Clothes airing machine and sunshine-imitating airing device thereof

By designing a imitation sun drying device, using multi-wavelength wicks and fans to simulate natural drying, the problem of poor drying effect of the clothes dryer on rainy days or in closed balcony is solved, and efficient and energy-saving drying effect is achieved.

CN223118715UInactive Publication Date: 2025-07-18GUANGDONG HOTATA TECH GRP
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Patent Information

Application Number
CN202422417796.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-18
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing clothes dryer has poor drying effect on rainy days or closed balcony environments. The heat pump clothes dryer is not suitable for heavy or special materials, and it consumes high power. The drying effect of the electric clothes dryer is far from the natural drying effect.

Method used

Design a imitation sun drying device, including a substrate, an outer guide plate, an inner guide plate, an adapter plate and a lighting component, and is equipped with a multi-wavelength wick light component, combining a fan and an ozone generator to simulate the natural drying effect and provide a variety of working modes.

Benefits of technology

It can simulate natural drying effect under any weather conditions, improve drying efficiency, reduce electricity consumption, and be suitable for a variety of clothing materials, with uniform light and close to natural drying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a sunshine-imitating airing device. The sunshine-imitating airing device comprises a base plate; the outer side guide plate is connected with the lengthwise edge of the substrate, an air guide opening is formed in a first segment outside the vertical projection area of the substrate, and a light guide opening is formed in a second segment within the vertical projection area of the substrate; the inner side guide plate is connected with the lower portion of the base plate, and a gap is formed between the lower edge of the inner side guide plate and the edge of the second segment; the adapter plate is connected to the position where the second segment is overlapped with the inner side guide plate; the illumination assembly is connected with the adapter plate and directly faces the light guide port; and a fan. According to the sunshine-imitating airing device, the illumination assembly comprising the multi-wavelength lampwick is arranged, the lampwick having the positive effect on the airing effect can be arranged according to the sunlight components, the layout area of the illumination assembly is large, the illumination area is large, light rays are uniform, and the illumination effect is close to the natural condition.
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Description

Technical Field

[0001] This application relates to the technical field of clothes dryers. Specifically, this application relates to a clothes dryer and a device for simulating sunlight drying thereof. Background Art

[0002] The natural drying of clothes is greatly affected by the environment. Ventilation drying is not suitable in rainy, humid weather or sandstorm weather. Sunlight drying can only be achieved when the weather is sunny. Moreover, with the development of society, the urbanization of residences has gathered, and the living conditions may only provide enclosed balconies or no balconies, or some people actively choose houses with enclosed balconies. Therefore, when drying clothes, it is impossible to receive sunlight irradiation, or the time or opportunity to receive sunlight irradiation is reduced. There are heat pump dryers in the prior art, but thick clothes and clothes made of special materials are not suitable for using heat pump dryers. Some electric clothes dryers have a drying function, but the drying effect is quite different from the natural drying effect, and the power consumption is relatively high, making it difficult to expand the application. Summary of the Utility Model

[0003] In view of the disadvantages of the existing methods, this application provides a clothes dryer and a device for simulating sunlight drying thereof to solve the technical problem of poor drying effect in the related art.

[0004] In a first aspect, a device for simulating sunlight drying is provided, which includes:

[0005] A substrate;

[0006] An outer guide plate, connected to the longitudinal edges of the substrate, with air guide openings opened in a first segment outside the vertical projection area of the substrate and light guide openings opened in a second segment within the vertical projection area of the substrate;

[0007] An inner guide plate, connected to the lower part of the substrate, with a gap provided between the lower edge of the inner guide plate and the edge of the second segment for serving as an air outlet;

[0008] An adapter plate, connected at the overlapping position of the second segment and the inner guide plate;

[0009] A lighting assembly, including multi-wavelength lamp cores, connected to the adapter plate and facing the light guide openings;

[0010] A blower, assembled inside the inner guide plate and forming an air duct with the inner side wall of the inner guide plate.

[0011] Optionally, the first segment is provided with air guide openings.

[0012] Further optionally, the light guide openings of the second segment are arranged along the longitudinal direction of the substrate, and at least one lateral side of the second segment is set as a curved surface for gathering light.

[0013] Furthermore, the adapter plate is connected to the inner guide plate by bolts, and the adapter plate is connected to the second segment by a snap structure.

[0014] Optionally, the lighting assembly includes a wick that emits at least one of the following wavelengths: near-infrared, UVA ultraviolet, UVB ultraviolet, UVC ultraviolet, and far-infrared.

[0015] Furthermore, an ozone generator is provided at the air outlet; an ozone reducer is provided inside the air duct.

[0016] Optionally, the ozone reducer includes a filter made of aluminum-zinc alloy and a reduction layer including manganese dioxide.

[0017] Optionally, at least one of the blowers is coaxially assembled to the inner guide plate.

[0018] Furthermore, the substrate is assembled with the main unit for power feeding and the outer guide plate exposes the air outlet.

[0019] In a second aspect, a clothes dryer is provided, including a main unit, characterized in that the main unit is assembled with the sun-simulating drying device as described above.

[0020] The beneficial technical effects brought by the technical solutions provided in the embodiments of the present application include:

[0021] (1) The sun-simulating drying device of the present application is configured with a lighting assembly including a wick with multiple wavelengths, which can configure a wick that has a positive effect on the drying effect according to the composition of sunlight. Moreover, the layout area of the lighting assembly is relatively large, resulting in a large lighting area, uniform light, and a lighting effect close to natural conditions.

[0022] (2) In the sun-simulating drying device of the present application, the outer guide plate is arranged outside the substrate, increasing and enlarging the air outlets, which can expand the air intake volume, improve the blowing effect of the blowing mode. The blowing mode can not only increase the air flow around the drying object, but also dissipate heat for the lighting assembly, and can also concentrate ozone towards the drying object. When the wind is strong, it can also assist in fluffing the drying object, making the drying effect closer to the drying effect under outdoor sunlight.

[0023] Additional aspects and advantages of the present application will be given in part in the following description, and these will become apparent from the following description, or can be understood through the practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The above and / or additional aspects and advantages of the present application will become apparent and easy to understand from the following description of the embodiments in conjunction with the drawings, where:

[0025] Figure 1A schematic structural diagram of a sunlight-simulating drying device provided in an embodiment of the present application;

[0026] Figure 2 for Figure 1 Bottom view of

[0027] Figure 3 for Figure 1 Right view of;

[0028] Figure 4 for Figure 2 Cross-sectional view along the BB direction. DETAILED DESCRIPTION

[0029] The embodiments of the present application are described below in conjunction with the drawings in the present application. It should be understood that the implementation methods described below in conjunction with the drawings are exemplary descriptions for explaining the technical solutions of the embodiments of the present application and do not constitute a limitation on the technical solutions of the embodiments of the present application.

[0030] Those skilled in the art will appreciate that, unless expressly stated, the "said" and "the" used herein may also include plural forms. It should be further understood that the term "including" used in the specification of the present application refers to the presence of the features, integers, steps, operations and / or components, but does not exclude the implementation of other features, information, data, steps, operations, elements, components and / or combinations thereof supported by the technical field. The term "and / or" used herein refers to at least one of the items defined by the term, for example, "A and / or B" may be implemented as "A", or as "B", or as "A and B".

[0031] In order to make the objectives, technical solutions and advantages of the present application clearer, the implementation methods of the present application will be further described in detail below in conjunction with the accompanying drawings.

[0032] refer to Figures 1 to 4 The sunlight-drying device of the present application comprises a base plate 1, an outer guide plate 2, an inner guide plate 3, an adapter plate 4, a lighting assembly 5 and a fan 6. Specifically:

[0033] The base plate 1 serves as a mounting surface for other components on one hand, and is convenient for assembly into an integrated structure and installation on the main machine on the other hand. In this embodiment, the lateral dimension of the base plate 1 matches the lateral dimension of the side of the main machine facing the drying object, so as to make use of the two side edges of the main machine; the longitudinal dimension of the base plate 1 is based on the longitudinal length of the fan 6. If the assembly space allows for the coaxial installation of more than one fan 6, the longitudinal dimension of the base plate 1 can be configured according to the side-by-side length of multiple fans 6. In this embodiment, the base plate 1 is configured with a flange 11 on the longitudinal edge to facilitate the installation of the outer guide plate 2, and the base plate 1 body is provided with a plurality of through holes for assembling other components as a positioning structure.

[0034] The outer guide plate 2 is connected to the longitudinal edge of the substrate 1. Specifically, the upper edge of the outer guide plate 2 can be bolted to the flanging 11 of the longitudinal edge of the substrate 1. In this embodiment, the outer guide plate 2 includes a connected first segment 21 and second segment 22.

[0035] The installation position of the first segment 21 falls outside the vertical projection area of the substrate 1. The uppermost edge of the first segment 21 is bolted to the flanging 11 of the longitudinal edge of the substrate 1. The first segment 21 is provided with an air guide opening 211. After the first segment 21 is installed on the host through the substrate 1, the air guide opening 211 should be avoided being blocked. A possible implementation is that the substrate 1 is installed on the edge of the host and the first segment 21 extends beyond the edge of the host. At this time, the air guide opening 211 can be provided on each surface of the first segment 21; or, the substrate 1 is installed on the edge of the host, the first segment 21 still falls within the vertical projection plane of the host, but the vertical distance between the first segment 21 and the host is large enough so that the air guide opening 211 facing the host can ventilate. At this time, the air guide opening 211 can be provided on each surface of the first segment 21; or, the substrate 1 is installed on the edge of the host, the first segment 21 falls within the vertical projection plane of the host, the vertical distance between the first segment 21 and the host is small, and the air guide opening 211 is not provided in the area close to the host. The body of the first segment 21 forms the air guide opening 211 by opening a structure in the form of a fence, mesh, shutter or slot. Providing the air guide opening 211 on multiple surfaces is beneficial to increasing the blowing flow rate and improving the wind speed.

[0036] The second segment 22 extends integrally with the end of the first segment 21 into the vertical projection area of the substrate 1, and a light guide opening 221 is formed in the second segment 22. Further, a light illumination component 5 is provided inside the second segment 22, and the light waves emitted by the light illumination component 5 pass through the light guide opening 221 and gather below the substrate 1. Preferably, the light guide openings 221 of the second segment 22 are arranged along the longitudinal direction of the substrate 1. Correspondingly, the light illumination component 5 includes a wick 51 capable of emitting multiple wavelengths: near-infrared, UVA ultraviolet, UVB ultraviolet, UVC ultraviolet, and far-infrared. These components respectively correspond to the components of sunlight. Among the solar radiation reaching the ground, the energy of infrared rays is the most, accounting for about 50 - 70%, the proportion of visible light is the second, accounting for about 46 - 30%, and the ultraviolet rays are the least, only accounting for 4 - 0.1%. Visible light has no significant effect on drying clothes. The light emitted by the light illumination component 5 is outside the visible light range, but has a positive effect on drying. For example, near-infrared and far-infrared rays can heat the drying object and promote the evaporation of moisture on the surface of the drying object, and various ultraviolet rays can achieve the effect of sterilization and deodorization, avoiding the generation of peculiar smell on the drying object. The light guide opening 221 of the second segment 22 can be realized by a through hole facing the wick 51, or can also be realized in the form of a fence, mesh hole or slot hole. Further, at least one lateral side of the second segment 22 is also provided with a curved surface 222, and the surface of the curved surface 222 is coated with a reflective material, which can play a role in appropriately gathering light and improving the light illumination effect.

[0037] The inner guide plate 3 is connected to the lower part of the substrate 1 and is generally parallel to the outer guide plate 2. A cavity is formed between the inner guide plate 3, the substrate 1 and the outer guide plate 2, and this cavity is used to assemble the fan 6. And the fan 6 and the inner side wall of the inner guide plate 3 form an air duct 7. Further, a gap is provided between the lower edge of the inner guide plate 3 and the edge of the second segment 22, which is used as the air outlet 31 of the air duct 7. Preferably, the inner guide plate 3 has a wind guiding curved surface 32 that conforms to fluid mechanics. A plurality of stiffening ribs 33 are provided on the outer side surface of the inner guide plate 3 to assist in forming the wind guiding curved surface 32, and a protective layer 34 is also provided on the outer side of the wind guiding curved surface 32. The inner guide plate 3 is also provided with a sealing end structure 35 perpendicular to the axis of the fan 6 at the position corresponding to the installation of the fan 6, which is used to fix the rotating shaft 61 of the fan 6.

[0038] When the fan 6 rotates, the air in the air duct 7 is blown out from the air outlet 31, and negative pressure is formed in the air duct 7. The external air can enter the air duct 7 through the air guide opening 211 due to the negative pressure of the air duct 7. Further, by setting functional modules on the air duct 7, the treatment of the air flowing through the air duct 7 can be realized.

[0039] In one implementation, an ozone generator 71 is provided at the air outlet 31. It has an electrode gap. The ozone generator 71 utilizes the oxygen (O2) in the air duct 7 and guides the oxygen to the ionization chamber, which is usually an electrode gap. In this space, an ionization source (such as an ultraviolet lamp or a corona discharger) provides sufficient energy to decompose oxygen molecules into individual oxygen atoms (O) and oxygen molecules (O2, but in the ionization process here, it should be understood that oxygen molecules are decomposed into free oxygen atoms O and the remaining oxygen molecules O2). The free oxygen atoms (O) generated during the ionization process combine with the undecomposed oxygen molecules (O2) to form ozone molecules (O3). This process can be represented by the chemical equation: O + O2 → O3. The generated ozone is released into the air, and the ozone is transported to the area to be treated under the guidance of the fan 6. In this embodiment, the items being dried hanging or placed below the air outlet 31 are treated with ozone.

[0040] Furthermore, an ozone reducer 72 is also provided inside the air duct 7. Ozone is an unstable chemical component and will decompose naturally. However, ozone has strong oxidizing properties, and it is necessary to control the concentration, range, and time of ozone's action. Therefore, the remaining ozone after treating the items being dried needs to be removed to avoid adverse effects on the human body, items or equipment that are intolerant to strong oxidation. One possible implementation is to contact ozone with a strong reducing agent to consume ozone. Removing ozone chemically has the advantage of low power consumption. Another is to reduce the ozone concentration in the air by adsorption, and removing ozone physically also has the advantage of low power consumption. In this embodiment, the ozone reducer 72 is arranged at a position in the air duct 7 close to the air guide port 211 and can be fixed to the inner wall of the first segment 21. The ozone reducer 72 includes a filter screen made of aluminum-zinc alloy and also includes a reduction layer containing manganese dioxide. After the aluminum-zinc alloy reacts with ozone, an oxide layer is formed on the surface. The aluminum-zinc alloy serves as an adsorption medium for ozone, and the formed oxide layer serves as a protective layer 34 on the surface of the filter screen. Manganese dioxide is a metal oxide with strong reducing properties and can promote the reduction of ozone to oxygen. When air enters the air duct 7 through the air guide port 211, it first comes into contact with the ozone reducer 72. The ozone reducer 72 reduces the ozone or other oxidizing substances in the air to achieve harmlessness. When the air after reduction treatment flows through the air outlet 31, the air contacts the ozone generator 71, causing oxygen to be converted into ozone and transporting the newly generated ozone to below the air outlet 31. The ozone generator 71 can be started as needed and is only enabled during the time period when ozone disinfection is required.

[0041] The fan 6 can not only convey ozone, but also convey temperature. When the far-infrared lamp and the near-infrared lamp are started, it can heat the air near the wick 51. The fan 6 can divert the heated air near the air outlet 31 downward to heat the air below; the strong wind formed by the fan 6 can also shake the drying object, which can not only accelerate the air circulation on the surface of the drying object, promote the exchange of ozone and hot air, but also appropriately loosen the drying object.

[0042] Further, the lighting assembly 5 is installed through an adapter plate 4, and the adapter plate 4 is connected to the overlapping position of the second segment 22 and the inner guide plate 3. In this embodiment, the adapter plate 4 is fixedly connected to the inner guide plate 3, which can be connected by bolts. The adapter plate 4 is detachably connected to the second segment 22, which can be reversibly connected to each other by respectively arranging snap structures on both of them. And a space for installing the lighting assembly 5 is formed between the connecting plate and the second segment 22, so that the light waves of the lighting assembly 5 can penetrate the second segment 22 to irradiate the drying object below. The aforementioned snap structure can be configured with a slot 41 on the lower surface of the adapter plate 4 and a strip 223 on the upper surface of the second segment 22. The strip 223 can be embedded in the slot 41 through deformation to achieve fixation, and the strip 223 can also be separated from the slot 41 through deformation under the traction of an external force. This connection method can, on the one hand, ensure the stability of the assembly of the lighting assembly 5 and prevent the installation position of the lighting assembly 5 from being easily loosened, and on the other hand, it can facilitate the replacement of the lighting assembly 5. The aforementioned wick 51 that can emit various wavelengths belongs to consumables, and it will be damaged after being used for more than a certain period of time and needs to be replaced. The assembly structure shown in this embodiment only needs to separate the second segment 22 from the adapter plate 4 to expose the lighting assembly 5 for replacement, or remove the entire outer guide plate 2, and the outer guide plate 2 can also be cleaned to reduce the dust and dirt adhering to the surface of the outer guide plate 2.

[0043] The device for imitating sunlight drying in this application can form multiple working modes through the cooperation of each functional module:

[0044] Disinfection mode, a working mode in which at least one of the ultraviolet lamp wick 51 (generating UVA ultraviolet rays, UVB ultraviolet rays, and UVC ultraviolet rays) in the lighting assembly 5 and the ozone generator 71 is started;

[0045] Heating mode, a working mode in which at least one of the far-infrared lamp wick 51 and the near-infrared lamp wick 51 in the lighting assembly 5 is started;

[0046] Blowing mode, a working mode in which the fan 6 is started.

[0047] Based on the device for imitating sunlight drying in this application and the electric clothes dryer using this device, this application also provides a control method for imitating sunlight drying, including the following steps:

[0048] Set the drying duration;

[0049] Set to start the disinfection mode at the initial stage and the end stage of timing respectively during the drying duration;

[0050] Start the heating mode and the blowing mode throughout the drying duration.

[0051] Among them, the drying duration refers to the duration that the device for simulating sunlight drying in this application is needed to assist in drying clothes, and does not refer to the total duration of the drying object on the clothes dryer. To further achieve the effect of simulating sunlight drying, set the drying duration not to exceed 8 hours, which can not only simulate the sunlight exposure duration but also control the power consumption. Use the built-in timing module to set the starting moment, initial stage, ending moment, and final stage of timing during the drying duration, so as to facilitate confirming the starting nodes of the foregoing various working modes.

[0052] In this embodiment, the starting moment of timing of the drying duration can be set manually, or can be used as the starting moment of timing after the clothes dryer senses the load. Set the initial stage of timing to be 20 - 30 minutes after the starting moment of timing. Correspondingly, the final stage of timing is 20 - 30 minutes before the ending moment of timing. Such setting of the initial stage and the final stage of timing is equivalent to setting the working duration of the disinfection mode. According to common knowledge, using ozone with a concentration of 30mg / m 3 Concentration for 15 minutes can achieve a killing rate of natural bacteria of over 90%. Combining with the actual situation of the application scenario of this application, the action time of ozone can be appropriately extended, and the working duration of the disinfection mode can also be adjusted according to the usage environment of the clothes dryer and the power of the ozone generator 71.

[0053] Furthermore, the cooperation between the heating mode and the blowing mode can affect the drying duration. It is possible that when the heating mode and / or the blowing mode is started, the remaining drying duration is predicted periodically according to the intensity of the infrared light emitted or reflected by the laundry. There is a certain correlation between the intensity of the infrared light emitted or reflected by the surface of the laundry and the humidity of the laundry, based on which the moisture content of the laundry can be measured, and the remaining drying duration is predicted by combining the efficiency of the current heating mode and / or blowing mode. When the remaining drying duration obtained by prediction is less than the remaining timing duration of the current drying duration, the remaining timing duration is replaced with the remaining drying duration, which is beneficial to shortening the total drying time; when the remaining drying duration obtained by prediction is greater than the remaining timing duration of the current drying duration, the intensity of the heating mode and / or the blowing mode is adjusted so that the remaining drying duration predicted in the next cycle is not greater than the remaining timing duration of the current drying duration, so as to ensure that the total drying time does not exceed the drying duration. The adjustment of the heating mode can be controlled by the number of the far-infrared lamp wicks 51 and the near-infrared lamp wicks 51, and can also be coordinated with the blowing mode; the blowing mode can be controlled by adjusting the rotation speed of the blower 6. Through the control in the above manner, the power consumption can be saved as much as possible, and the laundry is also prevented from being heated and blown for a long time, which has an adverse effect on the laundry.

[0054] The sunlight-simulating drying device of the present application is preferably used in cooperation with an electric clothes dryer. In other implementation manners, it can also be assembled in devices with a drying function such as washing machines and dryers. When the sunlight-simulating drying device of the present application is assembled in a washing machine or a dryer, the specific structures of the outer guide plate 2, the inner guide plate 3 and the blower 6 used can be reasonably adjusted without affecting the essence of the utility model of the present application.

[0055] The electric clothes dryer applicable to the embodiment of the present application includes a main body and a drying assembly, and the main body is used to control the extension and retraction of the drying assembly. The drying assembly is functionally divided according to the main drying objects, including a main drying rack, a telescopic quilt drying rod, an electric telescopic rack, etc. In addition to performing the extension and retraction of the drying assembly, the main body is also configured with module functions related to clothes drying, and the sunlight-simulating drying device of the present application is one of them. A possible implementation manner is that the sunlight-simulating drying device of the present application is assembled on the lower surface of the main body, directly facing the drying assembly, and when it needs to be enabled, the drying duration starts to be timed.

[0056] In summary, the present application provides a device for imitating sunlight drying, which includes: a substrate; an outer guide plate connected to the longitudinal edges of the substrate, with a ventilation opening provided in a first segment outside the vertical projection area of the substrate and a light guide opening provided in a second segment within the vertical projection area of the substrate; an inner guide plate connected to the lower part of the substrate, with a gap provided between the lower edge of the inner guide plate and the edge of the second segment for serving as an air outlet; a transfer plate connected to the overlapping position of the second segment and the inner guide plate; a lighting component including a multi-wavelength lamp core, connected to the transfer plate and facing the light guide opening; and a blower assembled inside the inner guide plate and forming an air duct with the inner side wall of the inner guide plate. Further, the present application also provides a control method for imitating sunlight drying, including the following steps: setting a drying duration; starting a disinfection mode at the initial and final stages of timing respectively within the drying duration; and starting a heating mode and a blowing mode throughout the drying duration. The device for imitating sunlight drying in the present application is configured with a lighting component including a multi-wavelength lamp core, which can configure a lamp core that has a positive effect on the drying effect according to the composition of sunlight, and the layout area of the lighting component is relatively large, resulting in a large lighting area and uniform light, and the lighting effect is close to natural conditions.

[0057] Those skilled in the art of the present technology can understand that the various operations, methods, steps, measures, and solutions in the processes discussed in the present application can be alternated, changed, combined, or deleted. Further, other steps, measures, and solutions in the various operations, methods, and processes discussed in the present application can also be alternated, changed, rearranged, decomposed, combined, or deleted. Further, the steps, measures, and solutions in the related technologies that are the same as those disclosed in the present application can also be alternated, changed, rearranged, decomposed, combined, or deleted.

[0058] In the description of the present application, the directions or positional relationships indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are exemplary directions or positional relationships based on the drawings, which are for the convenience of describing or simplifying the embodiments of the present application, rather than indicating or implying that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present application.

[0059] The terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise specified, the meaning of "a plurality" is two or more.

[0060] In the description of the present application, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be directly connected, or indirectly connected through an intermediate medium, and it may be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0061] In the description of this specification, specific features, structures, materials, or characteristics may be combined in any one or more embodiments or examples in a suitable manner.

[0062] The above are only some embodiments of the present application. It should be noted that for those of ordinary skill in the art, without departing from the technical concept of the solution of the present application, other similar implementation means based on the technical idea of the present application also belong to the protection scope of the embodiments of the present application.

Claims

1. A device for imitating sunlight drying, characterized in that, Comprising: Substrate (1); Outer guide plate (2), connected to the longitudinal edge of the substrate (1), a first segment (21) outside the vertical projection area of the substrate (1) is provided with an air guide opening (211), and a second segment (22) within the vertical projection area of the substrate (1) is provided with a light guide opening (221); Inner guide plate (3), connected to the lower part of the substrate (1), a gap is provided between the lower edge of the inner guide plate (3) and the edge of the second segment (22) for serving as an air outlet (31); Adapter plate (4), connected at the overlapping position of the second segment (22) and the inner guide plate (3); Lighting assembly (5), including a multi-wavelength lamp core (51), connected to the adapter plate (4) and facing the light guide opening (221); Fan (6), assembled inside the inner guide plate (3), and a wind channel (7) is formed with the inner side wall of the inner guide plate (3).

2. The device for simulating sunlight drying according to claim 1, characterized in that, The first segment (21) is provided with an air guide opening (211).

3. The device for simulating sunlight drying according to claim 1, characterized in that, The light guide openings (221) of the second segment (22) are arranged along the longitudinal direction of the substrate (1), and at least one side in the transverse direction of the second segment (22) is set as a curved surface (222) for concentrating light.

4. The device for simulating sunlight drying according to claim 1, characterized in that, The adapter plate (4) is connected to the inner guide plate (3) by bolts, and the adapter plate (4) is connected to the second segment (22) by a snap structure.

5. The device for imitating sunlight drying according to claim 1, characterized in that, The lighting assembly (5) includes a lamp core (51) emitting at least one of the following wavelengths: near-infrared, UVA ultraviolet, UVB ultraviolet, UVC ultraviolet, and far-infrared.

6. The device for simulating sunlight drying according to claim 1, characterized in that, An ozone generator (71) is provided at the air outlet (31); an ozone reducer (72) is provided inside the wind channel (7).

7. The device for imitating sunlight drying according to claim 6, wherein The ozone reducer (72) includes a filter made of aluminum-zinc alloy and a reduction layer including manganese dioxide.

8. The device for simulating sunlight drying according to claim 1, wherein At least one of the fans (6) is coaxially assembled on the inner guide plate (3).

9. The device for simulating sunlight drying according to claim 1, wherein The substrate (1) is assembled with a main machine for power supply and the outer guide plate (2) exposes the air guide opening (211).

10. A clothes dryer, comprising a main body, characterized in that, The main machine is assembled with the sun-simulation drying device according to any one of claims 1 to 9.

Citation Information

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