WO2023221858A1 - 一种底座及衣物处理设备 - Google Patents

一种底座及衣物处理设备 Download PDF

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Publication number
WO2023221858A1
WO2023221858A1 PCT/CN2023/093534 CN2023093534W WO2023221858A1 WO 2023221858 A1 WO2023221858 A1 WO 2023221858A1 CN 2023093534 W CN2023093534 W CN 2023093534W WO 2023221858 A1 WO2023221858 A1 WO 2023221858A1
Authority
WO
WIPO (PCT)
Prior art keywords
dust
cleaning
dust collection
port
base
Prior art date
Application number
PCT/CN2023/093534
Other languages
English (en)
French (fr)
Inventor
姜豪
苗雨来
顾鑫
Original Assignee
无锡小天鹅电器有限公司
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 CN202221196807.3U external-priority patent/CN217324645U/zh
Priority claimed from CN202210540760.6A external-priority patent/CN114921932A/zh
Application filed by 无锡小天鹅电器有限公司 filed Critical 无锡小天鹅电器有限公司
Priority to EP23806810.0A priority Critical patent/EP4339349A1/en
Publication of WO2023221858A1 publication Critical patent/WO2023221858A1/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
    • A47L11/24Floor-sweeping machines, motor-driven
    • 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
    • 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
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F25/00Washing machines with receptacles, e.g. perforated, having a rotary movement, e.g. oscillatory movement, the receptacle serving both for washing and for centrifugally separating water from the laundry and having further drying means, e.g. using hot air 
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F49/00Domestic spin-dryers or similar spin-dryers not suitable for industrial use
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/20General details of domestic laundry dryers 

Definitions

  • the present application belongs to the technical field of household appliances, and more specifically, relates to a base and a clothing processing device.
  • the cleaning equipment of related technologies has weak ability to clean dust.
  • clothes processing equipment in the existing technology such as a sweeping robot model installed under the washing machine, but its base size is large, and the size after adding the clothes processing equipment is too high. , taking up more space.
  • the present application provides a base and a clothes treatment device to solve the technical problem of how to improve the compactness of the base and the clothes treatment device.
  • Embodiments of the present application provide a base, which includes: a housing with a cleaning cavity inside for parking of cleaning equipment; a dust suction assembly arranged outside the cleaning cavity, and the dust suction assembly is provided with a device suitable for connecting to the cleaning cavity; A dust collection port connected to the cleaning equipment is used to absorb dust in the cleaning equipment; the dust collection component is also provided with a return air port connected to the cleaning equipment to guide gas to the cleaning equipment through the return air port.
  • the dust collection assembly includes: an air inlet channel with the dust collection port provided at one end; a dust collector connected to the other end of the air inlet channel to filter dust introduced from the dust collection port. ; One end of the exhaust channel is connected to the dust collector, and the other end is provided with the return air outlet to guide the gas filtered by the dust collector to the cleaning equipment.
  • the dust collecting port is closer to the dust collector than the return air port.
  • the front end of the cleaning chamber is provided with an open opening
  • the dust collecting port and the return air port are respectively provided on the left and right sides of the rear end of the cleaning chamber
  • the dust collector is provided on the right end of the cleaning chamber.
  • the exhaust channel goes around from the rear end of the cleaning chamber to the right end of the cleaning chamber and is connected to the dust collector.
  • the air inlet channel is located between the cleaning chamber and the dust collector in the left-right direction.
  • the distance between the dust collection port and the return air port in the left and right direction is greater than 0.5 times the size of the cleaning chamber in the left and right direction.
  • the dust collector includes: a dust box connected to the other end of the air inlet channel; a driving member with one end connected to the dust box and the other end connected to one end of the exhaust channel. To guide the air flow from the dust collection port to the return air port.
  • the dust box includes: a box body with a first cavity inside, the front end of the first cavity opening; and a bucket inside with a third hole connecting the dust collection port and the return air port.
  • Two cavities, the bucket can be disposed in the first cavity in a translational manner along the front and rear direction; a filter element is disposed in the second cavity to filter the gas passing through the second cavity.
  • the driving member includes: a power supply, which is arranged above the dust collecting box; a dust collecting motor, with its front end connected to the dust collecting box and its rear end connected to the exhaust channel.
  • An embodiment of the present application also provides a clothes treatment device, including: a body; and a base according to any one of the above, the base being provided at the lower end of the body.
  • Embodiments of the present application provide a base and clothing treatment equipment.
  • the base includes a housing and a dust collection assembly.
  • a cleaning chamber is provided inside the housing.
  • the dust collection assembly is provided with a dust collection port and a return air port suitable for communicating with the cleaning equipment.
  • the dust collection port is used to absorb dust in the cleaning equipment.
  • a dust collection port and a return air port are provided in the dust suction assembly.
  • the dust in the cleaning equipment can be transferred to the dust collection component following the circulating air flow, realizing the dust removal of the cleaning equipment; in terms of technology to improve the compactness of the base structure Internal circulation can also be used to realize dust transfer.
  • the air circulation path between the dust suction assembly and the cleaning equipment has good airtightness, which is conducive to improving the efficiency of dust transfer.
  • the embodiment of the present application applies the base to the clothing processing equipment, which has the effect of Helps save storage space.
  • Figure 1 is a perspective view of the base according to the embodiment of the present application.
  • Figure 2 is a front view of the base according to the embodiment of the present application.
  • Figure 3 is a front view of the dust collection assembly according to the embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of the dust collection assembly according to the embodiment of the present application.
  • Figure 5 is a top view of the base according to the embodiment of the present application.
  • Figure 6 is a schematic structural diagram of the drying assembly according to the embodiment of the present application.
  • Fig. 7 is a front view of the laundry treatment device according to the embodiment of the present application.
  • first ⁇ second ⁇ involved are only used to distinguish different objects, and do not indicate the similarities or connections between the objects. It should be understood that the orientation descriptions “above”, “below”, “outside” and “inside” are the orientations during normal use, and the “left” and “right” directions represent the directions shown in the specific corresponding schematic diagram. The indicated left and right directions may or may not be the left and right directions in normal use.
  • the embodiment of the present application provides a base 1 for a clothing processing equipment.
  • the base 1 is used for docking a cleaning device 4.
  • the cleaning device 4 can be used to automatically clean dust and hair on the ground. During cleaning, When the device 4 is provided with a mop, the cleaning device 4 can perform mopping operations on the ground after cleaning the floor.
  • the function of the cleaning device does not limit the structure of the base.
  • the functions of the base 1 in the embodiment of the present application include but are not limited to charging, dust removal, cleaning, drying and disinfection of the cleaning device 4 .
  • the base 1 in the embodiment of the present application is used in clothing processing equipment.
  • the clothing processing equipment may include various forms, such as washing machines, dehydrators, washing and drying machines and other devices.
  • the specific application scenarios of the laundry treatment device do not limit the structure of the base of the present application.
  • the base 1 of the embodiment of the present application includes a housing 2 and a dust suction assembly 3.
  • a cleaning cavity 22 is provided inside the casing 2.
  • the cleaning cavity 22 is used for parking the cleaning equipment 4 so as to charge and clean the cleaning equipment 4.
  • the outside of the cleaning cavity 22 is used to install components related to charging and cleaning operations. .
  • the dust suction assembly 3 in the embodiment of the present application is arranged outside the cleaning chamber 22. When the equipment 4 is parked in the cleaning chamber 22, the dust suction assembly 3 can be used to suck dust and other garbage stored in the dust storage space inside the cleaning equipment 4, so as to empty the dust storage space inside the cleaning equipment 4, thereby facilitating the cleaning of the equipment 4 Carry out the next dust removal job.
  • the dust collection assembly 3 is provided with a dust collection port 31 suitable for communication with the cleaning equipment 4.
  • the dust collection port 31 is used to absorb dust and other garbage stored in the dust storage space of the cleaning equipment 4; the dust collection assembly 3
  • the cleaning device 4 is provided with a dust storage space for storing dust and other garbage, and the surface of the cleaning device 4 is also provided with an inlet and an outlet connected to the dust storage space.
  • the outlet of the cleaning equipment 4 is connected with the dust collection port 31 of the dust collection assembly 3, and the inlet of the cleaning equipment 4 is connected with the return air outlet 32 of the dust collection assembly 3, so that the dust storage space of the cleaning equipment 4 is connected with the dust collection assembly 3
  • the gas can form a circulating air path between the dust storage space of the cleaning device 4 and the dust suction assembly 3. That is to say, the gas can circulate between the dust storage space and the dust suction assembly, and It will not flow to the outside of the cleaning device 4 and the dust suction assembly 3 , and the external gas will not flow to the inside of the cleaning device 4 and the dust suction assembly 3 .
  • connection mentioned in this application can be a direct connection, such as the dust collection port 31 and the cleaning device 4 are directly connected to achieve communication; it can also be an indirect connection, such as the dust collection port 31 and the cleaning device 4 Connectivity is achieved through other channels or auxiliary equipment.
  • the dust collection port 31 of the dust suction assembly 3 is connected to the outlet of the cleaning equipment 4, and the return air outlet 32 of the dust suction assembly 3 is connected to the inlet of the cleaning equipment 4.
  • the dust collection assembly 3 and the cleaning equipment 4 form an internal circulation.
  • the dust collection component 3 absorbs dust from the dust storage space of the cleaning device 4 through the dust collection port 31.
  • the dust collection component 3 filters the dust and conducts the gas.
  • the gas flows from the dust storage space to the dust collection component to generate a pressure difference. This causes a negative pressure to be generated in the dust storage space in the cleaning equipment.
  • the filtered gas after passing through the dust suction assembly will flow back to the dust storage space in the cleaning equipment through the return air outlet under the action of negative pressure.
  • the gas is sucked into the dust storage space.
  • Internal circulation is realized between component 3 and the cleaning equipment, and the gas It continuously passes through the dust storage space and brings the dust in the dust storage space into the dust collection component through the dust collection port.
  • the dust collection component continuously collects dust and guides the filtered gas back to the dust storage space, and circulates in sequence until the gas is All the dust in the dust storage space is transferred to the dust collection component, thereby realizing the dust removal of the cleaning equipment by the dust collection component.
  • the embodiment of the present application provides a base.
  • the base 1 includes a housing 2 and a dust collection assembly 3.
  • the housing 2 is provided with a cleaning chamber 22 inside.
  • the dust collection assembly 3 is provided with a dust collecting port suitable for communicating with the cleaning equipment 4. 31 and return air port 32, and the dust collection port 31 is used to absorb dust in the cleaning equipment 4.
  • the dust collection port 31 and the return air port 32 are provided in the dust suction assembly 3.
  • the dust collection port 31 and the return air port 32 are respectively connected with the cleaning device 4, so as to achieve the purpose of cleaning.
  • a circulation channel is formed between the dust collection assembly 3 and the cleaning equipment 4, and the gas continuously circulates between the dust collection assembly 3 and the cleaning equipment 4.
  • the dust in the cleaning equipment 4 can be transferred to the dust collection assembly 3 following the circulating air flow, thus realizing the Dust removal of cleaning equipment 4;
  • internal circulation can also be used to realize dust transfer.
  • the circulation air path between the dust collection component and the cleaning equipment has good airtightness, which is conducive to improving the efficiency of dust transfer; in addition , the embodiment of the present application applies the base to the clothing processing equipment, which is beneficial to saving storage space.
  • the return air outlet 32 can be directly connected to the atmosphere. Then, the gas in the atmosphere can flow into the return air outlet 32 and be blown into the cleaning device 4 through the return air outlet 32. It can be understood that the air is blown into the cleaning device 4 through the return air outlet 32.
  • the gas of the equipment may be clean gas after dust has been filtered by the dust collection assembly 3, or it may be gas in the atmosphere.
  • the structure of the housing is omitted in FIG. 4
  • the dust suction assembly 3 includes an air inlet channel 33 , a dust collector 34 and an exhaust channel 35 .
  • the air inlet channel 33 has two opposite ends in the extension direction, one end of which is set as a dust collection port 31, and the other end of the air inlet channel 33 is connected to the dust collector 34, wherein the air inlet channel 33 can be set as a hose, so that Since the air inlet channel 33 cooperates with other components during the assembly process, of course, the air inlet channel 33 can also be directly formed by the shell.
  • rubber parts may be provided at the dust collection port 31 of the air inlet channel 33.
  • the rubber parts are arranged around the dust collecting port 31. By providing the rubber parts, the sealing performance of the connection between the dust collecting port and the cleaning equipment can be increased, thereby improving the efficiency of transferring dust in the cleaning equipment to the dust collector 34.
  • the dust collector 34 in the embodiment of the present application is used to filter dust introduced from the dust collection port 31 .
  • one end of the exhaust channel 35 is connected to the dust collector 34, and the other end of the exhaust channel 35 is provided with a return air outlet 32.
  • the exhaust channel is used to export the gas filtered by the dust collector 34 to the cleaning equipment.
  • the exhaust channel 35 can be configured as a soft channel to facilitate the exhaust channel 35 to cooperate with other components during the assembly process.
  • the return air outlet 32 of the exhaust channel 35 can be provided with a rubber piece, and the rubber piece surrounds the return air outlet 32 By arranging rubber parts, the sealing performance of the connection between the return air inlet and the cleaning equipment can be increased, thereby improving the efficiency of transferring dust in the cleaning equipment to the dust collector 34 .
  • the gas forms an internal circulation between the cleaning device 4 and the dust collection assembly 3.
  • the gas passes through the cleaning device 4, and the dust in the cleaning device 4 follows the gas and flows from the air inlet channel 33 to the dust collector 34.
  • the dust collector 34 can filter the passing gas, that is to say, the dust collector 34 collects the passing dust and conducts the passing gas.
  • the gas flows from the dust collector 34 to the exhaust channel 35, and the gas flows back through the exhaust channel.
  • the dust collection component is configured as an air inlet channel, a dust collector, and an air outlet channel.
  • the air inlet channel and the air outlet channel are easier to assemble with other components, and are conducive to reducing the assembly difficulty of the dust collector and improving the efficiency of the dust collector.
  • the space utilization of the base is improved, thereby reducing the assembly size of the base.
  • the dust collecting port 31 is close to the dust collector 34 relative to the return air port 32 . It can be understood that the dust collecting port 31 is disposed between the return air port 32 and the dust collector 34 , that is, The length of the air inlet channel 33 is shorter than the length of the exhaust channel 35. In the embodiment of the present application, by setting the length of the air inlet channel 33 shorter, it is helpful to shorten the path for dust to flow from the cleaning equipment to the dust collector 34, thereby reducing dust. The risk of staying in the air inlet channel 33 increases the smoothness of the air inlet channel 33, thereby improving the dust collection efficiency of the dust collector.
  • the front end of the cleaning chamber 22 is provided with an opening 221; As shown in Figure 2, the opening 221 is connected to the cleaning chamber 22. It should be noted that the opening 221 represents an opening with a larger cross-sectional size. By providing the opening 221 in the cleaning chamber 22, it is convenient for the cleaning device 4 to pass through the opening 221. move to the clean chamber 22.
  • the exhaust channel 35 goes around from the rear end of the cleaning chamber 22 to the right end of the cleaning chamber 22 and is connected to the dust collector 34 .
  • the front end of the cleaning chamber 22 can be regarded as the end close to the user, and the end far away from the user can be regarded as the rear end of the cleaning chamber 22 .
  • the air inlet channel 33 and the dust collector 34 are also provided at the right end of the cleaning chamber 22 .
  • the embodiment of the present application distributes the dust suction components at the rear end and right end of the cleaning chamber, thereby dispersing the dust suction components in two directions, reducing the size of the dust suction components in one direction, and placing them side by side with the cleaning chamber. It is beneficial to reduce the overall height of the base.
  • the air inlet channel, exhaust channel and dust collector are all arranged horizontally, which reduces the risk of impurities with high gravity being unable to be sucked upward into the dust collector due to the longitudinal arrangement, and also reduces the user's When taking out the dust collector, there is a risk that the residual dust in the passage (inlet passage or exhaust passage) will fall out of the passage and fall into the dust collector.
  • the air inlet channel 33 is located between the cleaning chamber 22 and the dust collector 34 in the left-right direction.
  • the air inlet channel 33 can be configured as a bent structure, and the air inlet channel 33 can extend in the front and rear directions.
  • the dust collection port 31 of the air inlet channel 33 is located at the rear end of the cleaning chamber 22.
  • the other end of the air inlet channel 33 is connected to the dust collector 34.
  • the dust collection port 31 and the return air port 32 are spaced apart in the left and right directions.
  • the interval means that the distance between the dust collection port 31 and the return air port 32 in the left and right directions is greater than a certain value.
  • the gas enters the cleaning equipment from the return air port, and then flows to the dust collection port through the cleaning equipment.
  • the dust collection port and the return air port are spaced apart.
  • the setting is conducive to increasing the path of the air flow in the cleaning equipment, thereby helping the gas take away the dust in the cleaning equipment as much as possible, reducing the risk of dust remaining in the cleaning equipment, and improving the efficiency of the dust collection assembly in removing dust from the cleaning equipment. efficiency.
  • the dust collection port 31 and the return air port 32 are in the left and right directions.
  • the distance L1 is greater than 0.5 times the size L2 of the cleaning chamber 22 in the left and right direction.
  • the embodiment of the present application limits the distance between the dust collection port and the return air port and the size relationship of the cleaning chamber. Since the size of the cleaning chamber in the left and right directions roughly matches the size of the cleaning equipment, it is possible to further limit the distance between the dust collection port and the return air port.
  • the size relationship of the cleaning equipment in the left and right directions is conducive to extending the path of the air flow in the cleaning equipment, so that the gas can take away the dust in the cleaning equipment as much as possible, so as to improve the dust removal effect of the dust suction assembly on the cleaning equipment.
  • the dust collection port 31 and the return air port 32 are respectively provided on opposite sides of the cleaning chamber 22 in the left and right direction.
  • the dust collection port and the return air port 32 are respectively provided on opposite sides of the cleaning chamber 22 in the left and right direction.
  • the size of the cleaning chamber is certain This improves the gas flow path in the cleaning chamber, thereby improving the efficiency of the gas in driving dust in the cleaning equipment and improving the dust removal effect of the dust suction assembly.
  • the dust collector 34 includes a dust box 341 and a driving member 342 .
  • the dust collecting box 341 is connected to the other end of the air inlet channel 33; the other end of the air inlet channel 33 represents the end away from the dust collecting port 31.
  • the dust collecting box 341 is used to collect dust introduced by the air inlet channel 33, and Filter the gas introduced into the air inlet channel 33.
  • the other end of the air inlet channel 33 is connected to the side of the dust box 341.
  • the side represents the position in the dust box 341 around the up and down direction.
  • the dust box 341 has two opposite ends in the up and down direction.
  • the embodiment of the present application defines the two ends of the dust box 341 in the up and down direction as the top end and the bottom end, and then the part corresponding to the top and bottom ends is defined as the side of the dust box.
  • the air inlet channel 33 The other end of the air inlet channel is connected to the side of the dust box. Compared with the method of connecting the other end of the air inlet channel to the top or bottom of the dust box, the dust in the gas needs to overcome the gravity to a greater extent during the flow process. Small, reducing the risk of dust accumulation in the air intake duct.
  • one end of the driving member 342 is connected to the dust collecting box 341, and the other end of the driving member 342 is connected to one end of the exhaust channel 35.
  • the driving member 342 is used to guide the airflow from the dust collecting port 31 to Return air outlet 32.
  • the driving member 342 in the embodiment of the present application can be used to disturb the flow of gas in the air inlet channel 33 or the exhaust channel 35, so that the gas flows from the air inlet channel 33 to the exhaust channel 35.
  • the driving member can drive the gas between the cleaning equipment and the dust collection component to achieve internal circulation.
  • the driving member 342 includes a power supply 3421 and a dust collection motor 3422.
  • the power supply 3421 and the dust collection box 341 are stacked in the up and down directions.
  • the up and down directions in the embodiment of the present application can be used to represent the vertical direction in the absolute coordinate system, and the plane formed by the front and rear directions and the left and right directions can be used to represent the vertical direction in the absolute coordinate system.
  • the power supply 3421 in the embodiment of the present application can be used to convert the alternating current in the clothes treatment equipment into direct current to supply the dust collection motor and other components in the base. As shown in FIG.
  • the dust collecting motor 3422 is connected to the dust collecting box 341 at one end in the front and rear direction, and the dust collecting motor 3422 is connected to the exhaust channel 35 at the other end in the front and rear direction. That is to say, the air inlet channel and the exhaust channel are connected to the opposite sides of the dust collecting motor in the front and rear direction.
  • the embodiment of the present application arranges the air inlet channel, the air outlet channel and the dust collecting motor in the horizontal direction, which is conducive to reducing the The assembly dimensions of the base in the vertical direction, thereby reducing the overall height of the base.
  • the dust box includes a box body, a drawer and a filter.
  • a first cavity is provided inside the box, and the first cavity opens at one end in the front-to-back direction; a second cavity is provided inside the drawer, which connects the dust collection inlet and the return air outlet.
  • the drawer can close the opening, so that the first cavity and the second cavity form a closed cavity, and the filter element is arranged in the second cavity, and the filter element is To filter the gas passing through the second cavity and collect the dust passing through the second cavity.
  • the filter element is detachably arranged in the second cavity. When the dust in the filter element is full, the filter element can be removed and replaced with a new filter element.
  • the structure of the dust collecting box includes but is not limited to the above-mentioned embodiment.
  • the dust collecting box can be connected to the sewage channel of the clothes processing equipment, and the water in the sewage channel flows through the dust collecting box, and the dust collecting box is The dust in the dust collection box rushes to the sewage outlet of the clothing processing equipment, thereby realizing the removal of the dust in the dust collection box. Dust is discharged directly to the outside of the clothing processing equipment, simplifying the user's operation and improving the user experience.
  • the base 1 of the embodiment of the present application also includes a drying component 6.
  • the drying assembly 6 is arranged outside the cleaning chamber. As shown in FIG. 3 , the drying assembly 6 is provided with an air outlet 61 connected with the cleaning cavity 22 .
  • the air outlet 61 is used to introduce air flow into the cleaning cavity 22 , and the air flow is blown through the air outlet 61 In the cleaning chamber 22, the airflow blows onto the wet mop of the cleaning device 4 parked in the cleaning chamber 22, and the airflow takes away the moisture on the mop to dry the mop.
  • FIG. 1 the base 1 of the embodiment of the present application also includes a drying component 6.
  • the drying assembly 6 is arranged outside the cleaning chamber. As shown in FIG. 3 , the drying assembly 6 is provided with an air outlet 61 connected with the cleaning cavity 22 .
  • the air outlet 61 is used to introduce air flow into the cleaning cavity 22 , and the air flow is blown through the air outlet 61 In the cleaning chamber 22, the airflow blows onto the wet mop of the cleaning
  • part of the drying assembly 6 is located at one end of the cleaning chamber 22 in the front-to-back direction, and the other part is located at one end of the cleaning chamber 22 in the up-and-down direction.
  • the embodiment of the present application distributes the drying components at one end of the cleaning chamber in the front-rear direction and one end in the up-down direction, thereby dispersing the drying components in two directions, reducing the size of the drying components in one direction, and partially
  • the drying component and the cleaning cavity are arranged side by side in the front and rear directions, which is beneficial to reducing the overall height of the base.
  • the cleaning chamber 22 is provided with an opening 221 at one end in the front-to-back direction, and one end of the cleaning chamber 22 in the up-and-down direction is regarded as the top of the cleaning chamber 22 , and the drying assembly 6 is partially disposed on the cleaning chamber 22 .
  • the cavity 22 is at one end in the up-down direction, that is to say, the drying assembly 6 is partially disposed at the top of the cleaning cavity 22 .
  • the other part of the drying assembly 6 may be disposed at one end of the cleaning chamber 22 on the first side. That is to say, the drying assembly 6 may be disposed at the rear end of the cleaning chamber 22 .
  • the embodiment of the present application distributes the drying components around the cleaning cavity, which is beneficial to reducing the assembly space of the drying components in one direction, thereby reducing the assembly size of the entire base.
  • the drying assembly 6 includes a fan 62 and a ventilation member 63 .
  • the function of the fan 62 is to increase the pressure of the gas by relying on mechanical energy.
  • the fan 62 is arranged at one end of the cleaning chamber 22 in the up and down direction. That is to say, the fan 62 is arranged at the top of the cleaning chamber 22 .
  • one end of the ventilation member 63 is connected to the fan 62 , and the other end of the ventilation member 63 is provided with an air outlet 61 (refer to FIG. 3 ).
  • the ventilation member 63 is hollow inside, and the ventilation member 63 is provided in the cleaning chamber 22 .
  • the ventilation member 63 can be used to guide the air flow generated by the fan 62 and guide the air flow in the fan 62 to the cleaning chamber 22 .
  • the drying component is provided with a fan and a ventilation component.
  • the components do not need to be centrally arranged on one side of the cleaning chamber.
  • the drying components can be distributed and arranged on different sides of the cleaning chamber, which is beneficial to reducing the overall height of the base and reducing the difficulty of assembling the drying components.
  • the size of the fan 62 in the front-rear direction is larger than the size of the fan 62 in the up-down direction.
  • the size of the fan 62 in the vertical direction is larger than the size in the horizontal direction.
  • the fan 62 in the embodiment of the present application is placed horizontally, that is to say, the size of the fan 62 in the vertical direction is Being smaller than the size in the horizontal direction will help reduce the space occupied by the fan in the vertical direction and reduce the size of the base in the vertical direction.
  • the extension direction of the ventilation member 63 is parallel to the up-down direction. It should be noted that the extension direction of the ventilation member 63 represents the length direction of the ventilation member 63. By making the length direction of the ventilation member consistent with the upper and lower directions, it is helpful to reduce the space occupied by the ventilation member in the front and rear directions, and to improve the shell. The compactness of the assembly of each component in the body improves the space utilization within the casing.
  • FIG. 6 there are multiple ventilation members 63 , and the upper ends of the multiple ventilation members 63 are connected to the fan 62 . That is to say, the airflow generated by the fan 62 will disperse to the multiple ventilation members. 63, the lower ends of the plurality of ventilation members 63 are spaced apart in the left and right directions, and the airflow is blown from the other ends of the plurality of ventilation members 63 to the cleaning chamber, which is beneficial to blowing to different positions of the cleaning equipment 4, thereby improving the accuracy of cleaning. Drying efficiency of cleaning equipment.
  • the ventilation member 63 includes a first ventilation member 631 and a second ventilation member 632 .
  • One end of the first ventilation member 631 is connected to the fan 62
  • the other end of the first ventilation member 631 is connected to the fan 62 .
  • An air outlet 611, one end of the second ventilation member 632 is connected to the fan 62, and the other end of the second ventilation member 632 is the second air outlet 612; in some embodiments, two mops can be provided in the cleaning device 4, and the two mops They are arranged side by side in the left and right directions. As shown in FIG.
  • the distance L3 in the left-right direction between the first air outlet 611 and the second air outlet 612 in the embodiment of the present application is greater than or equal to the first size and less than or equal to the second size.
  • the first size is 0.2 times the cleaning chamber 22
  • the second dimension is 0.6 times the dimension L2 of the cleaning chamber in the left and right direction.
  • the embodiment of this application adopts The distance between the first air outlet and the second air outlet is limited to a certain range, which is conducive to the airflow derived from the first air outlet and the second air outlet being evenly blown onto the mop of the cleaning equipment, thereby improving the drying efficiency of the cleaning equipment. .
  • the first air outlet 611 and the second air outlet 612 are symmetrically arranged relative to the center line of the cleaning chamber 22 in the left and right directions.
  • the first air outlet and the second air outlet are Symmetrically arranged in the left and right directions, it is beneficial to improve the drying efficiency of the cleaning equipment in the cleaning chamber by air flow.
  • the part of the first ventilation member 631 close to the fan 62 extends in the left-right direction
  • the part of the first ventilation member 631 close to the first air outlet 611 extends in the up-down direction
  • the second ventilation member 631 extends in the up-down direction
  • the part of the member 632 close to the fan 62 extends in the left-right direction
  • the part of the second ventilation member 632 close to the second air outlet 612 extends in the up-down direction. That is to say, one end of the first ventilation member 631 and the second ventilation member 632 close to the fan 62 is connected to the fan 62, and both extend along the horizontal direction.
  • the parts of the first ventilation member 631 and the second ventilation member 632 that are far away from the fan 62 are at They are spaced in the left and right directions and both extend in the up and down direction, which is beneficial to spacing the first air outlet 611 and the second air outlet 612 in the second direction and connecting one end of the first ventilation member 631 with one end of the second ventilation member 632.
  • the air flow is dispersed and directed to the bottom of the cleaning chamber so that the air flow can be evenly dispersed to the corresponding positions of the two mops in the cleaning equipment, thereby improving the air-drying efficiency of the cleaning equipment.
  • the air outlet 61 is close to the bottom end of the cleaning chamber 22 in the up and down direction.
  • the up and down direction may represent the vertical direction of the base in normal use, and the corresponding lower end shown in FIG. 3 represents the bottom end of the cleaning chamber 22 .
  • “close” in the embodiment of the present application means that the distance between the air outlet 61 and the bottom end of the cleaning chamber 22 is less than or equal to 0.4 times the size of the cleaning chamber 22 in the up and down direction.
  • the embodiment of the present application is conducive to reducing the distance between the air outlet and the mop in the cleaning equipment, and is conducive to the wind derived from the air outlet blowing directly onto the mop, thereby reducing the airflow dissipation, thus improving the drying efficiency of cleaning equipment.
  • the drying assembly further includes a heating element.
  • the heating element is arranged in the ventilation element, The heating element is used to heat the airflow passing through the ventilation element.
  • the airflow is heated by the heating element, causing the temperature of the airflow to rise.
  • the high-temperature airflow will conduct heat conduction with the mop, causing the temperature of the mop to rise, accelerating the evaporation of water in the mop, and the moisture in the mop.
  • the moisture flows away with the airflow to achieve rapid drying of the mop.
  • the clothes treatment device includes a body 5 and the base 1 described in any of the above embodiments.
  • the main body 5 is used to perform operations such as soaking, washing and drying clothes
  • the base 1 is arranged at one end of the main body 5 in the up and down direction.
  • the up and down directions represent the vertical direction in the absolute coordinate system. That is to say, the base 1 is set at the bottom of the clothing processing equipment. When the clothing processing equipment is placed on the ground, the base 1 is closer to the ground relative to the body 5. This facilitates the movement of the cleaning equipment into the cleaning chamber 22 through the opening.

Abstract

一种底座(1)及衣物处理设备,底座(1)包括:壳体(2),内部设有供清洁设备(4)停靠的清洁腔(22);吸尘组件(3),吸尘组件(3)设有适于与清洁设备(4)连通的集尘口(31),以吸取清洁设备(4)内的灰尘;吸尘组件(3)还设有与清洁设备(4)连通的回风口(32)。

Description

一种底座及衣物处理设备
相关申请的交叉引用
本申请基于申请号为202210540760.6,申请日为2022年5月17日,以及申请号为202221196807.3、申请日为2022年5月17日的中国专利申请提出,并要求上述中国专利申请的优先权,上述中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请属于家用电器技术领域,更具体地,涉及一种底座及衣物处理设备。
背景技术
相关技术的清洁设备对于灰尘的清洁能力较弱,同时,现有技术存在衣物处理设备,如洗衣机下方设置扫地机器人的机型,但其底座尺寸较大,加上衣物处理设备后的尺寸过高,占用空间较多。
发明内容
有鉴于此,本申请提供一种底座及衣物处理设备,以解决如何提高底座及衣物处理设备的结构紧凑程度的技术问题。
本申请的技术方案是这样实现的:
本申请实施例提供了一种底座,包括:壳体,内部设有供清洁设备停靠的清洁腔;吸尘组件,设置在所述清洁腔外,所述吸尘组件设有适于与所述清洁设备连通的集尘口,以吸取所述清洁设备内的灰尘;所述吸尘组件还设有与所述清洁设备连通的回风口,以将气体经所述回风口导至所述清洁设备。
上述方案中,所述吸尘组件包括:进气通道,一端设有所述集尘口;集尘器,与所述进气通道的另一端连接,以过滤从所述集尘口导入的灰尘; 排气通道,一端与所述集尘器连接,另一端设置所述回风口,以将所述集尘器过滤后的气体导出至所述清洁设备。
上述方案中,所述集尘口相对所述回风口更靠近所述集尘器。
上述方案中,所述清洁腔的前端设有敞口,所述集尘口和所述回风口分别设置在清洁腔后端的左右两侧,所述集尘器设置在所述清洁腔的右端,所述排气通道自所述清洁腔的后端绕行至所述清洁腔的右端并与所述集尘器相连。
上述方案中,所述进气通道在左右方向上位于所述清洁腔与所述集尘器之间。
上述方案中,所述集尘口和所述回风口在左右方向的距离大于0.5倍所述清洁腔在左右方向的尺寸。
上述方案中,所述集尘器包括:集尘盒,与所述进气通道的另一端连接;驱动件,一端与所述集尘盒连接,另一端与所述排气通道的一端连接,以引导气流从所述集尘口流至所述回风口。
上述方案中,所述集尘盒包括:盒体,内部设有第一空腔,所述第一空腔的前端开口;抽斗,内部设有连通所述集尘口和所述回风口的第二空腔,所述抽斗可沿前后方向平动地设置在所述第一空腔内;过滤件,设置在所述第二空腔内,以过滤经过所述第二空腔的气体。
上述方案中,所述驱动件包括:电源,设置在所述集尘盒的上方;集尘电机,前端与所述集尘盒连接,后端与所述排气通道连接。
本申请实施例还提供了一种衣物处理设备,包括:本体;根据上述任一项所述的底座,所述底座设置在所述本体的下端。
本申请实施例提供了一种底座及衣物处理设备,该底座包括壳体和吸尘组件,壳体内部设有清洁腔,吸尘组件设有适于与清洁设备连通的集尘口和回风口,集尘口用于吸取清洁设备内的灰尘。本申请实施例通过在吸尘组件设置集尘口和回风口,在清洁设备停靠在清洁腔的状态下,集尘口和回风口分别与清洁设备对接,以在吸尘组件与清洁设备之间形 成循环通道,气体不断在吸尘组件与清洁设备之间循环,清洁设备中的灰尘可跟随循环气流转移到吸尘组件中,实现了对清洁设备的除尘;在提高底座结构紧凑度的技术上还能够采用内循环实现灰尘的转移,吸尘组件与清洁设备之间的循环风路密闭性好,有利于提高灰尘转移的效率;另外,本申请实施例将底座应用在衣物处理设备中,有利于节省存放空间。
附图说明
图1为本申请实施例的底座的立体图;
图2为本申请实施例的底座的主视图;
图3为本申请实施例的吸尘组件的主视图;
图4为本申请实施例的吸尘组件的结构示意图;
图5为本申请实施例的底座的俯视图;
图6为本申请实施例的烘干组件的结构示意图;
图7为本申请实施例的衣物处理设备的主视图。
附图标记说明:
1、底座;2、壳体;22、清洁腔;221、敞口;3、吸尘组件;31、集
尘口;32、回风口;33、进气通道;34、集尘器;341、集尘盒;342、驱动件;3421、电源;3422、集尘电机;35、排气通道;4、清洁设备;5、本体;6、烘干组件;61、出风口;611、第一出风口;612、第二出风口;62、风机;63、通风件;631、第一通风件;632、第二通风件。
具体实施方式
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本申请,并不用于限定本申请。
在具体实施例中所描述的各个具体技术特征,在不矛盾的情况下,可以通过任何合适的方式进行组合,例如通过不同的具体技术特征的组合可以形成不同的实施例和技术方案。为了避免不必要的重复,本申请中各个具体技术特征的各种可能的组合方式不再另行说明。
在以下的描述中,所涉及的术语“第一\第二\...”仅仅是区别不同的对象,不表示各对象之间具有相同或联系之处。应该理解的是,所涉及的方位描述“上方”、“下方”、“外”、“内”均为正常使用状态时的方位,“左”、“右”方向表示在具体对应的示意图中所示意的左右方向,可以为正常使用状态的左右方向也可以不是。
需要说明的是,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个…”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。“多个”表示大于或等于两个。
如图1所示,本申请实施例提供了一种用于衣物处理设备的底座1,该底座1用于供清洁设备4停靠,清洁设备4可用于自动清扫地面的灰尘及毛发等,在清洁设备4上设有拖布的情况下,清洁设备4可在清扫地面后对地面进行拖地作业,本申请实施例中清洁设备的功能不会对底座的结构产生限定。并且本申请实施例中的底座1的功能包括但不限定于对清洁设备4进行充电、除尘、清洗、烘干及消毒。
需要说明的是,本申请实施例中的底座1应用于衣物处理设备中,衣物处理设备可包括多种形式,例如洗衣机、脱水机和洗烘干一体机等装置。衣物处理装置具体应用的场景并不对本申请底座的结构产生限定。
如图1和图2所示,本申请实施例的底座1包括壳体2和吸尘组件3。壳体2内部设有清洁腔22,清洁腔22用于供清洁设备4停靠,以实现对清洁设备4的充电及清洁等作业,清洁腔22的外部用于安装充电及清洁等作业相关的部件。本申请实施例中的吸尘组件3设置在清洁腔22外,在清洁 设备4停靠在清洁腔22的情况下,吸尘组件3可用于吸取清洁设备4内部的储尘空间所存放的灰尘等垃圾,以将清洁设备4内部的储尘空间腾空,从而方便清洁设备4进行下次的除尘工作。
如图3所示,吸尘组件3设有适于与清洁设备4连通的集尘口31,集尘口31用于吸取清洁设备4中储尘空间所存放的灰尘等垃圾;吸尘组件3还设有与清洁腔22连通的回风口32,回风口32用于将吸尘组件3中的气体导出至清洁设备4。结合图2所示,清洁设备4内部设有用于存放灰尘等垃圾的储尘空间,且清洁设备4的表面还设有与储尘空间连通的进口和出口,在清洁设备4停靠在清洁腔22的情况下,清洁设备4的出口与吸尘组件3的集尘口31对接,清洁设备4的进口与吸尘组件3的回风口32对接,使得清洁设备4的储尘空间与吸尘组件3之间相互连通且相对外部密闭,气体可以在清洁设备4的储尘空间和吸尘组件3之间形成循环风路,也就是说气体可在储尘空间与吸尘组件之间循环流动,而不会流至清洁设备4与吸尘组件3外部,外部的气体也不会流至清洁设备4与吸尘组件3的内部。
需要说明的是,本申请所称的连通,可以是直接连通,如,集尘口31与清洁设备4直接对接连接,从而实现连通;也可以是间接连通,如集尘口31与清洁设备4通过其他通道或者辅助设备实现连通。
本申请实施例通过吸尘组件3的集尘口31与清洁设备4的出口对接,通过吸尘组件3的回风口32与清洁设备4的进口对接,吸尘组件3与清洁设备4内部形成循环风路,吸尘组件3通过集尘口31向清洁设备4的储尘空间吸取灰尘,吸尘组件3过滤灰尘,并导通气体,气体从储尘空间流到吸尘组件中产生压力差,使得清洁设备中的储尘空间产生负压,经过吸尘组件后被过滤出来的气体会在负压的作用下通过回风口流回至清洁设备中的储尘空间,由此,气体在吸尘组件3与清洁设备之间实现内循环,气体 不断的经过储尘空间,并将储尘空间内的灰尘通过集尘口带入吸尘组件,吸尘组件不断收集灰尘并将过滤后的气体导回至储尘空间,依次循环,直到气体将储尘空间内的灰尘全部转移到吸尘组件内,从而实现吸尘组件对清洁设备的除尘。
本申请实施例提供了一种底座,该底座1包括壳体2和吸尘组件3,壳体2内部设有清洁腔22,吸尘组件3设有适于与清洁设备4连通的集尘口31和回风口32,集尘口31用于吸取清洁设备4内的灰尘。本申请实施例通过在吸尘组件3设置集尘口31和回风口32,在清洁设备4停靠在清洁腔22的状态下,集尘口31和回风口32分别与清洁设备4对接,以在吸尘组件3与清洁设备4之间形成循环通道,气体不断在吸尘组件3与清洁设备4之间循环,清洁设备4中的灰尘可跟随循环气流转移到吸尘组件3中,实现了对清洁设备4的除尘;在提高底座结构紧凑度的技术上还能够采用内循环实现灰尘的转移,吸尘组件与清洁设备之间的循环风路密闭性好,有利于提高灰尘转移的效率;另外,本申请实施例将底座应用在衣物处理设备中,有利于节省存放空间。
在一些实施例中,回风口32可直接与大气相连,那么,大气中的气体可以流入回风口32,由回风口32吹入到清洁设备4内,可以理解,经过回风口32吹入到清洁设备的气体既可以是经过吸尘组件3过滤灰尘之后的清洁气体,也可以是大气中的气体。
在一些实施例中,如图4所示,为了便于观察,图4中省略了壳体的结构,吸尘组件3包括进气通道33、集尘器34和排气通道35。进气通道33在延伸方向上具有相对的两端,其中一端设置为集尘口31,进气通道33的另一端与集尘器34连接,其中,进气通道33可设置为软管,以便于进气通道33在装配过程中与其他部件配合,当然,进气通道33也可以由壳体直接形成。一些实施例中,进气通道33的集尘口31处可设有橡胶件, 橡胶件围绕集尘口31设置,通过设置橡胶件能够增加集尘口与清洁设备连接的密封性,从而有利于提高将清洁设备中的灰尘转移到集尘器34的效率。本申请实施例中的集尘器34用于过滤从集尘口31导入的灰尘。如图4所示,排气通道35一端与集尘器34连接,排气通道35的另一端设置回风口32,排气通道用于将集尘器34过滤后的气体导出至清洁设备,一些实施例中,排气通道35可设置为软通道,以便于排气通道35在装配过程中与其他部件配合,排气通道35的回风口32处可设有橡胶件,橡胶件围绕回风口32设置,通过设置橡胶件能够增加回风口与清洁设备连接的密封性,从而有利于提高将清洁设备中的灰尘转移到集尘器34的效率。
如图4所示,气体在清洁设备4与吸尘组件3之间形成内循环,气体经过清洁设备4,清洁设备4内的灰尘跟随气体从进气通道33流至集尘器34内,集尘器34能够过滤经过的气体,也就是说,集尘器34收集经过的灰尘,并导通流经的气体,气体从集尘器34流至排气通道35,气体经排气通道流回至清洁设备4中,气体再次带走清洁设备4中的灰尘,依次循环,实现将清洁设备4中的灰尘转移至集尘器34中。本申请实施例通过将吸尘组件设置为进气通道、集尘器和出气通道,进气通道和出气通道更容易配合其他的部件装配,且有利于降低集尘器的装配难度,有利于提高底座的空间利用率,从而降低底座的装配尺寸。
在一些实施例中,如图4所示,集尘口31相对回风口32靠近集尘器34,可以理解为,集尘口31设置在回风口32与集尘器34之间,也就使得进气通道33的长度小于排气通道35的长度,本申请实施例通过将进气通道33的长度设置的较短,有利于缩短灰尘从清洁设备流至集尘器34的路径,从而降低灰尘在进气通道33留置的风险,增加了进气通道33的流畅度,进而提高集尘器吸尘的效率。
在一些实施例中,如图5所示,清洁腔22的前端设有敞口221;结合 图2所示,敞口221连通清洁腔22,需要说明的是,敞口221表示的是截面尺寸较大的开口,通过在清洁腔22设置敞口221,以便于清洁设备4从敞口221处移动至清洁腔22内。排气通道35自所述清洁腔22的后端绕行至清洁腔22的右端并与集尘器34相连。需要说明的是,本申请实施例可以将清洁腔22的前端视为靠近用户的一端,远离用户的一端视为清洁腔22的后端。进气通道33和集尘器34也设置在清洁腔22的右端。
本申请实施例通过将吸尘组件分布在清洁腔的后端和右端,从而将吸尘组件分散在两个方向上,减小了吸尘组件在一个方向的尺寸,且与清洁腔并排设置,有利于降低底座的整体高度,进气通道、排气通道和集尘器均横向布置,降低了因纵向排布而使重力大的杂质无法向上吸进集尘器的风险,并且还能降低用户取出集尘器时通道道(进气通道或排气通道)里的残余灰尘掉出通道道落入集尘器的风险。
在一些实施例中,如图4所示,进气通道33在左右方向上位于清洁腔22与集尘器34之间。进气通道33可设置为弯折形结构,进气通道33可沿前后方向延伸,进气通道33的集尘口31位于清洁腔22的后端,进气通道33另一端与集尘器34连接,通过将进气通道大致沿前后方向延伸设置,在满足进气通道长度较短的前提下,还有利于减小整个吸尘组件的装配尺寸,从而提高整个底座的结构尺寸。
在一些实施例中,如图3所示,集尘口31和回风口32在左右方向上间隔设置。间隔表示的是集尘口31和回风口32在左右方向上的距离大于一定值,气体从回风口进入到清洁设备中,再经清洁设备流至集尘口,将集尘口和回风口间隔设置,有利于增大清洁设备中气流流动的路径,从而有利于使气体尽可能的带走清洁设备中的灰尘,降低灰尘在清洁设备中残余的风险,并提高吸尘组件对清洁设备除尘的效率。
在一些实施例中,如图3所示,集尘口31和回风口32在左右方向的 距离L1大于0.5倍清洁腔22在左右方向的尺寸L2。本申请实施例通过限定集尘口和回风口之间的距离以及清洁腔的尺寸关系,由于清洁腔在左右方向的尺寸大致与清洁设备的尺寸吻合,可以进一步的限定集尘口、回风口与清洁设备在左右方向的尺寸关系,有利于延长气流在清洁设备流动的路径,使得气体能够尽可能的带走清洁设备中灰尘,以提高吸尘组件对清洁设备的除尘效果。
在一些实施例中,如图3所示,集尘口31和回风口32分别设置在清洁腔22在左右方向的相对两侧。本申请实施例通过将集尘口和回风口分别设置在清洁腔的相对两侧,有利于使得气体从清洁设备左右方向的一侧流至左右方向的另一侧,在清洁腔尺寸一定的前提下,提高了气体在清洁腔内流动的路径,从而提高了气体带动清洁设备内灰尘的效率,提高吸尘组件的除尘效果。
在一些实施例中,如图4所示,集尘器34包括集尘盒341和驱动件342。集尘盒341与进气通道33的另一端连接;其中,进气通道33的另一端表示的是远离集尘口31的一端,集尘盒341用于收集进气通道33导入的灰尘,并过滤进气通道33导入的气体。一些实施例中,进气通道33的另一端与集尘盒341的侧部连接,侧部表示的是集尘盒341中围绕上下方向的位置,集尘盒341在上下方向具有相对的两端,本申请实施例将集尘盒341在上下方向的两端定义为顶端和底端,那么对应连接顶端和底端的部分定义为集尘盒的侧部,本申请实施例通过将进气通道33的另一端与集尘盒的侧部连接,相比与将进气通道的另一端与集尘盒的顶部或底部连接的方式,气体中的灰尘在流动过程中,需克服重力作用的程度较小,降低灰尘在进气通道中堆积的风险。
如图4所示,驱动件342一端与集尘盒341连接,驱动件342的另一端与排气通道35的一端连接,驱动件342用于引导气流从集尘口31流至 回风口32。本申请实施例中的驱动件342可用于扰动进气通道33或排气通道35内的气体的流动,使得气体从进气通道33往排气通道35的方向流动,当清洁设备与吸尘组件连接的状态下,驱动件能够带动清洁设备与吸尘组件之间的气体实现内循环。
在一些实施例中,如图4所示,驱动件342包括电源3421和集尘电机3422。电源3421与集尘盒341在上下方向层叠设置,本申请实施例中的上下方向可用于表示绝对坐标系中的竖直方向,前后方向与左右方向所形成的平面可用于表示绝对坐标系中的水平面的方向。本申请实施例中的电源3421可用于将衣物处理设备中的交流电转化为直流电,以供给底座中的集尘电机等各个器件使用。如图4所示,集尘电机3422在前后方向的一端与集尘盒341连接,集尘电机3422在前后方向的另一端与排气通道35连接。也就是说,进气通道和排气通道均连接在集尘电机在前后方向的相对两侧,本申请实施例通过将进气通道、出气通道及集尘电机在水平方向上布设,有利于降低底座在竖直方向上的装配尺寸,从而降低底座的整体高度。
在一些实施例中,集尘盒包括盒体、抽斗和过滤件。盒体内部设有第一空腔,第一空腔在前后方向的一端开口;抽斗内部设有连通集尘口和回风口的第二空腔,抽斗可沿前后方向平动地设置在第一空腔内,当抽斗设置在第一空腔的情况下,抽斗可封闭开口,以是第一空腔和第二空腔形成密闭腔体,过滤件设置在第二空腔内,过滤件用于过滤经过第二空腔的气体,并收集经过第二空腔的灰尘。过滤件可拆卸的设置在第二空腔内,当过滤件内的灰尘集满后,可将过滤件拆除,并换上新的过滤件。
当然,在其他实施例中,集尘盒的结构包括但不限于上述一种实施例,例如集尘盒可连通衣物处理设备的排污通道,排污通道的水流经集尘盒,并将集尘盒内的灰尘冲至衣物处理设备的排污口,从而实现将集尘盒内的 灰尘直接排出至衣物处理设备外部,简化了用户的操作,提升用户体验。
如图1所示,本申请实施例的底座1还包括烘干组件6。烘干组件6设置在清洁腔外,结合图3所示,烘干组件6设有与清洁腔22连通的出风口61,出风口61用于向清洁腔22导入气流,气流通过出风口61吹到清洁腔22内,气流吹到停靠在清洁腔22内的清洁设备4的潮湿拖布上,气流带走拖布上的水分,以对拖布起到风干作用。其中,如图6所示,烘干组件6部分位于清洁腔22在前后方向的一端,另一部分位于清洁腔22在上下方向的一端。本申请实施例通过将烘干组件分布在清洁腔的前后方向的一端和上下方向的一端,从而将烘干组件分散在两个方向上,减小了烘干组件在一个方向的尺寸,将部分烘干组件与清洁腔在前后方向并排设置,有利于降低底座的整体高度。
在一些实施例中,如图6所示,清洁腔22在前后方向的一端设有敞口221,清洁腔22在上下方向的一端视为清洁腔22的顶端,烘干组件6部分设置在清洁腔22在上下方向的一端,也就是说,烘干组件6部分设置在清洁腔22的顶端。烘干组件6的另一部分可设置在清洁腔22在第一方的一端,也就是说,烘干组件6可设置在清洁腔22的后端。,本申请实施例通过将烘干组件分布在清洁腔的周围,有利于减小烘干组件在一个方向上的装配空间,从而缩小整个底座的装配尺寸。
在一些实施例中,烘干组件6包括风机62和通风件63。风机62的作用是依靠机械能提高气体的压力,其中,风机62设置在清洁腔22在上下方向的一端,也就是说,风机62设置在清洁腔22的顶部。如图6所示,通风件63一端与风机62连通,通风件63的另一端设有出风口61(参照图3所示),通风件63内部中空设置,通风件63设置在清洁腔22的后端,通风件63可用于导通风机62所产生的气流,并将风机62内的气流导流至清洁腔22。本申请实施例通过将烘干组件设置风机和通风件的形式,烘干组 件无需集中设置在清洁腔的一侧,烘干组件可分布设置在清洁腔的不同侧,有利于降低底座的整体高度,且有利于降低烘干组件的装配难度。
在一些实施例中,如图6所示,风机62在前后方向的尺寸大于风机62在上下方向的尺寸。在风机的正常使用状态下,风机62在竖直方向上的尺寸要大于在水平方向上的尺寸,本申请实施例中的风机62水平放置,也就是说,风机62在竖直方向上的尺寸要小于水平方向的尺寸,有利于降低风机在竖直方向上所占的空间,并降低底座在竖直方向上的尺寸。
在一些实施例中,如图6所示,通风件63的延伸方向与上下方向平行。需要说明的是,通风件63的延伸方向表示的是通风件63的长度方向,通过将通风件的长度方向与上下方一致,有利于降低通风件在前后方向所占的空间,有利于提高壳体内各部件装配的紧凑度,从而提高壳体内的空间利用率。
在一些实施例中,如图6所示,通风件63设置有多个,多个通风件63的上端均与风机62连通,也就是说,风机62处产生的气流会分散流至多个通风件63内,多个通风件63的下端在左右方向上间隔设置,气流分别从多个通风件63的另一端吹向清洁腔,有利于分别吹向清洁设备4的不同位置,从而有利于提高对清洁设备的干燥效率。
在一些实施例中,如图6所示,通风件63包括第一通风件631和第二通风件632,第一通风件631的一端与风机62连通,第一通风件631的另一端为第一出风口611,第二通风件632的一端与风机62连通,第二通风件632的另一端为第二出风口612;一些实施例中,清洁设备4中可设置两个拖布,两个拖布分别在左右方向并排设置。如图3所示,本申请实施例中的第一出风口611和第二出风口612在左右方向的距离L3大于等于第一尺寸且小于等于第二尺寸,第一尺寸为0.2倍清洁腔22在左右方向的尺寸L2,第二尺寸为0.6倍清洁腔在左右方向的尺寸L2。本申请实施例通过将 第一出风口和第二出风口的距离限定在一定范围内,有利于第一出风口和第二出风口导出的气流均能均匀的吹到清洁设备的拖布上,从而提高清洁设备的干燥效率。一些实施例中,如图6所示,第一出风口611和第二出风口612相对清洁腔22在左右方向上的中线对称设置,本申请实施例通过将第一出风口和第二出风口在左右方向上对称设置,有利于提高气流对清洁腔内清洁设备的干燥效率。
在一些实施例中,如图6所示,第一通风件631靠近所述风机62的部分沿左右方向延伸,第一通风件631靠近第一出风口611的部分沿上下方向延伸,第二通风件632靠近风机62的部分沿左右方向延伸,第二通风件632靠近第二出风口612的部分沿上下方向延伸。也就是说,第一通风件631和第二通风件632靠近风机62的一端具与风机62连接,且均沿水平方延伸,第一通风件631和第二通风件632远离风机62的部分在左右方向间隔,且均沿上下方向延伸,有利于将第一出风口611与第二出风口612在第二方间隔且将第一通风件631的一端与第二通风件632的一端连通,能够将气流分散且导向清洁腔的底部,使得气流能够均匀的分散到清洁设备中的两个拖布对应的位置,从而提高清洁设备的风干效率。
在一些实施例中,如图3所示,出风口61在上下方向上靠近清洁腔22的底端。上下方向可以表示底座在正常使用状态下的竖直方向,那么对应的图3所示的下端即表示清洁腔22的底端。需要说明的是,本申请实施例中的靠近表示的是出风口61与清洁腔22的底端的距离小于或等于0.4倍清洁腔22在上下方向的尺寸。本申请实施例通过将出风口在上下方向靠近清洁腔的底端设置,有利于缩小出风口与清洁设备中拖布的距离,有利于出风口导出的风直接吹到拖布上,从而降低了气流的耗散,进而提高清洁设备的干燥效率。
在一些实施例中,烘干组件还包括加热件。加热件,设置在通风件内, 加热件用于加热经过通风件内的气流。通过加热件加热气流,使得气流的温度升高,在高温气流吹至清洁设备的拖布表面,高温气流会与拖布进行热传导,使得拖布的温度升高,加快了拖布中水分的蒸发,拖布中的水分跟随气流流走,实现拖布的快速烘干。
本申请实施例还提供了一种衣物处理设备,如图7所示,该衣物处理设备包括本体5和上述任一实施例所述的底座1。本体5用于对衣物实现浸泡、洗涤及烘干等操作,底座1设置在本体5在上下方向的一端。其中,上下方向表示的是绝对坐标系中的竖直方向,也就是说,底座1设置在衣物处理设备的底部,当衣物处理设备放置在地面的情况下,底座1相对本体5更靠近地面,从而便于清洁设备通过敞口运动至清洁腔22内。
以上所述,仅为本申请的较佳实施例而已,并非用于限定本申请的保护范围。

Claims (10)

  1. 一种底座,包括:
    壳体,内部设有供清洁设备停靠的清洁腔;
    吸尘组件,设置在所述清洁腔外,所述吸尘组件设有适于与所述清洁设备连通的集尘口,以吸取所述清洁设备内的灰尘;所述吸尘组件还设有与所述清洁设备连通的回风口,以将气体经所述回风口导至所述清洁设备。
  2. 根据权利要求1所述的底座,其中,所述吸尘组件包括:
    进气通道,一端设有所述集尘口;
    集尘器,与所述进气通道的另一端连接,以过滤从所述集尘口导入的灰尘;
    排气通道,一端与所述集尘器连接,另一端设置所述回风口,以将所述集尘器过滤后的气体导出至所述清洁设备。
  3. 根据权利要求2所述的底座,其中,所述集尘口相对所述回风口更靠近所述集尘器。
  4. 根据权利要求3所述的底座,其中,所述清洁腔的前端设有敞口,所述集尘口和所述回风口分别设置在清洁腔后端的左右两侧,所述集尘器设置在所述清洁腔的右端,所述排气通道自所述清洁腔的后端绕行至所述清洁腔的右端并与所述集尘器相连。
  5. 根据权利要求4所述的底座,其中,所述进气通道在左右方向上位于所述清洁腔与所述集尘器之间。
  6. 根据权利要求5所述的底座,其中,所述集尘口和所述回风口在左右方向的距离大于0.5倍所述清洁腔在左右方向的尺寸。
  7. 根据权利要求2-6任一项所述的底座,其中,所述集尘器包括:
    集尘盒,与所述进气通道的另一端连接;
    驱动件,一端与所述集尘盒连接,另一端与所述排气通道的一端连接,以引导气流从所述集尘口流至所述回风口。
  8. 根据权利要求7所述的底座,其中,所述集尘盒包括:
    盒体,内部设有第一空腔,所述第一空腔的前端开口;
    抽斗,内部设有连通所述集尘口和所述回风口的第二空腔,所述抽斗可沿前后方向平动地设置在所述第一空腔内;
    过滤件,设置在所述第二空腔内,以过滤经过所述第二空腔的气体。
  9. 根据权利要求8所述的底座,其中,所述驱动件包括:
    电源,设置在所述集尘盒的上方;
    集尘电机,前端与所述集尘盒连接,后端与所述排气通道连接。
  10. 一种衣物处理设备,其中,包括:
    本体;
    根据权利要求1-9任一项所述的底座,所述底座设置在所述本体的下端。
PCT/CN2023/093534 2022-05-17 2023-05-11 一种底座及衣物处理设备 WO2023221858A1 (zh)

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