Device matched with dryer for use and dryer with device

A compact, branch-like dryer with multiple outlets addresses the bulkiness and safety concerns of existing shoe dryers, offering efficient and portable drying with reduced safety risks.

CN223095508UActive Publication Date: 2025-07-15SHENZHEN DELONG ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202422178584.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-07-15
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

The existing dryer models are large, bulky, occupy a lot of space, and use niche objects. Small shoe dryers need to pay attention to the drying conditions at all times and are prone to safety hazards.

Method used

A drying device including a bracket, a housing and a air guide assembly is designed to introduce hot air through the air inlet duct and the air guide groove, and dry it using the air outlet structure of the air guide assembly, and the air guide assembly is foldable for easy portability and drying of multiple items simultaneously.

Benefits of technology

It realizes convenient drying operations, improves drying efficiency, avoids safety hazards, and is easy to carry and store.

✦ Generated by Eureka AI based on patent content.

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Abstract

The device comprises a support connected with a hot air source, an air inlet pipe is arranged on the support, hot air generated by the hot air source enters the device through the air inlet pipe, the device further comprises a shell connected with the support, and an air guide groove communicated with the air inlet pipe is formed in the shell. An air guide assembly is connected to one side of the shell, air circulation is conducted between the air guide assembly and the air guide groove, and an air outlet structure is arranged on the air guide assembly. Generated hot air is guided into the air guide groove through the air inlet pipe and flows to the air outlet structure on the air guide assembly through the air inlet in the connecting shaft to be exhausted, an object to be dried is hung at the end of the air guide assembly or placed close to the air guide assembly, the hot air of the air outlet structure can directly act on the object to be dried, use is more convenient, and the drying efficiency is improved. And the air guide assembly is connected with the shell through the rotating shaft module, so that the air guide assembly is convenient to fold and unfold, the storage is more convenient, and the carrying is convenient. And the multiple air outlet structures can be used at the same time, and the drying efficiency is higher.
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Description

Technical Field

[0001] The utility model relates to the field of devices for cooperating with a dryer and dryers, and particularly relates to a device for cooperating with a dryer and a dryer having the device. Background Art

[0002] In the current market, the products of warm quilt machines are gradually becoming rich. Through market research, there are relatively few shoe drying devices derived from warm air heaters. A shoe dryer is a small household appliance specifically designed for drying shoes. Some people's feet tend to sweat easily, which makes the shoes damp inside, and various bacteria are likely to adhere to the shoes, affecting foot health. For the climate in the south, there are relatively many wet and cold and humid days, which is also one of the reasons for the shoes to get wet easily. The existing dryer models are relatively large in volume, appear rather bulky, and occupy a relatively large placement space, and the target users are relatively niche; at the same time, during the plum rain season with a long duration, one of the annoying things when going out is that shoes are easily wet; at the same time, for the current drying equipment, few people have the conditions and ideas to configure and use such drying equipment; while relatively small shoe dryers often use heating tubes to heat and then dry shoes. Although this drying method is relatively fast, it is necessary to always pay attention to the drying condition, otherwise there are likely to be potential safety hazards, and it is still inconvenient to use.

[0003] Chinese Patent Publication No. CN216059721U relates to the technical field of shoe drying racks, and particularly relates to a movable shoe drying rack and a shoe drying box. The movable shoe drying rack of the utility model includes a base, universal wheels arranged below the base, and a support mechanism arranged above the base. The support mechanism includes a receiving groove arranged in the base, a motor arranged in the receiving groove, a rotating shaft arranged above the base and fixedly connected to the output end of the motor, and support components evenly arranged around the circumference of the rotating shaft. The support components include a Y-shaped frame fixedly connected to the rotating shaft, support plates respectively fixedly connected to the ends of the Y-shaped frame, pressing plates rotatably connected to one ends of the support plates, and springs respectively arranged between the Y-shaped frame and the pressing plates. Shoes after cleaning are hung at the ends of the support plates and the pressing plates far from the rotating shaft. The structure of the utility model is simple and the operation is convenient, and it can realize the convenient placement and drying of shoes, and improve the cleaning efficiency of shoes. Although the shoe drying rack recorded in this patent is convenient to move, its volume is relatively large, it occupies a relatively large area, and the use scenario is relatively limited.

[0004] Chinese Patent Publication No. CN215838923U relates to the technical field of household appliances, and particularly to an electric shoe dryer, which includes an intermediate frame and heating tubes, and also includes floor feet; a plurality of groups of heating tubes are provided, symmetrically arranged on both sides of the intermediate frame, and are detachably connected to the intermediate frame; the floor feet are connected to the intermediate frame to suspend the intermediate frame; a reinforcing buckle is provided at the root of the heating tube, and the reinforcing buckle is sleeved on the heating tube and then connected to the intermediate frame. The utility model has the following beneficial effects: the stability of the overall shoe rack is increased through the floor feet, and at the same time, it is convenient for the wire outlet of the intermediate frame; the reinforcing buckle increases the strength of the heating tube, increases the longitudinal impact resistance and load-bearing capacity of each heating tube, improves the performance of the product, and at the same time can increase the connection firmness between the heating tube and the intermediate frame to prevent the heating tube from loosening after long-term use. Although this patent is relatively miniaturized, its heating tube directly contacts objects such as shoes, and it is necessary to pay attention to the drying condition at all times during use, otherwise it is easy to cause safety accidents. Summary of the Invention

[0005] The technical problem to be solved by the present utility model is that the existing dryer models are relatively large in volume, appear to be relatively heavy, and occupy a large amount of placement space, and the target users are relatively niche; at the same time, in the rainy season, the duration is long, and one of the annoying things when going out is that shoes are easily wet; at the same time, for the current drying equipment, few people have the conditions and ideas to configure and use such drying equipment; and relatively small shoe dryers often use heating tubes to generate heat for drying shoes. Although this drying method is relatively fast, it is necessary to pay attention to the drying condition at all times, otherwise it is easy to have potential safety hazards, and the use is still inconvenient. In view of the above-mentioned defects of the prior art, a device for cooperating with a dryer and a dryer having the device are provided.

[0006] In order to solve the above technical problems, the technical solution adopted by the present utility model is:

[0007] Construct a device for cooperating with a dryer, which includes a bracket connected to a hot air source, an air inlet pipe is provided on the bracket, and the hot air generated by the hot air source enters the device through the air inlet pipe. The device also includes a housing connected to the bracket. A wind guide groove for air circulation with the air inlet pipe is provided inside the housing. A wind guide assembly is connected to one side of the housing. The wind guide assembly conducts air circulation with the wind guide groove, and an air outlet structure is provided on the wind guide assembly. The hot air generated by the hot air source enters the device through the air inlet pipe, enters the wind guide assembly through the wind guide groove, and is discharged through the air outlet structure for drying operation.

[0008] Preferably, the wind guide assembly includes a right-angle elbow assembly and a wind guide pipe assembly connected to the right-angle elbow assembly. The air outlet structure is arranged on the wind guide pipe assembly, and the right-angle elbow assembly is connected to the wind guide groove for air circulation.

[0009] Preferably, the right-angle elbow assembly bends on a plane to change the air flow direction, and the air duct assembly bends on a vertical plane to change the air flow direction.

[0010] Preferably, the air duct assembly and the right-angle elbow assembly are connected by a limiting structure. The air outlet structure includes air outlet holes provided at the end of the air duct assembly and / or at least one set of air outlet holes provided on the side of the air duct assembly.

[0011] Preferably, an isolation net is provided on the end air outlet holes. When multiple sets of side air outlet holes are provided, they are evenly distributed on the side of the air duct assembly.

[0012] Preferably, the air guiding assembly is connected to the housing through a connecting shaft. An air inlet hole is provided on the connecting shaft, and the air inlet hole communicates with the air guiding groove. Hot air enters the air guiding assembly through the air inlet hole and is discharged through the air outlet structure.

[0013] Preferably, the connecting shaft is connected to the housing through a rotating shaft module. The rotating shaft module rotates to drive the air guiding assembly to open and fold. The connecting shaft and the air guiding assembly are connected by a limiting structure. The connecting shaft is symmetric left and right, so that the air guiding assembly is symmetric left and right to form two sets of air outlet structures.

[0014] Preferably, two sets of partition plates are provided in the housing. Sealing strips are provided on the two sets of partition plates, and an air guiding groove is formed between the two sets of partition plates.

[0015] Preferably, the air guiding groove is V-shaped, and its end is connected to the air inlet pipe. Hot air enters the air guiding groove through the air inlet pipe and then flows along two branches and then enters the air guiding assembly;

[0016] A counterweight is provided in the housing, and a silica gel strip is provided at the bottom of the housing. The bracket is connected to the housing by a snap-fit method, and a limiting structure is provided at the connection between the bracket and the housing;

[0017] The housing includes an upper housing and a lower housing. Sealing columns and sealing grooves are correspondingly provided on the opposite faces of the upper housing and the lower housing. The air guiding assembly includes an upper air duct and a lower air duct. Sealing columns and sealing grooves are correspondingly provided on the opposite faces of the upper air duct and the lower air duct.

[0018] Construct a dryer, which includes the device for cooperating with the dryer as described above, and a device for making air flow. The air outlet part of this device is connected to the air inlet hole to form air flow in the device and is discharged through the air outlet structure for drying operation.

[0019] The beneficial effects of the present utility model are as follows: The generated hot air is introduced into the air guiding groove through the air inlet pipe and flows to the air outlet structure on the air guiding component through the air inlet on the connecting shaft, and the object to be dried is hung at the end of the air guiding component or placed near the air guiding component. The hot air from the air outlet structure can directly act on the object to be dried, which is more convenient to use. Moreover, since the air guiding component is connected to the housing through the rotating shaft module, it is convenient to fold and open the air guiding component, which is more convenient for storage and easy to carry. At the same time, setting multiple groups of air outlet structures enables the device to use multiple groups of objects to be dried simultaneously, with higher drying efficiency. Multiple groups of bending parts are arranged inside the air guiding component, and the flow rate of the hot air at the bending parts can also be enhanced, making the drying effect of the hot air from the air outlet structure better. The two sides of the air guiding groove are formed by the isolation plate and the sealing strip, making the air guiding groove more sealed and avoiding the loss of hot air. The air guiding component adopts a sealing structure of sealing columns and sealing strips, which can also avoid the loss of hot air and make the hot air act more concentratedly on the object to be dried. Brief Description of the Drawings

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will further explain the present utility model in conjunction with the drawings and embodiments. The following drawings in the description are only partial embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings:

[0021] Figure 1 It is a three-dimensional structural schematic diagram of the device in the preferred embodiment of the present utility model;

[0022] Figure 2 It is an exploded structural schematic diagram of the device in the preferred embodiment of the present utility model;

[0023] Figure 3 It is an axonometric structural schematic diagram of the bracket in the preferred embodiment of the present utility model;

[0024] Figure 4 It is an axonometric structural schematic diagram of the bracket in the preferred embodiment of the present utility model;

[0025] Figure 5 It is an axonometric structural schematic diagram of the housing in the preferred embodiment of the present utility model;

[0026] Figure 6 It is an axonometric structural schematic diagram of the device (removing the upper housing, bracket and air duct assembly) in the preferred embodiment of the present utility model;

[0027] Figure 7 It is an axonometric structural schematic diagram of the lower housing in the preferred embodiment of the present utility model;

[0028] Figure 8Explosion structure diagram of the air duct assembly and the connecting shaft of the preferred embodiment of the present utility model;

[0029] Figure 9 Connection schematic diagram of the connecting shaft, the rotating shaft module and the right-angle elbow assembly of the preferred embodiment of the present utility model;

[0030] Figure 10 Of the preferred embodiment of the present utility model Figure 10 Cross-sectional structure schematic diagram in;

[0031] Figure 11 Axonometric structure schematic diagram of the air duct assembly of the preferred embodiment of the present utility model;

[0032] Figure 12 Explosion structure diagram of the right-angle elbow assembly of the preferred embodiment of the present utility model. Detailed implementation manners

[0033] In order to make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below. Obviously, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0034] A device for cooperating with a dryer in the preferred embodiment of the present utility model; as Figure 1-2 shown, it includes a bracket 50 connected to a hot air source, and a housing 60 connected to the bracket. The upper end of the housing is connected to an air duct assembly 80 through a connecting shaft 70. The air duct assembly includes a right-angle elbow assembly 800 connected to the connecting shaft, and an air duct component 801 connected to the right-angle elbow assembly. Multiple groups of side air outlet grooves 805 are provided on the side of the air duct component, and an end air outlet hole 806 is provided at the end. The hot air emitted by the hot air source enters the housing through the bracket, and enters the air duct component through the housing, and then is discharged through the side air outlet grooves and the end air outlet holes for drying operations. The object to be dried can be placed on the side of the air duct component or sleeved on the end of the air duct component for drying. The drying is more convenient, and the drying device is easy to carry.

[0035] Specifically, as Figure 2As shown in the figure, the bracket 50 includes an air inlet pipe 500 for connecting the hot air emitted by the hot air source. A connecting plate 501 is integrally formed at the lower end of the air inlet pipe. The housing 60 includes an upper housing 600 and a lower housing 601 that are detachably connected. A recess 6000 is provided on the upper housing corresponding to the connecting plate 501. The connecting plate is placed at the recess to connect the bracket and the housing. A sealing strip 20 is provided on the connecting surface of the upper bracket and the lower bracket so that the hot air flows along the air guide groove in the housing. The upper end of the housing is connected to a connecting shaft 70, and both ends of the connecting shaft 70 are connected to a right-angle elbow assembly 800 and connected to a duct assembly 801 through the right-angle elbow assembly, so as to realize the simultaneous use of two groups of duct assemblies. Items such as shoes can be respectively hung on a group of duct assemblies to realize simultaneous drying operations. In order to facilitate the placement of the drying device, a counterweight 30 is provided inside the housing to increase the weight of the housing so that the duct assembly remains vertically upward, which is convenient for shoes or other drying items to be hung on the duct assembly. And a silica gel pad 40 is connected to the bottom of the housing to increase the friction of the drying device. The connecting shaft and the housing are connected through a rotating shaft module 90. By opening the rotating shaft module, the duct assembly can be opened for drying operations. By folding the rotating shaft module, the duct assembly can be retracted, reducing the volume of the drying device and facilitating portability.

[0036] Further, as Figures 3-5 shown, the bracket 50 includes an integrally formed air inlet pipe 500 and a connecting plate 501. An isolation net 502 is provided at the connection between the air inlet pipe and the connecting plate to prevent large items from entering the housing through the air inlet pipe and affecting the circulation and use of the hot air of the drying device. An extended connecting ring 5020 is provided at one end of the air inlet pipe facing the connecting plate. The upper housing is provided with a recess 6000 corresponding to the connecting plate, and a bayonet 6001 is provided around the recess. A buckle 5010 is provided on the connecting plate corresponding to the bayonet. The buckling of the buckle and the bayonet facilitates the disassembly and installation of the bracket. The upper housing is provided with a through hole 6002 corresponding to the connecting ring. The connecting ring is inserted into the through hole to conduct the air inlet pipe with the inside of the housing. And for the convenience of installing the bracket, a limiting post 5021 is provided around the connecting ring, and a limiting hole 6003 is provided around the through hole corresponding to the limiting post. After aligning the limiting post with the limiting hole and continuously inserting it until the outer wall of the connecting ring contacts the inner wall of the through hole until the connecting plate is placed at the recess, and inserting the buckle into the bayonet, the bracket is connected to the upper housing at this time.

[0037] Further, as Figures 3-5 shown, the housing 60 includes an upper housing 600 and a lower housing 601 that are detachably connected. An isolation plate 602 is provided inside the housing. The isolation plate encloses an air guide groove 603 that communicates with the through hole. A connecting shaft channel 608 that communicates with the air guide groove is provided at the upper end of the housing. After the bracket 50 is connected to the housing, the air inlet pipe 500 communicates with the air guide groove. The hot air enters the air guide groove through the air inlet pipe and flows from the air guide groove to the connecting shaft channel, and then dries the object through the duct assembly.

[0038] Furthermore, as Figures 6-7 shown, two sets of partition plates 602 are provided in the middle of the lower housing 601. The upper partition plate is V-shaped, and the lower partition plate is U-shaped. The partition plates of the upper housing are arranged corresponding to those of the lower housing, and a sealing strip 20 is installed between the partition plates of the upper and lower housings. Locking columns 6010 are provided on the partition plates. The sealing strip passes through the locking columns and is installed on the partition plates, and the locking columns lock the upper and lower housings. A wind guiding groove 603 is formed between the two sets of partition plates, and the wind guiding groove is also distributed in a V shape. The through holes 6002 at the ends of the wind guiding groove correspond. The hot air enters the wind guiding groove at the through holes and then flows along two branches, and enters the air duct assembly through two air inlets on the connecting shaft 70. By providing a sealing strip on the partition plate, more hot air flows in the wind guiding groove, avoiding the loss of hot air. And a counterweight block 601 is provided between the partition plate and the inner wall 604 of the housing. Multiple sets of locking columns 6010 are also provided corresponding to the counterweight block 30 to limit the counterweight block in the housing. At the same time, in order to increase the sealing performance of the housing, sealing columns 606 are provided on the periphery of the lower housing, and sealing grooves are provided corresponding to the sealing columns on the periphery of the upper housing. After the sealing columns are inserted into the sealing grooves, ultrasonic welding is used for connection to ensure the sealing performance of the housing and make the heat transfer more efficient. At the same time, in order to facilitate the information display of the drying device, a nameplate 607 is connected to the side of the housing. The nameplate and the housing are connected by a buckle and a bayonet, which is convenient for the installation and disassembly of the nameplate.

[0039] Furthermore, as Figures 6-7 shown, a connecting shaft channel 608 is provided at the upper end of the housing 60. The connecting shaft is placed at the connecting shaft channel, and the connecting shaft is symmetric about the left and right. The middle part is connected to the housing through a rotating shaft module 90. The rotating shaft module can be connected by products such as hinges, which is convenient for the rotation of the rotating shaft module relative to the housing. Among them, the fixed block 901 is connected to the housing, the movable block 900 is connected to the connecting shaft 70, and hinge fixing columns 6011 are provided on both the lower housing 601 and the connecting shaft corresponding to the rotating shaft module to prevent the hinge from moving left and right on the housing and the connecting shaft.

[0040] Furthermore, as Figure 6 and Figure 8 shown, right-angle elbow assemblies 800 are connected to both sides of the connecting shaft 70. The right-angle elbow assemblies are connected to the connecting shaft by an insertion method, and the other end of the right-angle elbow assemblies is also connected to the air duct assembly 801 by an insertion method. Since the rotation of the movable block relative to the fixed block drives the connecting shaft to rotate, the air duct assembly is driven to stand vertically or retract horizontally. It should be noted that a support structure can also be set after the rotating shaft module stands up to prevent it from falling down, making it more convenient to use.

[0041] Furthermore, as Figures 9-10As shown, the connecting shaft 70 is symmetric about the left and right. The middle part is connected to the rotating shaft module. Therefore, only one side of the connecting shaft will be described here. An air inlet 700 is provided on the left side of the connecting shaft. The air inlet is formed by an opening at the left part of the connecting shaft, and the part without the opening forms a rotating part 704. The left end of the connecting shaft forms an air outlet 701. Both sides of the rotating part are recessed inward to form a sealing ring groove 703, and a sealing ring 10 is placed therein. When the connecting shaft is connected to the housing, the sealing ring contacts the pressing diameter in the housing to seal both the left and right sides of the rotating part. Only the air inlet is in direct communication with a right angle of the air guide groove. The hot air entering the air guide groove enters the left side of the connecting shaft through the air inlet and then enters the right-angle elbow assembly 800 through the air outlet 701. Since part of it is opened as an air inlet, when the connecting shaft is rotated to make the rotating part contact the air guide groove to close the air guide groove, dust and the like are prevented from entering the air guide groove.

[0042] Furthermore, as Figures 9-12 shown, in order to facilitate the rotation of the right-angle elbow assembly 800 with the connecting shaft 70, a clamping post 705 is provided at the end of the connecting shaft. A clamping groove 8030 is provided inside the side of the right-angle elbow assembly connected to the connecting shaft to enable the right-angle elbow assembly to rotate with the rotation of the connecting shaft and drive the air duct assembly to rotate. The connection between the air duct assembly and the right-angle elbow assembly also uses the connection of a clamping post and a clamping groove. At this time, to prevent the air duct assembly from rotating and causing the dried items to fall.

[0043] Furthermore, as Figure 8 and Figures 11-12 shown, the air guide assembly 80 is integrally formed by connecting the upper air duct 802 and the lower air duct 803. The connection between the lower air duct and the upper air duct is connected by inserting a sealing post 606 into a sealing groove 605 and is fixed by ultrasonic sealing to prevent hot air from leaking through the connection. The right-angle elbow assembly 800 is a right angle in the XY plane. After the hot air enters the right-angle elbow assembly, the air flow velocity increases at the right angle, so that the air flow velocity of the hot air flowing out of the right-angle elbow assembly is faster. The air duct assembly 801 is a right angle in the YZ plane. The hot air flowing out of the right-angle elbow assembly enters the air duct assembly, and the air flow velocity further increases at the right angle, so that the air flow velocities of the lateral air outlet groove 805 and the end air outlet holes are faster, and the drying effect is better. It should be noted that in this utility model, the right-angle elbow assembly can also be an acute angle or an obtuse angle in the XY plane, and the air duct assembly can also be an acute angle or an obtuse angle in the YZ plane. That is, the hot air enters the connecting shaft in the horizontal plane and is blown out in the vertical plane through the air duct assembly for drying operations. Since it is convenient to hang and place the items to be dried in the vertical plane, the drying effect is better.

[0044] Furthermore, as Figure 8 and Figure 11As shown, multiple groups of lateral air outlet grooves 805 are arranged along the perimeter and are distributed vertically. They can also be arranged on different vertical planes to achieve drying of different parts, with a better drying effect. The end air outlet holes 806 are connected with isolation nets 502 to prevent large particulate objects from entering the drying device through the end air outlet holes and affecting the use of the drying device.

[0045] A dryer according to a preferred embodiment of the present utility model; the air outlet hole of the device generating hot air is connected to the air inlet pipe, and the hot air enters the above-mentioned device through the air inlet pipe. After changing the flow direction of the hot air in the device, it is discharged from the air outlet holes and air outlet grooves for drying operations. The specific structure and working principle of the device are as described above and will not be repeated here. Moreover, the device generating hot air is detachably connected to this device. The device generating hot air can also be a hair dryer or other related devices that can blow hot air, that is, generating hot air and blowing it into this device to combine with this device to dry shoes or other clothing, etc., and all can form a dryer for use. The device can be a hot air blower, a hair dryer or other devices that generate hot air and make the hot air flow.

[0046] It should be understood that the present utility model is described through some embodiments. Those skilled in the art know that without departing from the spirit and scope of the present utility model, various changes or equivalent replacements can be made to these features and embodiments. Additionally, under the teaching of the present utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application belong to the scope protected by the present utility model.

Claims

1. A device for use with a dryer, comprising a bracket connected to a hot air source, an air inlet pipe is provided on the bracket, and hot air generated by the hot air source enters the device through the air inlet pipe. The device further comprises a housing connected to the bracket, and is characterized in that: A wind guiding groove for air circulation with the air inlet pipe is arranged inside the housing. A wind guiding component is connected to one side of the housing. The wind guiding component is in air circulation with the wind guiding groove. An air outlet structure is arranged on the wind guiding component. The hot air generated by the hot air source enters the device through the air inlet pipe, enters the wind guiding component through the wind guiding groove, and is discharged through the air outlet structure for drying operation.

2. The device according to claim 1, characterized in that: The wind guiding component includes a right-angle elbow component and a wind guiding pipe component connected to the right-angle elbow component. The air outlet structure is arranged on the wind guiding pipe component, and the right-angle elbow component is connected to the wind guiding groove for air circulation.

3. The device according to claim 2, wherein: The right-angle elbow component bends in a plane to change the air circulation direction, and the wind guiding pipe component bends in a vertical plane to change the air flow direction.

4. The device according to claim 2, characterized in that: The wind guiding pipe component and the right-angle elbow component are connected through a limiting structure. The air outlet structure includes air outlet holes arranged at the end of the wind guiding pipe component, and / or at least one group of air outlet holes arranged on the side of the wind guiding pipe component.

5. The device according to claim 4, characterized in that: An isolation net is arranged on the end air outlet holes. When multiple groups of side air outlet holes are provided, they are evenly distributed on the side of the wind guiding pipe component.

6. The device according to any one of claims 1-5, characterized in that: The wind guiding component is connected to the housing through a connecting shaft. An air inlet hole is arranged on the connecting shaft. The air inlet hole is communicated with the wind guiding groove. The hot air enters the wind guiding component through the air inlet hole and is discharged through the air outlet structure.

7. The device according to claim 6, characterized in that: The connecting shaft is connected to the housing through a rotating shaft module. The rotating shaft module rotates to drive the wind guiding component to open and fold. The connecting shaft and the wind guiding component are connected through a limiting structure. The connecting shaft is symmetric about the left and right, so that the wind guiding component is symmetric about the left and right to form two groups of air outlet structures.

8. The device according to claim 1, characterized in that: Two groups of partition plates are arranged inside the housing. Sealing strips are arranged on the two groups of partition plates. A wind guiding groove is formed between the two groups of partition plates.

9. The device according to claim 8, characterized in that: The wind guiding groove is V-shaped, and its end is connected to the air inlet pipe. The hot air enters the wind guiding groove through the air inlet pipe and flows along two branches, and then enters the wind guiding component. A counterweight is arranged inside the housing. A silica gel strip is arranged at the bottom of the housing. The bracket is connected to the housing by a snap-fastening method, and a limiting structure is arranged at the connection between the bracket and the housing. The housing includes an upper housing and a lower housing. Sealing columns and sealing grooves are correspondingly arranged on the opposite faces of the upper housing and the lower housing. The wind guiding component includes an upper wind guiding pipe and a lower wind guiding pipe. Sealing columns and sealing grooves are correspondingly arranged on the opposite faces of the upper wind guiding pipe and the lower wind guiding pipe.

10. A dryer, characterized in that: The dryer includes a device for cooperating with the dryer as described in any one of claims 1-9, and a device for making air flow. The air outlet part of this device is connected to the air inlet hole to form air flow inside the device, and is discharged through the air outlet structure for drying operation.

Citation Information

Patent Citations

  • Movable shoe drying rack and shoe drying box

    CN216059721U