A down jacket dewatering and drying device

By designing an oscillating and pressing mechanism that connects the internal blower head to the hot air blower, the problems of low drying efficiency and clumping of down jackets were solved, achieving uniform and rapid drying and a fluffy effect, thus improving the comfort and warmth of down jackets.

CN115874426BActive Publication Date: 2026-03-20TANBOER
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-10
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Down jackets suffer from problems such as low drying efficiency, poor breathability, and easy clumping of filling during the washing and drying process. Existing equipment is unable to achieve uniform and rapid drying while maintaining a soft state.

Method used

A down jacket dehydration and drying device was designed. It is connected to a hot air blower through an internal blower head and uses a swing mechanism to realize the reciprocating motion of hot air. Combined with a pressing mechanism, it ensures that the hot air is evenly distributed and presses all parts of the down jacket to prevent the filling from clumping.

Benefits of technology

It achieves uniform and rapid drying in all parts of the down jacket, keeps the filling soft, improves drying efficiency, and enhances warmth retention.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a down jacket dehydration drying device which comprises a bottom plate (101), a supporting frame (103), a first blowing head (310), a hot air machine (104) and a swing mechanism (300).
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of down jackets, in particular to a device for drying down jackets. BACKGROUND

[0002] The structure of a down jacket is more complex than that of a common coat. The outer fabric of a down jacket is composed of high-strength, soft and smooth polyester and chinlon, etc. to improve the cold-proof effect. Many down jackets have a synthetic resin coating on the surface or are treated with resin, which has good waterproof and breathable properties but is not wear-resistant. The middle layer of a down jacket generally contains a waterproof layer to prevent the internal down from being pierced, which is usually composed of non-woven fabric and is not resistant to frequent pulling.

[0003] Due to the above structure, the cleaning process of a down jacket is different from that of a conventional garment. The down jacket cannot be rubbed excessively during the cleaning process. Moreover, the goose down or duck down filling in the middle layer of the down jacket will be bonded into a mass under high humidity, so the drying process cannot be achieved by using the conventional method of standing and airing.

[0004] In addition, when a conventional down jacket drying device, such as a drum washing machine, is used for drying, it will cause the down jacket to fold during the drying process, reducing the drying efficiency. Some conventional laundry stores use a hanging type atmosphere drying method, which is mainly used for drying the outer surface of the down jacket. However, the outer surface of the down jacket has poor air permeability compared to the inner lining, so the drying effect is not ideal.

[0005] Therefore, in view of the above technical problems, the present application designs a device that can quickly and uniformly dry down jackets and keep the filling loose during the drying process. SUMMARY

[0006] The technical problem to be solved by the present application is to provide a dehydration drying device that can automatically and uniformly dry down jackets at all positions and keep the down jackets soft.

[0007] The present application provides a down jacket dehydration drying device, which comprises

[0008] a bottom plate, one end of which is fixed with a plurality of supports;

[0009] a support frame fixed on the support, the outer surface of which can be sleeved with a down jacket to be dried;

[0010] a first blowing head installed on the support, the first blowing head being arranged in the support frame, the first blowing head being connected and communicated with the air outlet of a hot air machine, and the hot air machine being fixedly connected with the bottom plate;

[0011] A swing mechanism is installed on the support frame, and the swing mechanism can realize the reciprocating movement of the first blowing head in the support frame through the motor-driven reciprocating mechanism, so as to realize the blowing of each position inside the down jacket to be dried.

[0012] The down jacket dehydration drying device comprises a support frame, a first blowing head, a hot air machine, a first support plate, a first roller, a first guide groove, a first pin shaft, a first connecting rod, a first sliding block, a first guide rail, a first guide plate, a first pipeline, a first long slot, a second pin shaft, a second sliding block, a second guide rail, a second pipeline and a second blowing head.

[0013] The swing mechanism comprises a motor, an output shaft, a first support plate, a first roller, a first guide groove, a first pin shaft, a first connecting rod, a first sliding block, a first guide rail, a first guide plate, a first pipeline, a first long slot, a second pin shaft, a second sliding block, a second guide rail, a second pipeline and a second blowing head.

[0014] A connecting rod, a first sliding block, a first guide rail, a first guide plate, a first pipeline, a first long slot, a second pin shaft, a second sliding block, a second guide rail, a second pipeline and a second blowing head.

[0015] The support frame is fixedly connected with the first support plate, the first support plate is fixedly connected with the motor, the output shaft of the motor is drivingly connected with the first roller, both ends of the first roller are installed on the support frame through bearings, a threaded first guide groove is formed in the outer circumferential surface of the first roller, the first guide groove is provided with the first pin shaft moving along the first guide groove, one end of the first pin shaft is fixedly connected with the first connecting rod, the other end of the first connecting rod is fixedly connected with the first sliding block, the first sliding block is arranged in the first guide rail and moves along the first guide rail, the first guide rail is fixedly connected with the first support plate, the first sliding block is fixedly connected with the first guide plate, the first guide plate is fixedly connected with the outer surface of the first pipeline, the first pipeline is connected with and communicates with the air outlet of the hot air machine, both ends of the first pipeline are fixedly connected with and communicate with the first blowing head.

[0016] The first guide plate is provided with the first long slot, the first long slot is provided with the second pin shaft moving along the first long slot, the second pin shaft is fixedly connected with the second sliding block, the second sliding block is arranged in the second guide rail and moves along the second guide rail, the second guide rail is fixedly connected with the bottom plate, the second sliding block is fixedly connected with the outer surface of the second pipeline, the second pipeline is connected with and communicates with the air inlet of the hot air machine, both ends of the second pipeline are fixedly connected with and communicate with the second blowing head, and the second blowing head can be arranged in the support frame.

[0017] The outline shape of the support frame is similar to the outline shape of the upper body of a human being with arms spread apart.

[0018] The side surface and the end surface of the first blowing head are uniformly provided with a plurality of air outlets.

[0019] The application is a kind of down jacket dehydration drying device, wherein the structure similar to the position of human arm of the supporting frame is detachable structure or the material of the structure is flexible material that can be bent,

[0020] The application is a kind of down jacket dehydration drying device, wherein the profile shape of the first guide groove is screw thread shape, and the thread angle of the screw thread is 55 degrees.

[0021] The application is a kind of down jacket dehydration drying device, wherein the first long hole is arranged obliquely, and the oblique direction is from front to back and from top to bottom.

[0022] The application is a kind of down jacket dehydration drying device, wherein the first pipeline and the second pipeline are arranged vertically.

[0023] The application is a kind of down jacket dehydration drying device, which is different from the prior art in that:

[0024] 1. The application is a kind of down jacket dehydration drying device, which completes the drying of the down jacket from the inside, and the drying effect is faster.

[0025] 2. The airflow switching of the hot air blower ensures that each part of the down jacket can be blown by hot air, and the drying efficiency is improved.

[0026] 3. The reciprocating movement of the air outlet ensures that the drying speed of each position of the down jacket is average, and clumping is avoided.

[0027] 4. The surface of the clothes is pressed during the drying process, which ensures that the dried down jacket is more fluffy and has better warmth retention effect.

[0028] The application is a kind of down jacket dehydration drying device, which is different from the prior art in that: BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is a front view of a kind of down jacket dehydration drying device;

[0030] Figure 2 It is Figure 1 the isometric view of a kind of down jacket dehydration drying device shown in the figure;

[0031] Figure 3 It is Figure 1 the top view;

[0032] Figure 4 It is the sectional view along AA line; Figure 1

[0033] Figure 5 It is Figure 1 the partial isometric view of the second perspective;

[0034] Figure 6 It is the sectional view along BB line; Figure 1 ​A cross-sectional view along the BB line;

[0035] Figure 7 is along Figure 1 A cross-sectional view along the CC line. DETAILED DESCRIPTION

[0036] As Figures 1 to 7 shown, the dehydrating and drying device for down jacket of the present application comprises a bottom plate 101, one end of which is fixed with a plurality of supports 102;

[0037] A support frame 103 is fixed on the support 102, and the outer surface of the support frame 103 can be sleeved with a down jacket to be dried;

[0038] A first blowing head 310 is installed on the support 102, which is arranged in the support frame 103, and the first blowing head 310 is connected and communicated with the air outlet of a hot air machine 104, and the hot air machine 104 is fixedly connected with the bottom plate 101;

[0039] A swing mechanism 300 is installed on the support 102, which can realize the reciprocating motion of the first blowing head 310 in the support frame 103 through the driving of the reciprocating motion mechanism of the motor 201, and realize the blowing of each position inside the down jacket to be dried.

[0040] The motor 201 drives the front and back motion of the first blowing head 310 in the support frame 103 through the output shaft 202, and realizes the blowing of each position inside the down jacket to be dried through the hot air machine 104 during the front and back motion of the first blowing head 310, so that each position of the down jacket can be uniformly and quickly dried, and the method is used to dry the inside of the down jacket, and the drying effect is better.

[0041] Among them, the bottom plate 101 can be placed on the ground or the desktop and other horizontal surfaces.

[0042] Among them, the number of supports 102 can be 3, 4, 5, 6, 7, 8, 9 or more.

[0043] Among them, the power module of the motor 201 includes a battery, an electric control module and a wireless communication module, the battery is fixedly connected with the bottom plate 101, and the wireless communication module is wirelessly connected with a user terminal.

[0044] The wireless communication module enables the user to smoothly control the rotation speed of the motor 201, thereby realizing the control of the reciprocating motion speed and frequency of the first blowing head 310.

[0045] The first blower head 310 is fixedly connected to and communicates with the air outlet of the hot air blower 104.

[0046] The installation, driving, and control methods of the hot air blower 104 are existing technologies and will not be described in detail here.

[0047] The reciprocating motion mechanism includes a first support plate 301, a first roller 302, a first guide groove 303, and a first...

[0048] Pin 304, first connecting rod 305, first slider 306, first guide rail 307, first guide plate 308, first pipe 309, first elongated hole 311, second pin 312, second slider 313, second guide rail 314, second pipe 315, second blower head 316.

[0049] As a further explanation of the present invention,

[0050] The swing mechanism 300 includes a motor 201, an output shaft 202, a first support plate 301, a first roller 302, and a first guide.

[0051] 303, first pin 304, first connecting rod 305, first slider 306, first guide rail 307, first guide plate 308, first pipe 309, first elongated hole 311, second pin 312, second slider 313, second guide rail 314, second pipe 315, second blower head 316;

[0052] The bracket 102 is fixedly connected to the first support plate 301, the first support plate 301 is fixedly connected to the motor 201, the output shaft 202 of the motor 201 is drivenly connected to the first roller 302, the two ends of the first roller 302 are mounted on the bracket 102 through bearings, and the outer circumferential surface of the first roller 302 is provided with a threaded first guide groove 303. The first pin 304 is disposed inside and moves along it. The first pin 304 is fixedly connected to one end of the first connecting rod 305. The other end of the first connecting rod 305 is fixedly connected to the first slider 306. The first slider 306 is disposed inside the first guide rail 307 and moves along it. The first guide rail 307 is fixedly connected to the first support plate 301. The first slider 306 is fixedly connected to the first guide plate 308. The first guide plate 308 is fixedly connected to the outer surface of the first pipe 309. The first pipe 309 is connected to and communicates with the air outlet of the hot air blower 104. The two ends of the first pipe 309 are respectively fixedly connected to and communicate with the first blower head 310.

[0053] The first long slot hole 311 is arranged on the first guide plate 308, the second pin shaft 312 is arranged in the first long slot hole 311 and moves along the first long slot hole 311, the second pin shaft 312 is fixedly connected with the second sliding block 313, the second sliding block 313 is arranged in the second guide rail 314 and moves along the second guide rail 314, the second guide rail 314 is fixedly connected with the bottom plate 101, the second sliding block 313 is fixedly connected with the outer surface of the second pipeline 315, the second pipeline 315 is connected with and communicates with the air inlet of the hot air machine 104, and the two ends of the second pipeline 315 are fixedly connected with and communicate with the second blowing head 316, and the second blowing head 316 can be arranged in the support frame 103.

[0054] The motor 201 drives the first blowing head 310 to move forward and backward in the support frame 103 through the output shaft 202, and the hot air machine 104 blows hot air to each position in the down jacket during the forward and backward movement of the first blowing head 310, so that each position of the down jacket can be uniformly and quickly dried.

[0055] The motor 201 drives the first roller 302 to rotate forward and reversely through the output shaft 202, and further drives the first pin shaft 304, the first connecting rod 305, the first sliding block 306 and the first guide plate 308 to reciprocate along the length direction of the first guide rail 307 through the arrangement relationship of the first guide groove 303 and the first pin shaft 304, the reciprocation of the first guide plate 308 further drives the first blowing head 310 to reciprocate forward and backward in the support frame 103 through the first pipeline 309, and the reciprocation of the first guide plate 308 further drives the second sliding block 313 and the second pipeline 315 to reciprocate along the length direction of the second guide rail 314 through the arrangement relationship of the first long slot hole 311 and the second pin shaft 312, and finally realizes the reciprocation of the second blowing head 316 in the up-down direction in the support frame 103.

[0056] The output shaft 202 of the motor 201 is coaxially fixed with one end of the first roller 302.

[0057] The first slider 306 is a dovetail type slider, and the first guide rail 307 is a dovetail type guide rail, so that the first slider 306 can only reciprocate along the length direction of the first guide rail 307.

[0058] The second slider 313 is a T-shaped slider, and the second guide rail 314 is a T-shaped guide rail, so that the second slider 313 can only reciprocate along the length direction of the second guide rail 314.

[0059] The first pipeline 309 is fixedly connected and communicated with the air outlet of the hot air fan 104 through a hose, and the second pipeline 315 is fixedly connected and communicated with the air inlet of the hot air fan 104 through a hose.

[0060] As a further explanation of the present application,

[0061] The contour shape of the support frame 103 is similar to the contour shape of the upper body of a human being with arms spread apart.

[0062] The side surface and the end surface of the first blowing head 310 are uniformly provided with a plurality of air outlet holes.

[0063] The present application ensures that the gas sprayed in the first blowing head 310 can blow on each position in the down jacket.

[0064] The structure similar to the position of the human arm in the structure of the support frame 103 is a detachable structure or the material of the structure is a bendable elastic material,

[0065] The present application facilitates the down jacket to be sleeved on the support frame 103.

[0066] The contour shape of the first guide groove 303 is a thread shape, and the thread angle of the thread is 55 degrees.

[0067] The first long hole 311 is inclinedly arranged, and the inclination direction thereof is from top to bottom and from front to back.

[0068] The first pipeline 309 and the second pipeline 315 are arranged vertically.

[0069] The present application realizes that two first blowing heads 310 are arranged to reciprocate at the arm positions of the down jacket, and two second blowing heads 316 are arranged to move up and down at the trunk positions of the down jacket.

[0070] As a further explanation of the present application,

[0071] The output shaft 202 of the motor 201 is drivingly connected with one end of the first roller 302 through a driving mechanism 400,

[0072] The driving mechanism 400 comprises a first universal joint 401, a first rotating shaft 402, a second support plate 403, a fan-shaped fixed plate 404, a first limiting block 405, a second limiting block 406, a first gear 407, a third pin shaft 409, a first disc 410, a first notch 411, a first limiting rod 412, a second connecting rod 413;

[0073] The output shaft 202 of the motor 201 is coaxially fixed with one end of the first universal joint 401, the other end of the first universal joint 401 is coaxially fixed with one end of the first rotating shaft 402, the first rotating shaft 402 is installed on one end of the second support plate 403 through a bearing, the other end of the second support plate 403 is fixedly connected with the fan-shaped fixed plate 404, the center position of the fan-shaped fixed plate 404 is hingedly connected with the first support plate 301, the side surface of one side of the fan-shaped fixed plate 404 can be overlapped with the first limiting block 405, the first limiting block 405 is fixedly connected with the first support plate 301, the side surface of the other side of the fan-shaped fixed plate 404 can be overlapped with the second limiting block 406, and the second limiting block 406 is fixedly connected with the first support plate 301.

[0074] The side, away from the first universal joint 401, of the first rotating shaft 402 is coaxially fixed with the first gear 407, the first gear 407 can be engaged with the third pin shaft 409, and one end of the third pin shaft 409 is fixed on the outer circumferential surface of the first disc 410 in a circumferential direction.

[0075] The other end of the first rotating shaft 402 can be overlapped with the first limiting rod 412, the first limiting rod 412 is arranged in the first notch 411,

[0076] The first limiting rod 412 is fixedly connected with one end of the second connecting rod 413, and the second connecting rod 413 is fixedly connected with the shaft center position of the first disc 410.

[0077] The motor 201 drives the first gear 407 to rotate in one direction through the output shaft 202, further drives the first disc 410 to rotate in one direction through the engagement between the first gear 407 and the third pin shaft 409,

[0078] The first gear 407 is engaged with the third pin shaft 409, so that the first disc 410 is driven in a forward direction and a reverse direction, thereby driving the first roller 302 to rotate in a forward direction and a reverse direction through the first disc 410, and finally driving the motor 201 to drive the first roller 302.

[0079] The motor 201 drives the first universal joint 401 and the first rotating shaft 402 to rotate synchronously through the output shaft 202, the first rotating shaft 402 further drives the rotation of the first gear 407, the teeth of the first gear 407 are clamped on the outer surface of the third pin shaft 409, so that the rotation of the first gear 407 smoothly drives the rotation of the first disc 410, when the first gear 407 is clamped with the outermost third pin shaft 409, the first disc 410 stops rotating, and the first gear 407 rotates around the axis of the outermost third pin shaft 409, under the limiting action of the first limiting rod 412, the first gear 407 swings from one side of the first disc 410 to the other side, at this time the first rotating shaft 402 drives the fan-shaped fixed plate 404 to swing from one side to the other side, at this time the motor 201 drives the one-way rotation of the first gear 407 through the output shaft 202, which causes the first disc 410 to rotate in the opposite direction, until the first gear 407 is clamped with the outermost third pin shaft 409 on the other side, thereby realizing the change of the rotation direction of the next time, and the motor 201 realizes the intermittent forward rotation and reverse rotation of the first disc 410 and the first roller 302.

[0080] The structure composed of the first limiting rod 412 and the second connecting rod 413 is symmetrically distributed about the angle bisector of the first disc 410.

[0081] The structure and installation method of the first universal joint 401 are prior art, which will not be described here.

[0082] As a further explanation of the application, the first pipeline 309 is connected and communicated with the air outlet of the hot air fan 104 through the conveying mechanism 500, the conveying mechanism 500 includes a third pipeline 501, a fourth pipeline 502, a fifth pipeline 503, a sixth pipeline 504, a seventh pipeline 505, an eighth pipeline 506, a ninth pipeline 507, a tenth pipeline 508, a first hose 509, and a second hose 510.

[0083] The air outlet of the hot air machine 104 is fixedly connected and communicated with one end of the third pipeline 501, the air inlet of the hot air machine 104 is fixedly connected and communicated with one end of the fourth pipeline 502, the outer surfaces of the third pipeline 501 and the fourth pipeline 502 are fixedly connected with the first supporting plate 301, the other end of the third pipeline 501 can be sealingly and abuttingly aligned with one end of the fifth pipeline 503, the other end of the fourth pipeline 502 can be sealingly and abuttingly aligned with one end of the sixth pipeline 504, the outer surfaces of the fifth pipeline 503 and the sixth pipeline 504 are fixedly connected with the fan-shaped fixed plate 404, the fan-shaped fixed plate 404 is also fixedly connected with the outer surfaces of the seventh pipeline 505 and the eighth pipeline 506, one end of the seventh pipeline 505 can be sealingly and abuttingly aligned with the other end of the third pipeline 501, one end of the eighth pipeline 506 can be sealingly and abuttingly aligned with the other end of the fourth pipeline 502, the other end of the fifth pipeline 503 or the other end of the eighth pipeline 506 can be sealingly and abuttingly aligned with one end of the ninth pipeline 507 respectively, the other end of the sixth pipeline 504 or the other end of the seventh pipeline 505 can be sealingly and abuttingly aligned with one end of the tenth pipeline 508 respectively, the other end of the ninth pipeline 507 is fixedly connected and communicated with one end of the first hose 509, the other end of the first hose 509 is fixedly connected and communicated with the second pipeline 315, the other end of the tenth pipeline 508 is fixedly connected and communicated with one end of the second hose 510, the other end of the second hose 510 is fixedly connected and communicated with the first pipeline 309.

[0084] In the process that the fan-shaped fixed plate 404 swings left and right driven by the motor 201, the present application realizes the change of the flow direction of the hot air in the second pipeline 315 and the first pipeline 309, when the fan-shaped fixed plate 404 abuts with the first limiting block 405, the first pipeline 309 is communicated with the air inlet of the hot air machine 104, the second pipeline 315 is communicated with the air outlet of the hot air machine 104, when the fan-shaped fixed plate 404 abuts with the second limiting block 406, the first pipeline 309 is communicated with the air outlet of the hot air machine 104, the second pipeline 315 is communicated with the air inlet of the hot air machine 104, therefore, the above-mentioned mechanism realizes the intermittent change of the air inlet and air outlet of the first blowing head 310 and the second blowing head 316, thereby ensuring that the drying of the down jacket is more uniform.

[0085] When the fan-shaped fixed plate 404 is overlapped with the first limiting block 405, the hot air blown out of the air outlet of the hot air machine 104 is injected into the down jacket to be dried through the third pipeline 501, the fifth pipeline 503, the ninth pipeline 507, the first hose 509, the second pipeline 315 and the second air blowing head 316, and the air in the down jacket flows back to the air inlet of the hot air machine 104 through the first air blowing head 310, the first pipeline 309, the second hose 510, the tenth pipeline 508, the sixth pipeline 504 and the fourth pipeline 502. Conversely, when the fan-shaped fixed plate 404 is overlapped with the second limiting block 406, the hot air in the hot air machine 104 is sprayed out through the first air blowing head 310, and the second air blowing head 316 sucks the air in the down jacket into the air inlet of the hot air machine 104. Through the above transformation, the direction of the air in the down jacket changes, and the high-temperature position and the low-temperature position change, so that the down jacket can be dried more evenly.

[0086] As a further explanation of the present application,

[0087] The first guide plate 308 is further driven by a pressing mechanism 600, and the pressing mechanism 600 comprises a wave rod 601, a first top rod 602, a first guide sleeve 603, a third connecting rod 604, a pressing claw 605, a fourth connecting rod 606, a first spring 607, a first pressing rod 608 and a second pressing rod 609.

[0088] One side of the first guide plate 308 is fixedly connected with one end of the wave rod 601, the wave surface of the wave rod 601 is overlapped with one end of the first top rod 602, the first top rod 602 is arranged in the first guide sleeve 603 and moves along the first guide sleeve 603, the first guide sleeve 603 is fixedly connected with the support 102, the other end of the first top rod 602 is fixedly connected with the middle part of the third connecting rod 604, a plurality of pressing claws 605 are fixedly arranged on the third connecting rod 604 along the length direction of the third connecting rod 604, the pressing claws 605 can be overlapped with the outer surface of the down jacket, the third connecting rod 604 is fixedly connected with the fourth connecting rod 606, a plurality of pressing claws 605 are fixedly arranged on the fourth connecting rod 606 along the length direction of the fourth connecting rod 606, one end of the fourth connecting rod 606 is fixedly connected with one end of the first spring 607, and the other end of the first spring 607 is fixedly connected with the support 102.

[0089] The other end of the third connecting rod 604 close to the first guide plate 308 is fixedly connected with one end of the second pressing rod 609, the second pressing rod 609 can be overlapped with one side of the outer surface of the down jacket, and one end of the fourth connecting rod 606 close to the first guide plate 308 is fixedly connected with one end of the first pressing rod 608, the first pressing rod 608 can be overlapped with the other side of the outer surface of the down jacket.

[0090] The present application realizes the intermittent pressing of the front surface and the rear surface of the down jacket in the process of drying the down jacket by the front and rear movement of the first guide plate 308, and the left and right movement of the pressing claw 605, the first pressing rod 608 and the second pressing rod 609, thereby realizing the synchronous pressing of the down jacket in the drying process, avoiding the adhesion of the down in the interlayer of the down jacket, and making the dried down jacket more fluffy, more comfortable to wear and better in the warmth-keeping effect.

[0091] The first guide plate 308 drives the synchronous front and rear movement of the wave rod 601, and the wave surface of the wave rod 601 drives the first top rod 602 to move right along the first guide sleeve 603 in the process of the front and rear movement of the wave rod 601, at this time, the first top rod 602 drives the pressing claw 605 to press one side of the down jacket through the third connecting rod 604 and the fourth connecting rod 606, when the wave surface of the wave rod 601 is connected with one end of the first top rod 602, the first top rod 602 moves left synchronously under the elastic force of the first spring 607, and drives the pressing claw 605 to press the other side of the down jacket, and the second pressing rod 609 and the first pressing rod 608 realize the synchronous pressing of the down jacket in the process, and the above-mentioned process realizes the intermittent pressing action of the down jacket in the drying process.

[0092] The structure composed of the first pressing rod 608 and the second pressing rod 609 is uniformly distributed with multiple groups along the height direction of the support frame 103, and the number thereof is preferably 5 groups.

[0093] The cross-sectional shape of the first top rod 602 is square, and the cross-sectional shape of the inner surface of the first guide sleeve 603 is square which matches the cross-sectional shape of the first top rod 602, thereby ensuring that the first top rod 602 can only reciprocate along the length direction of the first guide sleeve 603.

[0094] The structure composed of the wave rod 601, the first top rod 602, the first guide sleeve 603, the third connecting rod 604, the pressing claw 605, the fourth connecting rod 606 and the first spring 607 is symmetrically distributed about the center of the first guide plate 308.

[0095] The contour shape of the pressing claw 605 is semicircular, thereby ensuring that the surface of the pressing claw 605 can be more fitted to the arm position of the down jacket, and the pressing effect is better.

[0096] The profile shape of the first pressing rod 608 and the second pressing rod 609 is arc-shaped, so that the surface of the first pressing rod 608 and the second pressing rod 609 can be more fitted to the torso position of the down jacket, and the pressing effect is better.

[0097] The first spring 607 is always in a compressed state, so that one end of the first top rod 602 can always be overlapped with the wave surface of the wave rod 601.

[0098] The above-described embodiments are only used to describe the preferred embodiments of the present application, and are not used to limit the scope of the present application. Without departing from the design spirit of the present application, various modifications and improvements of the technical solutions of the present application made by those skilled in the art shall fall within the protection scope determined by the claims of the present application.

Claims

1. A down jacket dehydration and drying device, characterized in that: The device includes a base plate (101) on which one end of a plurality of brackets (102) are fixed; a support frame (103) fixed on the brackets (102), on which a down jacket to be dried can be fitted; a first blower head (310) mounted on the brackets (102), the first blower head (310) being disposed within the support frame (103), the first blower head (310) being connected and communicating with the air outlet of a hot air blower (104), the hot air blower (104) being fixedly connected to the base plate (101); and a swing mechanism (300) mounted on the brackets (102), the swing mechanism (300) being able to drive a reciprocating motion mechanism via a motor (201) to realize the reciprocating motion of the first blower head (310) within the support frame (103), thereby realizing the blowing of air to various positions inside the down jacket to be dried; The swing mechanism (300) includes a motor (201), an output shaft (202), a first support plate (301), a first roller (302), a first guide groove (303), a first pin (304), a first connecting rod (305), a first slider (306), a first guide rail (307), a first guide plate (308), a first pipe (309), a first elongated hole (311), a second pin (312), a second slider (313), a second guide rail (314), a second pipe (315), and a second blower head (316). The bracket (102) is fixedly connected to the first support plate (301), the first support plate (301) is fixedly connected to the motor (201), the output shaft (202) of the motor (201) is drivenly connected to the first roller (302), the two ends of the first roller (302) are mounted on the bracket (102) through bearings, the outer circumferential surface of the first roller (302) is provided with a threaded first guide groove (303), the first guide groove (303) is provided with a first pin (304) that moves along it, and the first pin (304) is fixedly connected to one end of the first connecting rod (305). The other end of the first connecting rod (305) is fixedly connected to the first slider (306). The first slider (306) is disposed in the first guide rail (307) and moves along it. The first guide rail (307) is fixedly connected to the first support plate (301). The first slider (306) is fixedly connected to the first guide plate (308). The first guide plate (308) is fixedly connected to the outer surface of the first pipe (309). The first pipe (309) is connected to and communicates with the air outlet of the hot air blower (104). The two ends of the first pipe (309) are respectively fixedly connected to and communicate with the first blower head (310).The first guide plate (308) has a first elongated hole (311), and a second pin (312) is disposed in the first elongated hole (311) and moves along it. The second pin (312) is fixedly connected to the second slider (313), which is disposed in the second guide rail (314) and moves along it. The second guide rail (314) is fixedly connected to the base plate (101). The second slider (313) is fixedly connected to the outer surface of the second pipe (315), which is connected to and communicates with the air inlet of the hot air blower (104). Both ends of the second pipe (315) are fixedly connected to and communicate with the second blower head (316), which can be disposed in the support frame (103).

2. The down jacket dehydration and drying device according to claim 1, characterized in that: The first blower head (310) has multiple air outlet holes evenly distributed on its side and end face.

3. The down jacket dehydration and drying device according to claim 1, characterized in that: The first guide groove (303) has a threaded shape and the thread angle is 55 degrees.

4. The down jacket dehydration and drying device according to claim 1, characterized in that: The first pipe (309) is perpendicular to the second pipe (315).

Citation Information

Patent Citations

  • Electric clothes blow-drying device

    CN108642824A