Universe drying clothes airing machine

By designing a ring-shaped air outlet and a rectangular ring-shaped air duct structure on the clothes drying rack, a full-area drying air wall is formed, which solves the problem of the small drying range of existing clothes drying racks and achieves efficient and energy-saving drying of clothes in the entire area.

CN223468589UActive Publication Date: 2025-10-24GUANGDONG HOTATA TECH GRP
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Patent Information

Application Number
CN202422788298.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-10-24
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

Existing clothes drying systems only target the central area, resulting in poor drying performance and a small drying range, making it difficult to meet the drying needs of clothes throughout the entire area in humid weather.

Method used

Design a full-area drying clothes dryer with a ring-shaped main unit air outlet surrounding the drying rack. Combined with a rectangular ring-shaped air duct structure, it forms a ring-shaped air wall to ensure that the drying air covers all areas and blocks the entry of external humid and cold air through the air wall, thus achieving full-area drying.

Benefits of technology

It improves drying effect and efficiency, reduces energy consumption, and ensures that clothes can be dried quickly throughout the entire area in humid weather, avoiding bacterial growth and odor.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a global drying clothes airing machine which comprises a clothes airing main machine, a drying system is arranged in the clothes airing main machine, an air duct air outlet is formed in the drying system, and a main machine air outlet is formed in the clothes airing main machine; the air duct air outlet corresponds to the main machine air outlet in position so as to communicate the drying system with the outside of the clothes airing main machine; the drying rack is hung below the clothes drying main machine; the main machine air outlet is of an annular structure and is arranged above the drying rack in a surrounding mode. The air outlet of the main machine is arranged to be annular and arranged above the drying rack in a surrounding mode, and drying air blown out by the drying system can conduct targeted drying on the area, where clothes are hung, on the drying rack. Under the condition that all the air outlets discharge air at the same time, the annular air wall covering the drying rack area is formed, the drying space is formed in the air wall, the internal area of the drying space is separated from the external space through the air wall, external wet and cold air is not prone to entering the drying space, and the temperature of the air in the drying space rises; therefore, the drying effect is better, the drying efficiency is high, and the energy-saving effect is good.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clothes drying machines, and in particular to a full-range drying clothes drying machine. BACKGROUND

[0002] A clothes drying machine is a clothes drying device that can realize functions such as lifting, lighting, sterilization, and drying. It is composed of a motor, a controller, a clothes drying rod, a lighting lamp, a sterilization lamp, and a drying device.

[0003] With the improvement of people's living standards, people pay more attention to the quality of life, and higher requirements are put forward for the functionality and convenience of clothes drying machines. Therefore, the demand for high-performance and high-quality clothes drying machines is also increasing. The existing clothes drying machines not only require clothes to be hung for natural drying on sunny days, but also need to have an active drying function to quickly dry the clothes hung on them in rainy and humid weather, so as to prevent the clothes from breeding bacteria and producing odors in a humid environment for a long time.

[0004] Although the existing clothes drying machines have a drying function, their drying system usually only targets the middle part of the clothes drying machine, and the drying effect is poor and the drying range is small. Therefore, the traditional clothes drying machine is difficult to meet the drying needs of consumers in humid weather. CONTENT OF THE INVENTION

[0005] The purpose of the present application is to provide a full-range drying clothes drying machine that can solve the above problems in the prior art.

[0006] To achieve the above purpose, the present application adopts the following technical solution:

[0007] A full-range drying clothes drying machine is provided, comprising:

[0008] A clothes drying host is provided with a drying system inside, a wind channel air outlet is arranged on the drying system, and a host air outlet is arranged on the clothes drying host;

[0009] The wind channel air outlet and the host air outlet correspond in position to connect the drying system and the outside of the clothes drying host;

[0010] A clothes drying rack is hung below the clothes drying host; the host air outlet has a ring structure and is arranged above the clothes drying rack.

[0011] Optionally, the drying system comprises a fan assembly and a wind channel assembly, the wind channel mouth shell comprises a first wind channel and a second wind channel that are perpendicular to each other, the fan assembly is arranged at the connection between the first wind channel and the second wind channel and is located inside the right-angle region formed by the first wind channel and the second wind channel.

[0012] Optionally, the drying system is two, two first air ducts of the two drying systems are parallel to each other, and two second air ducts are parallel to each other, and together form a global air duct in a rectangular ring structure.

[0013] Optionally, the main machine air outlet includes two first air outlets arranged in parallel and two second air outlets perpendicular to the first air outlets, two first air outlets are arranged below the first air duct corresponding to the two first air ducts, and two second air outlets are arranged below the second air duct corresponding to the two second air ducts.

[0014] Optionally, the fan assembly includes a fan volute and a worm fan, the fan volute has a fan air outlet, the fan air outlet is connected to the first air duct and the second air duct at the connection between the first air duct and the second air duct, and the air duct assembly of the two drying systems is arranged in a central symmetric manner inside the clothes drying main machine, and the worm fans of the two drying systems are arranged in a central symmetric manner inside the clothes drying main machine on one side of the clothes drying main machine.

[0015] Optionally, it also includes a driving motor arranged in the middle of the clothes drying main machine, a driving end of the driving motor is located inside the clothes drying main machine away from the worm fan, and the driving end is drivingly connected to the drying rack through a transmission mechanism to drive the drying rack to rise and fall.

[0016] Optionally, the transmission mechanism includes a steel wire rope and a reversing wheel arranged in the middle of the clothes drying main machine, the steel wire rope is wound on the reversing wheel to change the steel wire rope from a horizontal state to a vertical state, and the reversing wheel is arranged in the middle of the clothes drying main machine.

[0017] Optionally, the reversing wheel is installed on the clothes drying main machine through a wheel support, the wheel support is rotatably arranged on the clothes drying main machine, and the rotation axis of the wheel support relative to the clothes drying main machine is parallel to the mounting plane of the clothes drying main machine.

[0018] Optionally, a gap is arranged on the air duct assembly corresponding to the position of the steel wire rope, the gap penetrates the air duct assembly along the extension direction of the steel wire rope, and the steel wire rope is arranged in the gap.

[0019] Optionally, the gap is recessed inward on the surface of the air duct assembly, and the gap has a V-shaped structure and penetrates the surface of the air duct assembly along the extension direction of the steel wire rope.

[0020] Optionally, the two drying systems are arranged in a central symmetric manner inside the clothes drying main machine.

[0021] Optionally, the clothes airing host comprises a host cover, a host cover plate and a flat lamp assembly, the host cover, the host cover plate and the flat lamp assembly jointly form an installation space, and the drying system is arranged in the installation space.

[0022] Optionally, the flat lamp assembly is arranged in a spaced manner with the host cover, and a peripheral portion of the flat lamp assembly and the host cover form the host air outlet.

[0023] Optionally, a wind channel combination part is arranged at a position where the first wind channel and the second wind channel are connected, the wind channel combination part is in communication with the first wind channel and the second wind channel, and the fan assembly is connected to the wind channel combination part.

[0024] Optionally, a wind baffle is further arranged at the wind channel combination part, the wind baffle is arranged in a rotatable manner, and the wind baffle can be switched between a position where the wind channel combination part is blocked from being in communication with the first wind channel and a position where the wind channel combination part is blocked from being in communication with the second wind channel.

[0025] Optionally, a first mounting groove is arranged on the wind channel assembly, a wind baffle driving motor is arranged in the first mounting groove, a power output end of the wind baffle driving motor is in transmission connection with the wind baffle inside the wind channel assembly through the wind channel assembly.

[0026] Optionally, a plurality of atmosphere lamps are further arranged, at least one atmosphere lamp is arranged corresponding to each host air outlet, the atmosphere lamp is arranged above the flat lamp assembly and is arranged towards the host air outlet.

[0027] Optionally, a second mounting groove is arranged on the wind channel assembly, a plasma generator is arranged in the second mounting groove, and an emission head of the plasma generator extends to the inside of the wind channel assembly through the wind channel assembly.

[0028] Optionally, the wind channel assembly comprises a wind channel upper shell and a wind channel lower shell, the wind channel upper shell and the wind channel lower shell are buckled, and the first mounting groove and the second mounting groove are arranged on the wind channel upper shell or the wind channel lower shell.

[0029] Optionally, the drying system further comprises a heating module and a temperature detection module, and the heating module and the temperature detection module are arranged at a region where the fan assembly and the first wind channel and the second wind channel are connected.

[0030] The beneficial effects of the present application are: in the present application, the host air outlet is arranged in a ring shape and surrounds the top of the drying rack, so that the drying air blown by the drying system can be used for targeted drying of the area where the clothes are hung on the drying rack; on the other hand, when all the air outlets blow air at the same time, a ring-shaped air wall covering the drying rack area is formed, a drying space is formed inside the air wall, the inside area of the drying space is separated from the outside space by the air wall, so that the external humid and cold air is not easy to enter the inside of the drying space, the air temperature inside the drying space is increased, thereby having better drying effect, high drying efficiency and good energy saving effect. BRIEF DESCRIPTION OF DRAWINGS

[0031] The present application will be further described in detail below according to the drawings and embodiments.

[0032] Figure 1 The overall structure schematic diagram of the full-area drying clothes drying machine described in the embodiments of the present application is shown in the figure.

[0033] Figure 2 The schematic diagram of the clothes drying host from one perspective described in the embodiments of the present application is shown in the figure.

[0034] Figure 3 The schematic diagram of the drying area of the clothes drying machine described in the embodiments of the present application is shown in the figure.

[0035] Figure 4 The schematic diagram of the position relationship between the air wall area and the drying space described in the embodiments of the present application is shown in the figure.

[0036] Figure 5 The schematic diagram of the clothes drying host from another perspective described in the embodiments of the present application is shown in the figure.

[0037] Figure 6 The schematic diagram of the clothes drying host in the exploded state described in the embodiments of the present application is shown in the figure.

[0038] Figure 7 The schematic diagram of the internal structure of the clothes drying host described in the embodiments of the present application is shown in the figure.

[0039] Figure 8 The schematic diagram of the structure shown in the figure in the state of removing part of the air duct assembly is shown in the figure. Figure 7

[0040] The enlarged view of the I outlet shown in the figure is shown in the figure. Figure 9 Figure 8 The schematic diagram of the three-dimensional structure of the drying system described in the embodiments of the present application is shown in the figure.

[0041] Figure 10 The schematic diagram of the drying system in the exploded state described in the embodiments of the present application is shown in the figure.

[0042] Figure 11

[0043] Figure 12 ​​A perspective view of the drying system according to an embodiment of the present application in another exploded state;

[0044] Figure 13 A perspective view of the drying system according to an embodiment of the present application in another exploded state;

[0045] Figure 14 A perspective view of the drying system according to an embodiment of the present application in another exploded state; Figure 13 A perspective view of the drying system according to an embodiment of the present application in another exploded state;

[0046] Figure 15 A perspective view of the drying system according to an embodiment of the present application in another exploded state;

[0047] Figure 16 A perspective view of the drying system according to an embodiment of the present application in another exploded state;

[0048] Figure 17 A perspective view of the drying system according to an embodiment of the present application in another exploded state; Figure 8 A perspective view of the drying system according to an embodiment of the present application in another exploded state;

[0049] Figure 18 A perspective view of the drying system according to an embodiment of the present application in another exploded state; Figure 7 A perspective view of the drying system according to an embodiment of the present application in another exploded state.

[0050] A perspective view of the drying system according to an embodiment of the present application in another exploded state;

[0051] 100, clothes drying main machine; 110, drying system; 111, fan assembly; 1111, first volute assembly; 1112, second volute assembly; 1113, wind wheel; 1114, air inlet; 1115, motor; 1116, fan volute; 1117, worm gear fan; 1118, fan air outlet; 112, air duct assembly; 1121, first air duct; 1122, second air duct; 1123, first mounting slot; 1124, second mounting slot; 1125, air duct air outlet; 1131, air duct upper shell; 1132, air duct lower shell; 114, air duct joint; 115, wind shield; 116, wind shield drive motor; 117, atmosphere lamp; 118, first air passage; 119, second air passage; 120, main machine cover; 130, main machine cover plate; 131, grille; 132, reinforcing strip; 140, flat panel lamp assembly; 150, plasma generator; 151, emission head; 152, high-voltage package; 160, heating module; 170, temperature detection module; 180, main machine air outlet; 1801, first air outlet; 1802, second air outlet; 200, drying rack; 210, main drying rod; 220, telescopic drying rod; 300, wind wall area; 400, drying space; 500, drive motor; 600, transmission mechanism; 610, steel wire rope; 620, reversing wheel; 630, wheel support; 640, speed change mechanism; 700, accommodation gap; 800, guide wheel; 900, anti-jumping line mechanism. DETAILED DESCRIPTION

[0052] In order to make the technical problems solved by the present application, the technical solutions adopted and the technical effects achieved more clear, the technical solutions of the embodiments of the present application are further described in detail below. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work belong to the scope of protection of the present application.

[0053] In the description of the present application, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, it can be the internal communication of two elements or the interaction relationship of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0054] With the improvement of people's living standard, people pay more attention to the quality of life, and put forward higher requirements on the functionality and convenience of the clothes drying machine, so the demand for high performance and high quality clothes drying machine is increasing. The existing clothes drying machine not only requires that it can hang clothes for natural drying on sunny days, but also needs to have the function of active drying, so that it can quickly dry the clothes hung on it in rainy and humid weather, so as to prevent the clothes from breeding bacteria and producing odor for a long time in the humid state.

[0055] Although the existing clothes drying machine has the drying function, its drying system usually only targets the middle part of the clothes drying machine, and the drying effect is poor and the drying range is small, usually only the clothes hung in the middle part of the main drying rod can be dried, so the traditional clothes drying machine is difficult to meet the large drying and drying demand of consumers in humid weather.

[0056] Based on the above situation, the present application provides a full-area drying clothes drying machine, which can dry all clothes hung on the clothes drying machine, leaving no dead angle, so as to meet the use demand of full-area drying.

[0057] In the present application, the state of the clothes drying machine hanging on the ceiling is taken as the reference for orientation description, the upper side means the side close to the ceiling connected to the clothes drying machine, and the lower side means the side close to the ground.

[0058] As shown in Figures 1-18 The present application provides a full-area drying clothes drying machine, which comprises a clothes drying host 100, a drying system 110 is arranged in the clothes drying host 100, a air duct air outlet 1125 is arranged on the drying system 110, and a host air outlet 180 is arranged on the clothes drying host 100.

[0059] The air outlet 1125 of the air duct corresponds to the position of the main air outlet 180 to communicate the drying system 110 with the main air outlet 180 outside the clothes drying main machine 100;

[0060] The main air outlet 180 is annularly arranged above the drying rack 200.

[0061] In the present application, the main air outlet 180 is annularly arranged above the drying rack 200, so that the drying air blown by the drying system 110 can be used to dry the clothes hung on the drying rack 200, and when all the main air outlets 180 blow air at the same time, a ring-shaped air wall covering the drying rack area is formed, an air drying space is formed inside the air wall, the inside area of the air drying space is separated from the outside space by the air wall, so that the outside humid and cold air is not easy to enter the inside of the air drying space, the air temperature inside the air drying space is increased, thereby having better drying effect, high drying efficiency and good energy saving effect.

[0062] For example, the drying rack 200 has a main drying rod 210 and a telescopic drying rod 220 arranged at the end of the main drying rod, it can be understood that the air blown by the main air outlet 180 is divergent, that is, it has a certain width and the range gradually increases, the drying air blown by the main air outlet 180 arranged at the main drying rod 210 can blow to the main drying rod 210 and diffuse to both sides of the main drying rod 210 along the length direction, the main air outlet 180 arranged corresponding to the telescopic drying rod 220 is perpendicular to the main air outlet 180 arranged corresponding to the main drying rod 210, the drying air blown by the main air outlet 180 arranged corresponding to the telescopic drying rod 220 can blow to the telescopic drying rod 220 and diffuse to both ends of the telescopic drying rod 220 along the axis direction, so that it can blow to the clothes hung on the telescopic drying rod 220 in the extended state.

[0063] Referring to Figures 3-4 The drying system 110 and the main air outlet 180 corresponding to the main drying rod 210 and the telescopic drying rod 220 make the drying air blown therefrom dry the clothes hung on the drying rack 200, and the clothes hung on the telescopic drying rod 220 can also be effectively dried, and when all the air outlets blow air at the same time, a ring-shaped air wall area 300 covering the drying rack 200 is formed, an air drying space 400 is formed inside the air wall area 300, the inside area of the air drying space 400 is separated from the outside space by the air wall area 300, so that the outside humid and cold air is not easy to enter the inside of the air drying space 400, the air temperature inside the air drying space 400 is increased, thereby having better drying effect, high drying efficiency and good energy saving effect.

[0064] It can be understood that the above-mentioned drying rack 200 includes the main drying rod 210 and the telescopic drying rod 220, which is not used as a limitation of the present application, and in other embodiments, the drying rack 200 can also be a structure with only a fixed-length drying rod.

[0065] Specifically, referring to Figure 10 The drying system 110 in the embodiment of the present application includes a fan assembly 111 and an air duct assembly 112. The air duct assembly 112 includes a first air duct 1121 and a second air duct 1122 which are perpendicular to each other. The fan assembly 111 is arranged at the connection between the first air duct 1121 and the second air duct 1122 and is located inside the right-angle region formed by the first air duct 1121 and the second air duct 1122.

[0066] It can be understood that the above-mentioned fan assembly 111 arranged at the connection between the first air duct 1121 and the second air duct 1122 means that the fan outlet of the fan assembly 111 is connected to the connection between the first air duct 1121 and the second air duct 1122.

[0067] Referring to Figures 10-15 The first air duct 1121 and the second air duct 1122 in the embodiment of the present application can be an integrated structure and have an overall L shape.

[0068] In other embodiments of the present application, the first air duct 1121 and the second air duct 1122 can also be arranged as a split structure, fixedly connected through a connecting piece, or the first air duct 1121 and the second air duct 1122 of the split structure are respectively installed in the drying main machine 100.

[0069] Further, referring to Figures 7-8 The drying system 110 in the embodiment of the present application is two, and the two first air ducts 1121 of the two drying systems 110 are parallel to each other, and the two second air ducts 1122 are parallel to each other, together forming a full-domain air duct in a rectangular ring shape.

[0070] The use of two drying systems 110 to form a full-domain air duct in a rectangular ring shape can ensure the air volume in each air duct, and at the same time facilitate the control of the air outlet condition in the air duct. By simple reversing, the air outlet of the first air duct 1121 and / or the second air duct 1122 can be realized, that is, one first air duct 1121, two first air ducts 1121, one second air duct 1122, two second air ducts 1122, one first air duct 1121 and one second air duct 1122, all first air ducts 1121 and all second air ducts 1122, and so on.

[0071] As an optional solution, referring to Figure 2As shown, the host air outlet 180 includes two first air outlets 1801 arranged in parallel and two second air outlets 1802 perpendicular to the first air outlets 1801, the two first air outlets 1801 correspond to the two first air ducts 1121 and are arranged below the two first air ducts 1121, and the two second air outlets 1802 correspond to the two second air ducts 1122 and are arranged below the two second air ducts 1122.

[0072] By arranging the air ducts directly above the corresponding host air outlets, the drying air blown out of the air ducts can be directly blown to the outside of the clothes drying host through the air outlets, which can reduce the flow distance of the drying air and simplify the structure of the air ducts compared to the case where the air ducts and the air outlets are far away, on the one hand, it can reduce the resistance of the drying air during flow and improve the working efficiency, on the other hand, it can reduce the materials required for processing the air duct assembly, thereby saving production costs.

[0073] Further, referring to Figures 10-11 As shown, the fan assembly 111 in this embodiment includes a fan volute 1116 and a worm fan 1117, the fan volute 1116 has a fan air outlet 1118, the fan air outlet 1118 is connected to the first air duct 1121 and the second air duct 1122 at the connection position of the first air duct 1121 and the second air duct 1122, and the air duct assemblies 112 of the two drying systems 110 are arranged in a central symmetry inside the clothes drying host 100, and the worm fans 1117 of the two drying systems 110 are arranged in an axial symmetry on one side of the clothes drying host 100 inside the clothes drying host 100.

[0074] By connecting the fan volute 1116 and the air duct through the fan air outlet 1118 at the connection position of the first air duct 1121 and the second air duct 1122, the drying air formed in the fan volute 1116 can freely enter the first air duct 1121 and the second air duct 1122, and the first air duct 1121 and the second air duct 1122 can be supplied with air at the same time, the air duct assembly 112 is arranged in a central symmetry, which can make the two first air ducts 1121 of the two air duct assemblies 112 parallel to each other, and the two second air ducts 1121 parallel to each other, together forming a full-area drying air duct in a rectangular structure, and the two worm fans 1117 arranged in an axial symmetry inside the clothes drying host 100 can optimize the space layout inside the clothes drying host 100, so that the components inside the clothes drying host 100 are more compact and more space-saving.

[0075] Further, referring to Figure 17 , 18As shown, the total drying clothes drying machine described in the embodiment of the present application further comprises a driving motor 500 arranged in the middle of the drying main machine 100, the driving end of the driving motor 500 is located inside the drying main machine 100 away from one side of the worm fan 1117, and the driving end is drivingly connected to the drying rack 200 through a transmission mechanism 600 to drive the drying rack 200 to ascend and descend.

[0076] In the embodiment of the present application, there is a gap between the two worm fans 1117, the driving motor 500 can be arranged in the gap, and the driving end thereof is directed away from the side of the worm fan 1117. Since the transmission mechanism 600 needs to be arranged at the driving end and has a large volume, arranging it away from the side of the worm fan can make it staggered with the worm fan 1117, further optimizing the space components, and at the same time, it can avoid the interference between the steel wire rope 610 and the worm fan 1117 to affect the installation and use.

[0077] Referring to Figures 17-18 As shown, the transmission mechanism 600 in the embodiment of the present application comprises a steel wire rope 610 and a reversing pulley 620 arranged in the middle of the drying main machine 100, the steel wire rope 610 is wound on the reversing pulley 620 to change the steel wire rope 610 from a horizontal state to a vertical state, and the reversing pulley 620 is arranged in the middle of the drying main machine 100.

[0078] The reversing pulley 620 in the embodiment of the present application is a pulley with a wheel groove arranged on the peripheral surface, which is a wheel capable of changing the direction of power transmission. One end of the steel wire rope is drivingly connected to the driving motor 500, and the other end is connected to the drying rack 200 through the pulley. The steel wire rope 610 between the driving motor 500 and the reversing pulley 620 is arranged horizontally, and the steel wire rope 610 between the reversing pulley 620 and the drying rack 200 is changed to vertical arrangement after reversing by the reversing pulley 620 to hoist the drying rack 200.

[0079] The reversing pulley 620 rolls during the process of pulling the drying rack 200 up and down by the steel wire rope 610, so that the rolling friction between the steel wire rope 610 and the reversing pulley 620 is reduced, the wear is reduced, and the noise generated during the work process is reduced.

[0080] The reversing pulley 620 in the embodiment of the present application is installed on the drying main machine 100 through a wheel support 630, and the reversing pulley 620 comprises a wheel body and a rotating shaft. The wheel support 630 is provided with an axle hole corresponding to the rotating shaft, and the reversing pulley 620 is rotatably installed on the wheel support 630 through the cooperation of the rotating shaft and the axle hole.

[0081] Further, the wheel support 630 in the embodiment of the present application is rotatably arranged on the clothes drying main machine 100, and the rotation axis of the wheel support 630 is parallel to the mounting plane of the clothes drying main machine 100. During the mounting process, it is necessary to ensure that the axis direction of the steel wire rope 610 is parallel to the tangent direction of the reversing wheel 620. By arranging the wheel support 630 to be rotatable, no matter which direction the steel wire rope 610 extends in the horizontal plane in the clothes drying main machine 100, the mounting direction of the wheel support 630 can be adjusted to change the tangent direction of the reversing wheel 620, so that the axis direction of the steel wire rope 610 is parallel to the tangent direction of the reversing wheel 620.

[0082] In this way, the driving motor 500 can be arranged at any position in the clothes drying main machine 100 without worrying about the direction in which the steel wire rope 610 extends from the power output end of the driving motor 500 to the reversing wheel 620 being an inclined direction, so that the layout inside the clothes drying main machine 100 is more flexible and the space is more optimally utilized.

[0083] Specifically, the transmission mechanism 600 in the embodiment further includes a speed change mechanism 640, which is arranged at the power output end of the driving motor 500. The reversing wheel 620 and the speed change mechanism 640 are provided with a guide wheel 800 and a jump-preventing mechanism 900, and the steel wire rope 610 is arranged in the jump-preventing mechanism 900 and around the guide wheel 800.

[0084] The speed change mechanism 640 includes two groups of speed change gear sets, which are simultaneously drivingly connected to the power output end of the driving motor 500. A winding wheel is drivingly connected in the speed change gear set, and the steel wire rope 610 is wound on the winding wheel. The winding wheel is driven by the driving motor 500 to rotate and wind the steel wire rope 610, so that the steel wire rope 610 is retracted and the drying rack 200 rises. The winding wheel is driven by the driving motor 500 to rotate reversely, so that the winding wheel releases the steel wire rope 610 and the drying rack 200 descends. One driving motor 500 simultaneously drives two groups of speed change gear sets to drive the steel wire rope 610 to extend and retract, so that the lifting control of the drying rack 200 is more convenient, the lifting of the two ends of the drying rack 200 is more synchronous, and the lifting of the drying rack 200 is more stable.

[0085] In the embodiment of the present application, the driving motor 500 is arranged at the middle position inside the clothes drying main machine 100, so the steel wire rope 610 extends from the middle position of the clothes drying main machine 100 to the end position. Therefore, the steel wire rope 610 will intersect with the air duct assembly 112 in the extending direction. In order to avoid interference between the two, a yielding gap 700 is arranged on the air duct assembly 112 at a position corresponding to the steel wire rope 610, the yielding gap 700 penetrates the air duct assembly 112 along the extending direction of the steel wire rope 610, and the steel wire rope 610 is arranged in the yielding gap 700.

[0086] By setting the make-way notch 700, the steel wire rope 610 can be arranged in the make-way notch 700 to avoid interference with the air duct assembly 112, compared with arranging the steel wire rope 610 higher or lower to avoid the air duct assembly 112, the present scheme can reduce the thickness of the clothes drying main machine 100, save materials as a whole, and help to realize the light and thin design of the clothes drying machine.

[0087] Specifically, referring to Figure 11 As shown in the figure, the make-way notch 700 is arranged inwardly recessed on the surface of the air duct assembly 112, the make-way notch 700 is in V-shaped structure, and penetrates the surface of the air duct assembly 112 along the extension direction of the steel wire rope 610. By arranging the make-way notch 700 inwardly recessed on the surface of the air duct assembly 112, a protrusion is formed inside the air duct assembly 112 correspondingly, so that the air duct at the corresponding position is narrowed, and the wind speed can be increased when the air duct is widened and narrowed under the condition that the air volume is unchanged, so that the flow rate of the drying air in the air duct is increased, thereby improving the wind speed of the drying air blown out of the main machine air outlet 180, and the clothes drying efficiency is improved.

[0088] It should be pointed out that the above-mentioned two worm gear fans 1117 are arranged symmetrically about the axis inside the clothes drying main machine 100, which is not a limitation of the present application, and in other embodiments, two said drying systems 110 can be arranged symmetrically about the center inside the clothes drying main machine 100, that is, two drying systems with the same structure are arranged symmetrically about the center, and the first air duct 1121 and the second air duct 1122 perpendicular to each other jointly form an L-shaped air duct assembly 112, and the air duct assemblies 111 of the two drying systems 110 jointly form a ring-shaped drying air duct.

[0089] In the embodiment of the present application, the clothes drying main machine 100 includes a main machine cover 120, a main machine cover plate 130 and a flat lamp assembly 140, the main machine cover 120, the main machine cover plate 130 and the flat lamp assembly 140 jointly enclose an installation space, and the drying system 110 is arranged in the installation space. In the case of insufficient light, the flat lamp can provide sufficient illumination, so that clothes can be easily dried at night or on cloudy days.

[0090] The flat lamp assembly 140 is arranged spaced apart from the main machine cover 120, and the peripheral part of the flat lamp assembly 140 and the main machine cover 120 form the main machine air outlet 180.

[0091] Referring to Figure 7As shown, in the embodiment of the present application, the host cover 120 includes two parallel side panels and two end covers connected to the two side panels respectively, the side panels and the end covers jointly form a rectangular host cover 120, the bottom of the host cover 120 is formed with an opening extending in the vertical direction, the flat panel lamp assembly 140 is in the opening, the opening has a first end close to the top of the host cover 120 and a second end away from the top of the host cover 120 in the vertical direction, the size of the opening gradually increases from the first end to the second end, the flat panel lamp has a rectangular structure, and the size of the flat panel lamp is smaller than the size of the second end of the opening.

[0092] Preferably, the side wall of the opening has an arc structure.

[0093] The structure of the drying system 110 will be described in detail below with reference to the accompanying drawings. Figures 8-16 As shown, the position where the first air duct 1121 and the second air duct 1122 are connected is provided with an air duct combination part 114, the air duct combination part 114 is in communication with the first air duct 1121 and the second air duct 1122, and the fan assembly 111 is connected to the air duct combination part 114.

[0094] Specifically, in the embodiment of the present application, the fan volute 1116 includes a first volute assembly 1111 and a second volute assembly 1112 that are buckled to each other, the fan wheel 1113 and the motor 1115 are arranged between the first volute assembly 1111 and the second volute assembly 1112, the first volute assembly 1111 is provided with an air inlet 1114, the fan wheel 1113 is arranged at the air inlet 1114, the motor 1115 is arranged at a position corresponding to the fan wheel 1113 on the second volute assembly 1112, the fan wheel 1113 is drivingly installed on the output shaft of the motor 1115 and is rotatably arranged relative to the first volute assembly 1111 and the second volute assembly 1112.

[0095] In the embodiment of the present application, the host cover plate 130 is provided with an opening at a position corresponding to the air inlet 1114, and a grille 131 is arranged at the opening. In order to ensure that the fan assembly 111 can smoothly introduce air flow from the opening, a reinforcing strip 132 is further arranged in the embodiment of the present application, so that a gap is formed between the host cover plate 130 and the ceiling in the installed state, and the air flow can enter the opening through the gap and then enter the air inlet 1114 through the opening.

[0096] Preferably, as shown in Figure 9As shown, the embodiment of the present application further comprises a wind baffle 115 arranged at the wind channel joint 114, which is rotatably arranged and switchable between a position of blocking the communication between the wind channel joint 114 and the first wind channel 1121 and a position of blocking the communication between the wind channel joint 114 and the second wind channel 1122.

[0097] Specifically, continuing to refer to Figure 9 As shown, the embodiment of the present application is provided with a first wind passage 118 at the first wind channel 1121 and a second wind passage 119 at the second wind channel 1122, the wind channel joint 114 and the first wind channel 1121 are communicated at the first wind passage 118, the wind channel joint 114 and the second wind channel 1122 are communicated at the second wind passage 119, and the wind baffle 115 is arranged to selectively shield the first wind passage 118 or the second wind passage 119; when the wind baffle 115 shields the first wind passage 118, the second wind passage 119 is opened, and the fan assembly 111 communicates the second wind channel 1122 through the wind channel joint 114; when the wind baffle 115 shields the second wind passage 119, the first wind passage 118 is opened, and the fan assembly 111 communicates the first wind channel 1121 through the wind channel joint 114; when the wind baffle 115 swings to neither completely shield the first wind passage 118 nor the second wind passage 119, the first wind passage 118 and the second wind passage 119 are both opened, and the first wind channel 1121 and the second wind channel 1122 are both communicated with the fan assembly 111.

[0098] Further, the wind baffle 115 in the embodiment of the present application can not only be used to completely close the first air duct 1121 and the second air duct 1122 so that no drying air blows out, but also be used to adjust the air volume entering the first air duct 1121 and the second air duct 1122 from the fan assembly 111. When the wind baffle 115 does not completely close the first air passage 118 and the second air passage 119, the first air passage 118 and the second air passage 119 are both open, and the air volume passing through the first air passage 118 and the second air passage 119 is affected by the size of the opening of the first air passage 118 and the second air passage 119, that is, the position of the wind baffle 115 affects the air volume passing through the first air passage 118 and the second air passage 119. Specifically, the closer the wind baffle 115 is to the first air passage 118, the smaller the opening of the first air passage 118, and the smaller the air volume passing through the first air passage 118, and most of the air volume blows to the second air passage 119 and enters the second air duct 1122 through the second air passage 119. When the wind baffle 115 is controlled to be away from the first air passage 118, the opening of the first air passage 118 becomes larger, and the opening of the second air passage 119 becomes smaller. Therefore, the air volume passing through the first air passage 118 increases, and the air volume passing through the second air passage 119 decreases. In this way, the swing of the wind baffle 115 can be controlled to adjust the air volume ratio of the first air duct 1121 and the second air duct 1122.

[0099] Referring to Figure 9 The wind baffle 115 is fixedly installed on the power output end of the wind baffle driving motor 116, and the wind baffle 115 is driven to rotate by the rotation of the wind baffle driving motor 116.

[0100] It can be understood that the above-mentioned wind baffle driving motor 116 as a driving mechanism for driving the wind baffle 115 to rotate is not a limitation on the present solution, and in other embodiments, a pneumatic cylinder, a hydraulic cylinder or other power mechanism can also be used to drive the wind baffle 115.

[0101] Specifically, referring to Figure 11 The installation mode of the wind baffle driving motor 116 in the embodiment of the present application is that a first installation slot 1123 is arranged on the air duct assembly 112, the wind baffle driving motor 116 is arranged in the first installation slot 1123, and the power output end of the wind baffle driving motor 116 is transmissionally connected with the wind baffle 115 inside the air duct assembly 112 through the air duct assembly 112.

[0102] The installation slot is arranged outside the air duct assembly 112 to install the wind baffle driving motor 116, so that the wind baffle driving motor 116 does not need to be disassembled by opening the air duct assembly 112, and maintenance is more convenient.

[0103] Further, referring toFigure 6 As shown, the global drying clothes dryer described in the embodiments of the present application further comprises a plurality of atmosphere lamps 117, at least one atmosphere lamp 117 is provided corresponding to each main machine air outlet 180, the atmosphere lamp 117 is arranged above the flat lamp assembly 140 and is arranged towards the main machine air outlet 180.

[0104] The atmosphere lamp 117 can not only illuminate, but also create various atmospheres through changes in color, brightness and mode. In the embodiments of the present application, the atmosphere lamp 117 is arranged corresponding to each main machine air outlet 180, so that when the main machine air outlet 180 is blowing, the corresponding atmosphere lamp 117 is turned on, so that the user can determine the working condition of the main machine air outlet 180 according to the light of the atmosphere lamp 117, which is convenient for accurately determining whether the main machine air outlet 180 that needs to be started is started, and avoids the need to determine by feeling the air of the main machine air outlet 180 at close range, which is more accurate and convenient.

[0105] It should be pointed out that the above-mentioned method of determining the working state of the main machine air outlet 180 by lighting the atmosphere lamp 117 corresponding to the enabled main machine air outlet 180 is not a limitation of the present application, in other embodiments, the working state of the main machine air outlet 180 can also be determined by using atmosphere lamp 117 light of a specified color, for example, in the case of enabling a certain main machine air outlet 180, the corresponding atmosphere lamp 117 light is red, and the remaining atmosphere lamps 117 are also turned on, but the light color of the corresponding atmosphere lamp 117 is different from the color of the atmosphere lamp 117 corresponding to the opened main machine air outlet 180, for example, yellow atmosphere lamp 117 light is used.

[0106] The global drying clothes dryer described in the present application further comprises a plasma generator 150, which is arranged in the fan assembly 111, and / or the first air duct 1121 and the second air duct 1122.

[0107] Specifically, continuing to refer to Figure 11 As shown, the air duct assembly 112 in the embodiments of the present application is provided with a second mounting groove 1124, the plasma generator 150 is arranged in the second mounting groove 1124, and the emission head of the plasma generator 150 extends to the inside of the air duct assembly 112 through the air duct assembly 112.

[0108] Specifically, the plasma generator 150 comprises an emission head 151 and a high-voltage pack 152, the emission head 151 and the high-voltage pack 152 are electrically connected by wires, and the emission head 151 extends to the inside of the drying system 110.

[0109] The plasma generator 150 is a device capable of generating plasma. It generates plasma by applying high energy (usually electrical energy) to ionize gas molecules. Plasma is a highly ionized gas containing a large number of free electrons and ions. These charged particles give plasma unique properties such as high electrical conductivity, light emission, etc.

[0110] The active particles such as high-energy electrons and ions in the plasma can effectively destroy the protein and nucleic acid structure of bacteria and viruses, thereby achieving the purpose of sterilization and disinfection, and can effectively remove harmful substances such as bacteria and mites on clothes, especially suitable for clothes sterilization treatment. At the same time, the plasma can effectively decompose odor molecules in the air, such as ammonia and hydrogen sulfide, thereby achieving the effect of deodorization and odor removal, and can quickly remove odor such as sweat and smoke odor on clothes, keeping the clothes fresh. The heat and active particles generated by the plasma can accelerate the evaporation of moisture, thereby shortening the drying time of the clothes.

[0111] As shown in Figure 11 The first mounting groove 1123 for mounting the wind deflector driving motor 116 and the second mounting groove 1124 for mounting the plasma generator 150 are in communication with each other in the embodiment of the present application, forming a whole large mounting groove. Such arrangement can simplify the structure of the air duct assembly 112 and facilitate processing. In other embodiments of the present application, the first mounting groove 1123 and the second mounting groove 1124 can be arranged separately.

[0112] Specifically, as shown in Figure 14 In a preferred embodiment of the present application, the plasma generator 150 is arranged in the fan assembly 111 and the first air duct 1121. The plasma generator 150 in the fan assembly 111 is turned on during the operation of the first air duct 1121 and the second air duct 1122. When the first air duct 1121 is working, the plasma generator 150 in the fan assembly 111 and the plasma generator 150 in the first air duct 1121 supplement the plasma in the drying air at the same time, thereby ensuring the content of plasma in the drying air blown out from the first air duct 1121 and improving the sterilization and disinfection effect. Since the second air duct 1122 is relatively short compared with the first air duct 1121, the plasma generator 150 in the fan assembly 111 can provide the plasma.

[0113] In this embodiment, the plasma generator 150 is arranged at the upstream position of the corresponding air duct, and the plasma can be mixed in all the drying air passing through the corresponding air duct, thereby making the sterilization and disinfection effect more uniform and ensuring the overall sterilization.

[0114] Optionally, in other embodiments of the present application, a plasma generator 150 may be provided in both the first air duct 1121 and the second air duct 1122. The plasma generator 150 provided in the first air duct 1121 is located at an end of the first air duct 1121 close to the second air duct 1122; and the plasma generator 150 provided in the second air duct 1122 is located at an end of the second air duct 1122 close to the first air duct 1121.

[0115] It is understandable that the location and number of the plasma generators 150 are not intended to limit the present application, and those skilled in the art may make reasonable choices based on actual needs during specific applications.

[0116] Reference Figure 13 As shown, the air duct assembly 112 in the embodiment of the present application includes an upper air duct shell 1131 and a lower air duct shell 1132, the upper air duct shell 1131 and the lower air duct shell 1132 are buckled together, and the first mounting groove 1123 and the second mounting groove 1124 are arranged on the upper air duct shell 1131 or on the lower air duct shell 1132.

[0117] Furthermore, the drying system 110 of the embodiment of the present application further includes a heating module 160 and a temperature detection module 170. Figure 12 As shown, the heating module 160 and the temperature detection module 170 are both arranged in the area where the fan assembly 111 is connected to the first air duct 1121 and the second air duct 1122 .

[0118] Heating module 160 is a PTC heater. PTC stands for Positive Temperature Coefficient. A PTC heater is a heating element made from a material with a positive temperature coefficient. The resistance of PTC material increases with increasing temperature. When power is applied to the PTC heater, it begins to generate heat. As the temperature rises, the resistance also increases, limiting the current and automatically reducing the heating power. As the ambient temperature drops, the resistance of the PTC heater decreases, and the power increases, thereby maintaining a stable temperature and achieving constant-temperature heating.

[0119] It is understandable that the use of a PTC heater in the above-mentioned heating module 160 is not a limitation of the present application. In other embodiments, a nickel-chromium alloy heating wire heater, a quartz tube heater, a carbon fiber heater, a ceramic heater, and a heat pump can also be used as the heating module 160.

[0120] Preferably, the temperature detection module 170 in the embodiments of the present application adopts an NTC module, which is a full name of Negative Temperature Coefficient Thermistor Module. It is a module integrating an NTC thermistor with other electronic elements (such as an amplifier, an ADC, etc.) together for measuring temperature.

[0121] It should be noted that the above-mentioned NTC module as the temperature detection module 170 does not limit the present application, and in other embodiments, thermocouples, platinum resistance, semiconductor temperature sensors, infrared temperature sensors, and thermistors (PTC) can also be used as the temperature detection module 170.

[0122] By detecting the temperature of the drying system 110, the temperature of the drying air can be accurately obtained, and the heating power of the drying system 110 can be adjusted in real time according to the feedback temperature. For example, when the temperature of the drying air reaches 60°, the heating module 160 can be started and stopped continuously to achieve constant control of the outlet air temperature, thereby achieving the effect of constant temperature drying, avoiding damage to clothes caused by too high temperature, and reducing energy consumption and operation cost of the drying system 110.

[0123] It should be noted that the above-mentioned preset temperature of 60° does not limit the present application, and those skilled in the art can select a suitable preset temperature according to different specific use scenarios, for example, 55° or 65°, and in further preferred embodiments, the temperature can also be set to be adjustable, and the user can set the temperature as needed.

[0124] Meanwhile, the embodiments of the present application also provide a control method of a full-area drying clothes dryer, which includes air outlet control for controlling air outlet direction and atmosphere lamp control for controlling atmosphere lamp irradiation direction, and the air outlet control and the atmosphere lamp control are linked to keep the atmosphere lamp irradiation direction synchronous with the air outlet direction of the drying system. By setting the air outlet direction of the drying system and the irradiation direction of the atmosphere lamp to be the same, the air outlet direction of the drying system can be determined by observing the irradiation direction of the atmosphere lamp.

[0125] Optionally, the embodiments of the present application also provide a control method of a full-area drying clothes dryer, which includes air outlet control for controlling air outlet direction and atmosphere lamp control for controlling atmosphere lamp light color, and the air outlet control and the atmosphere lamp control are linked to make the atmosphere lamp emitting light color the same as the air outlet direction of the drying system. By setting the air outlet direction of the drying system and the atmosphere lamp light color to be corresponding, the air outlet direction of the drying system can be determined by observing the light color of the atmosphere lamp.

[0126] In the description of the specification, the description referring to the terms "an embodiment", "an example" and the like is intended to mean that the specific feature, structure, material or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present application. In the specification, the illustrative representation of the above terms does not necessarily refer to the same embodiment or example.

[0127] In addition, it should be understood that, although the specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.

[0128] The technical principles of the present application are described above in combination with specific embodiments. These descriptions are only for the purpose of explaining the principles of the present application, and cannot be interpreted in any way as a limitation on the scope of protection of the present application. Based on the explanation here, those skilled in the art can think of other specific embodiments of the present application without having to exert creative labor, and these embodiments will fall within the scope of protection of the present application.

Claims

1. A total-area drying clothes dryer, characterized by comprising: Include: The drying system is provided with an air duct outlet, and the air duct outlet is correspondingly positioned with the main machine air outlet to communicate the drying system with the outside of the clothes airing host. The drying system includes a fan assembly and an air duct assembly, the air duct assembly includes a first air duct and a second air duct which are perpendicular to each other, and the fan assembly is arranged at the connection of the first air duct and the second air duct and located inside the right angle area formed by the first air duct and the second air duct. The drying system is two, two first air ducts of two drying systems are parallel to each other, two second air ducts are parallel to each other, and together form a full domain air duct with a rectangular ring structure. The main machine air outlet includes two first air outlets arranged in parallel and two second air outlets perpendicular to the first air outlet, two first air outlets are arranged below the first air duct corresponding to two first air ducts, and two second air outlets are arranged below the second air duct corresponding to two second air ducts.

2. The total drying clothes drying machine according to claim 1, characterized in that, The fan assembly includes a fan volute and a worm gear fan, the fan volute has a fan air outlet, the fan air outlet is connected with the first air duct and the second air duct at the connection of the first air duct and the second air duct, the air duct assemblies of the two drying systems are arranged in the clothes airing host in a central symmetric manner, and the worm gear fans of the two drying systems are arranged in the clothes airing host in a central symmetric manner.

3. The total drying clothes drying machine according to claim 2, characterized in that, Further comprising a driving motor arranged in the middle of the clothes airing host, the driving end of the driving motor is located inside the clothes airing host away from the side of the worm gear fan, and the driving motor is drivingly connected with the hanger through a transmission mechanism to drive the hanger to lift.

4. The total drying clothes drying machine according to claim 2, characterized in that, The transmission mechanism includes a steel wire rope and a reversing wheel arranged in the middle of the clothes airing host, the steel wire rope is wound on the reversing wheel to change the steel wire rope from a horizontal state to a vertical state.

5. The total drying clothes drying machine according to claim 4, characterized in that, The reversing wheel is installed on the clothes airing host through a wheel support, the wheel support is rotatably arranged on the clothes airing host, and the rotation axis of the wheel support relative to the clothes airing host is parallel to the mounting plane of the clothes airing host.

6. The total drying clothes drying machine according to claim 5, characterized in that, The air duct assembly is provided with a gap corresponding to the position of the steel wire rope, the gap penetrates the air duct assembly along the extension direction of the steel wire rope, and the steel wire rope is arranged in the gap.

7. The total drying clothes drying machine according to claim 6, characterized in that, The gap is recessed inwardly on the surface of the air duct assembly, and the gap has a V-shaped structure penetrating the surface of the air duct assembly along the extension direction of the steel wire rope.

8. The total drying clothes drying machine according to claim 7, characterized in that, Two drying systems are arranged in the clothes airing host in a central symmetric manner.

9. The total drying clothes drying machine according to claim 8, characterized in that, The clothes airing host includes a main machine cover, a main machine cover plate and a flat lamp assembly, the main machine cover, the main machine cover plate and the flat lamp assembly together form an installation space, and the drying system is arranged in the installation space.

10. The total drying clothes drying machine according to claim 2, characterized in that, ​ 11. The total globe drying clothes horse according to any one of claims 1-10, characterized in that, ​ 12. The total drying clothes drying machine according to claim 11, characterized in that, The flat lamp assembly is spaced apart from the main machine cover, and a peripheral portion of the flat lamp assembly and the main machine cover form the main machine air outlet.

13. The total drying clothes drying machine according to claim 2, characterized in that, The position where the first air duct and the second air duct are connected is provided with an air duct combination part, the air duct combination part is communicated with the first air duct and the second air duct, and the fan assembly is connected to the air duct combination part.

14. The total drying clothes drying machine according to claim 13, characterized in that, A baffle plate is further arranged on the air duct combination part, the baffle plate is rotatably arranged, and the baffle plate can be switched between a position where the air duct combination part is blocked from being communicated with the first air duct and a position where the air duct combination part is blocked from being communicated with the second air duct.

15. The total drying clothes drying machine according to claim 14, characterized in that, The air duct assembly is provided with a first mounting groove, a baffle plate driving motor is arranged in the first mounting groove, and a power output end of the baffle plate driving motor is in transmission connection with the baffle plate inside the air duct assembly through the air duct assembly.

16. The total globe drying clothes drying machine according to claim 11, characterized in that, A plurality of atmosphere lamps are further included, at least one atmosphere lamp is arranged corresponding to each main machine air outlet, the atmosphere lamp is arranged above the flat lamp assembly and faces the main machine air outlet.

17. The total drying clothes drying machine according to claim 15, characterized in that, The air duct assembly is provided with a second mounting groove, a plasma generator is arranged in the second mounting groove, and an emission head of the plasma generator extends to the inside of the air duct assembly through the air duct assembly.

18. The total drying clothes drying machine according to claim 17, characterized in that, The air duct assembly includes an air duct upper shell and an air duct lower shell, the air duct upper shell is buckled with the air duct lower shell, and the first mounting groove and the second mounting groove are arranged on the air duct upper shell or the air duct lower shell.

19. The total drying clothes drying machine according to claim 2, characterized in that, The drying system further includes a heating module and a temperature detection module, and the heating module and the temperature detection module are arranged in the region where the fan assembly is connected with the first air duct and the second air duct.