WO2022147904A1 - 一种清洁设备用除湿托盘和清洁设备 - Google Patents

一种清洁设备用除湿托盘和清洁设备 Download PDF

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Publication number
WO2022147904A1
WO2022147904A1 PCT/CN2021/082431 CN2021082431W WO2022147904A1 WO 2022147904 A1 WO2022147904 A1 WO 2022147904A1 CN 2021082431 W CN2021082431 W CN 2021082431W WO 2022147904 A1 WO2022147904 A1 WO 2022147904A1
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WO
WIPO (PCT)
Prior art keywords
dehumidification
air duct
air
fan
tray
Prior art date
Application number
PCT/CN2021/082431
Other languages
English (en)
French (fr)
Inventor
邱日兴
邱日居
Original Assignee
邱日兴
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
Application filed by 邱日兴 filed Critical 邱日兴
Priority to EP21916955.4A priority Critical patent/EP4285803A1/en
Publication of WO2022147904A1 publication Critical patent/WO2022147904A1/zh

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    • 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
    • A47L11/29Floor-scrubbing machines characterised by means for taking-up dirty liquid
    • A47L11/30Floor-scrubbing machines characterised by means for taking-up dirty liquid by suction
    • A47L11/302Floor-scrubbing machines characterised by means for taking-up dirty liquid by suction having rotary tools
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/001Drying-air generating units, e.g. movable, independent of drying enclosure
    • 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
    • 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
    • A47L11/4002Installations of electric equipment
    • 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
    • A47L11/4002Installations of electric equipment
    • A47L11/4005Arrangements of batteries or cells; Electric power supply arrangements
    • 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
    • A47L11/4036Parts or details of the surface treating tools
    • A47L11/4041Roll shaped surface treating 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
    • A47L11/4091Storing or parking devices, arrangements therefor; Means allowing transport of the machine when it is not being used
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/02Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using physical phenomena
    • A61L2/14Plasma, i.e. ionised gases
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/004Nozzle assemblies; Air knives; Air distributors; Blow boxes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B3/00Drying solid materials or objects by processes involving the application of heat
    • F26B3/02Drying solid materials or objects by processes involving the application of heat by convection, i.e. heat being conveyed from a heat source to the materials or objects to be dried by a gas or vapour, e.g. air
    • F26B3/04Drying solid materials or objects by processes involving the application of heat by convection, i.e. heat being conveyed from a heat source to the materials or objects to be dried by a gas or vapour, e.g. air the gas or vapour circulating over or surrounding the materials or objects to be dried
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B9/00Machines or apparatus for drying solid materials or objects at rest or with only local agitation; Domestic airing cupboards
    • F26B9/003Small self-contained devices, e.g. portable
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2202/00Aspects relating to methods or apparatus for disinfecting or sterilising materials or objects
    • A61L2202/10Apparatus features
    • A61L2202/17Combination with washing or cleaning means

Definitions

  • the utility model relates to cleaning equipment technology, in particular to a dehumidification tray and cleaning equipment for cleaning equipment.
  • Wet cleaning equipment is a common type of household cleaning equipment that sprays water on the ground or a roller brush, then cleans the ground through the roller brush, and then sucks the sewage into the cleaning equipment.
  • the wet cleaning equipment includes a floor brush mechanism (floor brush head), a clean water tank, a sewage tank and a sewage suction fan.
  • the sewage suction fan drives the sewage to flow to the sewage tank.
  • the roller brush of the floor brush mechanism is usually left to dry naturally. If the roller brush fails to dry quickly, it may stink and cause odor in the home environment. How to make the roller brush dry quickly and prevent the roller brush from standing still to stink is one of the technical optimization points of cleaning equipment. In view of this, this application is hereby made.
  • the technical problem to be solved by the utility model is how to make the roller brush of the cleaning device dry quickly, so as to avoid the odor when it is left standing.
  • a dehumidification tray for cleaning equipment the cleaning equipment has a cleaning head, a suction device and a sewage suction channel, the cleaning head has a rolling brush chamber and a built-in
  • the roller brush of the roller brush chamber, the roller brush chamber is located at the upstream position of the sewage liquid suction channel, and the suction device is located at the downstream position of the sewage liquid suction channel and is used for generating negative pressure in the sewage liquid suction channel
  • the dehumidifying tray is provided with: a tray body having a accommodating groove formed by a concave portion, the accommodating groove is adapted to the cleaning head so as to be suitable for placing a cleaning device in a non-working state; and, dehumidifying A device is arranged on the tray body, and when the cleaning device is placed on the tray body, the dehumidification device drives air into the roller brush chamber to dry the roller brush; wherein, the dehumidification device includes
  • the present application further provides a cleaning device, comprising: the cleaning device has a cleaning head, a suction device and a sewage suction channel, the cleaning head has a rolling brush chamber and a rolling brush built in the rolling brush chamber, the rolling brush chamber Located at the upstream position of the sewage suction channel, the suction device is located at the downstream position of the sewage suction channel and used to generate negative pressure in the sewage suction channel; the cleaning device is suitable for being placed in any of the foregoing on the dehumidifying tray described in item .
  • the air outlet section of the moisture exhaust air duct is provided with a second air section for guiding the wind deviating from the first air section to return to the first air section in addition to the first air section for supplying air to flow to the moisture exhaust air outlet.
  • the air section adopts an arc-shaped structure, and the arc-shaped second air section enables the wind to return in the second air section, which helps to reduce the noise generated by the impact on the air duct wall, thereby reducing the overall noise when the fan is working.
  • a filter is provided in the sewage suction channel at an upstream position of the suction device, and when the cleaning device is placed on the tray body, the dehumidification air channel and the filter are in fluid communication. , and the air flows into the filter from the roller brush chamber through the sewage suction channel to dry the filter.
  • the cleaning head also has a humidity sensor.
  • the roller brush is configured such that when the cleaning device is placed on the dehumidification tray, it can be controlled to rotate so that different areas thereof are opposed to the air outlet of the dehumidification air duct.
  • the utility model has the following beneficial effects: when the dehumidification tray of the present application supports the cleaning equipment, the dehumidification fan can drive the air to flow into the sewage liquid suction channel, thereby dehumidifying the rolling brush, which is helpful for the rolling brush It can be dried quickly to prevent it from standing still and odor; the air flowing into the sewage liquid suction channel can also dehumidify the filter located at the air outlet end of the sewage liquid suction channel; when the dehumidification fan drives the air to flow out through the air outlet of the air guide channel, it also dehumidifies the filter. Simultaneously drives the water vapor in the water collection tank to dissipate.
  • the present application can also make the following improvements.
  • the aforementioned suction device may include a fan casing, and the fan casing has a moisture exhaust air duct and a cooling air duct; the air outlet section of the moisture exhaust air duct includes a supply air that directly flows to the moisture exhaust air outlet.
  • the first wind section and the second wind section that guides the wind deviating from the first wind section to return to the first wind section, and the second wind section is in an arc shape.
  • the fan casing includes an inner casing assembly and an outer casing assembly
  • the outer casing assembly has an inner cavity for accommodating the inner casing assembly
  • the air inlet section of the moisture exhaust air duct is located in the inner casing assembly
  • the The air outlet section of the moisture exhaust air duct is located in the outer casing assembly, and is connected between the inner casing assembly and the outer casing assembly and communicates with the transition air section of the air inlet section and the air outlet section of the moisture exhaust air duct.
  • the fan casing includes an inner casing assembly and an outer casing assembly
  • the outer casing assembly has an inner cavity for accommodating the inner casing assembly
  • the air inlet section of the cooling air duct is located in the outer casing assembly
  • the cooling air The air outlet section of the duct is located in the inner shell assembly.
  • the air outlet section of the cooling air duct is connected to the air inlet section of the moisture exhaust air duct.
  • the inner shell assembly includes a first inner shell and a second inner shell; the first inner shell has a first cavity part for installing a moisture exhaust fan and a second cavity part for installing a cooling fan;
  • the cavity is located on the lower side of the second cavity; the second inner shell is sleeved on the lower side of the first inner shell, and the end section of the air outlet section of the cooling air duct is located on the outer side wall of the first inner shell and the inner side wall of the second inner shell.
  • the outer shell assembly comprises a first outer shell, a second outer shell and a shell cover
  • the first outer shell is mounted on the upper side of the second outer shell and a cavity for accommodating the inner shell assembly is formed therebetween
  • the housing cover is mounted on the upper side of the first housing and forms an air outlet section of the moisture exhaust air duct therebetween.
  • the air outlet section of the moisture exhaust air duct of the suction device not only includes the first air section for supplying air to flow to the moisture exhaust air outlet, but also is provided with a guide to guide the wind deviating from the first air section to return to the first air section.
  • the second air section is in the arc shape, and the arc-shaped second air section enables the wind to flow back in the second air section, which helps to reduce the noise generated by the impact on the air duct wall, thereby reducing the operating time of the fan. overall noise.
  • FIG. 1 is a schematic diagram of a cleaning apparatus according to an embodiment
  • FIG. 2 and FIG. 3 are respectively exploded views of the cleaning equipment according to the next embodiment from different viewing angles;
  • FIG. 4 shows a cross-sectional view of the cleaning apparatus according to an embodiment
  • FIG. 5 shows a cross-sectional view of the cleaning apparatus according to an embodiment
  • FIG. 6 shows an exploded view corresponding to FIG. 5;
  • FIG. 7 and FIG. 8 are respectively exploded views of the cleaning device of the next embodiment from different viewing angles;
  • Figure 11 shows a cross-sectional view of a clean water tank
  • Figures 12 and 13 show a schematic diagram and an exploded view of the slop tank, respectively;
  • Figure 14 depicts a cross-sectional view of the recovery tank
  • 15 is a schematic diagram of the cleaning head under different viewing angles
  • Figure 16 shows a first exploded view of the cleaning head
  • Figure 17 shows a second exploded view of the cleaning head
  • Figure 18 shows a cross-sectional view of the cleaning head
  • Figure 19 shows a schematic view of the roller brush cover
  • Figures 20 and 21 show a schematic diagram and an exploded view of the dehumidification tray, respectively;
  • FIG. 22 is a schematic diagram of a cleaning head according to another embodiment.
  • Figure 23 shows the connection process diagram of the wiper strip and the connector
  • Figure 24 shows a schematic diagram of a suction device
  • Figure 25 shows a first exploded view of the suction device
  • Figure 26 depicts a cross-sectional view of the suction device
  • Figure 27 shows a second exploded view corresponding to Figure 26
  • Figure 28 shows a schematic diagram of the first housing
  • 29 shows a cross-sectional view of a cleaning head of yet another embodiment
  • Figure 30 shows an exploded view of the dehumidification tray of another embodiment
  • FIG. 31 shows an exploded view of a dehumidification tray of yet another embodiment.
  • Cleaning equipment 1 dehumidification tray 2, body 3, water purification tank 4, sewage tank 5, suction device 6, filter 7, cleaning head 8, battery mechanism 9, handle assembly 10.
  • the cleaning device device of the present application includes a cleaning device 1 and a dehumidifying tray 2 .
  • the cleaning device 1 can be separated from the dehumidifying tray 2 as a whole, and the cleaning device 1 is supported on the dehumidifying tray 2 .
  • the dehumidification tray 2 can dehumidify the cleaning device 1, and on the other hand, it can also charge the cleaning device 1.
  • the cleaning equipment 1 includes a body 3 , a clean water tank 4 , a sewage tank 5 , a suction device 6 , a filter 7 , a cleaning head 8 , a battery mechanism 9 , and a handle assembly 10 .
  • the body 3 includes a first casing 3A, a second casing 3B and a third casing 3B.
  • the water purification tank 4 is installed on the first casing 3A
  • the sewage tank 5 and the filter 7 are installed on the second casing.
  • the suction device 6 is installed between the second casing 3B and the third casing 3B
  • the cleaning head 8 is installed on the lower side of the first casing 3A
  • the battery mechanism 9 is installed in the first casing 3A
  • the handle The assembly 10 is mounted on the first casing 3A.
  • a water conduit T1 is installed on the first casing 3A.
  • the water purification tank 4 has a water outlet T2 matched with the water conduit T1 , and the water purification tank 4 can be detachably installed on the first casing 3A as a whole.
  • the clean water tank 4 includes a first water storage assembly 4A, a first cover assembly 4B, a water guide hose 4C and a counterweight 4D.
  • the first water storage assembly 4A and the first cover assembly 4B cooperate to form the main body of the clean water tank.
  • the first water storage assembly 4A and the first cover assembly 4B are matched through a threaded structure, and the first cover assembly 4B can be opposed to each other as a whole.
  • the first water storage assembly 4A is separated.
  • the water guide hose 4C has a water inlet end extending to the lower side of the inner cavity of the clean water tank main body and a water outlet end communicating with the external space.
  • the water guide hose 4C is installed on the first cover assembly 4B
  • the counterweight 4D is installed on the water inlet end of the water guide hose 4C.
  • the outer periphery of the upper water inlet neck of the water storage and purification assembly 4A has external threads
  • the first cover assembly 4B includes a main cover 4E, a top cover 4F, a handle 4G, a bottom cover 4H, a button 4I, a spring member 4J, and a first gasket.
  • the main cover 4E has a grip cavity for the hand to grasp
  • the top cover 4F is installed on the upper side of the main cover 4E
  • the bottom cover 4H is installed on the lower side of the main cover 4E
  • the handle 4G It is installed in the holding cavity of the main cover 4E for the user to hold
  • the button 4I is installed on the main cover 4E and the top of the main cover 4E protrudes upward
  • the spring member 4J abuts between the button 4I and the main cover 4E
  • the lower side of the bottom cover 4H has a socket part which is matched with the upper water inlet neck of the first water storage assembly 4A
  • the inner circumference of the socket part has internal threads
  • the first gasket 4K is located on the lower side of the bottom cover 4H
  • the second gasket 4L is located on the lower side of the bottom cover 4H and is sleeved on the outer peripheral side of the socket portion.
  • the water guide hose 4C passes through the bottom cover 4H, the water outlet end T2 of the water guide hose 4C is located outside the main cover 4E, and the water inlet end of the water guide hose 4C extends into the inner cavity of the first water storage assembly 4A, and the counterweight
  • the part 4D is used to prevent the water guide hose 4C from curling, and the counterweight part 4D is provided with a water channel connected to the water guide hose 4C, thereby giving way to the water inlet of the water inlet end of the water guide hose 4C.
  • the upper side of the counterweight 4D is sleeved into the water guide hose 4C, and the lower side is in a spherical structure.
  • the sewage tank 5 includes a second water storage assembly 5A, a second cover assembly 5B and a buoy 5C, and the inner cavity of the second water storage assembly 5A has a sewage inlet for sewage to enter.
  • the second cover assembly 5B is detachably installed on the second water storage assembly 5A.
  • the second water storage assembly 5A has a filter bracket for installing the filter 7 and a buoy bracket for installing the buoy member 5C.
  • the buoy member 5C can be moved up and down. Slidingly mounted on the buoy support, the buoy 5C rises as the sewage water level in the second water storage assembly 5A rises.
  • the suction device 6 is located at the downstream position of the sewage suction channel L and is used to generate negative pressure in the sewage suction channel. Specifically, the suction device 6 is installed in the second casing 3B and the third casing. Between 3B, the suction device 6 communicates with the filter 7, and the suction device 6 can be detached by removing the third casing 3B. 24 to 28, the suction device 6 is a suction fan, which includes a suction fan casing, and the suction fan casing has a moisture exhaust air duct Q1 and a cooling air duct Q2.
  • the suction fan casing includes an inner casing assembly 6A and an outer casing assembly 6B, and the outer casing assembly 6B has an inner cavity for accommodating the inner casing assembly 6A.
  • the air inlet section Q11 of the moisture exhaust air duct Q1 is located in the inner shell assembly 6A
  • the air outlet section Q12 of the moisture exhaust air duct Q1 is located in the outer shell assembly 6B.
  • the transitional air section Q13 between the air section Q11 and the air outlet section Q12 (as shown in FIG. 25, the first inner shell 6C has a through hole 6C1 for the moisture to pass through), and the air outlet section Q12 includes the first air supply air that flows directly to the moisture exhaust air outlet 6E2.
  • the return flow of the second air section helps to reduce the noise generated by the impact on the air duct wall, thereby reducing the overall noise of the dehumidification fan when it is working.
  • the air inlet section Q21 of the cooling air duct Q2 is located in the outer shell assembly 6B, the air outlet section Q22 of the cooling air duct Q2 is located in the inner shell assembly 6A, and the air outlet section Q22 of the cooling air duct Q2 is connected to the air inlet section Q11 of the moisture exhaust air duct Q1.
  • the inner shell assembly 6A includes a first inner shell 6C and a second inner shell 6D.
  • the first inner shell 6C has a first cavity P1 for installing a moisture exhaust fan (not shown) and a second cavity for installing a cooling fan (not shown).
  • the cavity part P2 the first cavity part P1 is located on the lower side of the second cavity part P2
  • the second inner shell 6D is sleeved on the lower side of the first inner shell 6C
  • the end of the air outlet section Q22 of the cooling air duct Q2 is located in the first inner shell 6D.
  • the housing assembly 6B includes a first housing 6E, a second housing 6F and a housing cover 6G.
  • the first housing 6E has a humidity inlet 6E1, a humidity outlet 6E2 and an arc-shaped wind guide surface, which is in phase with the second wind section Q122. correspond.
  • the first shell 6E is mounted on the upper side of the second shell 6F and forms a cavity for accommodating the inner shell assembly 6A therebetween, and the shell cover 6G is mounted on the upper side of the first shell 6E and forms the air outlet section of the moisture exhaust air duct Q1 therebetween.
  • a gasket 6H is provided between the housing cover 6G and the first outer shell 6E, and a gasket 6I is provided between the first inner shell 6C and the first outer shell 6E.
  • the filter 7 is located at the upstream position of the suction device 6 along the sewage suction channel L, the filter 7 is installed on the filter bracket of the second water storage assembly 5A and the air outlet end of the sewage suction channel L, The filter 7 is located at the front side of the air inlet end of the suction device 6 to prevent dirt from entering the suction device 6 .
  • Filter 7 may be a HEPA component.
  • the cleaning head 8 includes a floor brush bottom cover 8A, a floor brush top cover 8B, a roller brush cover 8C, a sewage conduit 8D, a spray member 8E, a water pump 8F, a scraper 8G, a roller Brush 8H, drive assembly 8I, roller 8J, connector 8K, deflector 8L, choke 8M, auxiliary wheel 8N.
  • the floor brush bottom cover 8A, the floor brush top cover 8B and the rolling brush cover 8C cooperate to form a floor brush casing.
  • the floor brush top cover 8B is installed on the floor brush bottom cover 8A, and the rolling brush cover 8C can be detachably installed on the ground. Brush top cover 8B.
  • the sewage conduit 8D is connected to the sewage inlet channel of the sewage tank 5, the water inlet end of the spray element 8E is connected to the water outlet end of the water pump 8F, and the water inlet end of the water pump 8F is connected to the water conduit T1 through a pipeline (not shown), and the floor brush machine
  • the housing has a rolling brush chamber for accommodating the rolling brush 8H.
  • the rolling brush chamber is located at the upstream position of the sewage suction channel L.
  • the rolling brush 8H is built in the rolling brush chamber.
  • the roller brush 8H rolls, and a pair of rollers 8J are attached to the rear side of the floor brush bottom cover 8A.
  • the wiper strip 8G is usually made of a soft rubber material.
  • the wiper strip 8G has a fixed portion 8G1 fixed to the bottom cover 8A of the floor brush, and a wiper portion 8G2 that can be in contact with the ground.
  • the fixing part 8G1 is clamped on the connecting piece 8K, an auxiliary wheel 8N is installed between the connecting piece 8K and the floor brush bottom cover 8A, and between the wiper part 8G2 and the rolling brush 8H
  • the close part of the bottom cover 8A of the floor brush close to the upper side of the wiper part 8G2 is provided with a sewage through hole K for the sewage supply to move upward to the sewage suction channel L.
  • the portion of the bottom cover 8A of the floor brush close to the upper side of the wiper portion 8G2 is comb-shaped, and the dirty liquid through hole K can prevent the dirty liquid from accumulating at the angle between the wiper strip and the bottom cover of the floor brush.
  • the deflector 8L is arranged on the lower side of the roller brush cover 8C and is suspended on the upper side of the roller brush 8H.
  • the spray port of the component 8E faces the guide surface G. In this embodiment, the spray port of the spray component 8E is inclined upward, so that the spray water is sprayed to the upper side of the guide surface G obliquely.
  • the baffles 8M are also arranged on the lower side of the roller brush cover 8C, and the baffles 8M are arranged on both sides of the guide surface G of the baffle 8L, so as to limit the expansion of the spray water in the length direction of the roller brush 8H scope effect.
  • the rear side of the wiper portion 8G2 is provided with a plurality of support portions 8O whose bottom ends are suspended when the wiper portion 8G2 moves backward.
  • the length direction of the wiper strips 8G is spaced apart, and there is a contamination gap between the adjacent support parts 8O.
  • the support parts 8O are strip-shaped structures. When the cleaning head moves to the rear side, the support parts 8O make the bottom end of the wiper part 8G2.
  • the bottom end of the wiper portion 8G2 is suspended and the contact surface with the ground is small, and there is a dirt gap between the adjacent support portions 8O, which can prevent dirt from being carried by the wiper strip, thereby helping to reduce the generation of dirt. .
  • the battery mechanism 9 is used to power the cleaning equipment, which can be a rechargeable lithium battery.
  • the handle assembly 10 is installed on the first casing 3A, and the handle assembly 10 has control buttons for controlling the operation of the cleaning device 1 .
  • the dehumidification tray 2 includes a first tray housing 2A, a second tray housing 2B, a dehumidification fan 2C, a charging valve 2D, a charging module 2E and a sealing ring 2F.
  • the first tray shell 2A and the second tray shell 2B cooperate to form a tray main body.
  • the first tray casing 2A is the main casing of the dehumidification tray
  • the upper side of the bottom wall has an accommodating groove formed by the concave portion
  • the lower side of the bottom wall is integrally formed with a dehumidifying air duct for defining the dehumidification
  • the air duct baffle 2A1 in the area of N1 the dehumidifying fan 2C is located in the area surrounded by the air duct baffle 2A1, and the accommodating groove is adapted to the cleaning head to be suitable for placing the cleaning equipment 1 in a non-working state.
  • the bottom wall of the tray housing 2A is formed with a plurality of through holes, which are suitable for guiding the air to flow to the roller brush 8H.
  • the plurality of through holes serve as the air outlet S1 of the dehumidification air duct N1.
  • the dehumidifying air duct is connected, and the upper side of the first tray housing 2A has a water collecting tank M1 for accommodating the dirty liquid remaining in the roller brush 8H when supporting the cleaning device 1 (that is, the position of the water collecting tank M1 is adapted to the position of the roller brush 8H). position), and the roller bearing portion M2, the water collecting tank M1 is formed by the accommodating tank further concave from the bottom thereof.
  • the second tray casing 2B is an air duct member that cooperates with the first tray casing 2A (main casing) to form a dehumidifying air duct N1, and the second tray casing 2B is fixed to the bottom wall of the first tray casing 2A.
  • the preset gap on the lower side and between the bottom wall is formed as a dehumidification channel N1.
  • the lower side of the first tray housing 2A has a plurality of studs
  • the second tray housing 2B has matching screws. Through holes, the second tray housing 2B is connected with the first tray housing 2A through screws, so as to be fixed on the air duct baffle 2A1.
  • the dehumidifying air duct N1 has a gradually enlarged front portion so that the air flows to the roller brush 8H evenly over the length of the roller brush 2C, and the front portion extends forward away from the dehumidifying fan 2C.
  • the air outlet S1 of the dehumidifying air duct N1 is located at the front side of the water collection tank M1 (as shown in FIG. 20 , in this embodiment, the air outlet S1 is arranged on the wall of the water collection tank M1, and the air outlet S1 can also be adjusted to be arranged on the wall of the water collection tank M1 ).
  • a sealing ring 2F is provided on the outer peripheral side of the water collecting tank M1.
  • the sealing ring 2F is arranged between the water collecting tank M1 and the brush chamber as a seal to prevent air leakage for drying the brush.
  • the dehumidifying fan 2C is installed in the dehumidifying air duct N1 (the two cooperate to form a dehumidifying device, so that when the cleaning device is placed on the main body of the tray, the air is driven into the roller brush chamber), and the charging module 2E is installed in the installation cavity N2.
  • the air outlet of the dehumidifying fan 2C is in fluid communication with the dehumidifying air duct (N1), so that the dehumidifying fan 2C drives the air to flow into the sewage suction channel L through the rolling brush chamber to dehumidify the rolling brush 8H and the filter 7 (the cleaning device is placed on the main body of the tray).
  • the dehumidifying air duct N1 is in fluid communication with the roller brush chamber
  • the dehumidifying fan 2C drives the air to flow out through the air outlet S1 of the dehumidifying air duct N1
  • it also drives the water vapor in the water collecting tank M1 to dissipate simultaneously, and can also cause the charging module 2E to dissipate. Cool down.
  • the cleaning head 8 in order to cooperate with the dehumidifying fan 2C, also has a humidity sensor 8P, and the humidity sensor 8P is arranged in the dirt liquid suction channel L at the downstream position of the roller brush 8H.
  • the dehumidification tray can control the working state of the dehumidification fan according to the detection information of the humidity sensor 8P. Only when the cleaning device is placed on the tray main body of the dehumidification tray, the humidity sensor 8P detects the air humidity after passing through the roller brush for 8H for generating Control signal to control the opening and closing of dehumidification fan 2C.
  • the dehumidifying fan 2C When the air humidity detected by the humidity sensor 8P is less than the preset value, the dehumidifying fan 2C is controlled to shut down, and when the air humidity detected by the humidity sensor 8P is greater than the preset value, the dehumidifying fan 2C can be controlled to start automatically.
  • the roller brush 8H When the cleaning device 1 is placed on the dehumidifying tray 1, the roller brush 8H can be controlled to rotate so that its different areas are opposite to the air outlet S1 of the dehumidifying air duct N1, and the rotational speed of the roller brush 8H at this time can be much lower than that during normal operation. , for example, one revolution per minute.
  • the dehumidification air duct N1 of the dehumidification tray 2 is equipped with a heating device 2G, which heats the air to improve the drying efficiency of the roller brush. (such as a fuse or a temperature detector) is used in conjunction with the heating device 2G to control the heating temperature of the heating device 2G.
  • a negative ion generator 2H for sterilization and deodorization is arranged on the tray body of the cleaning head 8 , and the negative ion output port of the negative ion generator 2H is connected to the dehumidification air duct N1 .

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Abstract

一种清洁设备(1)用除湿托盘(2),其具备托盘主体和除湿装置,在清洁设备(1)放置在托盘主体上时,除湿装置驱使空气流入滚刷室内以干燥滚刷(8H)。除湿装置包括除湿风道(N1)和除湿风机(2C),在清洁设备(1)放置在托盘主体上时,除湿风道(N1)与滚刷室流体连通,并且空气受除湿风机(2C)的驱动从除湿风道(N1)流入滚刷室内,从而对滚刷(8H)进行除湿。

Description

一种清洁设备用除湿托盘和清洁设备 技术领域
本实用新型涉及清洁设备技术,具体地,涉及一种清洁设备用除湿托盘和清洁设备。
背景技术
湿式清洁设备是一种常见的家用清洗设备,该类清洁设备通过向地面或滚刷喷水,然后通过滚刷清洁地面,然后再将污水吸入清洁设备。湿式清洁设备包含有地刷机构(地刷头)、净水箱、污水箱和抽污风机,抽污风机带动污水流动至污水箱。在清洁设备完成清洁工作后,通常采用静置放置的方式使地刷机构的滚刷自然干燥,如果滚刷未能快速干燥,则可能发臭导致家居环境产生异味。如何使滚刷快速干燥,避免滚刷静置发臭是清洁设备的技术优化要点之一,有鉴于此,特提出本申请。
实用新型内容
本实用新型所要解决的技术问题是如何使清洁设备的滚刷快速干燥,以避免其静置发臭。
为了达到上述目的,本实用新型采用的技术方案如下:一种清洁设备用除湿托盘,该清洁设备具有清洁头、抽吸装置和污液吸入通道,所述清洁头具有滚刷室和内置于该滚刷室的滚刷,所述滚刷室位于所述污液吸入通道的上游位置,所述抽吸装置位于所述污液吸入通道的下游位置且用于在污液吸入通道内产生负压;所述除湿托具备:托盘主体,其具有由凹入部分形成的容置槽,所述容置槽与所述清洁头相适配以适于放置处于非工作状态的清洁设备;以及,除湿装置,其配置在所述托盘主体上,并且在清洁设备放置在所述托盘主体上时,该除湿装置驱使空气流入所述滚刷室内以干燥所述滚刷;其中,所述除湿装置包括除湿风道和除湿风机,在清洁设备放置在所述托盘主体上时,所述除湿风道与所述滚刷室流体连通,并且空气受除湿风机的驱动从除湿风道流入滚刷室内。
本申请另提供一种清洁设备,包括该清洁设备具有清洁头、抽吸装置和污液吸入通道,所述清洁头具有滚刷室和内置于该滚刷室的滚刷,所述滚刷室位于所述污液吸入通道的上游位置,所述抽吸装置位于所述污液吸入通道的下游位置且用于在污液吸入通道内产生负压;所述清洁设备适于放置在前述任一项所述的除湿托盘上。排湿风道的出风段除了包含供风流动至排湿风口的第一风段外,还设置有引导偏离第一风段的风回流至第一风段的第二风段,且第二风段采用弧形状结构,弧形状的第二风段使风能够在第二风段回流,有助于降低冲击风道壁产生的噪音,从而降低风机工作时整体的噪音。
较佳地,所述污液吸入通道之中位于所述抽吸装置的上游位置处设置有过滤器,在该清洁设备放置在所述托盘主体上时,所述除湿风道和过滤器流体连通,并且空气从滚刷室经污液吸入通道流入过滤器以干燥该过滤器。
较佳地,清洁头还具有湿度传感器。
较佳地,所述滚刷被配置为,在所述清洁设备放置在除湿托盘上时,其能够受控地转动以使得其不同区域与除湿风道的出风口相对。
由于采用了以上技术方案,本实用新型具有以下有益效果:本申请的除湿托盘在承托清洁设备时,除湿风机可带动空气流入污液吸入通道,从而对滚刷进行除湿,有助于滚刷的快速干燥,避免其静置发臭;流入污液吸入通道的空气还可对位于污液吸入通道的出风端的过滤器进行除湿;除湿风机带动空气经由导风通道的出风口流出时,还同步带动集水槽的水气散出。
为了解决现有技术的抽污风机存在工作噪声大的问题,本申请还可进行如下改进。
具体而言,前述的抽吸装置可包含风机机壳,所述风机机壳具有排湿风道和冷却风道;所述排湿风道的出风段包含供风直接流动至排湿风口的第一风段、以及引导偏离第一风段的风回流至第一风段的第二风段,所述第二风段呈弧形状。
较佳地,所述风机机壳包含内壳组件和外壳组件,所述外壳组件具有容置所述内壳组件的内腔;所述排湿风道的进风段位于内壳组件,所述排湿风道的出风段位于外壳组件,所述内壳组件和外壳组件之间且连通所述排湿风道的进风段和出风段的过渡风段。
较佳地,所述风机机壳包含内壳组件和外壳组件,所述外壳组件具有容置所述内壳组件的内腔;所述冷却风道的进风段位于外壳组件,所述冷却风道的出风段位于内壳组件。
较佳地,所述冷却风道的出风段连通所述排湿风道的进风段。
较佳地,所述内壳组件包含第一内壳和第二内壳;所述第一内壳具有安装排湿风扇的第一腔部和安装冷却风扇的第二腔部,所述第一腔部位于所述第二腔部下侧;所述第二内壳套接于所述第一内壳的下侧,所述冷却风道的出风段的末段位于第一内壳的外侧壁和第二内壳的内侧壁之间。
较佳地,所述外壳组件包含第一外壳、第二外壳和外壳盖,所述第一外壳安装于所述第二外壳的上侧且其间形成容置所述内壳组件的容腔,所述外壳盖安装于所述第一外壳的上侧且其间形成所述排湿风道的出风段。
采用以上技术方案,抽吸装置的排湿风道的出风段除了包含供风流动至排湿风口的第一风段外,还设置有引导偏离第一风段的风回流至第一风段的第二风段,且第二风段采用弧形状结构,弧形状的第二风段使风能够在第二风段回流,有助于降低冲击风道壁产生的噪音,从而降低风机工作时整体的噪音。
附图说明
为了更清楚地说明本实用新型实施例的技术方案,下面将对实施例的附图作简单地介绍,显而易见地,下面描述中的附图仅仅涉及本实用新型的一些实施例,而非对本实用新型的限制。
图1绘示了一实施例的清洁设备装置的示意图;
图2和图3分别绘示了不同视角下一实施例的清洁设备装置的分解图;
图4绘示了一实施例的清洁设备装置的剖视图;
图5绘示了一实施例的清洁设备的剖视图;
图6绘示了与图5相对应的分解图;
图7和图8分别绘示了不同视角下一实施例的清洁设备的分解图;
图9和图10分别绘示了净水箱的示意图和分解图;
图11绘示了净水箱的剖视图;
图12和图13分别绘示了污水箱的示意图和分解图;
图14绘示了污水箱的剖视图;
图15绘示不同视角下清洁头的示意图;
图16绘示了清洁头的第一分解图;
图17绘示了清洁头的第二分解图;
图18绘示了清洁头的剖视图;
图19绘示了滚刷盖的示意图;
图20和图21分别绘示了除湿托盘的示意图和分解图;
图22绘示了另一实施例的清洁头的示意图;
图23绘示了刮条和连接件的连接过程图;
图24绘示了抽吸装置的示意图;
图25绘示了抽吸装置的第一分解图;
图26绘示了抽吸装置的剖视图;
图27绘示了与图26相对应的第二分解图;
图28绘示了第一外壳的示意图;
图29绘示了又一实施例的清洁头的剖视图;
图30绘示了另一实施例的除湿托盘的分解图;
图31绘示了又一实施例的除湿托盘的分解图。
附图标记:
清洁设备1、除湿托盘2、机体3、净水箱4、污水箱5、抽吸装置6、过滤器7、清洁头8、电池机构9、手柄组件10。
具体实施方式
为使本实用新型实施例的目的、技术方案和优点更加清楚,下面将结合附图对本实用新型做进一步详细说明。通常在此处附图中描述和示出的本实用新型实施例的组件可以各种不同的配置来布置和设计。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
下面结合附图,对本实用新型的一些实施方式作详细说明。在不冲突的情况下,下述的实施例中的特征可以相互组合。
结合图1至图4,在一实施例中,本申请的清洁设备装置包含有清洁设备1和除湿托盘2,清洁设备1能够整体相对除湿托盘2分离,在清洁设备1承托于除湿托盘2上时,除湿托盘2一方面可对清洁设备1进行除湿,另一方面还可对清洁设备1进行充电。
【清洁设备】结合图5至图8,清洁设备1包含机体3、净水箱4、污水箱5、抽吸装置6、过滤器7、清洁头8、电池机构9、手柄组件10。
【机体】机体3包含有第一机壳3A、第二机壳3B和第三机壳3B,净水箱4安装于第一机壳3A上,污水箱5和过滤器7安装于第二机壳3B上,抽吸装置6安装于第二机壳3B和第三机壳3B之间,清洁头8安装于第一机壳3A下侧,电池机构9安装于第一机壳3A内,手柄组件10安装于第一机壳3A上。第一机壳3A上安装有导水管T1。
【净水箱】结合图9至图11,净水箱4具有与导水管T1相配合的出水端T2,净水箱4能够整体可分离地安装于第一机壳3A上。结合图9至图11,净水箱4包含第一储水组件4A、第一盖体组件4B、导水软管4C和配重件4D。第一储水组件4A和第一盖体组件4B相配合组成净水箱主体,第一储水组件4A和第一盖体组件4B通过螺纹结构相配合,且第一盖体组件4B整体可相对第一储水组件4A分离。导水软管4C具有延伸至净水箱主体内腔下侧的进水端和连通外部空间的出水端。本实施例,导水软管4C安装于第一盖体组件4B上,配重件4D安装于导水软管4C的进水端。储净水组件4A的上侧进水颈口外周具有外螺纹,第一盖体组件4B包含主盖体4E、顶盖4F、提手4G、底盖4H、按钮4I、弹簧件4J、第一密封垫4K和第二密封垫4L,主盖体4E具有供手部抓持的抓持腔,顶盖4F安装于主盖体4E上侧,底盖4H安装于主盖体4E下侧,提手4G安装于主盖体4E的抓持腔内以供用户手持,按钮4I安装于主盖体4E上且顶部自主盖体4E向上伸出,弹簧件4J抵接于按钮4I和主盖体4E之间,底盖4H的下侧具有与第一储水组件4A的上侧进水颈口相配合的套接部,套接部的内周具有内螺纹,第一密封垫4K位于底盖4H下侧且位于套接部内周侧,第二密封垫4L位于底盖4H下侧且套接于套接部外周侧。导水软管4C自底盖4H穿过,导水软管4C的出水端T2位于主盖体4E外侧,导水软管4C的进水端伸入第一储水组件4A内腔,配重件4D用以防止导水软管4C卷曲,配重件4D开设有连通导水软管4C的的水道,从而让位出导水软管4C的进水端的进水口。本实施例,配重件4D的上侧套接于导水软管4C内,下侧呈球状结构。
【污水箱】结合图12至图14,污水箱5包含含第二储水组件5A、第二盖体组件5B和浮标件5C,第二储水组件5A的内腔具有供污水进入的污水进入通道,第二盖体组件5B可分离地安装于第二储水组件5A上,第二储水组件5A具有安装过滤器7的过滤器支架、安装浮标件5C的浮标支架,浮标件5C可上下滑动地安装于浮标支架上,浮标件5C随着第二储水组件5A内污水水位上升而上升。
【抽吸装置】抽吸装置6位于污液吸入通道L的下游位置且用于在污液吸入通道内产生负压,具体地,抽吸装置6安装于第二机壳3B和第三机壳3B之间,抽吸装置6连通过滤器7,可通过拆除第三机壳3B来拆装抽吸装置6。结合图24至图28,抽吸装置6为抽吸风机,其包含抽吸风机机壳,抽吸风机机壳具有排湿风道Q1和冷却风道Q2。具体而言,抽吸风机机壳包含内壳组件6A和外壳组件6B,外壳组件6B具有容置内壳组件6A的内腔。排湿风道Q1的进风段Q11位于内壳组件6A,排湿风道Q1的出风段Q12位于外壳组件6B,内壳组件6A和外壳组件6B之间且连通排湿风道Q1的进风段Q11和出风段Q12的过渡风段Q13(如图25,第一内壳6C具有供湿气通过的过孔6C1),出风段Q12包含供风直接流动至排湿风口6E2的第一风段Q121、以及引导偏离第一风段Q121的风回流至第一风段Q121的第二风段Q122,第二风段Q122呈弧形状,弧形状的第二风段使风能够在第二风段回流,有助于降低冲击风道壁产生的噪音,从而降低除湿风机工作时整体的噪音。冷却风道Q2的进风段Q21位于外壳组件6B,冷却风道Q2的出风段Q22位于内壳组件6A,冷却风道Q2的出风段Q22连通排湿风道Q1的进风段Q11。内壳组件6A包含第一内壳6C和第二内壳6D,第一内壳6C具有安装排湿风扇(图未示)的第一腔部P1和安装冷却风扇(图未示)的第二腔部P2,第一腔部P1位于第二腔部P2下侧,第二内壳6D套接于第一内壳6C的下侧,冷却风道Q2的出风段Q22的末段位于第一内壳6C的外侧壁和第二内壳6D的内侧壁之间(如图25,第一内壳6C的外侧壁具有凹槽部6C2)。外壳组件6B包含第一外壳6E、第二外壳6F和外壳盖6G,第一外壳6E具有进湿风口6E1、排湿风口6E2和弧形的导风面,导风面和第二风段Q122相对应。第一外壳6E安装于第二外壳6F的上侧且 其间形成容置内壳组件6A的容腔,外壳盖6G安装于第一外壳6E的上侧且其间形成排湿风道Q1的出风段Q12。外壳盖6G和第一外壳6E之间设置有密封垫6H,第一内壳6C和第一外壳6E之间设置有密封垫6I。
【过滤器】过滤器7沿污液吸入通道L位于抽吸装置6的上游位置处,过滤器7安装于第二储水组件5A的过滤器支架上且污液吸入通道L的出风端,过滤器7位于抽吸装置6的进风端的前侧,用以防止污物进入抽吸装置6。过滤器7可为HEPA组件。在清洁设备1放置在托盘主体2上时,除湿风道N1和过滤器7流体连通,并且空气从滚刷室经污液吸入通道流入过滤器7以干燥该过滤器7,后文结合托盘主体2具体结构进一步说明。
【清洁头】结合图15至图19,清洁头8包含地刷底盖8A、地刷顶盖8B、滚刷盖8C、污液导管8D、喷淋件8E、水泵8F、刮条8G、滚刷8H、驱动组件8I、滚轮8J、连接件8K、导流件8L、阻流件8M、辅助轮8N。地刷底盖8A、地刷顶盖8B、滚刷盖8C三者相配合组成了地刷机壳,地刷顶盖8B安装于地刷底盖8A上,滚刷盖8C可分离地安装于地刷顶盖8B上。污液导管8D连通污水箱5的污水进入通道,喷淋件8E的进水端和水泵8F的出水端连通,水泵8F的进水端通过管路(图未示)连通导水管T1,地刷机壳具有容置滚刷8H的滚刷室,滚刷室位于污液吸入通道L的上游位置,滚刷8H内置于滚刷室内,滚刷8H安装于地刷底盖8A上,驱动组件8I驱动滚刷8H滚动,一对滚轮8J安装于地刷底盖8A的后侧。刮条8G通常为软质橡胶材料,刮条8G具有固接于地刷底盖8A的固接部8G1、以及能与地面接触的刮液部8G2,固接部8G1通过连接件8K固接于地刷底盖8A的下侧,固接部8G1夹持于连接件8K上,连接件8K和所述地刷底盖8A之间安装有辅助轮8N,刮液部8G2和滚刷8H之间具有供污液进入污液吸入通道L的间隙,地刷底盖8A贴近于刮液部8G2上侧的贴近部分开设有供污液向上活动至污液吸入通道L的污液过孔K,本实施例,地刷底盖8A贴近于刮液部8G2上侧的贴近部分为梳齿状,污液过孔K可避免污液积聚在刮条和地刷底盖之间的夹角位置。导流件8L设置于滚刷盖8C的下侧,且悬置于滚刷8H上侧,导流件8L具有使喷淋水扩散并导流至滚刷8H上的导流面G,喷淋件8E的喷淋口面向导流面G,本实施例,喷淋件8E的喷淋口倾斜向上,从而喷淋水倾斜喷淋至导流面G的上侧。阻流件8M亦设置于滚刷盖8C的下侧,且阻流件8M设置于导流件8L的导流面G两侧,从而起到限制喷淋水在滚刷8H的长度方向的扩展范围的作用。结合图22至图23,在另一实施例的清洁头中,刮液部8G2后侧设置有多个使刮液部8G2向后活动时底端悬空的支撑部8O,多个支撑部8O沿刮条8G的长度方向间隔设置,相邻的支撑部8O之间具有过污间隙,支撑部8O为条状结构,当清洁头向后侧活动时,支撑部8O使刮液部8G2的底端悬空,刮液部8G2的底端悬空与地面的接触面较小,且相邻的支撑部8O之间具有过污间隙而可避免污物被刮条带动,从而有助于减少污迹的产生。
【电池机构】电池机构9用以为清洁设备进行供电,其可为可充电的锂电池。
【手柄组件】手柄组件10安装于第一机壳3A上,手柄组件10具有控制清洁设备1工作的控制按键。
【除湿托盘】结合图20和图21,除湿托盘2包含第一托盘壳体2A、第二托盘壳体2B、除湿风机2C、充电阀门2D、充电模块2E和密封圈2F。第一托盘壳体2A、第二托盘壳体2B相配合组成托盘主体,第一托盘壳体2A和第二托盘壳体2B之间具有除湿风道N1、安装腔N2,两者相连通。结合图20,第一托盘壳体2A为除湿托盘的主壳体,其底壁的上侧具有由凹入部分形成的容置槽,其底壁的下侧一体地形成有用于限定除湿风道N1的区域范围的风道挡板2A1,除湿风机2C位于风道挡板2A1围设的区域内,容置槽与清洁头相适配以适于放置处于非工作状态的清洁设备1,第一托盘壳体2A的底壁形成有多个通孔,该多个通孔适于引导空气流向滚刷8H,该多个通孔作为除湿风道N1的出风口S1,容置槽经由通孔与除湿风道连通,第一托盘壳体2A的上侧具有在承托清洁设备1时容置残存于滚刷8H的污液的集水槽M1(即集水槽M1的位置适配于滚刷8H的位置)、以及滚轮承托部M2,集水槽M1系容置槽自其底部进一步下凹而成。第二托盘壳体2B为与第一托盘壳体2A(主壳体)相配合形成除湿风道N1的风道构件,第二托盘壳体2B固接在第一托盘壳体2A的底壁的下侧上并且与底壁之间的预置间隙形成为除湿通道N1,具体而言,第一托盘壳体2A的下侧具有多个螺柱,第二托盘壳体2B具有相适配的螺丝过孔,第二托盘壳体2B通过螺丝与第一托盘壳体2A相连接,从而固接在风道挡板2A1上。除湿风道N1具有逐渐扩大的前部以使得空气在滚刷2C的长度范围内均布地流向滚刷8H,前部向前远离除湿风机2C延伸。除湿风道N1的出风口S1位于集水槽M1的前侧(如图20,本实施例,出风口S1配置在集水槽M1的壁部,出风口S1亦可调整成配置在集水槽M1的壁部与容置槽的底部的转接处),出风口S1为多个,多个出风口S1沿与滚刷8H的长度方向相对应的方向间隔设置。集水槽M1的外周侧设置有密封圈2F,清洁设备1放置于除湿托盘时,密封圈2F配置在集 水槽M1和滚刷室之间,作为密封件以阻止用于干燥滚刷的空气泄漏。除湿风机2C安装于除湿风道N1(两者相配合组成除湿装置,从而在清洁设备放置在托盘主体上时,驱使空气流入滚刷室内),充电模块2E安装于安装腔N2。除湿风机2C的出风口与除湿风道(N1)流体连通,从而除湿风机2C带动空气经由滚刷室流入污液吸入通道L以对滚刷8H和过滤器7进行除湿(清洁设备放置在托盘主体上时,除湿风道N1与滚刷室流体连通),除湿风机2C带动空气经由除湿风道N1的出风口S1流出时,还同步带动集水槽M1的水气散出,并可对充电模块2E进行降温。结合图29,在其它实施例中,为配合除湿风机2C工作,清洁头8还具有湿度传感器8P,湿度传感器8P配置在污液吸入通道L之中的位于滚刷8H的下游位置处。除湿托盘可根据湿度传感器8P的检测信息控制除湿风机的工作状态,仅在该清洁设备放置在除湿托盘的托盘主体上时,该湿度传感器8P检测流经滚刷8H后的空气湿度以用于产生控制除湿风机2C启闭的控制信号。在湿度传感器8P检测的空气湿度小于预设值时,除湿风机2C受控关闭,在湿度传感器8P检测的空气湿度大于预设值时,除湿风机2C可受控自启动。在清洁设备1放置在除湿托盘1上时,滚刷8H能够受控地转动以使得其不同区域与除湿风道N1的出风口S1相对,滚刷8H此时的转速可远低于正常工作时的转速,例如可为每一分钟转动一圈。结合图30,在另一实施例中,除湿托盘2的除湿风道N1内配置有加热装置2G,其加热空气以提高滚刷的干燥效率,加热装置例如为PTC加热,可另设温控件(如保险丝或温度检测器)配合加热装置2G使用,以控制加热装置2G的加热温度。结合图31,在又一实施例中,清洁头8的托盘主体上配置有用于杀菌除臭的负离子发生器2H,负离子发生器2H的负离子输出口连通除湿风道N1。
以上所述,仅为本实用新型的具体实施方式,但本实用新型的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内,可轻易想到的变化或替换,都应涵盖在本实用新型的保护范围之内。因此,本实用新型的保护范围应以权利要求的保护范围为准。

Claims (25)

  1. 一种清洁设备用除湿托盘,该清洁设备具有清洁头(8)、抽吸装置(6)和污液吸入通道(L),所述清洁头具有滚刷室和内置于该滚刷室的滚刷(8H),所述滚刷室位于所述污液吸入通道(L)的上游位置,所述抽吸装置(6)位于所述污液吸入通道(L)的下游位置且用于在污液吸入通道(L)内产生负压;其特征在于,所述除湿托盘(2)具备:
    托盘主体,其具有由凹入部分形成的容置槽,所述容置槽与所述清洁头相适配以适于放置处于非工作状态的清洁设备;以及,
    除湿装置,其配置在所述托盘主体上,并且在清洁设备放置在所述托盘主体上时,该除湿装置驱使空气流入所述滚刷室内以干燥所述滚刷;
    其中,所述除湿装置包括除湿风道(N1)和除湿风机(2C),在清洁设备放置在所述托盘主体上时,所述除湿风道(N1)与所述滚刷室流体连通,并且空气受除湿风机(2C)的驱动从除湿风道(N1)流入滚刷室内。
  2. 根据权利要求1所述的除湿托盘,其特征在于,所述托盘主体包含主壳体(2A)和风道构件(2B),所述风道构件(2B)固接在主壳体(2A)的底壁上并且其与所述底壁之间的预置空隙形成为除湿风道(N1),所述除湿风机(2C)的出风口与所述除湿风道(N1)流体连通。
  3. 根据权利要求2所述的除湿托盘,其特征在于,所述容置槽位于所述底壁的上侧,所述风道构件(2B)固接在所述主壳体(2B)的下侧,所述底壁上形成有至少一个贯穿底壁的通孔,所述容置槽经由该通孔与除湿风道连通。
  4. 根据权利要求3所述的除湿托盘,其特征在于,所述通孔为多个,并且该多个通孔适于引导空气流向所述滚刷(8H),并且该多个通孔被构成为所述除湿风道(N1)的出风口(S1)。
  5. 根据权利要求3或4所述的除湿托盘,其特征在于,所述容置槽具有自其底部进一步下凹的集水槽(M1),该集水槽(M1)的位置适配于所述滚刷(8H)的位置,所述通孔配置在集水槽(M1)的壁部,或所述通孔配置在集水槽(M1)的壁部与所述容置槽的底部的转接处。
  6. 根据权利要求5所述的除湿托盘,其特征在于,所述集水槽(M1)和滚刷室之间配置有密封件(2F)以阻止用于干燥滚刷的空气泄漏。
  7. 根据权利要求2或3所述的除湿托盘,其特征在于,所述主壳体(2B)一体地形成有用于限定除湿风道(N1)的区域范围的风道挡板(2A1),所述风道构件(2B)固接在风道挡板(2A1)上。
  8. 根据权利要求7所述的除湿托盘,其特征在于,所述除湿风机(2C)位于所述风道挡板(2A1)围设的区域内。
  9. 根据权利要求3或4所述的除湿托盘,其特征在于,所述除湿风道(N1)具有逐渐扩大的前部以使得空气在所述滚刷的长度范围内均布地流向滚刷(8H),所述前部向前远离所述除湿风机(2C)延伸。
  10. 根据权利要求1所述的除湿托盘,其特征在于,所述除湿风道内配置有加热装置(2G),其加热空气以提高滚刷的干燥效率。
  11. 根据权利要求1所述的除湿托盘,其特征在于,所述托盘主体上配置有用于杀菌除臭的负离子发生器(2H),所述负离子发生器的负离子输出口连通所述除湿风道。
  12. 一种清洁设备,包括该清洁设备具有清洁头(8)、抽吸装置(6)和污液吸入通道(L),所述清洁头(8)具有滚刷室和内置于该滚刷室的滚刷(8H),所述滚刷室位于所述污液吸入通道(L)的上游位置,所述抽吸装置(6)位于所述污液吸入通道(L)的下游位置且用于在污液吸入通道(L)内产生负压;其特征在于,所述清洁设备适于放置在权利要求1-11任一项所述的除湿托盘上。
  13. 根据权利要求12所述的清洁设备,其特征在于,所述污液吸入通道(L)之中位于所述抽吸装置的上游位置处设置有过滤器(7),在该清洁设备放置在所述托盘主体上时,所述除湿风道(N1)和过滤器(7)流体连通,并且空气从滚刷室经污液吸入通道流入过滤器(7)以干燥该过滤器(7)。
  14. 根据权利要求13所述的清洁设备,其特征在于,所述过滤器(7)为HEPA组件。
  15. 根据权利要求12所述的清洁设备,其特征在于,所述清洁头还具有湿度传感器(8P),仅在该清洁设备放置在所述托盘主体上时,该湿度传感器(8P)检测流经所述滚刷(8H)后的空气湿度以用于产生控制所述除湿风机启闭的控制信号。
  16. 根据权利要求15所述的清洁设备,其特征在于,在所述湿度传感器(8P)检测的空气湿度小于预设值时,所述除湿风机(2C)受控关闭。
  17. 根据权利要求15或16所述的清洁设备,其特征在于,所述湿度传感器(8P)配置在污液吸入通道(L)之中的位于所述滚刷(8H)的下游位置处。
  18. 根据权利要求12-16任一项所述的清洁设备,其特征在于,所述滚刷(8H)被配置为,在所述清洁设备放置在除湿托盘上时,其能够受控地转动以使得其不同区域与除湿风道(N1)的出风口相对。
  19. 根据权利要求12所述的清洁设备,其特征在于,所述抽吸装置包含风机机壳,所述风机机壳具有排湿风道(Q1)和冷却风道(Q2);所述排湿风道(Q1)的出风段(Q12)包含供风直接流动至排湿风口(6E2)的第一风段(Q121)、以及引导偏离第一风段(Q121)的风回流至第一风段(Q121)的第二风段(Q122),所述第二风段(Q122)呈弧形状。
  20. 根据权利要求19所述的风机,其特征在于,所述风机机壳包含内壳组件(6A)和外壳组件(6B),所述外壳组件(6B)具有容置所述内壳组件(6A)的内腔;所述排湿风道(Q1)的进风段(Q11)位于内壳组件(6A),所述排湿风道(Q1)的出风段(Q12)位于外壳组件(6B),所述内壳组件(6A)和外壳组件(6B)之间且连通所述排湿风道(Q1)的进风段(Q11)和出风段(Q12)的过渡风段(Q13)。
  21. 根据权利要求12所述的风机,其特征在于,所述风机机壳包含内壳组件(6A)和外壳组件(6B),所述外壳组件(6B)具有容置所述内壳组件(6A)的内腔;所述冷却风道(Q2)的进风段(Q21)位于外壳组件(6B),所述冷却风道(Q2)的出风段(Q22)位于内壳组件(6A)。
  22. 根据权利要求19至21任一项所述的风机,其特征在于,所述冷却风道(Q2)的出风段(Q22)连通所述排湿风道(Q1)的进风段(Q11)。
  23. 根据权利要求20或21所述的风机,其特征在于,所述内壳组件(6A)包含第一内壳(6C)和第二内壳(6D);所述第一内壳(6C)具有安装排湿风扇的第一腔部(P1)和安装冷却风扇的第二腔部(P2),所述第一腔部(P1)位于所述第二腔部(P2)下侧;所述第二内壳(6D)套接于所述第一内壳(6C)的下侧,所述冷却风道(Q2)的出风段(Q22)的末段位于第一内壳(6C)的外侧壁和第二内壳(6D)的内侧壁之间。
  24. 根据权利要求20或21所述的风机,其特征在于,所述外壳组件(6B)包含第一外壳(6E)、第二外壳(6F)和外壳盖(6G),所述第一外壳(6E)安装于所述第二外壳(6F)的上侧且其间形成容置所述内壳组件(6A)的容腔,所述外壳盖(6G)安装于所述第一外壳(6E)的上侧且其间形成所述排湿风道(Q1)的出风段(Q12)。
  25. 根据权利要求24所述的风机,其特征在于,所述外壳盖(6G)和所述第一外壳(6E)之间设置有密封垫(6H)。
PCT/CN2021/082431 2021-01-05 2021-03-23 一种清洁设备用除湿托盘和清洁设备 WO2022147904A1 (zh)

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