Cleaning base station and cleaning equipment

By designing a combination of air ducts and heating modules in the cleaning base station, the scrubbing parts are dried using secondary heated airflow, which solves the problem of excessive temperature of energy-consuming and heating components, achieving rapid drying and improved safety.

CN223380557UActive Publication Date: 2025-09-26GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202422839564.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-09-26
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

The temperature of energy-consuming and heat-generating components in cleaning equipment can easily become too high, affecting their service life and posing a safety hazard.

Method used

A cleaning base station is designed, which includes an air duct, a drying fan and a heating module. The heat released by the energy-consuming and heating components is reheated through the air duct and blown out to dry the scrubbing parts, thereby reducing the energy consumption of the cleaning base station and taking away the heat.

Benefits of technology

Rapid drying is achieved without increasing the power consumption of the cleaning base station, extending the service life of energy-consuming and heat-generating components and improving safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of household appliances, and discloses a cleaning base station and cleaning equipment. Wherein an air duct, an energy-consuming heating part, an air inlet and a drying opening are formed in the base station body, the two ends of the air duct are connected with the air inlet and the drying opening respectively, and the energy-consuming heating part is arranged in the air duct; the drying fan is arranged in the air duct; and the heating module is arranged in the air duct, and the energy-consuming heating part, the drying fan and the heating module are sequentially arranged in the air blowing direction of the drying fan. According to the cleaning base station, the scrubbing piece can be quickly dried under the condition that the power consumption of the cleaning base station is not increased, meanwhile, the service life of the energy-consuming heating component is prolonged, the service life of the cleaning base station is prolonged, and the safety of the cleaning base station is improved. In addition, the cleaning base station is simple in structure, easy to assemble, safe and reliable to use and convenient to implement, popularize and apply.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, in particular to a cleaning base station and cleaning equipment. Background Art

[0002] Cleaning equipment is used to replace manual labor to perform cleaning functions. For example, a floor scrubber has energy-consuming and heat-generating components such as motors and circuit boards inside the cleaning equipment. These components release heat during use.

[0003] However, since the energy-consuming and heating components in the cleaning equipment are relatively concentrated and generally wrapped in a shell, the heat released by the energy-consuming and heating components can easily cause the temperature of the energy-consuming and heating components to be too high, which not only easily affects the service life of the energy-consuming and heating components, but may even cause safety hazards. Utility Model Content

[0004] In view of this, the present invention provides a cleaning base station and cleaning equipment to solve the problem in the related art that the temperature of the energy-consuming and heating components of the cleaning base station is easily too high, which affects the service life of the energy-consuming and heating components and may even cause safety hazards.

[0005] In a first aspect, the present invention provides a cleaning base station, comprising:

[0006] The base station body is provided with an air duct, energy-consuming and heat-generating components, an air inlet, and a drying port. The two ends of the air duct are connected to the air inlet and the drying port respectively. The energy-consuming and heat-generating components are arranged in the air duct.

[0007] Drying fan, installed in the air duct;

[0008] The heating module is arranged in the air duct, and along the blowing direction of the drying fan, the energy-consuming heating component, the drying fan and the heating module are arranged in sequence.

[0009] Beneficial effect: During the use of the cleaning base station of the embodiment of the utility model, the energy-consuming and heating components in the cleaning base station will release heat, and the drying fan can obtain the airflow heated by the energy-consuming and heating components from the energy-consuming and heating components, and drive the airflow to pass through the heating module for secondary heating and then blow it out from the drying port, thereby heating the airflow heated by the energy-consuming and heating components for the secondary heating and then drying the scrubbing parts of the floor scrubber.

[0010] Through such an arrangement, not only the airflow undergoes secondary heating, thereby quickly drying the scrubbing parts without increasing the power consumption of the heating module, thus reducing the energy consumption of the cleaning base station, but also the airflow can be forced to pass through the energy-consuming and heating components of the cleaning base station and take away the heat released by the energy-consuming and heating components during operation, thereby avoiding the energy-consuming and heating components from having an excessively high temperature, which may affect the service life of the energy-consuming and heating components and even cause safety hazards.

[0011] Therefore, the cleaning base station of the embodiment of the present invention can quickly dry the scrubbing parts without increasing the power consumption of the cleaning base station, while helping to extend the service life of energy-consuming and heat-generating components, helping to extend the service life of the cleaning base station, and improving the safety of the cleaning base station.

[0012] In addition, the above-mentioned cleaning base station has a simple structure, is easy to assemble, and is safe and reliable to use, making it easy to implement and promote its application.

[0013] Among them, the energy-consuming and heat-generating components preferably include, but are not limited to, motors, fans, circuit boards and other components that release heat during operation.

[0014] In an optional embodiment, the air duct includes a first subsection and a second subsection, and the cleaning base station further includes:

[0015] A component housing, wherein the energy-consuming and heat-generating component is disposed in the component housing, and the component housing is in communication with the air inlet;

[0016] The air duct pipe has one end connected to the component housing and the other end connected to the input end of the drying fan. The first subsection is arranged in the component housing, and the second subsection is arranged in the air duct pipe.

[0017] Beneficial effect: Through such a configuration, the component shell can be mounted on the outside of the energy-consuming and heating component, and a ventilation gap surrounding the energy-consuming and heating component is formed between the component shell and the energy-consuming and heating component, thereby promoting the airflow to fully contact the energy-consuming and heating component and take away the heat generated by the energy-consuming and heating component during operation, which can fully cool down the energy-consuming and heating component while helping to increase the initial temperature of the airflow at the heating module.

[0018] The air inlet may be optionally provided on a side of the component housing away from the air duct, which can reduce the flow resistance in the air duct.

[0019] In an optional embodiment, the energy-consuming and heat-generating component includes:

[0020] The motor and the component housing include a motor housing, the motor is arranged in the motor housing, and the air duct includes a first branch pipe connected between the motor housing and the drying fan.

[0021] In an optional embodiment, a cleaning tank for accommodating a scrubbing member of a cleaning device is formed on the base station body, and a drying port is provided in the cleaning tank.

[0022] Beneficial effect: Through such arrangement, when the scrubber body of the cleaning equipment is placed on the body of the cleaning base station, the cleaning base station can dry the scrubbing parts through the drying equipment without the operator having to move the scrubber body, and the operation is simple and convenient.

[0023] Components such as fans and motors can be used to perform basic functions such as negative pressure suction and positive pressure drainage. For example, in the cleaning base of a floor scrubber, the motor is primarily responsible for providing power to drive the rotation of the brush and the movement of the roller. The fan's main function in the cleaning base of a floor scrubber is to air dry. In addition, the fan may also be used to assist in hot air drying, providing hot air to dry the roller brush and the interior of the machine, further improving cleaning efficiency and hygiene safety.

[0024] In an optional embodiment, the scrubbing member is a roller brush, an arc-shaped groove is provided in the cleaning groove, the roller brush can be arranged in the arc-shaped groove, and the drying port is at least partially arranged in the arc-shaped groove.

[0025] Beneficial effect: Through such a setting, the arc groove can not only be used to accommodate the scrubbing member and limit the scrubbing member, but also can be used to increase the wind-receiving area of ​​the roller brush, thereby further improving the drying efficiency of the cleaning base station for the scrubbing member.

[0026] In an optional embodiment, the air duct includes a third subsection, and the cleaning base station includes an air duct housing. The air duct housing is provided on the heating module, and the third subsection is formed between the air duct housing and the bottom wall of the base station body. One end of the third subsection is connected to the output of the drying fan, and the other end of the third subsection is connected to the drying port.

[0027] Beneficial effect: Through such an arrangement, the third sub-section of the air duct can be enclosed in the cleaning base station through a simple structure, which can make the structure of the cleaning base station simpler and more compact. The operator only needs to place the drying fan and the heating module on the bottom shell of the base station body, and then place the air duct shell cover on the heating module and the drying fan to complete the assembly of these components. The assembly method of the cleaning base station of the embodiment of the utility model is simple and quick.

[0028] In an optional embodiment, the air duct housing includes:

[0029] The air duct shell body and the air guide plate are connected to the air duct shell body, and the air outlet end of the third sub-segment is located between the air guide plate and the air duct shell body. From bottom to top, the air guide plate is inclined in the direction away from the air duct shell body.

[0030] Beneficial effect: Through such an arrangement, a third sub-section of the air duct can be enclosed in the cleaning base station through a simple structure, so that the structure of the cleaning base station is simpler and more compact, and the operator only needs to place the drying fan and the heating module on the bottom shell of the base station body, and then place the air duct shell cover on the heating module and the drying fan to complete the assembly of these components. The assembly method of the cleaning base station of the embodiment of the utility model is simple and quick.

[0031] In a second aspect, the present invention further provides a cleaning device, comprising:

[0032] The floor scrubber body has a scrubbing member;

[0033] The cleaning base station of the first aspect of the utility model is used for cleaning and drying the scrubbing member.

[0034] Beneficial effect: The cleaning equipment of the second aspect of the utility model includes or uses the cleaning base station of the first aspect of the utility model, and thus has its beneficial effect, namely, it can quickly dry the scrubbing parts without increasing the power consumption of the cleaning equipment, and at the same time helps to extend the service life of energy-consuming and heat-generating components, helps to extend the service life of the cleaning equipment, and improves the safety of the cleaning equipment.

[0035] In addition, the cleaning equipment has a simple structure, is easy to assemble, and is safe and reliable to use, making it easy to implement, promote, and apply. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0037] Figure 1 This is a cross-sectional view of a cleaning base station according to an embodiment of the present utility model;

[0038] Figure 2 for Figure 1 An enlarged schematic diagram of point A of a cleaning base station is shown;

[0039] Figure 3 for Figure 1 An enlarged schematic diagram of point B of a cleaning base station is shown;

[0040] Figure 4 for Figure 1 An enlarged schematic diagram of point C of a cleaning base station is shown;

[0041] Figure 5 This is an exploded view of a cleaning base station according to an embodiment of the present utility model;

[0042] Figure 6 This is a cross-sectional view of an energy-consuming and heat-generating component of a cleaning base station according to an embodiment of the utility model;

[0043] Figure 7 This is an air duct shell for cleaning a base station according to an embodiment of the utility model;

[0044] Figure 8 This is a flow chart of a control method for a cleaning base station according to an embodiment of the present invention.

[0045] Description of reference numerals:

[0046] 1. Base station body;

[0047] 1011. Component housing;

[0048] 1012, air duct pipe; 10121, second branch pipe; 10122, first branch pipe;

[0049] 1014, air duct housing; 10141, air duct housing body; 10142, air guide plate; 10143, connecting rib; 10144, first limiting rib; 10145, limiting groove;

[0050] 102. Energy-consuming and heat-generating components; 1021. Fan; 1022. Motor;

[0051] 103. Air inlet;

[0052] 104, drying port;

[0053] 105. Drying fan;

[0054] 106. Heating module;

[0055] 107, cleaning slot; 1071, arc slot;

[0056] 108, bottom shell;

[0057] 109. Upper cover; 1091. Second limiting rib. DETAILED DESCRIPTION

[0058] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without making creative efforts shall fall within the scope of protection of the present invention.

[0059] During the operation of the cleaning base station of the cleaning equipment, taking a floor scrubber as an example, the cleaning base station needs to have the function of drying the scrubbing parts of the floor scrubber. A drying fan 105 and a heating module 106 are generally provided on the base station. The air blown out by the drying fan 105 can be heated by the heating module 106 and then blown onto the scrubbing parts of the floor scrubber, thereby drying them.

[0060] However, this requires that the power of the heating module 106 is relatively large, otherwise the scrubbing member cannot be dried quickly, resulting in increased energy consumption of the cleaning base station.

[0061] The following combination Figures 1 to 8 , describing the embodiments of the present utility model.

[0062] According to an embodiment of the present invention, on the one hand, a cleaning base station is provided, including a base station body 1 , a drying fan 105 and a heating module 106 .

[0063] The base station body 1 is provided with an air duct, energy-consuming and heating components 102, an air inlet 103, and a drying outlet 104. The air duct is connected to the air inlet 103 and the drying outlet 104 at both ends. The energy-consuming and heating components 102 are located within the air duct. A drying fan 105 is located within the air duct. A heating module 106 is located within the air duct. The energy-consuming and heating components 102, the drying fan 105, and the heating module 106 are arranged in sequence along the blowing direction of the drying fan 105.

[0064] During use of the cleaning base station of the embodiment of the present invention, the energy-consuming and heating component 102 in the cleaning base station will release heat, and the drying fan 105 can obtain the airflow heated by the energy-consuming and heating component 102 from the energy-consuming and heating component 102, and drive the airflow through the heating module 106 for secondary heating and then blow it out from the drying port 104, thereby drying the scrubbing parts of the cleaning equipment with the help of the secondary heated airflow.

[0065] Through such a setting, not only the airflow is heated twice, thereby quickly drying the scrubbing parts without increasing the power consumption of the heating module 106, reducing the energy consumption of the cleaning base station, but also the airflow can be forced to pass through the energy-consuming heating component 102 of the cleaning base station and take away the heat released by the energy-consuming heating component 102 during operation, thereby avoiding the energy-consuming heating component 102 from having an excessively high temperature, which affects the service life of the energy-consuming heating component 102 and even causes a safety hazard.

[0066] Therefore, the cleaning base station of the embodiment of the present invention can quickly dry the scrubbing parts without increasing the power consumption of the cleaning base station, and at the same time help to extend the service life of the energy-consuming and heating components 102, help to extend the service life of the cleaning base station, and improve the safety of the cleaning base station.

[0067] In addition, the above-mentioned cleaning base station has a simple structure, is easy to assemble, and is safe and reliable to use, making it easy to implement and promote its application.

[0068] The energy-consuming and heat-generating components 102 preferably include, but are not limited to, components that release heat during operation, such as a motor 1022 , a fan 1021 and a circuit board.

[0069] In one embodiment, the air duct includes a component housing 1011 and an air duct tube 1012 .

[0070] The air duct includes a first subsection and a second subsection, and the cleaning base station further includes a component housing 1011 and an air duct tube 1012 .

[0071] The energy-consuming and heat-generating component 102 is disposed within a component housing 1011, which is connected to the air inlet 103. An air duct 1012 has one end connected to the component housing 1011 and the other end connected to the input of the drying fan 105. The first subsection is disposed within the component housing 1011, and the second subsection is disposed within the air duct 1012.

[0072] Through such a configuration, the component housing 1011 can be mounted on the outside of the energy-consuming and heating component 102, and a ventilation gap surrounding the energy-consuming and heating component 102 is formed between the component housing 1011 and the energy-consuming and heating component 102, thereby promoting the airflow to fully contact the energy-consuming and heating component 102 and take away the heat generated by the energy-consuming and heating component 102 during operation, which can fully cool down the energy-consuming and heating component 102 while helping to increase the initial temperature of the airflow at the heating module.

[0073] The air inlet 103 may be optionally provided on a side of the component housing 1011 away from the air duct tube 1012 , so as to reduce the flow resistance in the air duct.

[0074] In one embodiment, the cleaning base station further includes an upper shell, which is disposed on the upper side of the energy-consuming and heat-generating component 102 .

[0075] As a convertible implementation, in an embodiment not shown in the drawings, the air inlet 103 may also be optionally provided on the top wall or the bottom wall of the base station body 1 .

[0076] In one embodiment, the energy-consuming and heat-generating component 102 includes a motor 1022 .

[0077] The component housing 1011 includes a motor housing, the motor 1022 is disposed in the motor housing, and the air duct 1012 includes a first branch pipe 10122 connected between the motor housing and the drying fan 105 .

[0078] As a convertible embodiment, in an embodiment not shown in the accompanying drawings, the energy-consuming and heat-generating component 102 also includes a circuit board, the component housing 1011 includes a cover arranged outside the circuit board, and the air duct pipe 1012 can optionally also include a third branch pipe connected between the motor housing and the drying fan 105.

[0079] In order to prevent dust carried by the airflow from falling onto the circuit board and causing a short circuit or signal interference, a filter is preferably provided at the air inlet 103. The filter can filter the dust entering the component housing 1011, thereby ensuring stable operation of the circuit board.

[0080] As a convertible implementation, in another embodiment not shown in the accompanying drawings, the circuit board is a packaged circuit board, and heat dissipation fins are provided on the outside of the circuit board. The air flow in the air duct can flow through the heat dissipation fins and take away the heat generated by the circuit board during movement without interfering with the operation of the circuit board.

[0081] As another convertible embodiment, the component housing 1011 includes a fan housing, the fan 1021 is arranged in the fan housing, and the air duct 1012 includes a second branch pipe 10121 connected between the fan housing and the drying fan 105.

[0082] In one embodiment, a cleaning tank 107 for accommodating a scrubbing member of a cleaning device is formed on the base station body 1 , and the drying port 104 is disposed in the cleaning tank 107 .

[0083] With such an arrangement, when the scrubber body of the cleaning equipment is placed on the body of the cleaning base station, the cleaning base station can dry the scrubbing parts through the drying device without the operator having to move the scrubber body, which is simple and convenient to operate.

[0084] Components such as the fan 1021 and the motor 1022 can be used to perform basic functions such as negative pressure sewage extraction and positive pressure sewage discharge. For example, the motor 1022 is mainly responsible for providing power in the cleaning base station of the floor scrubber to drive the rotation of the brush and the movement of the roller.

[0085] As an alternative embodiment, the drying port 104 can also be located on one side of the cleaning base station. When the scrubbing elements need to be dried, the operator can place the scrubbing machine body on one side of the cleaning base station and position the scrubbing elements opposite the drying port 104, thereby drying the scrubbing elements through the drying port 104.

[0086] In one embodiment, the scrubbing member is a roller brush, an arc-shaped groove 1071 is provided in the cleaning groove 107 , the roller brush can be disposed in the arc-shaped groove 1071 , and the drying port 104 is at least partially disposed in the arc-shaped groove 1071 .

[0087] By such arrangement, the arcuate groove 1071 can not only be used to accommodate and position the scrubbing member, but also can be used to increase the wind-receiving area of ​​the roller brush, thereby further improving the drying efficiency of the scrubbing member by the cleaning base station.

[0088] As a convertible embodiment, in an embodiment not shown in the drawings, the scrubbing member can also be selected as a sheet-shaped scrubbing cloth. A receiving groove capable of accommodating the scrubbing cloth is correspondingly provided on the cleaning tank 107, and the drying port 104 is arranged in the receiving groove.

[0089] In one embodiment, the air duct includes a third subsection, and the cleaning base station includes an air duct housing 1014. The air duct housing 1014 is mounted on the heating module 106, and the third subsection is formed between the air duct housing 1014 and the bottom wall of the base station body 1. One end of the third subsection is connected to the output end of the drying fan 105, and the other end of the third subsection is connected to the drying port 104.

[0090] Through such an arrangement, a third sub-section of the air duct can be enclosed within the cleaning base station through a simple structure, which can make the structure of the cleaning base station simpler and more compact. The operator only needs to place the drying fan 105 and the heating module 106 on the bottom shell 108 of the base station body 1, and then cover the air duct shell 1014 on the heating module 106 and the drying fan 105 to complete the assembly of these components. The assembly method of the cleaning base station of the embodiment of the utility model is simple and quick.

[0091] In one embodiment, the air duct housing 1014 includes an air duct housing body 10141 and an air guide plate 10142 .

[0092] Among them, the air guide plate 10142 is connected to the air duct shell body 10141, and the air outlet end of the third sub-segment is located between the air guide plate 10142 and the air duct shell body 10141. From bottom to top, the air guide plate 10142 is inclined in the direction away from the air duct shell body 10141.

[0093] By such a configuration, the air guide plate 10142 can guide and deflect the airflow, so that the airflow can blow directly onto the scrubbing member, and further increase the contact between the airflow and the scrubbing member, thereby increasing the drying efficiency of the cleaning base station on the scrubbing member.

[0094] In one embodiment, a connecting rib 10143 is provided between the main body of the air duct shell 1014 and the air guide plate 10142 . The connecting rib 10143 extends along the distance direction between the air duct shell 1014 and the air guide plate 10142 and is used to connect the main body of the air duct shell 1014 and the air guide plate 10142 .

[0095] In a preferred embodiment, there are multiple connecting ribs 10143 and they are evenly arranged along the length direction of the drying port 104. Through such an arrangement, the connecting ribs 10143 can also promote the uniform distribution of the airflow at the drying port 104.

[0096] In one embodiment, Figure 4 As shown, the shell of the cleaning base station includes a bottom shell 108 and an upper cover 109. The upper cover 109 is detachably covered on the bottom shell 108, which can facilitate the placement of energy-consuming and heating components 102, drying fan 105 and heating elements into the bottom shell 108.

[0097] The cleaning tank 107 and the drying port 104 are formed on the upper cover 109 .

[0098] In one embodiment, a first limiting rib 10144 is provided on the top surface of the air duct shell body 10141, a limiting groove 10145 is provided on the first limiting rib 10144, a second limiting rib 1091 is formed on the bottom wall of the upper cover 109, and the second limiting rib 1091 is provided on one side of the drying port 104. When the upper cover 109 is covered on the bottom shell 108, the second limiting rib 1091 is inserted into the limiting groove 10145.

[0099] Through such an arrangement, not only can the connection between the bottom shell 108 and the upper cover 109 be made more reliable, avoiding relative displacement between the drying port 104 and the air duct shell 1014, but it also helps to improve the sealing of the air duct and ensure that the airflow blown out by the drying fan 105 can act on the scrubbing parts of the floor scrubber.

[0100] According to an embodiment of the present invention, on the other hand, a cleaning device is provided, including a floor scrubber body and a cleaning base station.

[0101] The main body of the floor scrubber has a scrubbing member. The cleaning base station is the cleaning base station provided in the first aspect of the utility model, and is used for cleaning and drying the scrubbing member.

[0102] The cleaning device of the second aspect of the present invention includes or uses the cleaning base station of the first aspect of the present invention, and thus has its beneficial effect, namely, it can quickly dry the scrubbing parts without increasing the power consumption of the cleaning device, and at the same time helps to extend the service life of the energy-consuming and heating components 102, helps to extend the service life of the cleaning device, and improves the safety of the cleaning device.

[0103] In addition, the cleaning equipment has a simple structure, is easy to assemble, and is safe and reliable to use, making it easy to implement, promote, and apply.

[0104] According to an embodiment of the present invention, on the other hand, a control method for a cleaning device is provided. The cleaning device includes a cleaning base station and a floor scrubber body.

[0105] The floor scrubber body includes a scrubbing member.

[0106] The cleaning base station includes a base station body 1 , a drying fan 105 and a heating module 106 .

[0107] The base station body 1 is provided with an air duct, an energy-consuming and heating component 102, an air inlet 103, and a drying outlet 104. The air duct is connected to the air inlet 103 and the drying outlet 104 at both ends. The energy-consuming and heating component 102 is located within the air duct. A drying fan 105 is located within the air duct. A heating module 106 is located within the air duct. The energy-consuming and heating component 102, the drying fan 105, and the heating module 106 are arranged in sequence along the blowing direction of the drying fan 105.

[0108] The control method includes step S1 and step S5.

[0109] Step S1 includes: after the main body of the floor scrubber is placed into the main body of the base station 1, the main body of the floor scrubber is cleaned;

[0110] Step S5 includes: after the cleaning is completed, controlling the drying fan 105 to extract the airflow from the energy-consuming and heating component 102 to dry the scrubbing piece.

[0111] The control method of the embodiment of the present utility model can make secondary use of the heat released by the energy-consuming and heating components 102 in the cleaning base station, which not only makes the air flow undergo secondary heating, thereby quickly drying the scrubbing parts without increasing the power consumption of the heating module 106, thereby reducing the energy consumption of the cleaning base station, but also can promote the air flow to pass through the energy-consuming and heating components 102 of the cleaning base station and take away the heat released by the energy-consuming and heating components 102 during operation, thereby avoiding the energy-consuming and heating components 102 from having an excessively high temperature, which affects the service life of the energy-consuming and heating components 102 and even causes safety hazards.

[0112] Therefore, the control method of the cleaning equipment of the embodiment of the utility model can quickly dry the scrubbing parts without increasing the power consumption of the cleaning base station, and at the same time help to extend the service life of the energy-consuming and heating components 102, help to extend the service life of the cleaning base station, and improve the safety of the cleaning base station.

[0113] Among them, using the floor scrubber body for cleaning includes performing negative pressure sewage extraction and positive pressure sewage discharge on the floor scrubber body through the blower 1021 and the fan.

[0114] In one embodiment, step S3 is preceded by step S2 and step S3.

[0115] Step S2 includes: determining whether the power of the floor scrubber body reaches a basic power level, where the basic power level is the power level that can drive the roller brush of the floor scrubber to rotate.

[0116] Step S3 includes: if the power of the floor scrubber body reaches the basic power level, controlling the roller brush to rotate.

[0117] Through such a setting, the control method of the cleaning equipment in the embodiment of the present application can control the rotation of the roller brush after determining that the power of the floor scrubber body has reached the basic power, and then control the cleaning base station to dry the roller brush in the rotating state, thereby enabling the cleaning base station to dry the roller brush evenly and helping to improve the drying efficiency of the roller brush by the cleaning base station.

[0118] Exemplarily, the basic power level may be selected as 20% power level.

[0119] As a variable implementation, the basic power amount can also be adjusted according to the model of the cleaning base station, etc., which is well known to those skilled in the art and will not be described in detail here.

[0120] In one embodiment, after step S2, step S4 is further included:

[0121] Step S4: If the power level of the floor scrubber body has not reached the basic power level, the cleaning base station is controlled to continue cleaning the scrubbing element, and the cleaning base station charges the floor scrubber body.

[0122] The control method of the embodiment of the present application further includes: when the power of the floor scrubber body of the cleaning base station reaches a basic power level, executing step S2.

[0123] The operation of the cleaning base station charging the floor scrubber body can be optionally started simultaneously with step S1.

[0124] As a changeable implementation manner, the operation of the cleaning base station charging the main body of the floor scrubber may also be selected to start after determining that the power level of the main body of the floor scrubber has not reached the basic power level.

[0125] In one embodiment, before cleaning the floor scrubber body, the method further includes:

[0126] Determine whether the main body of the floor scrubber is placed in the floor scrubber base station;

[0127] If the floor scrubber body is not placed in the floor scrubber base station, the cleaning base station does not start any energy-consuming and heating components 102;

[0128] If the floor scrubber body has been placed in the floor scrubber base station, step S1 is executed.

[0129] To sum up, the control amplification of the cleaning base station of the first aspect, the cleaning equipment of the second aspect and the cleaning equipment of the third aspect of the present invention can quickly dry the scrubbing parts without increasing the power consumption of the cleaning base station, and at the same time help to extend the service life of the energy-consuming and heating components 102, help to extend the service life of the cleaning base station, and improve the safety of the cleaning base station.

[0130] Although the embodiments of the present invention are described in conjunction with the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations shall fall within the scope of protection claimed by this application.

Claims

1. A cleaning base station, characterized in that: include: A base station body (1) is provided with an air duct, an energy-consuming and heating component (102), an air inlet (103) and a drying port (104), wherein two ends of the air duct are respectively connected to the air inlet (103) and the drying port (104), and the energy-consuming and heating component (102) is provided in the air duct; A drying fan (105) is arranged in the air duct; The heating module (106) is arranged in the air duct. Along the blowing direction of the drying fan (105), the energy-consuming heating component (102), the drying fan (105) and the heating module (106) are arranged in sequence.

2. The cleaning base station according to claim 1, characterized in that The air duct includes a first subsection and a second subsection, and the cleaning base station further includes: A component housing (1011), wherein the energy-consuming and heating component (102) is disposed in the component housing (1011), and the component housing (1011) is in communication with the air inlet (103); An air duct tube (1012) has one end connected to the component housing (1011) and the other end connected to the input end of the drying fan (105); the first subsection is arranged in the component housing (1011), and the second subsection is arranged in the air duct tube (1012).

3. The cleaning base station according to claim 2, characterized in that The energy-consuming and heating component (102) comprises: The motor (1022) is provided in the component housing (1011), wherein the component housing (1011) includes a motor housing, the motor (1022) is arranged in the motor housing, and the air duct (1012) includes a first branch pipe (10122) connected between the motor housing and the drying fan (105).

4. The cleaning base station according to any one of claims 1 to 3, characterized in that: A cleaning groove (107) for accommodating a scrubbing member of a cleaning device is formed on the base station body (1), and the drying port (104) is arranged in the cleaning groove (107).

5. The cleaning base station according to claim 4, characterized in that: The scrubbing member is a roller brush, an arcuate groove (1071) is provided in the cleaning groove (107), the roller brush can be arranged in the arcuate groove (1071), and the drying port (104) is at least partially arranged in the arcuate groove (1071).

6. The cleaning base station according to any one of claims 1 to 3, characterized in that: The air duct includes a third sub-section, and the cleaning base station includes an air duct shell (1014). The air duct shell (1014) is covered on the heating module (106). The third sub-section is formed between the air duct shell (1014) and the bottom wall of the base station body (1). One end of the third sub-section is connected to the output end of the drying fan (105), and the other end of the third sub-section is connected to the drying port (104).

7. The cleaning base station according to claim 6, characterized in that The air duct shell (1014) comprises: An air duct shell body (10141) and an air guide plate (10142), wherein the air guide plate (10142) is connected to the air duct shell body (10141), and the air outlet end of the third sub-section is located between the air guide plate (10142) and the air duct shell body (10141), and from bottom to top, the air guide plate (10142) is inclined in a direction away from the air duct shell body (10141).

8. A cleaning device, characterized in that: include: The floor scrubber body has a scrubbing member; The cleaning base station according to any one of claims 1 to 7, used for cleaning and drying the scrubbing member.