A spring 20 is inserted into one side of the docking plate 19. A pressure plate 21 is sleeved on one end of the spring 20. During use, through... The collecting fan 1502 inside the cleaning box 1501 rotates, causing the loose fibers combed down from the needle comb inside the equipment to be sucked down through the holes in the lower needle plate 7 and enter the cleaning box 1501 along the collecting pipe 1508. After a portion is collected, the collecting hydraulic rod 1503 moves the push plate 1504 to compress and consolidate the loose fibers in the cleaning box 1501. When the cleaning box 1501 is full, the side plate 1505 is removed by pulling out the limit rod, and the compressed loose fibers are taken out and collected. This achieves convenient and quick cleaning and collection of loose fibers combed down from the needle comb inside the equipment, increasing the service life of the equipment and making each cleaning easier. The combing effect is not weakened, thus reducing the inconvenience of removing compressed loose fibers and replacing filter plates 1507. When the discharge box 16 is full, the staff places the bags on the connecting plates 19 around the perimeter. By pulling the pressure plate 21, the pressure plate 21 and the connecting plate 19 fix the bags in place. The discharge hydraulic rod 17 moves the discharge plate 18 within the discharge box 16, putting the combed cashmere and camel hair into the bags. This achieves convenient and quick collection and bagging of combed cashmere and camel hair, saving a lot of manpower and resources, improving work efficiency, and reducing the inconvenience of collecting and processing combed cashmere and camel hair.

[0034] The working principle of this practical application is as follows:

[0035] During operation, the cashmere and camel hair to be combed are placed into the feed hopper 2. The fixed seat 301 and the movable seat 304 are adjusted to suitable positions using the moving hydraulic rod 303. Then, the moving motor 305 drives the active roller 306 to rotate, causing the cashmere and camel hair to pass between the active roller 306 and the driven roller 302, thus entering the feed plate 8. The rotary motor 5 drives the lower needle screw 6 to rotate, causing the lower needle plate 7 to move up and down within the lower needle box 4. The docking motor 10 drives the upper needle screw 11 to rotate, causing the upper needle plate 12 to move up and down within the upper needle box 9, allowing steel needles to pass through the holes in the feed plate 8 and comb the cashmere and camel hair on the feed plate 8. Water mist is generated by the atomizing plate 1302 and blown into the equipment through the humidifying fan 1303 via the humidifying pipe 1305, further combing the cashmere and camel hair being combed. Humidification is performed by rotating the collecting fan 1502 inside the cleaning box 1501, causing the loose fibers to enter the cleaning box 1501 along the collecting pipe 1508. After a portion is collected, the collecting hydraulic rod 1503 moves the push plate 1504 to compress and consolidate the loose fibers in the cleaning box 1501. When the cleaning box 1501 is full, the side plate 1505 is removed by pulling out the limit rod, and the compressed loose fibers are taken out and collected. The combed cashmere and camel hair are discharged into the discharge box 16 through the moving component 3 on the sub-bottom plate 14. When the discharge box 16 is full, the workers place the bags on the docking plates 19 around them. By pulling the pressure plate 21, the pressure plate 21 and the docking plate 19 fix the bags. The discharge hydraulic rod 17 moves the discharge plate 18 inside the discharge box 16 to put the combed cashmere and camel hair into the bags.

[0036] All electrical components mentioned in this article are connected to an external main controller and 220V AC mains power, and the main controller can be a conventional known device such as a computer that can control it.

[0037] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended 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 described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A combing device for producing combed cashmere and camel hair, comprising a main base plate (1), characterized in that: A feed hopper (2) is inserted into the lower surface of the main base plate (1), a moving component (3) is inserted into the upper surface of the main base plate (1), a lower needle box (4) is inserted into one side of the main base plate (1), a rotary motor (5) is inserted into the inside of the lower needle box (4), a lower needle screw (6) is inserted into one end of the rotary motor (5), a lower needle plate (7) is slidably connected inside the lower needle box (4), a feed plate (8) is inserted into the upper surface of the lower needle box (4), an upper needle box (9) is inserted into the upper surface of the lower needle box (4), a docking motor (10) is inserted into the inside of the upper needle box (9), an upper needle screw (11) is inserted into one end of the docking motor (10), an upper needle plate (12) is slidably connected inside the upper needle box (9), and a humidifying component (13) is inserted into the upper surface of the upper needle box (9).

2. The combing device for producing combed cashmere and camel hair according to claim 1, characterized in that: A sub-base plate (14) is inserted into one side of the needle box (4), a cleaning component (15) is inserted into one side of the needle box (4), a discharge box (16) is inserted into the lower surface of the sub-base plate (14), a discharge hydraulic rod (17) is inserted into the inside of the discharge box (16), a discharge plate (18) is sleeved on one end of the discharge hydraulic rod (17), a docking plate (19) is inserted into one side of the discharge box (16), a spring (20) is inserted into one side of the docking plate (19), and a pressure plate (21) is sleeved on one end of the spring (20).

3. The combing device for producing combed cashmere and camel hair according to claim 1, characterized in that: The moving component (3) includes a fixed base (301), a driven roller (302), a moving hydraulic rod (303), a moving base (304), a moving motor (305), and a driving roller (306). The driven roller (302) is rotatably connected inside the fixed base (301). The moving hydraulic rod (303) is inserted inside the fixed base (301). The moving base (304) is sleeved at one end of the moving hydraulic rod (303). The moving motor (305) is inserted inside the moving base (304). The driving roller (306) is sleeved at one end of the moving motor (305).

4. The combing device for producing combed cashmere and camel hair according to claim 1, characterized in that: The humidification assembly (13) includes a humidification box (1301), an atomizing plate (1302), a humidifying fan (1303), a humidifying cover plate (1304), and a humidifying pipe (1305). The atomizing plate (1302) is inserted into the inner bottom wall of the humidification box (1301), the humidifying fan (1303) is inserted into the inner side wall of the humidification box (1301), the humidifying cover plate (1304) is inserted into the upper surface of the humidification box (1301), and the humidifying pipe (1305) is inserted into one side of the humidification box (1301).

5. The combing device for producing combed cashmere and camel hair according to claim 4, characterized in that: The upper surface of the humidifying cover plate (1304) is threaded with a fixing bolt, and the humidifying cover plate (1304) is threaded with a humidifying box (1301) through the fixing bolt. The upper surface of the humidifying cover plate (1304) is provided with a water inlet pipe.

6. The combing device for producing combed cashmere and camel hair according to claim 2, characterized in that: The cleaning assembly (15) includes a cleaning box (1501), a collecting fan (1502), a collecting hydraulic rod (1503), a push plate (1504), a side plate (1505), a cleaning cover plate (1506), a filter plate (1507), and a collecting pipe (1508). The collecting fan (1502) is inserted into the inner wall of the cleaning box (1501). The collecting hydraulic rod (1503) is inserted into the inside of the cleaning box (1501). The push plate (1504) is inserted into one end of the collecting hydraulic rod (1503). The side plate (1505) is snapped onto one side of the cleaning box (1501). The cleaning cover plate (1506) is inserted into the upper surface of the cleaning box (1501). The filter plate (1507) is snapped into the inside of the cleaning cover plate (1506). The collecting pipe (1508) is inserted into the upper surface of the cleaning cover plate (1506).

7. The combing device for producing combed cashmere and camel hair according to claim 6, characterized in that: A limiting rod is inserted into one side of the cleaning box (1501), and the limiting rod limits the side plate (1505).

8. The combing device for producing combed cashmere and camel hair according to claim 1, characterized in that: The lower needle plate (7) has a threaded hole inside, the lower needle screw (6) passes through the threaded hole, the upper surface of the lower needle plate (7) is provided with a steel needle and a hole, the upper surface of the feed plate (8) is provided with a hole, the upper needle plate (12) has a threaded hole inside, the upper needle screw (11) passes through the threaded hole, and the lower surface of the upper needle plate (12) is provided with a steel needle.

9. The combing device for producing combed cashmere and camel hair according to claim 2, characterized in that: The docking plate (19) is located at the four corners on one side of the discharge box (16), and there are two moving components (3), which are respectively installed on the upper surfaces of the main base plate (1) and the auxiliary base plate (14).