Washing and drying integrated shoe cabinet
By designing a washer-dryer integrated shoe cabinet, which combines multiple electric roller brushes and hot air blowers, the problem of smart shoe cabinets lacking automatic shoe washing and long drying times has been solved, achieving automated cleaning and rapid drying, and improving the user experience.
Patent Information
- Application Number
- CN202520072153.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2035-01-13
AI Technical Summary
Existing smart shoe cabinets lack automatic shoe washing functions, making manual shoe washing time-consuming and laborious, and requiring a long drying time after washing, which can easily lead to mold growth on the shoes.
Design a shoe cabinet that combines washing and drying, using a combination of multiple electric roller brushes to thoroughly clean shoes, combined with rubber hollow tubes and brush bristles to clean the interior, and using a hot air blower to accelerate drying, thus achieving automated washing and drying.
It enables automated cleaning and rapid drying of shoes, reduces user steps, improves convenience, and prevents shoes from becoming moldy in damp environments.
Smart Images

Figure CN223515956U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to shoe cabinet technical field especially relates to a washes and dries integrated shoe cabinet. BACKGROUND
[0002] With the in-depth popularization of the intelligent home concept and the continuous upgrading of consumer's pursuit of life quality, the traditional shoe cabinet design has been far from meeting the actual needs of modern families, the traditional shoe cabinet mainly concentrates on the basic storage function, ignores a series of problems that may be caused in the shoe storage process, such as peculiar smell, mold growth and bacteria breeding, these problems not only affect the wearing experience, and even may endanger human health.
[0003] Although there are some intelligent shoe cabinet products on the market, these products improve the convenience of shoe storage and ventilation and dehumidification performance to a certain extent, but still insufficient in meeting the deeper needs of consumers, for example, most of the existing intelligent shoe cabinets lack automatic shoe washing function, users still need to wash shoes by hand, this process is not only time-consuming and laborious, and it is difficult to completely remove the dirt and bacteria inside the shoes, even after washing, shoes also need a long time to dry naturally, this not only increases the waiting time, but also may cause shoes to mildew and deteriorate due to long-term stay in a humid environment. SUMMARY
[0004] Therefore, the utility model provides a washes and dries integrated shoe cabinet, which can solve the problem that the existing intelligent shoe cabinet lacks automatic shoe washing function, leading to manual shoe washing not only time-consuming and laborious, but also manual cleaning is not clean, and after cleaning, a lot of time is needed to wait for the shoes to dry, which may cause the shoes to mildew.
[0005] The utility model discloses a technical scheme for a washing and drying integrated shoe cabinet, which comprises a fixed frame, a cabinet body and a control panel. The cabinet body is arranged on the top of the fixed frame, and the control panel is installed on the top of the cabinet body. A shielding cover is rotatably arranged on the cabinet body. A supporting mechanism for supporting shoes is arranged in the cabinet body. A fixing mechanism for fixing shoes is arranged on the supporting mechanism. A first electric roller brush for cleaning the bottom surface of the shoes is rotatably arranged in the cabinet body at intervals. A second electric roller brush and a third electric roller brush are rotatably arranged in the cabinet body at intervals. An installation plate is connected in the cabinet body. A fourth electric roller brush is rotatably arranged on the installation plate. The second electric roller brush, the third electric roller brush and the fourth electric roller brush are used for cleaning the side surface of the shoes. A fifth electric roller brush for cleaning the top surface of the shoes is rotatably arranged in the cabinet body at intervals. A moving mechanism is arranged in the cabinet body. Two rubber hollow tubes are connected to the moving mechanism. The moving mechanism is used for driving the rubber hollow tubes to extend into the inside of the shoes. Through holes are arranged on the rubber hollow tubes at intervals. Brush hairs for cleaning the inside of the shoes are connected to the outside of the rubber hollow tubes at intervals. A liquid injection mechanism and a drying mechanism are arranged on the inside of the fixed frame. The liquid injection mechanism is used for injecting cleaning liquid into the cabinet body. The drying mechanism is used for drying the shoes.
[0006] As a preferred technical scheme of the utility model, the supporting mechanism comprises a first electric push rod, a supporting bracket, a supporting block, a spring and a positioning plate. The first electric push rod is arranged at the bottom of the cabinet body and located in the fixed frame. The supporting bracket is connected to the telescopic rod of the first electric push rod. The supporting blocks are symmetrically and slidably arranged on the inside of the cabinet body. The spring is connected between the supporting blocks and the inside of the cabinet body. The positioning plate is installed on the top of the supporting block away from the shielding cover.
[0007] As a preferred technical scheme of the utility model, the fixing mechanism comprises a double-shaft motor, a bidirectional screw rod, a clamping plate and a sponge block. The double-shaft motor is installed on the inside of the supporting bracket. The bidirectional screw rods are connected to the output shafts on both sides of the double-shaft motor. Two groups of clamping plates are symmetrically and slidably arranged on the supporting bracket. The number of clamping plates in one group is two. The two groups of clamping plates are threadedly connected to the bidirectional screw rods. The clamping plates are used for fixing the shoes. The sponge blocks are connected to the clamping plates.
[0008] As a preferred technical scheme of the utility model, the moving mechanism comprises a second electric push rod, a third electric push rod, a connecting frame and a speed reducer. The second electric push rod is installed in the cabinet body. The third electric push rod is connected to the telescopic rod of the second electric push rod. The connecting frame is connected to the telescopic rod of the third electric push rod. The speed reducers are symmetrically arranged on the connecting frame. The output shafts of the two speed reducers are connected to the two rubber hollow tubes.
[0009] As a preferred technical scheme of the utility model, the liquid injection mechanism comprises a water tank, a feeding frame, a water pump, an electric three-way regulating valve, a water pipe, a sleeve pipe and a connecting pipe, the water tank is installed in the fixed frame, the feeding frame is slidably installed on the water tank, the water pump is installed on the side surface of the water tank, the water inlet of the water pump is communicated with the water tank, the electric three-way regulating valve is installed in the cabinet body, three ports are arranged on the electric three-way regulating valve, one of the ports is communicated with the water outlet of the water pump through the water pipe, the sleeve pipe is rotatably communicated on the rubber hollow pipe, and the sleeve pipe is communicated with one of the ports of the electric three-way regulating valve through the connecting pipe.
[0010] As a preferred technical scheme of the utility model, the drying mechanism comprises a hot air blower and an air pipe, the hot air blower is installed at the bottom of the cabinet body, the hot air blower is located on the inner side of the fixed frame, and the air outlet of the hot air blower is communicated with one of the ports of the electric three-way regulating valve through the air pipe.
[0011] As a preferred technical scheme of the utility model, the stirring mechanism further comprises a servo motor and a stirrer, the servo motor is installed on the inner side of the water tank, and the output shaft of the servo motor is connected with the stirrer used for stirring the cleaning liquid.
[0012] Beneficial effects: 1, the utility model discloses a plurality of electric rolling brush combination design, can be fully cleaned from different angles to shoes, especially the design of rubber hollow pipe and bristle, can clean the inside of shoes, effectively remove the dirt and bacteria inside, and the whole cleaning process is completely automated, reduces the operation steps of user, improves the convenience.
[0013] 2, the utility model utilizes the hot air generated by the hot air blower and is evenly distributed to the inside and outside of shoes through the special rubber hollow pipe, accelerates the evaporation of moisture, shortens the drying time of shoes, and effectively prevents the shoes from mildewing in a humid environment. DRAWINGS
[0014] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.
[0015] Figure 2 It is the three-dimensional structure schematic diagram of the utility model support mechanism.
[0016] Figure 3 It is the three-dimensional structure schematic diagram of the utility model support mechanism and fixed mechanism.
[0017] Figure 4 It is the three-dimensional structure schematic diagram of the utility model first electric rolling brush, second electric rolling brush and third electric rolling brush.
[0018] Figure 5 It is the three-dimensional structure schematic diagram of the utility model mounting plate, fourth electric rolling brush and fifth electric rolling brush.
[0019] Figure 6 It is the three-dimensional structure schematic view of the second electric push rod, rubber hollow pipe and brush hair of the utility model.
[0020] Figure 7 It is the three-dimensional structure schematic view of the moving mechanism of the utility model.
[0021] Figure 8 It is the three-dimensional structure schematic view of the water pump, electric three-way regulating valve and water pipe of the utility model.
[0022] Figure 9 It is the first perspective three-dimensional structure schematic view of the liquid injection mechanism and drying mechanism of the utility model.
[0023] Figure 10 It is the second perspective three-dimensional structure schematic view of the liquid injection mechanism and drying mechanism of the utility model.
[0024] Wherein: 1 - fixed frame, 101 - shoes, 2 - cabinet, 3 - control panel, 4 - isolation cover, 501 - first electric push rod, 502 - support frame, 503 - support block, 504 - spring, 505 - positioning plate, 601 - double-shaft motor, 602 - bidirectional screw rod, 603 - clamping plate, 604 - sponge block, 7 - first electric rolling brush, 8 - second electric rolling brush, 9 - third electric rolling brush, 1001 - mounting plate, 1002 - fourth electric rolling brush, 11 - fifth electric rolling brush, 1201 - second electric push rod, 1202 - third electric push rod, 1203 - connecting frame, 1204 - speed reducer motor, 13 - rubber hollow pipe, 1301 - through hole, 14 - brush hair, 1501 - water tank, 1502 - feeding frame, 1503 - water pump, 1504 - electric three-way regulating valve, 1505 - water pipe, 1506 - sleeve pipe, 1507 - connecting pipe, 1601 - air heater, 1602 - air pipe, 17 - servo motor, 18 - stirrer. DETAILED DESCRIPTION
[0025] The utility model is described in detail below in combination with the drawings and specific embodiments, but not as the limitation of the utility model.
[0026] Embodiment: a washing and drying integrated shoe cabinet, referring to Figures 1-10As shown, including the fixed frame 1, cabinet 2 and control panel 3; fixed frame 1 top is provided with cabinet 2, the front side of cabinet 2 lower right is provided with drain valve; the top of cabinet 2 is installed with control panel 3; also includes isolation cover 4, first electric brush 7, second electric brush 8, third electric brush 9, mounting plate 1001, fourth electric brush 1002, fifth electric brush 11, rubber hollow tube 13, brush 14, support mechanism, fixing mechanism, moving mechanism, liquid injection mechanism and drying mechanism; cabinet 2 left upper side is rotatably installed with isolation cover 4; cabinet 2 is provided with support mechanism for supporting shoes 101; the support mechanism is provided with fixing mechanism for fixing shoes 101; five first electric brushes 7 for cleaning the bottom surface of shoes 101 are rotatably installed in the lower side of cabinet 2; two second electric brushes 8 are rotatably installed in the lower right side of cabinet 2; third electric brush 9 is rotatably arranged on the front and back sides of the lower side of cabinet 2; the left and right sides of the upper side of cabinet 2 are connected with mounting plate 1001; fourth electric brush 1002 is rotatably installed on the lower side of mounting plate 1001; second electric brush 8, third electric brush 9 and fourth electric brush 1002 are used for cleaning the side of shoes 101; two fifth electric brushes 11 for cleaning the top surface of shoes 101 are rotatably installed in the lower left side of cabinet 2; first electric brush 7, second electric brush 8, third electric brush 9, fourth electric brush 1002 and fifth electric brush 11 are electrically connected with control panel 3; moving mechanism is provided in cabinet 2, moving mechanism is connected with two rubber hollow tubes 13, the lower end of two rubber hollow tubes 13 has a left inclined arc, moving mechanism is used for driving rubber hollow tube 13 to extend into the inside of shoes 101, rubber hollow tube 13 is provided with through hole 1301 at intervals; rubber hollow tube 13 is connected with brush 14 for cleaning the inside of shoes 101 at intervals; liquid injection mechanism and drying mechanism are provided in the inside of fixed frame 1, liquid injection mechanism is used for injecting cleaning liquid into cabinet 2, and drying mechanism is used for drying shoes 101.
[0027] Referring to Figures 2-4 As shown, the support mechanism includes first electric push rod 501, support bracket 502, support block 503, spring 504 and positioning plate 505; the right side of the bottom of cabinet 2 is provided with first electric push rod 501, first electric push rod 501 is located in fixed frame 1, first electric push rod 501 is electrically connected with control panel 3; the telescopic rod of first electric push rod 501 is connected with support bracket 502, support bracket 502 is used for supporting shoes 101; support block 503 is symmetrically and slidably arranged on the upper side of cabinet 2, the number of support block 503 is four, one side of four support blocks 503 close to each other is arc surface; the side of four support blocks 503 away from each other and the inside of cabinet 2 are connected with spring 504; the top of two support blocks 503 on the right side is installed with positioning plate 505.
[0028] Referring toFigure 3 And Figure 4 As shown in the fixed mechanism includes a double-shaft motor 601, two-way screw rod 602, clamping plate 603 and sponge block 604; inside the support frame 502 is provided with a double-shaft motor 601, double-shaft motor 601 is waterproof motor, double-shaft motor 601 and control panel 3 electrically connected; the output shaft of the double-shaft motor 601 on both sides is connected with two-way screw rod 602; two sets of clamping plate 603 are symmetrically arranged on the support frame 502, and the number of one set of clamping plate 603 is two, and the two clamping plates 603 in each group are distributed in front and back, and the two sets of clamping plate 603 are respectively screwed with two two-way screw rods 602, and the clamping plate 603 is used for fixing the shoes 101; the clamping plate 603 is connected with the sponge block 604, and the shoes 101 are clamped by the sponge block 604 through the clamping plate 603, which can prevent the clamping plate 603 from scratching the surface of the shoes 101.
[0029] Referring to Figure 6 And Figure 6 Figure 7 As shown in the moving mechanism includes a second electric push rod 1201, a third electric push rod 1202, a connecting frame 1203 and a speed reducer 1204; the second electric push rod 1201 is installed on the left side of the top of the cabinet 2, and the second electric push rod 1201 is electrically connected with the control panel 3; the third electric push rod 1202 is connected with the telescopic rod of the second electric push rod 1201, and the third electric push rod 1202 is electrically connected with the control panel 3; the connecting frame 1203 is connected with the telescopic rod of the third electric push rod 1202; two speed reducers 1204 are symmetrically connected with the connecting frame 1203, and the speed reducer 1204 is electrically connected with the control panel 3; the output shaft of the two speed reducers 1204 is respectively connected with the top end of the two rubber hollow tubes 13.
[0030] Referring to Figure 6 , Figure 8 , Figure 9 And Figure 10As shown in the figure, the liquid injection mechanism includes a water tank 1501, a feeding frame 1502, a water pump 1503, an electric three-way regulating valve 1504, a water pipe 1505, a sleeve pipe 1506 and a connecting pipe 1507; the water tank 1501 is mounted on the left side of the bottom of the fixed frame 1, a water inlet pipe is arranged on the front side of the water tank 1501, the water inlet pipe penetrates through the front side of the fixed frame 1; the feeding frame 1502 is slidably mounted on the upper side of the water tank 1501; the water pump 1503 is mounted on the rear side of the water tank 1501, the water inlet of the water pump 1503 is communicated with the water tank 1501, and the water pump 1503 is electrically connected with the control panel 3; the electric three-way regulating valve 1504 is mounted on the left side of the top of the cabinet 2, the electric three-way regulating valve 1504 is electrically connected with the control panel 3, the electric three-way regulating valve 1504 is located on the rear side of the second electric push rod 1201, three ports are arranged on the electric three-way regulating valve 1504, one of the ports is communicated with the water outlet of the water pump 1503 through the water pipe 1505; the sleeve pipes 1506 are rotatably connected to the upper ends of the two rubber hollow pipes 13, and the two sleeve pipes 1506 are communicated with one of the ports of the electric three-way regulating valve 1504 through the connecting pipes 1507.
[0031] Referring to Figure 6 , Figure 8 , Figure 9 and Figure 10 As shown in the figure, the drying mechanism includes a hot air blower 1601 and an air pipe 1602; the hot air blower 1601 is mounted on the right side of the bottom of the cabinet 2, the hot air blower 1601 is located on the inner side of the fixed frame 1, and the hot air blower 1601 is located on the right side of the first electric push rod 501, the hot air blower 1601 is electrically connected with the control panel 3; the air outlet of the hot air blower 1601 is communicated with one of the ports of the electric three-way regulating valve 1504 through the air pipe 1602.
[0032] Before use, the right side of the fixed frame 1 and the cabinet 2 is installed close to the installation object; when it is needed to use, first, clean water is added into the water tank 1501 through the water inlet pipe, then the feeding frame 1502 is pulled to move left, then the cleaning agent is poured into the feeding frame 1502, so that the cleaning agent falls into the clean water in the water tank 1501 through the feeding frame 1502, so that the cleaning agent is mixed with the clean water to form a cleaning liquid, then the feeding frame 1502 is pushed to move right to reset, then the isolation cover 4 is pulled to rotate upward to open, then the shoes 101 are placed on the top of the supporting frame 502 and the supporting block 503, and the right end of the shoes 101 is in contact with the positioning plate 505, so that the positioning plate 505 is used to position the shoes 101 (as Figure 4As shown in FIG. 1, the user can pull the isolation cover 4 down to the reverse open position, and then control the double-shaft motor 601 to drive the bidirectional screw rod 602 to rotate, so that the bidirectional screw rod 602 drives the clamping plate 603 to move to the side close to the shoe 101, until the clamping plate 603 clamps the shoe 101 by the sponge block 604, so as to fix the shoe 101, and then control the first electric push rod 501 to drive the supporting frame 502, the double-shaft motor 601, the bidirectional screw rod 602, the clamping plate 603 and the shoe 101 to move down, until the bottom surface of the shoe 101 contacts the first electric rolling brush 7. When the shoe 101 moves down, the shoe 101 will extrude the arc surface of the supporting block 503, so that the shoe 101 extrudes the supporting block 503 to move to the side away from each other, and the spring 504 is compressed. When the shoe 101 is separated from the supporting block 503, the spring 504 returns to the original state, and the spring 504 drives the supporting block 503 to move to the side close to each other and reset. When the bottom surface of the shoe 101 contacts the first electric rolling brush 7, control the double-shaft motor 601 to drive the bidirectional screw rod 602 to reverse and reset, so that the bidirectional screw rod 602 drives the clamping plate 603 to move to the side away from the shoe 101 and reset, so that the clamping plate 603 releases the shoe 101 by the sponge block 604. Then control the first electric push rod 501 to drive the supporting frame 502, the double-shaft motor 601, the bidirectional screw rod 602 and the clamping plate 603 to continue to move down, so that the supporting frame 502 is separated from the shoe 101, and the first electric rolling brush 7 supports the shoe 101 (as shown in FIG. 1). Figure 6 As shown in FIG. 1, the user can pull the isolation cover 4 down to the reverse open position, and then control the double-shaft motor 601 to drive the bidirectional screw rod 602 to rotate, so that the bidirectional screw rod 602 drives the clamping plate 603 to move to the side close to the shoe 101, until the clamping plate 603 clamps the shoe 101 by the sponge block 604, so as to fix the shoe 101, and then control the first electric push rod 501 to drive the supporting frame 502, the double-shaft motor 601, the bidirectional screw rod 602, the clamping plate 603 and the shoe 101 to move down, until the bottom surface of the shoe 101 contacts the first electric rolling brush 7. When the shoe 101 moves down, the shoe 101 will extrude the arc surface of the supporting block 503, so that the shoe 101 extrudes the supporting block 503 to move to the side away from each other, and the spring 504 is compressed. When the shoe 101 is separated from the supporting block 503, the spring 504 returns to the original state, and the spring 504 drives the supporting block 503 to move to the side close to each other and reset. When the bottom surface of the shoe 101 contacts the first electric rolling brush 7, control the double-shaft motor 601 to drive the bidirectional screw rod 602 to reverse and reset, so that the bidirectional screw rod 602 drives the clamping plate 603 to move to the side away from the shoe 101 and reset, so that the clamping plate 603 releases the shoe 101 by the sponge block 604. Then control the first electric push rod 501 to drive the supporting frame 502, the double-shaft motor 601, the bidirectional screw rod 602 and the clamping plate 603 to continue to move down, so that the supporting frame 502 is separated from the shoe 101, and the first electric rolling brush 7 supports the shoe 101 (as shown in FIG. 1).
[0033] Afterwards, the electric three-way regulating valve 1504 is controlled through the control panel 3 to make the water pipe 1505 form a passageway with the connecting pipe 1507, then the water pump 1503 is started through the control panel 3, so that the water pump 1503 draws the cleaning liquid in the water tank 1501 into the rubber hollow tube 13 through the water pipe 1505, the connecting pipe 1507 and the sleeve pipe 1506, so that the cleaning liquid in the rubber hollow tube 13 flows out through the through holes 1301 to the inside of the shoes 101 and the inside of the cabinet 2, and the cleaning liquid in the cabinet 2 gradually floods the shoes 101. After the cleaning liquid in the water tank 1501 is completely drawn out, the water pump 1503 is closed through the control panel 3, then the third electric push rod 1202, the connecting frame 1203, the speed reducer motor 1204 and the rubber hollow tube 13 are driven to move back and forth left and right through the control panel 3, so that the rubber hollow tube 13 drives the shoes 101 to move back and forth left and right, then the first electric roller brush 7, the second electric roller brush 8, the third electric roller brush 9, the fourth electric roller brush 1002 and the fifth electric roller brush 11 are started through the control panel 3, so that the first electric roller brush 7 brushes the bottom surface of the shoes 101, and the third electric roller brush 9 brushes the surface of the two shoes 101 away from each other, and the fourth electric roller brush 1002 brushes the surface of the two shoes 101 close to each other. When the shoes 101 contact the fifth electric roller brush 11, the fifth electric roller brush 11 brushes the top surface and the left side surface of the shoes 101. When the shoes 101 contact the second electric roller brush 8, the second electric roller brush 8 brushes the right side surface of the shoes 101. At the same time, the rubber hollow tube 13 is driven to rotate through the control panel 3, so that the bristles 14 on the rubber hollow tube 13 brush the inside of the shoes 101 (during this period, the rubber hollow tube 13 will continuously deform due to the continuous extrusion of the shoes 101). In this way, the inside and outside of the shoes 101 can be brushed. After the inside and outside of the shoes 101 are completely brushed, the rubber hollow tube 13 stops rotating through the control panel 3, and the third electric push rod 1202, the connecting frame 1203, the speed reducer motor 1204 and the rubber hollow tube 13 stop moving back and forth left and right through the control panel 3. Then the cleaning liquid in the cabinet 2 is drained through the drain valve, and a period of time is waited to ensure that the cleaning liquid in the shoes 101 is completely drained. Then clean water is added into the water tank 1501 through the water inlet pipe, then the water pump 1503 is started through the control panel 3, so that the water pump 1503 draws the clean water in the water tank 1501 into the rubber hollow tube 13, so that the clean water in the rubber hollow tube 13 flows out through the through holes 1301 to the inside of the shoes 101 and the inside of the cabinet 2. When the clean water in the water tank 1501 is completely drawn out, the water pump 1503 is closed through the control panel 3, so that the clean water is used to soak the brushed shoes 101. Then the clean water in the cabinet 2 is drained through the drain valve.The clean water is used to take away the cleaning liquid remained on the surface of the shoes 101.
[0034] Afterwards, the electric three-way regulating valve 1504 is controlled through the operation panel 3 to make the air pipe 1602 form a passageway with the connecting pipe 1507, then the hot air blower 1601 is started through the operation panel 3 to make the hot air blower 1601 blow hot air into the rubber hollow pipe 13 through the air pipe 1602, the connecting pipe 1507 and the sleeve pipe 1506, so that the hot air in the rubber hollow pipe 13 is blown to the inner side of the shoes 101 and the inner side of the cabinet 2 through the through holes 1301, thus the inner and outer sides of the shoes 101 are dried. When the inner and outer sides of the shoes 101 are dried, the hot air blower 1601 is turned off through the operation panel 3, then the connecting frame 1203, the speed reducer 1204 and the rubber hollow pipe 13 are driven to move upward and reset through the third electric push rod 1202 controlled by the operation panel 3, so that the rubber hollow pipe 13 leaves the inner side of the shoes 101 through the shoe opening. When the rubber hollow pipe 13 separates from the inner bottom of the shoes 101, the rubber hollow pipe 13 will gradually restore to the original shape. With the third electric push rod 1202 driven to move left and reset through the second electric push rod 1201 controlled by the operation panel 3, then the supporting frame 502, the double-shaft motor 601, the bidirectional screw rod 602 and the clamping plate 603 are driven to move upward through the first electric push rod 501 controlled by the operation panel 3, until the supporting frame 502 contacts the bottom of the shoes 101, then the bidirectional screw rod 602 is driven to rotate through the double-shaft motor 601 controlled by the operation panel 3, so that the bidirectional screw rod 602 drives the clamping plate 603 to move to the side close to the shoes 101, until the clamping plate 603 clamps the shoes 101 through the sponge block 604, thus the shoes 101 are fixed. Then the supporting frame 502, the double-shaft motor 601, the bidirectional screw rod 602, the clamping plate 603 and the shoes 101 are driven to move upward and reset through the first electric push rod 501 controlled by the operation panel 3, so that the bottom surface of the shoes 101 separates from the first electric rolling brush 7. When the shoes 101 move upward to contact the arc surface of the supporting block 503, the shoes 101 will press the supporting block 503 to move to the side far away from each other, and the spring 504 is compressed. When the shoes 101 pass the supporting block 503, the spring 504 restores to the original shape, and the spring 504 drives the supporting block 503 to move to the side close to each other and reset. Then the bidirectional screw rod 602 is driven to reverse and reset through the double-shaft motor 601 controlled by the operation panel 3, so that the bidirectional screw rod 602 drives the clamping plate 603 to move to the side far away from the shoes 101 and reset, so that the clamping plate 603 releases the shoes 101 through the sponge block 604. Finally, when people need to take out the shoes 101 for use, the isolation cover 4 is pulled upward to open, then the shoes 101 are taken out from the top of the supporting frame 502 and the supporting block 503, then the isolation cover 4 is pulled downward to reverse and close, thus the shoes 101 can be taken out for use.
[0035] Referring to Figure 9 As shown, the stirring mechanism further comprises a servo motor 17 and a stirrer 18; the servo motor 17 is mounted on the lower left side in the water tank 1501, the servo motor 17 is a waterproof motor, and the servo motor 17 is electrically connected with the control panel 3; the output shaft of the servo motor 17 is connected with the stirrer 18 for stirring the cleaning liquid.
[0036] By setting the stirring mechanism, after the cleaning agent is poured into the feeding frame 1502, the servo motor 17 can be controlled by the control panel 3 to drive the stirrer 18 to rotate, so that the stirrer 18 stirs the cleaning agent and the clean water in the water tank 1501, thereby accelerating the mixing of the cleaning agent and the clean water, so that the cleaning agent and the clean water are uniformly mixed, and the cleaning effect of the cleaning liquid is improved.
[0037] The above embodiments are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it, and cannot limit the protection scope of the present application. Any equivalent changes or modifications made in accordance with the spirit and essence of the present application shall be covered within the protection scope of the present application.
Claims
1. A washing and drying integrated shoe cabinet, comprising a fixed frame (1), a cabinet body (2) and a control panel (3), the top of the fixed frame (1) is provided with the cabinet body (2), and the top of the cabinet body (2) is provided with the control panel (3), characterized in that, The cabinet (2) is rotatably installed with an isolation cover (4), the cabinet (2) is provided with a supporting mechanism for supporting the shoes (101), the supporting mechanism is provided with a fixing mechanism for fixing the shoes (101), the cabinet (2) is rotatably installed with a first electric roller brush (7) for cleaning the bottom surface of the shoes (101), the cabinet (2) is rotatably installed with a second electric roller brush (8) and a third electric roller brush (9), the cabinet (2) is connected with a mounting plate (1001), the mounting plate (1001) is rotatably installed with a fourth electric roller brush (1002), the second electric roller brush (8), the third electric roller brush (9) and the fourth electric roller brush (1002) are used for cleaning the side surface of the shoes (101), the cabinet (2) is rotatably installed with a fifth electric roller brush (11) for cleaning the top surface of the shoes (101), the cabinet (2) is provided with a moving mechanism, the moving mechanism is connected with two rubber hollow tubes (13), the moving mechanism is used for driving the rubber hollow tubes (13) to extend into the inside of the shoes (101), the rubber hollow tubes (13) are provided with through holes (1301) at intervals, the rubber hollow tubes (13) are connected with brush hairs (14) for cleaning the inside of the shoes (101) at intervals, the inside of the fixed frame (1) is provided with a liquid injection mechanism and a drying mechanism, the liquid injection mechanism is used for injecting cleaning liquid into the cabinet (2), and the drying mechanism is used for drying the shoes (101).
2. The washing and drying integrated shoe cabinet according to claim 1, characterized in that, The supporting mechanism comprises a first electric push rod (501), a supporting frame (502), a supporting block (503), a spring (504) and a positioning plate (505), the bottom of the cabinet (2) is provided with the first electric push rod (501), the first electric push rod (501) is located in the fixed frame (1), the supporting frame (502) is connected to the telescopic rod of the first electric push rod (501), the supporting blocks (503) are symmetrically and slidably arranged on the inside of the cabinet (2), the springs (504) are connected between the supporting blocks (503) and the inside of the cabinet (2), and the positioning plates (505) are installed on the top of the supporting blocks (503) away from the isolation cover (4).
3. The laundry and drying integrated shoe cabinet according to claim 2, characterized in that, The fixing mechanism comprises a double-shaft motor (601), a bidirectional screw rod (602), a clamping plate (603) and a sponge block (604), the double-shaft motor (601) is installed on the inside of the supporting frame (502), the bidirectional screw rods (602) are connected to the output shafts on the two sides of the double-shaft motor (601), two groups of clamping plates (603) are symmetrically and slidably arranged on the supporting frame (502), the number of one group of clamping plates (603) is two, the two groups of clamping plates (603) are threadedly connected with the two bidirectional screw rods (602) respectively, the clamping plates (603) are used for fixing the shoes (101), and the clamping plates (603) are connected with the sponge blocks (604).
4. The washing and drying integrated shoe cabinet according to claim 3, characterized in that, The moving mechanism comprises a second electric push rod (1201), a third electric push rod (1202), a connecting frame (1203) and a speed reducer motor (1204), the second electric push rod (1201) is installed in the cabinet body (2), the telescopic rod of the second electric push rod (1201) is connected with the third electric push rod (1202), the telescopic rod of the third electric push rod (1202) is connected with the connecting frame (1203), the connecting frame (1203) is symmetrically provided with the speed reducer motor (1204), and the output shafts of the two speed reducer motors (1204) are connected with the two rubber hollow pipes (13) respectively.
5. The laundry and drying integrated shoe cabinet according to claim 4, wherein, The liquid injection mechanism comprises a water tank (1501), a feeding frame (1502), a water pump (1503), an electric three-way regulating valve (1504), a water pipe (1505), a sleeve pipe (1506) and a connecting pipe (1507), the water tank (1501) is installed in the fixed frame (1), the feeding frame (1502) is slidably installed on the water tank (1501), the water pump (1503) is installed on the side of the water tank (1501), the water inlet of the water pump (1503) is communicated with the water tank (1501), the electric three-way regulating valve (1504) is installed in the cabinet body (2), the electric three-way regulating valve (1504) is provided with three ports, one port is communicated with the water outlet of the water pump (1503) through the water pipe (1505), the rubber hollow pipe (13) is rotatably communicated with the sleeve pipe (1506), and the sleeve pipe (1506) is communicated with one port of the electric three-way regulating valve (1504) through the connecting pipe (1507).
6. The laundry and drying integrated shoe cabinet according to claim 5, wherein, The drying mechanism comprises a hot air machine (1601) and an air pipe (1602), the hot air machine (1601) is installed at the bottom of the cabinet body (2) and located on the inner side of the fixed frame (1), and the air outlet of the hot air machine (1601) is communicated with one port of the electric three-way regulating valve (1504) through the air pipe (1602).
7. The laundry and drying integrated shoe cabinet according to claim 6, characterized in that, The stirring mechanism comprises a servo motor (17) and a stirrer (18), the servo motor (17) is installed on the inner side of the water tank (1501), and the output shaft of the servo motor (17) is connected with the stirrer (18) for stirring the cleaning liquid.