A device for disinfecting, deodorizing, and maintaining down jackets

By incorporating a gas circulation and reciprocating mechanism, the problem of slow disinfection and deodorization in down jackets has been solved, enabling simultaneous disinfection and deodorization of all parts of the down jacket, thus improving the speed and effectiveness of disinfection and deodorization.

CN116497606BActive Publication Date: 2025-11-14TANBOER
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202211568036.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-08
Publication Date
2025-11-14
Estimated Expiration
2042-12-08

AI Technical Summary

Technical Problem

In existing technologies, the disinfection and deodorization process of down jackets is slow and ineffective, especially due to the structure of down jackets, the odor removal speed varies in different parts.

Method used

The system employs a gas circulation method, using a gas flow device to achieve rapid ventilation of the down jacket's interlayer. Combined with a reciprocating mechanism and alternating gas flow, it ensures simultaneous disinfection and deodorization of all parts of the down jacket.

Benefits of technology

It achieves rapid and efficient disinfection and deodorization of down jackets, ensuring balanced air permeability in all parts of the down jacket and improving the effectiveness and efficiency of disinfection and deodorization.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116497606B_ABST
    Figure CN116497606B_ABST
Patent Text Reader

Abstract

The present invention provides a down jacket disinfection, deodorization and maintenance device, comprising a base plate (101), a model (103), a front cover shell (105), a rear cover shell (106), a first pipe (107), and a reciprocating mechanism (200), which is mounted on the bracket (102). The reciprocating mechanism (200) is driven by a motor (201) to realize the reciprocating motion of the flow equalization ring (206) on the model (103), thereby ensuring the ventilation of each part of the down jacket.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of down jackets, and in particular to a device for disinfecting, deodorizing and maintaining down jackets. Background Technology

[0002] During the processing of down garments, because down is a protein with animal fat, even after repeated degreasing and washing, impurities and bacteria cannot be completely eliminated. Therefore, in hot and humid conditions, down garments are prone to bacterial growth, mold, and odor. So, down garments need to be disinfected, sterilized, and deodorized regularly to ensure hygiene and safety when worn.

[0003] Invention patent CN202110922632.3 discloses a method for steam deodorization of down garments, which uses steam deodorization to maintain and care for down garments. The method involves "placing the fluffed down garment in a deodorizing steam environment to treat it for odor." However, this method has the following drawbacks: 1. Placing the down garment in a deodorizing steam environment and relying on the free diffusion of molecules to remove odors from the garment's layers is a very slow process with poor removal efficiency; 2. Due to the structure of down garments, the speed of odor removal varies across different parts of the garment when placed in a deodorizing steam environment.

[0004] To address the technical problems of the above methods, this invention designs a maintenance device to increase the speed of the disinfection and deodorization process of down jackets, improve the efficiency of the process, and enhance the disinfection and deodorization effect of down jackets. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to provide a down jacket disinfection and deodorization maintenance device that uses a gas circulation method to quickly remove odors from the down jacket lining and simultaneously disinfect the down jacket lining.

[0006] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, comprising:

[0007] The base plate, on which multiple brackets are fixed at one end;

[0008] The model is fixedly connected to the bracket, and the outer surface of the model can be fitted with a down jacket to be disinfected and deodorized. Multiple first through holes are evenly opened on the side wall of the model.

[0009] A front cover shell is mounted on the bracket. The inner surface of the front cover shell has multiple through holes evenly distributed. The side of the front cover shell closest to the model can be sealed and overlapped with the rear cover shell. The inner surface of the rear cover shell has multiple through holes evenly distributed. When the front cover shell and the rear cover shell are sealed and overlapped, they can completely cover the model.

[0010] A first pipe is fixedly connected to the bracket. One end of the first pipe is connected and communicates with the inner cavity of the front cover shell and the rear cover shell respectively. The other end of the first pipe is fixedly connected and communicates with one end of the circulation pump. The other end of the circulation pump is connected and communicates with the flow equalization ring. A plurality of second through holes are evenly opened on the side wall of the flow equalization ring. The flow equalization ring is disposed inside the model.

[0011] A reciprocating mechanism is installed on the bracket. The reciprocating mechanism is driven by a motor to realize the reciprocating motion of the air-equalizing ring in the model, so as to ensure the air permeability of each part of the down jacket.

[0012] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, wherein...

[0013] The reciprocating mechanism includes an electric motor, an output shaft, a first fixed block, a second pipe, a third through hole, a first screw, a first crank, a first rocker arm, a first guide rail, and a first flexible hose;

[0014] The bracket is fixedly connected to the motor, the output shaft of the motor is drivenly connected to the first fixed block, the first fixed block is fixedly connected to the outer surface of the second pipe, the second pipe is sealed and disposed in the third through hole and moves along it, the third through hole is opened at the bottom of the model, one end of the second pipe is connected and communicates with the other end of the circulation pump, and the other end of the second pipe is fixedly connected and communicates with the flow equalization ring.

[0015] The front cover shell is threaded to one side of the first screw, and the other side of the first screw is threaded to the rear cover shell. The first screw is mounted on the bracket by a bearing. One end of the first screw is fixedly connected to one end of the first crank, and the other end of the first crank is fixedly connected to one end of the first rocker arm.

[0016] The front cover and the rear cover are respectively disposed in the first guide rail and move along it. The first guide rail is fixedly connected to the bracket. The front cover is fixedly connected to one end of the first hose and communicates with it. The other end of the first hose is fixedly connected to the rear cover and communicates with it. The middle part of the first hose is fixedly connected to one end of the first pipe and communicates with it.

[0017] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, wherein...

[0018] The output shaft of the motor is driven to be connected to the first fixed block through a drive mechanism. The drive mechanism includes a first cam, a first pin, a first connecting rod, a first rotating shaft, a second pin, a first elongated hole, a second connecting rod, a second rotating shaft, a third connecting rod, a third rotating shaft, a first slider, a first guide groove, a first fixed plate, and a first spring.

[0019] The output shaft of the motor is coaxially fixed with the first cam. The outer surface of the first cam overlaps with the first pin. The first pin is fixedly connected to one end of the first connecting rod. The middle part of the first connecting rod is mounted on the first rotating shaft through a bearing. The first rotating shaft is fixedly connected to the bracket. The other end of the first connecting rod is fixedly connected to one end of the second pin. The second pin is disposed in the first elongated hole and moves along it. The first elongated hole is opened on the second connecting rod along its length. One end of the second connecting rod is fixedly connected to one end of the second rotating shaft. The other end of the second rotating shaft is mounted on the bracket through a bearing. The other end of the second pin is fixedly connected to one end of the third connecting rod. The middle part of the third connecting rod is mounted on the third rotating shaft through a bearing. The third rotating shaft is fixedly connected to the bracket.

[0020] The other end of the second connecting rod is hinged to the first slider. The first slider is disposed in the first guide groove and moves along it. The first guide groove is opened on the first fixed plate along the length direction. The first fixed plate is fixedly connected to the first fixed block. The first fixed plate is fixedly connected to one end of the first spring. The other end of the first spring is fixedly connected to the bottom of the model.

[0021] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, wherein...

[0022] The front cover and the rear cover are hollow structures, and both have multiple vent holes on the side closest to the model.

[0023] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, wherein...

[0024] The side of the first screw that is threaded to the front cover housing has a left-hand thread, and the side of the first screw that is threaded to the rear cover housing has a right-hand thread.

[0025] The structure consisting of the second pipe and the third through hole is symmetrically distributed in two groups about the center of the model.

[0026] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, wherein...

[0027] The material of the first pipe can be steel pipe or aluminum pipe, etc.

[0028] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, wherein...

[0029] The first rotating shaft and the third rotating shaft are coaxially arranged.

[0030] This invention provides a device for disinfecting, deodorizing, and maintaining down jackets, wherein...

[0031] The first spring is always in a compressed state.

[0032] The present invention provides a down jacket disinfection, deodorization, and maintenance device that differs from existing technologies in that:

[0033] 1. The present invention provides a down jacket disinfection, deodorization and maintenance device that uses gas circulation instead of placing it in a steam environment to ensure the ventilation of the down jacket's interlayer, thereby quickly and efficiently achieving deodorization and sterilization of the down jacket.

[0034] 2. By intermittently introducing different gases, the down jacket is disinfected and deodorized on the one hand, and the alternating introduction of different gases effectively maintains the down jacket.

[0035] 3. The multi-directional airflow inside the down jacket ensures that sterilization and deodorization are carried out simultaneously in all parts of the down jacket.

[0036] The following description, in conjunction with the accompanying drawings, further illustrates a down jacket disinfection, deodorization, and maintenance device according to the present invention. Attached Figure Description

[0037] Figure 1 This is a front view of a down jacket disinfection, deodorization, and maintenance device;

[0038] Figure 2 yes Figure 1 The image shows a side view of a down jacket disinfection, deodorization, and maintenance device.

[0039] Figure 3 yes Figure 1 The image shows an isometric view of a down jacket disinfection, deodorization, and maintenance device.

[0040] Figure 4 It is along Figure 1 Sectional view of line AA in the middle;

[0041] Figure 5 yes Figure 1 A partial isometric drawing from a first-person perspective;

[0042] Figure 6 yes Figure 1 A partial axonometric drawing from a second perspective;

[0043] Figure 7 yes Figure 5 A magnified view of a portion of the image;

[0044] Figure 8 It is along Figure 2 Sectional view of the middle BB line;

[0045] Figure 9 It is along Figure 1 A cross-sectional view along line AA in the middle. Detailed Implementation

[0046] like Figures 1-9 As shown, the present invention provides a down jacket disinfection, deodorization, and maintenance device comprising:

[0047] A base plate 101, on which one end of a plurality of brackets 102 are fixed;

[0048] Model 103 is fixedly connected to the bracket 102. The outer surface of model 103 can be fitted with a down jacket to be disinfected and deodorized. Multiple first through holes 104 are evenly opened on the side wall of model 103.

[0049] The front cover shell 105 is mounted on the bracket 102. The inner surface of the front cover shell 105 is evenly provided with a plurality of through holes. The side of the front cover shell 105 near the model 103 can be sealed and overlapped with the rear cover shell 106. The inner surface of the rear cover shell 106 is evenly provided with a plurality of through holes. When the front cover shell 105 and the rear cover shell 106 are sealed and overlapped, they can completely cover the model 103.

[0050] The first pipe 107 is fixedly connected to the bracket 102. One end of the first pipe 107 is connected and communicates with the inner cavity of the front cover shell 105 and the rear cover shell 106 respectively. The other end of the first pipe 107 is fixedly connected and communicates with one end of the circulation pump 108. The other end of the circulation pump 108 is connected and communicates with the flow equalization ring 206. A plurality of second through holes 207 are evenly opened on the side wall of the flow equalization ring 206. The flow equalization ring 206 is disposed inside the model 103.

[0051] The reciprocating mechanism 200 is installed on the bracket 102. The reciprocating mechanism 200 drives the up-and-down movement mechanism through the motor 201 to realize the reciprocating movement of the flow equalization ring 206 in the model 103, so as to ensure the air permeability of each position of the down jacket.

[0052] The motor 201 of this invention drives the flow equalization ring 206 to move up and down within the model 103 via the output shaft 202. This facilitates the even distribution of airflow discharged from the ring 206 throughout the model 103. Furthermore, the up-and-down movement of the flow equalization ring 206 creates gas turbulence within the model 103, efficiently blowing away toxic substances and odors from the down jacket. Simultaneously, the circulation pump 108 circulates gas from the inside to the outside of the down jacket, allowing the gas to pass through the jacket's layers and carry away toxic substances and odors, thus achieving disinfection, deodorization, and maintenance of the down jacket. Combined with the up-and-down movement of the flow equalization ring 206, this ensures balanced air permeability throughout the down jacket. This method achieves fast and effective disinfection and deodorization of down jackets.

[0053] There are large gaps between the front cover shell 105 and the rear cover shell 106 and the model 103, so as to ensure that the down jacket can be smoothly put on the model 103.

[0054] The base plate 101 can be placed on a horizontal surface such as the ground or a table.

[0055] The number of the brackets 102 can be 3, 4, 5, 6, 7, 8, 9 or more.

[0056] The other end of the first pipe 107 is fixedly connected to and communicates with the front cover shell 105 and the rear cover shell 106, respectively.

[0057] The other end of the circulating pump 108 is fixedly connected to and communicates with the flow equalization ring 206.

[0058] The power module of the motor 201 includes a battery, an electronic control module, and a wireless communication module. The battery is fixedly connected to the base plate 101, and the wireless communication module is wirelessly connected to the user terminal.

[0059] The present invention enables users to smoothly control the rotation speed of the motor 201 through the aforementioned wireless communication module, thereby realizing the control of the speed at which the current equalization ring 206 moves up and down within the model 103.

[0060] The installation, driving, and control methods of the circulating pump 108 are existing technologies and will not be described in detail here.

[0061] The up-and-down movement mechanism includes a first fixed block 203, a second pipe 204, a third through hole 205, a first screw 208, a first crank 209, a first rocker arm 210, a first guide rail 211, and a first flexible hose 212.

[0062] As a further explanation of the present invention,

[0063] The reciprocating mechanism 200 includes an electric motor 201, an output shaft 202, a first fixed block 203, a second pipe 204, a third through hole 205, a first screw 208, a first crank 209, a first rocker arm 210, a first guide rail 211, and a first flexible hose 212.

[0064] The bracket 102 is fixedly connected to the motor 201. The output shaft 202 of the motor 201 is drivenly connected to the first fixing block 203. The first fixing block 203 is fixedly connected to the outer surface of the second pipe 204. The second pipe 204 is sealed and disposed in the third through hole 205 and moves along it. The third through hole 205 is opened at the bottom of the model 103. One end of the second pipe 204 is connected and communicates with the other end of the circulation pump 108. The other end of the second pipe 204 is fixedly connected and communicates with the flow equalization ring 206.

[0065] The front cover shell 105 is threadedly connected to one side of the first screw 208, and the other side of the first screw 208 is threadedly connected to the rear cover shell 106. The first screw 208 is mounted on the bracket 102 by a bearing. One end of the first screw 208 is fixedly connected to one end of the first crank 209, and the other end of the first crank 209 is fixedly connected to one end of the first rocker arm 210.

[0066] The front cover shell 105 and the rear cover shell 106 are respectively disposed in the first guide rail 211 and move along it. The first guide rail 211 is fixedly connected to the bracket 102. The front cover shell 105 is fixedly connected to and communicates with one end of the first hose 212. The other end of the first hose 212 is fixedly connected to and communicates with the rear cover shell 106. The middle part of the first hose 212 is fixedly connected to and communicates with one end of the first pipe 107.

[0067] The operator of this invention moves the front cover shell 105 and the rear cover shell 106 towards each other by shaking the first rocker arm 210, so that the front cover shell 105 and the rear cover shell 106 seal and overlap and completely cover the model 103. At this time, under the action of the circulation pump 108, the air inside the model 103 enters the inner cavity of the front cover shell 105 and the rear cover shell 106 through the down jacket and its interlayer, and returns to the circulation pump 108 through the first hose 212 and the first pipe 107. Therefore, by continuously penetrating the down jacket and its interlayer, the odor inside the down jacket interlayer is removed.

[0068] The motor 201 drives the first fixed block 203 and the second pipe 204 to move up and down along the length of the third through hole 205 via the output shaft 202, which in turn drives the flow equalization ring 206 to move up and down within the model 103. This allows the air discharged from the flow equalization ring 206 to penetrate the down jacket and its interlayer, thus achieving simultaneous removal of odors from various parts of the down jacket.

[0069] The front cover shell 105 and the rear cover shell 106 are provided with dovetail-shaped sliders at their bottoms. The first guide rail 211 is a dovetail-shaped guide rail. The dovetail-shaped sliders are arranged in the first guide rail 211 and move along it, thereby ensuring that the front cover shell 105 and the rear cover shell 106 can only reciprocate along the length direction of the first guide rail 211.

[0070] The motor 201 is a linear motor, and the output shaft 202 of the motor 201 is fixedly connected to the first fixed block 203, thereby ensuring that the motor 201 can directly drive the first fixed block 203 to move up and down through the output shaft 202.

[0071] The second pipe 204 is sealed within the third through hole 205 by a sealing ring and moves along it. The outer surface of the second pipe 204 is fixedly connected to the inner surface of the sealing ring, and the outer surface of the sealing ring overlaps with the inner surface of the third through hole 205.

[0072] One end of the second pipe 204 is connected to the other end of the circulation pump 108 via a hose.

[0073] As a further explanation of the present invention,

[0074] The output shaft 202 of the motor 201 is driven to be connected to the first fixed block 203 through the drive mechanism 300. The drive mechanism 300 includes a first cam 301, a first pin 302, a first connecting rod 303, a first rotating shaft 304, a second pin 305, a first elongated hole 306, a second connecting rod 307, a second rotating shaft 308, a third connecting rod 310, a third rotating shaft 311, a first slider 312, a first guide groove 313, a first fixed plate 314, and a first spring 315.

[0075] The output shaft 202 of the motor 201 is coaxially fixed with the first cam 301. The outer surface of the first cam 301 overlaps with the first pin 302. The first pin 302 is fixedly connected to one end of the first connecting rod 303. The middle part of the first connecting rod 303 is mounted on the first rotating shaft 304 via a bearing. The first rotating shaft 304 is fixedly connected to the bracket 102. The other end of the first connecting rod 303 is fixedly connected to one end of the second pin 305. The second pin 305 is disposed on the first long... The first elongated hole 306 is opened along the length direction on the second connecting rod 307. One end of the second connecting rod 307 is fixedly connected to one end of the second rotating shaft 308. The other end of the second rotating shaft 308 is mounted on the bracket 102 through a bearing. The other end of the second pin 305 is fixedly connected to one end of the third connecting rod 310. The middle part of the third connecting rod 310 is mounted on the third rotating shaft 311 through a bearing. The third rotating shaft 311 is fixedly connected to the bracket 102.

[0076] The other end of the second connecting rod 307 is hinged to the first slider 312. The first slider 312 is disposed in the first guide groove 313 and moves along it. The first guide groove 313 is opened on the first fixing plate 314 along the length direction. The first fixing plate 314 is fixedly connected to the first fixing block 203. The first fixing plate 314 is fixedly connected to one end of the first spring 315. The other end of the first spring 315 is fixedly connected to the bottom of the model 103.

[0077] The motor 201 of the present invention drives the rotation of the first cam 301 and the transmission of multiple components through the output shaft 202, and finally realizes the up-and-down movement of the first fixed block 203 and the second pipe 204 pressing the third through hole 205 in the length direction. In this way, the stroke of the first fixed block 203 is successfully amplified through multiple connecting rods, and the stroke of the first fixed block 203 in the up-and-down movement is much greater than the difference between the major and minor diameters of the first cam 301.

[0078] The motor 201 drives the first cam 301 to rotate via the output shaft 202. The outer circumferential surface of the first cam 301 pushes against the first pin 302. When the first pin 302 swings downward, the first connecting rod 303, through the prying action of the first rotating shaft 304, causes the second pin 305 to swing upward. The upward swing of the second pin 305, further through the configuration relationship between the second pin 305 and the first elongated hole 306, pries the end of the second connecting rod 307 away from the second rotating shaft 308 upward. The second connecting rod 307 swings upward away from the end of the second rotating shaft 308. Through the hinge with the first slider 312 and the configuration relationship between the first slider 312 and the first guide groove 313, it drives the first fixing block 203 and the first fixing plate 314 to move upward synchronously. Conversely, when the first pin 302 moves upward from bottom to top, under the pushing action of the elastic force of the first spring 315, the first fixing block 203 and the first fixing plate 314 move downward from top to bottom, ultimately realizing the up-and-down reciprocating motion of the first fixing block 203.

[0079] The first slider 312 is a T-shaped slider, and a T-shaped guide rail is provided in the first guide groove 313, so as to ensure that the first slider 312 can only slide back and forth along the length direction of the first guide groove 313.

[0080] As a further explanation of the present invention,

[0081] The front cover shell 105 and the rear cover shell 106 have a cavity structure, and both have multiple vent holes on the side near the model 103.

[0082] The present invention ensures that the gas inside the model 103 can pass through the down jacket and then smoothly enter the front cover shell 105 and the rear cover shell 106.

[0083] The side of the first screw 208 that is threaded to the front cover housing 105 is a left-hand thread, and the side of the first screw 208 that is threaded to the rear cover housing 106 is a right-hand thread.

[0084] The present invention ensures that when the operator shakes the first rocker arm 210 in one direction, the front cover shell 105 and the rear cover shell 106 can simultaneously move closer to or further away from each other.

[0085] The structure consisting of the second pipe 204 and the third through hole 205 is symmetrically distributed in two groups about the center of the model 103.

[0086] The material of the first pipe 107 can be steel pipe or aluminum pipe, etc.

[0087] The first rotating shaft 304 and the third rotating shaft 311 are coaxially arranged.

[0088] The present invention ensures that while the first cam 301 drives the first connecting rod 303 to swing up and down, the third connecting rod 310 can swing up and down synchronously.

[0089] The first spring 315 is always in a compressed state.

[0090] The present invention ensures that under the pushing action of the elastic force of the first spring 315, the outer surface of the first cam 301 can always be engaged with the first pin 302.

[0091] As a further explanation of the present invention,

[0092] The third connecting rod 310 also drives a feeding mechanism 400, which includes a first push rod 401, a second push rod 421, a first top plate 402, a third pin 403, a second elongated hole 404, a first fixing plate 405, a second guide groove 406, a first hook 407, a first sliding plate 408, a third guide rail 409, a third elongated hole 410, a fourth pin 411, a first spring 412, a first cylinder 413, a second spring 414, a third pipe 415, a third through hole 416, a first sealing plate 417, a third spring 418, a material box 419, an atomizer 420, and a fifth through hole 422.

[0093] One end of the third connecting rod 310 is fixedly connected to the first top rod 401. The first top rod 401 can overlap with the first top plate 402. The first top plate 402 is fixedly connected to one end of the third pin 403. The third pin 403 is disposed in the second elongated hole 404 and moves along it. The second elongated hole 404 is opened on the first fixing plate 405. The first fixing plate 405 is fixedly connected to the bracket 102. The third pin 403 is also disposed in the second guide groove 406 and moves along it. The second guide groove 406 is opened on the first sliding plate 408. The first sliding plate 408 is disposed in the third guide rail 409 and moves along it. The third guide rail 409 is fixedly connected to the bracket 102. The third pin 403 can also be engaged with the first hook 407. The first hook 407 is fixedly connected to the first sliding plate 408.

[0094] The first slide plate 408 has a third elongated hole 410 along its length. A fourth pin 411 that moves along the third elongated hole 410 is disposed in the third elongated hole 410. One end of the fourth pin 411 is fixedly connected to the first fixing plate 405, and the other end of the fourth pin 411 is fixedly connected to one end of the first spring 412. The other end of the first spring 412 is fixedly connected to the first slide plate 408.

[0095] The other end of the third pin 403 is fixedly connected to the first cylinder 413. The first cylinder 413 is fixedly connected to the outer surface of the third pipe 415. The third pipe 415 is disposed in the fifth through hole 422 and moves along it. The fifth through hole 422 is opened on the bracket 102. The first cylinder 413 is fixedly connected to one end of the second spring 414. The other end of the second spring 414 is fixedly connected to the bracket 102.

[0096] One end of the third pipe 415 is connected to and communicates with one end of the second pipe 204 via a flexible hose. The third pipe 415 is also sealed within and moves along the third through hole 416. The third through hole 416 is opened at the top of the material box 419. The material box 419 is fixedly connected to the base plate 101. The material box 419 is fixedly connected to and communicates with the other end of the circulation pump 108. The other end of the third pipe 415 can overlap with the first sealing plate 417. One end of the first sealing plate 417 is hinged to the top of the material box 419. The first sealing plate 417 can completely block the third through hole 416. The first sealing plate 417 is fixedly connected to one end of the third spring 418. The other end of the third spring 418 is fixedly connected to the side wall of the material box 419. The atomizer 420 is disposed inside the material box 419. The atomizer 420 can realize the vaporization of liquid substances.

[0097] The structure consisting of the first top plate 402, the third pin 403, the second elongated hole 404, the second guide groove 406, the first hook 407, the first cylinder 413, the second spring 414, the third pipe 415, the third through hole 416, the first sealing plate 417, the third spring 418, the material box 419, the atomizer 420, and the fifth through hole 422 has two sets distributed along the length of the first fixing plate 405. The other end of the third connecting rod 310 is fixedly connected to the second top rod 421, and the second top rod 421 can overlap with the first top plate 402 of the second set.

[0098] The present invention drives the two third pipes 415 to move intermittently up and down by swinging the two ends of the third connecting rod 310 around the axis of the third rotating shaft 311. This allows the vaporized substances in the two material boxes 419 to intermittently enter the inner cavity of the model 103 through the third pipe 415 and the second pipe 204, and pass through the down jacket and its interlayer under the action of the circulation pump 108, thereby achieving the effects of disinfection and fragrance retention of the down jacket.

[0099] When the first push rod 401 swings downwards, the first top plate 402 further drives the third pin 403 to move downwards along the second elongated hole 404 and the second guide groove 406. At this time, the third pin 403 slides downwards along the upper surface of the first hook 407, pushing the first slide plate 408 to slide to the left. When the engagement between the third pin 403 and the upper surface of the first hook 407 fails, under the elastic force of the first spring 412, the first slide plate 408 slides back to its original position along the third guide rail 409. At this time, the lower surface of the first hook 407 engages with the third pin 403, restricting the third pin 403 within the second guide groove 406. When the second push rod 421 engages downwards with the second first top plate 402 and pushes the second third pin 403 downwards, it also pushes the first slide plate 408 to slide to the left. When the first hook 407 of the first group fails to engage with the third pin 403, under the elastic force of the second spring 414 of the first group, the first cylinder 413 moves upward to its original position. At this time, the third pin 403 of the second group engages with the first hook 407. In summary, the two third pipes 415 move alternately up and down. When the third pipe 415 moves downward, it pushes the first sealing plate 417, allowing the atomized gas in the material box 419 to smoothly enter the inner cavity of the model 103 through the third pipe 415. Conversely, when the third pipe 415 moves upward, the first sealing plate 417 closes the third through hole 416, preventing the gas in the material box 419 from entering the model 103. In summary, the gas in the two material boxes 419 enters the model 103 intermittently, thus achieving simultaneous disinfection, sterilization, cleaning, and fragrance retention of down jackets.

[0100] The upper surface of the first hook 407 is inclined, and its inclination direction is from top to bottom, from away from the fourth pin 411 to close to the fourth pin 411, which ensures that the third pin 403 can pass smoothly through the first hook 407 when it moves downward, and push the first slide plate 408 to slide to the left.

[0101] The first spring 412 is always in a stretched state, so that when the upper surface of the first hook 407 fails to connect with the third pin 403, the first spring 412 can pull the first slide plate 408 to slide to the right back to its original position.

[0102] The second spring 414 is always in a compressed state, so that when the first cylinder 413 fails to engage with the first hook 407, the third pin 403 can return to its original position under the elastic force of the second spring 414.

[0103] The third spring 418 is always in a compressed state, thereby ensuring that the first sealing plate 417 can immediately block the third through hole 416 when the third pipe 415 moves upward.

[0104] The two material boxes 419 contain disinfectant and fragrance respectively, so that the atomized disinfectant and fragrance can intermittently enter the inner cavity of the model 103 through the third pipe 415, and then achieve the disinfection and fragrance retention effect on the down jacket under the action of the circulation pump 108.

[0105] The installation, driving, and control methods of the atomizer 420 are existing technologies and will not be described in detail here.

[0106] As a further explanation of the present invention,

[0107] The output shaft 202 of the motor 201 also drives an air supply mechanism 500, which includes a first bevel gear 501, a second bevel gear 502, a fourth rotating shaft 503, a first gear 504, a second gear 505, a fifth rotating shaft 506, a first fan 507, a third bevel gear 508, a fourth bevel gear 509, a sixth rotating shaft 510, a first fixed rod 511, and a second fan 512.

[0108] The output shaft 202 of the motor 201 is coaxially fixed with the first bevel gear 501. The first bevel gear 501 meshes with the second bevel gear 502. The second bevel gear 502 is coaxially fixed with one end of the fourth rotating shaft 503. The fourth rotating shaft 503 is rotatably and sealed to the bottom of the model 103. The fourth rotating shaft 503 is coaxially fixed with the first gear 504. The first gear 504 meshes with the second gear 505. The second gear 505 is coaxially fixed with the fifth rotating shaft 506. One end of the fifth rotating shaft 506 is mounted on the bottom of the model 103 through a bearing. The other end of the fifth rotating shaft 506 is coaxially fixed with the first fan 507.

[0109] The fourth rotating shaft 503 is coaxially fixed with the third bevel gear 508. The third bevel gear 508 meshes with the fourth bevel gear 509. The fourth bevel gear 509 is coaxially fixed with one end of the sixth rotating shaft 510. The sixth rotating shaft 510 is mounted on the first fixed rod 511 through a bearing. The first fixed rod 511 is fixedly connected to the inner wall of the model 103. The other end of the sixth rotating shaft 510 is fixedly connected to the second fan 512.

[0110] The motor 201 of the present invention drives the second fan 512 and the first fan 507 to rotate in the inner cavity of the model 103 through the output shaft 202, which increases the turbulence in the model 103, so that the atomized disinfectant and cleaning agent that intermittently enter the inner cavity of the model 103 can be mixed and delivered to various parts of the down jacket, so as to realize the simultaneous disinfection, cleaning and fragrance retention of various parts of the down jacket.

[0111] The motor 201 drives the first bevel gear 501, the second bevel gear 502, and the fourth rotating shaft 503 to rotate synchronously through the output shaft 202, and drives the first fan 507 to rotate through the meshing of the first gear 504 and the second gear 505. The meshing of the third bevel gear 508 and the fourth bevel gear 509 drives the second fan 512 to rotate, ultimately increasing the turbulence of the gas inside the model 103.

[0112] Those skilled in the art can control the speed of the first fan 507 by adjusting the transmission ratio of the first bevel gear 501, the second bevel gear 502, and the transmission ratio of the first gear 504 and the second gear 505. At the same time, those skilled in the art can also adjust the transmission ratio of the third bevel gear 508 and the fourth bevel gear 509 to control the speed of the second fan 512.

[0113] The second fan 512 is positioned towards the arm of the model 103.

[0114] Among them, the structure consisting of the second gear 505, the fifth rotating shaft 506, and the first fan 507 is symmetrically distributed in two groups about the axis of 513.

[0115] The structure consisting of the fourth bevel gear 509, the sixth rotating shaft 510, the first fixed rod 511, and the second fan 512 is symmetrically distributed in two groups about the center of the fourth rotating shaft 503.

[0116] The fourth rotating shaft 503 is rotatably and sealed to the bottom of the model 103 via a bearing and a sealing ring. The bottom of the model 103 has an eighth through hole. The fourth rotating shaft 503 is mounted on the inner circumferential surface of the eighth through hole via a bearing. At the same time, the fourth rotating shaft 503 is fixedly connected to the inner surface of the sealing ring, and the outer surface of the sealing ring is sealed and overlapped with the inner circumferential surface of the eighth through hole.

[0117] The embodiments described above are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Various modifications and improvements made by those skilled in the art to the technical solutions of the present invention without departing from the spirit of the present invention should fall within the protection scope defined by the claims of the present invention.

Claims

1. A device for disinfecting, deodorizing, and maintaining down jackets, characterized in that: include A base plate (101) on which one end of a plurality of brackets (102) are fixed; Model (103), which is fixedly connected to the bracket (102), the outer surface of the model (103) can be fitted with a down jacket to be disinfected and deodorized, and a plurality of first through holes (104) are evenly opened on the side wall of the model (103). A front cover shell (105) is mounted on the bracket (102). The inner surface of the front cover shell (105) is evenly provided with a plurality of through holes. The side of the front cover shell (105) close to the model (103) can be sealed and overlapped with the rear cover shell (106). The inner surface of the rear cover shell (106) is evenly provided with a plurality of through holes. When the front cover shell (105) and the rear cover shell (106) are sealed and overlapped, they can completely cover the model (103). A first pipe (107) is fixedly connected to the bracket (102). One end of the first pipe (107) is connected and communicates with the inner cavity of the front cover shell (105) and the rear cover shell (106) respectively. The other end of the first pipe (107) is fixedly connected and communicates with one end of the circulation pump (108). The other end of the circulation pump (108) is connected and communicates with the flow equalization ring (206). A plurality of second through holes (207) are evenly opened on the side wall of the flow equalization ring (206). The flow equalization ring (206) is arranged inside the model (103). A reciprocating mechanism (200) is installed on the bracket (102). The reciprocating mechanism (200) is driven by a motor (201) to realize the reciprocating motion of the flow equalization ring (206) in the model (103), so as to ensure the ventilation of each position of the down jacket. The reciprocating mechanism (200) includes an electric motor (201), an output shaft (202), a first fixed block (203), a second pipe (204), a third through hole (205), a first screw (208), a first crank (209), a first rocker arm (210), a first guide rail (211), and a first flexible hose (212); The bracket (102) is fixedly connected to the motor (201), the output shaft (202) of the motor (201) is drivenly connected to the first fixing block (203), the first fixing block (203) is fixedly connected to the outer surface of the second pipe (204), the second pipe (204) is sealed and disposed in the third through hole (205) and moves along it, the third through hole (205) is opened at the bottom of the model (103), one end of the second pipe (204) is connected and communicates with the other end of the circulating pump (108), and the other end of the second pipe (204) is fixedly connected and communicates with the flow equalization ring (206); The front cover shell (105) is threaded to one side of the first screw (208), and the other side of the first screw (208) is threaded to the rear cover shell (106). The first screw (208) is mounted on the bracket (102) by a bearing. One end of the first screw (208) is fixedly connected to one end of the first crank (209), and the other end of the first crank (209) is fixedly connected to one end of the first rocker arm (210). The front cover shell (105) and the rear cover shell (106) are respectively disposed in the first guide rail (211) and move along it. The first guide rail (211) is fixedly connected to the bracket (102). The front cover shell (105) is fixedly connected to one end of the first hose (212) and communicates with it. The other end of the first hose (212) is fixedly connected to the rear cover shell (106) and communicates with it. The middle part of the first hose (212) is fixedly connected to one end of the first pipe (107) and communicates with it.

2. The down jacket disinfection, deodorization, and maintenance device according to claim 1, characterized in that: The output shaft (202) of the motor (201) is driven to be connected to the first fixed block (203) through the drive mechanism (300). The drive mechanism (300) includes a first cam (301), a first pin (302), a first connecting rod (303), a first rotating shaft (304), a second pin (305), a first elongated hole (306), a second connecting rod (307), a second rotating shaft (308), a third connecting rod (310), a third rotating shaft (311), a first slider (312), a first guide groove (313), a first fixed plate (314), and a first spring (315). The output shaft (202) of the motor (201) is coaxially fixed with the first cam (301). The outer surface of the first cam (301) overlaps with the first pin (302). The first pin (302) is fixedly connected to one end of the first connecting rod (303). The middle part of the first connecting rod (303) is mounted on the first rotating shaft (304) via a bearing. The first rotating shaft (304) is fixedly connected to the bracket (102). The other end of the first connecting rod (303) is fixedly connected to one end of the second pin (305). The second pin (305) is disposed on the first... The first elongated hole (306) is opened in the second connecting rod (307) along its length direction. One end of the second connecting rod (307) is fixedly connected to one end of the second rotating shaft (308). The other end of the second rotating shaft (308) is mounted on the bracket (102) through a bearing. The other end of the second pin (305) is fixedly connected to one end of the third connecting rod (310). The middle part of the third connecting rod (310) is mounted on the third rotating shaft (311) through a bearing. The third rotating shaft (311) is fixedly connected to the bracket (102). The other end of the second connecting rod (307) is hinged to the first slider (312), the first slider (312) is disposed in the first guide groove (313) and moves along it, the first guide groove (313) is opened on the first fixing plate (314) along the length direction, the first fixing plate (314) is fixedly connected to the first fixing block (203), the first fixing plate (314) is fixedly connected to one end of the first spring (315), and the other end of the first spring (315) is fixedly connected to the bottom of the model (103).

3. The down jacket disinfection, deodorization, and maintenance device according to claim 2, characterized in that: The front cover shell (105) and the rear cover shell (106) have a cavity structure, and both have multiple vent holes on the side near the model (103).

4. The down jacket disinfection, deodorization, and maintenance device according to claim 3, characterized in that: The first screw (208) is threaded to the front cover shell (105) on one side with a left-hand thread, and the first screw (208) is threaded to the rear cover shell (106) on the other side with a right-hand thread.

5. The down jacket disinfection, deodorization, and maintenance device according to claim 4, characterized in that: The structure consisting of the second pipe (204) and the third through hole (205) is symmetrically distributed in two sets about the center of the model (103).

6. The down jacket disinfection, deodorization, and maintenance device according to claim 5, characterized in that: The material of the first pipe (107) can be steel pipe or aluminum pipe or other pipe materials.

7. The down jacket disinfection, deodorization, and maintenance device according to claim 6, characterized in that: The first rotating shaft (304) and the third rotating shaft (311) are coaxially arranged.

8. The down jacket disinfection, deodorization, and maintenance device according to claim 7, characterized in that: The first spring (315) is always in a compressed state.

Citation Information

Patent Citations

  • Steam deodorizing method based on down jacket

    CN113622194A

  • Disinfecting device for down jacket raw materials

    CN210736959U