WO2024007402A1 - 清洁系统的基座、清洁系统及滚刷干燥方法 - Google Patents

清洁系统的基座、清洁系统及滚刷干燥方法 Download PDF

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Publication number
WO2024007402A1
WO2024007402A1 PCT/CN2022/110138 CN2022110138W WO2024007402A1 WO 2024007402 A1 WO2024007402 A1 WO 2024007402A1 CN 2022110138 W CN2022110138 W CN 2022110138W WO 2024007402 A1 WO2024007402 A1 WO 2024007402A1
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WO
WIPO (PCT)
Prior art keywords
base
air
roller brush
placement area
cleaning system
Prior art date
Application number
PCT/CN2022/110138
Other languages
English (en)
French (fr)
Inventor
沈洋洋
Original Assignee
上海姿东智能科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202210805731.8A external-priority patent/CN115067838A/zh
Priority claimed from CN202210805746.4A external-priority patent/CN115089074A/zh
Application filed by 上海姿东智能科技有限公司 filed Critical 上海姿东智能科技有限公司
Priority to EP22792728.2A priority Critical patent/EP4324376A1/en
Priority to CA3180814A priority patent/CA3180814A1/en
Publication of WO2024007402A1 publication Critical patent/WO2024007402A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/28Floor-scrubbing machines, motor-driven
    • A47L11/282Floor-scrubbing machines, motor-driven having rotary tools
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/40Parts 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

Definitions

  • This application relates to the technical field of cleaning systems, specifically a base of a cleaning system, a cleaning system and a roller brush drying method.
  • the existing cleaning system In order to clean cleaner, the existing cleaning system usually needs to be combined with water for cleaning. After the cleaning operation is completed, sewage will still be retained on the roller brush of the cleaning system, and the existing cleaning system cannot be used after the cleaning system completes the cleaning operation. Rapid cleaning and drying of roller brushes can cause the roller brushes to become smelly, moldy, breed bacteria and produce odor, posing risks to the health of users.
  • one of the purposes of this application is to provide a base for a cleaning system.
  • the base of the cleaning system is provided with a plurality of protrusions on the first placement area, and one end of the plurality of protrusions is inserted into the inside of the roller brush.
  • Increasing the contact surface between the roller brush and the air allows the wind generated by the air-drying component to enter the inside of the roller brush, thereby improving the air-drying effect of the roller brush and speeding up the air-drying speed of the roller brush.
  • a base of a cleaning system used to detachably place the floor brush assembly of the cleaning system
  • the floor brush assembly includes a roller brush
  • the base of the cleaning system includes a base
  • the main body and the air-drying assembly are provided with a cavity in the base body, and the air-drying assembly is located in the cavity
  • the upper surface of the base body is recessed downward to form a first placement area and a second placement area, and the first placement area is used to accommodate the roller brush
  • the first placement area is provided with an air outlet connected to the cavity, and the second placement area is used to accommodate other floor brush components except the roller brush
  • a number of protrusions are provided on the first placement area, and one end of the plurality of protrusions is inserted into the interior of the roller brush.
  • a number of protrusions are provided along the axial direction of the roller brush. Compared with the radial direction of the roller brush, more protrusions can be provided along the axial direction of the roller brush, thereby increasing the contact surface between the entire roller brush and the air.
  • the air outlet is arranged along the axial direction of the roller brush. At this time, the length of the air outlet is longer, the air volume flowing out of the air outlet is larger, and the wind flowing out from the air outlet can directly act on all surfaces of the roller brush.
  • protrusions separate the air outlets.
  • the air outlet and the protrusion are designed to be related.
  • the protrusion can guide the wind blown out from the air outlet, so that the wind flows along the gap between the two protrusions, thereby directly acting on the inside of the roller brush to maximize the effect.
  • the protrusions completely cover the first placement area, and the contact surface between the protrusions and the roller brush is increased by increasing the area of the protrusions.
  • a first groove is provided between the first placement area and the second placement area
  • a first sealing member is provided in the first groove
  • the first sealing member separates the first placement area and the second placement area.
  • a second groove is provided at the air outlet, a second sealing member is provided in the second groove, and the second sealing member is partially in contact with the air outlet.
  • a third groove is provided on the outer periphery of the first placement area, and a third sealing member is provided in the third groove.
  • the third sealing member separates the first placement area from other parts of the upper surface of the base body.
  • the air-drying assembly includes an air source piece, and the air outlet end of the air source piece is arranged opposite to the air outlet, so that the wind generated by the air source piece can flow out through the air outlet.
  • the air-drying assembly also includes a heat source piece.
  • the heat source piece is arranged between the air outlet end of the air source piece and the air outlet. It can convert cold air into hot air and then flow out through the air outlet. The hot air makes the roller brush dry faster.
  • the air source component includes at least one fan. Compared with the traditional setting of only one fan, two or more fans have greater wind power and can speed up drying.
  • the heat source component is at least partially located below the first placement area. At this time, the heat source component can not only convert cold air into hot air to speed up the drying speed of the roller brush, but can also transfer heat to the base body, thereby indirectly transferring heat to the roller brush and accelerating the drying of the roller brush.
  • the base of the cleaning system further includes a pedal, which is fixedly connected to the outside of the base body for assisting the separation of the floor brush assembly from the base of the cleaning system.
  • Another object of the present application is to provide a cleaning system, which includes a cleaning host and a base of the above-mentioned cleaning system.
  • the cleaning host is detachably disposed on the base of the cleaning system.
  • the cleaning system includes a cleaning host and a base.
  • the base is used to detachably place the cleaning host.
  • the cleaning host includes a roller brush and a roller brush drive for driving the rotation of the roller brush.
  • the base includes a base body and an air-drying component, a cavity is provided in the base body, the air-drying component is located in the cavity, an air outlet is provided on the upper surface of the base body to communicate with the cavity, and the roller brush drying method of the cleaning system It includes: sending a start signal to the air-drying component to control the air-drying component to supply air to the air outlet; at the same time, sending a start signal to the roller brush drive device every preset time to control the roller brush drive device to start working, and every preset time Send a stop signal to the roller brush drive device to control the roller brush drive device to stop working.
  • the base of the cleaning system of this application is provided with a number of protrusions on the first placement area, and one end of the protrusions is inserted into the interior of the roller brush, thereby increasing the contact surface between the roller brush and the air, allowing the air-drying component The generated wind is more likely to enter the inside of the roller brush, thereby improving the drying effect of the roller brush and speeding up the drying speed of the roller brush.
  • providing a first seal between the first placement area and the second placement area can prevent sewage from overflowing into the second placement area during the self-cleaning process, so that the user does not need to clean the second placement area and improves the user experience.
  • setting The first sealing member can seal the roller brush in the first placement area when the roller brush is air-dried, thereby improving the air-drying effect of the roller brush and accelerating the air-drying speed of the roller brush.
  • providing a second sealing member at the air outlet can change the direction of the wind flowing out from the air outlet, so that the wind generated by the air drying assembly directly acts on the roller brush.
  • the rolling brush drying method of the present application controls the rolling brush driving device to start working by sending a start signal to the rolling brush driving device every preset time, and sends a stop signal to the rolling brush driving device every preset time to control
  • the roller brush drive device stops working, that is, the roller brush can rest for a period of time after working once every once in a while, and then start working again, and so on.
  • the roller brush drive device does not need to continue to work during the drying process, the energy loss is small, and it can Improve the service life of the roller brush drive device.
  • Figure 1 is a schematic structural diagram of a cleaning system 1000 according to an embodiment of the present application.
  • Figure 2 is a schematic structural diagram of the base 100 of the cleaning system 1000 according to an embodiment of the present application.
  • Figure 3 is a schematic structural diagram of the base 100 of the cleaning system 1000 according to another embodiment of the present application.
  • Figure 4 is a schematic structural diagram of the base 100 of the cleaning system 1000 according to another embodiment of the present application.
  • Figure 5 is an enlarged schematic diagram of point A in Figure 4 in an application scenario
  • Figure 6 is a partial structural cross-sectional view of the cleaning system 1000 according to an embodiment of the present application.
  • Figure 7 is an enlarged schematic diagram of location B in Figure 6 in an application scenario
  • Figure 8 is a schematic structural diagram of the base 100 of the cleaning system 1000 according to yet another embodiment of the present application.
  • Figure 9 is a partial structural schematic diagram of the seal 160 according to an embodiment of the present application.
  • FIG. 10 is a schematic flowchart of the drying method of the roller brush 911 of the cleaning system 1000 according to an embodiment of the present application.
  • the cleaning system 1000 includes a base 100 of the cleaning system 1000 and a cleaning host 900 .
  • the cleaning host 900 is used to clean the daily environment, such as floors, carpets, etc.
  • the cleaning host 900 can be a floor washing machine, a vacuum cleaner, etc.
  • the floor brush assembly 910 is provided at the bottom of the cleaning host 900.
  • the floor brush assembly 910 includes a roller brush 911 and a roller brush housing 912.
  • the roller brush housing 912 covers part of the roller brush 911 and the roller brush housing 912 can be combined with the base 100.
  • a roller brush accommodating area is formed, and the floor brush assembly 910 is disposed at the bottom of the cleaning host 900 so that when the user holds the cleaning host 900, the floor brush assembly 910 at the bottom of the cleaning host 900 can be used to clean the floor or other surfaces to be cleaned.
  • the cleaning host 900 needs to be separated from the base 100 during daily use. After cleaning is completed, the cleaning host 900 can be placed on the base 100.
  • the base 100 provides a place for the cleaning host 900.
  • the cleaning host 900 is equipped with a charging component (not shown).
  • the base 100 can Charge the cleaning host 900; for example, after the cleaning is completed, the cleaning host 900 can perform self-cleaning or self-testing on the base 100.
  • auxiliary components can be provided on the base 100 to assist the cleaning host 900 in completing the above functions.
  • the base 100 includes a base body 110 and an air-drying assembly 130.
  • a cavity 120 is provided in the base body 110, and the air-drying assembly 130 is located in the cavity 120.
  • the upper surface of the base body 110 is recessed downward to form a first placement area 111 and a second placement area 112.
  • the first placement area 111 is used to accommodate the roller brush 911 and an air outlet 1111 is provided on the first placement area 111 to communicate with the cavity 120
  • the second placement area 112 is used to accommodate other floor brush assemblies 910 except the roller brush 911 .
  • a plurality of protrusions 1112 are provided on the first placement area 111, and one end of the plurality of protrusions 1112 is inserted into the inside of the roller brush 911 to increase the contact surface between the roller brush 911 and the air, so that the wind generated by the air drying assembly 130 can enter the inside of the roller brush 911. Thereby improving the air-drying effect of the roller brush 911 and accelerating the air-drying speed of the roller brush 911.
  • first placement area 111 and the second placement area 112 are only for convenience to illustrate the areas on the upper surface of the base body 110 for accommodating different components of the floor brush assembly 910, and do not mean that the first placement area 111 and the second placement area
  • the area 112 is two separated components.
  • the two components can be an integral structure or a split structure, and are not specifically limited here.
  • the protrusions 1112 are plates arranged vertically along the radial direction of the roller brush 911. Regular plates have better mechanical strength and are easier to insert into the interior of the roller brush 911.
  • the specific structure of the protrusion is not limited as long as it can be inserted into the inside of the roller brush and separate the bristles of the roller brush so that the inside of the roller brush is exposed to the air.
  • the protrusions may not be arranged vertically, but may be slightly inclined in the vertical direction, as long as one end of the protrusions can be inserted into the inside of the roller brush.
  • protrusions 1112 are disposed along the axial direction of the roller brush 911
  • the air outlet 1111 is disposed along the axial direction of the roller brush 911
  • several protrusions 1112 separate the air outlet 1111 .
  • the air outlet 1111 is disposed on a side of the first placement area 111 away from the second placement area 112
  • the protrusion 1112 is vertically disposed on the air outlet 1111 and extends toward the middle of the first placement area 111 .
  • the air outlet 1111 and the protrusion 1112 are designed in association, so that the protrusion 1112 can guide the wind blown out from the air outlet 1111, so that the wind flows along the gap between the two protrusions 1112, thereby directly acting on the roller brush 911 Internally, to maximize efficiency.
  • more protrusions 1112 can be arranged along the axial direction of the roller brush 911, so that The contact surface between the entire roller brush 911 and the air is increased.
  • the roller brush 911 is in contact with the protrusions 1112 everywhere along its length, which can realize simultaneous drying of the roller brush 911 and maximize the effect.
  • the air outlet 1111 is arranged along the axial direction of the roller brush 911, the length of the air outlet 1111 is longer, and more air flows out of the air outlet 1111, and the wind flowing out of the air outlet 1111 can directly act on all surfaces of the roller brush 911.
  • the protrusions can be dispersed throughout the first placement area, and are not limited to being arranged along the axial direction of the roller brush, as long as the protrusions provided can be inserted into the interior of the roller brush.
  • the air outlet can also be set anywhere in the first placement area at will, and is not limited to being arranged along the axial direction of the roller brush. As long as the wind generated by the air-drying assembly can flow out from the air outlet, other sealing means can be used to make the wind act on the Roll on brush.
  • the protruding and air-drying components can be set separately. There is no fixed positional relationship between the two, and each can perform its own duties. Obviously, the protrusions can be arranged along the axial direction of the roller brush and the air outlet can be set at will, or the air outlet can be arranged along the axial direction of the roller brush and the protrusions can be set at will. The positions of the protrusions and the air outlet are not specifically limited.
  • a plurality of protrusions 1112 are parallel to each other and have the same distance between them, which can achieve uniform air drying of the roller brush 911 and avoid the situation where part of the protrusions 1112 are air-dried and part of the protrusions 1112 are not air-dried.
  • a few less protrusions can be provided at the relative positions of the roller brush and the air outlet end of the air source component, and a few more protrusions can be provided in other areas, that is, at the air outlet Set fewer bulges in large places and set more bulges in places with less wind, so that all parts of the roller brush can be air-dried at the same time.
  • one end of a number of protrusions 1112 inserted into the roller brush 911 is chamfered, which can extend the service life of the roller brush 911 and prevent the bristles of the roller brush 911 from being scratched or even broken by the protrusions 1111. .
  • the protrusions 1112 can also squeeze the roller brush 911 and accelerate the water seepage in the roller brush 911.
  • the protrusions 1112 can also play a role in collecting hair on the roller brush 911 to help clean the roller brush. Call 911.
  • the protrusion 1112 completely covers the first placement area 111 , that is, the protrusion 1112 in this embodiment passes from the air outlet 1111 extends toward the first placement area 111 until it covers the entire first placement area 111.
  • the contact surface between the protrusion 1112 and the roller brush 911 is increased, and at this time, the protrusion 1112 supports the roller brush. 911, that is, the area where the roller brush 911 is not completely in contact with the first placement area 111, so that the wind can circulate around the roller brush 911 from between the two protrusions 1112.
  • the protrusion 1112 does not completely cover the first placement area 111.
  • the protrusion 1112 is only provided at the end of the first placement area 111 close to the air outlet 1111, that is, at this time, the roller brush 911 There is a part that completely fits on the first placement area 111.
  • the protrusion 1112 in this embodiment is smaller than the protrusion 1112 shown in Figure 8, and its contact surface with the roller brush 911 is also smaller, but compared with The protrusions 1112 shown in Figure 8 are easier to insert into the roller brush 911. Even in this embodiment, a part of the roller brush 911 is completely attached to the first placement area 111, so that only a small amount of hot air can circulate around the roller brush 911.
  • the entire roller brush 911 can also be air-dried.
  • the protrusions 1112 completely cover the first placement area 111
  • only providing the protrusions 1112 at the end of the first placement area 111 can prevent the sewage seeping from the roller brush 911 from interacting with the protrusions 1112 for a long time. contact, causing contamination to the protrusion 1112.
  • the location of the protrusions is not limited to the end near the air outlet as shown in FIG. 4 , and can be set arbitrarily in the first placement area.
  • a first groove 150 is provided between the first placement area 111 and the second placement area 112 , and a first seal 160 is provided in the first groove 150 .
  • the first seal 160 The first placement area 111 and the second placement area 112 are separated.
  • the first seal 160 provided between the first placement area 111 and the second placement area 112 can prevent sewage from overflowing into the second placement area 112 during the self-cleaning process. After the second placement area 112 is contaminated, it is difficult to self-clean and requires manual labor. Manual cleaning will reduce the user experience.
  • the first seal 160 can seal the roller brush 911 in the first placement area 111 when the roller brush 911 is air-dried, thereby improving the drying effect of the roller brush 911 and speeding up the drying of the roller brush 911. drying speed.
  • a second groove 151 is provided at the air outlet 1111 , a second seal 161 is provided in the second groove 151 , and the second seal 161 is partially in contact with the air outlet 1111 .
  • Providing the second sealing member 161 at the air outlet 1111 can change the direction of the wind flowing out from the air outlet 1111, so that the wind directly acts on the roller brush 911 along the second sealing member 161.
  • the air outlet 1111 is provided along the axial direction of the roller brush 911 and is located at the end of the first placement area 111 away from the second placement area 112 .
  • the protrusions 1112 are also provided along the axial direction of the roller brush 911 and separated.
  • the second sealing member 161 is in contact with the protrusion 1112.
  • the protrusion 1112 cooperates with the second sealing member 161 to be more conducive to guiding the wind direction.
  • the second seal 161 is provided to seal the roller brush 911 in the first placement area 111 when the roller brush 911 is self-cleaning and air-drying, thereby improving the air-drying effect of the roller brush 911 and speeding up the air-drying speed of the roller brush 911.
  • first sealing member 160 and the second sealing member 161 can be provided at the same time, and the arrangement method is the same as the above-mentioned method, which will not be described again here.
  • the base 100 of this embodiment can not only prevent sewage from overflowing from the first placement area 111 to the second placement area 112 , but also change the direction of the wind flowing out from the air outlet 1111 so that the wind directly acts on the roller brush 911 .
  • a third groove 152 can be provided on the outer periphery of the first placement area 111 , and a third seal 162 is provided in the third groove 152 .
  • the third seal 162 seals the first The placement area 111 is separated from other parts of the upper surface of the base body 110 .
  • the third seal 162 By arranging the third seal 162 on the outer periphery of the first placing area 111, the first placing area 111 can be separated from other parts of the upper surface of the base body 110, so that the roller brush 911 is completely sealed between the roller brush housing 912 and the third sealing member 162.
  • the first placement area 111 prevents the sewage from splashing from the first placement area 111 to other parts of the base body 110 or the ground around the place where the base 100 is placed during the self-cleaning process of the roller brush 911.
  • the first seal 160 is provided between the first placement area 111 and the second placement area 112
  • the third seal 162 is provided around the first placement area 111 to completely seal the roller brush 911 in the first placement area when the roller brush 911 is air-dried.
  • the third seal 162 also plays a role in guiding the wind direction.
  • the first seal 160 is a T-shaped seal, that is, the cross-section of the seal 160 is T-shaped, including vertical plates 1601 and horizontal plates 1602 that are perpendicular to each other.
  • the vertical plates 1601 are opposite to the first groove 150 .
  • Adaptation can fix the position of the first seal 160 to avoid moving the first seal 160 when the cleaning host 900 is taken out from the base 100 .
  • the second sealing member 161 and the third sealing member 162 are both T-shaped sealing members, and both include vertical plates 1601 and horizontal plates 1602 that are perpendicular to each other.
  • the overall structures of the first sealing member 160, the second sealing member 161, and the third sealing member 162 are respectively adapted to the first groove 150, the second groove 151, and the third groove 152.
  • the surface area of the transverse plate 1602 of the T-shaped seal is larger, that is, the surface area of the transverse plate 1602 in contact with other components is larger, which can make the first seal 160 and/or the second seal 161 or
  • the third seal 162 completely covers the roller brush housing 912 on the floor brush assembly 910 and the bottom of the floor brush assembly 910, which can ensure to the greatest extent that the wind generated by the air-drying assembly 130 can pass through the first placement area 111 and the roller brush housing 912. It circulates in the space surrounded by the floor brush assembly 910 to maximize the effect.
  • the vertical plate 1601 of the first sealing member 160 can be configured as a hollow structure to increase the elasticity of the first sealing member 160 and reduce the weight of the first sealing member 160 .
  • reinforcing ribs can be added to the hollow structure of the vertical plate 1601.
  • Both the second sealing member 161 and the third sealing member 162 may adopt the same structure as the first sealing member 160, and details will not be described again here.
  • the riser 1601 can also be configured as a solid structure or other structures that facilitate assembly, and there is no limitation here.
  • the first placement area 111 is arc-shaped.
  • the arc-shaped first placement area 111 can better cover and support the roller brush 911, so that the base 100 of the cleaning system 1000 can The cleaning host 900 is stably supported.
  • the arc-shaped first placement area 111 is more conducive to the insertion of the protrusion 1112 into the inside of the roller brush 911, increasing the distance between the protrusion 1112 and the roller brush 911. Brush the contact surface of 911 to speed up the drying speed of roller brush 911.
  • the arc-shaped first placement area 111 can better accommodate the sewage generated during the self-cleaning process of the roller brush 911 and prevent the sewage from flowing into the second placement area 112 .
  • the height of the first placement area 111 along both sides of the radial direction of the roller brush 911 in the vertical direction is higher than the height of the second placement area 112. Firstly, it can facilitate the installation of the seal, and secondly, it can avoid the overflow of sewage. , and can better match the floor brush assembly 910.
  • there is no restriction on whether the height of both sides of the first placement area along the radial direction of the roller brush in the vertical direction is higher than the height of the second placement area, and may be the same as the height of the second placement area.
  • the base 100 also includes a support column 180.
  • the support column 180 is connected above the base 100, so that when the floor brush assembly 910 is placed on the base 100, the body of the cleaning host 900 is hung on the support column 180. superior.
  • the support column 180 is a hollow structure, with a charging component and a controller (not shown in the figure) disposed inside.
  • the charging component and controller are disposed inside the support column 180, and the support column 180 can be used to protect the charging component and controller.
  • the area of the base 100 is much larger than the area of the support column 180.
  • the base 100 can play a role in supporting the support column 180, making the structure of the support column 180 stable and convenient for subsequent support of the cleaning host 900.
  • the stable support column 180 can increase the contact between the base 100 and the cleaning host 900. area to improve the positional stability of the cleaning host 900 so that the cleaning host 900 can dry stably.
  • the base 100 and the support column 180 are made using an integrated molding process.
  • the one-piece molding process ensures that the base 100 does not need to undergo preliminary welding or screw connection and other machining processes on the base 100 and the support column 180 during the assembly process, which effectively simplifies the assembly process and improves the assembly efficiency of the base 100.
  • the one-piece molding process can effectively avoid deformation of the base 100 due to early machining, and effectively improve the assembly accuracy of the base 100 and the support column 180.
  • the base 100 and the support column 180 can also be two separate structures. After the base 100 and the support column 180 are processed separately, the support column 180 can be made non-detachable through welding, bonding, etc. The support column 180 can also be connected to the base 100 through a detachable connection such as bolt connection, snap connection, etc., so that the base 100 is easy to disassemble and assemble, and is convenient for maintenance and replacement.
  • a detachable connection such as bolt connection, snap connection, etc.
  • the air drying assembly 130 includes a heat source component 131 and an air source component 132.
  • the heat source component 131 is disposed between the air outlet end of the air source component 132 and the air outlet 1111. It can convert cold air into hot air and then pass through the air outlet 1111. Outflow, hot air makes the roller brush 911 dry faster.
  • the heat source component 131 can be a PTC heating piece, an electric heating wire, an electric heating tube, an electric heating plate, etc.
  • the heat source 131 is a PTC heating piece.
  • the PTC heating piece is composed of a ceramic heating element and an aluminum tube.
  • the heat source member 131 is at least partially located below the first placement area 111 . At this time, the heat source component 131 not only changes the cold air into hot air to speed up the drying speed of the roller brush 911, but also transfers heat to the base body 110, thereby indirectly transferring the heat to the roller brush 911 and accelerating the drying of the roller brush 911.
  • the air source component 132 can be an axial flow fan or a centrifugal fan.
  • the air inlet direction and the air outlet direction of the axial flow fan are along the fan axis, while the centrifugal fan can inlet the air along the axial direction and outlet the air in the radial direction.
  • the air source component 132 may be a bladed fan or a bladeless fan.
  • the specific form of the air source component 132 is not particularly limited in this embodiment.
  • the air source member 132 includes at least one fan. Compared with the traditional method of providing only one fan, the wind power of multiple fans is greater, which can accelerate air drying.
  • the air source component 132 is located below the second placement area 112.
  • the air source component 132 is disposed in the second placing area 112.
  • the air duct can be shortened below the placement area 112 to reduce air volume loss and maximize efficiency.
  • the air source component 132 is disposed below the second placement area 112 close to the first placement area 111 .
  • the air-drying component may not be provided with a heat source component, but may only be provided with an air source component.
  • the cold air can also dry the roller brush, thereby reducing problems such as bacterial growth after heating.
  • the position of the wind source parts and the number of fans are not limited. They can be the same as the existing technology, as long as they can realize the function of generating wind.
  • the air-drying assembly 130 also includes an indicator light.
  • the indicator light is used to display the working status of the air-drying assembly 130. When the indicator light is on, it indicates that the air-drying assembly 130 is in a normal working status. When the indicator light is off, it indicates that the air-drying assembly 130 is not in a working status. .
  • the base 100 further includes a pedal 170 , which is fixedly connected to the outside of the base body 110 for assisting the separation of the floor brush assembly 910 from the base 100 .
  • the floor brush assembly 910 is fixedly connected to the base body 110.
  • a pedal 170 is provided. When taking the cleaning host 900 from the base 100, step or press the pedal 170. The base 100 can be fixed and the cleaning host 900 can be easily taken.
  • this application also provides a method for drying the roller brush 911 of the cleaning system 1000.
  • the method includes: sending a start signal to the air drying component 130 to control the air drying component 130 to the air outlet. Air is supplied at 1111; at the same time, a start signal is sent to the roller brush drive device every preset time to control the roller brush drive device to start working, and a stop signal is sent to the roller brush drive device every preset time to control the roller brush drive.
  • the device stops working that is, the roller brush 911 is rotated for a period of time, so that the roller brush driving device does not need to continue working during the drying process, the energy loss is small, and the service life of the roller brush driving device can be increased.
  • the cleaning system 1000 also includes a timer (not shown in the figure), through which the time of sending a start signal or a stop signal to the roller brush driving device is controlled.
  • the air-drying component 130 includes an air source component 132 and an indicator light.
  • the air outlet end of the air source component 132 is arranged opposite to the air outlet 1111.
  • the indicator light is used to display the working status of the air-drying component 130 and send signals to the air-drying component 130.
  • the steps of starting the signal to control the air drying component 130 to supply air to the air outlet 1111 include: sending the starting signal to the air drying component 130, the air source component 132 and the indicator light 133 start working at the same time, and after running for a specified time, the air source component 132 and the indicator light stop working.
  • the air-drying component 130 further includes a heat source component 131.
  • the heat source component 131 is disposed between the air outlet end of the air source component 132 and the air outlet 1111, and sends a start signal to the air-drying component 130 to control the air-drying component 130 to the outlet.
  • the steps of supplying air at the air outlet 1111 include: sending a start signal to the air drying component 130, the air source component 132, the heat source component 131 and the indicator light 133 start working at the same time.
  • the heat source component 131 stops working, the air source component 132 and the indicator
  • the lamp 133 continues to run for a set time and then stops working to dissipate heat from the heat source component 131 to prevent the base body 110 that is in indirect contact with the heat source component 131 from deforming due to high temperature, thereby reducing safety risks.
  • a stop signal is sent to the air-drying component 130.
  • the heat source component 131 and the indicator light stop working, and the air source component 132 continues to run for the set time and then stops working.
  • the heat source component 131 is dissipated to prevent the base body 110 that is in indirect contact with the heat source component 131 from deforming due to high temperature, thereby reducing safety risks; the indicator light 133 immediately stops working to indicate to the user that the stop of air drying is effective.
  • a stop signal is sent to the air drying component 130.
  • the indicator light stops working.
  • the air source component 132 continues to run for a set time and then stops working to dissipate the heat of the heat source component 131 to prevent the base body 110 that is in indirect contact with the heat source component 131 from deforming due to high temperature, thereby reducing safety risks; the indicator light immediately stops working to warn the user. The user indicates that the operation to stop air drying is valid.
  • the base 100 of the cleaning system 1000 of the present application is provided with a plurality of protrusions 1112 on the first placement area 111, and one end of the plurality of protrusions 1112 is inserted into the interior of the roller brush 911 to increase the contact surface between the roller brush 911 and the air, allowing the air-drying assembly
  • the wind generated by 130 is more likely to enter the inside of the roller brush 911, thereby improving the drying effect of the roller brush 911 and speeding up the drying speed of the roller brush 911.
  • the first seal 160 provided between the first placement area 111 and the second placement area 112 can prevent sewage from overflowing into the second placement area 112 during the self-cleaning process, so that the user does not need to clean the second placement area 112 and improves the user experience.
  • setting the first seal 160 can seal the roller brush 911 in the first placement area 111 when the roller brush 911 is air-dried, thereby improving the air-drying effect of the roller brush 911 and speeding up the air-drying speed of the roller brush 911.
  • disposing the second seal 161 at the air outlet 1111 can change the direction of the wind flowing out from the air outlet 1111, so that the wind generated by the air drying assembly 130 directly acts on the roller brush 911.
  • the rolling brush 911 drying method of the present application controls the rolling brush driving device to start working by sending a start signal to the rolling brush driving device every preset time, and sends a stop signal to the rolling brush driving device every preset time.
  • Control the roller brush drive device to stop working that is, the roller brush 911 can rest for a period of time after working once, and then start working again, and so on. At this time, the roller brush drive device does not need to continue to work during the drying process, and the energy loss is small. And it can improve the service life of the roller brush driving device.

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Abstract

一种清洁系统(1000)的基座(100),包括基座本体(110)和风干组件(130),基座本体(110)内设置有空腔(120),风干组件(120)位于空腔(120)内;基座本体(110)的上表面向下凹陷形成第一放置区(111)和第二放置区(112),第一放置区(111)用于容纳滚刷(911)且第一放置区(111)上设置出风口(1111)并连通空腔(120),第二放置区(112)用于容纳除滚刷(911)外的其他地刷组件;第一放置区(111)上设置若干凸起(1112),且若干凸起(1112)的一端插入滚刷(911)内部。清洁系统(1000)的基座(100)通过在第一放置区(111)上设置若干凸起(1112),若干凸起(1112)的一端插入滚刷(911)内部,增大滚刷(911)与空气的接触面,使得风干组件(130)产生的风更易进入滚刷(911)内部,从而提高滚刷(911)的风干效果,且加快滚刷(911)的风干速度。还公开了一种包含基座(100)的清洁系统(1000)以及一种滚刷(911)干燥方法。

Description

清洁系统的基座、清洁系统及滚刷干燥方法 技术领域
本申请涉及清洁系统技术领域,具体是一种清洁系统的基座、清洁系统及滚刷干燥方法。
背景技术
为了清洁的更干净,现有的清洁系统通常需要结合水进行清洁作用,在完成清洁作业后,清洁系统的滚刷上仍会滞留污水,而现有的清洁系统无法在清洁系统完成清洁作业后对滚刷进行快速清洁和干燥,导致滚刷发臭,发霉,滋生细菌产生异味,给用户的健康带来风险。
内容
针对现有技术的不足,本申请的目的之一是提供一种清洁系统的基座,该清洁系统的基座在第一放置区上设置若干凸起,若干凸起的一端插入滚刷内部,增大滚刷与空气的接触面,使得风干组件产生的风得以进入滚刷内部,从而提高滚刷的风干效果,且加快滚刷的风干速度。
为实现上述目的,本申请所采用的技术手段如下:一种清洁系统的基座,用于可分离地放置清洁系统的地刷组件,地刷组件包括滚刷,清洁系统的基座包括基座本体和风干组件,基座本体内设置有空腔,风干组件位于空腔内;基座本体的上表面向下凹陷形成第一放置区和第二放置区,第一放置区用于容纳滚刷且第一放置区上设置出风口连通空腔,第二放置区用于容纳除滚刷外的其他地刷组件;第一放置区上设置若干凸起,且若干凸起的一端插入滚刷内部。
其中,若干凸起沿滚刷的轴向设置,相较于沿滚刷的径向,沿滚刷的轴向可设置更多凸起,从而增大滚刷整体与空气的接触面。
其中,出风口沿滚刷的轴向设置,此时出风口的长度较长,出风口流 出的风量较多,且可使得从出风口处流出的风直接作用在滚刷的所有表面。
其中,若干凸起分隔出风口。出风口与凸起做关联设计,凸起可对从出风口吹出的风起导向作用,使得风沿着两个凸起之间的间隙流动,从而直接作用到滚刷内部,达到功效最大化。
其中,在第一放置区沿滚刷的径向上,凸起完全覆盖住第一放置区,通过增大凸起面积从而增大凸起与滚刷的接触面。
其中,第一放置区与第二放置区之间设置第一凹槽,第一凹槽内设置第一密封件,第一密封件将第一放置区与第二放置区相分隔。第一放置区与第二放置区之间设置第一密封件可以防止自清洁过程中污水外溢到第二放置区,第二放置区被污染后难以做到自清洁,需人工手动清理,会降低用户使用体验,另外,设置第一密封件可以在滚刷风干时将滚刷密封在第一放置区内,从而提高滚刷的风干效果,加快滚刷的风干速度。
其中,出风口处设置第二凹槽,第二凹槽内设置第二密封件,第二密封件与出风口部分抵接。在出风口处设置第二密封件可改变从出风口处流出的风的方向,使得风沿着第二密封件直接作用在滚刷上。
其中,第一放置区的外周设置第三凹槽,第三凹槽内设置第三密封件,第三密封件将第一放置区与基座本体上表面的其他部位相分隔。通过在第一放置区的外周设置第三密封件,可将第一放置区与基座本体上表面的其他部位相分隔,使得滚刷完全密封在滚刷壳体和第一放置区之间,阻碍了滚刷自清洁过程中污水从第一放置区飞溅到基座的其他部位或者基座放置处周围的地面上,另外,还可以在滚刷风干时将滚刷密封在第一放置区内,从而提高滚刷的风干效果,加快滚刷的风干速度。
其中,风干组件包括风源件,风源件的出风端与出风口相对设置,可使得风源件所产生的风可通过出风口流出。
其中,风干组件还包括热源件,热源件设置在风源件的出风端与出风口之间,可将冷风转换为热风后通过出风口流出,热风使得滚刷的风干速度更快。
其中,风源件包括至少一个风机。相比于传统的仅设置一个风机,两 个或两个以上风机的风力更大,可加速风干。
其中,热源件至少部分位于第一放置区的下方。此时热源件除了可以将冷风转换为热风,加快滚刷的风干速度外,还可以将热量传递给基座本体,从而间接地将热量传递给滚刷,加速滚刷的干燥。
其中,清洁系统的基座还包括踏板,踏板与基座本体的外侧固定连接用于辅助地刷组件与清洁系统的基座分离。
本申请的另一个目的是提供一种清洁系统,包括清洁主机和上述清洁系统的基座,清洁主机可分离地设置在清洁系统的基座上。
本申请还提供一种清洁系统的滚刷干燥方法,清洁系统包括清洁主机和基座,基座用于可分离地放置清洁主机,清洁主机包括滚刷和用于驱动滚刷旋转的滚刷驱动装置,基座包括基座本体和风干组件,基座本体内设置有空腔,风干组件位于空腔内,在基座本体的上表面上设置出风口连通空腔,清洁系统的滚刷干燥方法包括:向风干组件发送启动信号以控制风干组件向出风口处送风;同时,每隔预设时间向滚刷驱动装置发送一次启动信号以控制滚刷驱动装置开始工作,且每隔预设时间向滚刷驱动装置发送一次停止信号以控制滚刷驱动装置停止工作。
本申请的有益效果是:本申请的清洁系统的基座通过在第一放置区上设置若干凸起,若干凸起的一端插入滚刷内部,增大滚刷与空气的接触面,使得风干组件产生的风更易进入滚刷内部,从而提高滚刷的风干效果,且加快滚刷的风干速度。
同时,在第一放置区与第二放置区之间设置第一密封件可以防止自清洁过程中污水外溢到第二放置区,使得用户免于打扫第二放置区,提升用户体验,其次,设置第一密封件可以在滚刷风干时将滚刷密封在第一放置区内,从而提高滚刷的风干效果,加快滚刷的风干速度。此外,在出风口处设置第二密封件可改变从出风口处流出的风的方向,使得风干组件产生的风直接作用在滚刷上。
另外,本申请的滚刷干燥方法通过每隔预设时间向滚刷驱动装置发送一次启动信号以控制滚刷驱动装置开始工作,且每隔预设时间向滚刷驱动装置发送一次停止信号以控制滚刷驱动装置停止工作,即滚刷每隔一段时 间工作一次后可以休息一段时间,之后再进行工作,如此反复,此时滚刷驱动装置无需在风干过程中持续工作,能源损耗小,且可提高滚刷驱动装置的使用寿命。
附图说明
图1是本申请一实施方式的清洁系统1000的结构示意图;
图2是本申请一实施方式的清洁系统1000的基座100的结构示意图;
图3是本申请另一实施方式的清洁系统1000的基座100的结构示意图
图4是本申请又一实施方式的清洁系统1000的基座100的结构示意图;
图5是图4在一应用场景中A处的放大示意图;
图6是本申请一实施方式的清洁系统1000的部分结构剖面图;
图7是图6在一应用场景中B处的放大示意图;
图8是本申请再一实施方式的清洁系统1000的基座100的结构示意图;
图9是本申请一实施方式的密封件160的部分结构示意图;
图10是本申请一实施例方式的清洁系统1000的滚刷911干燥方法的流程示意图。
具体实施方式
根据要求,这里将披露本申请的具体实施方式。然而,应当理解的是,这里所披露的实施方式仅仅是本申请的典型例子而已,其可体现为各种形式。因此,这里披露的具体细节不被认为是限制性的,而仅仅是作为权利要求的基础以及作为用于教导本领域技术人员以实际中任何恰当的方式不同地应用本申请的代表性的基础,包括采用这里所披露的各种特征并结合这里可能没有明确披露的特征。
在本申请的描述中,需要理解的是,术语“长度”、“上”、“下”、“前”、“后”、“左”、“右”、“水平”、“顶”、“底”、“内”、“外”、“周向”等指示的方 位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
结合图1和图6所示,清洁系统1000包括清洁系统1000的基座100和清洁主机900,清洁主机900用于清洁日常生活环境,例如可以清洁地面、地毯等。根据使用用途的不同,清洁主机900可以是洗地机、吸尘器等。清洁主机900的底部设有地刷组件910,地刷组件910包括滚刷911和滚刷壳体912,滚刷壳体912包覆部分滚刷911且滚刷壳体912可与基座100共同形成滚刷容纳区,地刷组件910设置在清洁主机900的底部,以便于用户手持清洁主机900时利用其底部的地刷组件910清洁地面或其他待清洁表面。
可以理解的是,在日常使用时需要将清洁主机900从基座100上分离,等清洁完毕后可以将清洁主机900置于基座100上,基座100为清洁主机900提供了安放之所。当然随着技术进步,基座100还被赋予了更多功能,例如清洁主机900内设置有充电组件(图未示出),清洁主机900用完后置于基座100时,基座100可以为清洁主机900充电;又例如清洁主机900在清洁完成后,可以在基座100上进行自清洁或者自检测等,此时基座100上可以设置辅助元件,以辅助清洁主机900完成上述功能。
在一实施方式中,结合图4、图5和图6所示,基座100包括基座本体110和风干组件130,基座本体110内设置有空腔120,风干组件130位于空腔120内;基座本体110的上表面向下凹陷形成第一放置区111和第二放置区112,第一放置区111用于容纳滚刷911且第一放置区111上设置出风口1111连通空腔120,第二放置区112用于容纳除滚刷911外的其他地刷组件910。第一放置区111上设置若干凸起1112,且若干凸起1112的一端插入滚刷911内部,增大滚刷911与空气的接触面,使得风干组件130产生的风得以进入滚刷911内部,从而提高滚刷911的风干效果,且加快滚刷911的风干速度。
需要说明的是,第一放置区111和第二放置区112仅为方便说明基座本体110上表面用于容纳地刷组件910不同部件的区域,并不表示第一放 置区111和第二放置区112为分隔开来的两个部件,两者可为一体成型的结构,也可为分体结构,在此不做具体限制。
具体地,凸起1112为沿滚刷911的径向竖直设置的板件,规则的板件机械强度更好,更易插入滚刷911的内部。在其他实施方式中,凸起的具体结构不做限制,只要能插入滚刷内部,分开滚刷的刷毛,使得滚刷的内部暴露在空气中即可。另外,凸起也可不是竖直设置的,在竖直方向上略微有些倾斜角度也可,只要能实现凸起的一端插入滚刷内部即可。
结合图4和图5可知,在一实施方式中,若干凸起1112沿滚刷911的轴向设置,出风口1111沿滚刷911的轴向设置,且若干凸起1112分隔出风口1111。具体地,出风口1111设置在第一放置区111远离第二放置区112的一侧,凸起1112竖直设置在出风口1111上且往第一放置区111的中间延伸。出风口1111与凸起1112做关联设计,使得凸起1112可对从出风口1111吹出的风起导向作用,使得风沿着两个凸起1112之间的间隙流动,从而直接作用到滚刷911内部,达到功效最大化。另外,相较于将若干凸起1112沿滚刷911的径向设置,在两个凸起1112之间的间隙相同的条件下,沿滚刷911的轴向可设置更多凸起1112,从而增大滚刷911整体与空气的接触面,其次,滚刷911沿其长度方向的各处均与凸起1112接触,可实现滚刷911各处同时干燥,达到功效最大化。出风口1111沿滚刷911的轴向设置时出风口1111的长度较长,出风口1111流出的风量较多,且可使得从出风口1111流出的风直接作用在滚刷911的所有表面。在其他实施方式中,凸起可分散在第一放置区的各处,不局限于沿滚刷的轴向设置,只要设置的凸起可插入滚刷内部即可。出风口也可随意设置在第一放置区的各处,不局限于沿滚刷的轴向设置,只要风干组件产生的风可从出风口处流出即可,可通过其他密封手段使得风作用在滚刷上。凸起与风干组件可各自设置,两者没有固定的位置关系,各司其职即可。显然,可在凸起沿滚刷轴向设置的同时,随意设置出风口,或者出风口沿滚刷轴向设置的同时,随意设置凸起,凸起与出风口的位置均不作具体限制。
在一实施方式中,若干凸起1112相互平行且两两之间距离相同,可对滚刷911实现均匀风干,避免了部分风干部分未风干的情况发生。在其 他实施方式中,结合风干组件中风源件的位置,可在滚刷与风源件的出风端的相对位置处少设置几个凸起,在其他区域多设置几个凸起,即在风大的地方少设置几个凸起,在风小的地方多设置几个凸起,以实现滚刷各部位同时被风干。
如图5所示,在一实施方式中,若干凸起1112插入滚刷911内部的一端做倒角设计,可延长滚刷911的使用寿命,避免滚刷911刷毛与凸起1111刮擦甚至断裂。自清洁过程中,凸起1112的设置也可挤压滚刷911,加速滚刷911中的水分渗出,另外,凸起1112还可起到收集滚刷911上的毛发的作用,助力清洁滚刷911。
在一实施方式中,参照图8可知,在第一放置区111沿滚刷911的径向上,凸起1112完全覆盖住第一放置区111,即本实施方式中的凸起1112从出风口1111处向第一放置区111延伸直至铺满整个第一放置区111,通过增大凸起1112的面积从而增大凸起1112与滚刷911的接触面,且此时凸起1112支撑住滚刷911,即滚刷911无完全与第一放置区111贴合的区域,使得风可从两两凸起1112之间环绕滚刷911流通。在另一实施方式中,凸起1112未完全覆盖第一放置区111,参照图4所示,仅在第一放置区111靠近出风口1111的端部设置凸起1112,即此时滚刷911有一部分完全贴合在第一放置区111上,本实施方式中的凸起1112相对于图8所示的凸起1112较小,其与滚刷911的接触面也更小,但其相比于图8所示的凸起1112更易于插入滚刷911中,即使该实施方式中由于滚刷911有一部分完全贴合在第一放置区111上,使得仅有少量热风可环绕滚刷911流通,但通过滚刷911的自转,也可实现滚刷911整体的风干。另外,相比于凸起1112完全覆盖住第一放置区111的设置方式,仅在第一放置区111的端部设置凸起1112可避免滚刷911内渗出的污水长时间与凸起1112接触,对凸起1112造成污染。在其他实施方式中,当凸起设置为不完全覆盖第一放置区时,凸起的位置不局限于图4所示的靠近出风口的端部,可在第一放置区内随意设置。
如图2所示,在一实施方式中,第一放置区111与第二放置区112之间设置第一凹槽150,第一凹槽150内设置第一密封件160,第一密封件 160将第一放置区111与第二放置区112相分隔。第一放置区111与第二放置区112之间设置第一密封件160可以防止自清洁过程中污水外溢到第二放置区112,第二放置区112被污染后难以做到自清洁,需人工手动清理,会降低用户使用体验,另外,设置第一密封件160可以在滚刷911风干时将滚刷911密封在第一放置区111内,从而提高滚刷911的风干效果,加快滚刷911的风干速度。
如图3所示,在另一实施方式中,出风口1111处设置第二凹槽151,第二凹槽151内设置第二密封件161,第二密封件161与出风口1111部分抵接。在出风口1111处设置第二密封件161可改变从出风口1111处流出的风的方向,使得风沿着第二密封件161直接作用在滚刷911上。在本实施方式中,出风口1111沿滚刷911的轴向方向设置且位于第一放置区111远离第二放置区112的端部,凸起1112也沿滚刷911的轴向方向设置且分隔出风口1111,此时第二密封件161与凸起1112相抵接,凸起1112与第二密封件161配合后更有利于引导风向。此时设置第二密封件161可以在滚刷911自清洁及风干时将滚刷911密封在第一放置区111内,从而提高滚刷911的风干效果,加快滚刷911的风干速度。
在又一实施方式中,可同时设置第一密封件160和第二密封件161,设置方式与上述方式相同,在此不再赘述。本实施方式的基座100既可防止污水从第一放置区111外溢到第二放置区112,也可以改变从出风口1111处流出的风的风向,使得风直接作用在滚刷911上。
结合图4所示,在又一实施方式中,可在第一放置区111的外周设置第三凹槽152,第三凹槽152内设置第三密封件162,第三密封件162将第一放置区111与基座本体110上表面的其他部位相分隔。通过在第一放置区111的外周设置第三密封件162,可将第一放置区111与基座本体110上表面的其他部位相分隔,使得滚刷911完全密封在滚刷壳体912和第一放置区111之间,阻碍了滚刷911自清洁过程中污水从第一放置区111飞溅到基座本体110的其他部位或者基座100放置处周围的地面上,另外,相比于仅在第一放置区111与第二放置区112之间设置第一密封件160,第三密封件162环绕第一放置区111设置可以在滚刷911风干时将滚刷 911完全密封在第一放置区111内,从而提高滚刷911的风干效果,加快滚刷911的风干速度。当出风口1111位于第一放置区111外周的任意位置时,第三密封件162还起引导风向的作用,另外,结合上述情况可以显然得知,当凸起1112与出风口1111结合设置且位于第一放置区111外周的任意位置时,第三密封件162与凸起1112抵接以改变风向,在此不再赘述。
如图9所示,第一密封件160为T型密封件,即密封件160的横截面为T型,包括相互垂直的竖板1601与横板1602,竖板1601与第一凹槽150相适配,可固定第一密封件160的位置,避免从基座100上拿取清洁主机900时移动第一密封件160。第二密封件161和第三密封件162均为T型密封件,均包括相互垂直的竖板1601与横板1602。第一密封件160、第二密封件161、第三密封件162的整体结构分别与第一凹槽150、第二凹槽151、第三凹槽152相适配。
在一实施方式中,参照图4、图6和图7可知,靠近凸起1112处的第三密封件162的横板1602的一端受滚刷壳体912挤压变形后与凸起1112相贴合,第三凹槽152与出风口1111相连通,故通过在第三凹槽152内设置第三密封件162可起到引导风向与防止风干组件130产生的风外溢的作用,风向由原来的顺着出风口1111的方向流出变成现在先顺着第三密封件162的竖板1601流出,再顺着第三密封件162的横板1602流出,最终风向流入若干凸起1112之间,直接作用到凸起1112之间的滚刷内部,增大滚刷与空气的接触面,使得风得以进入滚刷911内部,从而提高滚刷911的风干效果,且加快滚刷911的风干速度。
另外,相对于其他密封件,T型密封件的横板1602的表面积较大,即横板1602与其他部件接触的表面积较大,可使得第一密封件160和/或第二密封件161或者第三密封件162完全包覆住地刷组件910上的滚刷壳体912与地刷组件910的底部,可最大限度地保证风干组件130产生的风在第一放置区111与滚刷壳体912及地刷组件910所围成的空间中流通,实现功效最大化。第一密封件160的竖板1601可设置为中空结构,增加第一密封件160的弹性,减轻第一密封件160的重量。另为加强第一密封 件160的结构强度,可在竖板1601的中空结构中增设加强筋。第二密封件161和第三密封件162均可采用与第一密封件160相同的结构,在此不再赘述。当然,竖板1601也可设置为实心结构或者其他有利于装配的结构,在此不作限制。
如图2所示,在一实施方式中,第一放置区111呈弧形,弧形的第一放置区111能更好的包覆与支撑滚刷911,使得清洁系统1000的基座100能稳定支撑清洁主机900,另外,当凸起1112位于第一放置区111的端部时,弧形的第一放置区111更有利于凸起1112插入滚刷911内部,增大凸起1112与滚刷911的接触面,加快滚刷911的风干速度。另外弧形设计的第一放置区111可更好地容纳滚刷911自清洁期间所产生的污水,避免污水流入第二放置区112。在本实施方式中,第一放置区111沿滚刷911径向的两侧在竖直方向上的高度高于第二放置区112的高度,首先可方便密封件的安装,其次可避免污水外溢,另外可与地刷组件910更好地匹配。在其他实施方式中,对第一放置区沿滚刷径向的两侧在竖直方向上的高度是否高于第二放置区的高度不做限制,可与第二放置区的高度相同。
如图2所示,基座100还包括支撑柱180,支撑柱180连接在基座100上方,以在地刷组件910置于基座100上时,清洁主机900的机身挂靠在支撑柱180上。支撑柱180为中空结构,内部设置充电组件及控制器(图中未示出),将充电组件及控制器设置在支撑柱180的内部,可利用支撑柱180保护充电组件及控制器。基座100的面积远大于支撑柱180的面积,基座100可起到支撑支撑柱180的作用,使支撑柱180的结构稳定,便于后续支撑清洁主机900。且当清洁主机900的地刷组件910置于基座100上时,清洁主机900的机身910可挂靠在支撑柱180上,位置稳定的支撑柱180可增加基座100与清洁主机900的接触面积,提高清洁主机900的位置稳定性,使清洁主机900能够稳定地进行干燥。
可选地,基座100和支撑柱180采用一体成型工艺制成。一体成型工艺保证基座100在装配过程中无需将基座100和支撑柱180进行前期的焊接或者螺钉连接等机加工工序,有效简化了装配工序,提高了基座100的装配效率。同时,一体成型工艺可有效避免基座100因前期的机加工导致 的变形,有效提高基座100和支撑柱180的装配精度。
当然,在其他的一些示例中,基座100和支撑柱180也可为两个分体的结构,基座100和支撑柱180单独加工完成后,支撑柱180可通过焊接、粘接等不可拆卸连接的方式连接在基座100上,支撑柱180也可通过螺栓连接、卡扣连接等可拆卸连接的方式连接在基座100上,使基座100拆装方便,便于维修、更换。
如图6所示,风干组件130包括热源件131及风源件132,热源件131设置在风源件132的出风端与出风口1111之间,可将冷风转换为热风后通过出风口1111流出,热风使得滚刷911的风干速度更快。热源件131可以为PTC加热片、电热丝、电加热管、电加热盘等。在本实施方式中,热源件131为PTC加热片,PTC加热片采用陶瓷发热元件与铝管组成,具有热阻小、换热效率高、自动恒温、省电的优点,并且PTC加热片不会产生如电热管类加热器的表面“发红”现象,从而引起烫伤,火灾等安全隐患,有利于家庭电器使用安全。热源件131至少部分位于第一放置区111的下方。此时热源件131除了将冷风变成热风,加快滚刷911的风干速度外,还可将热量传递给基座本体110,从而间接地将热量传递给滚刷911,加速滚刷911的干燥。
风源件132可以为轴流风机或者离心风机,轴流风机的进风方向和出风方向均沿风机轴线,而离心风机可以是沿轴向进风,径向出风。风源件132可以是有叶风扇,也可以是无叶风扇等,对于风源件132的具体形式,本申请实施例不做特别限定。在本实施方式中,风源件132包括至少一个风机,相比于传统仅设置一个风机,多个风机的风力更大,可加速风干。在本实施方式中,风源件132位于第二放置区112的下方,相比于传统方式中将风源件132设置于支撑柱180内,本实施方式中将风源件132设置于第二放置区112的下方可缩短风道,减少风量损失,实现了功效最大化。优选地,风源件132设置于第二放置区112靠近第一放置区111处的下方。
在其他实施方式中,风干组件可不设置热源件,仅设置风源件,冷风也可将滚刷风干,且降低了加热后的细菌滋生等问题。风源件的位置及风机的数量也不做限制,可与现有技术相同,能实现产生风的功能即可。
在一实施方式中,风干组件130还包括指示灯,指示灯用于显示风干组件130的工作状态,指示灯亮时表明风干组件130处于正常工作状态,指示灯灭时表明风干组件130不处于工作状态。
如图2所示,基座100还包括踏板170,踏板170与基座本体110的外侧固定连接用于辅助地刷组件910与基座100分离。为使得清洁主机900可稳定地固定在基座100上,地刷组件910与基座本体110卡固连接,当从基座100上拿取清洁主机900时,清洁主机900难以从基座100上分离,易在拿取过程中,带动基座100一起移动,为避免这种情况的发生,设置踏板170,在从基座100上拿取清洁主机900时,踩住或按压住踏板170,可固定基座100,轻松拿取清洁主机900。
如图10所示,本申请还提供一种清洁系统1000的滚刷911干燥方法,采用上述实施例中的清洁系统1000,方法包括:向风干组件130发送启动信号以控制风干组件130向出风口1111处送风;同时,每隔预设时间向滚刷驱动装置发送一次启动信号以控制滚刷驱动装置开始工作,且每隔预设时间向滚刷驱动装置发送一次停止信号以控制滚刷驱动装置停止工作,即每隔一段时间旋转一会儿滚刷911,使得滚刷驱动装置无需在干燥过程中持续工作,能源损耗小,且可提高滚刷驱动装置的使用寿命。
具体地,清洁系统1000还包括定时器(图中未示出),通过定时器控制向滚刷驱动装置发送启动信号或停止信号的时间。
在一实施方式中,风干组件130包括风源件132和指示灯,风源件132的出风端与出风口1111相对设置,指示灯用于显示风干组件130的工作状态,向风干组件130发送启动信号以控制风干组件130向出风口1111处送风的步骤包括:向风干组件130发送启动信号,风源件132和指示灯133同时开始工作,运行规定时间后,风源件132及指示灯停止工作。
在另一实施方式中,风干组件130还包括热源件131,热源件131设置在风源件132的出风端与出风口1111之间,向风干组件130发送启动信号以控制风干组件130向出风口1111处送风的步骤包括:向风干组件130发送启动信号,风源件132、热源件131及指示灯133同时开始工作,运行规定时间后,热源件131停止工作,风源件132及指示灯133继续运 行满设定时间后停止工作,以对热源件131进行散热处理,防止与热源件131间接接触的基座本体110因高温变形,降低安全风险。
在本实施方式中,若风干组件130未运行满规定时间即向风干组件130发送停止信号,此时,热源件131和指示灯停止工作,风源件132继续运行满设定时间后停止工作,以对热源件131进行散热处理,防止与热源件131间接接触的基座本体110因高温变形,降低安全风险;指示灯133立即停止工作以向用户表明此次停止风干的操作有效。
在本实施方式中,若运行满规定时间,热源件131停止工作后,但风源件132及指示灯未运行满设定时间即向风干组件130发送停止信号,此时,指示灯停止工作,风源件132继续运行满设定时间后停止工作,以对热源件131进行散热处理,防止与热源件131间接接触的基座本体110因高温变形,降低安全风险;指示灯立即停止工作以向用户表明此次停止风干的操作有效。
本申请的清洁系统1000的基座100通过在第一放置区111上设置若干凸起1112,若干凸起1112的一端插入滚刷911内部,增大滚刷911与空气的接触面,使得风干组件130产生的风更易进入滚刷911内部,从而提高滚刷911的风干效果,且加快滚刷911的风干速度。
同时,在第一放置区111与第二放置区112之间设置第一密封件160可以防止自清洁过程中污水外溢到第二放置区112,使得用户免于打扫第二放置区112,提升用户体验,其次,设置第一密封件160可以在滚刷911风干时将滚刷911密封在第一放置区111内,从而提高滚刷911的风干效果,加快滚刷911的风干速度。此外,在出风口1111处设置第二密封件161可改变从出风口1111处流出的风的方向,使得风干组件130产生的风直接作用在滚刷911上。
另外,本申请的滚刷911干燥方法通过每隔预设时间向滚刷驱动装置发送一次启动信号以控制滚刷驱动装置开始工作,且每隔预设时间向滚刷驱动装置发送一次停止信号以控制滚刷驱动装置停止工作,即滚刷911每隔一段时间工作一次后可以休息一段时间,之后再进行工作,如此反复,此时滚刷驱动装置无需在风干过程中持续工作,能源损耗小,且可提高滚 刷驱动装置的使用寿命。
本申请的技术内容及技术特点已揭示如上,然而可以理解,在本申请的创作思想下,本领域的技术人员可以对上述结构和材料作各种变化和改进,包括这里单独披露或要求保护的技术特征的组合,明显地包括这些特征的其它组合。这些变形和/或组合均落入本申请所涉及的技术领域内,并落入本申请权利要求的保护范围。

Claims (15)

  1. 一种清洁系统的基座,用于可分离地放置所述清洁系统的地刷组件,所述地刷组件包括滚刷,其特征在于:所述清洁系统的基座包括基座本体和风干组件,所述基座本体内设置有空腔,所述风干组件位于所述空腔内;
    所述基座本体的上表面向下凹陷形成第一放置区和第二放置区,所述第一放置区用于容纳所述滚刷且所述第一放置区上设置出风口连通所述空腔,所述第二放置区用于容纳除所述滚刷外的其他所述地刷组件;
    所述第一放置区上设置若干凸起,且若干所述凸起的一端插入所述滚刷内部。
  2. 如权利要求1所述的清洁系统的基座,其特征在于:若干所述凸起沿所述滚刷的轴向设置。
  3. 如权利要求1所述的清洁系统的基座,其特征在于:所述出风口沿所述滚刷的轴向设置。
  4. 如权利要求1所述的清洁系统的基座,其特征在于:若干所述凸起分隔所述出风口。
  5. 如权利要求1所述的清洁系统的基座,其特征在于:在所述第一放置区沿所述滚刷的径向上,所述凸起完全覆盖住所述第一放置区。
  6. 如权利要求1所述的清洁系统的基座,其特征在于:所述第一放置区与所述第二放置区之间设置第一凹槽,所述第一凹槽内设置第一密封件,所述第一密封件将所述第一放置区与所述第二放置区相分隔。
  7. 如权利要求1所述的清洁系统的基座,其特征在于:所述出风口处设置第二凹槽,所述第二凹槽内设置第二密封件,所述第二密封件与所述出风口部分抵接。
  8. 如权利要求1所述的清洁系统的基座,其特征在于:所述第一放置区的 外周设置第三凹槽,所述第三凹槽内设置第三密封件,所述第三密封件将所述第一放置区与所述基座本体上表面的其他部位相分隔。
  9. 如权利要求1所述的清洁系统的基座,其特征在于:所述风干组件包括风源件,所述风源件的出风端与所述出风口相对设置。
  10. 如权利要求9所述的清洁系统的基座,其特征在于:所述风干组件还包括热源件,所述热源件设置在所述风源件的出风端与所述出风口之间。
  11. 如权利要求9所述的清洁系统的基座,其特征在于:所述风源件包括至少一个风机。
  12. 如权利要求10所述的清洁系统的基座,其特征在于:所述热源件至少部分位于所述第一放置区的下方。
  13. 如权利要求1所述的清洁系统的基座,其特征在于:所述清洁系统的基座还包括踏板,所述踏板与所述基座本体的外侧固定连接用于辅助所述地刷组件与所述清洁系统的基座分离。
  14. 一种清洁系统,其特征在于:包括清洁主机和如权利要求1-13中任一项所述的清洁系统的基座,所述清洁主机可分离地设置在所述清洁系统的基座上。
  15. 一种清洁系统的滚刷干燥方法,其特征在于:所述清洁系统包括清洁主机和基座,所述基座用于可分离地放置所述清洁主机,所述清洁主机包括滚刷和用于驱动所述滚刷旋转的滚刷驱动装置,所述基座包括基座本体和风干组件,所述基座本体内设置有空腔,所述风干组件位于所述空腔内,在所述基座本体的上表面上设置出风口连通所述空腔;
    所述方法包括:
    向所述风干组件发送启动信号以控制所述风干组件向所述出风口处送风;
    同时,
    每隔预设时间向所述滚刷驱动装置发送一次启动信号以控制所述滚刷驱动装置开始工作,且每隔预设时间向所述滚刷驱动装置发送一次停止信号以控制所述滚刷驱动装置停止工作。
PCT/CN2022/110138 2022-07-08 2022-08-04 清洁系统的基座、清洁系统及滚刷干燥方法 WO2024007402A1 (zh)

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