CN211985338U - Heating shoe cabinet - Google Patents

Heating shoe cabinet Download PDF

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Publication number
CN211985338U
CN211985338U CN202020132599.5U CN202020132599U CN211985338U CN 211985338 U CN211985338 U CN 211985338U CN 202020132599 U CN202020132599 U CN 202020132599U CN 211985338 U CN211985338 U CN 211985338U
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China
Prior art keywords
layer
cabinet
waterproof shell
shoes
plywood
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CN202020132599.5U
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Chinese (zh)
Inventor
吴立刚
叶德林
林晓虹
曾垂彬
孔金波
舒文武
吴立柔
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Guangdong Kangxi Technology Co Ltd
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Guangdong Kangxi Technology Co Ltd
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Priority to CN202020132599.5U priority Critical patent/CN211985338U/en
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Abstract

The utility model relates to a furniture specifically discloses a shoe cabinet generates heat, and the shoe cabinet main part that generates heat includes the cabinet body, and the internal a plurality of plywoods that are equipped with of cabinet constitutes between plywood and the plywood and holds the cavity, and a port that holds the cavity articulates there is cabinet door, its characterized in that: the one end level downward sloping of plywood, the edge of plywood are equipped with and are used for separating the shelves and accomodate the blend stop of dust, the one end of blend stop has the opening, is equipped with a plurality of ventilation holes on the face of plywood. Through the structure setting of graphite alkene layer and fan that generates heat, can the produced heat energy in the layer that generates heat of make full use of graphite alkene to the air intake can direct action in moist shoes, thereby improves the stoving effect to shoes. Can generate heat the produced hot-blast direct action shoes of layer with graphite alkene through detachable shoes support inside, can obviously improve stoving effect and the efficiency in the shoes, wear more comfortable warm after the shoes.

Description

Heating shoe cabinet
Technical Field
The utility model relates to a furniture is a shoe cabinet generates heat particularly.
Background
Common shoe cabinets in the market are generally of a multilayer structure and are generally used for placing various shoes in a classified mode, but the existing shoe cabinets are single in function, particularly in rainy days in cold winter, the surfaces of the shoes worn after being taken out and returned can be soaked with water, and the shoes can be cooled due to water vapor and sweat, so that a wearer feels uncomfortable.
To this end, the prior art discloses "a household multifunctional shoe drying cabinet", and the authorization notice number is: CN 207011955U, this "domestic multi-functional shoe drying cabinet" adopt the mode of electric plate to dry to moist shoes directly, but this mode heating effect is uneven, and easily contacts with the human body, also easily appears leaking the potential safety hazard of electric leakage or short circuit under moist environment.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects and deficiencies in the prior art, the utility model aims to provide a shoe cabinet that generates heat that has convenient and comfortable use, even and stable heating effect and less potential safety hazards.
The utility model provides a technical scheme that its technical problem adopted is:
a heating shoe cabinet comprises a cabinet body, wherein a plurality of laminates are arranged in the cabinet body, a containing cavity is formed between the laminates, a cabinet door is hinged to one port of the containing cavity, one end of each laminate horizontally inclines downwards, a barrier strip used for separating barriers and containing dust is arranged at the edge of each laminate, one end of each barrier strip is provided with an opening, and a plurality of ventilation holes are formed in the surface of each laminate;
the back plate of the cabinet body is provided with an interlayer, a graphene heating layer and a plurality of fans communicated with the ventilation holes are arranged in the interlayer, and the horizontal lower end of the interlayer is provided with an air inlet;
the graphene heating layer comprises a tile layer positioned on the upper layer, a graphene heating chip positioned on the middle layer and a heat-preservation foaming layer positioned on the lower layer;
the graphene heating chip and the fan are both connected with a power supply main line for electrifying, and the power supply main line is connected with a temperature control switch.
Preferably, the heat-insulating foaming layer is a polyurethane heat-insulating foaming plate.
Preferably, a groove body suitable for embedding a power main line is arranged on one side of the tile layer.
Preferably, the ventilation hole is connected with a shoe support with an air opening, and the shoe support is detachably and fixedly connected with the plate surface of the laminate through a buckle structure.
Preferably, the shoe support is in a 7-shaped shape.
Preferably, a quick connector is arranged between the power supply main line and the temperature control switch, the quick connector comprises a plug piece and a socket piece matched with the plug piece, the plug piece comprises a plug piece waterproof shell, an electric connection plug is arranged in the plug piece waterproof shell, a first magnet is arranged on the inner cavity wall of the plug piece waterproof shell, a sealing convex cover and a slot with an arc-shaped warping section are arranged at the end part of the plug piece waterproof shell, and a buckle strip with a hemispherical section is arranged at one end of the sealing convex cover;
preferably, the socket piece comprises a socket piece waterproof shell arranged corresponding to the plug piece waterproof shell, an electric connection slot arranged corresponding to the electric connection plug is arranged in the socket piece waterproof shell, a second magnet with a magnetic pole attracted with the magnetic pole of the first magnet is arranged on the inner cavity wall of the socket piece waterproof shell, and a soft sealing insertion strip arranged corresponding to the slot with the arc-shaped warping section is arranged at the end part of the socket piece waterproof shell; the outer wall of the waterproof shell of the socket piece is provided with a buckling groove corresponding to the buckling strip.
The utility model has the advantages that:
the graphene heating layer comprises a tile layer positioned on the upper layer, a graphene heating chip positioned on the middle layer and a heat-preservation foaming layer positioned on the lower layer. The heat-preservation foaming layer is a polyurethane heat-preservation foaming plate. Wherein the ceramic tile layer on upper strata can be more even absorption and give off the produced heat of graphite alkene chip that generates heat, and have good heat retaining effect, be favorable to the invariant of the effect of generating heat, and ceramic tile layer itself has insulating effect moreover, consequently can finely stop safety problems such as short circuit electric leakage.
The main heat source that generates heat is graphite alkene chip that generates heat, and the reason that the graphite alkene chip that generates heat rapidly after the circular telegram is because its very good electrically conductive, heat conductivility to the produced far infrared of graphite alkene is also very useful to human health, and the graphite alkene layer that generates heat that sets up side by side through a plurality of pieces can be with the even stable heating of state of whole piece, consequently the effect of generating heat is even stable, and the stoving effect is better.
Through the structure setting of graphite alkene layer and fan that generates heat, can the produced heat energy in the layer that generates heat of make full use of graphite alkene to the air intake can direct action in moist shoes, thereby improves the stoving effect to shoes.
Can generate heat the produced hot-blast direct action shoes of layer with graphite alkene through detachable shoes support inside, can obviously improve stoving effect and the efficiency in the shoes, wear more comfortable warm after the shoes.
Drawings
Fig. 1 is a schematic structural view of the cabinet body of the present invention;
FIG. 2 is a schematic structural view in the front view direction of the present invention;
fig. 3 is a schematic view of the internal structure in the side view direction of the present invention;
FIG. 4 is a schematic view of the laminate portion of the present invention;
fig. 5 is a schematic structural diagram of the graphene heating layer of the present invention;
fig. 6 is an enlarged schematic view of a partial structure of the graphene heating layer of the present invention;
fig. 7 is a schematic view of the plug member portion of the present invention;
fig. 8 is a schematic structural view of a socket member portion of the present invention;
fig. 9 is a schematic view of the assembly structure of the quick connector of the present invention.
In the figure: 1. the cabinet body 2, the laminate 3, the accommodating cavity 4, the cabinet door 5, the barrier 6, the opening 7, the vent 8, the interlayer 9, the graphene heating layer 10, the fan 11, the air inlet 12, the tile layer 13, the graphene heating chip 14, the heat preservation foaming layer 15, the power main line 16, the temperature control switch 17, the groove body 18, the shoe holder 19, the quick connector 20, the plug piece 21, the socket piece 22, the plug piece waterproof shell 23, the electric connection plug 24, the first magnet 25, the sealing convex cover 26, the slot 27, the buckle strip 28, the socket piece waterproof shell 29, the electric connection slot 30, the second magnet 31, the soft sealing insert strip 32 and the buckle groove.
Detailed Description
In order to make the technical problem, technical scheme and beneficial effect that the utility model solved more clearly understand, it is right below to combine the attached drawing and embodiment the utility model discloses do further explanation. It should be understood that the embodiments described herein are merely for the purpose of illustrating the invention and are not intended to limit the invention.
As shown in fig. 1-9, the utility model discloses a shoe cabinet generates heat, the main part includes the cabinet body 1, is equipped with a plurality of plywood 2 in the cabinet body 1, constitutes between plywood 2 and the plywood 2 and holds cavity 3, and a port that holds cavity 3 articulates there is cabinet door 4, the horizontal downward sloping of one end of plywood 3, and the edge of plywood 3 is equipped with the blend stop 5 that is used for separating the shelves and accomodates the dust, and the one end of blend stop 5 has opening 6, is equipped with a plurality of ventilation holes 7 on the face of plywood 3.
The one end level downward sloping back of plywood 2 can make things convenient for very convenient accomodate the adnexed dust of sole and vamp, further prevents through 5 structures of blend stop that the dust from spilling at will in the shoe cabinet, maintenance work after facilitating the use.
The backplate of the cabinet body 1 is provided with an interlayer 8, a graphene heating layer 9 and a plurality of fans 10 communicated with the ventilation holes 7 are arranged in the interlayer 8, and an air inlet 11 is arranged at the lower horizontal end of the interlayer 8. The air inlet 11 is arranged at the horizontal lower end of the interlayer 8, so that efficient air inlet work can be realized without influencing the overall appearance of the shoe cabinet.
Through the structure setting of graphite alkene layer 9 and fan 10 that generates heat, can the make full use of graphite alkene generate heat the produced heat energy of layer 9 to air intake 11 can direct action in moist shoes, thereby improves the stoving effect to shoes.
As an embodiment of the structure of the graphene heating layer 9, the graphene heating layer 9 includes a ceramic tile layer 12 located on the upper layer, a graphene heating chip 13 located on the middle layer, and a thermal insulation foaming layer 14 located on the lower layer. The heat-preservation foaming layer 14 is a polyurethane heat-preservation foaming plate. Wherein the ceramic tile layer 12 on upper strata can be more even absorption and give off the produced heat of graphite alkene chip 13 that generates heat, and has good heat storage effect, is favorable to the invariant of the effect of generating heat, and ceramic tile layer 12 itself has insulating effect moreover, consequently can finely stop safety problems such as short circuit electric leakage.
The main heat source that generates heat is graphite alkene chip 13 that generates heat, and the reason that the graphite alkene chip 13 that generates heat rapidly generates heat after the circular telegram is because its very good electrically conductive, heat conductivility to the produced far infrared of graphite alkene is also very useful to human health, and the graphite alkene layer 9 that generates heat that sets up side by side through a plurality of pieces can generate heat with the even stability of state of whole piece, consequently the effect of generating heat is even stable, and it is better to dry the effect, and the maintenance work in later stage is also comparatively convenient.
As an example of the electrical connection, the graphene heating chip 13 and the fan 10 are both connected to a power main line 15 for power supply, and the power main line 15 is connected to a temperature control switch 16.
As a further expanded embodiment of the temperature control switch 16, the temperature control switch 16 may be an intelligent temperature control switch, and the intelligent temperature control switch may be obtained by customization or purchasing, and specifically includes a liquid crystal display function, a power on/off function, a temperature increasing function, a temperature decreasing function, a timing function, an auxiliary setting function, a power output terminal, a thermistor signal input terminal, a power input terminal, an APP and WIFI control of a smart phone, and the like.
For example, the temperature control switch 16 may be an intelligent temperature controller with the model of xsd-11, the input of the temperature controller of xsd-11 is 220v, the output of the temperature controller of xsd-11 is 24v, and the intelligent temperature controller can well correspond to the low-voltage graphene heating chip 8.
The intelligent temperature control switch 16 with the model number of Youjia 8729/20SD is generally used for floor heating, and has an input voltage of 220v and an output voltage of 220 v.
One side of the tile layer 12 is provided with a groove body 17 suitable for pre-burying a power main line. Through the setting of cell body 17, can be very convenient lay wire, can not influence the outward appearance effect moreover, use also is difficult to be touched, therefore safer when using.
The ventilation hole is connected with a shoes support 18 that has the wind gap, and shoes support 18 passes through buckle structure detachable fixed linking to each other with the face of plywood 2, through the detachable structure, can choose shoes support 18 for use in a flexible way according to actual demand, and this shoes support 18 is rifle "7" word form to the inside of more laminating shoes realizes fixed the arrangement.
Can generate heat the produced hot-blast direct action shoes of layer 9 with graphite alkene inside through detachable shoe holder 18, can obviously improve stoving effect and the efficiency in the shoes, wear more comfortable warm after the shoes.
As an embodiment, in order to further facilitate the installation, the user experience and the use safety are improved, the power main line 15 is connected with the quick connector 19, the quick connector 19 includes a plug piece 20 and a socket piece 21 matched with the plug piece 20, the plug piece 20 includes a plug piece waterproof housing 22, an electric connection plug 23 is arranged in the plug piece waterproof housing 22, a first magnet 24 is arranged on the inner cavity wall of the plug piece waterproof housing 22, a sealing convex cover 25 and a slot 26 with an arc-shaped warping-shaped cross section are arranged at the end of the plug piece waterproof housing 22, and a buckle strip 27 with a hemispherical cross section is arranged at one end of the sealing convex cover 25.
The socket piece 21 comprises a socket piece waterproof shell 28 arranged corresponding to the plug piece waterproof shell 22, an electric connection slot 29 arranged corresponding to the electric connection plug 23 is arranged in the socket piece waterproof shell 28, a second magnet 30 with a magnetic pole attracted with the magnetic pole of the first magnet 24 is arranged on the inner cavity wall of the socket piece waterproof shell 28, and a soft sealing insertion strip 31 arranged corresponding to the slot 26 with the arc-shaped warping section is arranged at the end part of the socket piece waterproof shell 28; the outer wall of the waterproof housing 28 of the socket is provided with a fastening slot 32 corresponding to the fastening strip 27.
The use mode of the quick connector 19 adopts a structure that the plug piece 20 and the socket piece 21 are quickly plugged, can realize quick connection, and has good safety and waterproof structural effects.
One end of the sealing convex cover 25 is provided with a buckling strip 27 with a hemispherical cross section and a buckling groove 32 corresponding to the buckling strip 27 on the outer wall of the socket piece waterproof shell 28, the structure of the buckling strip 27 not only can form the protection of the outermost layer after the plugging, but also can firmly buckle the plug piece 20 and the socket piece 21 with the help of the cross section shape, so that a good safe waterproof effect is formed, the service life is prolonged, and electric leakage is avoided.
Through slot 26 and the soft sealed cutting 31 of cooperation slot 26, with the help of arcuation warpage column structure, can further improve waterproof effect, a small amount of infiltration water liquid also can be caught up by arcuation warpage portion mostly, consequently can't continue to permeate to inside hardly, from this, further improve safe waterproof effect, avoid appearing the electric leakage when improving life.
The insertion is conveniently and quickly realized through the attraction of the magnetic poles between the first magnet 24 and the second magnet 30.
The present invention has been described above with reference to the accompanying drawings, and it is obvious that the present invention is not limited by the above-mentioned manner, and various insubstantial improvements can be made without modification to the method and technical solution of the present invention, or the present invention can be directly applied to other occasions without modification, all within the protection scope of the present invention.

Claims (6)

1. The utility model provides a shoe cabinet generates heat, includes the cabinet body, the internal a plurality of plywoods that are equipped with of cabinet constitutes between plywood and the plywood and holds the cavity, and a port that holds the cavity articulates there is cabinet door, its characterized in that:
one end of the laminate horizontally inclines downwards, a barrier strip used for separating barriers and containing dust is arranged at the edge of the laminate, one end of the barrier strip is provided with an opening, and a plurality of vent holes are formed in the surface of the laminate;
the back plate of the cabinet body is provided with an interlayer, a graphene heating layer and a plurality of fans communicated with the ventilation holes are arranged in the interlayer, and the horizontal lower end of the interlayer is provided with an air inlet;
the graphene heating layer comprises a tile layer positioned on the upper layer, a graphene heating chip positioned on the middle layer and a heat-preservation foaming layer positioned on the lower layer;
the graphene heating chip and the fan are both connected with a power supply main line for electrifying, and the power supply main line is connected with a temperature control switch.
2. The heating shoe cabinet as claimed in claim 1, wherein: the heat-insulating foaming layer is a polyurethane heat-insulating foaming plate.
3. The heating shoe cabinet as claimed in claim 1, wherein: and a groove body suitable for embedding a power main line is arranged on one side of the tile layer.
4. The heating shoe cabinet as claimed in claim 1, wherein: the ventilation hole is connected with a shoe support with an air opening, and the shoe support is detachably and fixedly connected with the plate surface of the laminate through a buckle structure.
5. The heating shoe cabinet as claimed in claim 4, wherein: the shoe support is in a 7-shaped shape like a gun.
6. A heating shoe chest as claimed in any one of claims 1 to 3 wherein: a quick connector is arranged between the power supply main line and the temperature control switch, the quick connector comprises a plug piece and a socket piece matched with the plug piece, the plug piece comprises a plug piece waterproof shell, an electric connection plug is arranged in the plug piece waterproof shell, a first magnet is arranged on the inner cavity wall of the plug piece waterproof shell, a sealing convex cover and a slot with an arc-shaped warping section are arranged at the end part of the plug piece waterproof shell, and a buckle strip with a hemispherical section is arranged at one end of the sealing convex cover;
the socket piece comprises a socket piece waterproof shell which is arranged corresponding to the plug piece waterproof shell, an electric connection slot which is arranged corresponding to the electric connection plug is arranged in the socket piece waterproof shell, a second magnet with a magnetic pole which is attracted with the magnetic pole of the first magnet is arranged on the inner cavity wall of the socket piece waterproof shell, and a soft sealing insertion strip which is arranged corresponding to the slot with the arc-shaped warping section is arranged at the end part of the socket piece waterproof shell; the outer wall of the waterproof shell of the socket piece is provided with a buckling groove corresponding to the buckling strip.
CN202020132599.5U 2020-01-19 2020-01-19 Heating shoe cabinet Active CN211985338U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020132599.5U CN211985338U (en) 2020-01-19 2020-01-19 Heating shoe cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020132599.5U CN211985338U (en) 2020-01-19 2020-01-19 Heating shoe cabinet

Publications (1)

Publication Number Publication Date
CN211985338U true CN211985338U (en) 2020-11-24

Family

ID=73420857

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020132599.5U Active CN211985338U (en) 2020-01-19 2020-01-19 Heating shoe cabinet

Country Status (1)

Country Link
CN (1) CN211985338U (en)

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