Universe drying clothes airing machine
The circular wind wall structure and plasma sterilization design of the full-area drying clothes drying machine solves the problem that existing clothes drying machines cannot dry clothes in the entire area, and achieves efficient and energy-saving clothes drying and sterilization effects.
Patent Information
- Application Number
- CN202422788436.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-14
AI Technical Summary
The drying system of the existing clothes drying machine is only for the middle part of the clothes drying machine, with poor drying effect and small range, which cannot meet the drying needs of clothes in the entire area in humid weather.
A full-area drying clothes drying machine was designed, which adopts a drying system with a circular wind wall structure, including a main air duct and a side air duct. The flat panel light air outlet forms a ring-shaped air outlet, covering all areas of the drying rack, and is combined with a plasma generator for sterilization.
It realizes full-area clothing drying, improves drying efficiency and sterilization effect, saves energy and protects the environment, and enhances the heat dissipation effect of the flat panel lamp.
Smart Images

Figure CN223343020U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of clothes drying machines, and in particular to a full-area drying clothes drying machine. Background Art
[0002] A clothes drying machine is a clothes drying device that can realize functions such as lifting, lighting, disinfection, and drying. It consists of a motor, a controller, a clothes drying rod, a lighting lamp, a disinfection lamp, a drying device, and other components.
[0003] As people's living standards improve, they pay more attention to the quality of life and have higher requirements for the functionality and convenience of clothes drying machines. As a result, the demand for high-performance and high-quality clothes drying machines is increasing. The current demand for clothes drying machines not only requires that they can hang clothes on sunny days with sufficient sunlight to allow them to dry naturally, but also requires them to have an active drying function so that they can quickly dry clothes hung on them in rainy and humid weather to prevent bacteria from breeding and odor from being exposed to humidity for a long time.
[0004] Although existing clothes drying machines have a drying function, their drying systems usually only target the middle area of the clothes drying machine, resulting in poor drying effect and a small drying range. Clothes usually hung on the small horizontal bar cannot be dried. Therefore, traditional clothes drying machines are difficult to meet consumers' drying needs in humid weather. Utility Model Content
[0005] The purpose of the embodiments of the present application is to provide a full-area drying and airing machine for clothes, which can solve the above-mentioned problems existing in the prior art.
[0006] To achieve the above objectives, this application adopts the following technical solutions:
[0007] On the one hand, a full-area drying and airing machine is provided, comprising a clothes drying main unit and a liftable drying rack disposed below the clothes drying main unit:
[0008] The clothes drying host includes a host housing, a drying system arranged inside the host housing, and a flat panel light arranged on the lower surface of the host housing, and the clothes drying rack includes at least two main drying rods arranged parallel to each other;
[0009] The flat panel lamp is provided with a host air outlet connecting the drying system with the outside of the clothes drying host. The host air outlet includes two first air outlets arranged parallel to the main drying rod and two second air outlets arranged perpendicular to the first air outlet. The first air outlet and the second air outlet are alternately arranged in sequence to form a ring-shaped host air outlet.
[0010] Optionally, the flat panel lamp includes a light source and a lampshade arranged outside the light source, and the main unit air outlet is arranged on the lampshade.
[0011] Optionally, there are two drying systems, and each of the two drying systems has an L-shaped drying duct. The two drying ducts form a rectangular full-area drying duct, and the drying duct includes a main duct corresponding to the first air outlet and a side duct corresponding to the second air outlet.
[0012] Optionally, the drying air duct has an air duct outlet, and the air duct outlet is arranged corresponding to the main unit air outlet.
[0013] Optionally, the drying air duct includes an air duct main body and an air collecting trough, and the air collecting trough gradually narrows from one end connected to the air duct main body to one end facing the main unit air outlet.
[0014] Optionally, the main air duct and the side air duct are an integrated structure, or the main air duct and the side air duct are separate structures and are fixedly connected by a connector.
[0015] Optionally, the drying system further includes a fan assembly, which is connected to the main air duct and located near the connection area between the main air duct and the side air duct, or the fan assembly is connected to the side air duct and located near the connection area between the side air duct and the main air duct.
[0016] Optionally, the fan assembly includes a fan housing, one end of the fan housing is connected to the drying air duct, a fan is provided at the end of the fan housing away from the drying air duct, and a heating core is provided at the end of the fan housing close to the drying air duct.
[0017] Optionally, an air guide plate is further included, the shape of which matches the cross-section of the drying air duct and is rotatably arranged in the drying air duct by a stepper motor to control the conduction area in the drying air duct.
[0018] Optionally, a plasma generator is further included, and the plasma generator is arranged in the drying air duct, and / or the plasma generator is arranged in the fan assembly.
[0019] The beneficial effects of the present application are as follows: when all the drying systems in the present application work at the same time, they can form a circular wind wall area covering the drying rack area, forming a drying space inside the wind wall area, and separating the internal area of the drying space from the external space through the wind wall area, so that the external moist and cold air is not easy to enter the drying space, and the air temperature inside the drying space is increased, thereby having a better drying effect and being more energy-saving.
[0020] At the same time, by cutting grooves on the flat panel lamp to form the main unit air outlet, the air outlet can be formed without changing the assembly structure of the clothes drying main unit, and the drying air can be smoothly discharged. At the same time, the appearance of the entire machine is slightly changed, and the heat inside the flat panel lamp can be diffused to the outside along with the drying air for drying, thereby enhancing the heat dissipation effect of the flat panel lamp and improving energy utilization. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The present application is further described in detail below with reference to the accompanying drawings and examples.
[0022] Figure 1 This is a schematic diagram of the overall structure of the global drying and airing machine according to an embodiment of the present application;
[0023] Figure 2 This is a side view of the clothes drying host according to an embodiment of the present application;
[0024] Figure 3 This is a schematic diagram of the three-dimensional structure of the clothes drying host according to an embodiment of the present application;
[0025] Figure 4 This is a schematic diagram of the drying area of the clothes drying machine according to an embodiment of the present application;
[0026] Figure 5 This is a schematic diagram of the positional relationship between the wind wall area and the drying space described in the embodiment of the present application;
[0027] Figure 6 This is a schematic diagram of the clothes drying host in the embodiment of the present application in a disassembled state;
[0028] Figure 7 This is a schematic diagram of the three-dimensional structure of the flat panel lamp according to an embodiment of the present application;
[0029] Figure 8 This is a schematic diagram of the three-dimensional structure of the drying system according to an embodiment of the present application;
[0030] Figure 9 This is a schematic diagram of the drying system in a decomposed state according to an embodiment of the present application;
[0031] Figure 10 This is a schematic diagram of the three-dimensional structure of the fan assembly according to an embodiment of the present application;
[0032] Figure 11 This is a schematic diagram of the three-dimensional structure of the fan assembly according to an embodiment of the present application from another perspective;
[0033] Figure 12 This is a schematic diagram of the blower assembly in the embodiment of the present application in a disassembled state;
[0034] Figure 13 for Figure 12 A partial enlarged view of point I in the middle;
[0035] Figure 14 This is a schematic diagram of the three-dimensional structure of the drying air duct described in the embodiment of the present application.
[0036] In the picture:
[0037] 100. Clothes drying main unit; 110. Flat panel light; 111. Main unit air outlet; 1111. First air outlet; 1112. Second air outlet; 120. Drying system; 121. Main air duct; 122. Side air duct; 124. Air duct outlet; 125. Air collecting trough; 130. Fan assembly; 131. Fan housing; 1311. Upper housing; 1312. Lower housing; 1313. Support ribs; 1314. Connecting ribs; 1315. Fan air inlet; 1316. Fan air outlet; 132. Fan; 133. Heating cell; 134. Air guide plate; 135. Stepper motor; 136. Plasma generator; 140. Top plate; 200. Drying rack; 210. Main drying rod; 220. Telescopic drying rod; 300. Wind wall area; 400. Drying space. DETAILED DESCRIPTION
[0038] To make the technical problems solved by this application, the technical solutions adopted, and the technical effects achieved more clearly, the technical solutions of the embodiments of this application are further described in detail below. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without making any creative efforts shall fall within the scope of protection of this application.
[0039] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
[0040] As people's living standards improve, they pay more attention to the quality of life and have higher requirements for the functionality and convenience of clothes drying machines. As a result, the demand for high-performance and high-quality clothes drying machines is increasing. The current demand for clothes drying machines not only requires that they can hang clothes on sunny days with sufficient sunlight to allow them to dry naturally, but also require that they have an active drying function so that they can quickly dry clothes hung on them in rainy and humid weather to prevent bacteria and odor from breeding when the clothes are left in a damp state for a long time.
[0041] Although the existing clothes drying machine has a drying function, its drying system is usually only targeted at the middle area of the clothes drying machine, with poor drying effect and a small drying range. Usually, only the clothes dried in the middle area of the main clothes drying rod can be dried. The existing clothes drying machine can not only hang clothes on the main clothes drying rod, but also dry clothes at the end of the main clothes drying rod in a direction perpendicular to the main clothes drying rod through the end cover of the telescopic clothes drying rod and the small cross bar. The clothes dried on the telescopic clothes drying rod and the small cross bar in the traditional clothes drying machine cannot be dried. Therefore, the traditional clothes drying machine is difficult to meet the drying needs of consumers in humid weather.
[0042] Based on the above situation, an embodiment of the present application provides a full-area drying clothes drying machine, which can dry clothes hung in all areas of the clothes drying machine without leaving any dead corners, thereby meeting the use needs of full-area drying.
[0043] In the embodiment of the present application, the orientation description is based on the state of the clothes drying machine hanging on the ceiling. The upper side refers to the side close to the clothes drying machine connected to the ceiling, and the lower side refers to the side close to the clothes drying machine facing the ground.
[0044] like Figure 1-14 As shown, the embodiment of the present application provides a full-area drying clothes drying machine, including a clothes drying main unit 100 and a liftable clothes drying rack 200 arranged below the clothes drying main unit 100; the clothes drying rack 200 is lifted and lowered by pulling a steel wire rope driven by a driving motor arranged on the clothes drying main unit 100, so that the clothes drying rack 200 can be raised to the top when not in use and when the clothes are hung. It does not affect the movement of people under the clothes drying machine and reduces the obstruction of indoor light. When it is necessary to hang clothes on the clothes drying rack 200 or remove clothes from the clothes drying rack 200, the clothes drying rack 200 can be lowered to avoid the use of tools such as clothes supporting rods for operation. The hanging and removing efficiency is high, there is no requirement for the height of the user, and the user experience is good.
[0045] The clothes drying host 100 includes a host shell, a drying system 120 arranged inside the host shell, and a flat panel light 110 arranged on the lower surface of the host shell. The drying rack 200 includes at least two main drying rods 210 arranged parallel to each other; the flat panel light 110 is provided with a host air outlet 111 connecting the drying system with the outside of the clothes drying host 100. The host air outlet 111 includes two first air outlets 1111 arranged parallel to the main drying rods 210 and two second air outlets 1112 arranged perpendicular to the first air outlet 1111. The first air outlet 1111 and the second air outlet 1112 are alternately arranged in sequence to form a ring-shaped host air outlet 111.
[0046] like Figure 3 、 4As shown, when all the drying systems 120 in the present application work simultaneously, they can form a ring-shaped wind wall area 300 covering the area of the drying rack 200, and form a drying space 400 inside the wind wall area 300. The wind wall area 300 separates the internal area of the drying space 400 from the external space, so that the external humid and cold air is not easy to enter the drying space 400. The air temperature inside the drying space 400 increases, thereby having a better drying effect and being more energy-saving.
[0047] The clothes drying main unit 100 includes a flat panel light 110 disposed on its lower surface. The main unit air outlet 111 is an opening formed in the flat panel light 110. In the present application, by slotting the main unit air outlet 111 in the flat panel light 110, an air outlet can be formed to smoothly discharge dry air without changing the assembly structure of the clothes drying main unit 100. Simultaneously, the appearance of the entire unit is minimally altered. Heat within the flat panel light 110 can be dissipated to the outside along with the dry air for drying, thereby enhancing the heat dissipation effect of the flat panel light 110 and improving energy utilization.
[0048] Specifically, the flat panel lamp 110 includes a light source and a lampshade arranged outside the light source, and the main unit air outlet 111 is arranged on the lampshade. Figure 3 、 7 As shown, the flat panel lamp 110 in the embodiment of the present application has a rectangular structure as a whole, and the lampshade also has a rectangular structure. Long strip-shaped first air outlets 1111 and second air outlets 1112 are provided in parallel with the four sides of the lampshade.
[0049] By setting the first air outlet 1111 and the second air outlet 1112 close to and parallel to the four sides of the lampshade, on the one hand, the coverage range of the main air outlet 111 can be maximized, so that the clothes dryer can achieve true full-area drying. On the other hand, the impact of opening the main air outlet 111 on the lampshade on the appearance of the lampshade can be reduced.
[0050] It can be understood that in the embodiment of the present application, the first air outlet 1111 and the second air outlet 1112 are not connected, that is, the first air outlet 1111 and the second air outlet 1112 are connected by the lampshade body at a close position, thereby ensuring that the lampshades on the inner and outer sides of the annular main body air outlet are an integrated structure.
[0051] The drying rack 200 in the embodiment of the present application includes a main drying rod 210 and a telescopic drying rod 220 arranged at the end of the main drying rod 210; the main drying rod 210 can be used for drying clothes in both the extended state and the retracted state of the telescopic drying rod 220, and the telescopic drying rod 220 can extend the drying length of the drying rack 200 so that more clothes can be dried on it.
[0052] It can be understood that the above-mentioned drying rack 200 including the main drying rod 210 and the telescopic drying rod 220 does not serve as a limitation to the present application. In other embodiments of the present application, the drying rack 200 can also be a main drying rod with only a certain length, which is not telescopic. The drying rods are specifically fixed in length or telescopic. Those skilled in the art can make reasonable settings according to actual needs, and this application does not limit them.
[0053] The following uses an example of the drying rack 200 including a main drying rod 210 and a telescopic drying rod 220 arranged at the end of the main drying rod 210 and capable of being extended relative to the main drying rod 210 to illustrate the working process of the drying system of the present application. In this embodiment, a first air outlet 1111 is provided corresponding to the main drying rod 210, and a second air outlet 1112 is provided perpendicular to the first air outlet 1111 and at the end of the first air outlet 1111, so that the air discharged from the first air outlet 1111 can dry the clothes hung on the main drying rod 210, and the air discharged from the second air outlet 1112 can dry the clothes hung on the telescopic drying rod 220, respectively meeting the drying requirements of the clothes on the main drying rod 210 and the telescopic drying rod 220. The second air outlet 1112 is perpendicular to the first air outlet 1111, and the drying air blown out by it can blow to the telescopic drying rod 220 and spread to both ends of the axial direction of the telescopic drying rod 220, so that it can blow to the clothes hung on the telescopic drying rod 220 when the telescopic drying rod 220 is extended.
[0054] In a further optional embodiment of the present application, a small cross bar is connected to the ends of the two main drying rods and / or between the two telescopic drying rods. Usually, the small cross bar is used to hang small pieces of clothing. The setting of the second air outlet 1112 can make the drying air directly act on the clothes hanging on the small cross bar, so that they are effectively dried.
[0055] Reference Figure 6 、 8 As shown in Figures 9 and 9, there are two drying systems 120 in the embodiment of the present application. The two drying systems 120 respectively have an L-shaped drying air duct. The two drying air ducts form a rectangular full-area drying air duct. The drying air duct includes a main air duct 121 corresponding to the first air outlet 1111 and a side air duct 122 corresponding to the second air outlet 1112.
[0056] In the embodiment of the present application, a single drying duct is set to be L-shaped, and the two drying ducts together form a rectangular full-area drying duct, which can adapt to the overall shape of the clothes drying host 100 and is fitted at the edge position of the clothes drying host 100 to form a drying area with the largest possible coverage, thereby achieving full-area drying.
[0057] In the present application, when all drying channels of the drying rod drying system 120 work simultaneously, a circular wind wall area 300 covering the drying rack 200 area can be formed, and a drying space 400 is formed inside the wind wall area 300. The wind wall area 300 separates the internal area of the drying space 400 from the external space, so that the external humid and cold air is not easy to enter the drying space 400. The air temperature inside the drying space 400 is increased, thereby having a better drying effect and being more energy-saving.
[0058] In the embodiment of the present application, the drying air duct has an air duct outlet 124 . In order to allow the drying air in the drying air duct to be smoothly discharged from the main unit outlet 111 , the air duct outlet 124 is arranged corresponding to the main unit outlet 111 .
[0059] Specifically, in the present application, the air duct outlet 124 provided on the main air duct 121 is a first air duct outlet, and the air duct outlet 124 provided on the side air duct 122 is a second air duct outlet. There are multiple first air duct outlets, and multiple first air duct outlets are arranged at intervals along the length direction of the main air duct 121. The shapes and orientations of all the first air duct outlets can be appropriately set according to the air outlet requirements of the specific position. For example, in an optional embodiment of the present application, along the extension direction of the main air duct 121, the first air duct outlets can be arranged more and more densely so that the air outlet volume at the far end can be guaranteed; for another example, in another optional embodiment of the present application, along the extension direction of the main air duct 121, two or more first air duct outlets can be arranged side by side at the same position.
[0060] By arranging the air outlets more and more densely along the extension direction of the main air duct 121 or increasing the number of air outlets at the same position, the air outlet at each position of the entire main air duct 121 can be made relatively uniform.
[0061] Similarly, the density and number of the air duct outlets 124 on the side air duct 122 can be reasonably set according to actual needs, and will not be described in detail in this application.
[0062] Reference Figure 14 As shown, the drying duct includes a duct body and an air collecting slot 125. The air collecting slot 125 gradually narrows from one end connected to the duct body to the end facing the main unit air outlet 111. The provision of the air collecting slot 125 can increase the airflow speed, helping to speed up the air flow speed on the surface of the clothes, accelerate moisture evaporation, shorten the drying time, and improve the drying efficiency, thereby reducing energy consumption during the drying process.
[0063] Optionally, in one embodiment of the present application, the main air duct 121 and the side air duct 122 are integrally formed using an injection molding process. By providing the main air duct 121 and the side air duct 122 as an integral structure, the connection structure between the drying duct and the clothes drying main unit can be simplified and the overall structural strength can be improved.
[0064] It should be pointed out that the above-mentioned main air duct 121 and side air duct 122 are an integrated structure and this does not limit the present application. In other embodiments, the main air duct 121 and the side air duct 122 can also be separate structures and fixedly connected by connecting parts.
[0065] Specifically, refer to Figure 8-12 As shown, the drying system 120 further includes a fan assembly 130 , which is connected to the main air duct 121 and is located near the connection area between the main air duct 121 and the side air duct 122 .
[0066] It can be understood that in the present application, the fan assembly 130 is arranged near the area where the main air duct 121 and the side air duct 122 are connected to each other, so that the main air duct 121 and the side air duct 122 can share the fan assembly 130.
[0067] In one working condition, clothes are hung only on the main drying rod 210 corresponding to the main air duct 121. At this time, only the main air duct 121 can be opened and the side air duct 122 can be closed. In this state, the drying air generated by the fan assembly 130 only enters the main air duct 121 and is discharged from the main air outlet 111 of the main air duct 121. In this case, since the drying air is concentrated in the main air duct 121, a larger air volume can be formed in the main air duct 121 when the operating power of the fan 132 is the same, thereby generating a higher wind speed. The high wind speed can speed up the drying speed of the clothes hung on the main drying rod 210, thereby shortening the drying time and saving more energy.
[0068] Similar to the above situation, when clothes are hung only on the telescopic drying rod 220 or the small horizontal bar corresponding to the side air duct 122, only the side air duct 122 can be opened and the main air duct 121 can be closed, which can also make the wind force more concentrated, thereby shortening the drying time and saving electricity.
[0069] It should be pointed out that the above-mentioned fan assembly 130 is arranged on the main air duct 121 and does not serve as a limitation to the present application. In other embodiments, the fan assembly 130 can also be connected to the side air duct 122 and located near the connection area between the side air duct 122 and the main air duct 121.
[0070] In the present application, those skilled in the art can choose whether the fan assembly 130 is arranged on the main air duct 121 or on the side air duct 122 according to actual needs.
[0071] Reference Figure 10-12 As shown, the fan assembly 130 includes a fan housing 131, one end of the fan housing 131 is connected to the drying air duct, the fan housing 131 is used to wrap the fan 132 and the impeller arranged at the dynamic output end of the fan 132, and has the function of protecting and guiding the airflow. The fan housing 131 can be made of cast iron, aluminum alloy or other materials with good rigidity and sealing. The fan 132 is arranged on the side of the fan housing 131 away from the drying air duct. The function of the fan 132 is to drive the impeller to rotate. In this solution, The fan 132 is an asynchronous motor or a synchronous motor. A heating core 133 is provided inside the fan housing 131 near one end of the drying air duct. The heating core 133 directly heats the air passing through the fan 132, so that the air temperature rises rapidly, shortening the drying time. The end of the heating core 133 is provided at the fan housing 131 to form a fan outlet 1316, and the end of the fan 132 is provided to form a fan inlet 1315. The fan inlet 1315 is a mesh structure that can effectively prevent foreign matter from entering the fan housing 131.
[0072] Reference Figure 12 As shown, the fan housing 131 described in the present application includes an upper shell 1311 and a lower shell 1312. The upper shell 1311 and the lower shell 1312 are buckled together to form a cylindrical fan housing 131. Support ribs 1313 are provided inside the fan housing 131 corresponding to the heating core 133. The heating core 133 is supported by the support ribs 1313 and is spaced apart from the inner wall of the fan housing 131. In this embodiment, by providing the support ribs 1313, the heating core 133 does not directly contact the inner wall of the fan housing 131, and the contact area between the heating core 133 and the fan housing 131 is reduced, so that the heat generated by the heating core 133 will not quickly diffuse to the outside of the fan housing 131 through the fan housing 131, effectively avoiding heat loss. At the same time, the heat-bearing capacity requirements of the fan housing 131 material can be reduced, avoiding deformation and aging of the fan housing 131 due to heat, which affects its use.
[0073] The clothes drying host 100 in the embodiment of the present application further includes a top plate 140 . A plurality of connecting ribs 1314 are provided on the upper shell 1311 , and the fan housing 131 is fixedly connected to the top plate 140 via the connecting ribs 1314 .
[0074] Furthermore, in the present application, the fan assembly 130 is arranged in the connection area between the main air duct 121 and the side air duct 122. In order to control whether the drying air generated by the fan assembly 130 enters the main air duct 121, the side air duct 122 or enters the main air duct 121 and the side air duct 122 at the same time, the embodiment of the present application provides a specific solution, referring to Figure 9 As shown, the fan assembly 130 described in the embodiment of the present application also includes an air guide plate 134, the shape of the air guide plate 134 matches the cross-section of the drying air duct, and the air guide plate 134 is driven by a stepper motor 135 and can be rotatably set in the drying air duct to control the conduction area in the drying air duct.
[0075] Specifically, the shape of the air guide plate 134 is set to match the cross-section of the drying air duct, so that the air guide plate 134 blocks part of the drying air duct when it is parallel to the cross-section of the drying air duct, and the drying air generated by the fan assembly 130 can only enter the unblocked drying air duct.
[0076] In the present application, the air guide plate 134 is arranged in the main air duct 121 near the end of the side air duct 122 , and / or the air guide plate 134 is arranged in the side air duct 122 near the end of the main air duct 121 .
[0077] Reference Figure 8 、 9 As shown, the following is an example in which the air guide plate 134 is arranged in the main air duct 121 near the end of the side air duct 122, and the fan assembly 130 is connected to the side air duct 122. In this scheme, the air guide plate 134 has two working states, one of which is that the air guide plate 134 is rotated to be perpendicular to the axis of the main air duct 121. In this state, the air guide plate 134 separates the main air outlet area of the main air duct 121 from the fan assembly 130. The drying air generated during the operation of the fan assembly 130 only enters the side air duct 122 and cannot enter the main air outlet area of the main air duct 121. In this way, only the drying area corresponding to the side air duct 122 is dried. Another working state is that the air guide plate 134 rotates to be parallel to the axis of the main air duct 121. In this state, the air guide plate 134 no longer hinders the drying air generated by the fan assembly 130 from entering the main air outlet area of the main air duct 121. The main air duct 121 and the side air duct 122 discharge air at the same time to achieve full-area drying.
[0078] It can be understood that the setting position of the above-mentioned air guide plate 134 does not serve as a limitation to the present application. In other embodiments, the air guide plate 134 can also be set in the side air duct 122 near the end of the main air duct 121, and the fan assembly 130 is connected to the main air duct 121. In this solution, it is possible to switch between the state where only the main air duct 121 is discharging air and the state where the main air duct 121 and the side air duct 122 are discharging air at the same time.
[0079] In another optional embodiment of the present application, an air guide plate 134 is provided at the end of the main air duct 121 close to the side air duct 122 and the end of the side air duct 122 close to the main air duct 121, and the fan assembly 130 is arranged between the two air guide plates 134. This scheme can realize the control of air outlet into the main air duct 121, air outlet from only the side air duct 122, and simultaneous air outlet from the main air duct 121 and the side air duct 122 by separately controlling the opening and closing of the two air guide plates 134.
[0080] Preferably, the global drying and airing machine described in this application also includes a plasma generator 136. Plasma, also known as the "fourth state of matter," is a state of matter. In addition to solid, liquid, and gaseous states, when a substance is heated to a sufficiently high temperature, electrons break free from the constraints of the atomic nucleus, forming a state in which positively charged ions and negatively charged electrons coexist. This state is plasma. The high-energy particles generated by plasma can destroy the protein and nucleic acid structures of bacteria and viruses, thereby achieving the purpose of efficient sterilization. Plasma sterilization is fast and can kill most bacteria and viruses on clothing in a short time, effectively preventing cross-infection.
[0081] The plasma generator 136 is a device capable of generating plasma. Figure 9 As shown, in an optional embodiment of the present application, the plasma generator 136 is disposed in the drying duct to generate plasma in the drying duct. The plasma generated by the plasma generator 136 mixes with the dry air in the duct, so that the dry air blown out of the duct is rich in plasma. The sterilizing ability of the plasma sterilizes the clothes while drying them.
[0082] It is understandable that the above-mentioned plasma generator 136 is set in the drying air duct and does not serve as a limitation to the present application. In other embodiments, the plasma generator 136 can also be set in the fan assembly 130. The plasma generated by the plasma generator is mixed with the drying air in the fan assembly 130, and then enters the air duct, and is then transported through the air duct to be blown out to the air outlet to dry and sterilize the clothes.
[0083] The technical principles of the present application have been described above in conjunction with specific embodiments. These descriptions are intended solely to explain the principles of the present application and are not to be construed in any way as limiting the scope of protection of the present application. Based on the explanations herein, those skilled in the art will be able to devise other specific implementations of the present application without inventive effort, and such implementations will fall within the scope of protection of the present application.
Claims
1. A full-area drying clothes drying machine, characterized in that: It comprises a clothes drying main unit (100) and a drying rack (200) which is arranged below the clothes drying main unit (100) and can be raised and lowered. The clothes drying host (100) comprises a host housing, a drying system (120) arranged inside the host housing, and a flat panel light (110) arranged on the lower surface of the host housing; the clothes drying rack (200) comprises at least two main drying rods (210) arranged parallel to each other; The flat panel lamp (110) is provided with a main air outlet (111) for connecting the drying system (120) with the outside of the clothes drying main unit (100). The main air outlet (111) includes two first air outlets (1111) arranged parallel to the main drying rod (210) and two second air outlets (1112) arranged perpendicular to the first air outlets (1111). The first air outlets (1111) and the second air outlets (1112) are alternately arranged in sequence to form the main air outlet (111) in a ring shape.
2. The full-area drying and airing machine according to claim 1, characterized in that: The flat panel lamp (110) comprises a light source and a lampshade arranged outside the light source, and the main unit air outlet (111) is arranged on the lampshade.
3. The full-area drying and airing machine according to claim 1 or 2, characterized in that: There are two drying systems (120), and each of the two drying systems (120) has an L-shaped drying air duct. The two drying air ducts form a rectangular full-area drying air duct, and the drying air duct includes a main air duct (121) corresponding to the first air outlet (1111) and a side air duct (122) corresponding to the second air outlet (1112).
4. The full-area drying and airing machine according to claim 3, characterized in that: The drying air duct has an air duct outlet (124), and the air duct outlet (124) is arranged corresponding to the main unit air outlet (111).
5. The full-area drying and airing machine according to claim 3, characterized in that: The drying air duct comprises an air duct main body and an air collecting groove (125), and the air collecting groove (125) gradually narrows from one end connected to the air duct main body to one end facing the main unit air outlet (111).
6. The full-area drying and airing machine according to claim 3, characterized in that: The main air duct (121) and the side air duct (122) are an integrated structure, or the main air duct (121) and the side air duct (122) are separate structures and are fixedly connected via a connecting piece.
7. The full-area drying and airing machine according to claim 3, characterized in that: The drying system (120) further comprises a fan assembly (130), wherein the fan assembly (130) is connected to the main air duct (121) and is located near a connection area between the main air duct (121) and the side air duct (122), or the fan assembly (130) is connected to the side air duct (122) and is located near a connection area between the side air duct (122) and the main air duct (121).
8. The full-area drying and airing machine according to claim 7, characterized in that: The fan assembly (130) comprises a fan housing (131), one end of the fan housing (131) is connected to the drying air duct, a fan (132) is provided inside the fan housing (131) at an end away from the drying air duct, and a heating core (133) is provided inside the fan housing (131) at an end close to the drying air duct.
9. The full-area drying and airing machine according to claim 7, characterized in that: It also includes an air guide plate (134), the shape of which matches the cross section of the drying air duct, and is rotatably arranged in the drying air duct by being driven by a stepping motor (135) to control the conduction area in the drying air duct.
10. The full-area drying and airing machine according to claim 7, characterized in that: It also includes a plasma generator (136), which is arranged in the drying air duct, and / or the plasma generator (136) is arranged in the fan assembly (130).