Cleaning system, drying control method, drying control system and base station
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-11
- Publication Date
- 2026-08-14
AI Technical Summary
[0003]因此,本发明所要解决的技术问题是传统的清洁系统的烘干模式,使得烘干时间长,能耗大,且烘干效果不理想,不能满足用户的使用需求
[0050]本发明提供的烘干控制方法,通过设置有第一烘干指令和第二烘干指令,使得用户在使用时可选择不同的烘干模式对清洁件进行烘干;具体地,在得到第一烘干指令时,可控制烘干装置以第一预设功率对清洁件实施第一预设时长的第一烘干操作;当得到第二烘干指令时,可控制烘干装置以第二预设功率对清洁件实施第二预设时长的第二烘干操作,或者控制烘干装置对清洁件以第一预设功率实施第一预设时长的第一烘干操作、再控制烘干装置以第二预设功率对清洁件实施第二预设时长的第二烘干操作。其中,第一功率可为较小功率,第二功率可为较大功率,当用户在很短的时间内不需要再次使用清洁设备时,可通过发出第一烘干指令,从而使得烘干装置可通过较小的第一功率进行工作,从而发出的热量相对较小,以对清洁件实行低温烘干,避免高温对清洁件产生损伤,更利于延长清洁件的使用寿命;而当用户急于将清洁件清洁干净后再进行下次清洁时,用户则可发出第二烘干指令,烘干装置可以较高的第二功率进行工作,发出的热量更大,从而可更快地将清洁件烘干。该烘干控制方法使得清洁系统具备更多的烘干功能,用户可根据不同的功能模式合理进行选择,使得清洁系统的烘干更多样化,更能满足用户的使用需求。
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Figure CN117898625B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cleaning technology, specifically to a cleaning system, a drying control method, a drying control system, and a base station. Background Technology
[0002] The cleaning system includes cleaning equipment and base stations adapted to use the equipment. The cleaning equipment cleans the floor using its cleaning components, and some units also have a wet mopping function to improve efficiency. After cleaning, the equipment is placed on the base station, which then cleans the cleaning components, such as roller brushes. These components are often made of soft, bristly material, which remains damp after cleaning or washing, making them prone to bacterial growth. Traditional base stations often use hot air drying, heating the air and using it as a medium to transfer heat to dry the components. However, this heating method has high energy loss, and the heat is transferred gradually from the surface of the roller brush inwards, resulting in uneven temperature distribution, poor drying effect, long drying time, and unsatisfactory results. Users have to wait a considerable amount of time before they can use the equipment again, leading to a poor user experience. Summary of the Invention
[0003] Therefore, the technical problem to be solved by the present invention is that the drying mode of the traditional cleaning system results in long drying time, high energy consumption, and unsatisfactory drying effect, which cannot meet the user's needs.
[0004] To solve the above-mentioned technical problems, the present invention provides a drying control method applied to a cleaning system; the cleaning system includes cleaning equipment and a base station corresponding to and cooperating with the cleaning equipment; the cleaning equipment includes a main body and a cleaning component disposed on the main body; the base station includes a base station main body and a drying device disposed on the base station main body, the drying device corresponding to and cooperating with the cleaning component; the method includes:
[0005] Obtain the drying instruction type for the cleaned item;
[0006] When the first drying command is received, the drying device is controlled to perform a first drying operation on the cleaned part for a first preset duration at a first preset power.
[0007] When a second drying command is received, the drying device is controlled to perform a second drying operation on the cleaned part for a second preset duration at a second preset power, or the drying device is controlled to perform a first drying operation on the cleaned part for a first preset duration at a first preset power, and then the drying device is controlled to perform a second drying operation on the cleaned part for a second preset duration at a second preset power.
[0008] Optionally, the first preset power is less than the second preset power.
[0009] Optionally, the cleaning system further includes a liquid spraying device disposed on the base station body or the device body; prior to obtaining the drying instruction type for the cleaned component, the system includes:
[0010] The spray device is controlled to perform a self-cleaning operation on the cleaning parts for a third preset time.
[0011] Optionally, the cleaning system further includes a liquid spraying device disposed on the base station body or the equipment body; the drying control method further includes:
[0012] When the third drying command is received, the spraying device is controlled to spray liquid onto the cleaned part, and then the drying device is controlled to perform a third drying operation on the cleaned part for a fourth preset duration at a third preset power.
[0013] Optionally, the cleaning system further includes a liquid spraying device disposed on the base station body or the equipment body, the base station further includes a temperature detection device, the temperature detection device being configured corresponding to the cleaning component, and the drying control method further includes:
[0014] When the third drying command is received, the spraying device is controlled to spray liquid onto the cleaned parts, and then the drying device is controlled to work at the third preset power.
[0015] The system acquires the real-time temperature value detected by the temperature detection device. When the real-time temperature value reaches the preset temperature value, the system controls the drying device to stop working.
[0016] Optionally, the preset temperature value is 85°C to 95°C; and / or,
[0017] The third preset power is the same as the second preset power, or the first preset power is less than the third preset power and less than the second preset power.
[0018] Optionally, when a third drying command is received, controlling the spraying device to spray liquid onto the cleaned part, and then controlling the drying device to operate at a third preset power, includes:
[0019] When the third drying command is received during the drying process of the drying device at the first preset power, the liquid spraying device is controlled to spray liquid onto the cleaning part, and then the drying device is adjusted to work at the third preset power.
[0020] Optionally, when a third drying command is received, controlling the spraying device to spray liquid onto the cleaned part and simultaneously controlling the drying device to operate at a third preset power includes:
[0021] When the third drying command is received during the drying process of the drying device at the second preset power, the drying device is first controlled to stop working, then the liquid spraying device is controlled to spray liquid onto the cleaned parts, and then the drying device is adjusted to work at the third preset power.
[0022] Optionally, the base station further includes a temperature detection device, and the control drying device performs a first drying operation on the cleaned item for a second preset duration at a first preset power, including:
[0023] The drying device is controlled to operate at a first preset power. The real-time temperature value detected by the temperature detection device is obtained, and the relationship between the real-time temperature value and the first preset temperature threshold is detected. If the real-time temperature value is greater than the first preset temperature threshold, the operating power of the drying device is reduced. If the real-time temperature value is less than the first preset temperature threshold, the operating power of the drying device is increased, and the first drying operation is maintained for a second preset duration.
[0024] Optionally, the base station further includes a temperature detection device, and the control drying device performs a second drying operation on the cleaned item at a second preset power for a third preset duration, including:
[0025] The drying device's operating power is adjusted to the second preset power value. The real-time temperature value detected by the temperature detection device is obtained, and the relationship between the real-time temperature value and the second preset temperature threshold is detected. If the real-time temperature value is greater than the second preset temperature threshold, the operating power of the drying device is reduced; if the real-time temperature value is less than the second preset temperature threshold, the operating power of the drying device is increased, and the second drying operation is maintained for a third preset duration.
[0026] Optionally, the base station body is provided with a cleaning tank for accommodating cleaning components and a spraying device. The spraying device includes a first pump body disposed on the base station body and a first nozzle disposed on one side of the cleaning tank. The first pump body is adapted to connect the cleaning tank on the base station body and a liquid supply source. The cleaning equipment also includes a cleaning component driving mechanism for driving the cleaning components to rotate.
[0027] The controlled spraying device performs a self-cleaning operation on the cleaning component for a first preset duration, including:
[0028] The first pump body is controlled to start working, spraying the liquid from the liquid supply source onto the cleaning component through the first nozzle, and the cleaning component drive mechanism is controlled to work at the same time. The first pump body and the cleaning component drive mechanism are controlled to work for a first preset time and then stop.
[0029] Optionally, the main body of the equipment is provided with a spraying device, which includes a water tank and a second nozzle on the main body of the equipment, and a second pump body connecting the water tank and the second nozzle. The second nozzle is disposed toward the cleaning component. The cleaning equipment also includes a cleaning component drive mechanism for driving the cleaning component to rotate.
[0030] The controlled spraying device performs a self-cleaning operation on the cleaning component for a first preset duration, including:
[0031] The second pump is controlled to start working, delivering the liquid in the water tank to the second nozzle for spraying onto the cleaning component. At the same time, the cleaning component drive mechanism is controlled to work, and then both the second pump and the cleaning component drive mechanism work for a first preset time before stopping.
[0032] The present invention also provides a drying control system for use in a cleaning system; the cleaning system includes a cleaning device and a base station corresponding to and cooperating with the cleaning device; the cleaning device includes a device body and a cleaning component disposed on the device body; the base station includes a base station body and a drying device disposed on the base station body, the drying device corresponding to and cooperating with the cleaning component;
[0033] The drying control system includes:
[0034] The drying instruction acquisition module is used to acquire drying instructions issued by the user and determine the instruction information;
[0035] The first drying instruction control module is communicatively connected to the drying instruction acquisition module. When the acquired instruction information is a first drying instruction, it controls the drying device to perform a first drying operation on the cleaned part for a second preset duration at a first preset power.
[0036] The second drying instruction control module is communicatively connected to the drying instruction acquisition module. When the acquired instruction information is the second drying instruction, it controls the drying device to perform a second drying operation on the cleaning part for a third preset duration at a second preset power, or controls the drying device to perform a first drying operation on the cleaning part for a second preset duration at a first preset power, and then controls the drying device to perform a second drying operation on the cleaning part for a third preset duration at a second preset power.
[0037] The present invention also provides a base station, comprising:
[0038] The base station body is provided with a cleaning tank, which is suitable for housing cleaning components of cleaning equipment.
[0039] A drying device, installed on the base station, is suitable for drying the cleaned parts located in the cleaning tank;
[0040] A controller, electrically connected to the drying device, wherein the controller is used for:
[0041] Obtain the drying instruction type for the cleaned item;
[0042] When the first drying command is received, the drying device is controlled to perform a first drying operation on the cleaned part for a second preset duration at a first preset power.
[0043] When a second drying command is received, the drying device is controlled to perform a second drying operation on the cleaned part for a third preset duration at a second preset power, or the drying device is controlled to perform a first drying operation on the cleaned part for a second preset duration at a first preset power, and then the drying device is controlled to perform a second drying operation on the cleaned part for a third preset duration at a second preset power.
[0044] Optionally, the base station further includes a liquid spraying device, which includes a first pump body disposed on the main body of the base station and a first nozzle disposed on one side of the cleaning tank. The first pump body is adapted to connect the cleaning tank on the main body of the base station to a liquid supply source.
[0045] Optionally, the base station further includes a temperature detection device for detecting the temperature of the cleaning components located in the cleaning tank.
[0046] Optionally, the temperature detection device includes a temperature sensor located on one side of the cleaning tank, and the temperature sensor is electrically connected to the controller.
[0047] Optionally, the drying device includes an infrared generator located on one side of the cleaning tank, with the emitting surface of the infrared generator facing inwards into the cleaning tank.
[0048] The present invention also provides a cleaning system, including cleaning equipment and the aforementioned base station.
[0049] The technical solution provided by this invention has the following advantages:
[0050] The drying control method provided by this invention allows users to select different drying modes to dry the cleaned parts by setting a first drying command and a second drying command. Specifically, when the first drying command is received, the drying device can be controlled to perform a first drying operation on the cleaned parts for a first preset duration at a first preset power. When the second drying command is received, the drying device can be controlled to perform a second drying operation on the cleaned parts for a second preset duration at a second preset power, or the drying device can be controlled to perform a first drying operation on the cleaned parts for a first preset duration at a first preset power, and then the drying device can be controlled to perform a second drying operation on the cleaned parts for a second preset duration at a second preset power. The system features a first power setting (lower power) and a second power setting (higher power). When the user doesn't need to use the cleaning equipment again for a short period, a first drying command can be issued, causing the drying device to operate at a lower power. This results in less heat generation, allowing for low-temperature drying of the cleaned items and preventing damage from high temperatures, thus extending their lifespan. Conversely, when the user needs to clean the items quickly before the next cleaning cycle, a second drying command can be issued. This allows the drying device to operate at a higher power, generating more heat and drying the items faster. This drying control method provides the cleaning system with more drying functions, allowing users to choose the appropriate mode for different needs, making the drying process more versatile and better meeting user requirements. Attached Figure Description
[0051] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0052] Figure 1 This is a schematic diagram of a structure of an embodiment of the cleaning system provided by the present invention;
[0053] Figure 2 for Figure 1 A schematic diagram of the cleaning equipment described herein;
[0054] Figure 3 This is a schematic flowchart of an embodiment of a drying control method provided by the present invention;
[0055] Figure 4 for Figure 3 A flowchart illustrating the steps of another embodiment of the drying control method described herein;
[0056] Figure 5This is a simplified block diagram illustrating the structure of the drying control system provided by the present invention.
[0057] Explanation of reference numerals in the attached figures:
[0058] 100-Cleaning system; 1-Cleaning equipment; 11-Equipment body; 12-Cleaning component; 13-Water tank; 14-Second pump body; 2-Base station; 21-Base station body; 211-Washing tank; 22-First pump body; 23-Drying device; 3-Drying control system; 31-Drying command acquisition module; 32-First drying command control module; 33-Second drying command control module; 4-Temperature detection device. Detailed Implementation
[0059] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. The present invention will be described in detail below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of the present invention can be combined with each other.
[0060] It should be noted that the terms "first," "second," etc., in the specification, claims, and drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.
[0061] In this invention, unless otherwise stated, directional terms such as "upper," "lower," "top," and "bottom" are generally used in relation to the direction shown in the accompanying drawings, or in relation to the vertical, perpendicular, or gravitational direction of the component itself; similarly, for ease of understanding and description, "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not intended to limit this invention.
[0062] Example 1
[0063] This embodiment provides a base station 2. Please refer to [link / reference]. Figures 1 to 2The base station 2 includes a base station body 21, a drying device 23, and a controller. The base station body 21 is provided with a cleaning tank 211, which is adapted to accommodate the cleaning component 12 of the cleaning equipment 1 for cleaning. The drying device 23 is provided on the base station body 21 and is adapted to dry the cleaning component 12 located in the cleaning tank. The controller is electrically connected to the drying device 23, wherein the controller is used to obtain the drying instruction type for the cleaning component 12. When a first drying instruction is obtained, the controller controls the drying device 23 to perform a first drying operation on the cleaning component 12 with a first preset power for a second preset duration. When a second drying instruction is obtained, the controller controls the drying device 23 to perform a second drying operation on the cleaning component 12 with a second preset power for a third preset duration, or controls the drying device 23 to perform a first drying operation on the cleaning component 12 with a first preset power for a second preset duration for a second preset duration, and then controls the drying device 23 to perform a second drying operation on the cleaning component 12 with a second preset power for a third preset duration for a second preset duration. The controller can control the drying device 23 to perform different drying operations, making the drying mode of the base station 2 more diversified, thus better meeting the user's needs.
[0064] Preferably, the base station 2 further includes a liquid spraying device, which includes a first pump body 22 and a first nozzle. The first pump body 22 is located inside the base station body 21. The first pump body 22 is adapted to connect the first nozzle and the liquid supply source. The liquid supply source can be a container filled with liquid, such as a water tank 13 or a water bag, or a faucet, so that the pump body can be directly connected to the faucet to pump the liquid into the first nozzle. The first nozzle is located on one side of the cleaning tank 211. When the cleaning component 12 is placed in the cleaning tank 211, the first nozzle is positioned towards the cleaning component 12 so that the liquid can be sprayed onto the cleaning component 12 to wet the cleaning component 12 or to clean the cleaning component 12.
[0065] Furthermore, such as Figure 1 As shown, the base station 2 also includes a temperature detection device 4, which is used to detect the temperature of the cleaning part 12 located in the cleaning tank 211, so as to better control the operation of the drying device 23.
[0066] Preferably, the temperature detection device 4 includes a temperature sensor located on one side of the cleaning tank 211, and the temperature sensor is electrically connected to the controller. The temperature on the cleaning part 12 can be detected in real time by the temperature sensor, and the detection result is fed back to the controller. The power of the drying device 23 can be adjusted by the controller, so that the drying effect of the cleaning part 12 is better.
[0067] For example, during the first drying operation, the power of the drying device 23 can be controlled at a first power level. The temperature value detected by the temperature sensor is fed back to the controller. The controller can compare the real-time detected temperature with a first preset temperature threshold. If the real-time detected temperature is greater than the first preset temperature threshold, the controller can reduce the operating power of the drying device 23, thereby lowering the drying temperature. If the real-time detected temperature is less than the first preset temperature threshold, the controller can increase the operating power of the drying device 23 to increase the drying temperature, so that the drying temperature of the cleaning part 12 is maintained at the first preset temperature threshold, achieving constant temperature drying of the cleaning part 12, resulting in a more uniform baking temperature and better drying effect. Preferably, the first preset temperature threshold can be 55°C to 60°C. Low-temperature drying makes the cleaning part 12 less prone to damage and helps to extend the service life of the cleaning part 12.
[0068] Similarly, during the second drying operation, the power of the drying device 23 can be adjusted to a second power value. The temperature value detected by the temperature sensor is fed back to the controller. The controller can compare the real-time detected temperature with a second preset temperature threshold. If the real-time detected temperature is greater than the second preset temperature threshold, the controller can reduce the operating power of the drying device 23 to lower the drying temperature. If the real-time detected temperature is less than the second preset temperature threshold, the controller can increase the operating power of the drying device 23 to increase the drying temperature, so that the drying temperature of the cleaning part 12 is maintained at the first preset temperature threshold, thereby quickly and evenly drying the cleaning part 12. Preferably, the second preset temperature threshold is 100°C to 110°C, which allows for high-temperature and rapid drying, saving drying time.
[0069] Preferably, the drying device 23 is configured as an infrared generator, which is located on one side of the cleaning tank 211 with its emitting surface facing inwards. This allows for better irradiation of the cleaning part 12 when it is placed in the cleaning tank 211, thus drying the part 12. Furthermore, because infrared light has a longer wavelength, it has stronger penetrating power, allowing the emitted infrared light to penetrate deeper into the cleaning part 12 from its surface, resulting in faster drying. Infrared light also has strong sterilization capabilities, allowing for rapid drying and sterilization of the cleaning part 12 simultaneously, leading to higher cleanliness and a better user experience.
[0070] Example 2
[0071] This embodiment provides a cleaning system 100, which includes the base station 2 described above and a cleaning device 1 used in conjunction with the base station 2.
[0072] Among them, combined Figure 1 and Figure 2As shown, the cleaning device 1 includes a main body 11 and a cleaning component 12 disposed on the main body 11. The cleaning component 12 can be a roller brush, a rag, etc. The surface to be cleaned is cleaned by rotating the cleaning component 12 and rubbing it against the surface to be cleaned. Of course, the cleaning device 1 also includes a cleaning component driving mechanism, which is connected to the cleaning component 12 and is used to drive the cleaning component 12 to rotate.
[0073] Furthermore, the cleaning device 1 or the base station 2 is also equipped with a spraying device, which can be used to clean the cleaning component 12.
[0074] Specifically, in one embodiment, the spraying device includes a first pump body 22 and a first nozzle disposed on the base station body 21. The first pump body 22 is connected to the first nozzle and the liquid supply source. When the cleaning device 1 has finished cleaning, it can be placed on the base station 2, so that the cleaning component 12 of the cleaning device 1 is housed in the cleaning tank 211 of the base station 2. At this time, the first pump body 22 can be activated, so that the first nozzle can spray liquid (which can be cleaning fluid or clean water) toward the cleaning component 12 in the cleaning tank 211. At the same time, the cleaning component driving mechanism drives the cleaning component 12 to rotate, so that the liquid washes away the stains on the cleaning component 12, thereby realizing the self-cleaning operation of the cleaning component 12.
[0075] In another embodiment, the spraying device may include a second pump body 14 and a second nozzle disposed on the device body 11. A water tank 13 is also provided on the device body 11. The second pump body 14 connects the second nozzle and the water tank 13. When the cleaning device 1 has finished cleaning, it can be placed on the base station 2, so that the cleaning component 12 of the cleaning device 1 is housed in the cleaning tank 211 of the base station 2. At this time, the second pump body 14 can be activated, so that the second nozzle can spray liquid (which can be cleaning fluid or clean water) toward the cleaning component 12. Figure 2 As indicated by the dashed arrow, the clean water in the water tank 13 is pumped to the cleaning component 12 by the second pump 14 for cleaning. The resulting wastewater is then pumped into the wastewater tank 13 on the main body 11 of the cleaning device 1 for storage. Simultaneously, the cleaning component drive mechanism drives the cleaning component 12 to rotate, causing the liquid to wash away the dirt on the cleaning component 12, thus achieving self-cleaning of the cleaning component 12. Furthermore, when the cleaning device 1 is placed on the base station 2, the base station 2 can supply liquid to the water tank 13 on the cleaning device 1 via the first pump 22. Figure 1 The dashed arrow indicates the direction of water flow, used to replenish the liquid used in the cleaning process.
[0076] It is understood that the base station 2 is also equipped with an operation button or a signal receiving module. The operation button or signal receiving module is electrically connected to the controller of the base station 2. After the self-cleaning operation is completed, the user can adjust the operation button or send a signal (such as a voice signal or a remote control signal). The controller can control the drying device 23 to work according to the instructions issued by the user, so as to enter the first drying operation or the second drying operation. The specific working mode has been described in detail in the above embodiment and will not be repeated here.
[0077] In another embodiment, the self-cleaning operation can also be performed after a user issues a command. For example, after receiving a first drying command, base station 2 can first perform a self-cleaning operation, and then control the drying device 23 to start working after the self-cleaning operation is completed, thereby proceeding with the subsequent drying steps. At this time, when the spraying device is installed on the cleaning device 1, the cleaning device 1 can be provided with a connector electrically connected to the controller of base station 2. When the cleaning device 1 is placed on base station 2, the connector is connected to the controller, and the controller can control the spraying device on the cleaning device 1 to start working, thereby realizing the self-cleaning operation.
[0078] Preferably, the above-mentioned operation buttons can be provided in multiple ways, or the above-mentioned signal receiving module can recognize multiple different signal commands, so that multiple operation buttons can be used to start the drying device 23 to enter different drying modes, or multiple signal modules can start the drying device 23 to enter different drying modes when they receive different signal commands.
[0079] Example 3
[0080] This embodiment provides a drying control method applied to a cleaning system 100. The cleaning system 100 includes a cleaning device 1 and a base station 2 corresponding to and cooperating with the cleaning device 1; the cleaning device 1 includes a device body 11 and a cleaning component 12 disposed on the device body 11; the base station 2 includes a base station body 21 and a drying device 23 disposed on the base station body 21, the drying device 23 corresponding to and cooperating with the cleaning component 12;
[0081] Specifically, such as Figure 3 As shown, the drying control method provided in this embodiment includes the following steps:
[0082] S100, Obtain the drying instruction type for cleaning part 12;
[0083] S200: When the first drying command is received, the drying device 23 is controlled to perform a first drying operation on the cleaning part 12 for a first preset duration with a first preset power.
[0084] S300. When a second drying command is received, the drying device 23 is controlled to perform a second drying operation on the cleaning component 12 for a second preset duration with a second preset power, or the drying device 23 is controlled to perform a first drying operation on the cleaning component 12 for a first preset duration with a first preset power, and then the drying device 23 is controlled to perform a second drying operation on the cleaning component 12 for a second preset duration with a second preset power.
[0085] When cleaning component 12 needs to be cleaned, the drying device 23 can be controlled to enter different drying modes based on the type of drying command issued by the user (such as different voice commands or different button commands) issued to the cleaning component 12. This makes the drying methods more diversified, allowing for the selection of more suitable drying methods under different scenario conditions. On the one hand, it can effectively save energy and protect the cleaning component 12, and on the other hand, it can achieve rapid drying. It is more user-friendly and allows for reasonable selection based on user needs.
[0086] In one embodiment, upon receiving a second drying command, the drying device 23 can be directly controlled to operate at a second preset power, so that the first drying operation and the second drying operation are two different heating temperatures for heating the cleaning part 12.
[0087] In another embodiment, upon receiving the second drying command, the cleaning system 100 can automatically complete the first drying operation first, and then adjust the power of the drying device 23 to operate at the second power for the second preset duration. The purpose is to first dry the cleaning part 12 at a low temperature, and then sterilize the cleaning part 12 at a high temperature after the cleaning part 12 is dry. This results in a better drying effect and can sterilize the cleaning part 12, while avoiding damage to the cleaning part 12 caused by prolonged high-temperature drying.
[0088] Preferably, the first power is less than the second power, allowing the drying device 23 to operate at different power levels. This allows for low-temperature drying at lower power, better protecting the cleaning component 12 from high-temperature damage, while higher power enables high-temperature drying, improving drying speed and sterilizing the cleaning component 12. For example, if the user does not need to use the cleaning device 1 again in a short time, a first drying command can be issued, causing the drying device 23 to operate at a lower power, generating less heat for low-temperature drying of the cleaning component 12, preventing damage and extending its lifespan. Conversely, if the user needs to clean the cleaning component 12 quickly before the next cleaning, a second drying command can be issued, allowing the drying device 23 to operate at a higher power, generating more heat for faster drying. This drying control method provides the cleaning system 100 with more drying functions, allowing users to choose the appropriate mode, making the drying capabilities of the cleaning system 100 more diverse and better meeting user needs.
[0089] Furthermore, when the cleaning system 100 also includes a liquid spraying device disposed on the base station body 21 or on the equipment body 11, such as Figure 4 As shown, before step S100 above, the following steps may also be included:
[0090] S1. Control the spraying device to perform a self-cleaning operation on the cleaning component 12 for a third preset duration.
[0091] The spraying device can be used to clean the cleaning component 12. The spraying device automatically stops working after a third preset time, thus completing the self-cleaning operation of the cleaning component 12. After the cleaning component 12 is kept clean, a drying operation is then performed. The third preset time can be set according to the type or size of the cleaning component 12, and is not specifically limited here.
[0092] It is understandable that step S1 described above can also be located after obtaining the drying instruction type for the cleaning component 12. Specifically, when a first drying instruction is received, the spraying device can be controlled to perform a self-cleaning operation on the cleaning component 12 for a third preset duration first, and then the drying device 23 can be controlled to perform a first drying operation on the cleaning component 12 for a first preset duration at a first preset power. Similarly, when a second drying instruction is received, the spraying device can be controlled to perform a self-cleaning operation on the cleaning component 12 for a third preset duration first, and then the drying device 23 can be controlled to perform a second drying operation on the cleaning component 12 for a second preset duration at a second preset power, or the drying device 23 can be controlled to perform a first drying operation on the cleaning component 12 for a first preset duration at a first preset power, and then the drying device 23 can be controlled to perform a second drying operation on the cleaning component 12 for a second preset duration at a second preset power. The user only needs to issue one instruction during operation, and the cleaning system 100 can perform the corresponding cleaning and drying operations without having to operate the cleaning system multiple times, making it more convenient to use.
[0093] Furthermore, the cleaning system 100 also has a third drying function; specifically, the drying control method further includes:
[0094] S410. When the third drying command is received, the spraying device is controlled to spray liquid onto the cleaning part 12, and the drying device 23 is controlled to perform a third drying operation on the cleaning part 12 with a third preset power for a fourth preset duration.
[0095] When the cleaning system 100 receives the third drying command, it can first control the spraying device to spray liquid onto the cleaning part 12 to wet the cleaning part 12, and then control the drying device 23 to perform a third drying operation on the cleaning part 12 with a third preset power for a fourth preset duration. The purpose of this third drying operation is not to dry the cleaning part 12, but to heat the cleaning part 12 so that the cleaning part 12 can be hot-dryed, thereby improving the cleaning efficiency.
[0096] The control parameters for the drying device 23 to heat the cleaned part 12 are not limited to being controlled by time. In another embodiment, the above-mentioned drying control method further includes:
[0097] S421. When the third drying command is received, control the spraying device to spray liquid onto the cleaning part 12, and then control the drying device 23 to work at the third preset power.
[0098] S422. Obtain the real-time temperature value detected by the temperature detection device 4. When the real-time temperature value reaches the preset temperature value, control the drying device 23 to stop working.
[0099] Upon receiving the third drying instruction, after the cleaning component 12 is moistened by the spray device, the drying device 23 can be turned on to heat the cleaning component 12. By acquiring the real-time temperature value detected by the temperature detection device 4, when the real-time temperature value reaches the preset temperature value, the drying device 23 is controlled to stop working, so that the cleaning component 12 can be removed from the base station 2 after reaching the preset temperature value for hot cleaning operation, which is used to clean stubborn stains and achieves higher cleaning efficiency.
[0100] The preset temperature value is 85° to 95°. Preferably, the preset temperature value can be 85°, 86°, 87°, 88°, 89°, 90°, 91°, 92°, 93°, 94°, or 95°, so that the high-temperature cleaning component 12 can more easily clean stubborn stains, and the temperature will not drop too quickly, so as to maintain a better cleaning time and cleaning effect.
[0101] Furthermore, the third preset power can be the same as the second preset power, making the adjustment of the drying device 23 more convenient. Alternatively, the third preset power can also be located between the first preset power and the second preset power, such that the first preset power is less than the third preset power, which is less than the second preset power.
[0102] Furthermore, the aforementioned third drying function can respond during the execution of the first drying operation and the second drying operation. Specifically, step S421 includes:
[0103] S4211. When the third drying command is received during the drying process of the drying device 23 at the first preset power, the liquid spraying device is controlled to spray liquid onto the cleaning component 12, and then the drying device 23 is adjusted to work at the third preset power.
[0104] Alternatively, step S421 above may include:
[0105] S4212. When the third drying command is received during the drying process of the drying device 23 at the second preset power, the drying device 23 is first controlled to stop working, then the liquid spraying device is controlled to spray liquid onto the cleaning part 12, and then the drying device 23 is adjusted to work at the third preset power.
[0106] That is, when the cleaning system 100 is performing the first drying operation or the second drying operation, if the user needs to perform the third drying operation, the first drying operation or the second drying operation can be interrupted and the third drying operation can be directly started, making it more convenient for the user to use the cleaning component 12 when they urgently need to clean.
[0107] Furthermore, when a temperature detection device 4 is installed on base station 2, the above step S200 specifically includes:
[0108] S210. Control the drying device 23 to operate at a first preset power, obtain the real-time temperature value detected by the temperature detection device 4, and detect the relationship between the real-time temperature value and the first preset temperature threshold. If the real-time temperature value is greater than the first preset temperature threshold, adjust the working power of the drying device 23 to decrease; if the real-time temperature value is less than the first preset temperature threshold, adjust the working power of the drying device 23 to increase, and maintain the first drying operation for a second preset duration.
[0109] The temperature detection device 4 can detect the temperature on the cleaning part 12 in real time, and compare the real-time detected temperature value with the first preset temperature threshold. The power of the drying device 23 can be adjusted according to the comparison result to ensure that the cleaning part 12 is in a constant temperature drying state, so that the temperature of the cleaning part 12 is more consistent and the drying effect is better.
[0110] The first preset temperature threshold is 55°C to 60°C. Low-temperature drying makes the cleaning part 12 less prone to damage and helps extend its service life. Preferably, the first preset temperature threshold can be 55°C, 56°C, 57°C, 58°C, 59°C, or 60°C. The moderate temperature ensures that the drying time is not too slow and better protects the cleaning part 12.
[0111] When a temperature detection device 4 is installed on base station 2, the above step S300 specifically includes:
[0112] S310. Adjust the working power of the drying device 23 to the second preset power value, obtain the real-time temperature value detected by the temperature detection device 4, and detect the relationship between the real-time temperature value and the second preset temperature threshold. If the real-time temperature value is greater than the second preset temperature threshold, adjust the working power of the drying device 23 to decrease; if the real-time temperature value is less than the second preset temperature threshold, adjust the working power of the drying device 23 to increase, and maintain the second drying operation for the third preset duration.
[0113] The temperature detection device 4 can detect the temperature on the cleaning part 12 in real time, and compare the real-time detected temperature value with the second preset temperature threshold. The power of the drying device 23 can be adjusted according to the comparison result to ensure that the cleaning part 12 is in a constant temperature drying state, so that the temperature of the cleaning part 12 is more consistent and the drying effect is better.
[0114] The second preset temperature threshold is 100° to 110°, which enables high-temperature and rapid drying and saves drying time. Preferably, the first preset temperature threshold can be 100°, 102°, 104°, 105°, 108° and 110°, which allows for faster drying and better protection of the cleaning part 12.
[0115] In one embodiment, when the spraying device is installed on the base station 2, the spraying device includes a first pump body 22 and a first nozzle. The first pump body 22 is adapted to connect the first nozzle and the liquid supply source. A cleaning tank 211 for accommodating the cleaning component 12 is provided on the base station body 21. The first nozzle is located on one side of the cleaning tank 211. The cleaning device 1 also includes a cleaning component driving mechanism for driving the cleaning component 12 to rotate. The first pump body 22 can deliver the cleaning liquid (such as detergent or water) from the liquid supply source to the first nozzle to spray onto the cleaning component 12 located in the cleaning tank 211, thereby rinsing the cleaning component 12 with the sprayed cleaning liquid. Moreover, during the cleaning process, the cleaning component 12 can also rotate under the drive of the cleaning component driving mechanism, so that the cleaning effect is consistent throughout the cleaning component 12.
[0116] Specifically, the steps of the above-mentioned control spray device performing a self-cleaning operation on the cleaning component 12 for a first preset duration include:
[0117] The first pump body 22 is controlled to start working, spraying the liquid from the liquid supply source onto the cleaning component 12 through the first nozzle, and at the same time, the cleaning component drive mechanism is controlled to work, and the first pump body 22 and the cleaning component drive mechanism are controlled to work for a first preset time before stopping.
[0118] In another embodiment, when the spraying device is provided on the cleaning device 1, the spraying device includes a water tank 13 and a second nozzle provided on the main body 11 of the device, and a second pump body 14 connecting the water tank 13 and the second nozzle. The second nozzle is disposed toward the cleaning component 12. The cleaning device 1 also includes a cleaning component drive mechanism for driving the cleaning component 12 to rotate.
[0119] At this time, the steps of the above-mentioned control spray device performing a self-cleaning operation on the cleaning component 12 for a first preset duration include:
[0120] The second pump body 14 is controlled to start working, and the liquid in the water tank 13 is delivered to the second nozzle to be sprayed onto the cleaning component 12. At the same time, the cleaning component drive mechanism is controlled to work, and the second pump body 14 and the cleaning component drive mechanism are controlled to work for a first preset time before stopping.
[0121] The self-cleaning operation of the cleaning component 12 is achieved through the spraying of the liquid spraying device and the rotation of the cleaning component 12 itself, resulting in a better self-cleaning effect.
[0122] Example 4
[0123] This embodiment provides a drying control system 3, which is applied to a cleaning system 100. The cleaning system 100 includes a cleaning device 1 and a base station 2 that corresponds to and cooperates with the cleaning device 1. The cleaning device 1 includes a device body 11 and a cleaning component 12 disposed on the device body 11. The base station 2 includes a base station body 21 and a drying device 23 disposed on the base station body 21, and the drying device 23 corresponds to and cooperates with the cleaning component 12.
[0124] Specifically, in combination Figure 5 As shown, the drying control system 3 includes:
[0125] The drying instruction acquisition module 31 is used to acquire the drying instruction issued by the user and determine the instruction information;
[0126] The first drying instruction control module 32 is communicatively connected to the drying instruction acquisition module 31. When the acquired instruction information is the first drying instruction, it controls the drying device 23 to perform a first drying operation on the cleaning part 12 for a second preset duration with a first preset power.
[0127] The second drying instruction control module 32 is communicatively connected to the drying instruction acquisition module 31. When the acquired instruction information is a second drying instruction, it controls the drying device 23 to perform a second drying operation on the cleaning component 12 for a third preset duration at a second preset power, or controls the drying device 23 to perform a first drying operation on the cleaning component 12 for a second preset duration at a first preset power, and then controls the drying device 23 to perform a second drying operation on the cleaning component 12 for a third preset duration at a second preset power.
[0128] Furthermore, the cleaning system 100 also includes a spraying device disposed on the base station body 21 or the device body 11, so that the cleaning component 12 can be self-cleaned by the spraying device before obtaining the drying instruction type for the cleaning component 12.
[0129] Alternatively, the aforementioned first drying instruction control module 32 can also be used to, upon receiving the first drying instruction, first control the spraying device to perform a self-cleaning operation on the cleaning component 12 for a third preset duration, and then control the drying device 23 to perform a first drying operation on the cleaning component 12 for a second preset duration with a first preset power.
[0130] Alternatively, the aforementioned second drying command control module 32 can also be used to, upon receiving the second drying command, first control the spraying device to perform a self-cleaning operation on the cleaning component 12 for a third preset duration, and then control the drying device 23 to perform a second drying operation on the cleaning component 12 for a third preset duration at a second preset power; or control the drying device 23 to perform a first drying operation on the cleaning component 12 for a second preset duration at a first preset power, and then control the drying device 23 to perform a second drying operation on the cleaning component 12 for a third preset duration at a second preset power.
[0131] Furthermore, the drying control system 3 also includes a third drying command control module, which is communicatively connected to the drying command acquisition module 31. When a third drying command is received, the module controls the spraying device to spray liquid onto the cleaning part 12, and then controls the drying device 23 to perform a third drying operation on the cleaning part 12 for a fourth preset duration at a third preset power.
[0132] In addition, a temperature detection device 4 is also provided on the base station 2. The third drying command control module can be used to control the spraying device to spray liquid onto the cleaning part 12 when a third drying command is received, and then control the drying device 23 to work at the third preset power; obtain the real-time temperature value detected by the temperature detection device 4, and control the drying device 23 to stop working when the real-time temperature value reaches the preset temperature value.
[0133] Furthermore, when a temperature detection device 4 is provided on the base station 2, the first drying command control module 32 can be used to control the drying device 23 to operate at a first preset power, obtain the real-time detected temperature value of the temperature detection device 4, and detect the relationship between the real-time detected temperature value and the first preset temperature threshold. If the real-time detected temperature value is greater than the first preset temperature threshold, the operating power of the drying device 23 is reduced; if the real-time detected temperature value is less than the first preset temperature threshold, the operating power of the drying device 23 is increased, and the first drying operation is maintained for a second preset duration.
[0134] The second drying instruction control module 32 can be used to adjust the working power of the drying device 23 to the second preset power value, obtain the real-time temperature value detected by the temperature detection device 4, detect the relationship between the real-time temperature value and the second preset temperature threshold. If the real-time temperature value is greater than the second preset temperature threshold, the working power of the drying device 23 is reduced; if the real-time temperature value is less than the second preset temperature threshold, the working power of the drying device 23 is increased, and the second drying operation is maintained for a third preset duration.
[0135] The drying control system 3 described in this embodiment corresponds to the drying control method described above. The functions of each module in the drying control system 3 in this embodiment are described in detail in the corresponding method embodiments, and will not be repeated here.
[0136] Furthermore, the present invention also proposes a computer-readable storage medium storing computer-executable instructions, which, when executed by a processor, are used to implement all or part of the method steps of the robot control method described above.
[0137] The present invention can implement all or part of the processes in the above methods, or it can be accomplished by a computer program instructing related hardware. The computer program can be stored in a computer-readable storage medium, and when executed by a processor, it can implement the steps of the various method embodiments described above. The computer program includes computer program code, which can be in the form of source code, object code, executable file, or some intermediate form. The computer-readable medium can include: any entity or device capable of carrying computer program code, recording media, USB flash drive, portable hard drive, magnetic disk, optical disk, computer memory, read-only memory (ROM), random access memory (RAM), electrical carrier signals, telecommunication signals, and software distribution media, etc. It should be noted that the content included in the computer-readable medium can be appropriately added or removed according to the requirements of legislation and patent practice in the jurisdiction. For example, in some jurisdictions, according to legislation and patent practice, the computer-readable medium does not include electrical carrier signals and telecommunication signals.
[0138] Based on the same inventive concept, embodiments of this application also provide an electronic device, including a memory and a processor. The memory stores a computer program that runs on the processor. When the processor executes the computer program, it implements all or part of the method steps described above.
[0139] The processor can be a Central Processing Unit (CPU), or other general-purpose processors, digital signal processors (DSPs), application-specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. A general-purpose processor can be a microprocessor or any conventional processor. The processor is the control center of the computer device, connecting all parts of the computer device through various interfaces and lines.
[0140] Memory can be used to store computer programs and / or models. The processor performs various functions of the computer device by running or executing the computer programs and / or models stored in the memory, and by accessing data stored in the memory. Memory can primarily include a program storage area and a data storage area. The program storage area can store the operating system and at least one application program required for a function (e.g., sound playback, image playback, etc.); the data storage area can store data created based on the use of the mobile phone (e.g., audio data, video data, etc.). Furthermore, memory can include high-speed random access memory, and can also include non-volatile memory, such as hard disks, RAM, plug-in hard disks, smart media cards (SMC), secure digital cards (SD cards), flash cards, at least one disk storage device, flash memory device, or other volatile solid-state storage devices.
[0141] Those skilled in the art will understand that embodiments of the present invention can be provided as methods, systems, servers, or computer program products. Therefore, the present invention can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present invention can take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage and optical storage) containing computer-usable program code.
[0142] This invention is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), servers, and computer program products according to embodiments of the invention. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, generate instructions for implementing the flowchart... Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.
[0143] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.
[0144] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.
[0145] Obviously, the embodiments described above are merely some, not all, embodiments of the present invention. Based on the embodiments of the present invention, those skilled in the art can make other variations or modifications without creative effort, and all such variations or modifications should fall within the scope of protection of the present invention.
Claims
1. A drying control method applied to a cleaning system; the cleaning system includes cleaning equipment and a base station corresponding to and cooperating with the cleaning equipment; the cleaning equipment includes a main body and a cleaning component disposed on the main body; the base station includes a base station main body and a drying device disposed on the base station main body, the drying device corresponding to and cooperating with the cleaning component; The cleaning system further includes a liquid spraying device disposed on the base station body or the equipment body; characterized in that... The method includes: Obtain the drying instruction type for the cleaned item; When the first drying command is received, the drying device is controlled to perform a first drying operation on the cleaned part for a first preset duration at a first preset power. When a second drying command is received, the drying device is controlled to perform a second drying operation on the cleaned part for a second preset duration at a second preset power, or the drying device is controlled to perform a first drying operation on the cleaned part for a first preset duration at a first preset power, and then the drying device is controlled to perform a second drying operation on the cleaned part for a second preset duration at a second preset power. When the third drying command is received, the spraying device is controlled to spray liquid onto the cleaning part, and then the drying device is controlled to heat the cleaning part with a third preset power. When the heating time of the cleaning part reaches a fourth preset time, or when the real-time detection temperature value corresponding to the cleaning part reaches a preset temperature value, the drying device is controlled to stop working.
2. The drying control method as described in claim 1, characterized in that, The first preset power is less than the second preset power.
3. The drying control method as described in claim 1, characterized in that, Before obtaining the drying instruction type for the cleaned item, the process includes: The spray device is controlled to perform a self-cleaning operation on the cleaning parts for a third preset time.
4. The drying control method as described in claim 1, characterized in that, The preset temperature value is 85°~95°; and / or, The third preset power is the same as the second preset power, or the first preset power is less than the third preset power and less than the second preset power.
5. The drying control method as described in claim 4, characterized in that, When a third drying command is received, the process of controlling the spraying device to spray liquid onto the cleaned part, and then controlling the drying device to operate at a third preset power includes: When the third drying command is received during the drying process of the drying device at the first preset power, the liquid spraying device is controlled to spray liquid onto the cleaning part, and then the drying device is adjusted to work at the third preset power.
6. The drying control method as described in claim 4, characterized in that, When a third drying command is received, the liquid spraying device is controlled to spray liquid onto the cleaned part, and the drying device is simultaneously controlled to operate at a third preset power, including: When the third drying command is received during the drying process of the drying device at the second preset power, the drying device is first controlled to stop working, then the liquid spraying device is controlled to spray liquid onto the cleaned parts, and then the drying device is adjusted to work at the third preset power.
7. The drying control method as described in claim 1, characterized in that, The base station also includes a temperature detection device, and the control drying device performs a first drying operation on the cleaned item for a second preset duration at a first preset power, including: The drying device is controlled to operate at a first preset power. The real-time temperature value detected by the temperature detection device is obtained, and the relationship between the real-time temperature value and the first preset temperature threshold is detected. If the real-time temperature value is greater than the first preset temperature threshold, the operating power of the drying device is reduced. If the real-time temperature value is less than the first preset temperature threshold, the operating power of the drying device is increased, and the first drying operation is maintained for a second preset duration.
8. The drying control method as described in claim 1, characterized in that, The base station also includes a temperature detection device, and the control drying device performs a second drying operation on the cleaned item for a third preset duration at a second preset power, including: The drying device's operating power is adjusted to the second preset power value. The real-time temperature value detected by the temperature detection device is obtained, and the relationship between the real-time temperature value and the second preset temperature threshold is detected. If the real-time temperature value is greater than the second preset temperature threshold, the operating power of the drying device is reduced; if the real-time temperature value is less than the second preset temperature threshold, the operating power of the drying device is increased, and the second drying operation is maintained for a third preset duration.
9. The drying control method as described in claim 1, characterized in that, The base station body is provided with a cleaning tank for accommodating cleaning components and a spraying device. The spraying device includes a first pump body on the base station body and a first nozzle on one side of the cleaning tank. The first pump body is adapted to connect the cleaning tank on the base station body and the liquid supply source. The cleaning equipment also includes a cleaning component driving mechanism for driving the cleaning components to rotate. The spray device is controlled to perform a self-cleaning operation on the cleaning component for a first preset duration, including: The first pump body is controlled to start working, spraying the liquid from the liquid supply source onto the cleaning component through the first nozzle, and the cleaning component drive mechanism is controlled to work at the same time. The first pump body and the cleaning component drive mechanism are controlled to work for a first preset time and then stop.
10. The drying control method as described in claim 1, characterized in that, The main body of the equipment is provided with a spraying device, which includes a water tank and a second nozzle on the main body of the equipment, and a second pump body connecting the water tank and the second nozzle. The second nozzle is disposed toward the cleaning component. The cleaning equipment also includes a cleaning component drive mechanism for driving the cleaning component to rotate. The spray device is controlled to perform a self-cleaning operation on the cleaning component for a first preset duration, including: The second pump is controlled to start working, delivering the liquid in the water tank to the second nozzle for spraying onto the cleaning component. At the same time, the cleaning component drive mechanism is controlled to work, and then both the second pump and the cleaning component drive mechanism work for a first preset time before stopping.
11. A drying control system applied to a cleaning system; the cleaning system includes a cleaning device and a base station corresponding to and cooperating with the cleaning device; the cleaning device includes a device body and a cleaning component disposed on the device body; the base station includes a base station body and a drying device disposed on the base station body, the drying device corresponding to and cooperating with the cleaning component, and the cleaning system further includes a liquid spraying device disposed on the base station body or the device body; Its features are, The drying control system includes: The drying instruction acquisition module is used to acquire drying instructions issued by the user and determine the instruction information; The first drying instruction control module is communicatively connected to the drying instruction acquisition module. When the acquired instruction information is a first drying instruction, it controls the drying device to perform a first drying operation on the cleaned part for a first preset duration with a first preset power. The second drying instruction control module is communicatively connected to the drying instruction acquisition module. When the acquired instruction information is the second drying instruction, it controls the drying device to perform a second drying operation on the cleaning part for a second preset duration with a second preset power, or controls the drying device to perform a first drying operation on the cleaning part for a first preset duration with a first preset power, and then controls the drying device to perform a second drying operation on the cleaning part for a second preset duration with a second preset power. The third drying instruction control module is communicatively connected to the drying instruction acquisition module. When the acquired instruction information is the third drying instruction, it controls the spraying device to spray liquid onto the cleaning part, and then controls the drying device to perform a third drying operation on the cleaning part for a fourth preset duration at a third preset power.
12. A base station, characterized in that, include: The base station body is provided with a cleaning tank, which is suitable for housing cleaning components of cleaning equipment. A drying device, installed on the base station, is suitable for drying the cleaned parts located in the cleaning tank; A liquid spraying device is installed on the base station; A controller, electrically connected to the drying device, wherein the controller is used for: Obtain the drying instruction type for the cleaned item; When the first drying command is received, the drying device is controlled to perform a first drying operation on the cleaned part for a first preset duration at a first preset power. When a second drying command is received, the drying device is controlled to perform a second drying operation on the cleaned part for a second preset duration at a second preset power, or the drying device is controlled to perform a first drying operation on the cleaned part for a first preset duration at a first preset power, and then the drying device is controlled to perform a second drying operation on the cleaned part for a second preset duration at a second preset power. When the third drying command is received, the spraying device is controlled to spray liquid onto the cleaned part, and then the drying device is controlled to perform a third drying operation on the cleaned part for a fourth preset duration at a third preset power.
13. The base station as described in claim 12, characterized in that, The spraying device includes a first pump body disposed on the main body of the base station and a first nozzle disposed on one side of the cleaning tank. The first pump body is adapted to connect the cleaning tank on the main body of the base station and the liquid supply source.
14. The base station as described in claim 12, characterized in that, The base station also includes a temperature detection device for detecting the temperature of the cleaning components located in the cleaning tank.
15. The base station as described in claim 14, characterized in that, The temperature detection device includes a temperature sensor located on one side of the cleaning tank, and the temperature sensor is electrically connected to the controller.
16. The base station as described in claim 12, characterized in that, The drying device includes an infrared generator, which is located on one side of the cleaning tank, with the emitting surface of the infrared generator facing inward into the cleaning tank.
17. A cleaning system, characterized in that, This includes cleaning equipment and a base station as described in any one of claims 12 to 16.
Citation Information
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