Dehumidifying and acarus killing wardrobe based on Internet of Things
By integrating dehumidification, blowing, heating and hanging components in the smart wardrobe, and using IoT technology to adjust the ventilation intensity, the problems of moisture and mites reproduction in the smart wardrobe are solved, and the drying and mite removal effects inside the wardrobe are achieved.
Patent Information
- Application Number
- CN202421408868.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-20
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-06-20
AI Technical Summary
Most smart wardrobes focus on interconnection functions in their design, neglecting the improvement of the wardrobe's own functions, resulting in air inside the wardrobe, causing moisture and mites to reproduction, causing trouble to users.
Design an IoT-based dehumidification and mite removal wardrobe that includes dehumidification components, blow drying components, heating components, clothing components, cabinet door components and networking components. By strengthening air circulation, utilizing the Internet of Things to adjust ventilation intensity, heating air to evaporate moisture and baking clothes to remove mites.
It effectively solves the problems of moisture and mites reproduction inside the wardrobe. By strengthening air circulation and Internet of Things adjustment, it ensures dryness inside the wardrobe and improves user experience.
Smart Images

Figure CN223008671U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of intelligent wardrobes, in particular to a dehumidifying and mite-removing wardrobe based on the Internet of Things. Background Technique
[0002] Smart home is based on the residence as a platform, connecting various devices in the home through the Internet of Things technology to realize an intelligent living environment. A wardrobe is a cabinet furniture for storing clothes, generally divided into single-door, double-door, embedded, etc., and is one of the commonly used furniture in families. With the improvement of living conditions, intelligent wardrobes emerge in an endless stream. However, most intelligent wardrobes focus on the interconnection function in design and do not have much improvement in the inherent functions of the wardrobe. And due to design reasons, the internal space of some intelligent wardrobes is in a closed state for a long time, resulting in poor air circulation inside, causing humidity and a large number of mites to breed, which brings troubles to users. Content of the Utility Model
[0003] In order to overcome the problems that most intelligent wardrobes focus on the interconnection function in design and do not have much improvement in the inherent functions of the wardrobe, and due to design reasons, the internal space of some intelligent wardrobes is in a closed state for a long time, resulting in poor air circulation inside, causing humidity and a large number of mites to breed, which brings troubles to users.
[0004] The technical solution of the utility model is: a dehumidifying and mite-removing wardrobe based on the Internet of Things, which includes a cabinet box, a dehumidifying component, a blowing component, a heating component, a clothes-hanging component, a cabinet door component and an Internet connection component; a dehumidifying component is arranged above the cabinet box, a blowing component is arranged at the bottom of the dehumidifying component, a heating component is arranged at the bottom of the blowing component, a clothes-hanging component is arranged at the bottom of the heating component, a cabinet door component is arranged on one side of the cabinet box, and an Internet connection component is arranged on one side of the cabinet box.
[0005] Preferably, the cabinet box is set to hold clothes, the dehumidifying component is used to absorb the moisture in the air entering the wardrobe, the blowing component is used to ventilate the wardrobe to strengthen the air circulation inside and outside, the heating component is used to heat the air when the air humidity is high to evaporate the moisture, the clothes-hanging component is used to hang the clothes for better dehumidification, the cabinet door component is used to block dust from entering the wardrobe, and the Internet connection component is used for the Internet of Things to determine the ventilation degree according to external information.
[0006] As a preference, the dehumidifying component includes a filter plate and a handle; a filter plate is arranged above the cabinet box, multiple groups of filter plates are arranged, a handle is arranged on one side of the filter plate, and multiple groups of handles are arranged; various water-absorbing materials are placed through the filter plate for dehumidification, and the filter plate is conveniently pulled out through the handle for material replacement.
[0007] Preferably, the blowing component includes a bracket and a fan; a bracket is provided at the bottom of the filter disc, a fan is provided at the bottom of the bracket, and two groups of fans are provided; the fan is installed and fixed by the bracket, and the air is circulated by the rotation of the fan.
[0008] Preferably, the heating component includes a mounting base and heating wires; heating wires are provided at the bottom of the fan, multiple groups of heating wires are provided, mounting bases are provided at both ends of the heating wires, and multiple groups of mounting bases are provided; the heating wires are installed and fixed by the mounting bases, and the air is heated by the heating wires to accelerate the evaporation of moisture, and at the same time, the clothes can be baked to achieve the effect of removing mites.
[0009] Preferably, the clothes hanging component includes a clothes hanging rod and clothes hangers; a clothes hanging rod is provided inside the cabinet box, clothes hangers are provided on the clothes hanging rod, and multiple groups of clothes hangers are provided; the clothes hangers are placed on the clothes hanging rod, and the clothes are hung by the clothes hangers to achieve a better dehumidification effect.
[0010] Preferably, the cabinet door component includes a door panel and a rotating shaft; a door panel is provided on one side of the cabinet box, two groups of door panels are provided, a rotating shaft is provided on one side of the door panel, and multiple groups of rotating shafts are provided; the dust is blocked from entering the wardrobe by the door panel, and the door panel can be opened and closed conveniently by the rotating shaft.
[0011] Preferably, the networking component includes a smart module and an antenna; a smart module is provided on one side of the cabinet box, and an antenna is provided on one side of the smart module; the terminal information is received by the antenna, and the heating wires and the fan are adjusted according to the information by the smart module.
[0012] Advantages of the present utility model:
[0013] 1. Compared with traditional smart wardrobes, the design focus is on the interconnection function, and there is not much improvement in the functions of the wardrobe itself. And due to design reasons, the internal space of some smart wardrobes is in a closed state for a long time, making the internal air not circulate and causing dampness, resulting in a large number of mites breeding, which causes trouble to users. This device strengthens the air circulation, and through the Internet of Things, the wardrobe can obtain information such as the weather and air humidity of the day from the terminal, and automatically select the intensity of air circulation to ensure the dryness inside the wardrobe;
[0014] 2. During daily use, the fan on the bracket rotates, allowing external air to enter the cabinet through the filter disk. The water-absorbing material in the filter disk absorbs the moisture in the incoming air, drying the incoming air and discharging the original air from the gaps in the wardrobe, promoting air circulation. The heating wire on the mounting base makes the blown air carry heat, baking the interior of the wardrobe to simulate the effect of sun exposure for mite removal. The antenna obtains the daily weather and air information from terminals such as mobile phones and transmits the data to the intelligent module. The intelligent module adjusts the operating parameters of the fan and the heating wire according to the information to achieve different air flow rates and air temperatures, so as to solve the problem that most intelligent wardrobe devices do not significantly improve the functionality of the wardrobe itself, such as the lack of dehumidification and mite removal functions.
[0015] 3. When replacing the water-absorbing material, simply grasp the handle to pull out the filter disk, and then return it as it is after replacing the water-absorbing material in the filter disk. When retrieving clothes, open the door panel through the rotating shaft, remove the clothes hanging on the hanging rod, and then hang the hanging rod back on the clothes hanger. Brief Description of the Drawings
[0016] Figure 1 Shows a three-dimensional structural schematic diagram of a dehumidifying and mite-removing wardrobe based on the Internet of Things of the present invention;
[0017] Figure 2 Shows a three-dimensional structural schematic diagram of the dehumidifying component of a dehumidifying and mite-removing wardrobe based on the Internet of Things of the present invention;
[0018] Figure 3 Shows a three-dimensional structural schematic diagram of the heating component of a dehumidifying and mite-removing wardrobe based on the Internet of Things of the present invention;
[0019] Figure 4 Shows a three-dimensional structural schematic diagram of the networking component of a dehumidifying and mite-removing wardrobe based on the Internet of Things of the present invention.
[0020] Description of the Reference Numerals: 1. Cabinet; 2. Dehumidifying Component; 3. Blowing Component; 4. Heating Component; 5. Hanging Component; 6. Door Component; 7. Networking Component; 201. Filter Disk; 202. Handle; 301. Bracket; 302. Fan; 401. Mounting Base; 402. Heating Wire; 501. Hanging Rod; 502. Clothes Hanger; 601. Door Panel; 602. Rotating Shaft; 701. Intelligent Module; 702. Antenna. Detailed Description of the Embodiment
[0021] The present invention will be further described below with reference to the drawings and embodiments.
[0022] Please refer to Figure 1, the present utility model provides an embodiment: a dehumidifying and mite-removing wardrobe based on the Internet of Things, which includes a cabinet 1, a dehumidifying component 2, a blowing component 3, a heating component 4, a clothes-hanging component 5, a cabinet door component 6, and an Internet connection component 7; a dehumidifying component 2 is arranged above the cabinet 1, a blowing component 3 is arranged at the bottom of the dehumidifying component 2, a heating component 4 is arranged at the bottom of the blowing component 3, a clothes-hanging component 5 is arranged at the bottom of the heating component 4, a cabinet door component 6 is arranged on one side of the cabinet 1, and an Internet connection component 7 is arranged on one side of the cabinet 1.
[0023] Please refer to Figure 2 , in this embodiment, the dehumidifying component 2 includes a filter tray 201 and a handle 202. A filter tray 201 is arranged above the cabinet 1, and multiple groups of filter trays 201 are provided. A handle 202 is arranged on one side of the filter tray 201, and multiple groups of handles 202 are provided. Various water-absorbing materials are placed through the filter tray 201 for dehumidification, and the filter tray 201 can be easily pulled out through the handle 202 for material replacement; the blowing component 3 includes a bracket 301 and a fan 302. A bracket 301 is arranged at the bottom of the filter tray 201, and a fan 302 is arranged at the bottom of the bracket 301. Two groups of fans 302 are provided. The fan 302 is installed and fixed through the bracket 301, and the air is circulated by the rotation of the fan 302.
[0024] Please refer to Figure 3 , in this embodiment, the heating component 4 includes a mounting base 401 and a heating wire 402; a heating wire 402 is arranged at the bottom of the fan 302, and multiple groups of heating wires 402 are provided. Mounting bases 401 are arranged at both ends of the heating wire 402, and multiple groups of mounting bases 401 are provided; the heating wire 402 is installed and fixed through the mounting base 401, and the air is heated by the heating wire 402 to accelerate the evaporation of moisture, and at the same time, the clothes can be baked to achieve the effect of mite removal.
[0025] Please refer to Figure 4 , in this embodiment, the clothes-hanging component 5 includes a clothes-hanging rod 501 and clothes hangers 502. A clothes-hanging rod 501 is arranged inside the cabinet 1, and clothes hangers 502 are arranged on the clothes-hanging rod 501, and multiple groups of clothes hangers 502 are provided. The clothes hangers 502 are placed through the clothes-hanging rod 501, and the clothes are hung through the clothes hangers 502 to achieve a better dehumidification effect; the cabinet door component 6 includes a door panel 601 and a rotating shaft 602. A door panel 601 is arranged on one side of the cabinet 1, and two groups of door panels 601 are provided. A rotating shaft 602 is arranged on one side of the door panel 601, and multiple groups of rotating shafts 602 are provided. The door panel 601 blocks dust from entering the wardrobe, and the door panel 601 can be opened and closed easily through the rotating shaft 602; the Internet connection component 7 includes an intelligent module 701 and an antenna 702. An intelligent module 701 is arranged on one side of the cabinet 1, and an antenna 702 is arranged on one side of the intelligent module 701. The antenna 702 receives terminal information, and the intelligent module 701 adjusts the heating wire 402 and the fan 302 according to the information.
[0026] During daily use, the fan 302 on the bracket 301 rotates, allowing external air to enter the cabinet 1 through the filter disk 201. The water-absorbing material in the filter disk 201 absorbs the moisture in the incoming air, drying the incoming air and discharging the original air from the gaps in the wardrobe, promoting air circulation. The heating wire 402 on the mounting base 401 makes the blown air carry heat, baking the interior of the wardrobe to simulate the effect of sun exposure for mite removal. The antenna 702 obtains the weather and air information of the day from terminals such as mobile phones and transmits the data to the intelligent module 701. The intelligent module 701 adjusts the operating parameters of the fan 302 and the heating wire 402 according to the information to achieve different air flow rates and air temperatures;
[0027] When replacing the water-absorbing material, simply grasp the handle 202 with your hand to pull out the filter disk 201, and after replacing the water-absorbing material in the filter disk 201, just put it back as it was;
[0028] When taking clothes, open the door panel 601 by rotating the shaft 602, take off the clothes hanging on the clothes hanger rod 501, and then hang the clothes hanger rod 501 back on the clothes hanger 502.
[0029] Through the above steps, the cabinet 1 is set to accommodate clothes, the dehumidification component 2 absorbs the moisture in the air entering the wardrobe, the air blowing component 3 ventilates the wardrobe to strengthen the internal and external air circulation, the heating component 4 heats the air to evaporate the moisture when the air humidity is high, the clothes hanging component 5 hangs the clothes for better dehumidification, the cabinet door component 6 blocks dust from entering the wardrobe, and the networking component 7 conducts the Internet of Things, determining the ventilation degree according to external information.
[0030] The above has described in detail the embodiments of the present utility model in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the gist of the present utility model.
Claims
1. A dehumidifying and mite-removing wardrobe based on the Internet of Things, comprising a cabinet box (1); characterized in that: The cabinet box (1) further comprises a dehumidification component (2), a blowing component (3), a heating component (4), a clothes hanging component (5), a cabinet door component (6) and a networking component (7); the dehumidification component (2) is arranged on the top of the cabinet box (1); the blowing component (3) is arranged on the bottom of the dehumidification component (2); the heating component (4) is arranged on the bottom of the blowing component (3); the clothes hanging component (5) is arranged on the bottom of the heating component (4); the cabinet door component (6) is arranged on one side of the cabinet box (1); the networking component (7) is arranged on one side of the cabinet box (1); The dehumidification component (2) comprises a filter plate (201) and a handle (202); a filter plate (201) is arranged above the cabinet (1), and the filter plates (201) are arranged in multiple groups; a handle (202) is arranged on one side of the filter plate (201), and the handle (202) is arranged in multiple groups; the blowing component (3) comprises a bracket (301) and a fan (302); a bracket (301) is arranged at the bottom of the filter plate (201), and a fan (302) is arranged at the bottom of the bracket (301), and the fan (302) is arranged in two groups.
2. According to the dehumidification and mite removal wardrobe based on the Internet of Things according to claim 1, it is characterized by: The heating component (4) comprises a mounting seat (401) and a heating wire (402); the bottom of the fan (302) is provided with a heating wire (402), and the heating wire (402) is provided in multiple groups; mounting seats (401) are provided at both ends of the heating wire (402), and the mounting seats (401) are provided in multiple groups.
3. According to the dehumidification and mite removal wardrobe based on the Internet of Things as claimed in claim 2, it is characterized by: The clothes hanging assembly (5) comprises a clothes hanging rod (501) and a clothes hanging rack (502); the clothes hanging rod (501) is arranged on the inner side of the cabinet box (1), and the clothes hanging rack (502) is arranged on the clothes hanging rod (501), and the clothes hanging rack (502) is arranged in multiple groups.
4. According to the dehumidification and mite removal wardrobe based on the Internet of Things as claimed in claim 3, it is characterized by: The cabinet door assembly (6) comprises a door panel (601) and a rotating shaft (602); a door panel (601) is arranged on one side of the cabinet box (1), and two sets of door panels (601) are arranged; a rotating shaft (602) is arranged on one side of the door panel (601), and multiple sets of rotating shafts (602) are arranged.
5. The dehumidifying and mite-removing wardrobe based on the Internet of Things according to claim 4 is characterized in that: The networking component (7) comprises an intelligent module (701) and an antenna (702); the intelligent module (701) is arranged on one side of the cabinet (1), and the antenna (702) is arranged on one side of the intelligent module (701).