Disinfection cabinets and their control methods, devices, storage media and computer programs

By dividing the high-temperature sterilization process into two stages and adjusting them in real time according to the load, combined with disturbance and exhaust devices, the problems of unsatisfactory sterilization effect and high energy consumption of disinfection cabinets are solved, achieving more efficient sterilization effect and optimized energy consumption.

CN119455038BActive Publication Date: 2025-11-14GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202411349840.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-11-14
Estimated Expiration
2044-09-26

AI Technical Summary

Technical Problem

The existing sterilization control logic of disinfection cabinets cannot be intelligently adjusted according to actual usage, resulting in unsatisfactory sterilization effect or high energy consumption.

Method used

The high-temperature sterilization process is divided into two stages. The load inside the disinfection cabinet is determined by the temperature rise. Adjustments are made in real time according to the load during the second high-temperature sterilization stage and ozone disinfection. A disturbance device and an exhaust device are used to optimize gas distribution and remove water vapor.

Benefits of technology

It improved disinfection effectiveness, reduced energy consumption, and enhanced the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a disinfection cabinet and its control method, device, storage medium, and computer program product. The method includes: when the sterilization mode is activated, entering a first high-temperature sterilization stage and starting heating according to preset first high-temperature sterilization stage control logic; acquiring the time taken for the temperature inside the disinfection cabinet to reach a second preset temperature threshold from a first preset temperature threshold; determining whether the current load of the disinfection cabinet is rated load, over-rated load, or below rated load based on the time taken to reach the second preset temperature threshold; entering a second high-temperature sterilization stage and heating according to preset second high-temperature sterilization stage control logic, and controlling the disinfection cabinet to execute the corresponding rated load sterilization program, over-rated load sterilization program, or below-rated load sterilization program based on the determined current load of the disinfection cabinet. This invention solves the problem of unsatisfactory sterilization effect or high energy consumption caused by failure to control sterilization according to actual conditions.
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Description

Technical Field

[0001] This invention relates to the field of control, and more particularly to a disinfection cabinet and its control method, device, storage medium and computer program product. Background Technology

[0002] In related technologies, most disinfection cabinet products use ozone, high temperature, and ultraviolet light for sterilization. However, the sterilization control logic of these disinfection cabinets is fixed, and they continue to use a certain sterilization method for a period of time without intelligent adjustment based on actual conditions. This results in unsatisfactory sterilization effects. For example, if some users do not have the rated load of the disinfection cabinet when using it, sterilization according to the set logic will lead to high energy consumption or poor sterilization effect. Summary of the Invention

[0003] The main objective of this invention is to overcome the deficiencies of the aforementioned related technologies and provide a disinfection cabinet and its control method, device, storage medium, and computer program product to solve the problems of unsatisfactory sterilization effect or high energy consumption caused by the failure to control the sterilization of the disinfection cabinet according to the actual usage situation in the related technologies.

[0004] This invention provides a control method for a disinfection cabinet, comprising: when the sterilization mode is activated, entering a first high-temperature sterilization stage, and starting heating according to a preset first high-temperature sterilization stage control logic; starting a timer when the temperature inside the disinfection cabinet reaches a first preset temperature threshold, and ending the timer when the temperature inside the disinfection cabinet reaches a second preset temperature threshold, and obtaining the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold; determining, based on the obtained time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold, whether the current load of the disinfection cabinet is a rated load, an over-rated load, or a below-rated load; entering a second high-temperature sterilization stage, heating according to a preset second high-temperature sterilization stage control logic, and controlling the disinfection cabinet to execute a corresponding rated load sterilization program, an over-rated load sterilization program, or a below-rated load sterilization program based on the determined current load of the disinfection cabinet.

[0005] Optionally, a disturbance device and / or an exhaust device are provided inside the disinfection cabinet; when the disturbance device is turned on, it can disturb the gas inside the disinfection cabinet; when the exhaust device is turned on, it can exhaust the gas inside the disinfection cabinet.

[0006] Optionally, based on the time taken for the temperature inside the disinfection cabinet to rise from a first preset temperature threshold to a second preset temperature threshold, the current load of the disinfection cabinet is determined to be either rated load, over-rated load, or below-rated load. This includes: if the time is greater than or equal to the first preset time, the current load of the disinfection cabinet is determined to be over-rated load; if the time is less than the first preset time but greater than or equal to the second preset time, the current load of the disinfection cabinet is determined to be rated load; if the time is less than the second preset time, the current load of the disinfection cabinet is determined to be below-rated load.

[0007] Optionally, based on the determined current load of the disinfection cabinet, the disinfection cabinet is controlled to execute a corresponding rated load disinfection program, including: starting a timer when the temperature inside the disinfection cabinet reaches a third preset temperature threshold; entering an ozone disinfection program when the timer duration reaches the preset running time of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the rated load; and ending the ozone disinfection program when the running time of the ozone disinfection program reaches the preset running time of the ozone disinfection program corresponding to the rated load.

[0008] Optionally, based on the determined current load of the disinfection cabinet, the disinfection cabinet is controlled to execute a corresponding disinfection program below the rated load, including: starting a timer when the temperature inside the disinfection cabinet reaches a third preset temperature threshold; entering an ozone disinfection program when the timer duration reaches a first preset percentage multiple of the running time of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the preset rated load; and ending the ozone disinfection program when the running time of the ozone disinfection program reaches a second preset percentage multiple of the running time of the ozone disinfection program corresponding to the preset rated load.

[0009] Optionally, based on the determined current load of the disinfection cabinet, the disinfection cabinet is controlled to execute a corresponding overload disinfection program, including: starting a timer when the temperature inside the disinfection cabinet reaches a third preset temperature threshold; entering an ozone disinfection program when the timer duration reaches a third preset percentage multiple of the runtime of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the preset rated load; and ending the ozone disinfection program when the runtime of the ozone disinfection program reaches a fourth preset percentage multiple of the runtime of the ozone disinfection program corresponding to the preset rated load.

[0010] Optionally, a disturbance device and / or an exhaust device are provided inside the disinfection cabinet; the method further includes: turning on the disturbance device and / or the exhaust device after entering the second high-temperature sterilization stage; and / or turning off the exhaust device before entering the ozone disinfection program; and / or turning off the disturbance device after the ozone disinfection program ends.

[0011] Another aspect of the present invention provides a control device for a disinfection cabinet, comprising: a first control unit, configured to enter a first high-temperature sterilization stage after the sterilization mode is activated, and start heating according to a preset first high-temperature sterilization stage control logic; a timing unit, configured to start timing when the temperature inside the disinfection cabinet reaches a first preset temperature threshold, and stop timing when the temperature inside the disinfection cabinet reaches a second preset temperature threshold, thereby obtaining the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold; a determining unit, configured to determine, based on the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold obtained by the timing unit, whether the current load of the disinfection cabinet is a rated load, an over-rated load, or a lower than the rated load; and a second control unit, configured to enter a second high-temperature sterilization stage, heat according to a preset second high-temperature sterilization stage control logic, and control the disinfection cabinet to execute a corresponding rated load sterilization program, an over-rated load sterilization program, or a lower than the rated load sterilization program based on the determined current load of the disinfection cabinet.

[0012] Optionally, a disturbance device and / or an exhaust device are provided inside the disinfection cabinet; when the disturbance device is turned on, it can disturb the gas inside the disinfection cabinet; when the exhaust device is turned on, it can exhaust the gas inside the disinfection cabinet.

[0013] Optionally, the determining unit determines whether the current load of the disinfection cabinet is rated load, over-rated load, or below-rated load based on the time taken for the disinfection cabinet to reach a second preset temperature threshold from a first preset temperature threshold, as obtained by the timing unit. This includes: if the time is greater than or equal to the first preset time, then the current load of the disinfection cabinet is determined to be over-rated load; if the time is less than the first preset time but greater than or equal to the second preset time, then the current load of the disinfection cabinet is determined to be rated load; if the time is less than the second preset time, then the current load of the disinfection cabinet is determined to be below-rated load.

[0014] Optionally, the second control unit controls the disinfection cabinet to execute a corresponding rated load disinfection program based on the determined current load of the disinfection cabinet, including: starting a timer when the temperature inside the disinfection cabinet reaches a third preset temperature threshold; entering an ozone disinfection program when the timer duration reaches the preset running time of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the rated load; and ending the ozone disinfection program when the running time of the ozone disinfection program reaches the preset running time of the ozone disinfection program corresponding to the rated load.

[0015] Optionally, the second control unit, based on the determined current load of the disinfection cabinet, controls the disinfection cabinet to execute a corresponding disinfection program below the rated load, including: starting a timer when the temperature inside the disinfection cabinet reaches a third preset temperature threshold; entering an ozone disinfection program when the timer duration reaches a first preset percentage multiple of the running time of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the preset rated load; and ending the ozone disinfection program when the running time of the ozone disinfection program reaches a second preset percentage multiple of the running time of the ozone disinfection program corresponding to the preset rated load.

[0016] Optionally, the second control unit controls the disinfection cabinet to execute a corresponding overload disinfection program based on the determined current load of the disinfection cabinet, including: starting a timer when the temperature inside the disinfection cabinet reaches a third preset temperature threshold; entering an ozone disinfection program when the timer duration reaches a third preset percentage multiple of the runtime of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the preset rated load; and ending the ozone disinfection program when the runtime of the ozone disinfection program reaches a fourth preset percentage multiple of the runtime of the ozone disinfection program corresponding to the preset rated load.

[0017] Optionally, a disturbance device and / or an exhaust device are provided inside the disinfection cabinet; the device further includes: a third control unit, configured to: activate the disturbance device and / or the exhaust device after entering the second high-temperature sterilization stage; and / or, deactivate the exhaust device before entering the ozone disinfection program; and / or, deactivate the disturbance device after the ozone disinfection program ends.

[0018] In another aspect, the present invention provides a storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of any of the methods described above.

[0019] In another aspect, the present invention provides a disinfection cabinet, including a processor, a memory, and a computer program stored in the memory that can run on the processor, wherein the processor executes the program to implement the steps of any of the aforementioned methods.

[0020] In another aspect, the present invention provides a disinfection cabinet, including any of the control devices described above.

[0021] In another aspect, the present invention provides a computer program product, including a computer program that, when executed by a processor, implements the steps of any of the methods described above.

[0022] According to the technical solution of the present invention, the sterilization process in the high-temperature stage is divided into two stages. In the initial high-temperature sterilization stage, the load of the tableware to be sterilized in the sterilization cabinet is determined according to the temperature rise. Then, the sterilization process and ozone disinfection process in the second high-temperature sterilization stage are adjusted in real time according to the load.

[0023] According to the technical solution of the present invention, adding a disturbance device can accelerate the uniformity of ozone and temperature distribution inside the disinfection cabinet and improve the disinfection effect of tableware outside the disinfection cabinet.

[0024] According to the technical solution of the present invention, an exhaust device is added to automatically open the check valve in the second stage of high-temperature disinfection, ensuring that the odors caused by residual moisture and dirt on the entire disinfected tableware are smoothly discharged, and avoiding excessive moisture remaining in the disinfection cabinet and reducing the product life. Attached Figure Description

[0025] The accompanying drawings, which are included to provide a further understanding of the invention and form part of this invention, illustrate exemplary embodiments of the invention and are used to explain the invention, but do not constitute an undue limitation of the invention. In the drawings:

[0026] Figure 1 This is a schematic diagram of an embodiment of the control method for a disinfection cabinet provided by the present invention;

[0027] Figure 2 A schematic diagram of the disturbance device and exhaust device according to the present invention is shown;

[0028] Figure 3 A schematic diagram of the control process for the initial high-temperature sterilization stage according to the present invention is shown;

[0029] Figure 4 A schematic diagram of a below-rated load sterilization procedure according to the present invention is shown;

[0030] Figure 5 A schematic diagram of a below-rated load sterilization procedure according to the present invention is shown;

[0031] Figure 6 A schematic diagram of the overload disinfection procedure according to the present invention is shown;

[0032] Figure 7 This is a structural block diagram of an embodiment of the control device for a disinfection cabinet provided by the present invention. Detailed Implementation

[0033] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of this invention, and not all of them. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.

[0034] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of the invention described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0035] In related technologies, disinfection cabinets that use ozone or high temperature as the main sterilization method have uneven temperature or gas field distribution, resulting in a much lower disinfection effect for tableware near the outside of the cabinet compared to the inside. Furthermore, because the steam generated during the high-temperature disinfection process cannot be discharged in time, the water and dirt remaining on the tableware affect the sterilization effect and are prone to producing odors, all of which affect the user experience.

[0036] Figure 1 This is a schematic diagram of an embodiment of the control method for a disinfection cabinet provided by the present invention.

[0037] like Figure 1 As shown, according to an embodiment of the present invention, the control method of the disinfection cabinet includes at least steps S110, S120, S130 and S140.

[0038] Step S110: When the sterilization mode is turned on, the first high-temperature sterilization stage is entered, and heating begins according to the preset first high-temperature sterilization stage control logic.

[0039] Specifically, after washing their tableware according to their needs, users place it in the sterilizer and activate the sterilization mode (e.g., by clicking a preset button). The sterilizer then begins sterilization, first entering the first high-temperature sterilization stage, heating according to the preset first high-temperature sterilization stage control logic. This first high-temperature sterilization stage is the initial high-temperature sterilization stage. The preset first high-temperature sterilization stage control logic can specifically be: controlling the heating element of the sterilizer to heat at full power. The heating element can be, for example, a heating element. Ozone sterilization is not performed during the first high-temperature sterilization stage.

[0040] Step S120: When the temperature inside the disinfection cabinet reaches the first preset temperature threshold, start timing; when the temperature inside the disinfection cabinet reaches the second preset temperature threshold, stop timing; and obtain the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold.

[0041] The first preset temperature threshold is, for example, 35°C, and the second preset temperature threshold is, for example, 50°C. When the temperature inside the disinfection cabinet is detected (e.g., by using a temperature sensor) to reach 35°C, timing begins, for example, the start time is denoted as T. 初始 The temperature inside the disinfection cabinet is continuously monitored. When the temperature inside the disinfection cabinet reaches 50℃, the timing is stopped, and the time of the end of the timing is recorded as T. 结束 The time T taken from when the temperature reaches the first preset temperature threshold to when it reaches the second preset temperature threshold is calculated. 结束 -T 初始 .

[0042] Step S130: Based on the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold, determine whether the current load of the disinfection cabinet is the rated load, the over-rated load, or the under-rated load.

[0043] In one specific implementation, if the duration is greater than or equal to a first preset duration, the current load of the disinfection cabinet is determined to be above the rated load; if the duration is less than the first preset duration but greater than or equal to a second preset duration, the current load of the disinfection cabinet is determined to be at the rated load; if the duration is less than the second preset duration, the current load of the disinfection cabinet is determined to be below the rated load. The first preset duration and / or the second preset duration can be determined experimentally, for example, by experimentally testing the time range taken from reaching the first preset temperature threshold to reaching the second preset temperature threshold when the load inside the disinfection cabinet is at the rated load.

[0044] For example, if the first preset duration is 100 seconds, then the preset duration should be 50 seconds, and T should be calculated. 结束 -T 初始 After determining the difference, a judgment is made; if T... 结束 -T初始 If the time is ≥100s, it is considered an overload; if 50≤T 结束 -T 初始 If the time is less than 100 seconds, it is considered the rated load; if T 结束 -T 初始 If the time is less than 50 seconds, it is considered to be below the rated load.

[0045] Step S140: Enter the second high-temperature sterilization stage. Heat is carried out according to the preset second high-temperature sterilization stage control logic. Based on the current load of the sterilization cabinet, the sterilization cabinet is controlled to execute the corresponding rated load sterilization program, over-rated load sterilization program, or below-rated load sterilization program.

[0046] The preset control logic for the second high-temperature sterilization stage can specifically be: controlling the heating element of the disinfection cabinet to heat according to the rated power.

[0047] Preferably, a disturbance device and / or an exhaust device are provided inside the disinfection cabinet; after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on.

[0048] When the disturbance device is activated, it can agitate the gas inside the disinfection cabinet, increasing the uniformity of gas circulation and / or temperature distribution within the cabinet. When the exhaust device is activated, it can expel the gas from the disinfection cabinet.

[0049] Figure 2 A schematic diagram of the disturbance device and exhaust device according to the present invention is shown. Figure 2 As shown, the disturbance device 1 can be specifically located above the disinfection cabinet. The disturbance device can include a fan, which increases ozone circulation and / or temperature field distribution during high-temperature disinfection. At least one disturbance device is used. Optionally, two or more disturbance devices can be installed inside the disinfection cabinet. The exhaust device 2 can specifically include an exhaust pipe and a check valve. The exhaust pipe can be installed on the side wall of the disinfection cabinet, connecting the internal space of the disinfection cabinet with the external environment. The check valve can be installed on the exhaust pipe, allowing gas inside the disinfection cabinet to be discharged through the exhaust pipe by controlling the check valve to open. At least one exhaust device is used. Optionally, two or more exhaust devices can be installed inside the disinfection cabinet. During the high-temperature stage, because the humidity and moisture inside the disinfection cabinet are relatively high after the tableware has been washed, the exhaust device (check valve) opens to accelerate the discharge of moisture and remove odors from inside the disinfection cabinet. During the ozone sterilization stage, the exhaust device (check valve) closes to prevent ozone leakage.

[0050] In one specific embodiment, if the current load of the disinfection cabinet is determined to be the rated load, the rated load disinfection program is entered, and heating is performed according to the preset second high-temperature sterilization stage control logic. Timing begins when the temperature inside the disinfection cabinet reaches a third preset temperature threshold. When the timing duration reaches the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the ozone disinfection program is entered. When the running time of the ozone disinfection program reaches the preset running time of the ozone disinfection program corresponding to the rated load, the ozone disinfection program ends. Preferably, after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are activated. When the timing duration reaches the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the exhaust device is turned off, and the ozone disinfection program begins. When the ozone disinfection program ends, the disturbance device is turned off.

[0051] For example, after identifying the load during the initial high-temperature sterilization stage, it is determined to be the rated load and enters the rated load disinfection program. Disinfection is performed according to the set second-stage high-temperature disinfection program. Simultaneously, the check valves of the agitator (fan) and exhaust device are automatically opened, and the temperature of the temperature sensor is continuously monitored. When the highest temperature set in the second-stage high-temperature disinfection program (the third preset temperature threshold, for example, 70℃) is reached, timing begins for T. 01 The second stage of high-temperature sterilization will continue according to the disinfection procedure at the rated load capacity, with continuous monitoring of the heating time. The end time will be recorded as T. 02 When the duration T of the second high-temperature sterilization stage disinfection program is detected... 额定高温 (T 额定高温 =T 02 -T 01 When the high-temperature disinfection program for the second high-temperature sterilization stage corresponding to the rated load is ≥ the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. The timing will start at T. 03 The duration of ozone disinfection is continuously monitored, and the ozone disinfection program ends at time T. 04 When the ozone disinfection program is detected to have run for a duration T 额定臭氧 (T 额定臭氧 =T 04 -T 03 When the ozone disinfection program duration corresponding to the rated load is greater than or equal to the specified duration, the ozone disinfection program ends, and ozone degradation begins. Once degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0052] In one specific embodiment, if it is determined that the current load of the disinfection cabinet is below the rated load, a below-rated load disinfection program is entered. Heating is performed according to the preset second high-temperature sterilization stage control logic. When the temperature inside the disinfection cabinet reaches a third preset temperature threshold, timing begins. When the timing duration reaches a first preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, an ozone disinfection program is entered. When the running time of the ozone disinfection program reaches a second preset percentage multiple of the preset running time of the ozone disinfection program corresponding to the rated load, the ozone disinfection program ends. Preferably, after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on. When the timing duration reaches a first preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the exhaust device is turned off, and the ozone disinfection program begins. When the ozone disinfection program ends, the disturbance device is turned off.

[0053] For example, if the first preset percentage is 80% and the second preset percentage is also 80%, after the initial high-temperature sterilization stage identifies the load and determines it to be below the rated load, it enters the below-rated load sterilization program. Sterilization proceeds according to the set second-stage high-temperature sterilization program. Simultaneously, the check valves of the agitator (fan) and exhaust device are automatically opened, and the temperature of the temperature sensor is continuously monitored. When the highest temperature set in the second-stage high-temperature sterilization program (the third preset temperature threshold, for example, 70℃) is reached, timing begins at T1, and the second-stage high-temperature sterilization continues according to the rated load, continuously monitoring the heating time. The end time is T2. When the duration of the second-stage high-temperature sterilization program (T1) is detected... 低额定高温 (T 低额定高温 When (T2-T1) ≥ 80% of the running time of the second high-temperature sterilization stage corresponding to the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. Timing starts at T3, continuously monitoring the ozone disinfection duration. The ozone disinfection program ends at T4. When the running time T of the ozone disinfection program is detected... 高额定臭氧 (T 高额定臭氧 When (T4-T3) ≥ 80% of the ozone disinfection program duration corresponding to the rated load, the ozone disinfection program ends and ozone degradation begins. After degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0054] In one specific embodiment, if it is determined that the current load of the disinfection cabinet is above the rated load, an over-rated load disinfection program is entered. Heating is performed according to the preset second high-temperature sterilization stage control logic. When the temperature inside the disinfection cabinet reaches a third preset temperature threshold, timing begins. When the timing duration reaches a third preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, an ozone disinfection program is entered. When the running time of the ozone disinfection program reaches a fourth preset percentage multiple of the preset running time of the ozone disinfection program corresponding to the rated load, the ozone disinfection program ends. Preferably, after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on. When the timing duration reaches a third preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the exhaust device is turned off, and the ozone disinfection program begins. When the ozone disinfection program ends, the disturbance device is turned off.

[0055] For example, if the third preset percentage is 120% and the fourth preset percentage is 120%, after identifying the load in the initial high-temperature sterilization stage, it is determined that the rated load has been exceeded, and the over-rated load sterilization program is entered. Sterilization is performed according to the set second-stage high-temperature sterilization program. Simultaneously, the check valves of the disturbance device (fan) and exhaust device are automatically opened, and the temperature of the temperature sensing bulb is continuously monitored. When the highest temperature set in the second-stage high-temperature sterilization program (the third preset temperature threshold, for example, 70℃) is reached, timing begins at T5, and the second-stage high-temperature sterilization continues according to the rated load, continuously monitoring the heating time. The end time is T6. When the running time T of the second-stage high-temperature sterilization program is detected... 高额定高温 (T 高额定高温 When (T6-T5) ≥ 120% of the high-temperature program running time of the second high-temperature sterilization stage corresponding to the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. Timing starts at T7, continuously monitoring the ozone disinfection duration. The ozone disinfection program ends at T8. When the ozone disinfection program running time T is detected... 高额定臭氧 (T 高额定臭氧 When (T8-T7) ≥ 120% of the ozone disinfection program duration corresponding to the rated load, the ozone disinfection program ends, and ozone degradation begins. After degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0056] To clearly illustrate the technical solution of the present invention, the execution flow of the control method for the disinfection cabinet provided by the present invention will be described below with reference to a specific embodiment.

[0057] Figure 3 A schematic diagram of the control process for the initial high-temperature sterilization stage according to the present invention is shown. For example... Figure 3As shown, users wash their tableware according to their needs and then put it into the sterilization cabinet, turn on the high-temperature sterilization mode, and begin sterilization.

[0058] First, the initial high-temperature sterilization stage begins. When the temperature sensor inside the disinfection cabinet reaches 35℃, the timing module starts timing, and the time is recorded as T. 初始 Meanwhile, heating continues according to the logic of the initial high-temperature sterilization stage (heating tubes operate at full power, ozone sterilization is not activated), and the temperature of the temperature sensing bulb is continuously monitored. When the temperature of the temperature sensing bulb reaches 50℃, the time is T. 结束 T is calculated simultaneously 结束 -T 初始 The difference:

[0059] 1) If T 结束 -T 初始 If the time is ≥100s, it is determined to be overloaded and the overloaded disinfection procedure will be initiated.

[0060] 2) If 50≤T 结束 -T 初始 If the time is less than 100 seconds, it is determined to be the rated load and enters the rated load disinfection program.

[0061] 2) If T 结束 -T 初始 If the time is less than 50 seconds, it is determined to be below the rated load and enters the below-rated load disinfection procedure.

[0062] Figure 4 A schematic diagram of a below-rated load sterilization process according to the present invention is shown. Figure 4 As shown, after identifying the load in the initial high-temperature sterilization stage, it is determined to be the rated load and enters the rated load disinfection program. Disinfection is carried out according to the set second-stage high-temperature disinfection program. Simultaneously, the disturbance device (fan) and check valve are automatically activated, and the temperature of the temperature sensing bulb is continuously monitored. When the maximum temperature set in the second-stage high-temperature disinfection program is reached, timing begins at T. 01 The second stage of high-temperature sterilization will continue according to the disinfection procedure at the rated load capacity, with continuous monitoring of the heating time. The end time is T. 02 When the duration T of the second-stage disinfection procedure is detected 额定高温 (T 额定高温 =T 02 -T 01 When the second-stage high-temperature disinfection program duration is greater than or equal to the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load, with the timing starting at T. 03 The duration of ozone disinfection is continuously monitored, and the ozone disinfection program ends at time T. 04 When the ozone disinfection program is detected to have run for a duration T 额定臭氧 (T额定臭氧 =T 04 -T 03 The ozone disinfection program duration is greater than or equal to the rated load. After the ozone disinfection program ends, ozone degradation begins. Once degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0063] Figure 5 A schematic diagram of a below-rated load sterilization process according to the present invention is shown. Figure 5 As shown, after identifying the load in the initial high-temperature sterilization stage, it is determined to be below the rated load and enters the below-rated load sterilization program. Sterilization is performed according to the set second-stage high-temperature sterilization program. Simultaneously, the disturbance device (fan) and check valve are automatically activated, and the temperature of the sensing bulb is continuously monitored. When the maximum temperature set in the second-stage high-temperature sterilization program is reached, timing begins at T1, and the second-stage high-temperature sterilization continues according to the rated load, continuously monitoring the heating time. The end time is T2. When the duration of the second-stage sterilization program is detected, the timer is set to T1. 低额定高温 (T 低额定高温 When (T2-T1) ≥ 80% of the second-stage high-temperature disinfection program duration of the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. Timing starts at T3, continuously monitoring the ozone disinfection duration. The ozone disinfection program ends at T4. When the ozone disinfection program duration T is detected... 高额定臭氧 (T 高额定臭氧 =T4-T3)≥80% of the rated load ozone disinfection program duration, the ozone disinfection program ends, ozone degradation begins, and after degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0064] Figure 6 A schematic diagram of the overload sterilization procedure according to the present invention is shown. Figure 6 As shown, after identifying the load during the initial high-temperature sterilization stage, it is determined that the load exceeds the rated load, and the over-rated load sterilization program is initiated. Sterilization proceeds according to the set second-stage high-temperature sterilization program. Simultaneously, the disturbance device (fan) and check valve are automatically activated, and the temperature of the sensing bulb is continuously monitored. When the maximum temperature set for the second-stage high-temperature sterilization program is reached, timing begins at T5, and the second-stage high-temperature sterilization continues according to the rated load sterilization program, continuously monitoring the heating time. The end time is T6. When the duration of the second-stage sterilization program is detected, the timer is stopped. 高额定高温 (T 高额定高温 =T6-T5)≥120% of the second stage high-temperature program duration of the rated load, then the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. The timer starts at T7, and the ozone disinfection duration will be continuously monitored. The ozone disinfection program ends at T8. When the ozone disinfection program duration T is detected...高额定臭氧 (T 高额定臭氧 =T8-T7)≥120% of the rated load ozone disinfection program duration, the ozone disinfection program ends, ozone degradation begins, and after degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0065] Figure 7 This is a structural block diagram of an embodiment of the control device for a disinfection cabinet provided by the present invention. Figure 7 As shown, the control device 100 of the disinfection cabinet includes: a first control unit 110, a timing unit 120, a determining unit 130, and a second control unit 140.

[0066] The first control unit 110 is used to enter the first high-temperature sterilization stage after the sterilization mode is turned on, and start heating according to the preset first high-temperature sterilization stage control logic.

[0067] Specifically, after washing their tableware according to their needs, users place it in the sterilizer and activate the sterilization mode (e.g., by clicking a preset button). The sterilizer then begins sterilization, first entering the first high-temperature sterilization stage, heating according to the preset first high-temperature sterilization stage control logic. This first high-temperature sterilization stage is the initial high-temperature sterilization stage. The preset first high-temperature sterilization stage control logic can specifically be: controlling the heating element of the sterilizer to heat at full power. The heating element can be, for example, a heating element. Ozone sterilization is not performed during the first high-temperature sterilization stage.

[0068] The timing unit 120 is used to start timing when the temperature inside the disinfection cabinet reaches a first preset temperature threshold and to stop timing when the temperature inside the disinfection cabinet reaches a second preset temperature threshold, thereby obtaining the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold.

[0069] The first preset temperature threshold is, for example, 35°C, and the second preset temperature threshold is, for example, 50°C. When the temperature inside the disinfection cabinet is detected (e.g., by using a temperature sensor) to reach 35°C, timing begins, for example, the start time is denoted as T. 初始 The temperature inside the disinfection cabinet is continuously monitored. When the temperature inside the disinfection cabinet reaches 50℃, the timing is stopped, and the time of the end of the timing is recorded as T. 结束 The time T taken from when the temperature reaches the first preset temperature threshold to when it reaches the second preset temperature threshold is calculated. 结束 -T 初始 .

[0070] The determining unit 130 is used to determine whether the current load of the disinfection cabinet is rated load, over-rated load, or below rated load based on the time taken for the disinfection cabinet to reach a second preset temperature threshold from a first preset temperature threshold obtained by the timing unit.

[0071] In one specific implementation, if the duration is greater than or equal to a first preset duration, the current load of the disinfection cabinet is determined to be above the rated load; if the duration is less than the first preset duration but greater than or equal to a second preset duration, the current load of the disinfection cabinet is determined to be at the rated load; if the duration is less than the second preset duration, the current load of the disinfection cabinet is determined to be below the rated load. The first preset duration and / or the second preset duration can be determined experimentally, for example, by experimentally testing the time range taken from reaching the first preset temperature threshold to reaching the second preset temperature threshold when the load inside the disinfection cabinet is at the rated load.

[0072] For example, if the first preset duration is 100 seconds, then the preset duration should be 50 seconds, and T should be calculated. 结束 -T 初始 After determining the difference, a judgment is made; if T... 结束 -T 初始 If the time is ≥100s, it is considered an overload; if 50≤T 结束 -T 初始 If the time is less than 100 seconds, it is considered the rated load; if T 结束 -T 初始 If the time is less than 50 seconds, it is considered to be below the rated load.

[0073] The second control unit 140 is used to enter the second high-temperature sterilization stage, heat according to the preset second high-temperature sterilization stage control logic, and control the sterilizer to execute the corresponding rated load sterilization program, over-rated load sterilization program, or below-rated load sterilization program according to the determined current load of the sterilizer.

[0074] The preset control logic for the second high-temperature sterilization stage can specifically be: controlling the heating element of the disinfection cabinet to heat according to the rated power.

[0075] Preferably, a disturbance device and / or an exhaust device are provided inside the disinfection cabinet; after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on.

[0076] When the disturbance device is activated, it can agitate the gas inside the disinfection cabinet, increasing the uniformity of gas circulation and / or temperature distribution within the cabinet. When the exhaust device is activated, it can expel the gas from the disinfection cabinet.

[0077] Figure 2 A schematic diagram of the disturbance device and exhaust device according to the present invention is shown. Figure 2 As shown, the disturbance device 1 can be specifically installed above the disinfection cabinet. The disturbance device can include a fan, which increases ozone circulation and / or temperature field distribution during high-temperature disinfection. At least one disturbance device is used. Optionally, two or more disturbance devices can be installed inside the disinfection cabinet. The exhaust device can specifically include an exhaust pipe and a check valve. The exhaust pipe can be installed on the side wall of the disinfection cabinet, connecting the internal space of the disinfection cabinet with the external environment. The check valve can be installed on the exhaust pipe, allowing gas inside the disinfection cabinet to be discharged through the exhaust pipe by controlling the check valve to open. At least one exhaust device is used. Optionally, two or more exhaust devices can be installed inside the disinfection cabinet. During the high-temperature stage, because the humidity and moisture inside the disinfection cabinet are relatively high after the tableware has been washed, the exhaust device (check valve) opens to accelerate the discharge of moisture and remove odors from inside the disinfection cabinet. During the ozone sterilization stage, the exhaust device (check valve) closes to prevent ozone leakage.

[0078] In one specific embodiment, if the current load of the disinfection cabinet is determined to be the rated load, the rated load disinfection program is entered, and heating is performed according to the preset second high-temperature sterilization stage control logic. Timing begins when the temperature inside the disinfection cabinet reaches a third preset temperature threshold. When the timing duration reaches the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the ozone disinfection program is entered. When the running time of the ozone disinfection program reaches the preset running time of the ozone disinfection program corresponding to the rated load, the ozone disinfection program ends. Preferably, after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are activated. When the timing duration reaches the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the exhaust device is turned off, and the ozone disinfection program begins. When the ozone disinfection program ends, the disturbance device is turned off.

[0079] For example, after identifying the load during the initial high-temperature sterilization stage, it is determined to be the rated load and enters the rated load disinfection program. Disinfection is performed according to the set second-stage high-temperature disinfection program. Simultaneously, the check valves of the agitator (fan) and exhaust device are automatically opened, and the temperature of the temperature sensor is continuously monitored. When the highest temperature set in the second-stage high-temperature disinfection program (the third preset temperature threshold, for example, 70℃) is reached, timing begins for T. 01 The second stage of high-temperature sterilization will continue according to the disinfection procedure at the rated load capacity, with continuous monitoring of the heating time. The end time will be recorded as T. 02 When the duration T of the second high-temperature sterilization stage disinfection program is detected... 额定高温 (T 额定高温 =T 02 -T 01When the high-temperature disinfection program for the second high-temperature sterilization stage corresponding to the rated load is ≥ the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. The timing will start at T. 03 The duration of ozone disinfection is continuously monitored, and the ozone disinfection program ends at time T. 04 When the ozone disinfection program is detected to have run for a duration T 额定臭氧 (T 额定臭氧 =T 04 -T 03 When the ozone disinfection program duration corresponding to the rated load is greater than or equal to the specified duration, the ozone disinfection program ends, and ozone degradation begins. Once degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0080] In one specific embodiment, if it is determined that the current load of the disinfection cabinet is below the rated load, a below-rated load disinfection program is entered. Heating is performed according to the preset second high-temperature sterilization stage control logic. When the temperature inside the disinfection cabinet reaches a third preset temperature threshold, timing begins. When the timing duration reaches a first preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, an ozone disinfection program is entered. When the running time of the ozone disinfection program reaches a second preset percentage multiple of the preset running time of the ozone disinfection program corresponding to the rated load, the ozone disinfection program ends. Preferably, after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on. When the timing duration reaches a first preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the exhaust device is turned off, and the ozone disinfection program begins. When the ozone disinfection program ends, the disturbance device is turned off.

[0081] For example, if the first preset percentage is 80% and the second preset percentage is also 80%, after the initial high-temperature sterilization stage identifies the load and determines it to be below the rated load, it enters the below-rated load sterilization program. Sterilization proceeds according to the set second-stage high-temperature sterilization program. Simultaneously, the check valves of the agitator (fan) and exhaust device are automatically opened, and the temperature of the temperature sensor is continuously monitored. When the highest temperature set in the second-stage high-temperature sterilization program (the third preset temperature threshold, for example, 70℃) is reached, timing begins at T1, and the second-stage high-temperature sterilization continues according to the rated load, continuously monitoring the heating time. The end time is T2. When the duration of the second-stage high-temperature sterilization program (T1) is detected... 低额定高温 (T 低额定高温 When (T2-T1) ≥ 80% of the running time of the second high-temperature sterilization stage corresponding to the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. Timing starts at T3, continuously monitoring the ozone disinfection duration. The ozone disinfection program ends at T4. When the running time T of the ozone disinfection program is detected...高额定臭氧 (T 高额定臭氧 When (T4-T3) ≥ 80% of the ozone disinfection program duration corresponding to the rated load, the ozone disinfection program ends and ozone degradation begins. After degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0082] In one specific embodiment, if it is determined that the current load of the disinfection cabinet is above the rated load, an over-rated load disinfection program is entered. Heating is performed according to the preset second high-temperature sterilization stage control logic. When the temperature inside the disinfection cabinet reaches a third preset temperature threshold, timing begins. When the timing duration reaches a third preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, an ozone disinfection program is entered. When the running time of the ozone disinfection program reaches a fourth preset percentage multiple of the preset running time of the ozone disinfection program corresponding to the rated load, the ozone disinfection program ends. Preferably, after entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on. When the timing duration reaches a third preset percentage multiple of the preset running time of the second high-temperature sterilization stage corresponding to the rated load, the exhaust device is turned off, and the ozone disinfection program begins. When the ozone disinfection program ends, the disturbance device is turned off.

[0083] For example, if the third preset percentage is 120% and the fourth preset percentage is 120%, after identifying the load in the initial high-temperature sterilization stage, it is determined that the rated load has been exceeded, and the over-rated load sterilization program is entered. Sterilization is performed according to the set second-stage high-temperature sterilization program. Simultaneously, the check valves of the disturbance device (fan) and exhaust device are automatically opened, and the temperature of the temperature sensing bulb is continuously monitored. When the highest temperature set in the second-stage high-temperature sterilization program (the third preset temperature threshold, for example, 70℃) is reached, timing begins at T5, and the second-stage high-temperature sterilization continues according to the rated load, continuously monitoring the heating time. The end time is T6. When the running time T of the second-stage high-temperature sterilization program is detected... 高额定高温 (T 高额定高温 When (T6-T5) ≥ 120% of the high-temperature program running time of the second high-temperature sterilization stage corresponding to the rated load, the check valve will automatically close, and the ozone disinfection program will begin according to the rated load. Timing starts at T7, continuously monitoring the ozone disinfection duration. The ozone disinfection program ends at T8. When the ozone disinfection program running time T is detected... 高额定臭氧 (T 高额定臭氧 When (T8-T7) ≥ 120% of the ozone disinfection program duration corresponding to the rated load, the ozone disinfection program ends, and ozone degradation begins. After degradation is complete, the entire disinfection program ends, the disturbance device is turned off, and the user is notified.

[0084] The present invention also provides a storage medium corresponding to the control method of the disinfection cabinet, wherein a computer program is stored thereon, and the computer program, when executed by a processor, implements the steps of any of the aforementioned methods.

[0085] The present invention also provides a disinfection cabinet corresponding to the control method of the disinfection cabinet, comprising a processor, a memory, and a computer program stored in the memory that can run on the processor, wherein the processor executes the computer program to implement the steps of any of the aforementioned methods.

[0086] The present invention also provides a disinfection cabinet corresponding to the control device of the disinfection cabinet, including the control device of any of the aforementioned disinfection cabinets.

[0087] The present invention also provides a computer program product corresponding to the control method of the disinfection cabinet, including a computer program that, when executed by a processor, implements the steps of any of the aforementioned methods.

[0088] Accordingly, the solution provided by this invention utilizes a disturbance device to accelerate the distribution of ozone and high temperature inside the disinfection cabinet. Simultaneously, a temperature-sensing pack determines the load of tableware to be disinfected, and the disinfection program is intelligently controlled based on the determination result. The added exhaust device improves the disinfection effect, reduces odor generation, and lowers energy consumption. This solution addresses the problems of poor disinfection effect or high energy consumption caused by different user habits; it also solves the problem of poor disinfection effect under ozone or high-temperature disinfection conditions, as well as the problem of odor and poor sterilization effect caused by the inability to timely remove moisture during the high-temperature sterilization process.

[0089] The functions described herein can be implemented in hardware, software executed by a processor, firmware, or any combination thereof. If implemented in software executed by a processor, the functions can be stored as one or more instructions or codes on or transmitted via a computer-readable medium. Other examples and embodiments are within the scope and spirit of this invention and the appended claims. For example, due to the nature of software, the functions described above can be implemented using software executed by a processor, hardware, firmware, hardwired, or any combination thereof. Furthermore, the functional units can be integrated into a single processing unit, or each unit can exist physically separately, or two or more units can be integrated into a single unit.

[0090] In the several embodiments provided in this application, it should be understood that the disclosed technical content can be implemented in other ways. The device embodiments described above are merely illustrative; for example, the division of units can be a logical functional division, and in actual implementation, there may be other division methods. For instance, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the displayed or discussed mutual coupling, direct coupling, or communication connection may be through some interfaces; the indirect coupling or communication connection between units or modules may be electrical or other forms.

[0091] The units described as separate components may or may not be physically separate. Similarly, the components of the control device may or may not be physical units; they may be located in one place or distributed across multiple units. Some or all of the units can be selected to achieve the purpose of this embodiment, depending on actual needs.

[0092] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to related technologies, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, read-only memory (ROM), random access memory (RAM), portable hard drives, magnetic disks, or optical disks.

[0093] The above description is merely an embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of the claims of the present invention.

Claims

1. A control method for a disinfection cabinet, characterized in that, include: When the sterilization mode is turned on, it enters the first high-temperature sterilization stage and starts heating according to the preset first high-temperature sterilization stage control logic. The timing starts when the temperature inside the disinfection cabinet reaches the first preset temperature threshold and ends when the temperature inside the disinfection cabinet reaches the second preset temperature threshold, thereby obtaining the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold. Based on the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold, the current load of the disinfection cabinet is determined to be either the rated load, the over-rated load, or the under-rated load. Entering the second high-temperature sterilization stage, heating is carried out according to the preset second high-temperature sterilization stage control logic, and the sterilization cabinet is controlled to execute the corresponding rated load sterilization program, over-rated load sterilization program, or below-rated load sterilization program according to the determined current load of the sterilization cabinet. Based on the determined current load of the disinfection cabinet, control the disinfection cabinet to execute a corresponding disinfection program below the rated load, including: When the temperature inside the disinfection cabinet reaches the third preset temperature threshold, timing begins. When the timing duration reaches the first preset percentage multiple of the running time of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the preset rated load, the ozone disinfection program is entered. The ozone disinfection program ends when the duration of the ozone disinfection program reaches a second preset percentage multiple of the ozone disinfection program duration corresponding to the preset rated load.

2. The method according to claim 1, characterized in that, The disinfection cabinet is equipped with a disturbance device and / or an exhaust device. When the disturbance device is turned on, it can disturb the gas inside the disinfection cabinet; when the exhaust device is turned on, it can exhaust the gas inside the disinfection cabinet.

3. The method according to claim 1 or 2, characterized in that, Based on the time taken for the temperature inside the disinfection cabinet to rise from a first preset temperature threshold to a second preset temperature threshold, the current load of the disinfection cabinet is determined to be either rated load, over-rated load, or below-rated load, including: If the duration is greater than or equal to the first preset duration, then it is determined that the current load of the disinfection cabinet exceeds the rated load. If the duration is less than the first preset duration and greater than or equal to the second preset duration, then the current load of the disinfection cabinet is determined to be the rated load. If the duration is less than the second preset duration, then it is determined that the current load of the disinfection cabinet is lower than the rated load.

4. The method according to claim 1 or 2, characterized in that, Based on the determined current load of the disinfection cabinet, control the disinfection cabinet to execute the corresponding rated load disinfection program, including: When the temperature inside the disinfection cabinet reaches the third preset temperature threshold, timing begins. When the timing duration reaches the preset running time of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the rated load, the ozone disinfection program is entered. The ozone disinfection program ends when the running time of the ozone disinfection program reaches the preset running time corresponding to the rated load.

5. The method according to claim 1 or 2, characterized in that, Based on the determined current load of the disinfection cabinet, control the disinfection cabinet to execute a corresponding overload disinfection program, including: When the temperature inside the disinfection cabinet reaches the third preset temperature threshold, timing begins. When the timing duration reaches the third preset percentage multiple of the running time of the second high-temperature sterilization stage high-temperature disinfection program corresponding to the preset rated load, the ozone disinfection program is entered. The ozone disinfection program ends when the running time of the ozone disinfection program reaches the fourth preset percentage multiple of the ozone disinfection program running time corresponding to the preset rated load.

6. The method according to claim 4, characterized in that, The disinfection cabinet is equipped with a disturbance device and / or an exhaust device; the method further includes: After entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on; And / or, Before entering the ozone disinfection process, turn off the exhaust device; And / or, After the ozone disinfection process is completed, the disturbance device is turned off.

7. The method according to claim 5, characterized in that, The disinfection cabinet is equipped with a disturbance device and / or an exhaust device; the method further includes: After entering the second high-temperature sterilization stage, the disturbance device and / or the exhaust device are turned on; And / or, Before entering the ozone disinfection process, turn off the exhaust device; And / or, After the ozone disinfection process is completed, the disturbance device is turned off.

8. A control device for a disinfection cabinet, characterized in that, include: The first control unit is used to enter the first high-temperature sterilization stage after the sterilization mode is turned on, and start heating according to the preset first high-temperature sterilization stage control logic. The timing unit is used to start timing when the temperature inside the disinfection cabinet reaches a first preset temperature threshold and to stop timing when the temperature inside the disinfection cabinet reaches a second preset temperature threshold, thereby obtaining the time taken for the temperature inside the disinfection cabinet to rise from the first preset temperature threshold to the second preset temperature threshold. The determining unit is used to determine whether the current load of the disinfection cabinet is rated load, over-rated load, or below-rated load based on the time taken for the disinfection cabinet to reach the second preset temperature threshold from the first preset temperature threshold obtained by the timing unit. The second control unit is used to enter the second high-temperature sterilization stage, heat according to the preset second high-temperature sterilization stage control logic, and control the sterilizer to execute the corresponding rated load sterilization program, over-rated load sterilization program or under-rated load sterilization program according to the current load of the sterilizer. The second control unit, based on the determined current load of the disinfection cabinet, controls the disinfection cabinet to perform corresponding operations. Disinfection procedures below rated load include: Timing begins when the temperature inside the disinfection cabinet reaches the third preset temperature threshold, and continues until the preset rated time is reached. When the load corresponds to a first preset percentage multiple of the second high-temperature sterilization stage high-temperature disinfection program's runtime, ozone is introduced. Disinfection procedures; When the ozone disinfection program runs for the preset rated load, the ozone disinfection program runtime will be reached. The ozone disinfection process ends when the second preset percentage is reached. 。 9. A storage medium, characterized in that, It stores a computer program that, when executed by a processor, implements the steps of the method according to any one of claims 1-7.

10. A disinfection cabinet, characterized in that, It includes a processor, a memory, and a computer program stored in the memory that can run on the processor, wherein the processor executes the program to implement the steps of any of the methods of claims 1-7, or includes the control device as described in claim 8.

11. A computer program product, characterized in that, Includes a computer program that, when executed by a processor, implements the steps of the method according to any one of claims 1-7.

Citation Information

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