CN111743307A - Multifunctional intelligent wardrobe capable of achieving efficient storage and taking - Google Patents

Multifunctional intelligent wardrobe capable of achieving efficient storage and taking Download PDF

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Publication number
CN111743307A
CN111743307A CN202010559705.2A CN202010559705A CN111743307A CN 111743307 A CN111743307 A CN 111743307A CN 202010559705 A CN202010559705 A CN 202010559705A CN 111743307 A CN111743307 A CN 111743307A
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CN
China
Prior art keywords
driving
cabinet
gear
drawer
cabin
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Pending
Application number
CN202010559705.2A
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Chinese (zh)
Inventor
李国彦
杨乔锋
杨睿志
贾朝暾
李刚
乔喆烨
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Taiyuan University of Technology
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Taiyuan University of Technology
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Publication date
Application filed by Taiyuan University of Technology filed Critical Taiyuan University of Technology
Priority to CN202010559705.2A priority Critical patent/CN111743307A/en
Publication of CN111743307A publication Critical patent/CN111743307A/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B61/00Wardrobes
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B49/00Revolving cabinets or racks; Cabinets or racks with revolving parts
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B49/00Revolving cabinets or racks; Cabinets or racks with revolving parts
    • A47B49/004Cabinets with compartments provided with trays revolving on a vertical axis
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B49/00Revolving cabinets or racks; Cabinets or racks with revolving parts
    • A47B49/008Revolving cabinets or racks; Cabinets or racks with revolving parts with motorisation means
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B51/00Cabinets with means for moving compartments up and down
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B61/00Wardrobes
    • A47B61/003Details of garment-holders
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B61/00Wardrobes
    • A47B61/04Wardrobes for shoes, hats, umbrellas, or the like
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B96/00Details of cabinets, racks or shelf units not covered by a single one of groups A47B43/00 - A47B95/00; General details of furniture
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2220/00General furniture construction, e.g. fittings
    • A47B2220/0091Electronic or electric devices

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  • Drawers Of Furniture (AREA)

Abstract

The invention belongs to the technical field of intelligent home furnishing, and particularly relates to a multifunctional intelligent wardrobe capable of being stored and taken efficiently. The cabinet body is divided into an upper layer cabinet cabin, a middle layer cabinet cabin and a bottom layer cabinet cabin, wherein a drawer is arranged in the upper layer cabinet cabin and connected with a push-pull lifting mechanism; a clothes hanging device is arranged in the upper space in the middle-layer cabinet cabin and comprises a closed guide rail, a plurality of hooks distributed on the closed guide rail and a synchronous driving mechanism, the hooks are all connected with the synchronous driving mechanism, and a first image acquisition device is arranged in the middle-layer cabinet cabin; a turntable is arranged in the bottom cabinet cabin, the turntable is connected to a swing mechanism, and the turntable is divided into a plurality of frame bodies; and a second image acquisition device is arranged in the bottom cabinet cabin. The invention has the advantages of convenience, practicability and intellectualization, and can enable a user to access clothes and shoes more efficiently.

Description

Multifunctional intelligent wardrobe capable of achieving efficient storage and taking
Technical Field
The invention belongs to the technical field of intelligent home furnishing, and particularly relates to a multifunctional intelligent wardrobe capable of being stored and taken efficiently.
Background
As furniture essential to daily life of people, the wardrobe provides space for clothes storage and taking, but the traditional wardrobe is limited by a fixed structure, and the storage space and the storage and taking form are greatly limited. Because the wardrobe has a large overall structure, high-altitude clothes are inconvenient to store and take, and the high-altitude clothes are often stored and taken with the help of stools and the like, so that the wardrobe is dangerous to some extent. More importantly, when the clothes stored in the wardrobe are too much messy, the selection of the clothes becomes a very tedious matter, and people often spend a long time searching for matched clothes. However, modern people are fast moving and are reluctant to spend more time in the aspects of clothes matching, clothes finishing and the like, so that in order to solve the problems, a wardrobe which can effectively make up the defects needs to be developed by combining the modern intelligent technology so as to meet the requirements of the daily life of modern users.
Disclosure of Invention
The wardrobe aims to solve the problems that the traditional wardrobe structure is fixed, the storage space and the storage form are limited, clothes in the space above the wardrobe are inconvenient to store and take, and clothes are fussy to select.
Furthermore, the invention provides a multifunctional intelligent wardrobe capable of being stored and taken efficiently, which comprises a wardrobe body, wherein the wardrobe body is divided into an upper layer wardrobe cabin, a middle layer wardrobe cabin and a bottom layer wardrobe cabin, a drawer is arranged in the upper layer wardrobe cabin, the drawer is connected to a push-pull lifting mechanism, and a panel capable of being opened and closed is connected to a drawer body; the middle-layer cabinet cabin comprises a cabinet door, a clothes hanging device is arranged in the upper space in the middle-layer cabinet cabin and comprises a closed guide rail, a plurality of hooks distributed on the closed guide rail and a synchronous driving mechanism, the hooks are all connected with the synchronous driving mechanism, and a first image acquisition device is arranged in the middle-layer cabinet cabin; the bottom cabinet cabin comprises a door plate, a turntable is arranged in the bottom cabinet cabin and connected to a swing mechanism, and the turntable is divided into a plurality of frame bodies; a second image acquisition device is arranged in the bottom cabinet cabin; the push-pull lifting mechanism, the synchronous driving mechanism, the swing mechanism, the first image acquisition device and the second image acquisition device are respectively and electrically connected with a control circuit board, the control circuit board is electrically connected with a single chip microcomputer, and the single chip microcomputer is electrically connected with an image display device.
Furthermore, a placing rack is arranged on the rotary table, a pushing mechanism is further arranged in the bottom cabinet cabin, and the placing rack is connected with the output end of the pushing mechanism.
Further, the push-pull lifting mechanism comprises a guide assembly and a driving assembly.
Furthermore, the guide assembly comprises horizontal guide posts distributed on the inner wall of the upper cabinet cabin and parallel to the push-out direction of the drawer, and vertical guide posts, one end parts of which are in sliding sleeve joint with the horizontal guide posts; the vertical guide post is connected with a sliding block, and the sliding block is fixedly connected with the drawer; the driving assembly comprises a motor box and swing rod structures which are arranged on two sides of the drawer and connected with the motor box through rotating shafts; the swing rod structure comprises a driving chain wheel, a driven chain wheel, a chain, a swing block, a spring and a spring, wherein the driving chain wheel is connected with the rotating shaft in a matched mode, the driven chain wheel is arranged in the upper layer cabinet cabin through a fixedly connecting shaft, the chain is meshed with the driving chain wheel and the driven chain wheel, the swing block is coaxially connected with the driven chain wheel, the swing block is inserted on the swing block in a sliding mode, one end portion of the swing block is hinged to the swing rod of the drawer, the spring is sleeved on the swing rod, and the spring is located between the swing block and a.
Further, the synchronous driving mechanism comprises a driving belt wheel, a driven belt wheel, a synchronous belt and a driving motor, the synchronous belt is meshed with the driving belt wheel and the driven belt wheel, the moving track of the synchronous belt is the same as the outline shape of the closed guide rail, and the hook is connected with the synchronous belt; the driving motor drives the driving belt wheel through a worm gear pair.
Furthermore, the cross section of the closed guide rail is I-shaped, and the hook is clamped on the lower edge of the closed guide rail.
Further, a motor, a gear shaft connected with the motor, a first driving gear, a second driving gear, a first intermediate gear, a second intermediate gear, a first gear ring and a second gear ring sleeved on a middle shaft of the rotary table are arranged in the bottom cabinet cabin; the first driving gear is connected with the gear shaft through a first electromagnetic clutch, and the second driving gear is connected with the gear shaft through a second electromagnetic clutch; the motor, a gear shaft, a first electromagnetic clutch, a first driving gear, a first intermediate gear and a first gear ring which are matched in sequence form the slewing mechanism; a crank block assembly is further arranged in the bottom cabinet cabin, the input end of the crank block assembly is connected with the second gear ring, and the output end of the crank block assembly is connected with the placing rack; the motor, a gear shaft, a second electromagnetic clutch, a second driving gear, a second intermediate gear and a crank block assembly which are matched in sequence form the pushing mechanism.
Further, a support block is arranged at the output end of the crank block assembly; a push rod is arranged at the bottom of the placing frame, a strip-shaped first through groove is formed in the bottom surface of the rotary table, a second through groove which is communicated from left to right is formed in the support block, and the width of the first through groove and the width of the second through groove are larger than that of the push rod; the push rod penetrates through the first through groove and can be overlapped with the edge of the second through groove.
Furthermore, the push-pull lifting mechanism further comprises auxiliary supporting components, the auxiliary supporting components are located on two sides of the drawer and comprise a support arranged in the upper cabinet cabin, two first connecting rods hinged to the support and arranged in parallel, and two second connecting rods hinged to the drawer and arranged in parallel, the first connecting rods are hinged to the second connecting rods, a third connecting rod is connected between hinged points, and a fourth connecting rod parallel to the third connecting rod is hinged between the two first connecting rods.
Furthermore, the door plate of the bottom cabinet cabin comprises a fixed frame plate and a movable turning plate, the movable turning plate is hinged to the fixed frame plate, and a springback component is connected between the movable turning plate and the fixed frame plate; the movable turning plate is positioned in front of the pushing mechanism
Compared with the prior art, the invention has the advantages that:
1. the invention provides a multifunctional intelligent wardrobe capable of being stored and taken efficiently, which adopts an arrangement mode of an upper layer storage space, a middle layer storage space and a lower layer storage space, and accords with the daily use requirements of people, namely bedding and sundries which are not frequently used are placed in an upper layer cabinet compartment, clothes and trousers are hung in a middle layer cabinet compartment, and shoes are placed in a bottom layer cabinet compartment. In the wardrobe, the upper layer cabinet cabin is divided into an inner structure and an outer structure, the inner drawer is connected with the push-pull lifting mechanism, and when articles are stored and taken, the drawer is lowered down, so that the articles are convenient to take. Solves the problems that the articles in the upper cabinet cabin are inconvenient to take and the supports such as chairs, stools and the like need to be trampled during the taking and the storage.
2. According to the multifunctional intelligent wardrobe capable of being stored and taken efficiently, the clothes hanging device capable of changing the position of clothes is arranged in the upper space in the middle-layer wardrobe cabin, so that the storage space of the wardrobe is enlarged, and a user can conveniently store and take the clothes; when the user takes the clothes, the clothes hanging device can receive the instruction, and the clothes to be selected by the user are moved to the cabinet door, so that the user can conveniently select and take the clothes. When a user stores clothes, the clothes hanging device can receive instructions and move the vacant hooks to the cabinet door, so that the user can store the clothes conveniently. Similarly, the same concept is used in the lower cabinet compartment for storing footwear; namely, a turntable with a plurality of frame bodies is arranged in the bottom cabinet cabin, the turntable is driven by a rotary mechanism, the turntable rotates to a designated position (namely, shoes selected by a user are positioned at a shoe taking-out opening) according to the selection of the user, and at the moment, the selected shoes are pushed out by a pushing mechanism.
3. The multifunctional intelligent wardrobe capable of being stored and taken efficiently greatly shortens the time of a user for finding clothes and shoes, and provides a more comfortable clothes storage space for the user compared with the existing wardrobe. With the pace of life increasing, the time spent on clothes management by the common salary level will be more and more rapid. The requirements of people on the quality of life are continuously improved, and intellectualization and science and technology are development trends of various industries in the future; an intelligent home decoration similar to the present invention will gradually go into thousands of households.
Drawings
Fig. 1 is a schematic view of the external structure of the present invention.
Fig. 2 is a schematic structural view of the upper cabinet and the drawer.
Fig. 3 is a schematic structural view of the guide assembly.
Fig. 4 is a schematic structural diagram of the driving assembly.
Fig. 5 is a schematic diagram of a pendulum bar structure.
Fig. 6 is a schematic structural view of the drawer.
Fig. 7 is a schematic structural diagram of the middle-layer cabinet.
Fig. 8 is a schematic structural view of the synchronous drive mechanism.
Fig. 9 is a schematic structural view of a bottom cabinet.
Fig. 10 is a schematic structural view of the pusher jack and the swing mechanism.
In the figure: 1-upper cabinet chamber;
101-drawer; 1011-a slider; 1012-panel; 1013-hydraulic hinge;
1021-a second link; 1022-a third link; 1023-a first link; 1024-a fourth link; 1025-support;
1031-connecting column; 1032-horizontal guide posts; 1033-vertical guide posts;
1041-motor case; 1042 — a driven sprocket; 1043-a chain; 1044-a rotating shaft; 1045-drive sprocket; 1046-a swinging block; 10461-a sliding sleeve; 1047-swing link; 1048-a spring; 1049-L shaped plate;
105-installing a vertical plate;
106-shaft seat;
2-middle layer cabinet cabin;
201-cabinet door; 202-a first image acquisition device; 203-installing a slot frame; 204-wheel carrier; 2051-hooks; 2052-extension plates; 2061-a driven pulley; 2062-driving pulley; 207-closing the guide rail; 208-a synchronous belt; 209-drive motor;
3-a bottom cabinet compartment;
301-fixing the frame plate;
302-a movable flap;
303-a turntable; 3031-medial axis; 3032-placing the shelf;
304-a second image acquisition device;
305-a interlayer plate;
3061-electric motor; 3062-a second drive gear; 3063-a first drive gear; 3064-gear shaft; 3065-a second intermediate gear; 3066 — first intermediate gear; 3067 — a first ring gear; 3068 — a second ring gear;
3071-a second electromagnetic clutch; 3072-a first electromagnetic clutch;
308-gear carrier;
3091-crank; 3092-connecting rod; 3093-a slide rail; 3094-a support block; 3095-moving block;
4-image display device.
Detailed Description
In order to more clearly understand the technical features, objects, and effects of the present invention, embodiments of the present invention will now be described with reference to the accompanying drawings. The drawings are only for the purpose of illustrating the technology of the invention and are not to be construed as representing actual proportions or actual shapes of products, wherein like reference numerals indicate identical or functionally similar elements.
In this context, "parallel", "perpendicular", and the like are not strictly mathematical and/or geometric limitations, but may also include tolerances as would be understood by one skilled in the art and allowed for in the manufacture or use of the product. In addition, "perpendicular" includes not only mutually perpendicular in which two objects are directly connected in space but also mutually perpendicular in which two objects are not connected in space.
A multifunctional intelligent wardrobe with efficient access, as shown in figure 1; comprises a cabinet body, wherein the outer contour of the cabinet body is a cuboid; the cabinet body is divided into two upper-layer cabinet cabins 1 arranged in parallel at the top, a middle-layer cabinet cabin 2 at the middle part and 2 bottom-layer cabinet cabins 3 arranged in parallel at the bottom; the number and arrangement mode of the upper cabinet cabin 1, the middle cabinet cabin 2 and the bottom cabinet cabin 3 can be freely adjusted according to the overall size of the cabinet body and the use requirements of users.
As shown in fig. 2; a drawer 101 is arranged in the upper cabinet chamber 1, and the drawer 101 is connected with a push-pull lifting mechanism. The push-pull lifting mechanism comprises a guide assembly and a driving assembly. The push-pull lifting mechanism is used for pushing the drawer 101 out of the upper cabinet cabin 1 and lowering the drawer to a certain height, so that a user can conveniently take the stored articles in the drawer 101.
As shown in fig. 6; the drawer 101 is connected to a panel 1012 which can be opened and closed by a hydraulic hinge 1013. The length and the width of the panel 1012 are equal to the length and the width of the opening of the upper layer cabinet cabin 1, when the panel 1012 is closed and the drawer 101 is retracted into the upper layer cabinet cabin 1, the appearance of the upper layer cabinet cabin 1 is a complete whole, and the practicability and the attractiveness are both considered. The advantage of using a hydraulic hinge is that when the panel 1012 is manually flipped up to a certain angle, the hydraulic hinge 1013 automatically pops up the panel 1012; the hydraulic hinge has a damping, slow-descent effect when the panel 1012 is closed.
As shown in fig. 3; the guide assembly comprises two horizontal guide posts 1032 distributed on the inner wall of the upper cabinet 1 and parallel to the pushing direction of the drawer 101, and a vertical guide post 1033 with one end slidably sleeved with the horizontal guide posts 1032, and the other end of the vertical guide post 1033 is a free end. The tail of the drawer 101 is provided with a slide block 1011, and the vertical guide post 1033 penetrates through the slide block 1011 and is in sliding sleeve joint with the slide block 1011. In order to improve the stability between the vertical guide pillars 1033, a connection column 1031 is further connected between the upper end points of the two vertical guide pillars 1033.
The guide assembly formed by the horizontal guide post 1032 and the vertical guide post 1033 provides a transverse and longitudinal motion track for the drawer 101, and the drawer can move directionally by matching with the driving assembly. As shown in fig. 4; the driving assembly comprises a motor box 1041 and swing rod structures which are arranged at two sides of the drawer 101 and connected with the motor box 1041 through a rotating shaft 1044; the motor box 1041 includes a motor and a reduction gear box connected with an output shaft of the motor, and the motor is electrically connected to the control circuit board. The rotary shaft 1044 is coupled to an output shaft of the reduction gear box. The upper cabinet 1 is provided with a shaft seat 106, and the rotating shaft 1044 is arranged on the shaft seat 106.
Referring to fig. 4 and 5 simultaneously; the swing rod structure comprises a driving chain wheel 1045 in matched connection with the rotating shaft 1044, a driven chain wheel 1042 arranged in the upper cabinet 1 through a fixed connecting shaft, a chain 1043 meshed with the driving chain wheel 1045 and the driven chain wheel 1042, a swing block 1046 coaxially connected with the driven chain wheel 1042, a swing rod 1047 which is inserted on the swing block 1046 in a sliding mode and one end of the swing rod 1047 is hinged to the drawer 101, and a spring 1048 sleeved on the swing rod 1047, wherein the spring 1048 is located between the swing block 1046 and a hinged point of the swing rod 1047 and the drawer 101. The upper cabinet 1 is provided with mounting vertical plates 105 at two sides of the drawer 101, and the driven chain wheel 1042 and the fixed shaft are arranged between the mounting vertical plates 105 and the inner wall of the upper cabinet 1. The fixed connecting shaft can be rotatably arranged between the vertical mounting plate 105 and one side wall of the upper cabinet 1, the driven chain wheel 1042 is non-rotatably connected with the fixed connecting shaft, the swinging block 1046 is T-shaped, two transverse plates of the swinging block 1046 are provided with sliding sleeves 10461, the swinging rod 1047 penetrates through the sliding sleeves 10461, and the waist of the swinging block 1046 is fixedly connected with the fixed connecting shaft. One end of the swing rod 1047 is provided with a protruding structure to limit the swing rod 1047 from slipping off the swing block 1046, the other end of the swing rod 1047 is provided with an L-shaped plate 1049, and the L-shaped plate 1049 is hinged with the slider 1011; a spring 1048 is disposed between the pendulum block 1047 and the L-shaped plate 1049.
The motor box 1041 drives the driving sprocket 1045 to further drive the driven sprocket 1042, the driven sprocket 1042 is linked with the swing rod 1047 to swing, the swing rod 1047 is in sliding connection with the swing block 1046, when the drawer 101 is pushed out, along with the rotation of the swing block 1046, under the tension action of the spring 1048, the swing rod 1047 extends forwards, and further the drawer 101 is pushed out; when the drawer 101 is retracted, the swing block 1046 rotates reversely, the spring 1048 is compressed, and the swing rod 1047 retracts backwards until the drawer 101 is completely moved into the upper cabinet 1. In order to reduce the sliding friction between the drawer 101 and the inner bottom of the upper cabinet 1 during the pushing out and pulling back process, directional pulleys may be arranged at the bottom or at the two outer sides of the drawer 101.
Because the bottom end of the vertical guide pillar 1033 is a free end, in order to prevent the drawer 101 from having insufficient supporting force of the vertical guide pillar 1033 in the lifting process, the push-pull lifting mechanism further comprises an auxiliary supporting component. Referring to fig. 1; the auxiliary supporting component is located two sides of the drawer 101, and comprises a support 1025 arranged in the upper cabinet chamber 1, two first connecting rods 1023 hinged with the support 1025 and arranged in parallel, and two second connecting rods 1021 hinged with the drawer 101 and arranged in parallel, wherein the first connecting rods 1023 are hinged with the second connecting rods 1021, a third connecting rod 1022 is connected between hinged points, and a fourth connecting rod 1024 parallel to the third connecting rod 1022 is hinged between the two first connecting rods 1023. First connecting rod 1023 is connected the driving piece, and the driving piece chooses for use electronic jar, and electronic jar stiff end is articulated with support 1025, and the end that stretches out is articulated with first connecting rod 1023, driving piece electric connection control circuit board. In the lifting process that the drawer 101 is completely pushed away from the upper cabinet cabin 1, the control circuit board controls the electric cylinder and the motor box 1041 to synchronously operate, the supporting point of the auxiliary supporting component is located at the lower right corner of the drawer 101, the swing rod 1047 provides the supporting point at the upper left corner of the drawer 101 to form a diagonal stress structure, the lifting process is more stable, and the service life is longer.
The middle-layer cabinet cabin 2 comprises a cabinet door 201, the cabinet door 201 is push-pull type, two sliding rails arranged in parallel are arranged on a top plate and a bottom plate of the middle-layer cabinet cabin 2, rollers are arranged on the upper edge and the lower edge of the cabinet door 201, and the rollers are matched and embedded into the top sliding rail and the bottom sliding rail to realize that the two cabinet doors are opened and closed by pushing and pulling.
As shown in fig. 7 and 8; a clothes hanging device is arranged in the upper space in the middle-layer cabinet 2, and comprises a closed guide rail 207, a plurality of hooks 2051 distributed on the closed guide rail 207 and a synchronous driving mechanism; the cross section of the closed guide rail 207 is in an I shape, the hook 2051 is clamped on the lower edge of the closed guide rail 207, the outline of the closed guide rail 207 is in a long strip shape as shown in the figure, the upper edges of arc-shaped parts at two sides of the closed guide rail 207 are connected with the installation groove frames 203, and the installation groove frames 203 are fixed on the inner wall of the middle-layer cabinet cabin 2. The wheel carrier 204 is arranged at the top of the middle cabinet 2, and the synchronous driving mechanism is arranged on the wheel carrier 204. The synchronous driving mechanism comprises a driving pulley 2062, a driven pulley 2061, a synchronous belt 208 and a driving motor 209, wherein the synchronous belt 208 is meshed with the driving pulley 2062 and the driven pulley 2061, the moving track of the synchronous belt 208 is the same as the outline shape of the closed guide rail 207, an extension plate 2052 is arranged on the hook 2051, and the extension plate 2052 is connected with the synchronous belt 208; the timing belt 208 moves the hook 2051 along the closed rail 207. The driving motor 208 drives the driving pulley 2062 through a worm-gear pair, which has a simple structure and a large transmission ratio. The driving motor 208 is electrically connected with the control circuit board, and the first image acquisition device 202 is arranged in the middle-layer cabinet cabin 2; the cabinet door 201 is provided with an image display device 4. The first image acquisition device 202 is used for shooting whether clothes are hung on the hook 2051 or not and shooting pictures of the clothes on the hook 2051, and then the pictures are transmitted to the image display device 4 to be displayed for a user to quickly select the clothes, after the single chip microcomputer receives information that the user selects specified clothes, the single chip microcomputer sends the information to the control circuit board, and the control circuit board controls the driving motor 208 to start, and the clothes selected by the user are transferred to the cabinet door 201 through the synchronous belt 208; similarly, when the user stores clothes, the driving motor 208 drives the timing belt 208 to transfer the empty hook 2051 to the cabinet door 201.
As shown in fig. 9 and 10; the bottom cabinet chamber 3 comprises a door plate, a middle shaft 3031 is vertically arranged in the bottom cabinet chamber 3 through a rotating seat, and the rotating disc 303 is arranged on the middle shaft 3031 and can synchronously rotate along with the middle shaft 3031. A division plate 305 is further arranged in the bottom cabinet chamber 3, and the turntable 303 is positioned above the division plate 305. The turntable 303 is uniformly divided into a plurality of frame bodies, and a placing frame 3032 is movably arranged in each frame body.
The bottom of the interlayer plate 305 is provided with a motor 3061, a gear shaft 3064 connected with the motor 3061, a first driving gear 3063, a second driving gear 3062, a first intermediate gear 3066, a second intermediate gear 3065, a first gear ring 3067 and a second gear ring 3068 which are sleeved on a central shaft 3031; the first gear ring 3067 is in key connection or fixed connection with the gear shaft 3064; the second ring gear 3068 is rotatably coupled to the gear shaft 3064.
The first driving gear 3063 is coupled with the gear shaft 3064 through a first electromagnetic clutch 3072, and the second driving gear 3062 is coupled with the gear shaft 3064 through a second electromagnetic clutch 3071; the motor 3061, the gear shaft 3064, the first driving gear 3063, the second driving gear 3062, the first electromagnetic clutch 3072, and the second electromagnetic clutch 3071 are provided on the carrier 308. The motor 3061, a gear shaft 3064, a first electromagnetic clutch 3072, a first driving gear 3063, a first intermediate gear 3066, and a first ring gear 3067, which are sequentially fitted, constitute a rotation mechanism.
The bottom of the interlayer plate 305 is also provided with a crank block component, and the crank block component comprises a crank 3091, a connecting rod 3092, a moving block 3095 and a sliding rail 3093 arranged at the inner bottom of the bottom cabinet chamber 3; one end of the crank 3091 is fixedly connected with the second gear 3068, and the other end is hinged with the connecting rod 3092, and the moving block 3095 is arranged on the sliding rail 3093 in a sliding way and is hinged with the connecting rod 3092. A support block 3094 is arranged on the moving block 3095; a push rod is arranged at the bottom of the placing frame 3032, a strip-shaped first through groove is formed in the bottom surface of the rotating disc 303, and the first through groove is a guide groove for the push rod to slide back and forth; the supporting block 3094 is provided with a second through groove which is through from left to right, and the rotating disc 303 is used for enabling the push rod to cross the supporting block 3094 in the rotating process. In order to further prevent the placing frame 3032 from tipping forwards after being partially pushed out, the bottom of the push rod is connected with a transverse bottom plate, and the second through groove on the support block 3094 corresponds to an inward returning concave structure. The width of the first through groove and the width of the second through groove are larger than that of the push rod; the push rod passes through the first through groove and can be overlapped with the second through groove. The electric motor 3061, a gear shaft 3064, a second electromagnetic clutch 3071, a second driving gear 3062, a second intermediate gear 3065 and a crank block assembly which are sequentially matched form a pushing mechanism.
In order to prevent the placing frame 3032 from being thrown outwards due to the centrifugal force in the rotating process of the turntable 303, magnets are arranged at the tail part of the placing frame 3032 and the contact part of the turntable 303 and the tail part of the placing frame 3032; when the placing frame 3032 is retracted, the placing frame 3032 is fixed under the action of magnetic force; when the placing frame 3032 is pushed out, the pushing mechanism overcomes the magnetic force to push the placing frame 3032 out.
The first electromagnetic clutch 3072, the second electromagnetic clutch 3071 and the motor 3061 are electrically connected to the control circuit board, and then the control circuit board controls the first electromagnetic clutch 3072 to be connected with the gear shaft 3064 or the second electromagnetic clutch 3071 to be connected with the gear shaft 3064 respectively according to signals of the single chip microcomputer, and simultaneously controls the motor 3061 to start, so that the rotating mechanism works or the pushing mechanism works. A second image acquisition device 304 is arranged in the bottom cabinet 3; the second image acquisition device 304 is used for shooting the picture of the shoes on the turntable 303 and whether the shoes are stored in the placing rack 3032 on the turntable 303 or not, and then transmitting the picture to the image display device 4 for showing so that a user can quickly select the shoes, the singlechip receives the information that the user selects the appointed shoes and then transmits the information to the control circuit board, the control circuit board firstly controls the first electromagnetic clutch 3072 to be connected with the gear shaft 3064 for starting, then controls the motor 3061 to be started, and transfers the shoes selected by the user to the movable turning plate 302 through the rotating mechanism; then the control circuit board turns off the motor 3061, controls the first electromagnetic clutch 3072 to be separated from the gear shaft 3064, controls the second electromagnetic clutch 3071 to be connected with the gear shaft 3064, starts the motor 3061, and pushes out the placing rack 3032 where the shoes selected by the user are placed through the pushing mechanism.
The door plate of the bottom cabinet compartment 3 comprises a fixed frame plate 301 and a movable turning plate 302, the movable turning plate 302 is hinged to the fixed frame plate 301, and a springback component is connected between the fixed frame plate 301 and the movable turning plate 302; the resilience component is a torsion spring arranged on the hinged shaft of the fixed frame plate 301 and the movable turning plate 302, the movable turning plate 302 is positioned in front of the pushing mechanism, when the pushing mechanism pushes out the placing rack 3032, the movable turning plate 302 is pressed downwards to be opened, and when the pushing mechanism retracts, the movable turning plate 302 is closed under the action of the elasticity of the torsion spring.
In the present invention, the first image capturing device 202 and the second image capturing device 304 are both common cameras, and the image display device 4 is a flat panel with a touch selection function.
The invention is characterized in that; when the multifunctional intelligent wardrobe capable of being stored and taken out efficiently is used, the cotton quilts or other clothes which are not used frequently are placed at a high position of the wardrobe in consideration of the fact that people can place the cotton quilts or other clothes which are not used frequently in general so as to save the space in the middle and the lower part of the wardrobe to store some clothes or other articles which are frequently replaced. After the drawer is stored and taken out, the drawer is retracted by the push-pull lifting mechanism.
The invention is characterized in that when the multifunctional intelligent wardrobe capable of being stored and taken efficiently is used, the requirement of people for quickly selecting clothes is considered, and the multifunctional intelligent wardrobe capable of being stored and taken efficiently is specially provided with a clothes hanging device with a synchronous driving mechanism and is matched with an image acquisition device and an image display device.
More deeply, can also communicate the voice interaction module, the voice interaction module realizes the report to the weather of the day and temperature condition, if the user wants to select suitable clothing according to the weather of the day and temperature condition, the user can search for the information of the weather of the local day and temperature condition and report through the network through appointed voice query, and the user can refer to weather information and select the clothing in combination with own demand. The image acquisition device shoots the internal image of the middle-layer cabinet cabin and transmits the image to the image display device, and the image display device displays the state of each hook, including the use condition of the hook and the picture of clothes. If the user wants to store clothes, the synchronous driving mechanism receives the signal of the control circuit board and transfers the vacant hook to the cabinet door. If the user wants to store the clothes, the synchronous driving mechanism receives the signal of the control circuit board and transmits the hook hung with the appointed clothes to the cabinet door.
The invention is characterized in that the multifunctional intelligent wardrobe with high-efficiency storage and taking can enable a user to more efficiently complete the storage and taking of shoes. The image acquisition device shoots the use condition of each placing frame on the turntable and the images of the shoes on the placing frames, and then the images are transmitted to the image display device for selection of a user. After the user selects, the control circuit board controls the rotation mechanism to work, the corresponding placing frame is moved to the movable turning plate, and then the control circuit board controls the pushing mechanism to push out the placing frame loaded with the appointed shoes.
It should be understood that although the present description has been described in terms of various embodiments, not every embodiment includes only a single embodiment, and such description is for clarity purposes only, and those skilled in the art will recognize that the embodiments described herein may be combined as suitable to form other embodiments, as will be appreciated by those skilled in the art.
The above-listed detailed description is only a specific description of a possible embodiment of the present invention, and they are not intended to limit the scope of the present invention, and equivalent embodiments or modifications made without departing from the technical spirit of the present invention should be included in the scope of the present invention.

Claims (10)

1. The utility model provides a multi-functional intelligent wardrobe of high-efficient access which characterized in that: the cabinet comprises a cabinet body which is divided into an upper layer cabinet cabin (1), a middle layer cabinet cabin (2) and a bottom layer cabinet cabin (3), wherein a drawer (101) is arranged in the upper layer cabinet cabin (1), the drawer (101) is connected with a push-pull lifting mechanism, and a panel (1012) which can be opened and closed is connected to the body of the drawer (101); the middle-layer cabinet compartment (2) comprises a cabinet door (201), a clothes hanging device is arranged in the upper space in the middle-layer cabinet compartment (2), the clothes hanging device comprises a closed guide rail (207), a plurality of hooks (2051) distributed on the closed guide rail (207) and a synchronous driving mechanism, the hooks (2051) are all connected with the synchronous driving mechanism, and a first image acquisition device (202) is arranged in the middle-layer cabinet compartment (2); the bottom cabinet compartment (3) comprises a door plate, a turntable (303) is arranged in the bottom cabinet compartment (3), the turntable (303) is connected to a slewing mechanism, and the turntable (303) is divided into a plurality of frame bodies; a second image acquisition device (304) is arranged in the bottom cabinet cabin (3); the push-pull lifting mechanism, the synchronous driving mechanism, the swing mechanism, the first image acquisition device (202) and the second image acquisition device (304) are respectively and electrically connected with a control circuit board, the control circuit board is electrically connected with a single chip microcomputer, and the single chip microcomputer is electrically connected with an image display device (4).
2. The multifunctional intelligent wardrobe with efficient access according to claim 1, characterized in that: the rotary table (303) is provided with a placing frame (3032), the bottom cabinet compartment (3) is further internally provided with a pushing mechanism, and the placing frame (3032) is connected with the output end of the pushing mechanism.
3. The multifunctional intelligent wardrobe with efficient access according to claim 1, characterized in that: the push-pull lifting mechanism comprises a guide assembly and a driving assembly.
4. The multifunctional intelligent wardrobe with efficient access according to claim 3, characterized in that: the guide assembly comprises horizontal guide columns (1032) which are distributed on the inner wall of the upper layer cabinet cabin (1) and are parallel to the pushing direction of the drawer (101), and vertical guide columns (1033) of which one end parts are in sliding sleeve joint with the horizontal guide columns (1032); a sliding block (1011) is connected to the vertical guide post (1033), and the sliding block (1011) is fixedly connected with the drawer (101); the driving assembly comprises a motor box (1041) and swing rod structures which are arranged on two sides of the drawer (101) and connected with the motor box (1041) through rotating shafts (1044); the swing rod structure comprises a driving chain wheel (1045) connected with the rotating shaft (1044) in a matched mode, a driven chain wheel (1042) arranged in the upper cabinet (1) through a fixed connecting shaft, a chain (1043) meshed with the driving chain wheel (1045) and the driven chain wheel (1042), a swing block (1046) coaxially connected with the driven chain wheel (1042), a swing rod (1047) which is inserted on the swing block (1046) in a sliding mode, one end of the swing rod is hinged to the drawer (101), and a spring (1048) sleeved on the swing rod (1047), wherein the spring (1048) is located between hinge points of the swing block (1046) to the swing rod (1047) and the drawer (101).
5. The multifunctional intelligent wardrobe with efficient access according to claim 1, characterized in that: the synchronous driving mechanism comprises a driving pulley (2062), a driven pulley (2061), a synchronous belt (208) and a driving motor (209), the synchronous belt (208) is meshed with the driving pulley (2062) and the driven pulley (2061), the moving track of the synchronous belt (208) is the same as the outline shape of the closed guide rail (207), and the hook (2051) is connected with the synchronous belt (208); the driving motor (209) drives the driving pulley (2062) through a worm-and-gear pair.
6. The multifunctional intelligent wardrobe with efficient access as claimed in claim 5, wherein: the cross section of the closed guide rail (207) is I-shaped, and the hook (2051) is clamped on the lower edge of the closed guide rail (207).
7. The multifunctional intelligent wardrobe with efficient access according to claim 2, characterized in that: the bottom cabinet compartment (3) is internally provided with a motor (3061), a gear shaft (3064) connected with the motor (3061), a first driving gear (3063), a second driving gear (3062), a first intermediate gear (3066), a second intermediate gear (3065), a first gear ring (3067) and a second gear ring (3068) which are sleeved on a middle shaft (3031) of the rotary table (303); the first driving gear (3063) is coupled with the gear shaft (3064) through a first electromagnetic clutch (3072), and the second driving gear (3062) is coupled with the gear shaft (3064) through a second electromagnetic clutch (3071); the motor (3061) and a gear shaft (3064), a first electromagnetic clutch (3072), a first driving gear (3063), a first intermediate gear (3066) and a first gear ring (3067) which are sequentially matched form the rotating mechanism; a crank block assembly is further arranged in the bottom cabinet cabin (3), the input end of the crank block assembly is connected with the second gear ring (3068), and the output end of the crank block assembly is connected with the placing rack (3032); the pushing mechanism is formed by the motor (3061), a gear shaft (3064), a second electromagnetic clutch (3071), a second driving gear (3062), a second intermediate gear (3065) and a crank block assembly which are matched in sequence.
8. The multifunctional intelligent wardrobe with efficient access of claim 7, wherein: a supporting block (3094) is arranged at the output end of the crank block assembly; a push rod is arranged at the bottom of the placing frame (3032), a first strip-shaped through groove is formed in the bottom surface of the rotating disc (303), a second through groove which is through from left to right is formed in the support block (3094), and the width of the first through groove and the width of the second through groove are larger than that of the push rod; the push rod penetrates through the first through groove and can be overlapped with the edge of the second through groove.
9. The multifunctional intelligent wardrobe with efficient access according to claim 4, characterized in that: the push-pull lifting mechanism further comprises an auxiliary supporting component; the auxiliary supporting components are positioned on two sides of the drawer (101) and comprise a support (1025) arranged in the upper cabinet chamber (1), two first connecting rods (1023) hinged with the support (1025) and arranged in parallel with each other, and two second connecting rods (1021) hinged with the drawer (101) and arranged in parallel with each other, the first connecting rods (1023) are hinged with the second connecting rods (1021), a third connecting rod (1022) is connected between hinged points, and a fourth connecting rod (1024) parallel with the third connecting rod (1022) is hinged between the two first connecting rods (1023); the first connecting rod (1023) is connected with a driving piece, and the driving piece is electrically connected with a control circuit board.
10. The multifunctional intelligent wardrobe with efficient access of claim 7, wherein: the door plate of the bottom cabinet compartment (3) comprises a fixed frame plate (301) and a movable turning plate (302), the movable turning plate (302) is hinged to the fixed frame plate (301), and a springback component is connected between the fixed frame plate and the movable turning plate; the movable turning plate (302) is positioned in front of the pushing mechanism.
CN202010559705.2A 2020-06-18 2020-06-18 Multifunctional intelligent wardrobe capable of achieving efficient storage and taking Pending CN111743307A (en)

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CN202010559705.2A CN111743307A (en) 2020-06-18 2020-06-18 Multifunctional intelligent wardrobe capable of achieving efficient storage and taking

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010559705.2A CN111743307A (en) 2020-06-18 2020-06-18 Multifunctional intelligent wardrobe capable of achieving efficient storage and taking

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CN111743307A true CN111743307A (en) 2020-10-09

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112890444A (en) * 2021-02-19 2021-06-04 武汉理工大学 Movable cabinet type intelligent wardrobe

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112890444A (en) * 2021-02-19 2021-06-04 武汉理工大学 Movable cabinet type intelligent wardrobe

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