Shoe washing machine
By setting up a transparent storage chamber and a protective cover in the shoe washing machine, the problems of large size, poor permeability and low safety of existing shoe washing machines are solved, and the effect of real-time observation and reduction of accidental injury risks is achieved.
Patent Information
- Application Number
- CN202511035290.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-25
- Publication Date
- 2025-09-05
AI Technical Summary
Existing shoe washing machines are large in size and have poor transparency, making it impossible to visually observe the cleaning process. In addition, there is a risk of accidental damage and noise problems when rotating at high speeds.
A shoe washing machine is designed, which includes a transparent storage chamber and a protective cover. The side walls of the storage chamber and the protective cover are partially transparent to form an observation window. The cleaning power mechanism is connected to the storage chamber. The protective cover covers the storage opening when closed, thereby improving safety and quietness.
It enables real-time and intuitive observation of the cleaning process, reduces the risk of accidental damage and noise caused by high-speed rotation, and improves safety and quietness.
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Figure CN120585249A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of washing equipment, and in particular to a shoe washing machine. Background Art
[0002] As people's living standards continue to improve, their requirements for cleaning performance are also getting higher and higher. Shoes are an indispensable part of people's lives. Due to the rapid development of the economy, the materials used to make shoes have become more diverse, and there are more and more styles, making cleaning more difficult.
[0003] Conventional shoe washing machines are often large in size and have poor transparency, which makes it inconvenient for users to directly and intuitively see the entire cleaning process and cannot intuitively understand the washing effect; at the same time, when the shoe washing machine rotates at high speed (for example, when dehydrating), the drum will rotate at high speed. When the shoes are unevenly placed, the drum is prone to irregular swinging and even accidental damage, which is less safe. Summary of the Invention
[0004] The purpose of this application is to provide a shoe washing machine that can see the entire cleaning process in real time and intuitively, thereby increasing the visibility of the shoe washing machine, and can reduce the risk of accidental damage and working noise caused by high-speed rotation of the device, thereby increasing the safety and quietness of the shoe washing machine.
[0005] To achieve the above objectives, the present invention is implemented through the following solutions:
[0006] In a first aspect, the present invention provides a shoe washing machine, comprising:
[0007] A main control seat is provided with a cleaning power mechanism, and a receiving opening is provided in the middle of the main control seat;
[0008] A cleaning receiving device is detachably disposed within the receiving opening and is provided with a storage chamber for receiving a shoe body, wherein at least a portion of a sidewall of the storage chamber is transparent and forms a first observation window, and a cleaning power mechanism is configured to be connected to the cleaning receiving device and partially extend into the storage chamber for cleaning the shoe body;
[0009] A protective cover is movably arranged on the main control seat and is configured to cover the accommodating opening in a closed state so as to cover the cleaning accommodating device inside, wherein at least part of the side wall of the protective cover is transparent and forms an observation window, and the second observation window is configured to at least partially overlap with the first observation window when the protective cover is closed.
[0010] In an optional embodiment, the main control seat includes a base table, a support frame and a top frame, the support frame is connected to a side edge of the base table, the top frame is connected to the top of the support frame and is arranged opposite to the base table, and the top frame, the base table and the support frame are surrounded to form a accommodating opening, the cleaning power mechanism is arranged on the base table and / or the top frame, the cleaning accommodating device is detachably arranged on the base table, and the protective cover is movably arranged on the base table and is configured to slide between the support frame and the accommodating opening.
[0011] In an optional embodiment, a slide groove is provided on the edge of the base platform and / or the edge of the top frame, and the slide groove extends to the support frame, and the end of the protective cover is slidably accommodated in the slide groove.
[0012] In an optional embodiment, the protective cover is made of a transparent material, a recess for accommodating the protective cover is provided on the support frame, and the slide groove extends into the recess.
[0013] In an optional embodiment, the support frame is semi-cylindrical, the protective cover is semi-cylindrical, and the protective cover is spliced with the support frame to form a cylindrical structure when the accommodating opening is closed.
[0014] In an optional embodiment, the support frame includes a first movable frame and a second movable frame, the first movable frame is connected to a side edge of the base platform, the second movable frame is connected to a side edge of the top frame, and the second movable frame is movably assembled on the first movable frame and is configured to be movable in the up and down directions relative to the second movable frame to adjust the opening height of the accommodating opening.
[0015] In an optional embodiment, the cleaning power mechanism includes an ultrasonic cleaning component, a dehydration power component and a water injection component. The water injection component is arranged on the top frame and is configured to inject water into the storage chamber. The dehydration power component is arranged on the base table and is transmission-connected to the cleaning accommodating device and is configured to drive the cleaning accommodating device to rotate. The ultrasonic cleaning component is arranged in the top frame and / or the support frame and partially extends into the storage chamber and is configured to drive the cleaning water in the storage chamber to vibrate.
[0016] In an optional embodiment, the ultrasonic cleaning component includes an ultrasonic generator and a vibrator probe, the ultrasonic generator is arranged in the support frame or the top frame, and the vibrator probe is connected to the ultrasonic generator and partially extends into the storage chamber.
[0017] In an optional embodiment, the dehydration power assembly includes a dehydration drive and a dehydration shaft. The dehydration shaft is rotatably disposed on the base platform. The dehydration drive is disposed in the base platform and is transmission-connected to the dehydration shaft. The dehydration shaft is transmission-connected to the cleaning accommodating device and is configured to drive the cleaning accommodating device to rotate.
[0018] In an optional embodiment, the water injection assembly includes a water inlet valve and a water inlet pipe. The water inlet valve is arranged on the top frame. One end of the water inlet pipe is connected to the water inlet valve, and the other end is connected to the storage chamber.
[0019] In an optional embodiment, the cleaning power mechanism further includes a drying and sterilization component, which is disposed in the top frame and is configured to inject hot air into the storage chamber for drying and sterilizing the storage chamber.
[0020] In an optional embodiment, the drying and sterilization component includes a fan, a heating module and a hot air duct. The fan is arranged on the top frame, one end of the hot air duct is connected to the fan, and the other end is connected to the storage chamber. The heating module is arranged at the air outlet end of the fan.
[0021] In an optional embodiment, an exhaust hole is provided at the bottom of the cleaning and containing device, the exhaust hole is selectively connected to the storage chamber, and is configured to exhaust the gas in the storage chamber during drying.
[0022] In an optional embodiment, an operation panel is also provided on the top frame, and the operation panel has a built-in control module. The control module is communicated with the ultrasonic cleaning component, dehydration power component, water injection component and drying and sterilization component. The operation panel is configured to control the start and stop of the ultrasonic cleaning component, dehydration power component, water injection component and drying and sterilization component through the control module.
[0023] In an optional embodiment, the cleaning and containing device includes a containing cylinder, which is made of a transparent material and has at least two storage chambers formed therein.
[0024] In an optional embodiment, a first opening and a second opening are respectively provided at both ends of the accommodating cylinder, and the first opening and the second opening are both connected to at least one storage chamber. A bottom cover is provided at the first opening, and the bottom cover is detachably rotatably connected to the base platform. A top cover is provided at the second opening, and the top cover is detachably rotatably connected to the top frame.
[0025] In an optional embodiment, a drain pipe is also provided on the base table, one end of the drain pipe is connected to the bottom cover and connected to the storage chamber, and the other end is connected to the bottom of the base table. The drain pipe is configured to discharge dirty water after washing in the storage chamber.
[0026] In an optional embodiment, a porous partition is provided in the accommodating tube, and the porous partition is located in the middle of the accommodating tube and divides the interior of the accommodating tube into the two storage chambers.
[0027] Through the above technical solution, an embodiment of the present invention provides a shoe washing machine, which is provided with a cleaning power mechanism on the main control seat, and a receiving opening is provided on the main control seat, and the cleaning receiving device is detachably provided in the receiving opening, and has a storage chamber capable of receiving the shoe body, and the cleaning power mechanism is connected to the cleaning receiving device and partially extends into the storage chamber, so that the shoe body can be cleaned. A protective cover is also provided on the main control seat, which can block the receiving opening in a closed state, thereby covering the cleaning receiving device inside, thereby improving the overall safety and quietness. In addition, at least part of the side wall of the storage chamber is transparent and is formed with a first observation window, and at least part of the side wall of the protective cover is also transparent and is formed with a second observation window. In the closed state, the first observation window corresponds to the second observation window, so that the user can observe the cleaning situation in real time through the second observation window and the first observation window. Compared with the existing technology, the shoe washing machine provided by the embodiment of the present invention can see the entire cleaning process in real time and intuitively, which increases the visibility of the shoe washing machine, and can reduce the risk of accidental damage caused by high-speed rotation of the device, thereby increasing the safety of the shoe washing machine. The setting of the protective cover can also block noise and improve quietness.
[0028] Other features and advantages of the present application will be described in detail in the subsequent detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0030] Figure 1 A schematic diagram of the overall structure of the shoe washing machine provided in an embodiment of the present application from a first perspective;
[0031] Figure 2 A schematic diagram of the overall structure of the shoe washing machine provided in an embodiment of the present application from a second viewing angle;
[0032] Figure 3 A schematic diagram of the exploded structure of the shoe washing machine provided in an embodiment of the present application from a second viewing angle;
[0033] Figure 4 A cross-sectional view of the overall structure of the shoe washing machine provided in an embodiment of the present application from a third viewing angle;
[0034] Figure 5 This is a structural diagram of a shoe washing machine in another preferred embodiment of the present application;
[0035] Figure 6 for Figure 4A first partial structural cross-sectional view in FIG;
[0036] Figure 7 for Figure 4 A second partial structural cross-sectional view in FIG;
[0037] Figure 8 for Figure 3 Control block diagram of the operation panel;
[0038] Figure 9 for Figure 2 A schematic structural diagram of the cleaning and containing device;
[0039] Figure 10 for Figure 2 A cross-sectional view of the cleaning container.
[0040] icon:
[0041] 100 - shoe washing machine; 110 - main control seat; 111 - receiving opening; 112 - base platform; 113 - support frame; 114 - top frame; 115 - first movable frame; 116 - second movable frame; 117 - operation panel; 118 - control module; 120 - cleaning and receiving device; 121 - storage chamber; 122 - exhaust hole; 123 - drain pipe; 124 - receiving cylinder; 125 - first opening; 126 - second opening; 127 - bottom cover; 128 - top cover; 129 - porous partition Plate; 130-protective cover; 131-chute; 133-yield slot; 140-cleaning power mechanism; 150-ultrasonic cleaning component; 151-ultrasonic generator; 153-oscillator probe; 160-dehydration power component; 161-dehydration drive; 163-dehydration shaft; 170-water injection component; 171-water inlet valve; 173-water inlet pipe; 180-drying and sterilization component; 181-fan; 182-heating module; 183-hot air duct; 184-ultraviolet sterilization module. DETAILED DESCRIPTION
[0042] To make the objectives, technical solutions, and advantages of the embodiments of the present application more clear, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all of the embodiments. Generally, the components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.
[0043] In the description of this application, it should be noted that the terms "inner" and "outer" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or the orientations or positional relationships in which the product of this application is typically placed when in use. These terms are intended solely to facilitate the description of this application and simplify the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first" and "second" and the like are used solely for distinction and should not be construed as indicating or implying relative importance.
[0044] It should also be noted that, in the description of this application, unless otherwise expressly specified or limited, the terms "disposed" and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to direct connections, indirect connections through an intermediate medium, or internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0045] As disclosed in the background technology, existing shoe washing machines typically use a pulsator drum with a brush head to clean the shoes, resulting in poor cleaning effects. Furthermore, the structure is complex. During the cleaning process, due to the poor permeability of the drum and the housing, it is difficult to observe the cleaning status in real time. Furthermore, during the drying process, the drum rotates at high speed, and when the shoes are unevenly placed, irregular swinging is likely to occur, which can easily cause accidental damage when the lid is opened for observation, resulting in low safety. Furthermore, the shoe washing machines in the prior art have a relatively complex structure and occupy a large area.
[0046] In order to solve the above problems, an embodiment of the present invention provides a new shoe washing machine, and the specific structure and working principle of the shoe washing machine are described in detail below.
[0047] See also Figures 1 to 4 The present invention provides a shoe washer 100 that allows users to intuitively view the entire cleaning process in real time, improving visibility and reducing the risk of accidental damage and operating noise caused by high-speed rotation. This improves the safety and quietness of the shoe washer 100. Furthermore, the cleaning effect is improved, and the integrated cleaning and drying functions have a simple structure and a smaller footprint.
[0048] The shoe washing machine 100 provided in an embodiment of the present invention includes a main control seat 110, a cleaning accommodating device 120 and a protective cover 130. A cleaning power mechanism 140 is provided on the main control seat 110, and a accommodating opening 111 is provided in the middle of the main control seat 110. The cleaning accommodating device 120 is detachably arranged in the accommodating opening 111, and is provided with a storage chamber 121 for accommodating the shoe body. At least part of the side wall of the storage chamber 121 is transparent and forms a first observation window. The cleaning power mechanism 140 is configured to be connected to the cleaning accommodating device 120 and partially extend into the storage chamber 121 to clean the shoe body. The protective cover 130 is movably arranged on the main control seat 110 and is configured to cover the accommodating opening 111 in a closed state so as to cover the cleaning accommodating device 120 inside, wherein at least part of the side wall of the protective cover 130 is transparent and forms a second observation window, and the second observation window is configured to at least partially overlap with the first observation window when the protective cover 130 is closed.
[0049] It should be noted that the protective cover 130 has a closed state and an open state, and can be freely switched between the closed and open states by automatic or manual means. When the protective cover 130 is in the closed state, it can block the receiving opening 111, thereby covering the cleaning receiving device 120 therein, providing additional protection and preventing accidental damage. When the protective cover 130 is in the open state, it can completely expose the receiving opening 111, facilitating the installation and removal of the cleaning receiving device 120.
[0050] During actual use, the shoe body can be first placed in the storage chamber 121 of the cleaning and accommodating device 120, and then the cleaning and accommodating device 120 can be installed on the main control seat 110, and then the protective cover 130 can be closed so that the first observation window corresponds to the second observation window, and finally the shoe body can be cleaned through the cleaning power mechanism 140. Since the first observation window and the second observation window correspond to each other, during the actual cleaning process, the user can observe the inside of the storage chamber 121 through the two transparent observation windows, and see the entire cleaning process in real time and intuitively, thereby increasing the visibility of the shoe washing machine 100. Due to the protective effect of the protective cover 130, there is no need to worry about accidental damage during observation, which can reduce the risk of accidental damage caused by high-speed rotation of the device and increase the safety of the shoe washing machine 100.
[0051] The main control seat 110 includes a base platform 112, a support frame 113 and a top frame 114. The support frame 113 is connected to a side edge of the base platform 112, and the top frame 114 is connected to the top of the support frame 113 and is arranged opposite to the base platform 112. The top frame 114, the base platform 112 and the support frame 113 are arranged to form a receiving opening 111. The cleaning power mechanism 140 is arranged on the base platform 112 and / or the top frame 114. The cleaning receiving device 120 is detachably arranged on the base platform 112. The protective cover 130 is movably arranged on the base platform 112 and is configured to slide between the support frame 113 and the receiving opening 111. Specifically, the base platform 112, the support frame 113 and the top frame 114 can be arranged as a whole and covered with a shell. In appearance, the base platform 112 and the top frame 114 can both be cylindrical, and the cleaning power mechanism 140 can be arranged on the base platform 112 and the top frame 114. The base table 112 has a table top for supporting the cleaning accommodating device. The space between the table top and the top frame 114 is configured as an accommodating opening 111. The accommodating opening 111 can accommodate the cleaning accommodating device 120 and realize functions such as cleaning, spinning, drying and sterilization through the cleaning power mechanism 140. Its specific functions are introduced later.
[0052] In some embodiments, a slot 131 is provided on the edge of the base platform 112 and / or the edge of the top frame 114. The slot 131 extends into the support frame 113, and the end of the protective cover 130 slides within the slot 131. Specifically, in this embodiment, a slot 131 can be provided on the edge of the base platform 112, extending into the support frame 113. The bottom end of the protective cover 130 slides within the slot 131, thereby enabling switching between a closed and an open state. The sliding of the protective cover 130 can be manually operated, and the slot 131 has a certain damping effect. Therefore, in the absence of external forces, the protective cover 130 will not slide freely, ensuring the stability of the protective cover 130 during use. Of course, in other preferred embodiments of the present invention, the edge of the top frame 114 can also be provided with a slot 131, allowing the protective cover 130 to slide with both the top frame 114 and the base platform 112, further enhancing the structural stability of the protective cover 130.
[0053] In some embodiments, the protective cover 130 is made of a transparent material so that the second observation window extends to the side wall of the entire protective cover 130. A clearance groove 133 for accommodating the protective cover 130 is provided on the support frame 113, and the slide groove 131 extends into the clearance groove 133. Preferably, the protective cover 130 can be made of explosion-proof glass or a transparent acrylic plate. The shape of the clearance groove 133 on the support frame 113 is adapted to the shape of the protective cover 130, so that the protective cover 130 can slide into the clearance groove 133 when in the open state, ensuring the consistency and aesthetics of the overall appearance. Specifically, in this embodiment, the clearance groove 133 is located on the outside of the support frame 113, so that the slide groove 131 can be directly extended to the outer edge of the support frame 113, so that the protective cover 130 is attached to the outside of the support frame 113 when in the open state, which has higher recognition and is more convenient for manual operation. Of course, in other preferred embodiments of the present invention, the recess 133 may also be provided in the support frame 113 , so that the protective cover 130 can be retracted and hidden inside the support frame 113 when the receiving opening 111 is opened.
[0054] In some embodiments, the support frame 113 is semi-cylindrical, and the protective cover 130 is semi-cylindrical. When the protective cover 130 closes the accommodating opening 111, it is spliced with the support frame 113 to form a cylindrical structure. Specifically, in the closed state, the protective cover 130 and the support frame 113 are spliced to form a cylindrical structure, and the top frame 114 and the base platform 112 also form a cylindrical structure, thereby making the entire device more integrated and more beautiful. The semi-cylindrical support frame 113 can also accommodate the semi-cylindrical protective cover 130 in the open state, preventing the protective cover 130 from interfering with the disassembly and assembly of the cleaning and accommodating device 120.
[0055] See also Figure 5In some embodiments, the support frame 113 includes a first movable frame 115 and a second movable frame 116. The first movable frame 115 is connected to a side edge of the base platform 112, and the second movable frame 116 is connected to a side edge of the top frame 114. The second movable frame 116 is movably assembled on the first movable frame 115 and is configured to be movable in the vertical direction relative to the first movable frame 115 to adjust the opening height of the receiving opening 111. Specifically, the first movable frame 115 is located at the bottom of the second movable frame 116, and the first movable frame 115 and the second movable frame 116 can be movably assembled using a sleeve structure. In actual use, the second movable frame 116 can be lifted first to increase the opening height of the receiving opening 111 and expand the opening range to facilitate the installation of the cleaning receiving device 120. When the cleaning receiving device 120 is installed in place, the second movable frame 116 can be pressed down to restore the opening height of the receiving opening 111 to match the height of the cleaning receiving device 120, so that the top frame 114 presses the cleaning receiving device 120 to achieve fixation. When disassembling, the second movable frame 116 can also be lifted first to facilitate the removal of the cleaning receiving device 120. By adopting the movable assembly of the first movable frame 115 and the second movable frame 116, the interference of the top frame 114 can be avoided to the greatest extent, making the disassembly and assembly process of the cleaning receiving device 120 more convenient and quick.
[0056] It should be noted that the lifting and pressing down actions of the second movable frame 116 can be achieved manually or by a lifting drive member (such as a hydraulic cylinder), which is not specifically limited here.
[0057] See also Figure 6 and Figure 7Furthermore, the cleaning power mechanism 140 includes an ultrasonic cleaning component 150, a dehydration power component 160, and a water injection component 170. The water injection component 170 is disposed on the top frame 114 and is configured to inject water into the storage chamber 121. The dehydration power component 160 is disposed on the base 112 and is transmission-connected to the cleaning and accommodating device 120 and is configured to drive the cleaning and accommodating device 120 to rotate. The ultrasonic cleaning component 150 is disposed in the top frame 114 and / or the base 112 and partially extends into the storage chamber 121 and is configured to drive the cleaning water in the storage chamber 121 to vibrate. Specifically, there may be two ultrasonic cleaning components 150, one of which is disposed in the top frame 114 and the other in the base 112, so that they can extend into the storage chamber 121 from the upper and lower ends, respectively, and provide a vibration cleaning function to the cleaning water in the storage chamber 121. Furthermore, the ultrasonic cleaning assembly 150 is used to clean the shoe body, achieving a more effective cleaning effect. Separating the ultrasonic cleaning assembly 150 from the cleaning container allows dirt to enter the ultrasonic cleaning assembly 150 directly, extending its service life. The dehydration power assembly 160 is located within the base 112, ensuring more stable and reliable dehydration. The water injection assembly 170 is located on the top frame 114, facilitating water injection while ensuring that the storage chamber 121 is filled with the required amount of water.
[0058] In some embodiments, the ultrasonic cleaning component 150 includes an ultrasonic generator 151 and a vibrator probe 153. The ultrasonic generator 151 is arranged in the base 112 or the top frame 114. The vibrator probe 153 is connected to the ultrasonic generator 151 and partially extends into the storage chamber 121. Specifically, the vibrator probe 153 can be provided with a plurality of ultrasonic oscillation plates. The installation angles and positions of the plurality of ultrasonic oscillation plates are different, so that the cleaning water generates a uniform impact force in all directions, thereby better cleaning various parts of the shoes. The liquid entering the vibrator probe 153 generates countless tiny vacuum bubbles under the high-speed oscillation of the plurality of ultrasonic oscillation plates, causing a cavitation effect. When the countless tiny vacuum bubbles are compressed and exploded, a strong impact force is generated, which breaks up and peels off the dirt attached to the surface of the shoe body and the dead corners and crevices, thereby achieving a thorough cleaning effect.
[0059] In some embodiments, the dehydration power assembly 160 includes a dehydration drive member 161 and a dehydration shaft 163, the dehydration shaft 163 is rotatably disposed on the base platform 112, the dehydration drive member 161 is disposed in the base platform 112 and is in transmission connection with the dehydration shaft 163, the dehydration shaft 163 is in transmission connection with the cleaning accommodating device 120, and is configured to drive the cleaning accommodating device 120 to rotate. Specifically, the dehydration drive member 161 can be a servo dehydration motor, the output shaft of the servo motor is provided with a first pulley, the dehydration shaft 163 is provided with a second pulley, the first pulley and the second pulley are connected by a belt, thereby realizing transmission between the motor and the dehydration shaft 163.
[0060] In some embodiments, the water injection assembly 170 includes a water inlet valve 171 and a water inlet pipe 173. The water inlet valve 171 is mounted on the top frame 114. One end of the water inlet pipe 173 is connected to the water inlet valve 171, and the other end is connected to the storage chamber 121. Specifically, the water injection valve can be connected to an external water pipe to control the amount of water injected. Furthermore, a water level monitor can be installed on the top frame 114 to monitor the water level in the storage chamber 121. When the water level reaches a preset value, the water inlet valve 171 can be closed.
[0061] Furthermore, the cleaning power mechanism 140 also includes a drying and sterilization component 180, which is arranged in the top frame 114. The drying and sterilization component 180 is configured to inject hot air into the storage chamber 121 for drying, and sterilize the storage chamber 121. Specifically, the drying and sterilization component 180 can realize the functions of drying and sterilization, so that the present application integrates washing, drying, and sterilization in one, which greatly meets people's daily life needs, makes the overall function of the device more diverse, and provides a better user experience. In this embodiment, drying can be performed by hot air, and sterilization can be performed by blue light. In other preferred embodiments of the present invention, the hot air temperature can also be increased, so that high temperature can be used to directly perform sterilization.
[0062] In some embodiments, the drying and sterilization component 180 includes a fan 181, a heating module 182, a hot air duct 183 and an ultraviolet sterilization module 184. The fan 181 is arranged on the top frame 114, one end of the hot air duct 183 is connected to the fan 181, and the other end is connected to the storage chamber 121. The heating module 182 is arranged at the air outlet end of the fan 181, and the ultraviolet sterilization module 184 is connected in series to the air outlet end of the hot air duct 183. Specifically, the ultraviolet sterilization module 184 is arranged on the top wall of the storage chamber 121 and can directly sterilize the storage chamber 121. The heating module 182 can be a resistance wire heating structure, which can quickly heat the air sent into the hot air duct 183 by the fan 181, and pass it into the storage chamber 121 through the hot air duct 183 to achieve drying.
[0063] In some embodiments, a vent 122 is provided at the bottom of the cleaning container 120. The vent 122 selectively communicates with the storage chamber 121 and is configured to exhaust gas from the storage chamber 121 during drying. Specifically, the vent 122 may be provided with an exhaust valve that opens only during drying to balance the air pressure within the storage chamber 121. The exhaust valve can be closed during the cleaning process to prevent water leakage.
[0064] In some embodiments, the base 112 is further provided with a drain pipe 123. One end of the drain pipe 123 is connected to the bottom cover 127 and communicates with the storage chamber 121, and the other end is connected to the bottom of the base 112. The drain pipe 123 is configured to drain dirty water from the storage chamber 121 after washing. Specifically, the drain pipe 123 is provided with a drain valve to control the timing of drainage. The drain pipe 123 can also be built into the base 112, thereby making the overall appearance more concise.
[0065] See also Figure 3 and Figure 8 In some embodiments, an operation panel 117 is further provided on the top frame 114. The operation panel 117 has a built-in control module 118. The control module 118 is connected to the ultrasonic cleaning component 150, the dehydration power component 160, the water injection component 170, and the drying and sterilization component 180. The operation panel 117 is configured to control the start and stop of the ultrasonic cleaning component 150, the dehydration power component 160, the water injection component 170, and the drying and sterilization component 180 through the control module 118. Specifically, the operation panel 117 may be provided with a water inlet button, a drain button, a wash button, a spin button, a drying and sterilization button, and a gear position. The water inlet button is connected to the water inlet valve 171 through the control module 118 to control the entry of clean water into the storage chamber 121. The drain button is connected to the drain valve on the drain pipe 123 through the control module 118 to control the discharge of sewage from the storage chamber 121. The wash button is connected to the ultrasonic generator 151 via the control module 118, controlling the ultrasonic generator 151 to start operation when washing is required. The spin button is connected to the spin motor to control its rotation. The drying and sterilization button is connected to the drying and sterilization assembly 180 via the control module 118 to control whether drying and sterilization are required. Of course, embodiments of the present invention can also include a fully automatic button that automatically performs washing according to the washing, spin drying, drying, and sterilization process without human intervention.
[0066] See also Figure 9 and Figure 10 In some embodiments, the cleaning container 120 includes a container 124, which is made of a transparent material and has at least two storage chambers 121 formed therein, so that the first observation window extends to the entire sidewall of the storage chamber 121. Specifically, the container 124 is cylindrical and made of a transparent acrylic material. At the same time, multiple storage chambers 121 are formed therein, allowing multiple shoes to be cleaned simultaneously. To suit cleaning habits, embodiments of the present invention preferably arrange two storage chambers 121 within the container 124, so that a pair of shoes can be cleaned simultaneously.
[0067] In some embodiments, a first opening 125 and a second opening 126 are respectively provided at both ends of the accommodating cylinder 124, and the first opening 125 and the second opening 126 are both in communication with at least one storage chamber 121. A bottom cover 127 is provided at the first opening 125, and the bottom cover 127 is detachably and rotatably connected to the base platform 112. A top cover 128 is provided at the second opening 126, and the top cover 128 is detachably and rotatably connected to the top frame 114. Specifically, the top cover 128 and the bottom cover 127 are both rotatably connected structures, wherein the top cover 128 is rotatably connected to the top frame 114, and the bottom cover 127 is transmission-connected to the dehydration shaft 163. At the same time, the bottom side of the accommodating cylinder 124 is detachably connected to the bottom cover 127, so that the bottom cover 127 can be driven to rotate by the dehydration shaft 163, thereby further driving the accommodating cylinder 124 to rotate.
[0068] Furthermore, the periphery of the bottom cover 127 is provided with external threads and an additional sealing ring, and the inner side of the bottom end of the accommodating tube 124 is provided with internal threads, so that the accommodating tube 124 and the bottom cover 127 can be threadedly assembled to ensure the transmission effect between the two. The design of the sealing ring also ensures the sealing of the first opening 125 to prevent water leakage.
[0069] In some embodiments, a porous partition 129 is disposed within the accommodating tube 124. The porous partition 129 is located in the middle of the accommodating tube 124 and divides the interior of the accommodating tube 124 into two storage chambers 121. Specifically, the porous partition 129 can be a stainless steel porous plate and precisely divides the accommodating tube 124 into two storage chambers 121 of equal volume, with the volumes of the two storage chambers 121 being precisely adapted to accommodate one shoe, thereby enabling two shoes to be washed simultaneously.
[0070] In summary, an embodiment of the present invention provides a shoe washing machine 100, which has a cleaning power mechanism 140 disposed on a main control seat 110 and a receiving opening 111 disposed on the main control seat 110. A cleaning receiving device 120 is detachably disposed within the receiving opening 111 and has a storage chamber 121 capable of accommodating shoe bodies. The cleaning power mechanism 140 is connected to the cleaning receiving device 120 and partially extends into the storage chamber 121, thereby enabling cleaning of the shoe bodies. A protective cover 130 is also disposed on the main control seat 110. When closed, the protective cover 130 can block the receiving opening 111, thereby enclosing the cleaning receiving device 120 and improving overall safety. In addition, at least a portion of the sidewalls of the storage chamber 121 are transparent and formed with a first observation window. At least a portion of the sidewalls of the protective cover 130 are also transparent and formed with a second observation window. When closed, the first observation window corresponds to the second observation window, allowing a user to observe the cleaning status in real time through the second observation window and the first observation window. Compared with the existing technology, the shoe washing machine 100 provided in the embodiment of the present invention can view the entire cleaning process in real time and intuitively, thereby increasing the visibility of the shoe washing machine 100, and can reduce the risk of accidental damage and working noise caused by high-speed rotation of the device, thereby improving the safety and quietness of the shoe washing machine 100.
[0071] It should be noted that, unless there is any conflict, the features in the embodiments of this application can be combined with each other.
[0072] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. A shoe washing machine, characterized in that: include: A main control seat (110), wherein a cleaning power mechanism (140) is provided on the main control seat (110), and a receiving opening (111) is provided in the middle of the main control seat (110); A cleaning accommodating device (120) is detachably arranged in the accommodating opening (111) and is provided with a storage chamber (121) for accommodating a shoe body, and at least a portion of a side wall of the storage chamber (121) is transparent and forms a first observation window, and the cleaning power mechanism (140) is configured to be connected to the cleaning accommodating device (120) and partially extend into the storage chamber (121) to clean the shoe body; A protective cover (130) is movably arranged on the main control seat (110) and is configured to cover the accommodating opening (111) in a closed state so as to cover the cleaning accommodating device (120) therein, wherein at least a portion of the side wall of the protective cover (130) is transparent and forms a second observation window, and the second observation window is configured to at least partially overlap with the first observation window when the protective cover is in a closed state.
2. The shoe washing machine according to claim 1, characterized in that: The main control seat (110) includes a base platform (112), a support frame (113) and a top frame (114), wherein the support frame (113) is connected to a side edge of the base platform (112), the top frame (114) is connected to the top of the support frame (113) and is arranged opposite to the base platform (112), and the top frame (114), the base platform (112) and the support frame (113) are arranged to form the accommodating opening (111), the cleaning power mechanism (140) is arranged on the base platform (112) and / or the top frame (114), the cleaning accommodating device (120) is detachably arranged on the base platform (112), and the protective cover (130) is movably arranged on the base platform (112) and is configured to move between the support frame (113) and the accommodating opening (111).
3. The shoe washing machine according to claim 2, characterized in that: A sliding groove (131) is provided on the edge of the base platform (112) and / or the edge of the top frame (114), and the sliding groove (131) extends to the support frame (113), and the end of the protective cover (130) is slidably accommodated in the sliding groove (131).
4. The shoe washing machine according to claim 3, characterized in that: The protective cover (130) is made of a transparent material. A clearance groove (133) for accommodating the protective cover (130) is provided on the support frame (113), and the sliding groove (131) extends into the clearance groove (133).
5. The shoe washing machine according to claim 2, characterized in that: The support frame (113) is semi-cylindrical, and the protective cover (130) is semi-cylindrical. When the protective cover (130) closes the accommodating opening (111), it is spliced with the support frame (113) to form a cylindrical structure.
6. The shoe washing machine according to claim 2, characterized in that: The support frame (113) includes a first movable frame (115) and a second movable frame (116), wherein the first movable frame (115) is connected to a side edge of the base platform (112), and the second movable frame (116) is connected to a side edge of the top frame (114), and the second movable frame (116) is movably assembled on the first movable frame (115) and is configured to be movable in an up-down direction relative to the second movable frame (116) to adjust the opening height of the accommodating opening (111).
7. The shoe washing machine according to claim 2, characterized in that: The cleaning power mechanism (140) comprises an ultrasonic cleaning component (150), a dehydration power component (160) and a water injection component (170); the water injection component (170) is arranged on the top frame (114) and is configured to inject water into the storage chamber (121); the dehydration power component (160) is arranged on the base platform (112) and is in transmission connection with the cleaning storage device (120) and is configured to drive the cleaning storage device (120) to rotate; the ultrasonic cleaning component (150) is arranged in the top frame (114) and / or the base platform (112) and partially extends into the storage chamber (121) and is configured to drive the cleaning water in the storage chamber (121) to vibrate.
8. The shoe washing machine according to claim 7, characterized in that: The ultrasonic cleaning assembly (150) includes an ultrasonic generator (151) and a vibrator probe (153). The ultrasonic generator (151) is arranged in the support frame (113) or the base platform (112). The vibrator probe (153) is connected to the ultrasonic generator (151) and partially extends into the storage chamber (121).
9. The shoe washing machine according to claim 7, characterized in that: The dehydration power assembly (160) includes a dehydration drive member (161) and a dehydration shaft (163). The dehydration shaft (163) is rotatably arranged on the base platform (112). The dehydration drive member (161) is arranged in the base platform (112) and is transmission-connected to the dehydration shaft (163). The dehydration shaft (163) is transmission-connected to the cleaning and accommodating device (120) and is configured to drive the cleaning and accommodating device (120) to rotate.
10. The shoe washing machine according to claim 7, characterized in that: The water injection assembly (170) comprises a water inlet valve (171) and a water inlet pipe (173); the water inlet valve (171) is arranged on the top frame (114); one end of the water inlet pipe (173) is connected to the water inlet valve (171), and the other end is connected to the storage chamber (121).
11. The shoe washing machine according to claim 7, characterized in that: The cleaning power mechanism (140) further includes a drying and sterilizing component (180), which is arranged in the top frame (114). The drying and sterilizing component (180) is configured to inject hot air into the storage chamber (121) for drying and sterilizing the storage chamber (121).
12. The shoe washing machine according to claim 11, characterized in that: The drying and sterilizing component (180) includes a fan (181), a heating module (182) and a hot air duct (183); the fan (181) is arranged on the top frame (114); one end of the hot air duct (183) is connected to the fan (181), and the other end is connected to the storage chamber (121); the heating module (182) is arranged at the air outlet end of the fan (181).
13. The shoe washing machine according to claim 11, characterized in that: The bottom of the cleaning and containing device (120) is provided with an exhaust hole (122), the exhaust hole (122) is selectively connected to the storage chamber (121), and is configured to exhaust the gas in the storage chamber (121) during drying.
14. The shoe washing machine according to claim 11, characterized in that: An operation panel (117) is also provided on the top frame (114), and a control module (118) is built into the operation panel (117). The control module (118) is communicatively connected with the ultrasonic cleaning component (150), the dehydration power component (160), the water injection component (170) and the drying and sterilization component (180). The operation panel (117) is configured to control the start and stop of the ultrasonic cleaning component (150), the dehydration power component (160), the water injection component (170) and the drying and sterilization component (180) through the control module (118).
15. The shoe washing machine according to claim 2, characterized in that: The cleaning and accommodating device (120) comprises an accommodating cylinder (124), the accommodating cylinder (124) is made of a transparent material, and at least two storage chambers (121) are formed inside the cylinder.
16. The shoe washing machine according to claim 15, characterized in that: A first opening (125) and a second opening (126) are respectively provided at both ends of the accommodating cylinder (124), and the first opening (125) and the second opening (126) are both connected to at least one of the storage chambers (121). A bottom cover (127) is provided at the first opening (125), and the bottom cover (127) is detachably rotatably connected to the base platform (112). A top cover (128) is provided at the second opening (126), and the top cover (128) is detachably rotatably connected to the top frame (114).
17. The shoe washing machine according to claim 16, characterized in that: The base platform (112) is also provided with a drain pipe (123), one end of the drain pipe (123) is connected to the bottom cover (127) and communicated with the storage chamber (121), and the other end is connected to the bottom of the base platform (112). The drain pipe (123) is configured to discharge dirty water in the storage chamber (121) after washing.
18. The shoe washing machine according to claim 15, characterized in that: A porous partition (129) is provided in the accommodating cylinder (124). The porous partition (129) is located in the middle of the accommodating cylinder (124) and divides the interior of the accommodating cylinder (124) into two storage chambers (121).