Integrated intelligent furniture cabinet
Through the design of integrated smart furniture cabinets, the use of multi-station drying and deodorizing mechanisms has been solved, and the existing furniture cabinets cannot be dried and deodorized for different shoe types is achieved efficient odor decomposition and moisture discharge, which significantly improves the cleaning and deodorization effect of shoes.
Patent Information
- Application Number
- CN202510942528.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-08-15
AI Technical Summary
In the design of shoe drying and deodorizing function, existing furniture cabinets cannot accurately identify the differences in different shoe types, making it difficult to deal with key wet areas and severely affected areas of odor.
An integrated smart furniture cabinet is designed, including two side-by-side drying and deodorizing stations and bottom cleaning mechanisms. The position swing, lifting and adjustment mechanisms are used, combined with a drying fan and an ozone generator to achieve precise drying and deodorizing of different shoe types such as sports shoes, leather shoes, high-top boots, etc.
It realizes precise drying and deodorization of different shoe types, improves the odor decomposition efficiency and moisture evaporation speed, significantly reduces the number of bacteria and mold living environment, and ensures the extension of the odor-free cycle.
Smart Images

Figure CN120477492A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of intelligent furniture, and in particular relates to an integrated intelligent furniture cabinet. Background Art
[0002] Furniture refers to a broad category of appliances and facilities essential for people to maintain normal life, engage in production practices, and carry out social activities. Among these furniture items are some smart shoe cabinets. Homes often require shoe cabinets. When it rains, shoes often get soaked and need to be dried. Alternatively, when shoes dry slowly after washing due to lack of sunlight, smart temperature-controlled shoe cabinets can be used to dry them.
[0003] However, existing furniture cabinets often lack sophisticated shoe drying and deodorizing features. Limited by traditional, single-processing logic, these devices cannot accurately identify the differences in structure, material, and usage scenarios between different shoe types, such as sneakers, leather shoes, and high-top boots. This makes it difficult to target key moisture and odor-prone areas of each shoe type. Summary of the Invention
[0004] The embodiment of the present invention provides an integrated intelligent furniture cabinet to solve the problems in the prior art.
[0005] The embodiment of the present invention adopts the following technical solution: an integrated intelligent furniture cabinet, comprising a cabinet body, a placement cavity provided inside the cabinet body, a cabinet door hinged to the cabinet body, a first drying and deodorizing station and a second drying and deodorizing station arranged side by side inside the placement cavity, two bottom cleaning mechanisms provided at the bottom of the placement cavity, the two bottom cleaning mechanisms corresponding to the first drying and deodorizing station and the second drying and deodorizing station respectively, the first drying and deodorizing station comprising a first placing rack, a position swinging mechanism and a position lifting mechanism, the position lifting mechanism being located in the cabinet body, the position swinging mechanism being located on the position lifting mechanism (23), the first placing rack being located on the position swinging mechanism, the second drying and deodorizing station comprising a second placing rack, a position adjustment mechanism and a drying and disinfection adjustment mechanism, the position adjustment mechanism being located on the cabinet body and slidingly cooperating with the cabinet body, the second placing rack being located on the position adjustment mechanism, the drying and disinfection adjustment mechanism being located on the cabinet body and located above the position adjustment mechanism, and a drying fan and an ozone generator being provided at the inner top of the placement cavity.
[0006] Furthermore, each of the bottom cleaning mechanisms includes a first electric slide, a mounting box, a rotating motor, a cleaning brush disc and two second electric slides. A mounting cavity is provided on the cabinet, and the two second electric slides are symmetrically arranged inside the mounting cavity. The first electric slide is located on the moving ends of the two second electric slides, and the mounting box is located on the moving end of the first electric slide. The rotating motor is located on the mounting box, and the cleaning brush disc is located on the main shaft of the rotating motor. A mounting groove plate is provided on the top of the mounting cavity, and several dust suction holes are provided on the cleaning brush disc. An integrated drawer is provided at the bottom of the mounting cavity, and a dust suction pump connected to the several dust suction holes is provided inside the integrated drawer.
[0007] Furthermore, the position lifting mechanism includes a lifting motor, a lifting screw and a lifting plate. A first slide groove is provided on the cabinet body. The lifting motor is located at the bottom of the first slide groove of the cabinet body. The lifting screw is connected to the main shaft of the lifting motor. The lifting screw is rotatably connected to the top of the first slide groove. The lifting plate is threadedly connected to the lifting screw, and the lifting plate slides in cooperation with the first slide groove.
[0008] Furthermore, the position swing mechanism includes a first motor, a second motor, a rotating ball, a first swing frame, a second swing frame and a swing rod, the lifting plate is provided with a mounting notch, the first motor is located on the side wall of the lifting plate, the first swing frame is connected to the main shaft of the first motor, the second motor is located on the mounting notch, the second swing frame is connected to the main shaft of the second motor, the second swing frame is provided with a rotating shaft, the rotating ball is rotatably connected to the rotating shaft, the swing rod is rotatably connected to the first swing frame, the bottom of the swing rod is fixedly connected to the rotating ball, and the first placing rack is connected to the swing rod.
[0009] Furthermore, the position adjustment mechanism includes an adjustment motor, an adjustment plate and an adjustment screw. A second slide groove is provided on the cabinet body. The adjustment motor is located at the bottom of the second slide groove of the cabinet body. The adjustment screw is connected to the main shaft of the adjustment motor through transmission. The adjustment plate is threadedly connected to the adjustment screw. The adjustment plate slides with the second slide groove, and the second placement rack is horizontally arranged on the adjustment plate.
[0010] Furthermore, the drying and disinfection adjustment mechanism includes a vertical adjustment structure and a rotation angle structure. The vertical adjustment structure is located on the side wall of the cabinet. The vertical adjustment structure is rotationally connected to the cabinet. The rotation angle structure is located on the vertical adjustment structure.
[0011] Furthermore, the vertical adjustment structure includes a drive motor, a drive plate, two lower drive wheels and two upper drive wheels. The two lower drive wheels and the two upper drive wheels are symmetrically connected to the cabinet body. A belt is provided between the lower drive wheel and the upper drive wheel. The drive motor is located in the cabinet body and is transmission-connected to the two upper drive wheels. The drive plate is connected to the side walls of the two belts.
[0012] Furthermore, the rotation angle structure includes a rotating motor, a rotating plate and two adjustment circular frames, the rotating motor is located in the driving plate, the rotating plate is connected to the main shaft of the rotating motor, and the two adjustment circular frames are horizontally arranged on the rotating plate.
[0013] The at least one technical solution adopted in the embodiment of the present invention can achieve the following beneficial effects: First, the cabinet of the present invention is provided with two working stations when drying and deodorizing shoes, and different drying and deodorizing methods can be selected for different types of shoes.
[0014] Secondly, in the process of drying and deodorizing sports shoes / casual shoes of the present invention, the first motor drives the first swing frame to swing, which drives the swing rod to swing, and the second motor drives the second swing frame to swing, which drives the swing rod to swing. In the swinging process, the swinging between the first motor and the second motor is carried out in steps. The swinging of the swing rod drives the angle of the first display rack to swing, and when the sports shoes / casual shoes are dried and deodorized, the angle position of the sports shoes / casual shoes for drying and deodorizing is driven to swing, which can make the hot air cover three-dimensionally, accelerate the air circulation and efficiently decompose the odor molecules.
[0015] Third, the present invention's two adjustment cylinders are mounted on the uppers of high-top boots / rainboots. The leather at the ankle bend is prone to mildew due to long-term compression. At this point, the drive motor drives the two upper drive wheels, which in turn rotate the two lower drive wheels via two belts, thereby adjusting the height of the drive plate to accommodate high-top boots / rainboots of varying heights. The rotating motor drives the rotating plate, which in turn swings the two adjustment circular frames to the left or right, stretching the tightly fitted leather at the ankle bend outward and completely opening up the previously squeezed wrinkles and gaps. This increases the contact area between this area and the drying fan and ozone generator, completely eliminating processing dead spots caused by leather lamination. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings: Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of the local three-dimensional structure of the present invention Figure 1 ; Figure 3 It is a schematic diagram of the local three-dimensional structure of the present invention Figure 2 ; Figure 4 This is a schematic diagram of the three-dimensional structure of the first drying and deodorizing station in the present invention; Figure 5 Schematic diagram of the three-dimensional structure of the position adjustment mechanism of the present invention; Figure 6 Schematic diagram of the three-dimensional structure of the drying and disinfection adjustment mechanism in the present invention Figure 1 ; Figure 7 Schematic diagram of the three-dimensional structure of the drying and disinfection adjustment mechanism in the present invention Figure 2 ; Figure 8 for Figure 4 Enlarged view of point A in the middle; Figure 9 Schematic diagram of the three-dimensional structure of the bottom cleaning mechanism of the present invention; Reference numerals: Cabinet 1, cabinet door 11, drying fan 12, ozone generator 13, mounting slot plate 14, integrated drawer 15, first drying and deodorizing station 2, first display rack 21, position swing mechanism 22, first motor 221, second motor 222, rotating ball 223, first swing frame 224, second swing frame 225, swing rod 226, rotating shaft 227, position lifting mechanism 23, lifting motor 231, lifting screw 232, lifting plate 233, second drying and deodorizing station 3, second display rack 31, position Adjustment mechanism 32, adjustment motor 321, adjustment plate 322, adjustment screw 323, drying and disinfection adjustment mechanism 33, vertical adjustment structure 34, drive motor 341, drive plate 342, lower drive wheel 343, upper drive wheel 344, belt 345, rotation angle structure 35, rotating motor 351, rotating plate 352, adjustment circular frame 353, bottom cleaning mechanism 4, first electric slide 41, installation box 42, rotating motor 43, cleaning brush plate 44, second electric slide 45, dust suction hole 46. DETAILED DESCRIPTION
[0017] To make the objectives, technical solutions, and advantages of the present invention more clear, the technical solutions of the present invention will be clearly and completely described below in conjunction with specific embodiments of the present invention and corresponding drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0018] The following describes in detail a technical solution for an integrated smart furniture cabinet provided by various embodiments of the present invention in conjunction with the accompanying drawings.
[0019] Reference Figures 1 to 9 As shown, an embodiment of the present invention provides an integrated intelligent furniture cabinet, including a cabinet body 1, a placement cavity is provided inside the cabinet body 1, and a cabinet door 11 is provided on the cabinet body 1 which is hinged thereto. When in use, the cabinet door 11 is opened, and a first drying and deodorizing station 2 and a second drying and deodorizing station 3 are arranged side by side inside the placement cavity. Two bottom cleaning mechanisms 4 are provided at the bottom of the placement cavity, and the two bottom cleaning mechanisms 4 correspond to the first drying and deodorizing station 2 and the second drying and deodorizing station 3 respectively. The first drying and deodorizing station 2 includes a first placement rack 21, a position swing mechanism 22 and a position lifting mechanism 23. The position lifting mechanism 23 is provided at the bottom of the placement cavity. The mechanism 23 is located in the cabinet 1, the position swing mechanism 22 is located on the position lifting mechanism 23, the first placement rack 21 is located on the position swing mechanism 22, the second drying and deodorization station 3 includes a second placement rack 31, a position adjustment mechanism 32 and a drying and disinfection adjustment mechanism 33, the position adjustment mechanism 32 is located on the cabinet 1 and slides with the cabinet 1, the second placement rack 31 is located on the position adjustment mechanism 32, the drying and disinfection adjustment mechanism 33 is located on the cabinet 1 and is located above the position adjustment mechanism 32, and the inner top of the placement cavity is provided with a drying fan 12 and an ozone generator 13.
[0020] It should be noted that the first display rack 21 and the second display rack 31 are provided with elastic limiting mechanisms, and when drying and deodorizing shoes, the positions of shoes of different sizes can be fixed and limited by the elastic limiting mechanisms.
[0021] When drying and deodorizing shoes, the drying fan 12 and ozone generator 13 operate. The drying fan 12 maintains a constant temperature and wind speed to continuously dry the shoes and ensure that internal moisture is completely removed. The ozone generator 13 dynamically adjusts the amount of ozone generated based on the deodorization time and effect. For example, in the initial deodorization process, the ozone concentration is increased to quickly decompose odors, while the concentration is reduced in the later stages to maintain the effect and avoid excessive ozone production.
[0022] During the actual operation, the first drying and deodorizing station 2 can perform drying and deodorizing work on sports shoes / casual shoes, and the second drying and deodorizing station 3 can perform drying and deodorizing work on high-top boots / rain boots.
[0023] Specifically, each of the bottom cleaning mechanisms 4 includes a first electric slide 41, a mounting box 42, a rotating motor 43, a cleaning brush disc 44 and two second electric slides 45. The cabinet 1 is provided with a mounting cavity, and the two second electric slides 45 are symmetrically arranged inside the mounting cavity. The first electric slide 41 is located on the moving ends of the two second electric slides 45, the mounting box 42 is located on the moving end of the first electric slide 41, the rotating motor 43 is located on the mounting box 42, and the cleaning brush disc 44 is located on the main shaft of the rotating motor 43. The top of the mounting cavity is provided with a mounting slot plate 14, and the cleaning brush disc 44 is provided with a plurality of dust suction holes 46. The bottom of the mounting cavity is provided with an integrated drawer 15, and a dust suction pump (not shown in the figure) connected to the plurality of dust suction holes 46 is provided inside the integrated drawer 15. The position lifting mechanism 23 includes a lifting motor 231, a lifting screw 232 and a lifting plate 233. A first slide groove is provided on the cabinet 1. The lifting motor 231 is located at the bottom of the first slide groove of the cabinet 1. The lifting screw 232 is connected to the main shaft of the lifting motor 231. The lifting screw 232 is rotatably connected to the top of the first slide groove. The lifting plate 233 is threadedly connected to the lifting screw 232. The lifting plate 233 slides in cooperation with the first slide groove.
[0024] When cleaning the soles of shoes, the lifting motor 231 drives the lifting screw 232 to rotate, which drives the lifting plate 233 to move downward on the first slide, thereby driving the first display rack 21 to move downward, and moving the bottom of the sole to the top of the cleaning brush plate 44, so that the cleaning brush plate 44 can subsequently clean the sole; The rotating motor 43 drives the cleaning brush disc 44 to rotate, thereby cleaning the dust on the soles of the shoes. During the cleaning process, the vacuum pump works to absorb dust through several suction holes 46, and then collects the dust into the integrated drawer 15. During the vacuuming process, the two second electric slides 45 and the first electric slide 41 work together to clean the soles of the shoes. The rubber soles are prone to accumulation of mud and sand, which becomes a breeding ground for odor bacteria (such as micrococci) in a humid environment. After the soles are cleaned by the rotation of the cleaning brush disc 44, deep cleaning can effectively remove more than 90% of the mud and sand on the soles, destroying the living environment of odor bacteria such as micrococci. The mechanical vibration (frequency 50-80Hz) generated by the rotation of the cleaning brush disc 44 can further shake off microorganisms deep in the gaps, and cooperate with the negative pressure adsorption of the vacuum pump to reduce bacterial adhesion. According to tests, this cleaning method can reduce the number of bacteria on the soles of shoes by more than 85%, significantly delaying the odor generation cycle.
[0025] Specifically, the position swing mechanism 22 includes a first motor 221, a second motor 222, a rotating ball 223, a first swing frame 224, a second swing frame 225 and a swing rod 226. The lifting plate 233 is provided with a mounting notch. The first motor 221 is located on the side wall of the lifting plate 233. The first swing frame 224 is connected to the main shaft of the first motor 221. The second motor 222 is located on the mounting notch. The second swing frame 225 is connected to the main shaft of the second motor 222. The second swing frame 225 is provided with a rotating shaft 227. The rotating ball 223 is rotatably connected to the rotating shaft 227. The swing rod 226 is rotatably connected to the first swing frame 224. The bottom of the swing rod 226 is fixedly connected to the rotating ball 223. The first placing rack 21 is connected to the swing rod 226.
[0026] In the process of drying and deodorizing sports shoes / casual shoes, the first motor 221 drives the first swing frame 224 to swing, which drives the swing rod 226 to swing. The second motor 222 drives the second swing frame 225 to swing, which drives the swing rod 226 to swing. In the swinging process, the swinging between the first motor 221 and the second motor 222 is performed in steps. The swinging of the swing rod 226 drives the angle of the first display rack 21 to swing. When the sports shoes / casual shoes are dried and deodorized, the angle position of the sports shoes / casual shoes for drying and deodorizing is driven to swing. The cooperation with the drying fan 12 and the ozone generator 13 has the following advantages: Three-dimensional hot air coverage: The first motor 221 and the second motor 222 alternately drive the swing arm 226, causing the first display rack 21 to swing back and forth at an angle of 15°-30°, continuously repositioning the athletic / casual shoes. The hot air generated by the drying fan 12 (temperature 40-45°C) penetrates the shoe surface, sole, and shoe opening from multiple angles, preventing localized moisture from forming "drying blind spots." For example, areas prone to sweat accumulation, such as the base of the tongue and under the insole, are exposed to the hot air for 30% longer, improving moisture evaporation efficiency by 40%.
[0027] Accelerated air circulation: When the shoes swing, the surrounding air creates a turbulent flow (increasing wind speed by 0.3-0.5 m / s). This, combined with the active air supply from the drying fan 12, accelerates the exchange of moisture and heat inside and outside the shoes. Experimental data shows that dynamic drying reduces the humidity inside the shoes from 65% RH to 35% RH by approximately 25 minutes compared to static drying.
[0028] Efficient odor decomposition: During the swinging process, the folds and mesh of the shoe continuously open and close, creating a channel for ozone (concentration 0.12mg / m³) to penetrate. Ozone released by the ozone generator 13, along with the airflow generated by the swinging, penetrates deeper into the shoe, where it reacts fully with odor-causing substances such as isovaleric acid and fatty acids in sweat, increasing decomposition efficiency by over 50%.
[0029] Comprehensive, no-dead-angle treatment: Ozone treatment provides 360° exposure to the shoe through oscillation, reaching areas difficult to reach with traditional deodorization, such as the inside of the shoe upper and the ridges on the sole. For example, on the anti-slip ridges on the soles of sneakers, oscillation increases ozone contact area by 40%, increasing odor removal from 65% to 92%.
[0030] Specifically, the position adjustment mechanism 32 includes an adjustment motor 321, an adjustment plate 322 and an adjustment screw 323. A second slide groove is provided on the cabinet 1. The adjustment motor 321 is located at the bottom of the second slide groove of the cabinet 1. The adjustment screw 323 is connected to the main shaft transmission of the adjustment motor 321. The adjustment plate 322 is threadedly connected to the adjustment screw 323. The adjustment plate 322 slides in cooperation with the second slide groove. The second display rack 31 is horizontally arranged on the adjustment plate 322.
[0031] When cleaning the soles of high-top boots / rain boots, the adjustment motor 321 drives the adjustment screw 323 to rotate, thereby driving the adjustment plate 322 to move downward in the second slide groove, moving the soles of the high-top boots / rain boots to above the cleaning brush plate 44, thereby cleaning the bottoms of the high-top boots / rain boots.
[0032] Specifically, the drying and disinfection adjustment mechanism 33 includes a vertical adjustment structure 34 and a rotation angle structure 35. The vertical adjustment structure 34 is located on the side wall of the cabinet 1. The vertical adjustment structure 34 is rotationally connected to the cabinet 1. The rotation angle structure 35 is located on the vertical adjustment structure 34.
[0033] Specifically, the vertical adjustment structure 34 includes a drive motor 341, a drive plate 342, two lower drive wheels 343 and two upper drive wheels 344. The two lower drive wheels 343 and the two upper drive wheels 344 are symmetrically connected to the cabinet 1. A belt 345 is provided between the lower drive wheel 343 and the upper drive wheel 344. The drive motor 341 is located in the cabinet 1 and is transmission-connected to the two upper drive wheels 344. The drive plate 342 is connected to the side walls of the two belts 345.
[0034] Specifically, the rotation angle structure 35 includes a rotating motor 351, a rotating plate 352 and two adjustment circular frames 353. The rotating motor 351 is located in the driving plate 342. The rotating plate 352 is connected to the main shaft of the rotating motor 351. The two adjustment circular frames 353 are horizontally arranged on the rotating plate 352.
[0035] Two adjustment cylinders are mounted on the uppers of high-top boots / rainboots. The leather at the ankle bend is prone to mold and mildew due to prolonged compression. At this point, a drive motor 341 rotates the two upper drive wheels 344, which in turn rotate the two lower drive wheels 343 via two belts 345. This adjusts the height of the drive plate 342 to accommodate high-top boots / rainboots of varying heights and shaft heights. Whether it's a fashionable 25cm Martin boot or a 40cm outdoor rain boot, the device ensures complete coverage of the shoe, eliminating blind spots and increasing the effective drying and deodorizing area to over 98%.
[0036] The motor 351 then rotates the rotating plate 352, which in turn causes the two adjustment circular frames 353 to swing left or right, stretching the leather at the ankle bend, which is tightly fitted, outward and completely smoothing out the wrinkles and gaps that were originally squeezed. This increases the contact area between this area and the drying fan 12 and ozone generator 13, completely eliminating the blind spots caused by the leather fitting.
[0037] Working in conjunction with the drying fan 12 and the ozone generator 13 has the following advantages: Three-Dimensional Hot Air Circulation: When the ankle crease is extended, hot air (38-42°C) generated by the drying fan 12 is blown directly into the leather folds from multiple angles. Compared to traditional flat drying, this hot air penetrates deeper into the leather fiber layer, rather than just the surface, accelerating moisture evaporation. Tested data shows that dynamic treatment reduces the humidity at the ankle crease from 65% RH to 35% RH by approximately 35 minutes compared to static drying.
[0038] Enhanced Convection: The swinging of the adjustment frame 353 causes the shoe to sway slightly, creating a turbulent airflow around the shoe (increasing wind speed by 0.4-0.6 m / s). This, combined with the active airflow from the drying fan 12, enhances heat exchange between the inside and outside of the shoe. This dynamic convection effect ensures more even heat transfer, preventing localized overheating that can damage the leather while ensuring rapid moisture removal.
[0039] Deep Ozone Penetration: Once the ankle crease is opened, ozone (at a concentration of 0.12 mg / m³) released by the ozone generator 13 penetrates deeply into the leather crevices, allowing it to fully interact with odor sources such as residual sweat and mold metabolites. Experimental verification shows that this design increases ozone's efficiency in breaking down odor molecules in the crease by 70%, boosting the mold kill rate from 60% with conventional treatment to 95%, significantly extending the shoe's odor-free lifespan.
[0040] Continuous Antibacterial Environment: Drying and ozone treatment are performed simultaneously, removing moisture while destroying the humid environment that supports mold growth. Combined with the long-lasting antibacterial effect of ozone, this eliminates the risk of mold growth at the source. Even after frequent wear during the rainy season, the probability of mold recurrence in treated high-top boots / rainboots is reduced by over 85%.
[0041] The foregoing is merely an embodiment of the present invention and is not intended to limit the present invention. It will be apparent to those skilled in the art that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention are intended to be included within the scope of the claims of the present invention.
Claims
1. An integrated intelligent furniture cabinet, characterized in that: The invention comprises a cabinet body (1), wherein a placement cavity is provided inside the cabinet body (1), and a cabinet door (11) hingedly connected thereto is provided on the cabinet body (1), and a first drying and deodorizing station (2) and a second drying and deodorizing station (3) are provided inside the placement cavity, and two bottom cleaning mechanisms (4) are provided at the bottom of the placement cavity, and the two bottom cleaning mechanisms (4) correspond to the first drying and deodorizing station (2) and the second drying and deodorizing station (3) respectively, and the first drying and deodorizing station (2) comprises a first placement rack (21), a position swing mechanism (22) and a position lifting mechanism (23), and the position lifting mechanism (23) is located inside the cabinet body (1), and the position swing mechanism (22) is located on the position lifting mechanism (23), the first placement rack (21) is located on the position swing mechanism (22), the second drying and deodorizing station (3) includes a second placement rack (31), a position adjustment mechanism (32) and a drying and disinfection adjustment mechanism (33), the position adjustment mechanism (32) is located on the cabinet (1) and slides with the cabinet (1), the second placement rack (31) is located on the position adjustment mechanism (32), the drying and disinfection adjustment mechanism (33) is located on the cabinet (1) and is located above the position adjustment mechanism (32), and the inner top of the placement chamber is provided with a drying fan (12) and an ozone generator (13).
2. The integrated intelligent furniture cabinet according to claim 1, characterized in that: Each of the bottom cleaning mechanisms (4) comprises a first electric slide (41), a mounting box (42), a rotating motor (43), a cleaning brush disc (44) and two second electric slides (45); a mounting cavity is provided on the cabinet (1); the two second electric slides (45) are symmetrically arranged inside the mounting cavity; the first electric slide (41) is located on the moving ends of the two second electric slides (45); the mounting box (42) is located on the moving end of the first electric slide (41); the rotating motor (43) is located on the mounting box (42); the cleaning brush disc (44) is located on the main shaft of the rotating motor (43); a mounting slot plate (14) is provided on the top of the mounting cavity; and a plurality of dust suction holes (46) are provided on the cleaning brush disc (44).
3. The integrated intelligent furniture cabinet according to claim 2, characterized in that: An integrated drawer (15) is provided at the bottom of the installation cavity, and a dust suction pump connected to a plurality of dust suction holes (46) is provided inside the integrated drawer (15).
4. The integrated intelligent furniture cabinet according to claim 1, characterized in that: The position lifting mechanism (23) includes a lifting motor (231), a lifting screw (232) and a lifting plate (233); a first slide groove is provided on the cabinet (1); the lifting motor (231) is located at the bottom of the first slide groove of the cabinet (1); the lifting screw (232) is connected to the main shaft of the lifting motor (231); the lifting screw (232) is rotatably connected to the top of the first slide groove; the lifting plate (233) is threadedly connected to the lifting screw (232); and the lifting plate (233) is slidably matched with the first slide groove.
5. The integrated intelligent furniture cabinet according to claim 4, characterized in that: The position swing mechanism (22) includes a first motor (221), a second motor (222), a rotating ball (223), a first swing frame (224), a second swing frame (225) and a swing rod (226). The lifting plate (233) is provided with a mounting notch. The first motor (221) is located on a side wall of the lifting plate (233). The first swing frame (224) is connected to the main shaft of the first motor (221). The second motor (222) is located on the mounting notch. The second swing frame (225) is connected to the main shaft of the second motor (222). The second swing frame (225) is provided with a rotating shaft (227). The rotating ball (223) is rotationally connected to the rotating shaft (227). The swing rod (226) is rotationally connected to the first swing frame (224). The bottom of the swing rod (226) is fixedly connected to the rotating ball (223). The first placement frame (21) is connected to the swing rod (226).
6. The integrated intelligent furniture cabinet according to claim 1, characterized in that: The position adjustment mechanism (32) comprises an adjustment motor (321), an adjustment plate (322) and an adjustment screw (323); a second slide groove is provided on the cabinet (1); the adjustment motor (321) is located at the bottom of the second slide groove of the cabinet (1); the adjustment screw (323) is connected to the main shaft of the adjustment motor (321); the adjustment plate (322) is threadedly connected to the adjustment screw (323); the adjustment plate (322) and the second slide groove are slidably matched; and the second placement frame (31) is horizontally arranged on the adjustment plate (322).
7. The integrated intelligent furniture cabinet according to claim 1, characterized in that: The drying and disinfection adjustment mechanism (33) comprises a vertical adjustment structure (34) and a rotation angle structure (35); the vertical adjustment structure (34) is located on the side wall of the cabinet (1); the vertical adjustment structure (34) is rotationally connected to the cabinet (1); and the rotation angle structure (35) is located on the vertical adjustment structure (34).
8. The integrated intelligent furniture cabinet according to claim 7, characterized in that: The vertical adjustment structure (34) comprises a drive motor (341), a drive plate (342), two lower drive wheels (343) and two upper drive wheels (344); the two lower drive wheels (343) and the two upper drive wheels (344) are symmetrically connected to the cabinet (1); a belt (345) is provided between the lower drive wheels (343) and the upper drive wheels (344); the drive motor (341) is located in the cabinet (1) and is in transmission connection with the two upper drive wheels (344); the drive plate (342) is connected to the side walls of the two belts (345).
9. The integrated intelligent furniture cabinet according to claim 8, characterized in that: The rotation angle structure (35) comprises a rotation motor (351), a rotation plate (352) and two adjustment circular frames (353); the rotation motor (351) is located inside the driving plate (342); the rotation plate (352) is connected to the main shaft of the rotation motor (351); and the two adjustment circular frames (353) are horizontally arranged on the rotation plate (352).