A smart wardrobe with air purification and temperature and humidity control
Patent Information
- Application Number
- CN202522153745.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-11
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-10-11
AI Technical Summary
[0004]针对现有技术的不足,本实用新型提供了一种具备温湿度调节的空气净化智能衣柜,解决了上述的传统衣柜在温湿度控制、空气净化、杀菌消毒等方面的不足的问题
该具备温湿度调节的空气净化智能衣柜,首先,在温湿度精准调控方面,柜体底部的加热装置通过加热板、导热管和缓冲层的配合,能均匀且稳定地为柜体内部提供热量,有效应对干燥环境下衣物面料僵硬、产生静电的问题,让衣物保持柔软舒适的状态,而柜体上侧的除湿装置通过过渡仓、一号风扇、冷却管等结构,可高效降低柜内湿度,避免潮湿环境导致衣物滋生霉菌、产生异味及虫蛀、纤维受损等情况;其次,在空气净化与杀菌消毒层面,过渡仓内的活性炭滤网能有效吸附衣物释放的异味、纤维碎屑等污染物,净化柜内空气,冷却管内的冷凝片及亲水、疏水涂层的设计,在除湿过程中进一步除去杂志,减少污染物残留,同时,柜体内侧顶部的两组紫外线杀菌灯可对衣物进行全方位杀菌消毒,有效杀灭衣物上附着的细菌、病毒等微生物,保障衣物的卫生状况;最后,二号风扇与导风板的配合,能促进柜体内部空气循环,使温湿度调节和空气净化效果更加均匀高效,防尘网的设置可减少外界灰尘进入柜体,进一步保障柜内环境洁净,可拆卸的集水箱方便用户处理除湿产生的冷凝水,操作简单便捷。
Smart Images

Figure CN224698847U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of smart wardrobes, specifically a smart wardrobe with air purification and temperature and humidity regulation. Background Technology
[0002] In daily life, the storage and maintenance of clothing is an important issue of concern. Traditional wardrobes, as the main storage container for clothing, are often limited to basic storage and are unable to cope with the damage caused to clothing by complex environments. First, from the perspective of temperature and humidity, traditional wardrobes lack effective temperature and humidity regulation mechanisms, failing to provide a stable and suitable storage environment for clothing. Second, in terms of air purification and sterilization, traditional wardrobes are usually in a relatively closed state. During storage, clothing may release its own odors, fiber debris, etc., while external dust and bacteria may also enter the wardrobe through gaps.
[0003] The shortcomings of traditional wardrobes in terms of temperature and humidity control, air purification, sterilization and disinfection are becoming increasingly apparent, failing to meet modern people's needs for refined clothing care and healthy storage. Therefore, developing a smart wardrobe that integrates multiple functions such as temperature and humidity regulation, air purification, sterilization and disinfection has become an inevitable trend to solve clothing storage problems and improve clothing care. Utility Model Content
[0004] In view of the shortcomings of the existing technology, this utility model provides an air-purifying smart wardrobe with temperature and humidity regulation, which solves the problems of the traditional wardrobe in terms of temperature and humidity control, air purification, sterilization and disinfection.
[0005] To achieve the above-mentioned objectives, this utility model provides the following technical solution: an intelligent wardrobe with air purification and temperature and humidity regulation.
[0006] A smart wardrobe with air purification and temperature and humidity regulation includes: The cabinet is a rectangular hollow structure. Two sets of cabinet doors are slidably connected to the front of the cabinet via slide rails. The two sets of cabinet doors are parallel to each other and staggered in the vertical direction. The heating device is located at the bottom of the cabinet and includes a heating plate, multiple sets of heat-conducting pipes, and a buffer layer. The heating plate is laid horizontally at the bottom of the cabinet and has a flat rectangular structure. The heating plate generates heat and transfers it to the interior space of the wardrobe to regulate the temperature inside the wardrobe. Multiple sets of heat-conducting pipes are laid at the bottom of the cabinet and have a cylindrical structure. The heat-conducting pipes are embedded and make perpendicular contact with the upper surface of the heating plate to transfer the heat generated by the heating plate. A dehumidification device is installed inside the upper part of the cabinet. The dehumidification device includes a transition chamber, a first fan, and a cooling pipe. The transition chamber is fixedly installed on the inner top of the cabinet and has an air inlet and an air outlet. The air inlet of the transition chamber faces downward and the air outlet faces right. One end of the cooling pipe is connected to the air outlet of the transition chamber, and the other end extends towards the right side wall of the cabinet. The first fan is fixedly installed at the air inlet of the transition chamber. The first fan draws humid air from inside the cabinet into the transition chamber, and the humid air is then discharged from the cabinet through the cooling pipe.
[0007] Preferably, the buffer layer in the heating device is disposed on the upper side of the heat-conducting pipe and is attached to the inner side wall of the bottom of the cabinet, and the buffer layer separates the heat-conducting pipe from the internal storage space of the cabinet.
[0008] Preferably, the transition chamber is equipped with an activated carbon filter screen, which is detachably connected between the transition chamber and the cooling pipe.
[0009] Preferably, the cooling pipe is a hollow pipe with condenser plates inside. The condenser plates are fixedly installed on the side of the cooling pipe near the transition chamber. The inner wall of the cooling pipe near the transition chamber and the surface of the condenser plates are coated with a hydrophilic coating. The inner wall of the cooling pipe away from the transition chamber is coated with a hydrophobic coating, and the hydrophobic coating is connected to the rear end of the hydrophilic coating.
[0010] Preferably, a drain pipe and an exhaust hole are provided through the right side wall of the cabinet at the position corresponding to the end of the cooling pipe. The exhaust hole is located above the drain pipe and both are connected to the inside of the end of the cooling pipe. The drain pipe leads to the outside of the cabinet and is sealed to a detachable water collection tank.
[0011] Preferably, a set of second fans is installed at the bottom of the right side wall of the cabinet. The air outlet of the second fan faces the inside of the cabinet, and an air guide plate is fixed at an angle at the connection between the air outlet of the second fan and the inside of the cabinet. The air inlet of the second fan faces the outside of the cabinet, and a dustproof net is fixed to the right side wall of the cabinet at the air inlet of the second fan by a buckle.
[0012] Preferably, there are two sets of ultraviolet germicidal lamps symmetrically arranged on the top inner side of the cabinet, and the ultraviolet germicidal lamps are fixed to the top inner side of the cabinet by brackets.
[0013] Preferably, a horizontal bar for storing clothes is fixed on the upper side of the cabinet interior. The two ends of the horizontal bar are detachably connected to the left and right inner side walls of the cabinet. Three sets of drawers are installed on the lower side of the cabinet interior, directly above the air guide plate. The drawers are arranged side by side in the vertical direction and are connected to the cabinet body by a drawer-type sliding connection.
[0014] Compared with the prior art, this utility model provides an intelligent wardrobe with air purification and temperature and humidity regulation, which has the following beneficial effects: This smart wardrobe with air purification and temperature and humidity control offers several advantages. First, in terms of precise temperature and humidity control, the heating device at the bottom of the cabinet, through the combination of a heating plate, heat pipes, and a buffer layer, provides even and stable heat to the interior, effectively addressing the issues of stiff fabrics and static electricity in dry environments, keeping clothes soft and comfortable. Meanwhile, the dehumidification device at the top of the cabinet, through a transition chamber, a primary fan, and cooling pipes, efficiently reduces humidity inside, preventing mold growth, odors, insect infestation, and fiber damage. Second, regarding air purification and sterilization, the activated carbon filter in the transition chamber effectively absorbs odors and fiber debris released from clothing. The cabinet effectively removes dust and other contaminants, purifying the air inside. The condenser fins and hydrophilic / hydrophobic coatings inside the cooling pipes further remove impurities during dehumidification, reducing pollutant residue. Simultaneously, two sets of ultraviolet germicidal lamps on the top inner side of the cabinet provide comprehensive sterilization and disinfection of clothing, effectively killing bacteria, viruses, and other microorganisms attached to the garments and ensuring their hygiene. Finally, the combination of a second fan and an air guide plate promotes air circulation within the cabinet, resulting in more even and efficient temperature and humidity regulation and air purification. A dust filter reduces the entry of external dust into the cabinet, further ensuring a clean environment. The removable water collection tank allows users to easily handle condensate generated during dehumidification, making operation simple and convenient. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the cabinet door when it is opened. Figure 2 This is a schematic diagram of the cabinet door when it is closed. Figure 3 for Figure 2 A magnified view of part A in the diagram; Figure 4 This is a schematic diagram of the internal structure of the cabinet of this utility model; Figure 5 This is a schematic cross-sectional view of part of the structure of this utility model; Figure 6 This is a schematic diagram of the cooling pipe structure of this utility model.
[0016] In the diagram: 1. Cabinet body; 2. Cabinet door; 3. Heating plate; 4. Heat pipe; 5. Buffer layer; 6. Transition compartment; 7. Fan No. 1; 8. Cooling pipe; 9. Condenser; 10. Hydrophilic coating; 11. Hydrophobic coating; 12. Drain pipe; 13. Exhaust vent; 14. Water collection tank; 15. Fan No. 2; 16. Air guide plate; 17. Crossbar; 18. Drawer cabinet. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Please see Figure 1-6 This utility model provides a technical solution: A smart wardrobe with air purification and temperature and humidity regulation includes: Cabinet 1, which is a rectangular hollow structure. Two sets of cabinet doors 2 are slidably connected to the front end of cabinet 1 via slide rails. The two sets of cabinet doors 2 are parallel to each other and staggered in the vertical direction. The heating device is located at the bottom of the cabinet 1. The heating device includes a heating plate 3, multiple sets of heat-conducting pipes 4 and a buffer layer 5. The heating plate 3 is laid horizontally at the bottom of the cabinet 1 and has a flat rectangular structure. The heating plate 3 generates heat and transfers it to the interior space of the wardrobe to regulate the temperature of the interior space. Multiple sets of heat-conducting pipes 4 are laid at the bottom of the cabinet 1. The heat-conducting pipes 4 have a cylindrical structure and are embedded and in perpendicular contact with the upper surface of the heating plate 3 to transfer the heat generated by the heating plate 3. A dehumidification device is installed inside the upper part of the cabinet 1. The dehumidification device includes a transition chamber 6, a first fan 7, and a cooling pipe 8. The transition chamber 6 is fixedly installed on the inner top of the cabinet 1, and the transition chamber 6 is provided with an air inlet and an air outlet. The air inlet of the transition chamber 6 faces the lower side of the transition chamber 6, and the air outlet of the transition chamber 6 faces the right side of the transition chamber 6. One end of the cooling pipe 8 is connected to the air outlet of the transition chamber 6, and the other end of the cooling pipe 8 extends towards the right side wall of the cabinet 1. The first fan 7 is fixedly installed at the air inlet of the transition chamber 6. The first fan 7 draws the humid air inside the cabinet into the transition chamber 6, and the humid air is then discharged from the cabinet through the cooling pipe 8.
[0019] Furthermore, the buffer layer 5 in the heating device is located on the upper side of the heat-conducting pipe 4 and is attached to the inner side wall of the bottom of the cabinet 1. The buffer layer 5 separates the heat-conducting pipe 4 from the internal storage space of the cabinet 1. The buffer layer 5 can play a role in buffering and heat insulation, preventing the heat-conducting pipe 4 from directly contacting the clothes inside the cabinet 1.
[0020] Furthermore, the transition chamber 6 is equipped with an activated carbon filter, which is detachably connected between the transition chamber 6 and the cooling pipe 8. The transition chamber 6 serves as a transfer area for air treatment, providing space for air purification and dehumidification. The orientation design of the air inlet and outlet is conducive to guiding the air inside the cabinet 1 into the cooling pipe 8 for treatment.
[0021] Furthermore, the cooling pipe 8 is configured as a hollow pipe, and a condenser 9 is installed inside the cooling pipe 8. The condenser 9 is fixedly installed on the side of the cooling pipe 8 near the transition chamber 6. The inner wall of the cooling pipe 8 near the transition chamber 6 and the surface of the condenser 9 are coated with a hydrophilic coating 10. The inner wall of the cooling pipe 8 away from the transition chamber 6 is coated with a hydrophobic coating 11, and the hydrophobic coating 11 is connected to the rear end of the hydrophilic coating 10. The cooling pipe 8 is a key component for dehumidification, which condenses water vapor in the air into liquid and discharges it through internal condensation.
[0022] Furthermore, a drain pipe 12 and an exhaust vent 13 are installed on the right side wall of the cabinet 1 at the position corresponding to the end of the cooling pipe 8. The exhaust vent 13 is located above the drain pipe 12 and both are connected to the inside of the end of the cooling pipe 8. The drain pipe 12 leads to the outside of the cabinet 1 and is sealed to a detachable water collection tank 14. The water collection tank 14 is sealed to the drain pipe 12 and is detachable. It is used to collect the water generated during the dehumidification process. When a certain amount of water is collected, the user can remove it and empty it. The operation is convenient.
[0023] Furthermore, a set of second fans 15 is installed at the bottom of the right side wall of cabinet 1. The air outlet of the second fan 15 faces the inside of cabinet 1, and an air guide plate 16 is fixed at an angle at the connection between the air outlet of the second fan 15 and the inside of cabinet 1. The air inlet of the second fan 15 faces the outside of cabinet 1. A dustproof net is fixed to the right side wall of cabinet 1 at the air inlet of the second fan 15 by a buckle. The air guide plate 16 is fixed at an angle at the connection between the air outlet of the second fan 15 and the inside of cabinet 1. Its function is to guide the direction of the air blown out by the fan, so that the air is more evenly distributed inside cabinet 1 and the ventilation efficiency is improved.
[0024] Furthermore, there are two sets of ultraviolet germicidal lamps symmetrically arranged on the top inner side of cabinet 1. The ultraviolet germicidal lamps are fixed to the top inner side of cabinet 1 by brackets. During the operation of the wardrobe, the ultraviolet germicidal lamps continuously irradiate the clothes inside the wardrobe to kill bacteria, viruses and other microorganisms on the clothes and ensure the hygiene of the clothes.
[0025] Furthermore, a horizontal bar 17 for storing clothes is fixed on the upper side of the inside of the cabinet 1. The two ends of the horizontal bar 17 are detachably connected to the left and right inner side walls of the cabinet 1, respectively. Three sets of drawers 18 are set on the lower side of the inside of the cabinet 1, directly above the air guide plate 16. The drawers 18 are arranged side by side in the vertical direction and are connected to the cabinet 1 by a drawer-type sliding connection. The drawers 18 provide users with space to store small items of clothing in categories. The drawer-type design of the drawers 18 makes it easy to take out, put in and organize clothes.
[0026] Structural Description: Cabinet 1: As the basic frame of the entire wardrobe, it provides the installation carrier and space support for all functional components. Its material must have a certain load-bearing capacity and airtightness to ensure the stability of the internal temperature and humidity environment. Cabinet door 2: It is slidably connected to the front end of the cabinet body 1 via a slide rail. The two sets of cabinet doors 2 are parallel to each other in the vertical direction and staggered. This design makes it convenient for users to take out and put in clothes. At the same time, the staggered arrangement can avoid mutual interference when opening and closing. Heating plate 3: It has a flat rectangular structure and is laid horizontally at the bottom of cabinet 1. This shape and laying method can ensure that the heat distribution is relatively uniform and provide a stable heat source for the entire cabinet 1. Heat pipe 4: It has a cylindrical structure and is vertically installed on the upper surface of heating plate 3. Its function is to conduct the heat generated by heating plate 3 upward. Buffer layer 5: Located on the upper side of the heat conduction pipe 4 and attached to the inner side wall of the bottom of the cabinet 1, it can play the role of buffering and heat insulation. Transition chamber 6: Fixedly installed on the inner side of the top of cabinet 1, it is equipped with an air inlet and an air outlet. The air inlet faces the lower side of transition chamber 6, and the air outlet faces the right side of transition chamber 6. Transition chamber 6 serves as a transfer area for air handling, providing space for air purification and dehumidification. The orientation design of the air inlet and air outlet is conducive to guiding the air inside cabinet 1 into the cooling pipe 8 for processing. Fan No. 7: Fixedly installed at the air inlet of transition chamber 6, its function is to draw humid air from inside the cabinet into transition chamber 6, providing power for the dehumidification and purification process and accelerating the air circulation speed. Cooling pipe 8: One end is connected to the air outlet of the transition chamber 6, and the other end extends toward the right side wall of the cabinet 1. It is a key component for dehumidification, which condenses the water vapor in the air into liquid and discharges it through internal condensation. Condensing plate 9: Fixedly installed on the side of cooling pipe 8 near transition chamber 6, it can reduce the temperature inside cooling pipe 8, so that the humid air entering cooling pipe 8 is cooled and water vapor condenses on its surface, thus enhancing the dehumidification effect. Hydrophilic coating 10: Applied to the inner wall of the cooling pipe 8 near the transition chamber 6 and the surface of the condenser fin 9. The hydrophilic coating 10 helps the condensed water droplets to spread and flow quickly, preventing water droplets from adhering to the surface and affecting the condensation efficiency. Hydrophobic coating 11: It is applied to the inner wall of the cooling pipe 8 on the side away from the transition chamber 6 and is connected to the rear end of the hydrophilic coating 10. The hydrophobic coating 11 allows water droplets to slide quickly on the surface, which facilitates the guidance of condensed water to the drain pipe 12 and improves drainage efficiency.
[0027] Drain pipe 12: It is installed through the right side wall of the cabinet 1 at the position corresponding to the end of the cooling pipe 8, leading to the outside of the cabinet 1 and being sealed to the removable water collection tank 14. Its function is to drain the water condensed in the cooling pipe 8 into the water collection tank 14 to prevent water from accumulating inside the cooling pipe 8. Exhaust vent 13: Located above drain pipe 12 and connected to the inside of the end of cooling pipe 8, the dry air after cooling and dehumidification is discharged to the outside of cabinet 1 through exhaust vent 13 to achieve air circulation. Water collection tank 14: It is sealed and detachable to the drain pipe 12 and is used to collect water generated during the dehumidification process. When the water is collected to a certain amount, the user can remove it and empty it. It is easy to operate. Fan No. 2, No. 15: Located at the bottom of the right side wall of cabinet 1, with the air outlet facing the inside of cabinet 1 and the air inlet facing the outside of cabinet 1, it is the key to promoting air circulation inside cabinet 1. Air guide plate 16: It is fixed at an angle at the connection between the air outlet of the second fan 15 and the inner side of the cabinet 1. Its function is to guide the direction of the air blown out by the fan, so that the air is more evenly distributed inside the cabinet 1 and the ventilation efficiency is improved. Horizontal bar 17: Horizontally fixed inside the upper side of cabinet 1, with both ends detachably connected to the left and right inner side walls of cabinet 1. Horizontal bar 17 is mainly used for hanging clothes, and its detachable design allows users to easily remove and replace it as needed. Drawer cabinet 18: Located inside the lower side of cabinet 1 and directly above the air guide plate 16, three sets are arranged side by side in the vertical direction and are connected to cabinet 1 by drawer-type sliding connection. Drawer cabinet 18 provides users with space to classify and store small items of clothing. The drawer-type design of 18 makes it easy to take out, put in and organize clothing.
[0028] Working principle: This smart wardrobe achieves functions such as temperature and humidity regulation, air purification, sterilization and disinfection through the coordinated work of its various components.
[0029] When the sensor detects that the internal environment needs to be adjusted, the heating plate 3 generates heat after being powered on. The heat is transferred to the inside of the cabinet through the heat pipe 4, causing the temperature inside the cabinet to rise. The design of the buffer layer 5 avoids local overheating. At the same time, the second fan 15 starts to work. The second fan 15 draws in air from the outside of the cabinet 1. The air entering the cabinet 1 carries the hot air at the bottom of the cabinet 1 and moves upward, thereby increasing the temperature inside the cabinet 1.
[0030] When the sensor detects that the internal environment requires humidity adjustment and air purification, fan 15 draws in air from the outside of cabinet 1. The air is first filtered through a dust filter at the air inlet to remove dust and other impurities. The filtered air then enters the interior of cabinet 1 through the air outlet. The inclined air guide plate 16 guides the humid air upward. Then, fan 7 starts working, drawing the humid air carrying impurities from inside cabinet 1 into the transition chamber 6. The impurities in the air are filtered by an activated carbon filter. The air then enters the cooling pipe 8 and is cooled by the condenser plate 9. The water vapor condenses into water droplets. Guided by the hydrophilic coating 10 and the hydrophobic coating 11, the water droplets flow into the water collection tank 14 through the drain pipe 12. The dehumidified dry air is then discharged from the outside of cabinet 1 through the exhaust port 13, realizing the air circulation process. In addition, the ultraviolet germicidal lamp continuously irradiates the clothes inside the wardrobe during operation, killing bacteria, viruses and other microorganisms on the clothes and ensuring the hygiene of the clothes.
[0031] Finally, when storing clothes, long clothes can be hung on the horizontal bar 17 according to the type and length of the clothes, and small clothes can be put into the drawer cabinet 18 to achieve classified storage. The two sets of staggered cabinet doors 2 make it convenient for users to open and take out clothes as needed.
[0032] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A smart wardrobe with air purification and temperature and humidity regulation, characterized in that, include: Cabinet (1), the cabinet (1) is a rectangular hollow structure, and two sets of cabinet doors (2) are slidably connected to the front end of the cabinet (1) via a slide rail. The two sets of cabinet doors (2) are parallel to each other and staggered in the vertical direction. The heating device is located at the bottom of the cabinet (1). The heating device includes a heating plate (3), multiple sets of heat-conducting pipes (4) and a buffer layer (5). The heating plate (3) is laid horizontally at the bottom of the cabinet (1) and is a flat rectangular structure. The heating plate (3) generates heat and transfers it to the interior space of the wardrobe to regulate the temperature of the interior space of the wardrobe. Multiple sets of heat-conducting pipes (4) are laid at the bottom of the cabinet (1). The heat-conducting pipes (4) are set as cylindrical structures. The heat-conducting pipes (4) are embedded and in perpendicular contact with the upper surface of the heating plate (3) to transfer the heat generated by the heating plate (3). The dehumidification device is located inside the upper side of the cabinet (1). The dehumidification device includes a transition chamber (6), a first fan (7), and a cooling pipe (8). The transition chamber (6) is fixedly located on the inner side of the top of the cabinet (1). The transition chamber (6) is provided with an air inlet and an air outlet. The air inlet of the transition chamber (6) faces the lower side of the transition chamber (6), and the air outlet of the transition chamber (6) faces the right side of the transition chamber (6). One end of the cooling pipe (8) is connected to the air outlet of the transition chamber (6), and the other end of the cooling pipe (8) extends toward the right side wall of the cabinet (1). The first fan (7) is fixedly installed at the air inlet of the transition chamber (6). The first fan (7) draws the humid air inside the cabinet into the transition chamber (6), and the humid air is then discharged from the cabinet through the cooling pipe (8).
2. The smart wardrobe with air purification and temperature and humidity regulation according to claim 1, characterized in that: The buffer layer (5) in the heating device is set on the upper side of the heat conduction pipe (4) and is attached to the inner side wall of the bottom of the cabinet (1). The buffer layer (5) separates the heat conduction pipe (4) from the internal storage space of the cabinet (1).
3. The smart wardrobe with air purification and temperature and humidity regulation according to claim 1, characterized in that: The transition chamber (6) is equipped with an activated carbon filter screen, which is detachably connected between the transition chamber (6) and the cooling pipe (8).
4. The smart wardrobe with air purification and temperature and humidity regulation according to claim 3, characterized in that: The cooling pipe (8) is configured as a hollow pipe. A condenser plate (9) is provided inside the cooling pipe (8). The condenser plate (9) is fixedly installed on the side of the cooling pipe (8) near the transition chamber (6). The inner wall of the cooling pipe (8) near the transition chamber (6) and the surface of the condenser plate (9) are coated with a hydrophilic coating (10). The inner wall of the cooling pipe (8) away from the transition chamber (6) is coated with a hydrophobic coating (11), and the hydrophobic coating (11) is connected to the rear end of the hydrophilic coating (10).
5. The smart wardrobe with air purification and temperature and humidity regulation according to claim 1, characterized in that: A drain pipe (12) and an exhaust hole (13) are installed on the right side wall of the cabinet (1) at the position corresponding to the end of the cooling pipe (8). The exhaust hole (13) is located above the drain pipe (12) and both are connected to the inside of the end of the cooling pipe (8). The drain pipe (12) leads to the outside of the cabinet (1) and is sealed to the detachable water collection tank (14).
6. The smart wardrobe with air purification and temperature and humidity regulation according to claim 1, characterized in that: A set of No. 2 fans (15) is installed at the bottom of the right side wall of the cabinet (1). The air outlet of the No. 2 fan (15) faces the inside of the cabinet (1), and a guide plate (16) is fixed at the connection between the air outlet of the No. 2 fan (15) and the inside of the cabinet (1). The air inlet of the No. 2 fan (15) faces the outside of the cabinet (1). A dustproof net is fixed on the right side wall of the cabinet (1) at the air inlet of the No. 2 fan (15) by a buckle.
7. The smart wardrobe with air purification and temperature and humidity regulation according to claim 1, characterized in that: The cabinet (1) has two sets of ultraviolet germicidal lamps symmetrically arranged on the top inner side. The ultraviolet germicidal lamps are fixed to the top inner side of the cabinet (1) by brackets.
8. The smart wardrobe with air purification and temperature and humidity regulation according to claim 1, characterized in that: A horizontal bar (17) for storing clothes is fixed on the upper side of the cabinet (1). The two ends of the horizontal bar (17) are detachably connected to the left and right inner walls of the cabinet (1). Three sets of drawer cabinets (18) are set on the lower side of the cabinet (1) directly above the air guide plate (16). The drawer cabinets (18) are arranged side by side in the vertical direction and are connected to the cabinet (1) by drawer-type sliding.