Down jacket fabric processing deep cleaning device and method of use

CN120649159BActive Publication Date: 2026-09-29FUJIAN YIDE GARMENT MANUFACTURING CO LTD
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Patent Information

Application Number
CN202510960028.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-11
Publication Date
2026-09-29
Estimated Expiration
2045-07-11

AI Technical Summary

Technical Problem

[0004]本发明为了克服羽绒在清洗前为了方便运输一般都会将羽绒打包成块状便于运输,而打包成块状后的羽绒不便于后续的清洗,同时现有用于羽绒清洗的装置大都采用搅拌杆对清洗容器中的羽绒进行搅拌,可能造成羽绒在清洗过程中始终紧贴容器壁影响清洗效果,同时容易对羽绒纤维造成折损,导致羽绒质量降低的缺点,本发明要解决的技术问题是提供一种能够防止羽绒在清洗过程中紧贴容器壁或集聚在一起,保证清洗效果,同时不会对羽绒纤维造成折损,保证羽绒的质量的羽绒服面料加工用深层清洗装置及使用方法

Benefits of technology

本发明达到了防止羽绒在清洗过程中紧贴容器壁或集聚在一起,保证清洗效果,同时不会对羽绒纤维造成折损,保证羽绒的质量的效果。

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to down jacket fabric processing field, especially to a kind of deep cleaning device and use method for down jacket fabric processing.The technical problems to be solved by the present application are to provide a kind of deep cleaning device and use method for down jacket fabric processing, which can prevent down from sticking to container wall or gathering together during cleaning process, ensure cleaning effect, at the same time, will not cause breakage to down fiber, ensure the quality of down.A kind of deep cleaning device and use method for down jacket fabric processing, including vibration dispersion device;First cleaning device is arranged on the side of vibration dispersion device;Filter tank is arranged on the side of first cleaning device;Second cleaning device is arranged on the side of filter tank;Dehydration device is arranged on the side of second cleaning device.The present application achieves the effect of preventing down from sticking to container wall or gathering together during cleaning process, ensuring cleaning effect, at the same time, will not cause breakage to down fiber, ensuring the quality of down.
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Description

Technical Field

[0001] This invention relates to the field of down jacket fabric processing, and in particular to a deep cleaning device and method for down jacket fabric processing. Background Technology

[0002] The most common fillings for down jackets are goose down and duck down, which are downy feathers that grow on the abdomen of geese and ducks and are shaped like catkins. Since down is an animal protein fiber, the down spherical fibers are covered with millions of tiny triangular pores, which can expand and contract with changes in temperature to produce a temperature-regulating function. It can absorb the heat emitted by the human body and insulate against the intrusion of cold air from the outside.

[0003] The cleaning of down is crucial in the processing of down jacket fabrics, directly affecting its quality. Before cleaning, down is typically packaged into blocks for easy transport. However, this blocky packaging makes subsequent cleaning difficult, requiring manual dispersion. Existing down cleaning devices mostly use stirring rods to agitate the down in the cleaning container. These methods can cause the down to remain stuck to the container walls, preventing proper water rinsing and affecting the cleaning effect. Furthermore, the stirring rods can damage the down fibers during agitation, leading to a decrease in quality. Therefore, there is an urgent need to develop a deep cleaning device and method for down jacket fabric processing that prevents down from sticking to the container walls or clumping together during cleaning, ensuring effective cleaning without damaging the down fibers and maintaining down quality. Summary of the Invention

[0004] This invention addresses the shortcomings of traditional down cleaning devices. Firstly, down is typically packaged into blocks for easy transport before cleaning, which hinders subsequent cleaning. Secondly, existing down cleaning devices often use stirring rods to agitate the down in the cleaning container, potentially causing the down to adhere tightly to the container wall, affecting cleaning effectiveness and damaging down fibers, thus reducing down quality. The technical problem this invention aims to solve is to provide a deep cleaning device and method for down garment fabric processing that prevents down from adhering to the container wall or clumping together during cleaning, ensuring cleaning effectiveness without damaging down fibers and maintaining down quality.

[0005] This invention is achieved through the following specific technical means: A deep cleaning device for processing down jacket fabric includes 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 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 down; and a dehydration device disposed on one side of the second cleaning device for dehydrating down. The discharge end of the vibrating 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 the first conveying 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 dewatering device through the second conveying pipe; a hot water tank is also provided between the first and second cleaning devices, and the hot water tank is connected to the first and second cleaning devices through the first and second water supply pipes respectively; 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 the detergent conveying 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 the air supply pipe; water pumps are fixedly installed on the first conveying pipe, the second conveying pipe, the first water supply pipe, the second water supply pipe, and the detergent conveying pipe respectively; The vibration dispersion device includes a support frame; a vibration box body mounted on the support frame and connected to the support frame via a buffer connector; an anti-slip base plate fixedly mounted on the bottom of the vibration box body; a vibration motor mounted on the vibration box body and fixedly connected to the vibration box body via a mounting bracket; and an opening provided on the side of the vibration box body near the first cleaning device, with a feeding slide plate fixedly mounted at the opening. The first cleaning device includes a first cleaning chamber; a stirring rod rotatably installed inside the first cleaning chamber; a stirring motor fixedly installed on one side of the first cleaning chamber, the output shaft of the stirring motor being fixedly connected to the stirring rod; an isolation cover located outside the stirring rod and fixedly connected to the first cleaning chamber is also provided inside the first chamber; a first filter plate is fixedly installed at the bottom of the first chamber; a drain outlet communicating with the interior of the first chamber is provided at the bottom of the first chamber, and a first drain valve is fixedly installed at the drain outlet; a first water inlet pipe communicating with a first water supply pipe is also fixedly installed at the top of the first chamber. The filter tank includes a tank body; a baffle fixedly disposed at the bottom of the tank body; and a discharge port fixedly disposed at the bottom of the tank body near the second cleaning device. The second cleaning device includes a second cleaning chamber; a second filter baffle fixedly installed at the bottom of the second cleaning chamber; a spray pipe fixedly installed on the upper side of the second filter baffle inside the second cleaning chamber; a nozzle fixedly installed on the spray pipe; an aeration pipe fixedly installed on the lower side of the second filter baffle inside the second cleaning chamber; the aeration pipe is fixedly connected to the air supply pipe through an air supply branch pipe; a drain pipe connected to the interior of the second chamber is provided at the bottom of the second chamber, and a second drain valve is fixedly installed on the drain pipe; a second water inlet pipe connected to the second water supply pipe is also fixedly installed at the upper end of the second chamber. The dewatering device includes a fixed housing; a conveyor belt fixedly installed on the upper end of the fixed housing; a dewatering tank located on the upper end of the conveyor belt and fixedly connected to the fixed housing; a dewatering drum rotatably installed inside the dewatering tank; a dewatering motor fixedly installed on one side of the dewatering tank, with the motor's output shaft fixedly connected to the dewatering drum; a feed pipe fixedly installed on the side of the dewatering tank away from the dewatering motor, penetrating the dewatering tank and extending into the dewatering drum; a water receiving tank located on the lower side of the dewatering tank, fixedly installed inside the fixed housing; a drain pipe fixedly connected to one side of the bottom of the water receiving tank; and a discharge plate fixedly connected to the fixed housing on the side of the conveyor belt away from the second cleaning device.

[0006] Furthermore, the dehydration drum includes a cylinder body rotatably installed inside the dehydration chamber; an opening is provided on one side of the outer diameter of the cylinder body, and a cover plate is provided at the opening, with one end of the cover plate hinged to the cylinder body and the other end fastened to the cylinder body; the dehydrated down feathers inside the dehydration drum can be easily removed by opening the cover plate.

[0007] Furthermore, the vibration dispersion device is tilted towards the first cleaning device; this facilitates the down in the vibration dispersion device being transported into the first cleaning device under the action of vibration.

[0008] Furthermore, the bottom of the tank is provided with several baffles, which are evenly distributed at equal intervals; the baffles can intercept particulate mud and sand impurities multiple times.

[0009] Furthermore, the spray pipe is equipped with several nozzles, which are evenly distributed at equal intervals; this facilitates the uniform spraying of detergent into the second cleaning chamber.

[0010] Furthermore, the second filter baffle is provided with several aeration pipes, which are evenly distributed at equal intervals, so that the aeration pipes can evenly aerate at the bottom of the second cleaning chamber.

[0011] Furthermore, the aeration pipe is provided with a number of aeration holes evenly spaced at equal intervals, and a check valve is provided at each aeration hole; this facilitates uniform aeration of the aeration pipe and prevents water from flowing into the aeration pipe from the second cleaning device.

[0012] Furthermore, the conveyor belt is a permeable mesh belt, which facilitates water flow through the conveyor belt and into the water receiving tank below the conveyor belt.

[0013] Furthermore, a method for using a deep cleaning device for processing down jacket fabrics includes the following steps: Step 1: Vibration dispersion. Place the down feathers to be cleaned into the vibration dispersion device, and the vibration of the device will disperse the down feathers to be cleaned. Step 2: Pre-cleaning. Warm water is added to the first cleaning chamber of the first cleaning device. After the down is conveyed into the first cleaning chamber, the stirring motor is started. The stirring motor drives the stirring rod to rotate and stir and clean the down and warm water in the first cleaning chamber, separating the dust and impurities in the down. Step 3: Impurity filtration. The pre-washed down feathers are transported together with the wastewater into the filter tank. The baffles at the bottom of the filter tank intercept and filter particulate dust and impurities. Step 4: Deep cleaning. After the down and wastewater enter the second cleaning tank of the second cleaning device, open the second drain valve on the lower side of the second cleaning tank to discharge the wastewater; then fill the second cleaning tank with warm water, and spray detergent evenly into the second cleaning tank through the spray pipe; then the aeration pipe aerates and cleans the down in the second cleaning tank. Step 5: Dehydration. After being aerated and rinsed by the second cleaning device, the down is transported to the dehydration device along with the water flow. The dehydration device dehydrates the down. The dehydrated down is then output via a conveyor belt.

[0014] Compared with the prior art, the present invention has the following beneficial effects: This invention achieves the effect of preventing down from sticking to the container wall or clumping together during the washing process, ensuring the washing effect, and at the same time, not causing damage to the down fibers, thus ensuring the quality of the down. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the main structure of the present invention.

[0016] Figure 2 This is a three-dimensional structural diagram of the vibration dispersion device of the present invention.

[0017] Figure 3 This is a cross-sectional view of the first cleaning device of the present invention.

[0018] Figure 4 This is a cross-sectional view of the filter tank structure of the present invention.

[0019] Figure 5 This is a cross-sectional view of the second cleaning device of the present invention.

[0020] Figure 6This is a cross-sectional structural schematic diagram of the dehydration device of the present invention.

[0021] Figure 7 This is a schematic diagram of the main structure of the dewatering drum of the present invention.

[0022] The labels in the attached diagram are as follows: 1-Vibration dispersion device, 2-First cleaning device, 3-Filter tank, 4-Second cleaning device, 5-Dehydration device, 6-First conveying pipe, 7-Second conveying pipe, 8-Hot water tank, 9-First water supply pipe, 10-Second water supply pipe, 11-Detergent storage tank, 12-Detergent conveying pipe, 13-Air compressor, 14-Air supply pipe, 15-Water pump, 101-Support frame, 102-Buffer connector, 103-Vibration box body, 104-Anti-slip base plate, 105-Mounting frame, 106-Vibration motor, 107-Discharge slide plate, 21-First cleaning box body, 22-Stirring rod body, 23- 24-Isolation cover, 25-First filter baffle, 26-First drain valve, 27-First water inlet pipe, 31-Tank body, 32-Baffle, 33-Discharge port, 41-Second cleaning chamber, 42-Second filter baffle, 43-Spraying pipe, 44-Spray head, 45-Air supply branch pipe, 46-Aeration pipe, 47-Drain pipe, 48-Second drain valve, 49-Second water inlet pipe, 51-Fixed chamber, 52-Conveyor belt, 53-Dehydration chamber, 54-Dehydration drum, 55-Dehydration motor, 56-Feed pipe, 57-Water receiving tank, 58-Drain pipe, 59-Discharge plate, 541-Cylinder body, 542-Cover plate. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings: Example

[0024] A deep cleaning device for processing down jacket fabrics, such as Figure 1-7 As shown, it includes a vibration dispersion device 1 for vibrating and dispersing down; a first cleaning device 2 disposed on one side of the vibration dispersion device 1 for pre-cleaning down; a filter tank 3 disposed on one side of the first cleaning device 2 for filtering impurities; a second cleaning device 4 disposed on one side of the filter tank 3 for deep cleaning down; and a dehydration device 5 disposed on one side of the second cleaning device 4 for dehydrating down. The discharge end of the vibrating dispersion device 1 is connected to the inlet end of the first cleaning device 2; the discharge end of the first cleaning device 2 is connected to the inlet end of the filter tank 3 through the first conveying pipe 6; the discharge end of the filter tank 3 is connected to the inlet end of the second cleaning device 4; the discharge end of the second cleaning device 4 is connected to the inlet end of the dehydration device 5 through the second conveying pipe 7; a hot water tank 8 is also 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 and the second cleaning device 4 through the first water supply pipe 9 and the second water supply pipe 10 respectively; 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 supply pipe 14; a water pump 15 is fixedly installed on the first conveying pipe 6, the second conveying pipe 7, the first water supply pipe 9, the second water supply pipe 10 and the detergent conveying pipe 12 respectively; The vibration dispersion device 1 includes a support frame 101; a vibration box 103 mounted on the support frame 101 and connected to the support frame 101 via a buffer connector 102; an anti-slip base plate 104 fixedly mounted on the bottom of the vibration box 103; a vibration motor 106 mounted on the vibration box 103 and fixedly connected to the vibration box 103 via a mounting bracket 105; and an opening is provided on the side of the vibration box 103 near the first cleaning device 2, with a feeding slide plate 107 fixedly mounted at the opening. The first cleaning device 2 includes a first cleaning chamber 21; a stirring rod 22 rotatably installed inside the first cleaning chamber 21; a stirring motor 23 fixedly installed on one side of the first cleaning chamber 21, the output shaft of the stirring motor 23 being fixedly connected to the stirring rod 22; an isolation cover 24 located outside the stirring rod 22 and fixedly connected to the first cleaning chamber is also provided inside the first chamber; a first filter plate 25 is fixedly installed at the bottom of the first chamber; a drain outlet communicating with the interior of the first chamber is provided at the bottom of the first chamber, and a first drain valve 26 is fixedly installed at the drain outlet; a first water inlet pipe 27 communicating with the first water supply pipe 9 is also fixedly provided at the top of the first chamber. The filter tank 3 includes a tank body 31; a baffle 32 fixedly disposed at the bottom of the tank body 31; and a discharge port 33 fixedly disposed at the bottom of the tank body 31 near the second cleaning device 4. The second cleaning device 4 includes a second cleaning chamber 41; a second filter baffle 42 fixedly disposed at the bottom of the interior of the second cleaning chamber 41; a spray pipe 43 fixedly disposed on the upper side of the second filter baffle 42 inside the second cleaning chamber 41; a nozzle 44 fixedly disposed on the spray pipe 43; an aeration pipe 46 fixedly disposed on the lower side of the second filter baffle 42 inside the second cleaning chamber 41; the aeration pipe 46 is fixedly connected to the air supply pipe 14 through an air supply branch pipe 45; a drain pipe 47 connected to the interior of the second chamber is disposed at the bottom of the second chamber, and a second drain valve 48 is fixedly installed on the drain pipe 47; a second water inlet pipe 49 connected to the second water supply pipe 10 is also fixedly disposed at the upper end of the second chamber. The dehydration device 5 includes a fixed housing 51; a conveyor belt 52 fixedly installed on the upper end of the fixed housing 51; a dehydration tank 53 fixedly connected to the fixed housing 51 and located on the upper end of the conveyor belt 52; a dehydration drum 54 rotatably installed inside the dehydration tank 53; a dehydration motor 55 fixedly installed on one side of the dehydration tank 53, with the output shaft of the dehydration motor 55 fixedly connected to the dehydration drum 54; a feed pipe 56 fixedly installed on the side of the dehydration tank 53 away from the dehydration motor 55, penetrating the dehydration tank 53 and extending into the dehydration drum 54; a water receiving tank 57 fixedly installed on the lower side of the dehydration tank 53, with the water receiving tank 57 fixedly installed inside the fixed housing 51; a drain pipe 58 fixedly connected to one side of the bottom of the water receiving tank 57; and a discharge plate 59 fixedly connected to the fixed housing 51 on the side of the conveyor belt 52 away from the second cleaning device 4.

[0025] Working principle: In this invention, a deep cleaning device for down jacket fabric processing is used. A hot water tank 8 supplies warm water to the first cleaning chamber 21 of the first cleaning device 2 via a first water pipe 9. Then, the down to be cleaned is placed from the inlet into the vibrating chamber 103 of the vibrating dispersion device 1. The vibrating chamber 103, driven by a vibrating motor 106, begins to vibrate, dispersing the down. The dispersed down falls into the first cleaning chamber 21 of the first cleaning device 2. Subsequently, the stirring motor 23 of the first cleaning device 2 operates, driving the stirring rod 22 to rotate and stir the down and warm water in the first cleaning chamber 21, separating dust and impurities from the down. The separated dust and impurities fall to the bottom of the first cleaning chamber 21 through a first filter plate 25. Simultaneously, an isolation cover 24 is provided on the outside of the stirring rod 22 to prevent contact between the stirring rod 22 and the down, thus preventing damage to the down fibers. After being pre-cleaned by the first cleaning device 2, the down feathers and wastewater are transported to the filter tank 3 through the first conveying pipe 6. Several baffles 32, which are evenly spaced at the bottom of the filter tank 3, intercept and filter particulate dust and impurities. At the same time, the dust and 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 drain valve 26.

[0026] After being filtered by the filter tank 3, the wastewater, along with the down feathers, enters the second cleaning chamber 41 of the second cleaning device 4 through the discharge port 33 of the filter tank 3. Then, the second drain valve 48 on the lower side of the second cleaning chamber 41 is opened to discharge the wastewater. Next, the hot water tank 8 supplies warm water to the second cleaning chamber 41 of the second cleaning device 4 through the second water supply pipe 10. Then, the detergent in the detergent storage tank 11 is supplied to the spray pipe 43 of the second cleaning device 4 through the detergent delivery pipe 12. Several nozzles 44 evenly spaced on the spray pipe 43 spray the detergent evenly into the warm water in the second cleaning chamber 41, allowing the detergent to mix quickly with the warm water and down feathers in the second cleaning chamber 41. Then, the air compressor 13 starts, supplying air to the second cleaning device 4 through the air supply pipe 14. Gas is delivered through evenly spaced aeration pipes 46 at the bottom of the cleaning tank 41. The aeration holes evenly distributed on the aeration pipes 46 ensure uniform aeration at the bottom of the second cleaning tank 41, allowing the down, warm water, and detergent to mix thoroughly and remove dust and grease from the down. Aeration cleaning prevents the down from sticking to the container wall or clumping together during the cleaning process, ensuring cleaning effectiveness. Simultaneously, the bubbles generated by aeration cleaning do not damage the down fibers, ensuring the quality of the down. After aeration cleaning, the second drain valve 48 on the lower side of the second cleaning tank 41 is opened to discharge the wastewater. Subsequently, the hot water tank 8 delivers warm water to the second cleaning tank 41 again through the second water supply pipe 10, and the aeration pipes 46 aerate again, rinsing the down inside the second cleaning tank 41.

[0027] After multiple aeration and rinsing processes, the down feathers, along with the water flow, are conveyed through the second conveying pipe 7 to the dewatering device 5. The dewatering device 5 then conveys the down feathers into the dewatering drum 54 through the feed pipe 56. Subsequently, the dewatering motor 55 starts, driving the dewatering drum 54 to rotate and dewater the down feathers. The dewatered water flows through the conveyor belt 52 and falls into the water receiving tank 57 below the conveyor belt 52. After dewatering is completed, the dewatering tank 53 is opened first, and then the cover plate 542 on the dewatering drum 54 is opened, allowing the dewatered down feathers inside the dewatering drum 54 to fall onto the conveyor belt 52 below. The conveyor belt 52 then drives the dewatered down feathers out from one side of the fixed box 51.

[0028] The control method of this invention is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the art. Furthermore, since this invention is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail here.

[0029] Although this disclosure has been described in detail with reference to exemplary embodiments, it 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 this disclosure.

Claims

1. A deep cleaning device for processing down jacket fabrics, characterized in that, It includes a vibration dispersion device (1) for vibrating and dispersing down; a first cleaning device (2) disposed on one side of the vibration dispersion device (1) for pre-cleaning down; a filter tank (3) disposed on one side of the first cleaning device (2) for filtering impurities; a second cleaning device (4) disposed on one side of the filter tank (3) for deep cleaning down; and a dehydration device (5) disposed on one side of the second cleaning device (4) for dehydrating 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 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 dewatering device (5) through the second conveying pipe (7); a hot water tank (8) is also 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 through the first water supply pipe (9) and the second water supply pipe (10). (2) Connected to 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 the 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 the 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) includes a support frame (101); a vibration box (103) mounted on the support frame (101) and connected to the support frame (101) via a buffer connector (102); an anti-slip base plate (104) fixedly mounted on the bottom of the vibration box (103); a vibration motor (106) mounted on the vibration box (103) and fixedly connected to the vibration box (103) via a mounting bracket (105); and an opening is provided on the side of the vibration box (103) near the first cleaning device (2), with a feeding slide plate (107) fixedly mounted at the opening. The first cleaning device (2) includes a first cleaning box (21); a stirring rod (22) rotatably installed inside the first cleaning box (21); a stirring motor (23) fixedly installed on one side of the first cleaning box (21), and the output shaft of the stirring motor (23) is fixedly connected to the stirring rod (22); an isolation cover (24) located outside the stirring rod (22) and fixedly connected to the first cleaning box is also provided inside the first box; a first filter plate (25) is fixedly installed at the bottom inside the first box; a drain port communicating with the inside of the first box is provided at the bottom of the first box, and a first drain valve (26) is fixedly installed at the drain port; a first water inlet pipe (27) communicating with the first water supply pipe (9) is also fixedly provided at the top of the first box. The filter tank (3) includes a tank body (31); a baffle (32) fixedly installed at the bottom of the tank body (31); and a discharge port (33) fixedly installed at the bottom of the tank body (31) near the second cleaning device (4). The second cleaning device (4) includes a second cleaning chamber (41); a second filter baffle (42) fixedly installed at the bottom of the second cleaning chamber (41); a spray pipe (43) fixedly installed on the upper side of the second filter baffle (42) inside the second cleaning chamber (41); a nozzle (44) fixedly installed on the spray pipe (43); an aeration pipe (46) fixedly installed on the lower side of the second filter baffle (42) inside the second cleaning chamber (41); the aeration pipe (46) is fixedly connected to the air supply pipe (14) through an air supply branch pipe (45); a drain pipe (47) connected to the interior of the second chamber is provided at the bottom of the second chamber, and a second drain valve (48) is fixedly installed on the drain pipe (47); a second water inlet pipe (49) connected to the second water supply pipe (10) is also fixedly installed at the upper end of the second chamber. The dehydration device (5) includes a fixed housing (51); a conveyor belt (52) fixedly installed on the upper end of the fixed housing (51); a dehydration tank (53) located on the upper end of the conveyor belt (52) and fixedly connected to the fixed housing (51); a dehydration drum (54) rotatably installed inside the dehydration tank (53); a dehydration motor (55) fixedly installed on one side of the dehydration tank (53), the output shaft of the dehydration motor (55) being fixedly connected to the dehydration drum (54); and the dehydration tank (53). A feed pipe (56) is fixedly installed on the side of the body away from the dewatering motor (55), penetrating the dewatering box (53) and extending into the dewatering drum (54); a water receiving box (57) is provided on the lower side of the dewatering box (53), and the water receiving box (57) is fixedly installed in the fixed box (51); a drain pipe (58) is fixedly connected to one side of the bottom of the water receiving box (57); a discharge plate (59) is also provided on the side of the conveyor belt (52) away from the second cleaning device (4) and fixedly connected to the fixed box (51).

2. The deep cleaning device for processing down jacket fabrics according to claim 1, characterized in that, The dewatering drum (54) includes a cylinder (541) rotatably installed in the dewatering 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 fastened to the cylinder (541).

3. The deep cleaning device for processing down jacket fabrics according to claim 1, characterized in that, The vibration dispersion device (1) is tilted toward the first cleaning device (2) on one side.

4. The deep cleaning device for processing down jacket fabrics according to claim 1, characterized in that, The bottom of the trough (31) is provided with several baffles (32), which are evenly distributed at equal intervals.

5. The deep cleaning device for processing down jacket fabrics according to claim 1, characterized in that, The spray pipe (43) is provided with a number of nozzles (44), which are evenly distributed at equal intervals.

6. The deep cleaning device for processing down jacket fabrics according to claim 1, characterized in that, The second filter baffle (42) has several aeration pipes (46) on its lower side, and the several aeration pipes (46) are evenly distributed at equal intervals.

7. The deep cleaning device for processing down jacket fabrics according to claim 1, characterized in that, The aeration pipe (46) is provided with a number of aeration holes at equal intervals and uniformly arranged, and a check valve is provided at each aeration hole.

8. The deep cleaning device for processing down jacket fabrics according to claim 1, characterized in that, The conveyor belt (52) is a permeable mesh belt.

9. The method of using the deep cleaning device for down jacket fabric processing according to claim 1, characterized in that, Includes the following steps: Step 1: Vibration dispersion. Place the down to be cleaned into the vibration dispersion device (1) and disperse 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 chamber (21) of the first cleaning device (2). After the down is conveyed into the first cleaning chamber (21), the stirring motor (23) is started. The stirring motor (23) drives the stirring rod (22) to rotate and stir and clean the down and warm water in the first cleaning chamber (21), separating the dust and impurities in the down. Step 3: Impurity filtration. The pre-washed down feathers and sewage are transported together to the filter tank (3). The baffle (32) at the bottom of the filter tank (3) intercepts and filters particulate dust impurities. Step 4: Deep cleaning. After the down and sewage enter the second cleaning tank (41) of the second cleaning device (4), open the second drain valve (48) on the lower side of the second cleaning tank (41) to discharge the sewage; then fill the second cleaning tank (41) with warm water, and spray the detergent evenly into the second cleaning tank (41) through the spray pipe (43); then the aeration pipe (46) aerates and cleans the down in the second cleaning tank (41); Step 5: Dehydration. After being aerated, cleaned and rinsed by the second cleaning device (4), the down is transported together with the water flow to the dehydration device (5). The dehydration device (5) dehydrates the down. The dehydrated down is then output through the conveyor belt (52).

Citation Information

Patent Citations

  • Down feather non-destructive cleaning method

    CN112501695A

  • Down feather separation production process

    WO2023125218A1