Mildew-proof sterilization type wardrobe
By installing anti-mold components and germicidal lamps in the wardrobe, combined with multi-filter filtration and convenient filter replacement, the problem of mold growth in the wardrobe is solved, creating a fresh and dry storage environment for clothes and ensuring the quality and health of the clothes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2026-04-07
AI Technical Summary
Existing wardrobes lack effective air filtration and sterilization functions, which makes clothes prone to mold and odor after being stored for a long time, affecting the quality of the clothes and health.
The wardrobe is equipped with anti-mold components, including an exhaust fan, dust filter, moisture filter, and germicidal lamp. The exhaust fan removes moisture, and outside air enters after being filtered through multiple filters. The ultraviolet light emitted by the germicidal lamp sterilizes the air. Combined with the convenient filter replacement design, it ensures that the air is dry and sterile.
It effectively prevents clothes from getting moldy, provides a fresh and dry storage environment, ensures the quality and health of clothes, and the convenient filter replacement guarantees long-term anti-mold effect.
Smart Images

Figure CN224084892U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of furniture equipment technology, and in particular to a mildew-proof and antibacterial wardrobe. Background Technology
[0002] Wardrobes are an indispensable piece of furniture in home life. The interior of a wardrobe is usually designed with a variety of different areas, such as hanging areas, folding areas, and drawers. The hanging area can hang clothes of different lengths, such as long coats and dresses in the long hanging area, and shirts and short jackets in the short hanging area, to avoid wrinkles. The folding area is suitable for storing folded clothes such as T-shirts and sweaters, while drawers can hold small items such as underwear and socks. This way of classifying and storing clothes allows each item to have its own place, making it easy to find and manage them.
[0003] In daily life, clothes are often stored inside wardrobes for extended periods. Poor air circulation inside the wardrobe can cause clothes to become damp and moldy, leading to mildew and unpleasant odors. This not only affects the appearance and quality of the clothes but can also harm human health. Furthermore, existing wardrobes lack effective air filtration and sterilization functions, failing to fundamentally solve the problem of mold growth. Therefore, there is a need for a mold-resistant and sterilizing wardrobe that can effectively prevent mold and sterilize, providing a good storage environment for clothes. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a mold-proof and sterilizing wardrobe with the advantages of high-efficiency mold prevention and sterilization and easy filter replacement. It solves the problem that existing wardrobes lack effective air filtration and sterilization functions, and cannot fundamentally solve the problem of moldy clothes.
[0005] This utility model provides the following technical solution: a mildew-proof and sterilizing wardrobe, comprising a wardrobe, an air outlet on the top surface of the wardrobe, an air inlet on the side wall surface of the wardrobe, a mildew-proof component inside the wardrobe, and sterilizing lamps symmetrically fixedly connected to the inner surface of the top of the wardrobe. The mildew-proof component includes an installation sleeve fixedly connected to the inner surface of the top of the wardrobe, an exhaust fan inside the installation sleeve, a dust filter above the exhaust fan, a secondary filter inside the side wall of the wardrobe, a connecting sleeve fixedly connected to the side wall surface of the wardrobe, a retaining sleeve on the end of the connecting sleeve away from the wardrobe, a moisture-proof filter core placed inside the retaining sleeve, and a connecting component between the connecting sleeve and the retaining sleeve.
[0006] Preferably, the mounting sleeve has a through-hole structure, the dust filter is fixedly connected to the inner wall surface of the air outlet, and the secondary filter is fixedly connected to the inner wall surface of the air inlet.
[0007] Preferably, the connecting sleeve is located on the outside of the air inlet, and the end of the moisture-proof filter element away from the sleeve abuts against the surface of the secondary filter screen.
[0008] Preferably, the connecting component includes an installation groove on the surface of the connecting sleeve away from the wardrobe, the connecting sleeve having connecting grooves evenly distributed on the surface of the connecting sleeve away from the wardrobe, a spring being provided inside the connecting sleeve, an annular abutment being fixedly connected to the surface of the spring away from the connecting sleeve, a locking block being evenly fixedly connected to the surface of the locking sleeve near the connecting sleeve, and a primary filter being fixedly connected to the surface of the locking sleeve away from the connecting sleeve.
[0009] Preferably, the connecting slot and the mounting slot are interconnected, the connecting slot and the card block are mutually adapted, the number of connecting slots and card blocks is the same, and the minimum number is two.
[0010] Preferably, the end surface of the spring away from the annular abutment is fixedly connected to the inner wall surface of the mounting groove, the annular abutment is slidably connected inside the mounting groove, and the end surface of the locking block away from the sleeve abuts against the surface of the annular abutment.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] 1. By working together with the anti-mold component and the germicidal lamp, it can effectively prevent clothes from getting moldy. The exhaust fan in the anti-mold component exhausts the air inside the wardrobe and removes the moisture from the surface of the clothes. At the same time, the outside air enters the wardrobe after passing through multiple filters, including a primary filter, a moisture-proof filter, and a secondary filter, ensuring that the air entering the wardrobe is dry and dust-free, providing a fresh and dry storage environment for clothes. The ultraviolet rays emitted by the germicidal lamp can effectively inhibit the growth of mold and prevent clothes from getting moldy and producing odors.
[0013] 2. With its convenient connection components, when the moisture-proof filter needs replacement, the operator simply presses the retaining sleeve, then rotates it until the retaining block aligns with the connecting groove. Pulling out the sleeve removes the filter from the inside of the connecting sleeve, allowing the moisture-proof filter to be removed for replacement. After replacement, the new filter is placed in the retaining sleeve, and the process is repeated in reverse to complete the replacement. This convenient replacement method ensures timely replacement of the moisture-proof filter, maintaining air filtration effectiveness and guaranteeing a long-lasting and stable anti-mold effect inside the wardrobe. Attached Figure Description
[0014] Figure 1 This is a front view of the structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the anti-mildew component in the structure of this utility model;
[0016] Figure 3 This is a schematic diagram of the germicidal lamp in the structure of this utility model;
[0017] Figure 4 for Figure 2 Enlarged view of point A in the middle;
[0018] Figure 5 for Figure 3 Enlarged view of point B in the middle.
[0019] In the diagram: 1. Wardrobe; 2. Air outlet; 3. Air inlet; 4. Anti-mildew component; 41. Mounting sleeve; 42. Exhaust fan; 43. Dust filter; 44. Secondary filter; 45. Connecting sleeve; 46. Clip; 47. Moisture-proof filter element; 48. Connecting component; 481. Mounting groove; 482. Connecting groove; 483. Spring; 484. Annular support plate; 485. Locking block; 486. Primary filter; 5. Germicidal lamp. Detailed Implementation
[0020] 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.
[0021] Please see Figure 1 - Figure 5This utility model provides an embodiment of an anti-mildew and antibacterial wardrobe, comprising a wardrobe 1, an air outlet 2 on the top surface of the wardrobe 1, an air inlet 3 on the side wall surface of the wardrobe 1, an anti-mildew component 4 inside the wardrobe 1, and antibacterial lamps 5 symmetrically fixedly connected to the inner surface of the top of the wardrobe 1. The anti-mildew component 4 includes an installation sleeve 41 fixedly connected to the inner surface of the top of the wardrobe 1, an exhaust fan 42 inside the installation sleeve 41, the exhaust fan 42 being driven by an electric motor, a dust filter 43 above the exhaust fan 42, a secondary filter 44 inside the side wall of the wardrobe 1, and a connecting sleeve 45 fixedly connected to the side wall surface of the wardrobe 1, the connecting sleeve 45 being away from the wardrobe. One end of the casing 1 is provided with a retainer 46, inside which a moisture-proof filter element 47 is placed. The moisture-proof filter element 47 is an air filter element made of HV material. HV material has high humidity resistance and can effectively resist the influence of humid environment on the filter element structure. The moisture-proof performance of HV filter element can ensure that the filter element is not easily deformed or failed in high humidity environment. A connecting component 48 is provided between the connecting sleeve 45 and the retainer 46. The mounting sleeve 41 has a through structure. The dust filter screen 43 is fixedly connected to the inner wall surface of the air outlet 2, and the secondary filter screen 44 is fixedly connected to the inner wall surface of the air inlet 3. The connecting sleeve 45 is located on the outside of the air inlet 3, and the moisture-proof filter element 47 is away from the retainer 46. One end abuts against the surface of the secondary filter 44. Air inside the wardrobe 1 is exhausted to the outside by the exhaust fan 42. During this exhaust process, moisture from the surface of the clothes inside the wardrobe 1 is carried away. External air enters through the air inlet 3 and is filtered by the primary filter 486, the moisture-proof filter 47, and the secondary filter 44, ensuring effective filtration and guaranteeing dryness and dust-free air. The air filtered by the moisture-proof filter 47 circulates inside the wardrobe 1, providing a fresh and dry storage environment for the clothes, effectively preventing mold growth. The germicidal lamps 5 operate simultaneously and are symmetrically fixed to the top of the wardrobe 1. The ultraviolet rays emitted from the inner wall surface of the wardrobe can penetrate the air and disinfect the air inside the wardrobe 1 and the surface of the clothes in an all-round and thorough manner. The ultraviolet rays can destroy the DNA structure of microorganisms such as mold and bacteria, making them inactive, thereby effectively inhibiting the growth of mold and preventing clothes from getting moldy and producing odors. The air filtered by the moisture-proof filter 47 and sterilized by the germicidal lamp 5 will circulate inside the wardrobe 1, providing clothes with a fresh, dry and sterile storage environment. Some of the air will be discharged through the air outlet 2 on the top surface of the wardrobe 1 during the flow process. The dust filter 43 prevents dust from entering the wardrobe 1 from the air outlet 2, keeping the internal environment of the wardrobe 1 clean.
[0022] Please see Figure 1 - Figure 5The connecting component 48 includes a mounting groove 481 formed on the surface of the connecting sleeve 45 away from the wardrobe 1, and connecting grooves 482 evenly formed on the surface of the connecting sleeve 45 away from the wardrobe 1. A spring 483 is disposed inside the connecting sleeve 45, and an annular abutment 484 is fixedly connected to the surface of the spring 483 away from the connecting sleeve 45. A retaining sleeve 46 has retaining blocks 485 evenly fixedly connected to the surface of the retaining sleeve 46 near the connecting sleeve 45, and a primary filter 486 is fixedly connected to the surface of the retaining sleeve 46 away from the connecting sleeve 45. The connecting groove 482 and the mounting... The slots 481 are interconnected, and the connecting slot 482 and the locking block 485 are mutually compatible. The number of connecting slots 482 and locking blocks 485 is the same, and a minimum of two are set. The end surface of the spring 483 away from the annular abutment plate 484 is fixedly connected to the inner wall surface of the mounting slot 481. The annular abutment plate 484 is slidably connected inside the mounting slot 481. The end surface of the locking block 485 away from the sleeve 46 abuts against the surface of the annular abutment plate 484. When the moisture-proof filter element 47 needs to be replaced, the operator presses the sleeve 46, causing the sleeve 46 to move towards the connecting sleeve. Move in the 45-degree direction, and the locking block 485 moves into the mounting groove 481, causing the annular abutment 484 to slide inside the mounting groove 481, while simultaneously compressing the spring 483. Then rotate the sleeve 46, causing the locking block 485 to rotate. When the locking block 485 aligns with the connecting groove 482, pull the sleeve 46 away from the connecting sleeve 45. At this point, the sleeve 46 can be removed from inside the connecting sleeve 45, and the moisture-proof filter element 47 can be taken out for replacement. After replacement, place the new moisture-proof filter element 47 into the sleeve 46. The sleeve 46 aligns with... Align the connecting sleeve 45 with the mounting slot 481. After the mounting slot 485 enters the mounting slot 481 through the connecting slot 482, rotate the sleeve 46 so that the mounting slot 485 does not overlap with the connecting slot 482. Then release the sleeve 46. Under the elastic force of the spring 483, the annular abutment 484 pushes the mounting slot 485 towards the connecting slot 482. Since the mounting slot 485 does not overlap with the connecting slot 482, the mounting slot 485 is re-engaged into the mounting slot 481, completing the replacement and installation of the moisture-proof filter element 47.
[0023] Working Principle: When wardrobe 1 is in operation, the germicidal lamp 5 is activated first. Symmetrically fixed to the inner surface of the top of wardrobe 1, the emitted ultraviolet rays penetrate the air, disinfecting the air inside wardrobe 1 and the surface of clothing in an all-round, thorough manner. Simultaneously, the anti-mildew component 4 begins operation. The mounting sleeve 41 is fixedly connected to the inner surface of the top of wardrobe 1 and has a through-hole structure. The exhaust fan 42 inside operates, drawing air upwards from inside wardrobe 1. Since the interior of wardrobe 1 is relatively sealed when the door is not open, the air inside wardrobe 1 decreases as the exhaust fan 42 expels air, allowing outside air to enter through the air inlet 3. The outside air first undergoes preliminary filtration through the primary filter 486, then enters the connecting sleeve 45. Inside the connecting sleeve 45, the air is further filtered by the moisture-proof filter 47 placed inside the retainer 46. The end of the moisture-proof filter 47 furthest from the retainer 46 abuts against the surface of the secondary filter 44, finally undergoing final filtration through the secondary filter 44, thus ensuring effective air filtration and guaranteeing... The air is dry and dust-free. After being filtered by the moisture-proof filter element 47, the air circulates inside the wardrobe 1, providing a fresh and dry storage environment for the clothes. When the moisture-proof filter element 47 needs to be replaced, the operator presses the retaining sleeve 46. The retaining sleeve 46 moves towards the connecting sleeve 45, causing the retaining block 485, which is evenly fixed to the surface of the retaining sleeve 46 near the connecting sleeve 45, to move into the mounting groove 481 opened on the surface of the connecting sleeve 45 away from the wardrobe 1. During the movement of the retaining block 485, it abuts against the mounting groove 481 on the surface of the connecting sleeve 45 away from the wardrobe 1. The annular abutment plate 484 on one end of the sleeve 46 slides inside the mounting groove 481, while simultaneously compressing the spring 483 connected between the inner wall surface of the mounting groove 481 and the annular abutment plate 484. Then, the sleeve 46 is rotated, causing the locking block 485 to rotate. When the locking block 485 coincides with the connecting groove 482 evenly opened on the end surface of the connecting sleeve 45 away from the wardrobe 1, the sleeve 46 is pulled out in the direction away from the connecting sleeve 45. At this time, the sleeve 46 is removed from the inside of the connecting sleeve 45, and then the moisture-proof filter element 47 can be taken out for replacement. After replacement, place the new moisture-proof filter element 47 into the sleeve 46, align the sleeve 46 with the connecting sleeve 45, and align the locking block 485 with the mounting slot 481. After the locking block 485 enters the mounting slot 481 through the connecting slot 482, rotate the sleeve 46 so that the locking block 485 does not overlap with the connecting slot 482. Then release the sleeve 46. Under the elastic force of the spring 483, the annular abutment 484 pushes the locking block 485 towards the connecting slot 482. Since the locking block 485 does not overlap with the connecting slot 482, the locking block 485 re-locks into the mounting slot 481, completing the replacement and installation of the moisture-proof filter element 47. Afterward, the anti-mold component 4 can continue to work normally, ensuring the anti-mold and antibacterial effect inside the wardrobe 1.
Claims
1. A mildew-proof and antibacterial wardrobe, comprising a wardrobe (1), characterized in that: The wardrobe (1) has an air outlet (2) on its top surface and an air inlet (3) on its side wall surface. The wardrobe (1) is equipped with an anti-mildew component (4) inside and germicidal lamps (5) are symmetrically fixed to the inner wall surface of the top of the wardrobe (1). The anti-mildew component (4) includes an installation sleeve (41) fixedly connected to the inner surface of the top of the wardrobe (1). An exhaust fan (42) is installed inside the installation sleeve (41). A dust filter (43) is installed above the exhaust fan (42). A secondary filter (44) is installed inside the side wall of the wardrobe (1). A connecting sleeve (45) is fixedly connected to the side wall of the wardrobe (1). A retainer (46) is installed on the surface of the connecting sleeve (45) away from the wardrobe (1). A moisture-proof filter (47) is placed inside the retainer (46). A connecting component (48) is provided between the connecting sleeve (45) and the retainer (46).
2. The anti-mildew and antibacterial wardrobe according to claim 1, characterized in that: The connecting component (48) includes an installation groove (481) on the surface of the connecting sleeve (45) away from the wardrobe (1), a connecting groove (482) is evenly provided on the surface of the connecting sleeve (45) away from the wardrobe (1), a spring (483) is provided inside the connecting sleeve (45), an annular abutment (484) is fixedly connected to the surface of the spring (483) away from the connecting sleeve (45), a locking block (485) is evenly fixedly connected to the surface of the sleeve (46) near the connecting sleeve (45), and a primary filter screen (486) is fixedly connected to the surface of the sleeve (46) away from the connecting sleeve (45).
3. The anti-mildew and antibacterial wardrobe according to claim 1, characterized in that: The mounting sleeve (41) has a through-hole structure. The dust filter (43) is fixedly connected to the inner wall surface of the air outlet (2), and the secondary filter (44) is fixedly connected to the inner wall surface of the air inlet (3).
4. The anti-mildew and antibacterial wardrobe according to claim 1, characterized in that: The connecting sleeve (45) is located on the outside of the air inlet (3), and the end of the moisture-proof filter element (47) away from the sleeve (46) abuts against the surface of the secondary filter screen (44).
5. A mildew-proof and antibacterial wardrobe according to claim 2, characterized in that: The connecting slot (482) is connected to the mounting slot (481), the connecting slot (482) is adapted to the locking block (485), the number of connecting slots (482) and locking blocks (485) is the same, and the minimum number is two.
6. The anti-mildew and antibacterial wardrobe according to claim 2, characterized in that: The end surface of the spring (483) away from the annular abutment (484) is fixedly connected to the inner wall surface of the mounting groove (481). The annular abutment (484) is slidably connected inside the mounting groove (481). The end surface of the block (485) away from the sleeve (46) abuts against the surface of the annular abutment (484).