WO2020062907A1 - Smart home shoe cabinet - Google Patents

Smart home shoe cabinet Download PDF

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Publication number
WO2020062907A1
WO2020062907A1 PCT/CN2019/089857 CN2019089857W WO2020062907A1 WO 2020062907 A1 WO2020062907 A1 WO 2020062907A1 CN 2019089857 W CN2019089857 W CN 2019089857W WO 2020062907 A1 WO2020062907 A1 WO 2020062907A1
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WO
WIPO (PCT)
Prior art keywords
shoe
cabinet
controller
smart home
placing
Prior art date
Application number
PCT/CN2019/089857
Other languages
French (fr)
Chinese (zh)
Inventor
吴先锋
李桂玉
Original Assignee
李桂玉
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 李桂玉 filed Critical 李桂玉
Publication of WO2020062907A1 publication Critical patent/WO2020062907A1/en

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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
    • 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
    • A47B49/00Revolving cabinets or racks; Cabinets or racks with revolving parts
    • A47B49/002Cabinets with compartments provided with trays revolving on a horizontal 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
    • A47B96/00Details of cabinets, racks or shelf units not covered by a single one of groups A47B43/00 - A47B95/00; General details of furniture
    • A47B96/02Shelves
    • 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
    • A47B97/00Furniture or accessories for furniture, not provided for in other groups of this subclass
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/16Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using chemical substances
    • A61L2/20Gaseous substances, e.g. vapours
    • A61L2/202Ozone

Definitions

  • the present application relates to the field of smart home technology, and in particular, to a smart home shoe cabinet.
  • the main purpose of the shoe cabinet is to display idle shoes.
  • the existing shoe cabinets have a variety of functions and styles. They have evolved from the early wooden shoe cabinets to the present. A variety of styles and materials of shoe cabinets. When people hope that the shoe cabinet has more functions, wooden shoe cabinets, electronic shoe cabinets, sterilized shoe cabinets and other shoes cabinets with different functions and styles came into being.
  • This shoe cabinet is a traditional shoe cabinet, which is mainly used to realize the storage of shoes and play a two-way role of storing shoes and decoration.
  • the electronic shoe cabinet is an intelligent shoe cabinet evolved from the traditional wooden shoe cabinet. In addition to more stylish appearance and changes in the material, the electronic shoe cabinet also has intelligent functions such as disinfection.
  • shoe racks or exposed shoe cabinets not only affects the beauty and the odor of the shoes pollutes the indoor air, but also has a large footprint and a small shoe cabinet capacity.
  • the electronic shoe cabinet can solve the problem of odor polluting indoor air, its capacity is also limited.
  • the shoes will inevitably become muddy. If left untreated, the shoes will be directly placed on the shoe cabinet, which will not only pollute the indoor environment, but also breed bacteria over time, which will seriously affect the storage in the shoe cabinet. Environment. It can be seen that the existing shoe cabinets have the problems of low space utilization, and poor sterilization and deodorizing effects.
  • the present application provides a smart home shoe cabinet to solve the problems of the existing shoe cabinets that have low space utilization rate and poor sterilization and deodorizing effects.
  • the present application provides a smart home shoe cabinet, including: a cabinet body and two cabinet doors, each of which is located on opposite sides of the cabinet body, and the cabinet door and the cabinet body are hinged through a connecting member; further comprising: At least one shoe rack assembly, each of the shoe rack assemblies is arranged in the inner cavity of the cabinet from top to bottom, and each of the shoe rack assemblies is respectively connected to the inner walls of opposite sides of the cabinet through corresponding rotation shafts ; Each axis of rotation is parallel to each other;
  • the shoe rack assembly includes at least two shoe racks, and the two shoe racks are symmetrically fixed on a rotating shaft; the shoe rack includes a shoe base, a shoe top plate and a support plate; the shoe base and The supporting plates are perpendicular to each other.
  • the shoe placing top plate is located between the shoe placing base and the supporting plate.
  • the shoe placing top plate and the supporting plate are connected at an angle, so that a shoe placing space is formed between the shoe placing top plate and the shoe placing base.
  • the side edges of the shoe placing top plate and the supporting plate are connected through a connecting net, the top ends of the shoe placing top plate and the supporting plate are connected through a bent portion, and a receiving cavity is formed between the shoe placing top plate, the supporting plate and the bent portion;
  • a controller connected to a power source is provided on the inside of the top of the cabinet, and an ozone release meter is provided in the accommodating chamber.
  • the ozone release meter is connected to the controller.
  • the ozone release meter is used to release ozone to remove the cabinet. Bacteria and odor in the body;
  • a control panel is provided on the front surface of the cabinet, and the control panel is provided with an open button, a rotary button and a close button, and the open button, the rotary button and the close button are respectively connected to the controller;
  • a pressure sensor is arranged in the connecting piece, and the pressure sensor is connected to the controller.
  • a smart home shoe cabinet provided by an embodiment of the present invention includes a cabinet body, and two cabinet doors connected to the cabinet door through a connecting member.
  • a plurality of shoe rack components fixed by a rotating shaft are arranged in the cabinet.
  • the shoe rack components include at least two shoe racks, and the two shoe racks are symmetrically fixed on the shaft.
  • the shoe rack includes a shoe base, a shoe top plate and a support.
  • a shoe-receiving cavity for placing shoes is formed between the board, the shoe-receiving top plate and the shoe-receiving base, and the shoe-receiving top plate and the support plate form a receiving cavity through a side connection net and a bending portion.
  • An ozone release meter is arranged in the accommodating chamber, and the ozone release meter is connected to a controller provided inside the top of the cabinet. It can be seen that a plurality of symmetrical shoe rack components are arranged on the rotating shaft, and the shoe rack components can be rotated along the rotating shaft to increase the space utilization ratio of the shoe cabinet. At the same time, the controller controls the ozone release meter to start and stop the release of ozone to remove bacteria and odors in the cabinet more flexibly; while the shoe rack where the shoes are placed adopts a mesh structure, which can face the shoe rack in all directions The shoes are sterilized and deodorized. Therefore, the smart home shoe cabinet provided by this embodiment can not only improve the space utilization rate, but also make the effect of sterilization and deodorization better.
  • FIG. 1 is a schematic structural diagram of a smart home shoe cabinet according to an embodiment of the present application.
  • FIG. 2 is a vertical cross-sectional view of a shoe rack assembly according to an embodiment of the present application
  • FIG. 3 is a bottom view of a cabinet top provided in an embodiment of the present application.
  • FIG. 1 is a schematic structural diagram of a smart home shoe cabinet according to an embodiment of the present invention.
  • the smart home shoe cabinet provided by the embodiment of the present invention includes a cabinet body 1 and two cabinet doors 2, each cabinet door 2 is located on opposite sides of the cabinet body 1, the cabinet door 2 and the cabinet body 1 are hinged through a connecting member 3, and the cabinet The door 2 can be connected with the connector 3 as a center and rotate along the side of the cabinet body 1.
  • the two cabinet doors 2 and the cabinet body 1 form a closed space, and the space is used for storing various shoes.
  • the shoe cabinet provided by the embodiment of the present invention is a smart home shoe cabinet, various shoes stored in the cabinet 1 can be sterilized and deodorized. Therefore, the shoe cabinet is required to have a sealing property. At the same time, in order to prevent moisture and dust in the outside air from entering the cabinet 1, so as not to stain the shoes stored in the cabinet 1. Therefore, in this embodiment, a sealing strip is provided at a connection portion between the cabinet door 2 and the cabinet body 1, and the sealing strip is used to prevent moisture and dust in the outside air from entering the cabinet body 1.
  • the smart home shoe cabinet provided by the embodiment of the present invention can store a large number of shoes at the same time to improve the space utilization ratio of the shoe cabinet.
  • a plurality of shoe rack assemblies 4 need to be provided in the cabinet 1, and each shoe rack assembly 4 is arranged in the inner cavity of the cabinet 1 from top to bottom, and each shoe rack assembly 4 passes a corresponding rotation shaft 5 respectively. It is connected with the inner walls of the opposite sides of the cabinet 1; two adjacent rotating shafts 5 are parallel to each other.
  • the shoe rack assembly 4 can be rotated in the cabinet 1 with the rotating shaft 5 as the axis, and in order to prevent the two adjacent shoe rack assemblies 4 from interfering with each other during rotation, the distance between the adjacent two rotating shafts 5 is required. It should be larger than the width of the shoe rack assembly 4 itself.
  • the shoe rack assembly 4 includes at least two shoe racks, and the two shoe racks are symmetrically fixed on the rotating shaft 5. The positions of the two shoe racks are opposite to each other, similar to the back-to-back arrangement.
  • the shoe rack assembly 4 may include three shoe racks or four shoe racks. In the case of multiple shoe racks, each shoe rack needs to be mounted along the rotation axis 5. The cloth is sufficient, and this embodiment is not specifically limited.
  • the shoe placing frame includes a shoe placing base 41, a shoe placing top plate 42 and a support plate 43; the shoe placing base 41 and the supporting plate 43 are perpendicular to each other, and the shoe placing base 41 is used to place shoes for supporting purposes.
  • the shoe placing top plate 42 is located between the shoe placing base 41 and the supporting plate 43, and the shoe placing top plate 42 and the supporting plate 43 are connected at an angle, so that a shoe placing space is formed between the shoe placing top plate 42 and the shoe placing base 41. Cavity 44.
  • a partition 401 can be used for separation, that is, a plurality of partitions 401 are arranged in the shoe rack, and each partition 401 is separately It is fixedly connected with the shoe placing base 41 and the shoe placing top plate 42 to separate the shoe placing cavity 44 into a plurality of shoe placing cavities, and each pair of shoes is placed in a separate shoe placing cavity.
  • the smart home shoe cabinet provided by this embodiment can be sterilized and deodorized, in order to make the effect of sterilization and deodorization better, part of the structure of the shoe rack for placing shoes adopts a mesh structure, so that it can be used in all directions. Sterilize and deodorize the shoes on the shoe rack.
  • the sides of the shoe top plate 42 and the support plate 43 are connected through a connection net 46, and the top ends of the shoe top plate 42 and the support plate 43 are connected through a bent portion 47.
  • a receiving cavity 45 is formed between the support plate 43 and the bent portion 47, and the receiving cavity 45 is a semi-closed structure.
  • a controller 11 connected to a power source is provided on the inner side of the top of the cabinet 1.
  • the controller 11 implements an automatic control function of the shoe cabinet.
  • the controller 11 is connected to an external power source to automatically control the Each component performs the corresponding operation.
  • An ozone release meter is provided in the accommodating cavity 45, and the ozone release meter is connected to the controller 11. The ozone release meter is used to release ozone to remove bacteria and odors in the cabinet 1.
  • the controller 11 controls the ozone release device to start releasing ozone, and uses ozone to decompose the odor molecules in a closed condition.
  • Ozone has excellent odor-removing properties. Depending on its strong oxidizing properties, it can quickly decompose organic or inorganic substances that produce odors and other odors.
  • ozone By using ozone to oxidize and decompose organic or inorganic substances, the resulting products have no off-odors, and at the same time, they have no off-odors.
  • the cabinet 1 overflows and affects the external environment. In this embodiment, the bacteria and odor brought by the shoes placed in the cabinet 1 are removed by using ozone to disinfect the shoes.
  • the front surface of the cabinet 1 is provided with a control panel 12.
  • the control panel 12 is provided with an open button 121, a rotation button 122, and a close button 123.
  • the open button 121, the rotation button 122, and the close button 123 are respectively connected to the controller 11.
  • the start button 121 is used to control the shoe cabinet to enter the intelligent working state, that is, the ozone release meter in the cabinet 1 starts to release ozone to sterilize and deodorize the shoes;
  • the close button 123 is used to control the shoe cabinet to enter a normal state, that is, to stop The ozone releaser releases ozone.
  • the shoe cabinet only has the normal function of placing shoes.
  • the rotation button 122 is used to control the rotation of the rotating shaft 5. When the user opens the cabinet door 2, if the shoes you want to take are not on the shoe rack in front At this time, the rotating shaft 5 is controlled to rotate through the rotation button 122, so that the shoe rack on the other side is turned to the user, which is convenient for the user to take.
  • a shielding net 48 and a driving device are provided in the bent portion 47.
  • the driving device is connected to the controller 11 for driving the shielding net 48 to slide out of the bent portion 47.
  • One end of the shielding net 48 is connected to one end of the shoe placing base 41 to seal the shoe placing cavity 44.
  • a touch sensor is provided on the outer surface of the bent portion 47, and the touch sensor is connected to the controller 11.
  • the touch sensor senses a signal and sends it to the controller 11.
  • the controller 11 After processing, the controller 11 generates a control instruction to send a driving device, and the driving device drives the bending
  • the shielding net 48 in the portion 47 slides out to seal the shoe cavity 44 and prevent the shoe from falling.
  • the touch sensor needs to be touched again, and the detected signal is sent to the controller 11, and the processed control command is generated and sent to the driving device, so that the driving device reversely pulls the shielding net 48 Back, the entrance end of the shoe-receiving cavity 44 is exposed, so that it is convenient to take the shoes.
  • a stopper 49 is provided at one end of the shoe placing base 41, and a stopper gap is provided along the length direction of the rotation shaft 5 on the stopper 49 to limit the position. The gap is used to insert one end of the shielding net 48.
  • the movable end is inserted into the limiting gap of the limiting block 49 to improve the stability of the shielding net 48, thereby preventing excessive shoes along the shielding net 48 and the shoe base 41. Dropped out at the connection.
  • the shielding net 48 adopts a mesh structure, which can also make the ozone released by the ozone releaser better contact with the shoes, and improve the sterilization and deodorizing effect.
  • a pressure sensor is provided in the connecting member 3, and the pressure sensor is connected to the controller 11.
  • the data detected by the pressure sensor is a stable value.
  • the detection value of the pressure sensor changes. If the value exceeds a preset threshold, the door 2 is opened.
  • the pressure sensor sends a signal to the controller 11. After the controller 11 processes the signal, a control instruction is generated and sent to the ozone release meter, which controls the ozone release meter to stop releasing ozone.
  • the pressure sensor detects the value again.
  • the value is equal to the pre-stored threshold value, it means that the current cabinet door 2 is closed, then a signal is sent to the controller 11, and the signal is processed by the controller 11 After processing, a control command is generated and sent to the ozone release meter, and the ozone release meter is controlled to start releasing ozone.
  • a hot air circulation system is provided inside the top of the cabinet 1 13.
  • the hot air circulation system 13 is connected to the controller 11.
  • the hot air circulation system 13 is used to provide hot air to dry the shoes in the cabinet 1.
  • the hot air circulation system 13 has the same working principle as the ozone release meter, both of which are controlled by the controller 11 and are closed when the cabinet door 2 is opened and opened when the cabinet door 2 is closed.
  • a plurality of lighting lamps 14 are provided on the inner side of the top of the cabinet 1, and the lighting lamps 14 are all distributed on the cabinet 1. At the top, the lighting lamp 14 is connected to the controller 11.
  • the lighting lamp 14 is turned on and off by a button control, that is, a lighting lamp switch button 124 is provided on the control panel 12, and the lighting lamp switch button 124 is connected to the controller 11 for controlling the lighting lamp 14 to be turned on and off.
  • a button control that is, a lighting lamp switch button 124 is provided on the control panel 12, and the lighting lamp switch button 124 is connected to the controller 11 for controlling the lighting lamp 14 to be turned on and off.
  • Pressing the lighting switch button 124 controls the lighting 14 to be turned on by the controller 11, and pressing the lighting switch button again controls the lighting to turn off, which is convenient for use.
  • a smart home shoe cabinet provided by an embodiment of the present invention includes: a cabinet body 1 and two cabinet doors 2 connected to the cabinet door 2 through a connecting member 3.
  • a plurality of shoe rack assemblies 4 fixed by the rotating shaft 5 are arranged in the cabinet 1.
  • the shoe rack assembly 4 includes at least two shoe racks.
  • the two shoe racks are symmetrically fixed on the shaft 5.
  • the shoe rack includes a shoe base. 41.
  • a shoe placing cavity 44 for placing shoes is formed between the shoe placing top plate 42 and the shoe placing base 41.
  • the shoe placing top plate 42 and the supporting plate 43 are connected by a side connection net 46 and The bent portion 47 forms a receiving cavity 45.
  • the accommodating cavity 45 is provided with an ozone release meter, and the ozone release meter is connected to the controller 11 provided on the inside of the top of the cabinet 1.
  • the rotating shaft 5 is provided with a plurality of symmetrical shoe rack assembly 4.
  • the shoe rack assembly 4 can be rotated along the rotating shaft 5 to increase the space utilization of the shoe cabinet.
  • the controller 11 controls the ozone release meter to start and stop the release of ozone to remove bacteria and odors in the cabinet 1 more flexibly; and part of the structure of the shoe rack for placing shoes adopts a mesh structure, which can comprehensively
  • the shoes on the shoe rack are sterilized and deodorized. Therefore, the smart home shoe cabinet provided by this embodiment can not only improve the space utilization rate, but also make the effect of sterilization and deodorization better.

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  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Epidemiology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

A smart home shoe cabinet, wherein a cabinet body (1) is internally provided with a plurality of shoe placement rack assemblies (4) fixed by means of rotary shafts (5), the shoe placement rack assemblies (4) comprising at least two shoe placement racks; the shoe placement racks comprise shoe placement bases (41), shoe placement top plates (42) and support plates (43); shoe placement cavities (44) used for placing shoes are formed between the shoe placement top plates (42) and the shoe placement bases (41); and the shoe placement top plates (42) and the support plates (43) form accommodating cavities (45) by means of side edge connecting meshes (46) and curved portions (47). The accommodating cavities (45) are internally provided with ozone release instruments, and said ozone release instruments are connected to a controller (11) disposed at an inner side of a top part of the cabinet body (1). The plurality of equipped shoe placement rack assemblies (4) may increase the space utilization rate of the shoe cabinet. At the same time, the ozone release instruments are controlled by the controller (11) to start and stop releasing ozone so as to more flexibly remove bacteria and odors in the cabinet body (1); and the shoe placement racks employ mesh structures, which may omni-directionally perform sterilization and odor removal on shoes on the shoe placement racks. Therefore, the present invention may not only increase space utilization rate, but may also bring about better sterilization and odor removal effects.

Description

一种智能家居鞋柜Smart home shoe cabinet

本申请要求在2018年9月30日提交中国专利局、申请号为201811156096.5、发明名称为“一种智能家居鞋柜”,一件中国专利申请的优先权,其全部内容通过引用结合在本申请中。This application claims the priority of a Chinese patent application filed on September 30, 2018 with the Chinese Patent Office, application number 201811156096.5, and the invention name "a smart home shoe cabinet", the entire contents of which are incorporated herein by reference. in.

技术领域Technical field

本申请涉及智能家居技术领域,尤其涉及一种智能家居鞋柜。The present application relates to the field of smart home technology, and in particular, to a smart home shoe cabinet.

背景技术Background technique

鞋柜的主要用途是陈列闲置的鞋,而随着社会的进步和人类生活水平的提高,现有的鞋柜无论是在功能还是样式上都多种多样,从早期的木鞋柜演变成现在多种多样款式和材质的鞋柜。当人们希望鞋柜具有更多功能时,木质鞋柜、电子鞋柜、消毒鞋柜等等功能和款式各不相同的鞋柜应运而生。The main purpose of the shoe cabinet is to display idle shoes. With the progress of society and the improvement of human living standards, the existing shoe cabinets have a variety of functions and styles. They have evolved from the early wooden shoe cabinets to the present. A variety of styles and materials of shoe cabinets. When people hope that the shoe cabinet has more functions, wooden shoe cabinets, electronic shoe cabinets, sterilized shoe cabinets and other shoes cabinets with different functions and styles came into being.

目前,在现今大多家庭采用的还是鞋架或是外露的鞋柜,鞋子放置方便。这种鞋柜即为传统鞋柜,主要就是为了实现鞋子的存放,起到储藏鞋子和装饰的双向作用。电子鞋柜是由传统的木质鞋柜演变发展而来的智能鞋柜,除了外观上更时尚,制材上的改变外,电子鞋柜还拥有消毒等智能功能。At present, in most families today, shoe racks or exposed shoe cabinets are used, and shoes are conveniently placed. This shoe cabinet is a traditional shoe cabinet, which is mainly used to realize the storage of shoes and play a two-way role of storing shoes and decoration. The electronic shoe cabinet is an intelligent shoe cabinet evolved from the traditional wooden shoe cabinet. In addition to more stylish appearance and changes in the material, the electronic shoe cabinet also has intelligent functions such as disinfection.

但是,采用鞋架或外露的鞋柜,不仅影响美观且鞋子的异味污染室内空气,同时占地面积大、鞋柜容量小。而电子鞋柜虽然能解决异味污染室内空气的问题,但其容量也有限。另外,如果用户在下雨天或者从泥泞处返回室内时,鞋子不可避免的粘上泥水,如果不处理的话直接放置在鞋柜上,不仅污染室内环境,久而久之也会滋生细菌,严重影响鞋柜内的储放环境。可见,现有的鞋柜存在空间利用率低,且灭菌、除异味效果不好的问题。However, the use of shoe racks or exposed shoe cabinets not only affects the beauty and the odor of the shoes pollutes the indoor air, but also has a large footprint and a small shoe cabinet capacity. Although the electronic shoe cabinet can solve the problem of odor polluting indoor air, its capacity is also limited. In addition, if the user returns to the room on a rainy day or from the mud, the shoes will inevitably become muddy. If left untreated, the shoes will be directly placed on the shoe cabinet, which will not only pollute the indoor environment, but also breed bacteria over time, which will seriously affect the storage in the shoe cabinet. Environment. It can be seen that the existing shoe cabinets have the problems of low space utilization, and poor sterilization and deodorizing effects.

发明内容Summary of the Invention

本申请提供了一种智能家居鞋柜,以解决现有的鞋柜存在空间利用率低,且灭菌、除异味效果不好的问题。The present application provides a smart home shoe cabinet to solve the problems of the existing shoe cabinets that have low space utilization rate and poor sterilization and deodorizing effects.

本申请提供了一种智能家居鞋柜,包括:柜体和两个柜门,每个所述柜门位于柜 体的相对两侧,柜门与所述柜体通过连接件铰接;还包括:至少一个置鞋架组件,每个所述置鞋架组件由上至下设置在柜体的内腔中,每个所述置鞋架组件分别通过对应的转轴与柜体的相对两侧内壁连接;每个转轴相互平行;The present application provides a smart home shoe cabinet, including: a cabinet body and two cabinet doors, each of which is located on opposite sides of the cabinet body, and the cabinet door and the cabinet body are hinged through a connecting member; further comprising: At least one shoe rack assembly, each of the shoe rack assemblies is arranged in the inner cavity of the cabinet from top to bottom, and each of the shoe rack assemblies is respectively connected to the inner walls of opposite sides of the cabinet through corresponding rotation shafts ; Each axis of rotation is parallel to each other;

所述置鞋架组件包括至少两个置鞋架,两个所述置鞋架对称固定在转轴上;所述置鞋架包括置鞋底座、置鞋顶板和支撑板;所述置鞋底座与支撑板相互垂直,所述置鞋顶板位于置鞋底座与支撑板之间,置鞋顶板与支撑板呈角度连接,以使置鞋顶板和置鞋底座之间形成用于放置鞋子的置鞋空腔;The shoe rack assembly includes at least two shoe racks, and the two shoe racks are symmetrically fixed on a rotating shaft; the shoe rack includes a shoe base, a shoe top plate and a support plate; the shoe base and The supporting plates are perpendicular to each other. The shoe placing top plate is located between the shoe placing base and the supporting plate. The shoe placing top plate and the supporting plate are connected at an angle, so that a shoe placing space is formed between the shoe placing top plate and the shoe placing base. Cavity

所述置鞋顶板和支撑板的侧边通过连接网连接,所述置鞋顶板和支撑板的顶端通过弯曲部连接,所述置鞋顶板、支撑板和弯曲部之间形成容纳腔;The side edges of the shoe placing top plate and the supporting plate are connected through a connecting net, the top ends of the shoe placing top plate and the supporting plate are connected through a bent portion, and a receiving cavity is formed between the shoe placing top plate, the supporting plate and the bent portion;

所述柜体的顶部内侧设有与电源连接的控制器,所述容纳腔内设有臭氧释放仪,所述臭氧释放仪与控制器连接,所述臭氧释放仪用于释放臭氧,以去除柜体内的细菌和异味;A controller connected to a power source is provided on the inside of the top of the cabinet, and an ozone release meter is provided in the accommodating chamber. The ozone release meter is connected to the controller. The ozone release meter is used to release ozone to remove the cabinet. Bacteria and odor in the body;

所述柜体的前侧表面设有控制面板,所述控制面板上设有开启按钮、旋转按钮和关闭按钮,所述开启按钮、旋转按钮和关闭按钮分别与控制器连接;A control panel is provided on the front surface of the cabinet, and the control panel is provided with an open button, a rotary button and a close button, and the open button, the rotary button and the close button are respectively connected to the controller;

所述连接件内设有压力传感器,所述压力传感器与控制器连接。A pressure sensor is arranged in the connecting piece, and the pressure sensor is connected to the controller.

由以上技术方案可知,本发明实施例提供的一种智能家居鞋柜,包括:柜体,与柜门通过连接件连接的两个柜门。柜体内设置多个通过转轴固定的置鞋架组件,置鞋架组件包括至少两个置鞋架,两个置鞋架对称固定在转轴上;置鞋架包括置鞋底座、置鞋顶板和支撑板,置鞋顶板和置鞋底座之间形成用于放置鞋子的置鞋空腔,置鞋顶板和支撑板通过侧边的连接网和弯曲部形成容纳腔。容纳腔内设有臭氧释放仪,臭氧释放仪与设置在柜体顶部内侧的控制器连接。可见,转轴上设有对称的多个置鞋架组件,置鞋架组件可沿转轴旋转,以增大鞋柜的空间利用率。同时,由控制器控制臭氧释放仪开始和停止释放臭氧,以更加灵活的去除柜体内的细菌和异味;而放置鞋子的置鞋架的部分结构采用网状结构,可以全方位地对置鞋架上的鞋子进行灭菌和除异味处理。因此,本实施例提供的智能家居鞋柜,不仅可提高空间利用率,还可使灭菌、除异味效果更好。As can be known from the above technical solutions, a smart home shoe cabinet provided by an embodiment of the present invention includes a cabinet body, and two cabinet doors connected to the cabinet door through a connecting member. A plurality of shoe rack components fixed by a rotating shaft are arranged in the cabinet. The shoe rack components include at least two shoe racks, and the two shoe racks are symmetrically fixed on the shaft. The shoe rack includes a shoe base, a shoe top plate and a support. A shoe-receiving cavity for placing shoes is formed between the board, the shoe-receiving top plate and the shoe-receiving base, and the shoe-receiving top plate and the support plate form a receiving cavity through a side connection net and a bending portion. An ozone release meter is arranged in the accommodating chamber, and the ozone release meter is connected to a controller provided inside the top of the cabinet. It can be seen that a plurality of symmetrical shoe rack components are arranged on the rotating shaft, and the shoe rack components can be rotated along the rotating shaft to increase the space utilization ratio of the shoe cabinet. At the same time, the controller controls the ozone release meter to start and stop the release of ozone to remove bacteria and odors in the cabinet more flexibly; while the shoe rack where the shoes are placed adopts a mesh structure, which can face the shoe rack in all directions The shoes are sterilized and deodorized. Therefore, the smart home shoe cabinet provided by this embodiment can not only improve the space utilization rate, but also make the effect of sterilization and deodorization better.

附图说明BRIEF DESCRIPTION OF THE DRAWINGS

为了更清楚地说明本申请的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,对于本领域普通技术人员而言,在不付出创造性劳动性的前 提下,还可以根据这些附图获得其他的附图。In order to explain the technical solution of the present application more clearly, the drawings used in the embodiments will be briefly introduced below. Obviously, for those skilled in the art, without paying creative labor, Other drawings can also be obtained from these drawings.

图1为本申请实施例提供的智能家居鞋柜的结构示意图;1 is a schematic structural diagram of a smart home shoe cabinet according to an embodiment of the present application;

图2为本申请实施例提供的置鞋架组件的竖截面剖视图;2 is a vertical cross-sectional view of a shoe rack assembly according to an embodiment of the present application;

图3为本申请实施例提供的柜体顶部仰视图。FIG. 3 is a bottom view of a cabinet top provided in an embodiment of the present application.

具体实施方式detailed description

参见图1,图1为本发明实施例提供的智能家居鞋柜的结构示意图。Referring to FIG. 1, FIG. 1 is a schematic structural diagram of a smart home shoe cabinet according to an embodiment of the present invention.

本发明实施例提供的智能家居鞋柜,包括柜体1和两个柜门2,每个柜门2位于柜体1的相对两侧,柜门2与柜体1通过连接件3铰接,柜门2可以连接件3为中心,沿柜体1的侧边旋转,两个柜门2与柜体1形成封闭空间,该空间内用于存储各种鞋子。The smart home shoe cabinet provided by the embodiment of the present invention includes a cabinet body 1 and two cabinet doors 2, each cabinet door 2 is located on opposite sides of the cabinet body 1, the cabinet door 2 and the cabinet body 1 are hinged through a connecting member 3, and the cabinet The door 2 can be connected with the connector 3 as a center and rotate along the side of the cabinet body 1. The two cabinet doors 2 and the cabinet body 1 form a closed space, and the space is used for storing various shoes.

由于本发明实施例提供的鞋柜为智能家居鞋柜,可对存储在柜体1内的各种鞋子进行灭菌和除臭处理。因此,需要该鞋柜具有密封特质。同时,为了防止外界空气中的水分和灰尘进入柜体1内,以免弄脏柜体1内存放的鞋子。因此,本实施例中,柜门2与柜体1的连接处设有密封条,密封条用于防止外界空气中的水分和灰尘进入柜体1内部。Since the shoe cabinet provided by the embodiment of the present invention is a smart home shoe cabinet, various shoes stored in the cabinet 1 can be sterilized and deodorized. Therefore, the shoe cabinet is required to have a sealing property. At the same time, in order to prevent moisture and dust in the outside air from entering the cabinet 1, so as not to stain the shoes stored in the cabinet 1. Therefore, in this embodiment, a sealing strip is provided at a connection portion between the cabinet door 2 and the cabinet body 1, and the sealing strip is used to prevent moisture and dust in the outside air from entering the cabinet body 1.

本发明实施例提供的智能家居鞋柜,可同时存放较多数量的鞋子,以提高鞋柜的空间利用率。为此,柜体1内需设置多个置鞋架组件4,每个置鞋架组件4由上至下设置在柜体1的内腔中,每个置鞋架组件4分别通过对应的转轴5与柜体1的相对两侧内壁连接;相邻两个转轴5相互平行。The smart home shoe cabinet provided by the embodiment of the present invention can store a large number of shoes at the same time to improve the space utilization ratio of the shoe cabinet. For this purpose, a plurality of shoe rack assemblies 4 need to be provided in the cabinet 1, and each shoe rack assembly 4 is arranged in the inner cavity of the cabinet 1 from top to bottom, and each shoe rack assembly 4 passes a corresponding rotation shaft 5 respectively. It is connected with the inner walls of the opposite sides of the cabinet 1; two adjacent rotating shafts 5 are parallel to each other.

置鞋架组件4可在柜体1内以转轴5为轴心进行旋转,而为了防止相邻两个置鞋架组件4在旋转时的相互干扰,需要相邻两个转轴5之间的距离要大于置鞋架组件4自身的宽度。The shoe rack assembly 4 can be rotated in the cabinet 1 with the rotating shaft 5 as the axis, and in order to prevent the two adjacent shoe rack assemblies 4 from interfering with each other during rotation, the distance between the adjacent two rotating shafts 5 is required. It should be larger than the width of the shoe rack assembly 4 itself.

置鞋架组件4包括至少两个置鞋架,两个置鞋架对称固定在转轴5上;两个置鞋架的位置相对,类似于背靠背的设置方式。当然,为了进一步提高鞋柜的利用率,置鞋架组件4可包括三个置鞋架或四个置鞋架等,多个置鞋架的情况时,需要每个置鞋架沿转轴5均布即可,本实施例不做具体限定。The shoe rack assembly 4 includes at least two shoe racks, and the two shoe racks are symmetrically fixed on the rotating shaft 5. The positions of the two shoe racks are opposite to each other, similar to the back-to-back arrangement. Of course, in order to further improve the utilization ratio of the shoe cabinet, the shoe rack assembly 4 may include three shoe racks or four shoe racks. In the case of multiple shoe racks, each shoe rack needs to be mounted along the rotation axis 5. The cloth is sufficient, and this embodiment is not specifically limited.

参见图2,置鞋架包括置鞋底座41、置鞋顶板42和支撑板43;置鞋底座41与支撑板43相互垂直,置鞋底座41用于放置鞋子,起支撑作用。置鞋顶板42位于置 鞋底座41与支撑板43之间,置鞋顶板42与支撑板43呈角度连接,以使置鞋顶板42和置鞋底座41之间形成用于放置鞋子的置鞋空腔44。Referring to FIG. 2, the shoe placing frame includes a shoe placing base 41, a shoe placing top plate 42 and a support plate 43; the shoe placing base 41 and the supporting plate 43 are perpendicular to each other, and the shoe placing base 41 is used to place shoes for supporting purposes. The shoe placing top plate 42 is located between the shoe placing base 41 and the supporting plate 43, and the shoe placing top plate 42 and the supporting plate 43 are connected at an angle, so that a shoe placing space is formed between the shoe placing top plate 42 and the shoe placing base 41. Cavity 44.

用户的鞋子可放置在置鞋空腔44内,而为了区别每双鞋子,本实施例中,可用隔板401进行分隔,即置鞋架内设有数个隔板401,每个隔板401分别与置鞋底座41和置鞋顶板42固定连接,以将置鞋空腔44分隔为数个置鞋子空腔,每双鞋子放置在独立的置鞋子空腔内。The user's shoes can be placed in the shoe placement cavity 44. In order to distinguish each pair of shoes, in this embodiment, a partition 401 can be used for separation, that is, a plurality of partitions 401 are arranged in the shoe rack, and each partition 401 is separately It is fixedly connected with the shoe placing base 41 and the shoe placing top plate 42 to separate the shoe placing cavity 44 into a plurality of shoe placing cavities, and each pair of shoes is placed in a separate shoe placing cavity.

由于本实施例提供的智能家居鞋柜可进行灭菌和除异味处理,为了使灭菌和除异味的效果更佳,放置鞋子的置鞋架的部分结构采用网状结构,使得可以全方位地对置鞋架上的鞋子进行灭菌和除异味处理。Since the smart home shoe cabinet provided by this embodiment can be sterilized and deodorized, in order to make the effect of sterilization and deodorization better, part of the structure of the shoe rack for placing shoes adopts a mesh structure, so that it can be used in all directions. Sterilize and deodorize the shoes on the shoe rack.

因此,在不影响结构稳定性的情况下,置鞋顶板42和支撑板43的侧边通过连接网46连接,置鞋顶板42和支撑板43的顶端通过弯曲部47连接,置鞋顶板42、支撑板43和弯曲部47之间形成容纳腔45,该容纳腔45为半封闭结构。Therefore, without affecting the structural stability, the sides of the shoe top plate 42 and the support plate 43 are connected through a connection net 46, and the top ends of the shoe top plate 42 and the support plate 43 are connected through a bent portion 47. A receiving cavity 45 is formed between the support plate 43 and the bent portion 47, and the receiving cavity 45 is a semi-closed structure.

如图3所示,柜体1的顶部内侧设有与电源连接的控制器11,控制器11实现鞋柜的自动控制功能,该控制器11与外界的电源连接,以自动控制鞋柜中的各部件执行相应操作。容纳腔45内设有臭氧释放仪,臭氧释放仪与控制器11连接,臭氧释放仪用于释放臭氧,以去除柜体1内的细菌和异味。As shown in FIG. 3, a controller 11 connected to a power source is provided on the inner side of the top of the cabinet 1. The controller 11 implements an automatic control function of the shoe cabinet. The controller 11 is connected to an external power source to automatically control the Each component performs the corresponding operation. An ozone release meter is provided in the accommodating cavity 45, and the ozone release meter is connected to the controller 11. The ozone release meter is used to release ozone to remove bacteria and odors in the cabinet 1.

当柜门2处于关闭状态时,控制器11控制臭氧释放仪开始释放臭氧,在封闭的条件下利用臭氧把臭味分子分解。因为臭氧祛除异味性能极好,依靠其强氧化性能可快速分解产生臭味及其它气味的有机或无机物质,利用臭氧对有机或无机物质进行氧化分解,生成物没有异味,同时也保证了没有异味由柜体1溢出而影响外界的环境。本实施例利用臭氧去除柜体1内摆放的鞋子带来的细菌和异味,以对鞋子进行消毒处理。When the cabinet door 2 is in a closed state, the controller 11 controls the ozone release device to start releasing ozone, and uses ozone to decompose the odor molecules in a closed condition. Ozone has excellent odor-removing properties. Depending on its strong oxidizing properties, it can quickly decompose organic or inorganic substances that produce odors and other odors. By using ozone to oxidize and decompose organic or inorganic substances, the resulting products have no off-odors, and at the same time, they have no off-odors. The cabinet 1 overflows and affects the external environment. In this embodiment, the bacteria and odor brought by the shoes placed in the cabinet 1 are removed by using ozone to disinfect the shoes.

柜体1的前侧表面设有控制面板12,控制面板12上设有开启按钮121、旋转按钮122和关闭按钮123,开启按钮121、旋转按钮122和关闭按钮123分别与控制器11连接。The front surface of the cabinet 1 is provided with a control panel 12. The control panel 12 is provided with an open button 121, a rotation button 122, and a close button 123. The open button 121, the rotation button 122, and the close button 123 are respectively connected to the controller 11.

开启按钮121用于控制鞋柜进入智能工作状态,即柜体1内的臭氧释放仪开始释放臭氧以对鞋子进行灭菌和除异味处理;关闭按钮123用于控制鞋柜进入正常状态,即停止臭氧释放仪释放臭氧,此时鞋柜仅具有放置鞋子的普通功能;旋转按钮122用于控制转轴5的旋转,当用户打开柜门2,如果想要拿取的鞋子不在面前的置鞋架 上,此时,通过旋转按钮122控制转轴5旋转,使另一面上的置鞋架转到用户面前,便于用户拿取。The start button 121 is used to control the shoe cabinet to enter the intelligent working state, that is, the ozone release meter in the cabinet 1 starts to release ozone to sterilize and deodorize the shoes; the close button 123 is used to control the shoe cabinet to enter a normal state, that is, to stop The ozone releaser releases ozone. At this time, the shoe cabinet only has the normal function of placing shoes. The rotation button 122 is used to control the rotation of the rotating shaft 5. When the user opens the cabinet door 2, if the shoes you want to take are not on the shoe rack in front At this time, the rotating shaft 5 is controlled to rotate through the rotation button 122, so that the shoe rack on the other side is turned to the user, which is convenient for the user to take.

由于置鞋空腔44的入口端为开口,当转轴5旋转时,处于下方时开口朝下,鞋子易从置鞋空腔44内掉出。因此,为防止这种情况发生,本实施例中,在弯曲部47内设有遮挡网48和驱动装置,驱动装置与控制器11连接,用于驱动遮挡网48由弯曲部47内滑出,遮挡网48的一端与置鞋底座41的一端相接,使置鞋空腔44密封。Since the entrance end of the shoe-receiving cavity 44 is an opening, when the rotating shaft 5 rotates, the opening faces downward when the shaft 5 is at the bottom, and the shoe easily falls out of the shoe-receiving cavity 44. Therefore, in order to prevent this from happening, in this embodiment, a shielding net 48 and a driving device are provided in the bent portion 47. The driving device is connected to the controller 11 for driving the shielding net 48 to slide out of the bent portion 47. One end of the shielding net 48 is connected to one end of the shoe placing base 41 to seal the shoe placing cavity 44.

弯曲部47的外表面设有触摸传感器,触摸传感器与控制器11连接。当用户将鞋子放置在置鞋空腔44内后,用手触碰触摸传感器,触摸传感器感应到信号发送至控制器11,控制器11经过处理后生成控制指令发送驱动装置,由驱动装置驱动弯曲部47内的遮挡网48滑出,使置鞋空腔44密封,防止鞋子掉落。当需要取出鞋子而使遮挡网48打开时,需要再次触碰触摸传感器,将检测到的信号发送至控制器11,经处理生成控制指令发送至驱动装置,使得驱动装置反转将遮挡网48拉回,使置鞋空腔44的入口端露出,方便拿取鞋子。A touch sensor is provided on the outer surface of the bent portion 47, and the touch sensor is connected to the controller 11. When the user places the shoes in the shoe cavity 44 and touches the touch sensor with his hand, the touch sensor senses a signal and sends it to the controller 11. After processing, the controller 11 generates a control instruction to send a driving device, and the driving device drives the bending The shielding net 48 in the portion 47 slides out to seal the shoe cavity 44 and prevent the shoe from falling. When it is necessary to remove the shoes to open the shielding net 48, the touch sensor needs to be touched again, and the detected signal is sent to the controller 11, and the processed control command is generated and sent to the driving device, so that the driving device reversely pulls the shielding net 48 Back, the entrance end of the shoe-receiving cavity 44 is exposed, so that it is convenient to take the shoes.

为了使遮挡网48的遮挡效果更佳、更牢固,本实施例中,在置鞋底座41的一端设有限位块49,限位块49上沿转轴5的长度方向设有限位间隙,限位间隙用于遮挡网48的一端插入。In order to make the shielding effect of the shielding net 48 better and firmer, in this embodiment, a stopper 49 is provided at one end of the shoe placing base 41, and a stopper gap is provided along the length direction of the rotation shaft 5 on the stopper 49 to limit the position. The gap is used to insert one end of the shielding net 48.

遮挡网48由弯曲部47内滑出后,活动端插入限位块49的限位间隙中,以提高遮挡网48的稳定性,进而防止过重的鞋子沿遮挡网48和置鞋底座41的连接口处掉出。After the shielding net 48 slides out of the bending portion 47, the movable end is inserted into the limiting gap of the limiting block 49 to improve the stability of the shielding net 48, thereby preventing excessive shoes along the shielding net 48 and the shoe base 41. Dropped out at the connection.

遮挡网48采用网状结构,也可使臭氧释放仪释放的臭氧可以更好地与鞋子接触,提高灭菌和除异味效果。The shielding net 48 adopts a mesh structure, which can also make the ozone released by the ozone releaser better contact with the shoes, and improve the sterilization and deodorizing effect.

为了防止臭氧泄漏,进入室内而造成影响,需要在柜门2打开的一瞬间,停止释放臭氧,因此,本实施例中,在连接件3内设有压力传感器,压力传感器与控制器11连接。In order to prevent ozone from leaking into the room and causing an impact, it is necessary to stop releasing ozone at the moment when the cabinet door 2 is opened. Therefore, in this embodiment, a pressure sensor is provided in the connecting member 3, and the pressure sensor is connected to the controller 11.

当柜门2关闭时,压力传感器检测的数据为稳定值,而当打开柜门2的一瞬间,压力传感器的检测数值发生变化,如果该数值超出预设的阈值时,说明柜门2已打开,压力传感器发送信号至控制器11,经控制器11对该信号进行处理后生成控制指令发送至臭氧释放仪,控制臭氧释放仪停止释放臭氧。当再次关闭柜门2时,压力传感器再次检测到数值,当该数值与预存的阈值相等时,说明当前柜门2处于关闭状态,则 发送信号至控制器11,经控制器11对该信号进行处理后生成控制指令发送至臭氧释放仪,控制臭氧释放仪开始释放臭氧。When the door 2 is closed, the data detected by the pressure sensor is a stable value. When the door 2 is opened, the detection value of the pressure sensor changes. If the value exceeds a preset threshold, the door 2 is opened. The pressure sensor sends a signal to the controller 11. After the controller 11 processes the signal, a control instruction is generated and sent to the ozone release meter, which controls the ozone release meter to stop releasing ozone. When the cabinet door 2 is closed again, the pressure sensor detects the value again. When the value is equal to the pre-stored threshold value, it means that the current cabinet door 2 is closed, then a signal is sent to the controller 11, and the signal is processed by the controller 11 After processing, a control command is generated and sent to the ozone release meter, and the ozone release meter is controlled to start releasing ozone.

由于放置在鞋柜里的鞋子可能是雨天穿的鞋子,比较潮湿,或者为了防止鞋子长时间放置在密闭的空间内而发霉,本实施例中,在柜体1的顶部内侧设有热风循环系统13,热风循环系统13与控制器11连接,热风循环系统13用于提供热风,以对柜体1内的鞋子进行烘干处理。Since the shoes placed in the shoe cabinet may be shoes worn on a rainy day, they are relatively humid, or in order to prevent the shoes from being moldy when placed in a closed space for a long time, in this embodiment, a hot air circulation system is provided inside the top of the cabinet 1 13. The hot air circulation system 13 is connected to the controller 11. The hot air circulation system 13 is used to provide hot air to dry the shoes in the cabinet 1.

该热风循环系统13与臭氧释放仪的工作原理相同,均由控制器11控制其工作,且在打开柜门2的时候关闭,在关闭柜门2的时候开启。The hot air circulation system 13 has the same working principle as the ozone release meter, both of which are controlled by the controller 11 and are closed when the cabinet door 2 is opened and opened when the cabinet door 2 is closed.

当用户夜晚需要出门或回家,而未打开房间的灯时,为了便于拿出鞋子或放置鞋子,在柜体1的顶部内侧设有数个照明灯14,照明灯14均布于柜体1的顶部,照明灯14与控制器11连接。When a user needs to go out or go home at night without turning on the lights in the room, in order to facilitate taking out shoes or placing shoes, a plurality of lighting lamps 14 are provided on the inner side of the top of the cabinet 1, and the lighting lamps 14 are all distributed on the cabinet 1. At the top, the lighting lamp 14 is connected to the controller 11.

照明灯14的开启和关闭由按钮控制,即在控制面板12上设有照明灯开关按钮124,照明灯开关按钮124与控制器11连接,用于控制照明灯14的开启和关闭。The lighting lamp 14 is turned on and off by a button control, that is, a lighting lamp switch button 124 is provided on the control panel 12, and the lighting lamp switch button 124 is connected to the controller 11 for controlling the lighting lamp 14 to be turned on and off.

按下照明灯开关按钮124,通过控制器11控制照明灯14的打开,再次按下照明灯开关按钮,则控制照明灯关闭,方便使用。Pressing the lighting switch button 124 controls the lighting 14 to be turned on by the controller 11, and pressing the lighting switch button again controls the lighting to turn off, which is convenient for use.

由以上技术方案可知,本发明实施例提供的一种智能家居鞋柜,包括:柜体1,与柜门2通过连接件3连接的两个柜门2。柜体1内设置多个通过转轴5固定的置鞋架组件4,置鞋架组件4包括至少两个置鞋架,两个置鞋架对称固定在转轴5上;置鞋架包括置鞋底座41、置鞋顶板42和支撑板43,置鞋顶板42和置鞋底座41之间形成用于放置鞋子的置鞋空腔44,置鞋顶板42和支撑板43通过侧边的连接网46和弯曲部47形成容纳腔45。容纳腔45内设有臭氧释放仪,臭氧释放仪与设置在柜体1顶部内侧的控制器11连接。可见,转轴5上设有对称的多个置鞋架组件4,置鞋架组件4可沿转轴5旋转,以增大鞋柜的空间利用率。同时,由控制器11控制臭氧释放仪开始和停止释放臭氧,以更加灵活的去除柜体1内的细菌和异味;而放置鞋子的置鞋架的部分结构采用网状结构,可以全方位地对置鞋架上的鞋子进行灭菌和除异味处理。因此,本实施例提供的智能家居鞋柜,不仅可提高空间利用率,还可使灭菌、除异味效果更好。It can be known from the above technical solutions that a smart home shoe cabinet provided by an embodiment of the present invention includes: a cabinet body 1 and two cabinet doors 2 connected to the cabinet door 2 through a connecting member 3. A plurality of shoe rack assemblies 4 fixed by the rotating shaft 5 are arranged in the cabinet 1. The shoe rack assembly 4 includes at least two shoe racks. The two shoe racks are symmetrically fixed on the shaft 5. The shoe rack includes a shoe base. 41. A shoe placing plate 42 and a supporting plate 43. A shoe placing cavity 44 for placing shoes is formed between the shoe placing top plate 42 and the shoe placing base 41. The shoe placing top plate 42 and the supporting plate 43 are connected by a side connection net 46 and The bent portion 47 forms a receiving cavity 45. The accommodating cavity 45 is provided with an ozone release meter, and the ozone release meter is connected to the controller 11 provided on the inside of the top of the cabinet 1. It can be seen that the rotating shaft 5 is provided with a plurality of symmetrical shoe rack assembly 4. The shoe rack assembly 4 can be rotated along the rotating shaft 5 to increase the space utilization of the shoe cabinet. At the same time, the controller 11 controls the ozone release meter to start and stop the release of ozone to remove bacteria and odors in the cabinet 1 more flexibly; and part of the structure of the shoe rack for placing shoes adopts a mesh structure, which can comprehensively The shoes on the shoe rack are sterilized and deodorized. Therefore, the smart home shoe cabinet provided by this embodiment can not only improve the space utilization rate, but also make the effect of sterilization and deodorization better.

Claims (8)

一种智能家居鞋柜,包括柜体和两个柜门,每个所述柜门位于柜体的相对两侧,柜门与所述柜体通过连接件铰接,其特征在于,还包括:至少一个置鞋架组件,每个所述置鞋架组件由上至下设置在柜体的内腔中,每个所述置鞋架组件分别通过对应的转轴与柜体的相对两侧内壁连接;每个转轴相互平行;A smart home shoe cabinet includes a cabinet body and two cabinet doors, each of the cabinet doors is located on opposite sides of the cabinet body, and the cabinet door and the cabinet body are hinged through a connecting member, which is further characterized by: A shoe rack assembly, each of which is arranged in the inner cavity of the cabinet from top to bottom, and each said shoe rack assembly is respectively connected to the inner wall of opposite sides of the cabinet through a corresponding rotating shaft; Each rotation axis is parallel to each other; 所述置鞋架组件包括至少两个置鞋架,两个所述置鞋架对称固定在转轴上;所述置鞋架包括置鞋底座、置鞋顶板和支撑板;所述置鞋底座与支撑板相互垂直,所述置鞋顶板位于置鞋底座与支撑板之间,置鞋顶板与支撑板呈角度连接,以使置鞋顶板和置鞋底座之间形成用于放置鞋子的置鞋空腔;The shoe rack assembly includes at least two shoe racks, and the two shoe racks are symmetrically fixed on a rotating shaft; the shoe rack includes a shoe base, a shoe top plate and a support plate; the shoe base and The supporting plates are perpendicular to each other. The shoe placing top plate is located between the shoe placing base and the supporting plate. The shoe placing top plate and the supporting plate are connected at an angle, so that a shoe placing space is formed between the shoe placing top plate and the shoe placing base. Cavity 所述置鞋顶板和支撑板的侧边通过连接网连接,所述置鞋顶板和支撑板的顶端通过弯曲部连接,所述置鞋顶板、支撑板和弯曲部之间形成容纳腔;The side edges of the shoe placing top plate and the supporting plate are connected through a connecting net, the top ends of the shoe placing top plate and the supporting plate are connected through a bent portion, and a receiving cavity is formed between the shoe placing top plate, the supporting plate and the bent portion; 所述柜体的顶部内侧设有与电源连接的控制器,所述容纳腔内设有臭氧释放仪,所述臭氧释放仪与控制器连接,所述臭氧释放仪用于释放臭氧,以去除柜体内的细菌和异味;A controller connected to a power source is provided on the inside of the top of the cabinet, and an ozone release meter is provided in the accommodating chamber. The ozone release meter is connected to the controller. The ozone release meter is used to release ozone to remove the cabinet. Bacteria and odor in the body; 所述柜体的前侧表面设有控制面板,所述控制面板上设有开启按钮、旋转按钮和关闭按钮,所述开启按钮、旋转按钮和关闭按钮分别与控制器连接;A control panel is provided on the front surface of the cabinet, and the control panel is provided with an open button, a rotary button and a close button, and the open button, the rotary button and the close button are respectively connected to the controller; 所述连接件内设有压力传感器,所述压力传感器与控制器连接。A pressure sensor is arranged in the connecting piece, and the pressure sensor is connected to the controller. 根据权利要求1所述的智能家居鞋柜,其特征在于,所述弯曲部的外表面设有触摸传感器,弯曲部内设有遮挡网和驱动装置,所述触摸传感器和驱动装置分别与控制器连接;所述触摸传感器用于将检测到的信号发送至控制器,由控制器控制驱动装置开启,以驱动所述遮挡网由弯曲部内滑出,遮挡网的一端与置鞋底座的一端相接,使置鞋空腔密封。The smart home shoe cabinet according to claim 1, wherein a touch sensor is provided on an outer surface of the curved portion, and a shielding net and a driving device are provided in the curved portion, and the touch sensor and the driving device are respectively connected with a controller. Connection; the touch sensor is used to send the detected signal to the controller, and the controller controls the driving device to open to drive the shielding net to slide out from the bending part, and one end of the shielding net is connected to one end of the shoe base , So that the shoe cavity is sealed. 根据权利要求2所述的智能家居鞋柜,其特征在于,所述置鞋底座的一端设有限位块,所述限位块上沿转轴的长度方向设有限位间隙,所述限位间隙用于遮挡网的一端插入。The smart home shoe cabinet according to claim 2, characterized in that, one end of the shoe placing base is provided with a limiting block, and a limiting gap is provided on the limiting block along the length direction of the rotation axis, and the limiting gap is used for Insert it at one end of the shielding net. 根据权利要求1所述的智能家居鞋柜,其特征在于,所述置鞋架内设有数个隔板,每个所述隔板分别与所述置鞋底座和置鞋顶板固定连接,以将所述置鞋空腔分隔为数个置鞋子空腔。The smart home shoe cabinet according to claim 1, wherein a plurality of partitions are provided in the shoe rack, and each of the partitions is fixedly connected to the shoe base and the shoe top plate, respectively, so that The shoe placement cavity is divided into a plurality of shoe placement cavities. 根据权利要求1所述的智能家居鞋柜,其特征在于,所述柜体的顶部内侧设有热风循环系统,所述热风循环系统与控制器连接,所述热风循环系统用于提供热风,以对柜体内的鞋子进行烘干处理。The smart home shoe cabinet according to claim 1, wherein a hot air circulation system is provided inside the top of the cabinet, the hot air circulation system is connected to a controller, and the hot air circulation system is used to provide hot air to Dry the shoes inside the cabinet. 根据权利要求1所述的智能家居鞋柜,其特征在于,所述柜体的顶部内侧设有数个照明灯,所述照明灯均布于柜体的顶部,所述照明灯与控制器连接。The smart home shoe cabinet according to claim 1, wherein a plurality of lighting lamps are arranged inside the top of the cabinet, the lighting lamps are all distributed on the top of the cabinet, and the lighting lamps are connected to the controller. 根据权利要求6所述的智能家居鞋柜,其特征在于,所述控制面板上设有照明灯开关按钮,所述照明灯开关按钮与控制器连接,用于控制照明灯的开启和关闭。The smart home shoe cabinet according to claim 6, wherein the control panel is provided with a lighting lamp switch button, and the lighting lamp switch button is connected to a controller for controlling the lighting lamp to be turned on and off. 根据权利要求1所述的智能家居鞋柜,其特征在于,所述柜门与柜体的连接处设有密封条,所述密封条用于防止外界空气中的水分和灰尘进入柜体内部。The smart home shoe cabinet according to claim 1, wherein a sealing strip is provided at a connection between the cabinet door and the cabinet body, and the sealing strip is used to prevent moisture and dust in the outside air from entering the cabinet body.
PCT/CN2019/089857 2018-09-30 2019-06-03 Smart home shoe cabinet WO2020062907A1 (en)

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