Deep cleaning device for down jacket fabric processing and using method
By combining vibration dispersion and multi-stage cleaning devices with stirring, aeration and filtration technologies, the problem of down feathers sticking to the container wall during cleaning is solved, achieving efficient cleaning and protection of down fibers.
Patent Information
- Application Number
- CN202510960028.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-11
- Publication Date
- 2025-09-16
AI Technical Summary
Existing down cleaning devices easily cause the down to stick to the container wall, affecting the cleaning effect and possibly damaging the down fibers, resulting in a decrease in quality.
Vibration dispersion device, multi-stage cleaning device and dehydration device are used, combined with stirring, aeration and filtration technology to prevent down from sticking to the container wall, and protect down fibers through vibration dispersion, multi-stage cleaning and dehydration.
It effectively prevents the down from sticking to the container wall during the cleaning process, ensuring the cleaning effect, while protecting the down fibers and improving the cleaning quality.
Smart Images

Figure CN120649159A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of down jacket fabric processing, and in particular to a deep cleaning device for down jacket fabric processing and a use method thereof. Background Art
[0002] The most common fillings for down jackets are goose down and duck down, which are reed-shaped down that grows on the abdomens of geese and ducks. Because down is an animal protein fiber, the spherical fibers of down are densely covered with tens of millions of tiny triangular pores, which can shrink and expand with changes in temperature, producing a temperature-regulating function. They can absorb the flowing heat emitted by the human body and isolate the invasion of cold air from the outside.
[0003] The cleaning of down is very important in the processing of down jacket fabrics, which directly affects the quality of down. Before cleaning, down is generally packed into blocks for easy transportation. The down packed into blocks is not convenient for subsequent cleaning and needs to be manually dispersed before cleaning. At the same time, most of the existing down cleaning devices use a stirring rod to stir the down in the cleaning container to achieve the purpose of cleaning the down. These cleaning methods may cause the down to always stick to the container wall during the cleaning process, thereby preventing the down from being well flushed by the water flow, affecting the cleaning effect. At the same time, when the down is stirred and cleaned, the stirring rod is likely to damage the down fibers, resulting in reduced down quality. Therefore, it is urgent to develop a deep cleaning device and method for down jacket fabric processing that can prevent the down from sticking to the container wall or gathering together during the cleaning process, ensure the cleaning effect, and at the same time will not cause damage to the down fibers, thereby ensuring the quality of the down. Summary of the Invention
[0004] The present invention aims to overcome the disadvantages that down is generally packed into blocks for easy transportation before cleaning, but the down packed into blocks is not convenient for subsequent cleaning. At the same time, most existing down cleaning devices use a stirring rod to stir the down in the cleaning container, which may cause the down to always stick to the container wall during the cleaning process, affecting the cleaning effect, and easily damage the down fibers, resulting in reduced down quality. The technical problem to be solved by the present invention is to provide a deep cleaning device for down jacket fabric processing and a method for use, which can prevent the down from sticking to the container wall or gathering together during the cleaning process, thereby ensuring the cleaning effect, while not causing damage to the down fibers and ensuring the quality of the down.
[0005] The present invention is achieved by the following specific technical means: A deep cleaning device for processing down jacket fabrics, comprising a vibration dispersion device for vibrating and dispersing down; a first cleaning device disposed on one side of the vibration dispersion device for pre-cleaning the down; a filter tank disposed on one side of the first cleaning device for filtering impurities; a second cleaning device disposed on one side of the filter tank for deep cleaning the down; and a dehydration device disposed on one side of the second cleaning device for dehydrating the down. The discharge end of the vibration dispersion device is connected to the feed end of the first cleaning device; the discharge end of the first cleaning device is connected to the feed end of the filter tank through a first delivery pipe; the discharge end of the filter tank is connected to the feed end of the second cleaning device; the discharge end of the second cleaning device is connected to the feed end of the dehydration device through a second delivery pipe; a hot water tank is further provided between the first cleaning device and the second cleaning device, and the hot water tank is respectively connected to the first cleaning device and the second cleaning device through a first water delivery pipe and a second water delivery pipe; a detergent storage tank is provided on one side of the hot water tank, and the detergent storage tank is connected to the second cleaning device through a detergent delivery pipe; an air compressor is provided on one side of the detergent storage tank, and the air compressor is connected to the second cleaning device through an air delivery pipe; water pumps are respectively fixedly installed on the first delivery pipe, the second delivery pipe, the first water delivery pipe, the second water delivery pipe and the detergent delivery pipe; The vibration dispersion device includes a support frame; a vibration box body disposed on the support frame and connected to the support frame via a buffer connector; a non-slip bottom plate fixedly disposed on the bottom of the vibration box body; a vibration motor disposed on the vibration box body and fixedly connected to the vibration box body via a mounting frame; an opening is provided on the side of the vibration box body close to the first cleaning device, and a material unloading slide is fixedly disposed at the opening; The first cleaning device includes a first cleaning box; a stirring rod body rotatably installed in the first cleaning box; a stirring motor is fixedly installed on one side of the first cleaning box, and a rotating output shaft of the stirring motor is fixedly connected to the stirring rod body; an isolation cover is also provided in the first box, which is located outside the stirring rod body and is fixedly connected to the first cleaning box; a first filter baffle is fixedly installed at the bottom end of the first box; a sewage outlet communicating with the interior of the first box is provided at the bottom of the first box, and a first sewage valve is fixedly installed at the sewage outlet; a first water inlet pipe connected to the first water pipe is also fixedly provided at the upper end of the first box; The filter tank includes a tank body; a baffle fixedly arranged at the bottom of the tank body; a discharge port fixedly arranged at the bottom of one end of the tank body near the second cleaning device; The second cleaning device includes a second cleaning box; a second filter baffle fixedly arranged at the bottom end of the second cleaning box; a spray pipe fixedly arranged on the upper side of the second filter baffle inside the second cleaning box; a nozzle fixedly arranged on the spray pipe; an aeration pipe fixedly arranged on the lower side of the second filter baffle inside the second cleaning box; the aeration pipe is fixedly connected to the air supply pipe through an air supply branch pipe; a sewage pipe connected to the interior of the second box is provided at the bottom of the second box, and a second sewage valve is fixedly installed on the sewage pipe; a second water inlet pipe connected to the second water supply pipe is also fixedly provided at the upper end of the second box; The dehydration device includes a fixed box body; a conveyor belt fixedly installed on the upper end of the fixed box body; a dehydration box arranged at the upper end of the conveyor belt and fixedly connected to the fixed box body; a dehydration drum is rotatably installed in the dehydration box body; a dehydration motor is fixedly installed on one side of the dehydration box body, and the rotating output shaft of the dehydration motor is fixedly connected to the dehydration drum; a feed pipe that passes through the dehydration box body and extends into the dehydration drum is fixedly provided on the side of the dehydration box body away from the dehydration motor; a water receiving box is provided on the lower side of the dehydration box body, and the water receiving box is fixedly installed in the fixed box body; a drain pipe is fixedly connected to one side of the bottom of the water receiving box; a discharge plate fixedly connected to the fixed box body is also provided on the side of the conveyor belt away from the second cleaning device.
[0006] Furthermore, the dehydration drum includes a cylinder rotatably installed in the dehydration box; an opening is provided on one side of the outer diameter of the cylinder, and a cover is provided at the opening, one end of the cover is hinged to the cylinder, and the other end is buckled with the cylinder; the dehydrated down in the dehydration drum can be easily taken out by opening the cover.
[0007] Furthermore, the vibration dispersion device is arranged obliquely toward one side of the first cleaning device, so that the down in the vibration dispersion device can be transported into the first cleaning device under the action of vibration.
[0008] Furthermore, a plurality of baffles are provided at the bottom of the trough body, and the baffles are evenly distributed at equal intervals; the granular sediment impurities can be intercepted multiple times by the provided baffles.
[0009] Furthermore, the spray pipe is provided with a plurality of spray heads, which are evenly distributed at equal distances, so as to facilitate the uniform spraying of the detergent into the second cleaning box.
[0010] Furthermore, a plurality of aeration pipes are provided on the lower side of the second filter baffle, and the aeration pipes are evenly distributed at equal distances, so that the aeration pipes can evenly aerate the bottom of the second cleaning box.
[0011] Furthermore, the aeration pipe is evenly and evenly provided with a plurality of aeration holes, and a check valve is provided at the aeration holes; this facilitates uniform aeration of the aeration pipe and prevents water in the second cleaning device from flowing into the aeration pipe.
[0012] Furthermore, the conveyor belt adopts a permeable mesh belt, which facilitates water to flow through the conveyor belt and fall into the water receiving box below the conveyor belt.
[0013] Furthermore, a method for using a deep cleaning device for processing down jacket fabrics comprises the following steps: Step 1: Vibration dispersion: Place the down to be cleaned into the vibration dispersion device, and the vibration of the vibration dispersion device will cause the down to be cleaned to be dispersed; Step 2: Pre-cleaning: warm water is added to the first cleaning box of the first cleaning device; after the down is transported into the first cleaning box, the stirring motor is started, and the stirring motor drives the stirring rod to rotate to stir and clean the down and warm water in the first cleaning box, thereby separating dust and impurities in the down; Step 3: Impurity filtration: The pre-cleaned down is transported together with the sewage into the filter tank, and the baffle at the bottom of the filter tank intercepts and filters the dust particles. Step 4: Deep cleaning. After the down and sewage enter the second cleaning box of the second cleaning device, open the second drain valve on the lower side of the second cleaning box to discharge the sewage. Then, fill the second cleaning box with warm water, and spray the detergent evenly into the second cleaning box through the spray pipe. Then, the aeration pipe aerates and cleans the down in the second cleaning box. Step 5: Dehydration. The down feathers after aeration cleaning and rinsing in the second cleaning device are connected to the water flow and transported to the dehydration device, which dehydrates the down feathers. The dehydrated down feathers are output through a conveyor belt.
[0014] Compared with the prior art, the present invention has the following beneficial effects: The present invention prevents the down from clinging to the container wall or gathering together during the cleaning process, thereby ensuring the cleaning effect, while simultaneously preventing the down fibers from being damaged and ensuring the quality of the down. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the main structure of the present invention.
[0016] Figure 2 It is a schematic diagram of the three-dimensional structure of the vibration dispersion device of the present invention.
[0017] Figure 3 This is a schematic cross-sectional structural diagram of the first cleaning device of the present invention.
[0018] Figure 4 This is a schematic diagram of the cross-sectional structure of the filter tank of the present invention.
[0019] Figure 5 This is a schematic cross-sectional structural diagram of the second cleaning device of the present invention.
[0020] Figure 6It is a schematic cross-sectional structural diagram of the dehydration device of the present invention.
[0021] Figure 7 This is a schematic diagram of the main structure of the dehydration drum of the present invention.
[0022] The marks in the accompanying drawings are: 1-vibration dispersion device, 2-first cleaning device, 3-filter tank, 4-second cleaning device, 5-dehydration device, 6-first delivery pipe, 7-second delivery pipe, 8-hot water tank, 9-first water pipe, 10-second water pipe, 11-detergent storage tank, 12-detergent delivery pipe, 13-air compressor, 14-air pipe, 15-water pump, 101-support frame, 102-buffer connection, 103-vibration box, 104-anti-slip bottom plate, 105-mounting frame, 106-vibration motor, 107-unloading slide, 21-first cleaning box, 22-stirring rod body, 23- Stirring motor, 24-isolation cover, 25-first filter baffle, 26-first drain valve, 27-first water inlet pipe, 31-tank, 32-baffle, 33-discharge port, 41-second cleaning box, 42-second filter baffle, 43-spray pipe, 44-nozzle, 45-air supply branch pipe, 46-aeration pipe, 47-drain pipe, 48-second drain valve, 49-second water inlet pipe, 51-fixed box, 52-conveyor belt, 53-dehydration box, 54-dehydration drum, 55-dehydration motor, 56-feed pipe, 57-water receiving box, 58-drain pipe, 59-discharge plate, 541-cylinder, 542-cover plate. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings: Example
[0024] A deep cleaning device for down jacket fabric processing, such as Figure 1-7 As shown, it includes a vibration dispersion device 1 for vibrating and dispersing down; a first cleaning device 2 for pre-cleaning the down, which is arranged on one side of the vibration dispersion device 1; a filter tank 3 for filtering impurities, which is arranged on one side of the first cleaning device 2; a second cleaning device 4 for deep cleaning the down, which is arranged on one side of the filter tank 3; and a dehydration device 5 for dehydrating the down, which is arranged on one side of the second cleaning device 4. The discharge end of the vibration dispersion device 1 is connected to the feed end of the first cleaning device 2; the discharge end of the first cleaning device 2 is connected to the feed end of the filter tank 3 through the first conveying pipe 6; the discharge end of the filter tank 3 is connected to the feed end of the second cleaning device 4; the discharge end of the second cleaning device 4 is connected to the feed end of the dehydration device 5 through the second conveying pipe 7; a hot water tank 8 is further provided between the first cleaning device 2 and the second cleaning device 4, and the hot water tank 8 is respectively connected to the first cleaning device 2 and the second cleaning device 4 through the first water pipe 9 and the second water pipe 10; a detergent storage tank 11 is provided on one side of the hot water tank 8, and the detergent storage tank 11 is connected to the second cleaning device 4 through the detergent conveying pipe 12; an air compressor 13 is provided on one side of the detergent storage tank 11, and the air compressor 13 is connected to the second cleaning device 4 through the air pipe 14; a water pump 15 is fixedly installed on the first conveying pipe 6, the second conveying pipe 7, the first water pipe 9, the second water pipe 10 and the detergent conveying pipe 12 respectively; The vibration dispersion device 1 includes a support frame 101; a vibration box 103 disposed on the support frame 101 and connected to the support frame 101 via a buffer connector 102; a non-slip base plate 104 fixedly disposed at the bottom of the vibration box 103; a vibration motor 106 disposed on the vibration box 103 and fixedly connected to the vibration box 103 via a mounting bracket 105; an opening is provided on the side of the vibration box 103 close to the first cleaning device 2, and a blanking slide 107 is fixedly disposed at the opening; The first cleaning device 2 includes a first cleaning box 21; a stirring rod 22 rotatably mounted in the first cleaning box 21; a stirring motor 23 is fixedly mounted on one side of the first cleaning box 21, and the stirring motor 23 rotates and outputs a shaft fixedly connected to the stirring rod 22; an isolation cover 24 is also provided in the first box, located outside the stirring rod 22 and fixedly connected to the first cleaning box; a first filter baffle 25 is fixedly mounted on the bottom end of the first box; a sewage outlet communicating with the interior of the first box is provided at the bottom of the first box, and a first sewage valve 26 is fixedly mounted at the sewage outlet; a first water inlet pipe 27 connected to the first water pipe 9 is also fixedly mounted on the upper end of the first box; The filter tank 3 includes a tank body 31; a baffle 32 fixedly arranged at the bottom of the tank body 31; a discharge port 33 fixedly arranged at the bottom of one end of the tank body 31 near the second cleaning device 4; The second cleaning device 4 includes a second cleaning box 41; a second filter baffle 42 fixedly arranged at the bottom end of the second cleaning box 41; a spray pipe 43 fixedly arranged on the upper side of the second filter baffle 42 in the second cleaning box 41; a nozzle 44 fixedly arranged on the spray pipe 43; an aeration pipe 46 fixedly arranged on the lower side of the second filter baffle 42 in the second cleaning box 41; the aeration pipe 46 is fixedly connected to the air supply pipe 14 through an air supply branch pipe 45; a sewage pipe 47 connected to the interior of the second box is provided at the bottom of the second box, and a second sewage valve 48 is fixedly installed on the sewage pipe 47; a second water inlet pipe 49 connected to the second water supply pipe 10 is also fixedly provided at the upper end of the second box; The dehydration device 5 includes a fixed box body 51; a conveyor belt 52 fixedly mounted on the upper end of the fixed box body 51; a dehydration box 53 arranged at the upper end of the conveyor belt 52 and fixedly connected to the fixed box body 51; a dehydration drum 54 is rotatably mounted in the dehydration box 53; a dehydration motor 55 is fixedly mounted on one side of the dehydration box body 53, and the dehydration motor 55 rotates and the output shaft is fixedly connected to the dehydration drum 54; a feed pipe 56 that passes through the dehydration box body 53 and extends into the dehydration drum 54 is fixedly arranged on the side of the dehydration box body away from the dehydration motor 55; a water receiving box 57 is arranged on the lower side of the dehydration box body, and the water receiving box 57 is fixedly mounted in the fixed box body 51; a drain pipe 58 is fixedly connected to one side of the bottom of the water receiving box 57; a discharge plate 59 fixedly connected to the fixed box body 51 is also provided on the side of the conveyor belt 52 away from the second cleaning device 4.
[0025] Working principle: The deep cleaning device for processing down jacket fabrics of the present invention is as follows: when in use, the hot water tank 8 delivers warm water to the first cleaning box 21 of the first cleaning device 2 through the first water pipe 9, and then the down to be cleaned is placed from the feed port into the vibration box 103 of the vibration dispersion device 1. The vibration box 103 starts to vibrate under the drive of the vibration motor 106, and the down to be cleaned is vibrated and dispersed; the vibrated and dispersed down falls into the first cleaning box 21 of the first cleaning device 2, and then the stirring motor 23 of the first cleaning device 2 is driven to drive the stirring rod body 22 to rotate to stir and clean the down and warm water in the first cleaning box 21, and separate dust and impurities in the down; the separated dust and impurities fall into the bottom of the first cleaning box 21 through the first filter partition 25; at the same time, an isolation cover 24 is provided on the outer cover of the stirring rod body 22 to prevent the stirring rod body 22 from contacting the down and damaging the down fibers. The down pre-cleaned by the first cleaning device 2 is transported together with the sewage to the filter tank 3 through the first conveying pipe 6; a number of baffles 32 evenly arranged at the bottom of the filter tank 3 intercept and filter particulate dust impurities; at the same time, the dust impurities deposited on the lower side of the filter plate of the first cleaning box 21 are discharged from the first cleaning box 21 through the first sewage valve 26.
[0026] The sewage intercepted and filtered by the filter tank 3, together with the down, enters the second cleaning box 41 of the second cleaning device 4 through the discharge port 33 of the filter tank 3, and then the second drain valve 48 on the lower side of the second cleaning box 41 is opened to discharge the sewage; then the hot water tank 8 delivers warm water to the second cleaning box 41 of the second cleaning device 4 through the second water supply pipe 10, and then the detergent in the detergent storage tank 11 is delivered to the spray pipe 43 of the second cleaning device 4 through the detergent delivery pipe 12, and a number of nozzles 44 evenly arranged at equal distances on the spray pipe 43 evenly spray the detergent into the warm water in the second cleaning box 41; so that the detergent is quickly mixed with the warm water and down in the second cleaning box 41; then the air compressor 13 is started, and the air is supplied to the second cleaning box 41 through the air supply pipe 14. Aeration pipes 46 equidistantly arranged at the bottom of the cleaning box 41 deliver gas, and the aeration holes evenly arranged on the aeration pipes 46 can evenly aerate the bottom of the second cleaning box 41, so that the down, warm water and detergent are fully mixed and stirred to remove dust and grease on the down; aeration cleaning can prevent the down from sticking to the container wall or gathering together during the cleaning process, thereby ensuring the cleaning effect. At the same time, the bubbles generated by aeration cleaning will not damage the down fibers, thereby ensuring the quality of the down; after aeration cleaning, the second drain valve 48 on the lower side of the second cleaning box 41 is opened to discharge the sewage; then the hot water tank 8 delivers warm water to the second cleaning box 41 through the second water pipe 10, and the aeration pipe 46 aerates again to aerate and rinse the down in the second cleaning box 41.
[0027] After multiple aeration and rinsing, the down is transported together with the water through the second conveying pipe 7 to the dehydration device 5, and then transported to the dehydration drum 54 through the feed pipe 56 of the dehydration device 5. Then, the dehydration motor 55 is started, driving the dehydration drum 54 to rotate to dehydrate the down. The dehydrated water flows through the conveyor belt 52 and falls into the water receiving box 57 below the conveyor belt 52. After dehydration is completed, the dehydration box 53 is opened first, and then the cover plate 542 on the dehydration drum 54 is opened, so that the dehydrated down in the dehydration drum 54 falls onto the conveyor belt 52 below. The conveyor belt 52 drives the dehydrated down to be discharged from the side of the fixed box 51.
[0028] The control method of the present invention is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by a person skilled in the art. The provision of power is also common knowledge in the art. The present invention is mainly used to protect mechanical devices, so the control method and circuit connection are not explained in detail in the present invention.
[0029] While the present disclosure has been described in detail with reference to exemplary embodiments, the present disclosure is not limited thereto, and it will be apparent to those skilled in the art that various modifications and changes may be made thereto without departing from the scope of the present disclosure.
Claims
1. A deep cleaning device for down jacket fabric processing, characterized in that: The invention comprises a vibration dispersion device (1) for vibrating and dispersing down; a first cleaning device (2) arranged on one side of the vibration dispersion device (1) for pre-cleaning the down; a filter tank (3) arranged on one side of the first cleaning device (2) for filtering impurities; a second cleaning device (4) arranged on one side of the filter tank (3) for deep cleaning the down; and a dehydration device (5) arranged on one side of the second cleaning device (4) for dehydrating the down. The discharge end of the vibration dispersion device (1) is connected to the feed end of the first cleaning device (2); the discharge end of the first cleaning device (2) is connected to the feed end of the filter tank (3) through a first conveying pipe (6); the discharge end of the filter tank (3) is connected to the feed end of the second cleaning device (4); the discharge end of the second cleaning device (4) is connected to the feed end of the dehydration device (5) through a second conveying pipe (7); a hot water tank (8) is further provided between the first cleaning device (2) and the second cleaning device (4), and the hot water tank (8) is connected to the first cleaning device (2) through a first water delivery pipe (9) and a second water delivery pipe (10), respectively. (2) and the second cleaning device (4); a detergent storage tank (11) is provided on one side of the hot water tank (8), and the detergent storage tank (11) is connected to the second cleaning device (4) through a detergent delivery pipe (12); an air compressor (13) is provided on one side of the detergent storage tank (11), and the air compressor (13) is connected to the second cleaning device (4) through an air delivery pipe (14); a water pump (15) is fixedly installed on the first delivery pipe (6), the second delivery pipe (7), the first water delivery pipe (9), the second water delivery pipe (10) and the detergent delivery pipe (12); The vibration dispersion device (1) comprises a support frame (101); a vibration box (103) arranged on the support frame (101) and connected to the support frame (101) via a buffer connector (102); a non-slip bottom plate (104) fixedly arranged at the bottom of the vibration box (103); a vibration motor (106) arranged on the vibration box (103) and fixedly connected to the vibration box (103) via a mounting frame (105); an opening is provided on a side of the vibration box (103) close to the first cleaning device (2), and a blanking slide (107) is fixedly provided at the opening; The first cleaning device (2) comprises a first cleaning box (21); a stirring rod (22) rotatably mounted in the first cleaning box (21); a stirring motor (23) is fixedly mounted on one side of the first cleaning box (21), and a rotating output shaft of the stirring motor (23) is fixedly connected to the stirring rod (22); an isolation cover (24) is further provided in the first box and is located outside the stirring rod (22) and is fixedly connected to the first cleaning box; a first filter baffle (25) is fixedly mounted on the bottom end of the interior of the first box; a sewage outlet communicating with the interior of the first box is provided at the bottom of the first box, and a first sewage valve (26) is fixedly mounted at the sewage outlet; a first water inlet pipe (27) connected to the first water pipe (9) is further fixedly mounted on the upper end of the first box; The filter tank (3) comprises a tank body (31); a baffle (32) fixedly arranged at the bottom of the tank body (31); and a discharge port (33) fixedly arranged at the bottom of one end of the tank body (31) close to the second cleaning device (4). The second cleaning device (4) includes a second cleaning box (41); a second filter baffle (42) fixedly arranged at the bottom end of the second cleaning box (41); a spray pipe (43) fixedly arranged on the upper side of the second filter baffle (42) inside the second cleaning box (41); a nozzle (44) fixedly arranged on the spray pipe (43); an aeration pipe (46) fixedly arranged on the lower side of the second filter baffle (42) inside the second cleaning box (41); the aeration pipe (46) is fixedly connected to the air supply pipe (14) through the air supply branch pipe (45); a sewage pipe (47) connected to the interior of the second box is provided at the bottom of the second box, and a second sewage valve (48) is fixedly installed on the sewage pipe (47); a second water inlet pipe (49) connected to the second water supply pipe (10) is also fixedly provided at the upper end of the second box; The dehydration device (5) includes a fixed box (51); a conveyor belt (52) fixedly mounted on the upper end of the fixed box (51); a dehydration box (53) arranged on the upper end of the conveyor belt (52) and fixedly connected to the fixed box (51); a dehydration drum (54) rotatably mounted in the dehydration box (53); a dehydration motor (55) fixedly mounted on one side of the dehydration box (53), the dehydration motor (55) rotating output shaft being fixedly connected to the dehydration drum (54); the dehydration box (53) A feed pipe (56) is fixedly provided on the side of the body away from the dehydration motor (55), which penetrates the dehydration box (53) and extends into the dehydration drum (54); a water receiving box (57) is provided on the lower side of the dehydration box (53), and the water receiving box (57) is fixedly installed in the fixed box body (51); a drainage pipe (58) is fixedly connected to one side of the bottom of the water receiving box (57); and a discharge plate (59) fixedly connected to the fixed box body (51) is also provided on the side of the conveyor belt (52) away from the second cleaning device (4).
2. A deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: The dehydration drum (54) comprises a cylinder (541) rotatably mounted in a dehydration box (53); an opening is provided on one side of the outer diameter of the cylinder (541), and a cover plate (542) is provided at the opening; one end of the cover plate (542) is hinged to the cylinder (541), and the other end is buckled to the cylinder (541).
3. The deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: The vibration dispersion device (1) is arranged obliquely toward one side of the first cleaning device (2).
4. The deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: A plurality of baffles (32) are provided at the bottom of the tank body (31), and the baffles (32) are evenly distributed at equal distances.
5. The deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: The spraying pipe (43) is provided with a plurality of spray heads (44), and the plurality of spray heads (44) are evenly distributed at equal intervals.
6. The deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: A plurality of aeration pipes (46) are provided on the lower side of the second filter baffle (42), and the aeration pipes (46) are evenly distributed at equal distances.
7. The deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: The aeration pipe (46) is provided with a plurality of aeration holes at equal intervals and evenly spaced, and a check valve is provided at the aeration holes.
8. The deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: The conveyor belt (52) is a water-permeable mesh belt.
9. The method for using the deep cleaning device for down jacket fabric processing according to claim 1, characterized in that: The steps include: Step 1: vibration dispersion, placing the down to be cleaned into the vibration dispersion device (1), and vibrating and dispersing the down to be cleaned by the vibration of the vibration dispersion device (1); Step 2: Pre-cleaning: warm water is added to the first cleaning box (21) of the first cleaning device (2); after the down is transported into the first cleaning box (21), the stirring motor (23) is started, and the stirring motor (23) drives the stirring rod (22) to rotate to stir and clean the down and warm water in the first cleaning box (21), thereby separating dust and impurities in the down; Step 3: Impurity filtration: The pre-cleaned down is transported together with the sewage into the filter tank (3), and the baffle (32) provided at the bottom of the filter tank (3) intercepts and filters the particle dust impurities; Step 4: Deep cleaning. After the down and sewage enter the second cleaning box (41) of the second cleaning device (4), the second sewage valve (48) on the lower side of the second cleaning box (41) is opened to discharge the sewage. Then, warm water is added to the second cleaning box (41), and the spray pipe (43) sprays the detergent evenly into the second cleaning box (41). Then, the aeration pipe (46) aerates and cleans the down in the second cleaning box (41). Step 5: Dehydration: The down feathers after aeration cleaning and rinsing in the second cleaning device (4) are transported to the dehydration device (5) together with the water flow. The dehydration device (5) dehydrates the down feathers; the dehydrated down feathers are output through the conveyor belt (52).