WO2020200328A1 - 智能清洁系统、自主机器人和基站 - Google Patents
智能清洁系统、自主机器人和基站 Download PDFInfo
- Publication number
- WO2020200328A1 WO2020200328A1 PCT/CN2020/090085 CN2020090085W WO2020200328A1 WO 2020200328 A1 WO2020200328 A1 WO 2020200328A1 CN 2020090085 W CN2020090085 W CN 2020090085W WO 2020200328 A1 WO2020200328 A1 WO 2020200328A1
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- WIPO (PCT)
- Prior art keywords
- air duct
- valve
- autonomous robot
- air
- suction device
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/10—Filters; Dust separators; Dust removal; Automatic exchange of filters
- A47L9/12—Dry filters
- A47L9/122—Dry filters flat
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/24—Floor-sweeping machines, motor-driven
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/10—Filters; Dust separators; Dust removal; Automatic exchange of filters
- A47L9/14—Bags or the like; Rigid filtering receptacles; Attachment of, or closures for, bags or receptacles
- A47L9/149—Emptying means; Reusable bags
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/28—Floor-scrubbing machines, motor-driven
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/4013—Contaminants collecting devices, i.e. hoppers, tanks or the like
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/408—Means for supplying cleaning or surface treating agents
- A47L11/4083—Liquid supply reservoirs; Preparation of the agents, e.g. mixing devices
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/4091—Storing or parking devices, arrangements therefor; Means allowing transport of the machine when it is not being used
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/4094—Accessories to be used in combination with conventional vacuum-cleaning devices
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/0072—Mechanical means for controlling the suction or for effecting pulsating action
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/02—Nozzles
- A47L9/06—Nozzles with fixed, e.g. adjustably fixed brushes or the like
- A47L9/0686—Nozzles with cleaning cloths, e.g. using disposal fabrics for covering the nozzle
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/10—Filters; Dust separators; Dust removal; Automatic exchange of filters
- A47L9/12—Dry filters
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/20—Means for cleaning filters
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/24—Hoses or pipes; Hose or pipe couplings
- A47L9/248—Parts, details or accessories of hoses or pipes
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/28—Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means
- A47L9/2836—Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means characterised by the parts which are controlled
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L2201/00—Robotic cleaning machines, i.e. with automatic control of the travelling movement or the cleaning operation
- A47L2201/02—Docking stations; Docking operations
- A47L2201/024—Emptying dust or waste liquid containers
Definitions
- the present disclosure generally relates to the field of cleaning tools, and in particular to an intelligent cleaning system with a garbage collection function, an autonomous robot, and a base station.
- a general sweeping robot is equipped with a dust box for storing garbage. After the dust box is filled with garbage, the user needs to manually take out the dust box, clean up the garbage in it, and then put the dust box into the sweeping robot. If the dust box is full of garbage and it is not cleaned up in time, it will affect the cleaning effect of the sweeping robot. Generally, the volume of the sweeping robot is small, and the volume of the dust box is correspondingly small, and the capacity of the garbage contained is limited, which is easy to fill. Therefore, in the daily use process, the user needs to manually clean the dust box filled with garbage frequently, which seriously affects the user experience. For example, when cleaning a large area, the dust box may be full before the cleaning is completed. At this time, if there is no user intervention (cleaning the dust box), the sweeping robot either does not continue to clean, or continues to clean but the cleaning effect becomes poor.
- an intelligent cleaning system includes:
- An autonomous robot configured to perform a cleaning function and an emptying function, including:
- a first accommodating part, the first accommodating part is used for accommodating objects collected by the autonomous robot during the cleaning function;
- a first air duct the first air duct is in communication with the first receiving portion
- a suction device configured to generate a flow of air with a suction effect through the first containing portion, the suction device being capable of passing through the first air duct and the first containing portion Open and closed connection;
- a base station configured to interface with the autonomous robot to empty and collect the target from the first containing part, including:
- a second accommodating part, the second accommodating part is used to accommodate the target evacuated from the first accommodating part;
- a second air duct is in communication with the second accommodating part, and the second air duct is used for allowing the target to flow into the second accommodating part along with the air flow;
- a third air duct is in communication with the second accommodating part, and the third air duct is used for allowing the air to flow out of the second accommodating part;
- the smart cleaning system is configured to cut off the first air duct in a state where the autonomous robot is docked with the base station to perform the emptying function, and the first receiving part passes through the second The air duct, the second receiving portion and the third air duct are in communication with the suction device.
- an autonomous robot configured to perform a cleaning function and an emptying function, including:
- a first accommodating part is used for accommodating objects collected by the autonomous robot during the cleaning function, and the first accommodating part can communicate with the outside through an emptying port in an open and closable manner;
- a first air duct the first air duct is in communication with the first receiving portion
- a suction device configured to generate a flow of air having a suction effect through the first housing portion, the suction device being capable of being openable and closable through the first air passage and the first housing portion Connected, and the suction device can openly and closably communicate with the outside through the air return port;
- the autonomous robot when the autonomous robot performs the cleaning function, the first air duct is in an open state, and the exhaust port and the air return port are in a closed state; the autonomous robot performs the exhaust In the empty function state, the first air duct is in a closed state, and the exhaust port and the return air port are in an open state.
- a base station for docking with any of the aforementioned autonomous robots to empty and collect the target from the autonomous robot, the base station including :
- a second accommodating portion, the second accommodating portion is used to accommodate the target evacuated from the autonomous robot;
- a second air duct is in communication with the second accommodating part, and the second air duct is used for allowing the target to flow into the second accommodating part along with the air flow;
- a third air duct is in communication with the second accommodating part, and the third air duct is used for allowing the air to flow out of the second accommodating part;
- the second air duct communicates with the first accommodating part through the exhaust port, and the third air duct communicates with the air return port through the air return port.
- the suction device is connected.
- Fig. 1 is a schematic diagram of a smart cleaning system according to a preferred embodiment of the present disclosure
- Figure 2 is a perspective view of an autonomous robot according to a preferred embodiment of the present disclosure
- Figure 3 is a perspective view of the autonomous robot shown in Figure 2 from another angle;
- FIG. 4 is a schematic diagram of the first receiving part and the suction device of the robot shown in FIG. 2;
- Fig. 5 is a perspective view of a base station according to a preferred embodiment of the present disclosure.
- FIG. 6 is a schematic diagram of the second air duct, the second receiving part, and the third air duct of the base station shown in FIG. 5;
- FIG. 7 is a schematic diagram of docking an autonomous robot with a base station according to the present disclosure.
- FIG. 8 to 10 are structural schematic diagrams of the integrated opening and closing of the first valve and the third valve in the autonomous robot shown in FIG. 2.
- FIG. 1 shows an intelligent cleaning system 1 including an autonomous robot 10 and a base station 20 according to the present disclosure.
- the autonomous robot 10 is designed to be able to move autonomously on the ground to perform a cleaning function.
- the autonomous robot 10 is also designed to be able to autonomously move to the location of the base station 20 to dock with the base station 20 (as shown in the state shown in FIG. 1) to empty the objects collected during the cleaning function.
- the target may be trash such as paper scraps, dust, hair and the like.
- the cleaning function of the autonomous robot 10 may include at least one of sweeping the floor and mopping the floor.
- the autonomous robot 10 is a cleaning robot integrating sweeping and dragging.
- the autonomous robot 10 mainly includes a cleaning unit, a sensing unit, a control unit, a driving unit, an energy unit, and a human-machine interaction unit. The units coordinate and cooperate with each other so that the autonomous robot 10 can move autonomously to realize the cleaning function.
- the autonomous robot 10 has an approximately circular shape (the front and rear are circular), and it includes an upper cover 11, a chassis 12, and a middle frame 13 arranged between the upper cover 11 and the chassis 12.
- the middle frame 13 serves as a basic frame for setting various functional elements.
- the upper cover 11 and the chassis 12 respectively cover the upper and lower surfaces of the middle frame 13 to protect internal components and improve the aesthetics of the autonomous robot 10.
- the device body may also have other shapes, including but not limited to an approximate D shape with a front and back circle.
- the driving unit is used to provide driving force for the autonomous movement of the autonomous robot 10 and the cleaning unit to realize the cleaning function.
- the sensing unit is used for the autonomous robot 10 to perceive the external environment such as terrain, and provide various position information and motion state information of the machine to the control unit.
- the control unit comprehensively judges the current working state of the autonomous robot 10 based on this information (for example, crossing a threshold, putting on a carpet, being located on, above or below a cliff, being stuck, full of dust box, being picked up, etc.), and specific The situation gives a specific next action strategy. Further, the control unit can plan the most efficient and reasonable cleaning path and cleaning method based on the real-time map information, which greatly improves the working efficiency of the autonomous robot 10.
- the human-computer interaction unit is used for the user to make function selection and/or to show the user the current state of the machine or the function selection item.
- the energy unit is used for the functional components of each unit to provide electricity.
- the cleaning unit is the most important core unit of the autonomous robot 10, which is used to implement the cleaning function, and includes a dry cleaning part and a wet cleaning part.
- the dry cleaning part is mainly used to clean and collect targets such as solid particle contaminants on the cleaned surface
- the wet cleaning part is mainly used to wipe the cleaned surface (such as the ground).
- the dry cleaning part mainly includes a cleaning brush for picking up the target from the surface to be cleaned, and a first accommodating part and a suction device for collecting and accommodating the target.
- the cleaning brush includes a main brush 14 and a side brush 15.
- the main brush 14 has a rotation axis substantially parallel to the plane where the chassis 12 is located and protrudes outward from the chassis 12.
- the bristles or blades of the main brush 14 and the cleaned surface under the chassis 12 form a certain interference.
- the side brush 15 is set at the bottom edge position, and its rotation axis is at a certain angle with respect to the ground for moving the target to the cleaning area of the main brush 14.
- FIG. 4 schematically shows the structure of the first receiving portion 16 and the suction device 17.
- the suction device 17 can communicate with the first receiving portion 16 through the first air passage 18 and is configured to generate a flow of air having a suction effect through the first receiving portion 16.
- the first receiving portion 16 has an entrance (not shown). When the main brush 14 rotates, the target on the surface to be cleaned is wound by the main brush 14 to a position close to the entrance of the first accommodating part 16, and then collected and accommodated in the first accommodating under the action of the air flow generated by the suction device 17 ⁇ 16 ⁇ .
- the first receiving part 16 may be configured as a dust box detachably or fixedly provided inside the autonomous robot 10, and the suction device 17 may be configured as a fan.
- the first accommodating portion 16 may also be configured as an accommodating cavity or the like provided inside the autonomous robot 10, and the suction device 17 may also be configured as a fan with a drive motor or the like.
- a first filter device 161 may be provided in the first air duct 18, so that when the autonomous robot 10 performs the cleaning function, the target that enters the first receiving portion 16 with the air flow is retained in the first receiving portion 16. However, only clean air is allowed to flow to the suction device 17 along the first air duct 18 to prevent the suction device 17 from being damaged by particles and the like.
- the first filter device 161 may be configured as a high efficiency air filter (HEPA) or the like.
- a vibration device (not shown) attached to the first filter device 161 may also be provided.
- the vibration device drives the first filter device 161 to continuously vibrate, so that the dust and the like attached to the first filter device 161 fall off under the action of the vibration, thereby keeping the first filter device 161 small
- the air resistance increases the force of the suction device 17.
- the wet cleaning section mainly includes a liquid storage tank and a cleaning cloth.
- the liquid storage tank contains cleaning liquid, and the cleaning cloth is detachably arranged on the liquid storage tank. After the dry cleaning part is cleaned, the liquid in the liquid tank of the wet cleaning cloth flows to the cleaning cloth, and the cleaning cloth wipes the cleaned surface of the cleaning device after cleaning.
- the volume of the autonomous robot 10 is small, which results in a very limited volume of the first receiving portion 16 inside.
- the first receiving portion 16 can easily reach a state of being full of collected objects. In this state, the autonomous robot 10 is often configured to stop the cleaning work. Even if the autonomous robot 10 is forcibly ordered to continue the cleaning work, the cleaning effect will deteriorate due to the inability to continue to collect targets such as solid particle pollutants.
- the autonomous robot 10 is also designed to be able to autonomously move to the position of the base station 20 to dock with the base station 20 (as shown in the state shown in FIG. 1) to empty the objects collected during the cleaning function. So as not to affect the cleaning function.
- the detection device in the autonomous robot 10 for detecting the filling state of the first container 16 may send a signal indicating that the first container 16 is full to the control unit.
- the control unit After the control unit receives the above-mentioned signal, it searches for the base station 20 according to its stored navigation algorithm, and controls the autonomous robot 10 according to the map constructed by it, its position on the map, and the location of the autonomous robot 10 and the sensing device set on the base station 20.
- the issued instruction signal and the like move autonomously to the base station 20 to interface with the base station 20 to perform the emptying function.
- FIG. 5 schematically show a preferred embodiment of the base station 20 according to the present disclosure.
- a second accommodating portion 22 is provided in the base station 20.
- the volume of the second receiving part 22 may be designed to be much larger than the volume of the first receiving part 16.
- the base station 20 is also provided with a second air duct 21 and a third air duct 23 respectively communicating with the second accommodating part 22.
- the second air duct 21 forms an opening 211 of the second air duct 21 on the outer surface of the base station 20
- the third air duct 23 forms an opening 231 of the third air duct 23 on the outer surface of the base station 20.
- the autonomous robot 10 is also provided with an exhaust port 162 and a return air port 172, which are not directly connected.
- the emptying port 162 is in communication with the first containing portion 16, and the air return port 172 is in communication with the suction device 17.
- the emptying port 162 of the autonomous robot 10 communicates with the opening 211 of the second air duct 21 of the base station 20, and the autonomous robot 10
- the return air outlet 172 of the base station 20 communicates with the opening 231 of the third air duct 23 of the base station 20.
- the first air passage 18 can be cut off, so that the suction device 17 can only communicate with the first accommodating portion 16 through the third air passage 23, the second receiving portion 22, and the second air passage 21.
- the air flow with suction generated by the suction device 17 sequentially follows the first receiving portion 16, the emptying port 162, the opening 211 of the second air duct 21, the second air duct 21, The openings 231 of the second accommodating part 22, the third air duct 23, the third air duct 23, and the air return port 172 flow to the suction device 17, thereby driving the target contained in the first accommodating part 16 to transfer to the second housing ⁇ 22 ⁇ .
- a seal such as a sealing ring may be provided between the exhaust port 162 and the opening 211 of the second air duct 21, and between the return air port 172 and the opening 231 of the second air duct 21 Parts to strengthen the sealing performance and avoid leakage.
- the emptying port 162 needs to be kept closed to prevent the target in the first receiving portion 16 from leaking through the emptying port 162 and causing re-contamination of the cleaned surface.
- the air return port 172 needs to be kept in a closed state, and the first air duct 18 is in an open state, so as to ensure that the suction force generated by the suction device 17 completely acts on the first receiving portion 16.
- the flow path of the air flow generated by the suction device 17 when the autonomous robot 10 performs the cleaning function is smaller than the flow path of the air flow when the autonomous robot 10 performs the emptying function. Therefore, in order to ensure sufficient suction power, the autonomous robot 10 is configured such that the working power of the suction device 17 when performing the emptying function is greater than the working power when performing the cleaning function.
- a dust bag 27 may be provided in the base station 20.
- the dust bag 27 is detachably arranged in the second receiving part 22 to facilitate the user to clean and replace the full dust bag 27.
- the dust bag 27 communicates with the second air duct 21 to accommodate the target evacuated from the first container 16.
- the dust bag 27 itself may have a filtering function to keep the internal space of the dust bag 27 in fluid communication with the third air duct 23. In this way, after the air carrying the target object passes through the dust bag 27, the target object remains in the dust bag 27.
- the clean air flows along the third air duct 23 to the suction device 17.
- the dust bag 27 may not be provided, and the second accommodating portion 22 may be provided as an accommodating cavity or a dust box.
- a second filter device 26 is provided at a position where the second accommodating part 22 communicates with the third air duct 23 to keep the target in the second accommodating part 22 and only allow clean air to pass through.
- the second filter device 26 may have the same configuration as the first filter device 161.
- a one-way valve may also be provided in the second air duct 21 or between the second air duct 21 and the second receiving portion 22.
- the one-way valve is configured to only open toward the air flow direction in the second air duct 21 shown in FIG. 7 (that is, open toward the second accommodating portion 22), and cannot be opened in the reverse direction.
- the one-way valve has a rotation axis extending substantially horizontally, which may be configured to open in response to the suction action of the suction device 17 and close in response to the action of gravity after the suction device 17 stops working. In this way, when the emptying function is performed, the one-way valve is opened to allow the mixed flow of the target and air to pass through. In other states, the one-way valve is closed to prevent the target in the second receiving portion 22 from leaking through the second air duct 21.
- the detection device sends a signal that the emptying is complete to the control unit. If the command of the unfinished cleaning task is stored in the control unit at this time, the control unit controls the autonomous robot 10 to autonomously move to the position indicated by the cleaning task command after receiving the above-mentioned emptying completion signal to perform the corresponding cleaning function . And if there is no unfinished cleaning task command stored in the control unit at this time, the control unit can control the autonomous robot 10 to wait to receive the cleaning task command, for example, it can be standing by, or autonomously moving to a designated location Stand by. Alternatively, the autonomous robot 10 may be controlled to directly shut down at the same place or autonomously move to a designated position.
- the autonomous robot 10 may also be configured to automatically move to the base station 20 to dock with the base station 20 at predetermined intervals to periodically perform the emptying function.
- the base station 20 may be a charging post for charging the autonomous robot 10. In this way, the autonomous robot 10 can also be configured to perform an emptying function every time it is charged.
- the suction device 17 can be switched to communicate with the first receiving portion 16 through different air channels to perform the cleaning function and the emptying function respectively. In this way, only one suction device 17 needs to be provided on the autonomous robot 10, and no additional suction device is needed on the base station 20, thereby saving cost and saving the installation space of the base station 20 to make the structure compact.
- the switching between the different air ducts used to connect the suction device 17 and the first accommodating portion 16 can be realized by electronic components such as solenoid valves controlled by the control unit according to the control program stored in itself, or by simple mechanical The linkage between the devices is realized.
- the opening and closing of each air duct is realized by opening and closing the valve.
- a substantially vertical wall 164 is provided between the suction device 17 and the first receiving portion 16, and a vent 165 is provided on the wall 164.
- the vent 165 is configured as a part of the first air duct 18.
- the side of the wall 164 facing the suction device 17 is also provided with a first valve 171.
- the first valve 171 can rotate about the first axis AX1.
- the first axis AX1 is located above the vent 165 and extends in a substantially horizontal direction. It is so arranged that when the suction device 17 stops working, the first valve 171 automatically abuts on the wall 164 to cover the vent 165 in response to the action of gravity, thereby cutting off the first air duct 18.
- the suction device 17 When the suction device 17 generates air flow with a suction effect, the first valve 171 is pushed by the air flow to rotate upward about the first axis AX1 (as shown in the state shown in FIG. 4), and the suction device 17 can pass
- the vent 165 is in communication with the first accommodating portion 16, and it can be considered that the first air duct 18 is in an open state.
- the autonomous robot 10 is provided with a second valve 163 at the exhaust port 162 to control the opening or closing of the exhaust port 162, and a third valve 173 is provided at the return air port 172 to control the opening or closing of the air return port 172.
- the second valve 163 is installed inside the exhaust port 162 and can rotate about the second axis AX2. Wherein, the plane where the emptying port 162 is located is approximately horizontal. Therefore, the second valve 163 covers the emptying port 162 to close the emptying port 162 when only being subjected to gravity. Moreover, the second valve 163 needs to overcome its gravity to be able to rotate around the second axis AX2 to open the emptying port 162.
- the plane where the emptying port 162 is located can also be inclined relative to the horizontal plane within a predetermined angle range, but the inclination angle should not be too large to prevent the effect of gravity from weakening and the second valve 163 can respond to the action of the suction device 17. And turn on.
- the return air port 172 and the third valve 173 have the same structure as the exhaust port 162 and the second valve 163, and will not be repeated here.
- a platform part 25 is provided on the base station 20, which is used to receive the autonomous robot 10 for docking.
- the platform part 25 has an upper surface inclined downward in a direction away from the base station 20, which can facilitate guiding the autonomous robot 10 to move to the platform part 25 smoothly.
- the opening 211 of the second air duct 21 and the opening 231 of the third air duct 23 are both provided on the upper surface of the platform 25.
- the upper surface of the platform portion 25 is respectively provided with protrusions 24 at positions close to the opening 211 of the second air duct 21 and the opening 231 of the third air duct 23.
- the protrusion 24 can push the second valve 163 to rotate inwardly in response to the docked state of the autonomous robot 10 so that the drain port 162 is opened and connected to the second
- the openings 211 of the air duct 21 are aligned (as shown in FIG. 7 ), so that the first receiving portion 16 and the second air duct 21 are connected.
- the third valve 173 is also opened in the same way.
- the protrusion 24 corresponding to one of the second valve 163 and the third valve 173 may be provided, and the second valve 163 and the third valve 173 may be provided as a structure that opens and closes integrally.
- the two are constructed as an integrally formed integral structure, or the two are formed separately, and are connected by additional connectors to realize integral opening and closing. In this way, it is possible to avoid placing too many parts on the surface of the platform part 25.
- an extension 174 extending downward is provided under the first valve 171.
- the positions of the first valve 171 and the third valve 173 are reasonably designed so that after the third valve 173 is opened, it abuts on the extension 174, restricting the first valve 171 in the closed state, and realizes linkage. Therefore, through the limiting effect of the third valve 173 on the first valve 171, it is ensured that when the air return port 172 is opened, the first air duct 18 must be cut off, thereby ensuring the smooth execution of the emptying function.
- the suction device 17 is in a state of stopping, and at this time the first valve 171 is in a closed state in response to the action of gravity. Therefore, the third valve 173 can smoothly open and limit the first valve 171. When the third valve 173 is opened, the first valve 171 is in the open state and the third valve 173 cannot act on the extension 174 to limit it. Bit situation.
- the first valve and the third valve can also be set as an integrated opening and closing structure, so that when the first valve is in the open state, the third valve must be in the closed state, and when the first valve When in the closed state, the third valve must be in the open state.
- the first valve 271 and the third valve 273 are constructed as an integral structure.
- the third valve 273 closes the return air opening 272.
- the first valve 271 is away from the vent 265, and the first air duct remains unblocked.
- the third valve 273 rotates around the rotation axis AX4 to the open position under the action of the protrusion or other components such as those described above.
- the first valve 271 rotates integrally with the third valve 273 from the open position to the closed position covering the vent 265. This can reduce the number of parts and improve the processing efficiency during equipment assembly.
- the first valve 271 cannot be opened in response to the suction action of the suction device, nor can it be closed in response to the action of gravity, and can only be opened and closed integrally with the third valve 273 .
- the third valve 273 maintains a normally closed state, and the first valve 271 maintains a normally open state.
- the first valve, the second valve, and the third valve can be integrally constructed without violating the public idea of the present disclosure. Molded structure.
- the intelligent cleaning system, autonomous robot, and base station according to the above embodiments of the present disclosure have the beneficial effects of any combination of the following:
- the intelligent cleaning system has its own garbage collection function, which can realize automatic garbage collection without user intervention and improve user experience.
- the cleaning function and the emptying function share the same suction device, so there is no need to install an additional suction device on the base station, which saves costs and saves the installation space of the base station, thereby making it compact;
- a vibration device is attached to the first filter device of the autonomous robot, which can clean the dust attached to the first filter device in time, so as to keep the first filter device working under the minimum resistance condition and improve the cleaning efficiency.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Electric Vacuum Cleaner (AREA)
Abstract
Description
Claims (15)
- 一种智能清洁系统,其特征在于,所述智能清洁系统包括:自主机器人,所述自主机器人配置为执行清扫功能和排空功能,包括:第一容纳部,所述第一容纳部用于容纳所述自主机器人在执行所述清扫功能期间收集的目标物;第一风道,所述第一风道与所述第一容纳部连通;和抽吸装置,所述抽吸装置配置为能够产生通过所述第一容纳部的具有抽吸作用的空气流动,所述抽吸装置能够通过所述第一风道与所述第一容纳部可开闭地连通;以及基站,所述基站构造为与所述自主机器人对接以从所述第一容纳部排空并收集所述目标物,包括:第二容纳部,所述第二容纳部用于容纳从所述第一容纳部排空的所述目标物;第二风道,所述第二风道与所述第二容纳部连通,所述第二风道用于供所述目标物随所述空气流动进入所述第二容纳部;和第三风道,所述第三风道与所述第二容纳部连通,所述第三风道用于供所述空气流动流出所述第二容纳部;其中,所述智能清洁系统构造为在所述自主机器人与所述基站对接到位以执行所述排空功能的状态下切断所述第一风道,并且所述第一容纳部通过所述第二风道、所述第二容纳部和所述第三风道与所述抽吸装置连通。
- 根据权利要求1所述的智能清洁系统,其特征在于,所述自主机器人设置有与所述第一容纳部连通的排空口和与所述抽吸装置连通的回风口,并且所述排空口与所述回风口不直接连通;在所述自主机器人与所述基站对接到位的状态下,所述第二风道通过所述排空口与所述第一容纳部连通,所述第三风道通过所述回风口与所述抽吸装置连通。
- 根据权利要求2所述的智能清洁系统,其特征在于,所述自主机器人还设置有:第一阀门,所述第一阀门用于控制所述第一风道的开闭;第二阀门,所述第二阀门用于控制所述排空口的开闭;和第三阀门,所述第三阀门用于控制所述回风口的开闭;其中,当所述第一阀门处于开启状态时,所述第二阀门和所述第三阀门处于关闭状态,并且当所述第二阀门和所述第三阀门处于开启状态时,所述第一阀门处于关闭状态。
- 根据权利要求3所述的智能清洁系统,其特征在于,在所述自主机器人执行所述清扫功能的状态下,所述第一阀门构造为响应于所述抽吸装置的抽吸作用从关闭状态切换至开启状态,并且当所述抽吸装置停止工作时响应于重力作用从开启状态切换至关闭状态。
- 根据权利要求3所述的智能清洁系统,其特征在于,所述基站设置有突出部,在 所述自主机器人与所述基站对接到位的状态下,所述突出部推动所述第二阀门和所述第三阀门,使所述第二阀门和所述第三阀门从关闭状态切换至开启状态。
- 根据权利要求3所述的智能清洁系统,其特征在于,处于开启状态的所述第三阀门对所述第一阀门限位,使所述第一阀门锁定为关闭状态。
- 根据权利要求3所述的智能清洁系统,其特征在于,所述第一阀门、所述第二阀门和所述第三阀门中的至少两个构造为一体成型的整体结构。
- 根据权利要求1所述的智能清洁系统,其特征在于,所述第一容纳部和所述抽吸装置之间设置有第一过滤装置。
- 根据权利要求8所述的智能清洁系统,其特征在于,所述自主机器人还包括震动装置,所述震动装置接附至所述第一过滤装置,并且配置为在所述自主机器人执行所述清扫功能期间驱动所述第一过滤装置震动。
- 根据权利要求1所述的智能清洁系统,其特征在于,所述第二容纳部和所述第三风道之间设置有第二过滤装置。
- 根据权利要求1所述的智能清洁系统,其特征在于,所述第二风道内或所述第二风道与所述第二容纳部之间设置有单向阀,所述单向阀构造为朝向所述第二容纳部开启,并且无法反向开启。
- 根据权利要求11所述的智能清洁系统,其特征在于,所述单向阀构造为响应于所述抽吸装置的抽吸作用从关闭状态切换至开启状态,并且当所述抽吸装置停止工作时响应于重力作用从开启状态切换至关闭状态。
- 根据权利要求1所述的智能清洁系统,其特征在于,所述抽吸装置在所述自主机器人执行所述排空功能时的工作功率大于所述抽吸装置在所述自主机器人执行所述清扫功能时的工作功率。
- 一种自主机器人,其特征在于,所述自主机器人配置为执行清扫功能和排空功能,包括:第一容纳部,所述第一容纳部用于容纳所述自主机器人在执行所述清扫功能期间收集的目标物,所述第一容纳部能够通过排空口与外界可开闭地连通;第一风道,所述第一风道与所述第一容纳部连通;和抽吸装置,所述抽吸装置配置为产生通过所述第一容纳部的具有抽吸作用的空气流动,所述抽吸装置能够通过第一风道与所述第一容纳部可开闭地连通,并且所述抽吸装置能够通过回风口与外界可开闭地连通;其中,在所述自主机器人执行所述清扫功能的状态下,所述第一风道处于开启状态,并且所述排空口和所述回风口处于关闭状态;在所述自主机器人执行所述排空功能的状态下,所述第一风道处于关闭状态,并且所述排空口和所述回风口处于开启状态。
- 一种基站,所述基站用于与根据权利要求14所述自主机器人对接以从所述自主机器人排空并收集所述目标物,其特征在于,所述基站包括:第二容纳部,所述第二容纳部用于容纳从所述自主机器人排空的所述目标物;第二风道,所述第二风道与所述第二容纳部连通,所述第二风道用于供所述目标物随所述空气流动进入所述第二容纳部;和第三风道,所述第三风道与所述第二容纳部连通,所述第三风道用于供所述空气流动流出所述第二容纳部;其中,当所述自主机器人与所述基站对接到位时,所述第二风道通过所述排空口与所述第一容纳部连通,所述第三风道通过所述回风口与所述抽吸装置连通。
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| CN209899274U (zh) * | 2019-03-29 | 2020-01-07 | 北京石头世纪科技股份有限公司 | 智能清洁系统、自主机器人和基站 |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| WO2022171105A1 (zh) * | 2021-02-10 | 2022-08-18 | 北京石头世纪科技股份有限公司 | 一种自动清洁设备 |
| ES2941934A1 (es) * | 2021-11-26 | 2023-05-26 | Cecotec Res And Development S L | Estacion de vaciado con sistema de limpieza de medios de filtrado extraibles y metodo asociado |
Also Published As
| Publication number | Publication date |
|---|---|
| CN111743459A (zh) | 2020-10-09 |
| US12390066B2 (en) | 2025-08-19 |
| CN111743459B (zh) | 2024-07-16 |
| US20220175206A1 (en) | 2022-06-09 |
| DE202020005668U1 (de) | 2022-01-05 |
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