A disinfection cabinet

By introducing a sandwich space and an electrolytic water system into the disinfection cabinet, combined with cleaning and sliding components, the problem of poor air circulation inside the disinfection cabinet is solved, achieving uniform disinfection and efficient cleaning.

CN116510044BActive Publication Date: 2025-11-14NINGBO FOTILE KITCHEN WARE CO LTD
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Patent Information

Application Number
CN202310625097.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-29
Publication Date
2025-11-14
Estimated Expiration
2043-05-29

AI Technical Summary

Technical Problem

Existing steam sterilizers have poor air circulation inside, resulting in uneven sterilization and low efficiency.

Method used

An independent interlayer space is set in the disinfection cabinet, which includes a water inlet tank, an electrolysis tank, a cleaning component and a sliding component. Electrolyzed water is generated by electrolysis of water, and the cleaning arm and atomizer are used to achieve uniform spraying and flow of steam. Combined with the exhaust fan, hot and humid gas is discharged.

Benefits of technology

It achieves uniform disinfection and efficient cleaning within the disinfection cabinet, thus improving disinfection efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN116510044B_ABST
    Figure CN116510044B_ABST
Patent Text Reader

Abstract

A disinfection cabinet includes a cabinet body, the cabinet body including an inner liner and a separate interlayer space independent of the inner liner, the inner liner being provided with an air inlet. The cabinet is characterized by: a water inlet tank disposed within the interlayer space; an electrolytic cell disposed within the interlayer space, the electrolytic cell capable of decomposing water into electrolyzed water; the electrolytic cell including a water inlet, a first water outlet, and a second water outlet; the water inlet of the electrolytic cell being connected to the water inlet tank; a cleaning component including a cleaning arm, a base, and a drive source mounted on the base, the cleaning arm being disposed within the inner liner; the power output end of the drive source being drively connected to the cleaning arm for driving the cleaning arm to rotate and / or move up and down; the cleaning arm being provided with multiple water outlets; the cleaning component being connected to the second water outlet of the electrolytic cell. Compared with the prior art, the disinfection cabinet of the present invention provides more uniform disinfection.
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Description

Technical Field

[0001] This invention relates to disinfection equipment, and more particularly to a disinfection cabinet. Background Technology

[0002] Disinfection cabinets have become an indispensable household appliance in daily life. With the improvement of living standards, disinfection cabinets have become increasingly sophisticated. Steam disinfection refers to a method of using high-temperature steam to kill bacteria or microorganisms. Due to the strong penetrability of pure steam, proteins and protoplasmic colloids are easily denatured and coagulated under humid and hot conditions. Steam enters the cells and condenses into water, which can release potential heat, increase the temperature, and further enhance the bactericidal power.

[0003] For example, Chinese utility model patent No. 202122327449.7 (authorization announcement No. CN216294742U), entitled "A Steam Sterilization Cabinet," discloses a steam sterilization cabinet including an outer shell, an inner liner disposed within the outer shell, and a water inlet tank, a water pump, a steam generator, and a steam nozzle disposed between the outer shell and the inner liner. The water inlet of the water pump is connected to the inner cavity of the water inlet tank, the water inlet of the steam generator is connected to the water outlet of the water pump, and the first and second steam outlets of the steam generator are respectively connected to the steam inlet of the inner liner and the steam inlet of the steam nozzle. This steam sterilization cabinet has both in-cabinet steam sterilization and external steam cleaning functions. However, the air circulation inside the cabinet is poor, resulting in uneven sterilization and low sterilization efficiency. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a disinfection cabinet that provides uniform disinfection, in view of the above-mentioned existing technology.

[0005] The technical solution adopted by the present invention to solve the above-mentioned technical problems is as follows: a disinfection cabinet, comprising a cabinet body, the cabinet body including an inner liner and a separate interlayer space independent of the inner liner, and an air inlet provided on the inner liner.

[0006] Its features include:

[0007] A water inlet tank is located in the interlayer space;

[0008] An electrolytic cell is disposed in the interlayer space, and the electrolytic cell can decompose water into electrolyzed water; the electrolytic cell includes a water inlet, a first water outlet, and a second water outlet; the water inlet of the electrolytic cell is connected to the water inlet tank;

[0009] A cleaning assembly includes a cleaning arm, a base, and a drive source mounted on the base. The cleaning arm is housed within an inner tank. The power output of the drive source is connected to the cleaning arm for driving its rotation and / or vertical movement. The cleaning arm has multiple water outlets. The cleaning assembly is connected to the second water outlet of the electrolytic cell. The drive source includes a drive motor mounted on the base and a flow channel separator mounted on top of the drive motor. The top of the flow channel separator is fitted into the cleaning arm, and a lifting flow channel is provided inside the flow channel separator. The inlet of the lifting flow channel is connected to the second water outlet of the electrolytic cell. The drive motor drives the cleaning arm to rotate. The flow channel separator drives the cleaning arm to move vertically via the lifting flow channel.

[0010] Preferably, the cleaning assembly further includes a rotating shaft connected to the drive source, a rotary joint sleeved outside the rotating shaft, and a connecting shaft mounted on the top of the rotating shaft; the cleaning arm is sleeved on the connecting shaft.

[0011] To form a cleaning channel for disinfection of the disinfection cabinet, preferably, a channel partition barrel is installed inside the rotating shaft; the channel partition barrel forms a cleaning channel with the inner walls of the rotating shaft and the connecting shaft; the rotary joint is connected to the second water outlet of the electrolytic cell; the rotary joint is provided with a first water inlet and a second water inlet, the inlet of the cleaning channel is connected to the second water inlet, the inlet of the lifting channel is connected to the first water inlet, and the outlet of the lifting channel is connected to the cleaning arm.

[0012] To facilitate disinfection of both the inside and outside of the disinfection cabinet, preferably, the disinfection cabinet also includes:

[0013] A push rod assembly is disposed in the interlayer space;

[0014] A sliding component is located at the power output end of the aforementioned push rod component and can slide relative to the cabinet.

[0015] An atomizer is mounted on the aforementioned sliding assembly; the atomizer is connected to the first water outlet of the electrolytic cell;

[0016] The cabinet is equipped with a clearance opening;

[0017] When the sliding component is in the first state, the atomizer is located in the interlayer space and the atomizer is connected to the inner liner through the air inlet on the inner liner.

[0018] The sliding assembly is in the second state; the atomizer extends out of the cabinet through the clearance port.

[0019] The sliding assembly includes a sliding base, a connecting support disposed on the sliding base, and a mounting base fixed on the connecting support; a bracket is installed above the connecting support; the atomizer 5 is mounted on the mounting base;

[0020] The power output end of the push rod assembly is connected to the connecting support; the power output end of the push rod assembly drives the connecting support to slide horizontally relative to the sliding base, and drives the mounting base, bracket and atomizer to enter and exit the clearance port.

[0021] To facilitate the atomizer's vertical movement relative to the mounting base and to allow it to easily enter and exit the clearance port, preferably, the mounting base of the sliding assembly is equipped with a screw and a motor. The bottom of the screw has a first gear, and the bottom of the motor has a second gear, which meshes with the first gear. The atomizer is connected to the screw. The motor drives the screw to rotate through the first and second gears, enabling the screw to drive the atomizer to slide vertically relative to the mounting base.

[0022] To achieve both cabinet disinfection mode and kitchen disinfection mode, preferably, when the sliding assembly is in the first state, the mounting base, bracket, and atomizer are located in the interlayer space, the screw drives the atomizer to the lower part of the mounting base, and the atomizer communicates with the inner liner through the air inlet on the inner liner; when the sliding assembly is in the second state, the screw drives the atomizer to the upper part of the mounting base, and the atomizer, mounting base, and bracket extend out of the cabinet body through the clearance opening.

[0023] For mounting the atomizer, preferably, a connector is mounted on the screw of the sliding assembly; the atomizer is connected to the connector; the motor drives the screw to rotate through a first gear and a second gear, so that the connector can drive the atomizer to slide up and down relative to the mounting base.

[0024] To ensure stable installation of the connector, preferably, a guide rod parallel to the screw is mounted on the mounting base of the sliding assembly, and the connector is mounted on the screw and the guide rod.

[0025] Preferably, the bracket end of the sliding assembly is connected to a decorative panel that covers the clearance opening; the atomizer is located inside the decorative panel. In this way, the atomizer is hidden inside the decorative panel and will not be visible to the user. When the atomizer is not in use, the decorative panel covers the clearance opening, making the cabinet appearance more consistent and thus improving the visual effect.

[0026] Preferably, the push rod assembly includes a connecting rod and a push rod base. The connecting rod is connected to the connecting support of the sliding assembly. The push rod base is fixed in the interlayer space. The connecting rod can slide horizontally relative to the push rod base and drive the mounting seat and bracket to move in and out of the clearance opening.

[0027] In order to pump water into the electrolytic cell, the disinfection cabinet preferably includes a first water pump, which has a first output end and a second output end, and is located between the water inlet tank and the water inlet of the electrolytic cell; the first output end of the first water pump is connected to a first solenoid valve, and the second output end of the first water pump is connected to a second solenoid valve.

[0028] In order to pump water to the atomizer, the disinfection cabinet preferably also includes a second water pump located at the first water outlet of the electrolysis cell and between the atomizer.

[0029] In order to pump water to the cleaning components, the disinfection cabinet preferably also includes a third water pump located between the second water outlet of the electrolysis cell and the first water inlet of the rotary joint.

[0030] Preferably, the disinfection cabinet also includes a wastewater tank installed at the bottom of the cabinet; the first output end of the second solenoid valve is connected to the first inlet of the rotary joint, and the second output end of the second solenoid valve is connected to the wastewater tank.

[0031] To control the pumping of water into the wastewater tank, preferably, a third solenoid valve is provided between the second output terminal of the second solenoid valve and the wastewater tank.

[0032] To achieve the cabinet cleaning mode, preferably, the inner tank is equipped with a heating plate; the water outlet of the cleaning component is connected to the heating plate of the inner tank.

[0033] In order to expel the hot and humid gas inside the inner liner, preferably, the interlayer space is provided with an exhaust fan that can expel the airflow from the inner liner to the outside of the cabinet.

[0034] Preferably, the atomizer is connected to the first water outlet of the electrolytic cell via a flexible, spring-shaped water pipe.

[0035] Compared with the prior art, the advantages of the present invention are as follows: the cleaning arm of the cleaning component of the present invention is installed in the inner liner. The cleaning arm can rotate or move up and down under the action of the drive source, which can agitate the steam in the cabinet and spray disinfectant evenly, so that the disinfection cabinet can achieve uniform disinfection. Attached Figure Description

[0036] Figure 1 This is a schematic diagram of the structure of this embodiment;

[0037] Figure 2 This is a schematic diagram of the internal structure of the sliding component in the first state of this embodiment (excluding the bottom of the inner liner);

[0038] Figure 3 This is a schematic diagram of the internal structure of the sliding component in the second state according to this embodiment;

[0039] Figure 4 This is a schematic diagram of the sliding component and atomizer in the first state of this embodiment;

[0040] Figure 5 This is a schematic diagram of the sliding component and atomizer in the second state of this embodiment;

[0041] Figure 6 This is a schematic diagram of the mounting base in the first state of this embodiment;

[0042] Figure 7 This is a schematic diagram of the mounting base in the second state of this embodiment;

[0043] Figure 8 This is a schematic diagram of the cleaning components in this embodiment;

[0044] Figure 9 for Figure 8 Sectional view at AA;

[0045] Figure 10 This is a schematic diagram illustrating the working principle of the cleaning channel and the lifting channel in this embodiment;

[0046] Figure 11 This is a schematic diagram illustrating the working principle of this embodiment. Detailed Implementation

[0047] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments.

[0048] like Figure 1-11 The image shows a preferred embodiment of the steam sterilizer of the present invention. The sterilizer includes a cabinet body 1, a water inlet tank 2, an electrolysis tank 3, a sliding assembly 4, an atomizer 5, a push rod assembly 6, a cleaning assembly 7, an exhaust fan 8, and a wastewater tank 9.

[0049] The cabinet 1 includes an inner liner 12 and a separate interlayer space 11. The cabinet 1 is provided with a clearance opening, and a heating plate 121 is installed inside the inner liner 12.

[0050] The water inlet tank 2 is located in the interlayer space 11.

[0051] An electrolytic cell 3 is located in the interlayer space 11. The electrolytic cell 3 can decompose water into electrolyzed water. The electrolytic cell 3 includes an inlet, a first outlet, and a second outlet. The inlet is connected to the inlet tank 2. A first water pump 31 is located between the inlet tank 2 and the inlet of the electrolytic cell 3, and has a first output and a second output. The first output of the first water pump 31 is connected to a first solenoid valve 32, and the second output of the first water pump 31 is connected to a second solenoid valve 35. A second water pump 33 is located between the first outlet of the electrolytic cell 3 and the atomizer 5. A third water pump 34 is located between the second outlet of the electrolytic cell 3 and the first inlet of the rotary joint 76. The first output of the second solenoid valve 35 is connected to the first inlet of the rotary joint 76, and the second output of the second solenoid valve 35 is connected to the wastewater tank 9. A third solenoid valve 36 is located between the second output of the second solenoid valve 35 and the wastewater tank 9.

[0052] The sliding assembly 4 is located in the interlayer space 11. The sliding assembly 4 includes a sliding base 41, a connecting support 42 disposed on the sliding base 41, and a mounting base 43 fixed on the connecting support 42. A bracket 44 is installed above the connecting support 42. The bracket 44 is T-shaped. A screw 45 and a motor 46 are installed on the mounting base 43. A first gear 451 is provided at the bottom of the screw 45, and a second gear 461 is provided at the bottom of the motor 46. The second gear 461 meshes with the first gear 451. A guide rod 48 is installed on the mounting base 43 of the sliding assembly 4, which is parallel to the screw 45. A connector 47 is installed on the screw 45 and the guide rod 48. The atomizer 5 is connected to the sliding assembly 4 through the connector 47. The motor 46 drives the screw 45 to rotate through the first gear 451 and the second gear 461, so that the connector 47 on the screw 45 can drive the atomizer 5 to slide up and down relative to the mounting base 43. The bracket 44 of the sliding assembly 4 is connected to a decorative plate 49 that can cover the clearance opening; the atomizer 5 is located inside the decorative plate 49.

[0053] The atomizer 5 is located in the interlayer space 11 and connected to the sliding assembly 4; the atomizer 5 is connected to the first water outlet of the electrolytic cell 3 through a flexible spring-shaped water pipe 52.

[0054] The push rod assembly 6 is located in the interlayer space 11. The push rod assembly 6 includes a connecting rod 61 and a push rod base 62. The connecting rod 61 is the power output end of the push rod assembly 6. The connecting rod 61 is connected to the connecting support 42 of the sliding assembly 4. The push rod base 62 is fixed in the interlayer space 11. The connecting rod 61 can slide horizontally relative to the push rod base 62 and drive the mounting base 43, bracket 44 and atomizer 5 to enter and exit the clearance port.

[0055] In the first state, the sliding assembly 4 is located in the interlayer space 11, the atomizer 5, the mounting base 43 and the bracket 44 are located in the interlayer space 11, and the connector 47 drives the atomizer 5 to the lower part of the mounting base 43. The atomizer 5 is connected to the inner liner 12 through the air inlet on the inner liner 12. In the second state, the sliding assembly 4 is located in the upper part of the mounting base 43, and the connecting rod 61 of the push rod assembly 6 drives the atomizer 5, the mounting base 43 and the bracket 44 to extend to the external space 1a through the clearance port.

[0056] The cleaning assembly 7 is located at the bottom of the cabinet 1. The cleaning assembly 7 includes a cleaning arm 71, a base 72, a drive source 73 mounted on the base 72, a rotating shaft 75 on the drive source 73, a rotary joint 76 sleeved on the rotating shaft 75, and a connecting shaft 77 mounted on the top of the rotating shaft 75. The cleaning arm 71 is located in the inner liner 12. A silicone strip 79 is installed at the bottom of the cleaning arm 71. The power output end of the drive source 73 is connected to the cleaning arm 71 for driving the cleaning arm 71 to rotate and / or move up and down. The cleaning arm 71 is provided with multiple water outlets. The drive source 73 includes a drive motor 731 mounted on the base 72 and a flow channel separator 732 mounted on the top of the drive motor 731. The top of the flow channel separator 732 is fitted into the cleaning arm 71 and installed inside the rotating shaft 75. A lifting flow channel 74 is provided inside the flow channel separator 732. The drive motor 731 drives the cleaning arm 71 to rotate. The flow channel separator 732 drives the cleaning arm 71 to move up and down through the lifting flow channel 74. The cleaning arm 71 is sleeved on the connecting shaft 77, which is fixedly connected to the rotating shaft 75 by screws and sealed by an O-ring.

[0057] The flow channel separator 732 forms a cleaning flow channel 78 with the inner walls of the rotating shaft 75 and the connecting shaft 77; the rotary joint 76 is connected to the second water outlet of the electrolytic cell 3; the rotary joint 76 is provided with a first water inlet and a second water inlet, the inlet of the cleaning flow channel 78 is connected to the second water inlet, the inlet of the lifting flow channel 74 is connected to the first water inlet, and the outlet of the lifting flow channel 74 is connected to the cleaning arm 71; a third water pump 34 is provided between the second water outlet of the electrolytic cell 3 and the first water inlet of the rotary joint 76.

[0058] The exhaust fan 8 is installed in the mezzanine space 11. The exhaust fan 8 is capable of expelling the airflow in the inner liner 12 out of the cabinet 1. The air inlet of the exhaust fan 8 is connected to the inner liner 12.

[0059] Wastewater tank 9 is located at the bottom of cabinet 1; the second output end of the second solenoid valve 35 is connected to wastewater tank 9.

[0060] The working principle of this embodiment is as follows:

[0061] (1) Cabinet disinfection mode:

[0062] When the first water pump 31 rotates forward, the first solenoid valve 32 is opened, and water in the water tank 2 is pumped into the electrolytic cell 3 through the first water pump 31. The water is electrolyzed in the electrolytic cell 3 and decomposed into hydrogen, oxygen, hydrogen ions, and hydroxide ions. The second water pump 33 is opened, and acidic electrolyzed water enters the atomizer 5 through the second water pump 33. After being atomized by the atomizer 5, the acidic electrolyzed water is sprayed onto the items to be cleaned in the inner liner 12 through the air outlet of the atomizer 5. After a period of time, the first water pump 31 and the second solenoid valve 35 are opened, and water enters the lifting channel to lift the cleaning arm 71 and heat the heating plate 121, so that the water in the inner liner 12 is converted into water vapor for sterilization and drying. At this time, the drive source 73 is turned on, and the drive source 73 drives the rotating shaft 75 to rotate relative to the rotating joint 76, and drives the cleaning arm 71 to rotate synchronously, stirring the steam in the cabinet and making the temperature field in the cabinet more uniform. After a period of time, the exhaust fan 8 is turned on to form an external exhaust, and the hot and humid air in the cabinet is discharged outside the cabinet.

[0063] (2) Cabinet cleaning mode:

[0064] When the first water pump 31 rotates forward, the first solenoid valve 32 is opened, and the water in the water tank 2 is pumped into the electrolytic cell 3 through the first water pump 31. The water is electrolyzed in the electrolytic cell 3 and decomposed into hydrogen, oxygen, hydrogen ions and hydroxide ions. When the third water pump 34 is opened, alkaline water enters the cleaning component 7 and is sprayed out from the cleaning arm 71. When the third solenoid valve 36 is opened, the water in the flow channel separator 732 is discharged. Due to the weight of the cleaning arm 71 itself, the silicone strip 79 at the bottom of the cleaning wall 71 is pressed against the bottom plate of the inner tank 12. The cleaning arm 71 rotates under the drive source 73, which makes the entire heating plate 121 evenly covered with alkaline water, improving the cleaning rate.

[0065] (3) Kitchen disinfection mode:

[0066] When the first water pump 31 rotates forward, the first solenoid valve 32 is opened, and water in the water inlet tank 2 is pumped into the electrolytic cell 3 through the first water pump 31. The water is electrolyzed in the electrolytic cell 3 and decomposed into hydrogen, oxygen, hydrogen ions, and hydroxide ions. The motor 46 is energized and drives the screw 45 to rotate through the first gear 451 and the second gear 461. The connector 47 on the screw 45 drives the atomizer 5 to move to the upper part of the mounting base 43. The connecting rod 61 of the push rod assembly 6 drives the atomizer 5, the mounting base 43, and the bracket 44 to extend into the external space 1a through the clearance port. Finally, the acidic electrolyzed water enters the atomizer 5 through the second water pump 33, and is then atomized and sprayed evenly into the external space 1a, disinfecting the external space with the acidic water mist. After completion, the push rod assembly 6 retracts with the sliding assembly 4, and the atomizer 5, mounting base 43 and bracket 44 return to the interlayer space 11. The motor 46 is powered and drives the atomizer 5 to move down. Finally, the atomizer 5 is reset, keeping the atomizer 5 facing the inner liner 12 of the disinfection cabinet, and the decorative panel 49 is flush with the front panel of the disinfection cabinet.

Claims

1. A disinfection cabinet, comprising a cabinet body (1), the cabinet body (1) comprising an inner liner (12) and a partition space (11) independent of the inner liner (12), characterized in that: include A water inlet tank (2) is located in the interlayer space (11); An electrolytic cell (3) is provided in the interlayer space (11). The electrolytic cell (3) can decompose water into electrolyzed water. The electrolytic cell (3) includes an inlet, a first outlet, and a second outlet. The inlet of the electrolytic cell (3) is connected to the water inlet tank (2). The cleaning assembly (7) includes a cleaning arm (71), a base (72), a drive source (73) mounted on the base (72), a rotating shaft (75), a rotary joint (76) sleeved on the rotating shaft (75), and a connecting shaft (77) mounted on the top of the rotating shaft (75). The cleaning arm (71) is located in the inner tank (12). The power output end of the drive source (73) is connected to the cleaning arm (71) for driving the cleaning arm (71) to rotate and / or move up and down. The cleaning arm (71) is provided with multiple water outlets. The cleaning assembly (7) is connected to the second water outlet of the electrolytic cell (3). The drive source (73) includes a drive motor (731) mounted on the base (72) and a flow channel separator (732) mounted on the top of the drive motor (731); the top of the flow channel separator (732) is fitted with the cleaning arm (71), and the flow channel separator (732) is provided with a lifting flow channel (74), the inlet of the lifting flow channel (74) is connected to the second water outlet of the electrolytic cell (3); the drive motor (731) drives the cleaning arm (71) to rotate; the flow channel separator (732) drives the cleaning arm (71) to move up and down through the lifting flow channel (74); The cleaning arm (71) is sleeved on the connecting shaft (77); The rotating shaft (75) is equipped with a flow channel separator (732); the flow channel separator (732) forms a cleaning flow channel (78) with the inner wall of the rotating shaft (75) and the connecting shaft (77); the rotary joint (76) is connected to the second water outlet of the electrolytic cell (3); the rotary joint (76) is provided with a first water inlet and a second water inlet, the inlet of the cleaning flow channel (78) is connected to the second water inlet, the inlet of the lifting flow channel (74) is connected to the first water inlet, and the outlet of the cleaning flow channel (78) is connected to the cleaning arm (71).

2. The disinfection cabinet according to claim 1, characterized in that: The disinfection cabinet also includes: A push rod assembly (6) is disposed in the interlayer space (11); The sliding component (4) is located at the power output end of the aforementioned push rod component (6) and can slide relative to the cabinet. Atomizer (5) is mounted on the aforementioned sliding assembly (4); the atomizer (5) is connected to the first water outlet of the electrolytic cell (3); The cabinet (1) is provided with a clearance opening; When the sliding assembly (4) is in the first state, the atomizer (5) is located in the interlayer space (11) and the atomizer (5) is connected to the inner liner (12); The sliding assembly (4) is in the second state; the atomizer (5) extends out of the cabinet (1) through the clearance port.

3. The disinfection cabinet according to claim 2, characterized in that: The sliding assembly (4) includes a sliding base (41), a connecting support (42) disposed on the sliding base (41), and a mounting base (43) fixed on the connecting support (42); a bracket (44) is installed above the connecting support (42); the atomizer (5) is installed on the mounting base (43); The power output end of the push rod assembly (6) is connected to the connecting support (42); the power output end of the push rod assembly (6) drives the connecting support (42) to slide horizontally relative to the sliding base (41), and drives the mounting base (43), bracket (44) and atomizer (5) to enter and exit the clearance port.

4. The disinfection cabinet according to claim 3, characterized in that: The sliding assembly (4) has a screw (45) and a motor (46) mounted on its mounting base (43). The screw (45) has a first gear (451) at its bottom and a second gear (461) at its bottom. The second gear (461) meshes with the first gear (451). The atomizer (5) is connected to the screw (45). The motor (46) drives the screw (45) to rotate through the first gear (451) and the second gear (461), so that the screw (45) can drive the atomizer (5) to slide up and down relative to the mounting base (43).

5. The disinfection cabinet according to claim 4, characterized in that: When the sliding assembly (4) is in the first state, the mounting base (43), the bracket (44) and the atomizer (5) are located in the interlayer space (11), and the screw (45) drives the atomizer (5) to be located at the lower part of the mounting base (43), and the atomizer (5) is connected to the inner liner (12); when the sliding assembly (4) is in the second state, the screw (45) drives the atomizer (5) to be located at the upper part of the mounting base (43), and the atomizer (5), the mounting base (43) and the bracket (44) extend out of the cabinet (1) through the clearance opening.

6. The disinfection cabinet according to claim 5, characterized in that: A connector (47) is installed on the screw (45) of the sliding assembly (4); the atomizer (5) is connected to the connector (47); the motor (46) drives the screw (45) to rotate through the first gear (451) and the second gear (461), so that the connector (47) can drive the atomizer (5) to slide up and down relative to the mounting base (43).

7. The disinfection cabinet according to claim 6, characterized in that: The sliding assembly (4) has a guide rod (48) mounted on its mounting base (43) and arranged parallel to the screw (45), and the connector (47) is mounted on the screw (45) and the guide rod (48).

8. The disinfection cabinet according to claim 7, characterized in that: The sliding assembly (4) has a bracket (44) end connected to a decorative plate (49) that can cover the clearance opening; the atomizer (5) is located inside the decorative plate (49).

9. The disinfection cabinet according to claim 3, characterized in that: The push rod assembly (6) includes a connecting rod (61) and a push rod base (62). The connecting rod (61) is connected to the connecting support (42) of the sliding assembly (4). The push rod base (62) is fixed in the interlayer space (11). The connecting rod (61) can slide horizontally relative to the push rod base (62) and drive the mounting seat (43) and the bracket (44) to move in and out of the clearance opening.

10. The disinfection cabinet according to claim 1, characterized in that: The disinfection cabinet also includes a first water pump (31), which has a first output end and a second output end, and is located between the water inlet of the water tank (2) and the water inlet of the electrolytic cell (3); the first output end of the first water pump (31) is connected to the first solenoid valve (32), and the second output end of the first water pump (31) is connected to the second solenoid valve (35).

11. The disinfection cabinet according to claim 1, characterized in that: The disinfection cabinet also includes a second water pump (33) located at the first water outlet of the electrolysis cell (3) and the atomizer (5).

12. The disinfection cabinet according to claim 1, characterized in that: The disinfection cabinet also includes a third water pump (34) located between the second water outlet of the electrolysis cell (3) and the first water inlet of the rotary joint (76).

13. The disinfection cabinet according to claim 10, characterized in that: The disinfection cabinet also includes a wastewater tank (9) installed at the bottom of the cabinet (1); the first output end of the second solenoid valve (35) is connected to the first inlet of the rotary joint (76), and the second output end of the second solenoid valve (35) is connected to the wastewater tank (9).

14. The disinfection cabinet according to claim 13, characterized in that: A third solenoid valve (36) is provided between the second output end of the second solenoid valve (35) and the wastewater tank (9).

15. The disinfection cabinet according to claim 1, characterized in that: The inner liner (12) is equipped with a heating plate (121); the water outlet of the cleaning component (7) is connected to the heating plate (121) of the inner liner (12).

16. The disinfection cabinet according to claim 1, characterized in that: The interlayer space (11) is equipped with an exhaust fan (8) that can exhaust the airflow in the inner liner (12) to the outside of the cabinet (1).

17. The disinfection cabinet according to claim 1, characterized in that: The atomizer (5) is connected to the first water outlet of the electrolytic cell (3) via a flexible spring-shaped water pipe (52).

Citation Information

Patent Citations

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