CN215125714U - Function-partitioned intelligent shoe cabinet - Google Patents

Function-partitioned intelligent shoe cabinet Download PDF

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Publication number
CN215125714U
CN215125714U CN202120840254.XU CN202120840254U CN215125714U CN 215125714 U CN215125714 U CN 215125714U CN 202120840254 U CN202120840254 U CN 202120840254U CN 215125714 U CN215125714 U CN 215125714U
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module
stepping motor
sterilization
deodorization
box
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CN202120840254.XU
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Chinese (zh)
Inventor
凌华坚
孙艺瑕
征正
何伟
谭俊
王佳焱
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Shanghai University of Engineering Science
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Shanghai University of Engineering Science
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Abstract

The utility model discloses a functional-zoning intelligent shoe cabinet, which comprises a sterilization and deodorization module, a drying module and a control module, wherein the drying module is positioned in a box body of the sterilization and deodorization module, and the control module is positioned on the side wall of the box body; the sterilization and deodorization module comprises a first stepping motor, an external gear, an internal gear, a shoe box, an ultraviolet lamp and titanium dioxide sponge, wherein the first stepping motor drives the external gear and the internal gear to be meshed with each other to rotate and move the shoe box, and the ultraviolet lamp catalyzes the titanium dioxide sponge to perform reaction for sterilization and deodorization; the control module takes a single chip microcomputer as a control main body to control signal input or output; the drying module comprises a heat insulation plate, a heater, a lifting platform and an electric push rod, the lifting of the shoe box is adjusted through the lifting platform and the electric push rod, and the heater controls a signal to dry the shoe box through the control module. The utility model discloses can dry and disinfect shoes deodorization subregion and go on, not only improve work efficiency, strengthen the universality.

Description

Function-partitioned intelligent shoe cabinet
Technical Field
The utility model relates to a functional partitioning intelligent shoe cabinet belongs to mechanical automation technical field.
Background
Along with the continuous improvement of the requirements of people on the quality of life, the intelligent shoe cabinet gradually enters a family to replace the traditional wooden shoe cabinet, and the intelligent shoe cabinet on the market has the functions of deodorization, sterilization and drying, but cannot realize automatic regional operation aiming at different functions. In addition, the intelligent shoe cabinet on the market mostly adopts ozone sterilization, and ozone sterilization generates potential dangers such as stimulation to eyes and respiratory tracts and influence on lung function to human bodies, and the price is generally higher.
SUMMERY OF THE UTILITY MODEL
For solving the problem that the current intelligent shoe cabinet can't realize automatic, subregion operation and use the potential danger that ozone sterilization produced to the human body to different functions, the utility model provides a function zoning intelligence shoe cabinet improves as follows based on the intelligent shoe cabinet of selling: (1) the drying area and the deodorization and sterilization area are separated to realize the intelligent execution of functions, so that the efficiency of the intelligent shoe cabinet is improved; (2) photocatalytic titanium dioxide is used for replacing ozone for disinfection, so that the environmental pollution is reduced, and meanwhile, the sterilization and deodorization are safe; (3) realize that the intelligence gets the shoes function, only need through the panel operation alright take out appointed shoes.
The utility model provides a technical scheme that its technical problem adopted is:
a functional partitioned intelligent shoe cabinet comprises a sterilization and deodorization module, a drying module and a control module, wherein the drying module is positioned in a box body of the sterilization and deodorization module, and the control module is positioned on the side wall of the box body; wherein:
the sterilization and deodorization module comprises a first stepping motor, an external gear, an internal gear, a shoe box, an ultraviolet lamp and titanium dioxide sponge, wherein the external gear is connected with the first stepping motor through a second transmission rod and a first coupler, and the internal gear is connected with a first transmission rod fixed above the box body and is internally meshed with the external gear; the shoe box is adsorbed below the inner gear through an electromagnetic chuck, and the outer gear and the inner gear are driven to rotate in a meshed mode under the driving action of the first stepping motor to adjust the movement of the shoe box; the ultraviolet lamp is positioned below the electromagnetic chuck and connected with the first transmission rod, and can catalyze the titanium dioxide sponge positioned at the bottom of the box body to react for sterilization and deodorization;
the control module takes a single chip microcomputer as a control main body to control signal input or output, and further comprises a panel and a humidity sensor which are positioned on the side wall of the box body;
the drying module comprises a heat insulation plate, a heater, a lifting platform and an electric push rod, the heater, the lifting platform and the electric push rod are arranged in the heat insulation plate, the lifting platform and the electric push rod are linked to adjust the shoe box to lift, and the heater is used for drying the shoe box through a control signal of the control module; the door, the sliding pair, the second stepping motor, the screw rod and the guide rail are positioned above the heat insulation plate, the second stepping motor is connected with the screw rod, the sliding pair is fixedly connected with the door, the guide rail is matched with the screw rod, and the sliding pair is pushed or pulled back under the driving action of the second stepping motor to control the opening and closing of the door.
Furthermore, a patch is arranged on the shoe box, and the electromagnetic chuck is electromagnetically adsorbed below the shoe box.
Further, the first stepping motor is fixed to the top of the box body through a first connecting piece and a stepping motor frame.
Furthermore, the sliding pair is fixedly connected with the door through a second connecting piece.
Further, the screw rod is connected with the second stepping motor through a second coupler.
Compared with the prior art, the beneficial effects of the utility model are that:
(1) the utility model discloses a first step motor rotates and drives and impel (or pull back) behind external gear and the internal gear meshing motion and the second step motor received signal and remove vice, makes the door motion of being connected with the removal pair simultaneously, and electric putter is concertina movement and drives the shoes box and remove, and the position of accurate control shoes motion realizes the transportation function of shoes. Meanwhile, the heater receives the signal and then heats the signal to realize the drying function of the shoes; the ultraviolet lamp receives signals to realize the sterilization and deodorization functions.
(2) The single chip microcomputer is adopted to realize the functions of processing data and controlling the stepping motor, the efficiency maximization and the automation of the electromechanical integration are realized, the labor intensity and the cost are reduced, the time is saved, and the system is suitable for families.
(3) The utility model discloses simple structure divides the automatic stoving of regional realization shoes and the deodorization function that disinfects, improves work efficiency, strengthens the universality.
The conception, the specific structure and the technical effects of the present invention will be further described with reference to the accompanying drawings, so as to fully understand the objects, the features and the effects of the present invention.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this application, illustrate embodiments of the invention and, together with the description, serve to explain the invention without limitation. It is obvious that the drawings in the following description are only some embodiments, and that for a person skilled in the art, other drawings can be derived from them without inventive effort. In the drawings:
fig. 1 is a schematic structural diagram of a functional partitioned intelligent shoe cabinet according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of an embodiment of the sterilization and deodorization module;
FIG. 3 is a schematic diagram of an embodiment of a drying module;
the reference numbers are as follows: 1-a sterilization and deodorization module, 2-a drying module, 3-a control module, 4-a first transmission rod, 5-a panel, 6-an electromagnetic chuck, 7-a humidity sensor, 8-a shoe box, 9-an ultraviolet lamp, 10-a first connecting piece, 11-a first stepping motor, 12-a stepping motor frame, 13-a coupler, 14-a second transmission rod and 15-an external gear, 16-internal gear, 17-iron sheet, 18-titanium dioxide sponge, 19-box, 20-door, 21-heater, 22-heat insulation board, 23-second step motor, 24-second coupling, 25-second connecting piece, 26-moving pair, 27-screw rod, 28-guide rail, 29-lifting platform and 30-electric push rod.
Detailed Description
The technical solution of the present invention will be further described with reference to the following specific examples and accompanying drawings. It should be understood that the specific examples described below are for the purpose of illustrating the text invention only and are not intended to limit the invention. The described embodiments are only some of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained without creative work by those skilled in the art are within the scope of the present invention based on the embodiments of the present invention.
The utility model discloses a functional-zoning intelligent shoe cabinet, which comprises a sterilization and deodorization module 1, a drying module 2 and a control module 3, wherein the drying module 2 is positioned in a box body 19 of the sterilization and deodorization module 1, and the control module 3 is positioned on the side wall of the box body 19; wherein:
the sterilization and deodorization module 1 comprises a first stepping motor 11, an external gear 15, an internal gear 16, a shoe box 8, an ultraviolet lamp 9 and titanium dioxide sponge 18, wherein the external gear 15 is connected with the first stepping motor 11 through a second transmission rod 14 and a first coupler 13, and the internal gear 16 is connected with a first transmission rod 4 fixed above a box body 19 and internally meshed with the external gear 15; the shoe box 8 is adsorbed below the inner gear 16 through the electromagnetic chuck 6 and can move to a proper position along with the meshing rotation of the outer gear 15 and the inner gear 16 under the action of the first stepping motor 11; the ultraviolet lamp 9 is connected with the first transmission rod 4 and is positioned below the electromagnetic chuck 6, and the titanium dioxide sponge 18 positioned at the bottom of the box body 19 can be catalyzed by the control module 3 to perform catalytic reaction sterilization and deodorization;
the control module 2 takes a single chip microcomputer as a control main body to control signal input or output, and also comprises a panel 5 and a humidity sensor 7 which are positioned on the side wall of the box body 19;
the drying module 3 comprises a heat insulation plate 22 and a heater 21, a lifting platform 29 and an electric push rod 30 which are arranged in the heat insulation plate, the lifting platform 29 and the electric push rod 30 are linked to adjust the lifting height of the shoe box 8, and the heater 21 controls signal input or output to dry the shoe box 8 through the control module 2; the door comprises a door 20 positioned above a heat insulation plate 22, a sliding pair 26, a second stepping motor 23, a screw rod 27 and a guide rail 28, wherein the second stepping motor 23 is connected with the screw rod 27, the sliding pair 26 is fixedly connected with the door 20, the guide rail 28 is matched with the screw rod 27, and the opening and closing of the door 20 can be controlled by pushing or pulling the sliding pair 26 through the second stepping motor 23.
In one embodiment, the shoe box 8 can be electromagnetically attracted to the lower side of the shoe box by arranging the patch 17 and the electromagnetic chuck 6.
In one embodiment, the first stepping motor 11 may be fixed to the top of the case 19 by the first connecting member 10 and the stepping motor frame 12.
In one embodiment, the sliding pair 26 may be fixedly connected to the door 20 by the second connecting member 25.
In one embodiment, the lead screw 27 may be connected to the second stepping motor 23 through the second coupling 24.
As exemplarily described in fig. 1 to 3, a functional compartmentalized intelligent shoe cabinet comprises a sterilizing and deodorizing module 1, a control module 2, and a drying module 3, wherein:
the sterilization and deodorization module 1 comprises a first transmission rod 4, a second transmission rod 14, a panel 5, an electromagnetic chuck 6, a humidity sensor 7, a shoe box 8, an ultraviolet lamp 9, a first connecting piece 10, a first stepping motor 11, a stepping motor frame 12, a first coupler 13, an outer gear 15, an inner gear 16, an iron sheet 17, titanium dioxide sponge 18 and a box body 19. The inner gear 16 is connected with the first transmission rod 4, the outer gear 15 is connected with the first stepping motor 11 through the second transmission rod 14 and the first coupler 13, and the inner gear 16 is internally meshed with the outer gear 15, so that the transportation function of the shoes is realized; the electromagnetic chuck 6 is connected with the shoe box 8 through an iron sheet 17 to realize the sucking and releasing functions of the shoe box; the ultraviolet lamp 9 catalyzes the titanium dioxide sponge 18 to perform catalytic reaction by receiving signals, so as to realize the sterilization and deodorization functions;
the drying module 3 comprises a door 20, a heater 21, a heat insulation board 22, a second stepping motor 23, a second coupling 24, a second connecting piece 25, a moving pair 26, a screw rod 27, a guide rail 28, a lifting platform 29 and an electric push rod 30. The door 20 is fixedly connected with a sliding pair 26 through a second connecting piece 25, the sliding pair 26 is matched with a screw rod 27 on a guide rail 28, the screw rod 27 is connected with a second stepping motor 23 through a second coupler 24, and the second stepping motor 23 pushes or pulls back the sliding pair 26 after receiving signals and simultaneously moves the door 20 connected with the sliding pair 26; the heater 21, the lifting platform 29 and the electric push rod 30 are arranged in the heat insulation plate 22, and the lifting platform 29 is connected with the electric push rod 30 to realize the lifting function of the shoe box; the heater 21 receives a signal to start working, so that the function of drying shoes is realized;
control module 2 adopts the singlechip as the control main part, and shoes are arranged in shoes box 8 and are monitored shoes humidity through humidity transducer 7, to the different signals of panel 5 input, realize the automatic stoving function of shoes to reach categorised stoving effect.
When the functional partitioned intelligent shoe cabinet works, the ultraviolet lamp 9 receives a signal to start working, and the titanium dioxide sponge 18 is catalyzed to react to realize the sterilization and deodorization functions; the first stepping motor 11 rotates and drives the inner gear 16 and the outer gear 15 to move, so that the transportation function of the shoe is realized; the electromagnetic chuck 6 receives the signal processed by the humidity sensor 7 to control the shoe box to be sucked and released; the second stepping motor 23 pushes the door 20 to move after receiving the signal, the electric push rod 30 pushes the lifting platform 29 to move after receiving the signal, and the heater 21 starts to work after receiving the signal, so that the classification drying function is realized.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. It will be readily apparent to those skilled in the art that various modifications to these embodiments and the generic principles defined herein may be applied to other embodiments without the use of the inventive faculty. Therefore, the present invention is not limited to the above-described embodiments. Those skilled in the art should appreciate that, in view of the principles of the present invention, modifications and variations may be made without departing from the scope of the invention.

Claims (5)

1. A functional zoning intelligent shoe cabinet is characterized by comprising:
the drying device comprises a sterilization and deodorization module, a drying module and a control module, wherein the drying module is positioned in a box body of the sterilization and deodorization module, and the control module is positioned on the side wall of the box body; wherein:
the sterilization and deodorization module comprises a first stepping motor, an external gear, an internal gear, a shoe box, an ultraviolet lamp and titanium dioxide sponge, wherein the external gear is connected with the first stepping motor through a second transmission rod and a first coupler, and the internal gear is connected with a first transmission rod fixed above the box body and is internally meshed with the external gear; the shoe box is adsorbed below the inner gear through an electromagnetic chuck, and the outer gear and the inner gear are driven to rotate in a meshed mode under the driving action of the first stepping motor to adjust the movement of the shoe box; the ultraviolet lamp is positioned below the electromagnetic chuck and connected with the first transmission rod, and can catalyze the titanium dioxide sponge positioned at the bottom of the box body to react for sterilization and deodorization;
the control module takes a single chip microcomputer as a control main body to control signal input or output, and further comprises a panel and a humidity sensor which are positioned on the side wall of the box body;
the drying module comprises a heat insulation plate, a heater, a lifting platform and an electric push rod, the heater, the lifting platform and the electric push rod are arranged in the heat insulation plate, the lifting platform and the electric push rod are linked to adjust the shoe box to lift, and the heater is used for drying the shoe box through a control signal of the control module; the door, the sliding pair, the second stepping motor, the screw rod and the guide rail are positioned above the heat insulation plate, the second stepping motor is connected with the screw rod, the sliding pair is fixedly connected with the door, the guide rail is matched with the screw rod, and the sliding pair is pushed or pulled back under the driving action of the second stepping motor to control the opening and closing of the door.
2. The functionally-partitioned intelligent shoe cabinet according to claim 1, wherein a patch is disposed on the shoe box and the electromagnetic chuck is electromagnetically adsorbed below the shoe box.
3. The functionally compartmentalized intelligent shoe chest as recited in claim 1 wherein said first stepper motor is secured to the top of said chest by a first connector and stepper motor bracket.
4. The functionally compartmentalized intelligent shoe chest as recited in claim 1 wherein said sliding pair is fixedly attached to said door by a second attachment.
5. The functionally compartmentalized intelligent shoe chest as recited in claim 1, wherein said lead screw is connected to said second stepping motor through a second coupling.
CN202120840254.XU 2021-04-22 2021-04-22 Function-partitioned intelligent shoe cabinet Active CN215125714U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120840254.XU CN215125714U (en) 2021-04-22 2021-04-22 Function-partitioned intelligent shoe cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120840254.XU CN215125714U (en) 2021-04-22 2021-04-22 Function-partitioned intelligent shoe cabinet

Publications (1)

Publication Number Publication Date
CN215125714U true CN215125714U (en) 2021-12-14

Family

ID=79362199

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120840254.XU Active CN215125714U (en) 2021-04-22 2021-04-22 Function-partitioned intelligent shoe cabinet

Country Status (1)

Country Link
CN (1) CN215125714U (en)

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