CN107101306A - Humidifying and purifying device - Google Patents

Humidifying and purifying device Download PDF

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Publication number
CN107101306A
CN107101306A CN201610996882.0A CN201610996882A CN107101306A CN 107101306 A CN107101306 A CN 107101306A CN 201610996882 A CN201610996882 A CN 201610996882A CN 107101306 A CN107101306 A CN 107101306A
Authority
CN
China
Prior art keywords
water
tank
main body
humidifying
housing
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
CN201610996882.0A
Other languages
Chinese (zh)
Inventor
孙常赫
李晶雨
李英具
郑云敞
郑敞旭
金泰润
崔智恩
李建荣
李钟洙
李庆浩
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
LG Electronics Inc
Original Assignee
LG Electronics Inc
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 KR1020160037235A external-priority patent/KR20170051142A/en
Application filed by LG Electronics Inc filed Critical LG Electronics Inc
Priority to CN202111246314.6A priority Critical patent/CN113959027A/en
Publication of CN107101306A publication Critical patent/CN107101306A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/02Air-humidification, e.g. cooling by humidification by evaporation of water in the air
    • F24F6/06Air-humidification, e.g. cooling by humidification by evaporation of water in the air using moving unheated wet elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/28Arrangement or mounting of filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/12Air-humidification, e.g. cooling by humidification by forming water dispersions in the air
    • F24F6/16Air-humidification, e.g. cooling by humidification by forming water dispersions in the air using rotating elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/117Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering using wet filtering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/80Self-contained air purifiers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/52Indication arrangements, e.g. displays
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F2006/003Air-humidification, e.g. cooling by humidification using a decorative fountain
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F2006/008Air-humidifier with water reservoir
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/20Casings or covers
    • F24F2013/205Mounting a ventilator fan therein

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Dispersion Chemistry (AREA)
  • Air Humidification (AREA)

Abstract

The invention provides a humidifying and purifying device, which comprises: a water tank for storing water; a watering case disposed in the water tank, for transmitting and receiving a rotation force of a watering motor to rotate, sucking water of the water tank into the water tank when the watering case rotates, and spraying the pumped water after pumping the sucked water to an upper side; and a leveler disposed inside the water tank and protruding into the water tank; the leveler creates resistance with water rotating in a direction as the watering housing rotates. The leveler of the present invention generates resistance with water rotating in one direction in the water tank, thereby having an advantage of making the height of water in the water tank uniform.

Description

Humidifying and purifying device
Technical field
The present invention relates to humidifying and purifying device.
Background technology
Conditioner have for control the air conditioner of the temperature of air, for removing the impurity of air with keep purification The air purifier of degree, the humidifier for providing moisture into air, dehumidifier for removing the moisture in air etc..
Existing humidifier is divided into:The vibration-type humidifier for making water atomization in jolting plate and it spuing into air; And carry out the nature evaporation type humidifier of natural evaporation in humidifying filter.
The nature evaporation type humidifier is divided into:Using driving force rotating circular disk, the aerial disc surfaces of water are entered The disc type humidifier of row natural evaporation;Adding for natural evaporation is carried out because of the air of flowing in the humidification medium being soaked in water Wet filter type humidifier.
Existing humidifier is in humidification, and the part in the air of flowing is filtered in the filter.But, by In existing humidifier its major function be humidification function, there are purification air function it is weaker the problem of.
Also, existing humidifier is using the structure of the additional filtering function in humidification, therefore, it is impossible to only for sky Gas filters and is acted its.
Therefore, it there are in existing humidifier in the state of humidity is high, when user needs to carry out air cleaning The problem of by humidification is implemented.
The content of the invention
It is an object of the invention to provide a kind of humidifying and purifying device, humidification function and air-cleaning function can be made independent Ground is acted.
It is an object of the invention to provide a kind of humidifying and purifying device, user can by the water droplet formed in visual main body Intuitively confirm the state that humidification is carried out.
It is an object of the invention to provide a kind of humidifying and purifying device, resistance is produced by the water with being rotated in tank Power, can be such that water highly reaches uniformly.
It is an object of the invention to provide a kind of humidifying and purifying device, can by the water of the madial wall rotation along tank to Central side is guided.
The purpose of invention is not limited to the purpose mentioned above arrived, and those skilled in the art can pass through following note Carry the other purposes for being expressly understood that and not being mentioned to.
The humidifying and purifying device of the present invention, wherein, including:Tank, for storing water;Water housing, configures in the water Inside groove, the revolving force that water motor is poured in transmission reception is rotated, when being rotated, and the water of the tank is sucked into inside, After the water of suction is pumped up water to upside, the water pumped up water is sprayed;And leveller, configure in the tank Portion, protrudes to the inside of the tank;When the housing that waters is rotated, the leveller and the water rotated towards a direction Produce resistance.
The leveller is configurable on the inner bottom surface of the tank.
The leveller can form gradient in the inner bottom surface of the tank.
When the housing that waters is rotated, the leveller can guide in the outside of water from the tank to inner side.
The leveller is configurable on the internal side wall of the tank.
The leveller can be convexly formed in the internal side wall of the tank to inner side.
The leveller may include the muscle that the internal side wall in the tank is protruded to inner side.
The leveller may include the muscle that the inner bottom surface in the tank is protruded to upside.
The leveller alongst can extend to be formed, and be formed as straight line or arc shape.
The housing that waters can mutually separate with the inner bottom surface of the tank and form suction interval, and the leveller is by water To suction interval guiding.
The leveller may include to form the movement-oriented part in the inner bottom surface of the tank, the movement-oriented part bag Include:First inclined plane, with being configured in the way of the inclined bottom surface, to be formed towards the flow direction of water;Second inclined plane, with The mode of the inclined bottom surface is configured, and court is formed in an inclined manner with the first inclined plane opposite direction;Border, will be described First inclined plane is connected with second inclined plane.
The inclination angle of first inclined plane is smaller than the inclination angle of second inclined plane.
The inner side of the movement-oriented part can mutually be separated with the housing that waters, the outside of the movement-oriented part with it is described The side wall of tank is mutually separated.
The movement-oriented part may be configured with it is multiple, the movement-oriented part on the basis of the housing that waters circumferentially Direction is configured, and each described movement-oriented part is mutually separated.
The housing that waters can mutually separate with the inner bottom surface of the tank and form suction interval, the movement-oriented part Higher position is located at interval at than the suction.
The movement-oriented part alongst can extend to be formed, and be formed as straight line or arc shape.
One kind for having the effect that of humidifying and purifying device of the present invention or its more than.
Firstth, leveller and the water rotated towards a direction in tank produces resistance, hereby it is possible to make the water in tank high Degree reaches uniform.
Secondth, leveller will can be guided along the Shui Xiang centers of the wall flow of tank.
3rd, because the water height tolerance in tank is reached minimum by leveller, the water stored in the sink is in few water In the case of, it can also realize and effectively water.
The effect of the present invention is not limited to the effect mentioned above arrived, and those skilled in the art can be from claim The record of book is expressly understood that other effects not being mentioned to.
Brief description of the drawings
Fig. 1 is the stereogram of the humidifying and purifying device of the first embodiment of the present invention.
Fig. 2 is Fig. 1 exploded perspective view.
Fig. 3 is Fig. 1 decomposition front view.
Fig. 4 is the profile splitted along Fig. 3 line B-B.
Fig. 5 is the schematic diagram of the air flow for the humidifying and purifying device for showing the first embodiment of the present invention.
Fig. 6 is the stereogram of the air cleaning module shown in Fig. 2 as viewed from downside.
Fig. 7 is the front view of the air cleaning module shown in Fig. 2.
Fig. 8 is the profile splitted along Fig. 7 line A-A.
Fig. 9 is the left side view of the air cleaning module shown in Fig. 2.
Figure 10 is the profile splitted along Fig. 9 line B-B.
Figure 11 is the exploded perspective view that sink mounts are decomposed from Fig. 6.
Stereograms of the Figure 12 as viewed from the upside of Figure 11.
Figure 13 is Figure 11 upward view.
Figure 14 is the profile splitted along Figure 13 line B-B.
Figure 15 is Figure 14 A enlarged drawing.
Figure 16 is the enlarged drawing of the D shown in Fig. 8.
Figure 17 is the enlarged drawing of the E shown in Fig. 8.
Figure 18 is the enlarged drawing of the G shown in Fig. 8.
Figure 19 is the profile that the L-L lines shown in Figure 10 are splitted.
Figure 20 is the schematic diagram for the leveller for showing the second embodiment of the present invention.
Figure 21 is the schematic diagram for the leveller for showing the third embodiment of the present invention.
Figure 22 is the schematic diagram for the leveller for showing the fourth embodiment of the present invention.
Figure 23 is Figure 22 orthogonal view.
Figure 24 is the schematic diagram for the movement-oriented part for showing the fifth embodiment of the present invention.
The explanation of reference
10:Filter assemblies;20:Blowing unit;300:Tank;400:Pour water unit;51:Tank humidifies medium;55:Tell Go out to humidify medium;100:Air cleaning module;110:Matrix;120:Upper main body;130:Lower main body;150:Blowing fan housing; 160:Display module;200:Air cleaning module;210:Visual main body;230:Cap assembly;260:Connector
Embodiment
Advantages of the present invention, feature and for realizing that its method can be by referring to accompanying drawing and the embodiment being described in detail later more Plus clearly.But, the present invention is not limited to embodiments disclosed below, but can be realized by variform, this implementation Example is merely to more completely disclose the present invention, so that the those of ordinary skill of the technical field belonging to the present invention is more completely The scope of the present invention is pointed out, the present invention is only defined by the scope of claims.Throughout the specification, identical accompanying drawing Mark represents identical structural detail.
Hereinafter, embodiments of the invention are described in detail referring to the drawings.
Fig. 1 is the stereogram of the humidifying and purifying device of the first embodiment of the present invention, and Fig. 2 is Fig. 1 exploded perspective view, figure 3 be Fig. 1 decomposition front view, and Fig. 4 is the profile splitted along Fig. 3 line B-B, and Fig. 5 is to show that the first of the present invention implements The schematic diagram of the air flow of the humidifying and purifying device of example.
The humidifying and purifying device of the present embodiment includes:Air cleaner module 100 (air clean module);And place Air cleaning module 200 (air wash module) in the upside of air cleaner module 100.
Filtered after the suction of air cleaner module 100 extraneous air, air filtering will be crossed and be supplied to the air clear Mold cleaning block 200.The air cleaning module 200 receives the humidification crossed air filtering and implement offer moisture, by humidifying air To outside discharge.
The air cleaning module 200 includes the tank 300 of storage water.When isolating the air cleaning module 200, The tank 300 can be separated from the air cleaner module 100.The air cleaning module 200 is placed on air cleaner The top of module 100.
User can isolate the air cleaning module 200, and the air cleaning to isolating from air cleaner module 100 Module 200 is cleaned.User can clean to the inside of air cleaner module 100 for isolating air cleaning module 200. In the case of isolating the air cleaning module 200, the top user oriented of the air cleaner module 100 is opened.It is described Air cleaner module 100 can be cleaned after filter assemblies 10 described later are individually separated out.
User can be supplied water to the air cleaning module 200.Water supply stream is formed with the air cleaning module 200 Road, so as to be supplied water externally to the tank 300.
The water supply stream is configured to be supplied water to the tank at any time.For example, in the air cleaning mould In the case of in the action of block 200, it can also be supplied water by water supply stream.For example, being combined in the air cleaning module 200 In the state of air cleaner module 100, it can also be supplied water by water supply stream.For example, in the air cleaning module 200 in the state of the separation of air cleaner module 100, can also be supplied water by water supply stream.
The air cleaner module 100 is connected with air cleaning module 200 by connecting stream 103.Due to the sky Gas cleaning module 200 is set in a detachable fashion, and the connection stream 103 is distributed in air cleaner module 100 and sky Gas cleaning module 200.
The connection stream that will be formed in the air cleaner module 100 is defined as cleaning connection stream 104, will be formed in institute The connection stream for stating air cleaning module 200 is defined as humidification connection stream 105.Only put in the air cleaning module 200 When being placed in the air cleaner module 100, the connection stream can be just set to be connected, and constitute the stream of air exactly.
The flowing of air for passing through in the air cleaner module 100 and air cleaning module 200 will be entered later The detailed description of row.
The structure of the air cleaner module 100 is described in more details as follows.
The air cleaner module 100 includes:Matrix 110, is formed with suction passage 101 and cleaning connection stream 104;Cross Filter module 10, is set in a detachable fashion relative to described matrix 110, and the air of flowing is implemented to filter;Blowing unit 20, configure inside described matrix 110, flowed air.
Extraneous air is sucked inside described matrix 110 by the suction passage 101.Stream is connected by the cleaning 104 will be supplied to the air cleaning module 200 in the filter assemblies 10 by filtered air.
In the present embodiment, described matrix 110 is made up of two parts.
Described matrix 110 includes:Lower main body 130, for forming profile, suction inlet 111 is formed with downside;Upper main body 120, for forming profile, it is combined with the lower upside of main body 130.
At least one party in the air cleaner module 100 or air cleaning module 200, which may be configured with, to be used for user The display module 160 of display action state.In the present embodiment, it is provided with and is humidified for being shown to user in described matrix 110 The display module 160 of the operating state of purifier.
The upper main body 120 and lower main body 130 are assembled in an integrated manner.With the present embodiment differently, on described Main body 120 and lower main body 130 can be made as one.
The air cleaning module 200 is placed on the upside of the upper main body 120 in a detachable fashion, and supports described The loading of air cleaning module 200.
The upper main body 120, which is provided, can stably place the structure of the tank 300.The upper main body 120 is described The structure that the tank 300 of air cleaning module 200 can be separated.The upper main body 120 is the structure of depression, so as to hold Receive the tank 300.
The upper main body 120 is formed to the inner recess of described matrix 110, can be to the inner containment institute of described matrix 110 Tank 300 is stated, hereby it is possible to which the more downward side of the center of gravity of humidifying and purifying device is moved.
The humidifying and purifying device of the present embodiment is clear by the air by the input power of air cleaner module 100 Clean module 100 provides power supply to the air cleaning module 200.Because the air cleaning module 200 is relative to the sky The separable structure of gas cleaning module 100, the air cleaner module 100 and air cleaning module 200 are provided with separable Electric power-feeding structure.
Because the air cleaner module 100 and air cleaning module 200 are realized by the upper main body 120, in institute State main body 120 and configure the connector 260 that the oriented air cleaning module 200 provides power supply.Match somebody with somebody in the cap assembly 230 It is equipped with the top connector 270 being connected in a detachable fashion with the connector 260.Placing the cap assembly 230 When, the top connector 270 is placed on the upside of connector 260.The cap assembly 230 passes through the top connector 270 Receive the power supply that the connector 260 is supplied.
The filter assemblies 10 are assembled in described matrix 110 in removably mode.
The filter assemblies 10 provide filtering stream 102, and extraneous air is implemented to filter.
The filter assemblies 10 have the structure that can be loaded and unloaded in the horizontal direction relative to described matrix 110.It is described Filter assemblies 10 in the way of being intersected along the flow direction of the upstream air of vertical direction by with being configured.It is described Filter assemblies 10 are configured along the horizontal direction orthogonal with the mobile phase of the air of side flowing on the side under.
The filter assemblies 10 can enter line slip relative to described matrix 110 along horizontal direction.
The blowing unit 20 generates the flowing of air.The blowing unit 20 is configured inside described matrix 110, makes sky Gas under flow on the side by side.
The blowing unit 20 is made up of blowing fan housing 150, air supply motor 22 and blowing fan 24.In the present embodiment In, the air supply motor 22 is configured in upside, and blowing fan 24 is configured in downside.
The blowing fan housing 150 is configured inside described matrix 110.The blowing fan housing 150 provides the sky of flowing The stream of gas.The air supply motor 22 and blowing fan 24 are configured with the blowing fan housing 150.
The blowing fan housing 150 is configured in the upside of filter assemblies 10, configuration downside of main body 120 on described.
The blowing fan 24 is centrifugal fan, and it is after downside suction air, towards radial outside discharge air.It is described to send Fan 24 is towards radial outside and upside discharge air.The outboard end of the blowing fan 24 is formed along radial direction upside.
In order to which the contact with the air of flowing reaches minimum, the air supply motor 22 is configured in the upper of the blowing fan 24 Side.The air supply motor 22 is not based on the air flow circuit of the blowing fan 24.
The air cleaning module 200 includes:Tank 300, stores the water for humidification, is placed in a detachable fashion The air cleaner module 100;Water unit 400 is poured, is configured inside the tank 300, the water of the tank is sprayed;Humidify matchmaker Jie 50, the water-soaked that water unit 400 sprays is poured by described, and moisture is provided to the air of flowing;Visual main body 210, with the water Groove 300 is combined, by it can be seen that internal material is formed;Cap assembly 230, is placed on described visual in a detachable fashion Main body 210, the discharge stream 107 for being formed with discharge air and the water supply stream 109 supplied water.
The tank 300 is placed on the upper main body 120.The water unit 400 that pours is configured inside the tank 300, Rotated inside the tank 300.
It is described to pour the water that water unit 400 is sucked inside the tank, the water of suction is pumped up water to upside, and will be raised The water of water sprays towards radial outside.The water unit 400 that pours includes watering housing 800, it is described water housing 800 to its inside inhale Enter water, after the water being inhaled into is pumped up water to upside, it is sprayed towards radial outside.
Medium 50 is humidified described in the water-soaked of the injection of housing 800 from described water.From the water of the injection of housing 800 of watering Can be towards at least one party's injection in the visual main body 210 or humidification medium 50.
In the present embodiment, the housing 800 that waters is towards the medial surface injection water of the visual main body 210, injection Wander downwards inner side of the water along the visual main body 210.Formed in the medial surface of the visual main body 210 with water droplet form The drop formed, user can see the drop by the visual main body 210.
The visual main body 210 is combined with the tank 300, and positioned at the upside of the tank 300.The visual master At least a portion of body 210 is formed by the material for being capable of perspective inside.
The drop formed on the medial surface of visual main body 210 can show the form for forming raindrop.From the visual master The drop that body 210 is wandered soaks the humidification medium 50.
Display module 160 is can configure in the outside of the visual main body 210.The display module 160 can be with visual main body A side in 210 or upper main bodys 120 is combined.In the present embodiment, the display module 160 configures main body 120 on described.
When placing the air cleaning module 200, lateral surface and the display module 160 of the visual main body 210 Mutually it is close to.At least a portion in the surface of the display module 160 is formed by the material of reflected light.
The drop formed in the visual main body 210 will also project to the surface of the display module 160.Thus, user This movement of drop can be observed at two in the visual main body 210 and display module 160.
The tank 300 is formed with the tank inflow entrance 31 of air dredging.The sky supplied from the air cleaner module 100 Gas is by the tank inflow entrance 31 to the internal flow of air cleaning module 200.
The humidification medium 50 includes:Tank humidifies medium 51, and configuration is in connection stream 103;And the humidification medium that spues 55, configure in discharge stream 107.
The tank humidification medium 51 is configured on connection stream 103, and in the present embodiment, the tank humidifies medium 51 Configure the tank inflow entrance 31 in tank 300.The tank humidification medium 51 is located at the inner side of tank inflow entrance 31, to passing through institute The air for stating tank inflow entrance 31 provides humidification.
Tank humidification medium 51 covers the tank inflow entrance 31, air through the tank humidify medium 51 and to The internal flow of tank 300.
The humidification medium 55 that spues is configured on discharge stream 107.The humidification medium 55 that spues is configurable on visually At least one party in main body 210 or cap assembly 230.In the present embodiment, described spue is configured in the cap assembly 230 to add Wet medium 55.
The humidification medium 55 that spues covers the discharge stream 107, air through it is described spue humidification medium 55 and to Cap assembly 230 is outer to be flowed.
Hereinafter, the flowing referring to the drawings to air is illustrated.
When blowing unit 20 is acted, extraneous air is by forming the suction passage 101 of the downside in matrix 110 Flow into inside matrix 110.The upward side of air sucked by the suction passage 101 is moved, and passes through air in the process Cleaning module 100 and air cleaning module 200, it is outside by the discharge stream 107 for forming the upside in air cleaning module 200 Portion spues.
The air of the suction passage 101 is sucked by the filtering stream 102 of filter assemblies 10, is passing through the filtering During stream 102, the filter assemblies 10 are filtered to extraneous air.
Flowed by the air of the filtering stream 102 by blowing unit 20 to connection stream 103.Pass through the filtering After the air of stream 102 is pressed by blowing fan 24, flowed along blowing fan housing 150 to connection stream 103.
The blowing unit 20 is configured after filtering stream 102, therefore, it is possible to make the impurity such as dust be attached to described send The situation of fan 24 reaches at least.
In the case of before the blowing unit 20 is configured at filtering stream 102, impurity is attached on blowing fan 24, and by This causes cleaning period to shorten.
Also, because blowing unit 20 is configured before humidification stream 106, moisture can be made to be attached to the surface of blowing fan 24 Situation reach at least.In the case of being pasted with the moisture of humidification on the surface of blowing fan 24, occur the feelings such as impurity is sticky or mouldy The possibility of condition is larger.
Because the blowing unit 20 is configured between filtering stream 102 and humidification stream 106, it can make what impurity was attached Situation reaches at least, and can suitably provide the flowing pressure of air.
The connection stream 103 connects stream 104 by the cleaning formed in air cleaner module 100 and forms clear in air The humidification connection stream 105 of mold cleaning block 200 is constituted.
When the air cleaning module 200 is in the state for being placed on main body 120, the cleaning connects stream 104 It will be connected with humidification connection stream 105.When the air cleaning module 200 is in separated state, the cleaning connects Connect stream 104 and humidification connection stream 105 exposes to outside.
The cleaning connection stream 104 may be formed at main body 120, and humidification connection stream 105 is formed in air cleaning mould Block 200.
Cleaning connection stream 104 and humidification the connection stream 105 is formed as pipeline form, to form clear and definite stream Road.In the present embodiment, connection stream 103 be dispersed to main body 120 a part of works and one of the tank 300 Separation structure thing, when the air cleaning module 200 is positioned over main body 120, will form the connection stream 103.
In the present embodiment, the upper main body 120 provides the outboard structure thing of the connection stream 103, the tank 300 The inside structure thing of the connection stream 103 is provided.
That is, the connection stream 103 is formed between the outside of the tank 300 and the inner side of upper main body 120.Thus, The connection stream 103 is formed between tank 300 and upper main body 120.The tank 300 forms the connection stream 103 The wall of inner side, the upper main body 120 forms the wall in the outside of the connection stream 103.
By being distributed the structure of connection stream 103 in this wise, the works to form stream can be made to reach at least.Institute Connection stream 103 is stated to be formed along above-below direction.
Flowed by the air of the connection stream 103 to humidification stream 106.The humidification stream 106 is for supplying The interval of moisture.In the present embodiment, the humidification stream 106 humidifies medium 51 untill the humidification medium 55 that spues from tank.
With medium 51 is humidified by tank in connection stream 103, moisture can be supplied to air in the process.This Outside, it is provided with inside the tank 300 from described and pours water droplet and the moisture from the evaporation of tank 300 that water unit 400 disperses.
With medium 55 is humidified by described spue inside the tank 300, moisture can be supplied again in the process.
In the humidification stream 106, medium 51, the inside of tank 300 and the humidification matchmaker that spues are humidified by the tank Be situated between 55 supply moisture.
Exposed by the air for spuing humidification medium 55 by discharge stream 107 to outside.
Fig. 6 is the stereogram of the air cleaning module shown in Fig. 2 as viewed from downside, and Fig. 7 is the air cleaning mould shown in Fig. 2 The front view of block, Fig. 8 is the profile splitted along Fig. 7 line A-A, and Fig. 9 is that the left side of the air cleaning module shown in Fig. 2 is regarded Figure, Figure 10 is the profile splitted along Fig. 9 line B-B, and Figure 11 is the exploded perspective view that sink mounts are decomposed from Fig. 6, figure 12 stereogram as viewed from the upside of Figure 11, Figure 13 is Figure 11 upward view, and Figure 14 is along cuing open that Figure 13 line B-B is splitted Face figure, Figure 15 is Figure 14 A enlarged drawing.
Referring to the drawings, the tank 300 includes:Sink main body 320, for storing water;Sink mounts 340, with the water The bottom of groove body 320 is combined;Tank inflow entrance 31, is formed in the side of the sink main body 320;Cylinder 35, configuration exists The inner side of the sink main body 320, and be convexly formed to upside;Sink main body extension 380, in the sink main body 320 Extend to be formed to upside, be combined with the visual main body 210;Buoy shell 330, is configured in the sink main body 320 Portion, buoy 332 (floater) is moved in the buoy shell 330 along above-below direction.
In the present embodiment, the sink main body 320 is formed as the cylindrical shape of its opening-like state in upside.With the present embodiment Differently, the sink main body 320 is formed as various shapes.
Cylinder 35 is formed with the sink main body 320, transmission module 600 described later is configured inside the cylinder 35. The water that the cylinder 35 is stored for cutting off or suppressing in sink main body 320 is in contact with transmission module 600.
The sink mounts 340 are combined with the outside bottom surface of sink main body 320.In the sink mounts 340 and tank Defined space is formed between main body 320.Determine in the space that will be formed between the sink main body 320 and sink mounts 340 Justice is sink mounts space 311.The sink mounts space 311 keeps closed state with outside, so as to avoid water penetration.
The sink main body extension 380 extends to be formed in the tank 300 to upside.The sink main body extension 380 are used to form the tank inflow entrance 31.The tank inflow entrance 31 is formed between the sink main body extension 380.
The tank inflow entrance 31 forms the side in sink main body 320.The tank inflow entrance 31 is relative to tank master Body 320 is formed in 360 degree of omnidirectional modes.The tank inflow entrance 31 is connected with being connected stream 103.
The sink main body extension 380 is by the water wandered from the medial surface of the visual main body 210 to the tank 300 Inside is guided.By guiding the water wandered from the visual main body 210, waterfall noise can be made to reach minimum.
The sink main body extension 380 is combined with the lower end of visual main body 210.Extend in multiple sink main bodies At least one in portion 380 is configured with the tank joint portion 381 being combined with the visual main body 210.The tank joint portion 381 configurations are in the outside of sink main body extension 380., can by the combination member being combined with the tank joint portion 381 It is combined depending on main body 210 and tank 300.
Cylinder 35 is configured with the sink main body 320.In the present embodiment, the cylinder 35 is formed as conical form. The housing 800 that waters is provided with the way of coating the cylinder 35.In the present embodiment, the cylinder 35 and the tank Main body 320 is made in an integrated manner.The cylinder 35 is in the bottom surface of the sink main body 320 to upside projectedly shape Into.
The sink main body 320 has been internally formed buoy shell 330 at it.It is configured with inside the buoy shell 330 Buoy 332.The buoy 332 is formed by the material of the light specific gravity than water, and according to the water level stored in tank 300, it is described Moved inside buoy shell 330 along above-below direction.
The buoy shell 330 is arranged on the madial wall of the sink main body 320.The buoy shell 330 is above and below Direction extends longlyer.The buoy shell 330, which has, can make the structure that the water of the tank 300 is flowed into.
The lower end 331 of the buoy shell 330 is convexly formed in the bottom surface of the sink main body 320 to downside.Will be to The definition space to be formed is protruded for buoy receiving space 333 in the downside of the sink main body 320.
When buoy 332 is located at the buoy receiving space 333, there is no the state of water in the tank 300.
The buoy 332 is a part for level sensor.Permanent magnet 335 is configured with the buoy 332.The water Level sensor includes being used to detect the Magnetic Sensor (not shown) of the magnetic force of the permanent magnet 335.The magnetic sensor configuration In upper main body 120.
Thus, the level sensor can detect the water level of the tank 300 in a non contact fashion.Especially since The tank 300 has separable structure, preferably sensed water level in a non contact fashion.Detected using the level sensor The signal gone out can also judge the tank 300 placement whether.For example, detecting the permanent magnet in the Magnetic Sensor When, control unit (not shown) can determine whether out to be placed with tank 300.
The sink mounts 340 are included in the substrate 342 (base boarder) protruded to upside bottom surface, in the substrate 342 are formed with the groove 343 inserted for the lower end 331 of the buoy shell 330.In lower end 331 described in the sandwiched of groove 343.It is logical Cross the groove 343 and expose the lower end 331.The lower end 331 of the buoy shell 330 exposed by the groove 343 can make described The detection of Magnetic Sensor becomes easy.
In the case of being coated in the lower end 331 by substrate 342, the magnetic field signal of permanent magnet will be reduced, so as to It can cause error detection.
Lower end 331 is exposed by the groove 343, can easily detect to be located at the buoy 332 inside the lower end 331 Permanent magnet.
The structure of the intensity for improving tank is configured with the sink main body 320 and sink mounts 340.The tank 300 are served not only as beyond the space use of storage water, in addition it is also necessary to which water unit 400 is poured in support securely, suppress to pour water unit accordingly The vibrations produced in 400.
In the case where pouring water unit 400 described in can not being fully supported, the bottom surface 301 of sink main body 320 will become Shape is rocked, so as to produce vibrations.The vibrations produced in the tank 300 will diffuse into total thing, so as to add to whole Wet purification device causes bad influence.
To make such situation reach at least, it is configured with sink main body 320 and sink mounts 340 for improving intensity Structure.
Formation is formed in the bottom surface of the cylinder 35 of the sink main body 320 in open shape.By in described in open shape The bottom surface of cylinder 35 is referred to as sink main body insert port 329.Bear box described later is inserted by the sink main body insert port 329 650.The bear box 650 is the structure of transmission module 600.
Base insert port 349 is formed with the inner side of the sink mounts 340.The base insert port 349 is configured in institute State the downside of sink main body insert port 329.The base insert port 349 is located at the downside of bear box 650.
Expose the bottom of the bear box 650 by the base insert port 349.Pass through the base insert port 349 Insert the first hookup 610 described later.
The bear box 650 includes:Bear box main body 652, is inserted inside the cylinder 35;Casing ledge 654, shape Into the lower end in the bear box main body 652, mutually it is close to the bottom surface of the sink main body 320.
The opening-like state of lower aspect of the bear box 650 is formed.By the opening-like state of the bear box 650 Bottom surface is referred to as bear box insert port 659.The second hookup 620 described later is configured in the bear box insert port 659.
The bear box insert port 659 and base insert port 349 are interconnected.
The base insert port 349 is located at the downside of bear box insert port 659.Pass through the base insert port 349 Expose second hookup 620.First hookup 610 described later can be inserted into by the base insert port 349, and with it is described Second hookup 620 is combined in a detachable fashion.
The casing ledge 654 is formed along radial outside.The downside bottom of the casing ledge 654 and sink main body 320 Mutually it is close in face.When as viewed from vertical view, the casing ledge 654 is formed more widerly than the plane of the cylinder 35.
Cylinder 35 and casing ledge 654 (housing flange) configuration is in concentric shafts.
The casing ledge 654 is combined by combination member 651 with the tank 300.Combination member 651 can run through institute State casing ledge 654 and be combined with the sink main body 320.
With the first combination member 651 for fixing the bear box 650 additionally, it is configured with for fixing tank master The combination member 655 of body 320 and sink mounts 340.
The first combination member 651 will be defined as fixing the combination member 651 of the bear box 650, will be used for solid The combination member 655 of the fixed sink main body 320 and sink mounts 340 is defined as the second combination member 655.
In the present embodiment, first combination member 651 disposably combine sink mounts 340, casing ledge 654 with And sink main body 320.Because first combination member 651 is in combination with three structures, can more it firmly fix described Bear box 650.Also, because first combination member 651 disposably combines three structures, it is possible to increase the tank 300 bottom intensity.
In order to set first combination member 651, it is respectively formed with the sink main body 320 and sink mounts 340 Joint portion 321,341.
Formation is formed as projection (boss) form in the main body joint portion 321 of the sink main body 320, is formed in the water The base joint portion 341 of bottom land seat 340 is formed as pore morphology.
The casing ledge 654 is formed with the flange joint portion 653 run through for first combination member 651.It is described convex Edge joint portion 653 is pore morphology.
First combination member 651 is screw, and first combination member 651 runs through the He of base joint portion 341 Casing ledge 654 is simultaneously mutually fixed with main body joint portion 321.Side is combined first combination member 651 on the side under.
First combination member 651 and joint portion 341,653,321 are respectively formed with multiple.Described first combines structure Part 651 is configured with least two, in the present embodiment, and it has four radial centered on power transmission shaft 640 to be configured.
When as viewed from vertical view, first combination member 651 is matched somebody with somebody at equal intervals centered on power transmission shaft 640 by 90 degree Put.
With the first combination member 651 for fixing the bear box 650 additionally, it is configured with for fixing tank master The combination member 655 of body 320 and sink mounts 340.
The first combination member 651 will be defined as the first combination member 651 for fixing the bear box 650, will used The second combination member 655 is defined as in the combination member 655 of the fixed sink main body 320 and sink mounts 340.
Sink main body 320 and sink mounts 340 are combined by the combination member 655, so as to more improve the tank 300 intensity.
Second combination member 655 is used to sink main body 320 and sink mounts 340 being combined.With the present embodiment not With ground, combination member can be replaced and sink main body and sink mounts is combined by the mutual screens based on grab etc.. In the case of being combined by mutual screens, small interval will be formed, thus may be more fragile to vibrations.In the present embodiment In, in order to prevent this from occurring, sink main body 320 is mutually tied with sink mounts 340 by the second combination member 655 Close.
Second combination member 655 is combined in the bottom of sink mounts 340, through the sink mounts 340 simultaneously It is combined with sink main body 320.It is formed with what is combined for second combination member 655 in the bottom surface of the sink main body 320 Joint portion 325.
The first joint portion 321 will be defined as with the joint portion 321 that first combination member 651 is combined, will with it is described The joint portion 325 that second combination member 655 is combined is defined as the second joint portion 325, will be formed in the sink mounts 340 Joint portion 341 is defined as base joint portion 341.
Second joint portion 325 is convexly formed in the bottom surface of the sink main body 320 to downside.Described second combines Portion 325 is formed as projection shape.
Second joint portion 325 is radial centered on power transmission shaft 640 to be configured.Second joint portion 325 Have multiple in the circumferential arrangement of power transmission shaft 640, its each by being configured at equal intervals.In the present embodiment, second joint portion 325 are configured with six centered on power transmission shaft 640 by 60 degree of intervals.
Except by second combination member 655 by sink mounts 340 be close to be fixed on the bottom surface of sink main body 320 with Outside, the sink mounts 340 are also made mutually to be close to casing ledge 654.
The flange support 348 for supporting the casing ledge 654 is formed with the sink mounts 340.It is described convex Edge support member 348 is convexly formed to upside.
The flange support 348 is formed on the periphery of base insert port 349.In the present embodiment, the flange support 348 are formed as circular along the base insert port 349.
The base joint portion 341 is configured with the outside of flange support 348.That is, in the flange support 348 In the state of supporting the bear box 650, the first combination member 651 is by sink mounts 340, casing ledge 654 and tank Main body 320 is combined.
In addition, being each configured with the muscle for improving intensity in the sink main body 320 and sink mounts 340.
The muscle formed to strengthen intensity in the sink main body 320 is referred to as main body reinforcement 350, water is will be formed in The muscle of bottom land seat 340 is referred to as base reinforcing ribs 355.
The main body reinforcement 350 is formed in the bottom surface 301 of sink main body 320.The main body reinforcement 350 is in tank master The bottom surface of body 320 is convexly formed to downside.
The main body reinforcement 350 includes:First reinforcement 352, is formed as radial on the basis of power transmission shaft 640;The Two reinforcements 354, are circumferentially formed on the basis of the power transmission shaft 640.
First reinforcement 352 extends formation from the sink main body insert port 329 untill edge.Described first adds Strengthening tendons 352 is radial be formed with it is multiple.
Second reinforcement 354 forms concentric circles in the sink main body insert port 329 towards radial outside.Described second Reinforcement 354 is configured with multiple in the way of constituting concentric circles towards radial outside.
The reinforcement 354 of first reinforcement 352 and second is formed in the way of intersecting.
By the reinforcement 354 of the first reinforcement 352 and second thickness of sink main body 320 can be made to reach minimum, And intensity can be also kept in the state of thickness is reached minimum.
The vibrations of bear box 650 can be made to tank 300 by the reinforcement 354 of the first reinforcement 352 and second Radial outside transmission situation reach at least.
Can reach the bias poured when water unit 400 is acted by the reinforcement 354 of the first reinforcement 352 and second It is minimum.Due to it is described pour water unit 400 along above-below direction it is longer extend and to be formed, strengthening the intensity of the bottom surface 301 of tank 300 In the case of, the bias for pouring the upper end of water unit 400 can be made to reach minimum.
Edge of the base reinforcing ribs 355 along sink mounts 340 is formed.
The groove 356 being recessed along above-below direction is formed with the sink mounts 340, is formed with the groove 356 described Base reinforcing ribs 355.
Edge of the groove 356 along the sink mounts 340 is formed.When as viewed from the bottom surface of the sink mounts 340, The formation of groove 356 closed curve.
The base reinforcing ribs 355 are configured with multiple along the groove 356.
In addition, being configured with the closing knot for suppressing water penetration between the sink main body 320 and sink mounts 340 Structure.
It is configured with the first pad 361 of the inside edge for closing the sink main body 320 and sink mounts 340 (packing) and for the second pad 362 of the outer ledge for closing the sink main body 320 and sink mounts 340.
First pad 361 cuts off water or moisture is flowed into by base insert port 349.Second pad 362 is cut off Water or moisture are flowed into by the outer ledge of the sink main body 320 and sink mounts 340.
It is configured with the first pad in order to set first pad 361 and groove 363 is set.First pad sets groove 363 at least one party that may be formed in flange support 348 or casing ledge 654.In the present embodiment, in casing ledge 654 Bottom surface be formed with the first pad set groove 363.First pad sets groove 363 to be formed along the periphery of base insert port 349 Closed curve.
It is described first pad set groove 363 to upside canyon topography into.It is convex in the flange support 348 and the housing When edge 654 is mutually close to, as the described first pad 361 is close to and closing is realized.
In addition, being also equipped with pad 365 between the casing ledge 654 and sink main body 320.The pad 365 In the upside of casing ledge 654.The pad 365 is used for sealing flume main body insert port 329.It is described to pad 365 along tank master The formation closed curve of body insert port 329.
In the present embodiment, the configuration of pad 365 is combining structure in the downside of sink main body 320 with reference to described first During part 651, it is close between bear box 650 and sink main body 320.The pad 365 preferably combines structure than first Part 651 or main body joint portion 321 are located at inner side.
In addition, being configured with the second pad in order to set second pad 362 and setting groove 364.
Second pad sets groove 364 to be configurable at least one party in sink main body 320 or sink mounts 340. In the present embodiment, it is formed on the sink mounts 340.It is described second pad set groove 364 to downside canyon topography into.
Second pad sets edge formation closed curve of the groove 364 along sink mounts 340.Second pad is set Groove 364 is formed by the muscle 367 protruded above sink mounts 340 to upside.
In the present embodiment, second pad sets groove 364 to be located at the upside of base reinforcing ribs 355.It is described being configured with The upside of groove 356 configuration second pad of base reinforcing ribs 355 sets groove 364.
That is, the pad of groove 356 and second for the base reinforcing ribs 355 sets the under type of groove more than 364 to be configured, The intensity that second pad sets groove 364 can also be strengthened accordingly.
Second pad sets groove 364 to be formed in the way of hiding the lower end 331 of the buoy shell 330.It is described floating The lower end 331 for marking housing 330 is located at the outside that the pad sets groove 364.
In addition, being provided with the viewer module 390 of light-permeable in the bottom surface of the tank 300.The viewer module 390 makes purple Outside line is passed through.
Body openings portion 326 is formed with the sink main body 320.Base openings are formed with the sink mounts 340 Portion 346.The base openings portion 346 is located at the downside of body openings portion 326.The body openings portion 326 and base openings Portion 346 is configured along above-below direction.
The viewer module 390 is configured between the sink main body 320 and sink mounts 340.The viewer module 390 are close between the sink main body 320 and sink mounts 340.
In the present embodiment, the viewer module 390 is combined with the bottom surface of sink main body 320, described for closing Body openings portion 326.
UV-module 190 for providing from ultraviolet to the viewer module 390 is configured in upper main body 120.From described The ultraviolet that UV-module 190 is produced passes through the viewer module 390 to the internal transmission of tank 300.Pass through the ultraviolet The water stored in tank 300 can be sterilized.
Under the turning effort of the housing 800 that waters, the water of the tank 300 is rotated towards side direction.
When the water of tank 300 is rotated, flow velocity and edge in the water of the distance rotation mutually close with the housing 800 that waters The flow velocity for the water of the madial wall rotation of sink main body 320 is different.
Leveller (leveler) is configured with the tank 300, the leveller is used for the water to being rotated towards side direction Height homogenized.The leveller is used for the vertical deviation for reducing the water of rotation.That is, leveller is used to make in outer sidespin The height of the water turned and the height of the water turned in interior sidespin reach minimum.
The leveller can guide the water rotated in the outside of tank 300 to inner side.The leveller configuration exists Inside tank 300.The leveller is configurable on bottom surface or the side wall of tank 300.The leveller can by the bottom surface of tank and Side wall is connected.
The leveller energetically produces sinuous flow to the water rotated towards side direction.The leveller is to equably flowing Water intentionally produces resistance.
In the present embodiment, the leveller is movement-oriented part 310.The stream to forming the bottom surface in tank 300 Lower moving guide 310 is illustrated.
The movement-oriented part for guiding the water of storage to the housing 800 that waters is configured with the bottom surface of the tank 300 310.The movement-oriented part 310 can in an integrated manner be made with the tank 300.In the present embodiment, the stream Lower moving guide 310 is integrally formed with sink main body 320.The movement-oriented part 310 is in the sink main body 320 Bottom surface is convexly formed to upside.
The bottom surface of water housing 800 and the tank 300 mutually separates and forms suction interval 801.In water level less than described During suction interval, the water unit 400 that pours will be without action.
The leveller plays effect when the water level of tank 300 is few water.
Few water be than 801 high water levels of the suction interval, and be lowered when the housing 800 that waters rotates and Than 801 low water levels of the suction interval.
When not being immersed in water in the lower end for watering housing 800, it will be unable to be pumped up water.
When the housing 800 that waters is in the state stopped, water level is can be by spray higher than the suction interval 801 The water level that loophole 410 is sprayed, but after the housing 800 that waters is rotated, water height may be had decreased below between suction Every 801.
Because, in the presence of the housing 800 that waters rotates, the outside of central water to tank 300 is laid particular stress on and carried out Rotation.
The movement-oriented part 310 is used for the weighting for suppressing such water.
When the water stored in the sink is few water, the movement-oriented part 310 can improve the suction of the housing 800 that waters Enter efficiency.
The movement-oriented part 310 forms gradient in the bottom surface of tank, and the side risen is provided to the water rotated along side Upward flowing.Also, the water of the movement-oriented part 310 guiding tank internal rotating is towards the housing 800 that waters.
The movement-oriented part 310 guides water in the outside of tank to inner side.
Outer lateral water housing 800 side guiding water of the movement-oriented part 310 in tank.
The movement-oriented part 310 can in an integrated manner be made with tank.With the present embodiment differently, it can make As being assembled after extra part.
The movement-oriented part 310 is by the water of the inner side edge flowing along tank 300 to the center watered residing for housing 800 Guide.The formation of movement-oriented part 310 and the minimum separation distances (5mm) for the housing that waters.The movement-oriented part 310 With the effect for improving few water efficiency, reducing noise, reducing vibrations.
The madial wall of the movement-oriented part 310 and the sink main body 320 is also mutually separated a predetermined distance.
The movement-oriented part 310 can be such that the flow velocity in tank reaches uniformly.Therefore, when as viewed from vertical view, flowing The angle formation that the lateral surface of the length direction of guide 310 and the housing 800 that waters is constituted is within 90 degree.
The movement-oriented part 310 includes the first inclined plane 312 and the second inclined plane 314.
First inclined plane 312 is formed along the flow direction of dampening.Rotation is met by first inclined plane 312 Water.The water of rotation rises along first inclined plane 312 to upside.First inclined plane 312 is by along in tank 300 The water of portion edge rotation is guided to the side of housing 800 of watering.
Second inclined plane 314 is formed towards the direction opposite with the first inclined plane 312.In first inclined plane 312 And second can be formed with the border 315 that water is crossed between inclined plane 314.When as viewed from vertical view, in the present embodiment, the side Boundary 315 can be configured along the direction that tangent line is constituted with the surface for the housing 800 that waters.
The movement-oriented part 310, which is used only one, can also play its effect.In the present embodiment, the movement-oriented part 310 are configured with two.
Then, illustrated to configuring the water unit 400 that pours inside tank 300.
The housing 800 that waters for pouring water unit 400 and making configuration inside tank 300 is rotated, and is watered by described The rotation of housing 800, the water of the internal reservoir of tank 300 is sprayed to the medial surface of visual main body 210.
The water unit 400 that pours provides structure for rotating the housing 800 that waters.The water unit 400 that pours is in institute State and also be provided with that the biography of power can be transmitted to the housing 800 that waters in the structure that tank 300 can be separated with upper main body 120 Dynamic model block 600.
The structure for pouring water unit 400 is described in more details as follows.
The water unit 400 that pours includes:Water housing 800, pour water motor 42, transmission module 600.
The water unit 400 that pours includes:Water housing 800, configures inside tank 300, is rotated with by tank 300 Water suction it is internal, the water of suction is pumped up water to upside, by the water pumped up water to outside discharge;Water motor 42 is poured, to described The housing 800 that waters provides revolving force;Transmission module 600, the housing that waters is passed to by the revolving force for pouring water motor 42 800。
It is described to water housing 800 after the water stored in tank 300 is pumped up water to upside, it is entered towards radial outside The structure of row injection.
It is described to pour water motor 42 to provide the structure for the revolving force for being used to rotate the housing 800 that waters.
The transmission module 600 is for the revolving force for pouring water motor 42 to be passed into the housing 800 that waters Structure.
The housing 800 that waters, pour water motor 42 and transmission module 600 and can be arranged at tank 300.In this situation Under, user also lifts in the lump when separating air cleaning module 200, it is necessary to which water motor 42 will be poured.Also, pouring water motor 42 In the case of being assembled in air cleaning module 200, when air cleaning module 200 is separated from air cleaner module 100, it is necessary to make Pouring the electric power-feeding structure of water motor 42 has the structure that can be separated.
Therefore, prompted in the present embodiment and configure the water motor 42 that pours of weight weight in upper main body 120, and only make to pour water hull The structure that body 800 and transmission module 600 are separated.Structure as described in the embodiment, can make the air that can be separated The weight of cleaning module 200 reaches minimum.
In the present embodiment, the structure of the housing 800 with water motor 42 is poured for that can be separated of watering.It is described to pour water hull Body 800 is configured inside air cleaning module 200, is poured water motor 42 and is configured inside air cleaner module 100.It is described in separation During air cleaning module 200, the housing 800 that waters together is separated with tank 300 from air cleaner module 100.
The biography is designed as in order to realize in the isolating construction for watering housing 800 and pouring water motor 42, the present embodiment Dynamic model block 600 has the structure that can be separated.
Then, transmission module is described in more details.
Figure 16 is the enlarged drawing of the D shown in Fig. 8, and Figure 17 is the enlarged drawing of the E shown in Fig. 8, and Figure 18 is the G shown in Fig. 8 Enlarged drawing, Figure 19 is the profile that the L-L lines shown in Figure 10 are splitted.
The revolving force for pouring water motor 42 is passed to the housing 800 that waters by the transmission module 600, and it includes being separated Hookup 610,620.
It will configure in the air cleaner module 100 and pour the hookup that water motor 42 is combined with described and be defined as first Hookup 610.
Configuration is in a detachable fashion combined in the air cleaning module 200 and with first hookup 610 Hookup be defined as the second hookup 620.
One in the hookup 620 of first hookup 610 or second is public shape, and another is female shape.At this In embodiment, the first hookup 610 is made as public shape, and the second hookup 620 is made as female shape.In the present embodiment In, first hookup 610 is combined in a detachable fashion with the form for inserting the second hookup 620.With this implementation Example differently, can also second hookup 620 insert the form of first hookup 610 and be combined.
The water motor 42 that pours is arranged on main body 120.The water motor 42 that pours is located at the upside of air supply motor 22, with The air supply motor 22 is mutually dividually configured.The tank 300 is placed inside main body 120 on described.In the tank 300 when being positioned over main body 120, and first, second hookup 610,620 is connected in the way of it can be driven.
The motor drive shaft 43 that waters for pouring water motor 42 is configured towards upside.In the upper end of the motor drive shaft 43 that waters First hookup 610 is set.
The upper main body 120 includes:Main body 122 in upper, the tank 300 is placed on the upper interior main body 122;It is upper outer main Body 128, is combined with the upper interior main body 122, positioned at the outside of the upper interior main body 122, is combined with the lower main body 130 To form the profile of matrix 110;Upper guide 124, is configured on described between main body 122 and upper outer main body 128, by air Guided to the upper interior upside of main body 122;Outer visual main body 214, is combined with the upper outer main body 128, by that can have an X-rayed Material formed and configured in the outside of visual main body 210.
First hookup 610 is configured in upper interior main body 122.First hookup 610 is configured in upper interior main body 122 It is internal.First hookup 610 is configured in upper interior main body 122, and is exposed to upside.
First hookup 610 is preferably made as thereon the shape that lateral section is narrow, lower lateral section is wide.Described first Hookup 610 can be the form of circular cone, pyramid etc..
First hookup 610, which is formed its section closer to upside, becomes narrower.In first hookup 610 Outer peripheral face be formed with tooth form.The tooth form of first hookup 610 is radial centered on the motor drive shaft 43 that waters to be matched somebody with somebody Put.Circumferencial direction formation broached-tooth design of the tooth form of first hookup 610 relative to the motor drive shaft 43 that waters (serration)。
The transmission module 600 is for the revolving force for pouring water motor 42 to be passed into the housing 800 that waters.In the present embodiment In, a part of structure of most of structure setting of the transmission module 600 in the tank 300, such as the first hookup 610 It is arranged on main body 120.
The transmission module 600 includes:Drive housing 630, inside the cylinder 35 of tank 300;Power transmission shaft 640, position Inside the drive housing 630, protrude through the drive housing 630 and to upside, rotation is provided to the housing 800 that waters Turn power;Bearing 670, between the power transmission shaft 640 and drive housing 630;Second hookup 620, with the power transmission shaft 640 Lower end is combined, and revolving force is transmitted to the power transmission shaft 640;First hookup 610, with watering, motor drive shaft 43 is combined, with can The mode of separation is combined with second hookup 620, when second hookup 620 is combined, by the horse of watering Revolving force up to axle 43 passes to second hookup 620.
In the present embodiment, the transmission module 600 is arranged on inside cylinder 35, is contacted with cutting off with aqueous phase.
In the present embodiment, the drive housing 630, power transmission shaft 640, bearing 670, the second hookup 620 are configured in institute State inside cylinder 35.
The power transmission shaft 640 is set in the way of running through drive housing 630 along above-below direction.The power transmission shaft 640 can Rotated in the state of drive housing 630.
The drive housing 630 is formed by metal material.The drive housing 630 can be by corrosion resistance high aluminium or brass Material is formed.
The drive housing 630 is arranged on inside tank 300.The tank 300, which is formed with, is revealed the first hookup 610 The sink main body insert port 329 gone out.The drive housing 630 closes the upside of the sink main body insert port 329.
The power transmission shaft 640 runs through the drive housing 630 along above-below direction.The upper end of the power transmission shaft 640 and institute State the housing 800 that waters to be combined, lower end is combined with the second hookup 620.
In the present embodiment, second hookup 620 is located on the upside of the bottom surface of tank 300, and configures in drive housing Inside 630.With the present embodiment differently, second hookup 620 is configurable on the downside of the bottom surface of tank 300.
The bearing 670 is configured between drive housing 630 and power transmission shaft 640.In the present embodiment, the power transmission shaft 640 are configured in the way of through the bearing 670.
The drive housing 630 includes:Bear box 650, the opening-like state in its upper side and lower side is formed;Housing cap 660 (housing cap), is combined with the upside of the bear box 650, and power transmission shaft 640 runs through the housing along above-below direction Cap 660;Shaft filler washer 680 (gasket), configures between the housing cap 660 and power transmission shaft 640, is clamped in the housing cap 660 and fixed;Housing elastic component 690, is arranged between bearing 670 and housing cap 660, for providing elastic force.
The power transmission shaft 640 is formed with the bearings end 641 for supporting the bearing 670.The bearing 670 is by the axle Support end 641 is held to support.The downside diameter at the bearings end 641 is larger formed than upside.The shaft filler washer 680 from After the upside insertion of the power transmission shaft 640, supported by the bearings end 641.
The housing cap 660 is combined with the upper end of bear box 650.The housing cap 660 is fixedly clamped in cartridge housing Body 650.The housing cap 660 is formed as ring-shaped.The housing cap 660 is formed with hollow bulb 661, the power transmission shaft in inner side 640 run through the hollow bulb 661 along above-below direction.
The housing cap 660 includes:Housing cap main body 662, is supported by bear box 650, is formed with and is passed through for power transmission shaft 640 The hollow bulb 661 worn;Cap supporting part 664, is formed in the housing cap main body 662, for supporting shaft filler washer 680.
The cap supporting part 664 is convexly formed to the side of power transmission shaft 640.The shaft filler washer 680 is supported by the cap Portion 664 is supported.
The housing cap 660 is located at the lower section above cylinder 35.It is formed with the cylinder 35 for the power transmission shaft 640 The cylinder opening portion 39 run through.
The housing cap 660 supports shaft filler washer 680, and the shaft filler washer 680 is mutually close to the upper inside face of cylinder 35.
The shaft filler washer 680 can be formed by elastic material.
The water that tank 300 can be cut off by the shaft filler washer 680 is flowed into inside cylinder 35.Also, the shaft filler washer 680 can Water is cut off to flow into inside bear box 650.
The shaft filler washer 680 includes:Washer body 682, is mutually close to cap supporting part 664;(the gasket of packing ring barrier film 684 Diaphragm), it is convexly formed from the washer body 682 to power transmission shaft 640.
The washer body 682 is formed as " ┗ " section, and its lateral surface and downside are supported by housing cap 660.The pad Circle barrier film 684 is integrally formed with washer body 682.
The packing ring barrier film 684 is mutually close to the lateral surface of power transmission shaft 640.The packing ring barrier film 684 is in the vertical direction Two are formed with, is flowed into dual mode cut-out water.
The housing elastic component 690 is configured between housing cap 660 and bearing 670.The upper end of housing elastic component 690 Housing cap 660 is flexibly supported, lower end is flexibly supported by bearing 670.
The housing elastic component 690 by elastic force to downside press bearing 670.In the housing elastic component 690 In the presence of, bearing 670 can be supported by bearings end 641.
The housing elastic component 690 makes the vibrations of bearing 670 reach minimum when power transmission shaft 640 rotates.
In the present embodiment, drive housing 630 is arranged on inside the cylinder 35, with the present embodiment differently, described to pass Dynamic housing 630 can expose to inside tank.
In the present embodiment, the power transmission shaft 640 along above-below direction it is longer be extended.Due to the power transmission shaft 640 along above-below direction it is longer be extended, can easily increase the capacity of tank 300 as desired.
In the capacity hour of tank 300, the second hookup 620 can be directly set in the housing 800 that waters.In the case, The structure such as power transmission shaft 640 and bearing 670 is can remove, so as to more simplify structure.
When the capacity of tank 300 is big, it is desirable to have the housing 800 that waters of lower-upper length length.Water housing 800 length become When long, vibrations will be produced when being rotated.That is, revolving force be only delivered to water housing 800 downside in the case of, water Housing 800 such as will be distorted at the deformation, and speed difference occurs for the upper side and lower side for the housing 800 that waters.
In the presence of such deformation or speed difference, watering, housing 800 will produce substantial amounts of vibrations.Particularly, inhale Entering the water to inside the housing 800 that waters and pumped up water will to produce bigger vibrations.Described water hull is poured being drawn into In the case that water inside body 800 is configured with eccentric state, bigger vibrations will be produced.
In the present embodiment, the power transmission shaft 640 in the state of longer along above-below direction extend with the housing that waters 800 center of gravity and upper end are combined respectively, therefore, it is possible to solve problem described above.
That is, in the structure of such as the present embodiment, even if increasing the housing 800 that waters as the height of tank 300 increases Highly, can also vibrations be made to reach minimum.
The power transmission shaft 640 is respectively formed with screw thread 643,644 in its top and bottom, and bearing branch is formed with outer peripheral face Support end 641,645 and axle support end 642.
Threaded upper ends 643 are mutually assembled with case lid 860 of watering.Lower end screw thread 644 is mutually assembled with the second hookup 620.
The bearings end 641,645 and axle support end 642 are formed by changing the diameter of power transmission shaft 640.Institute Stating bearings end 641,645 is used for spring bearing.The axle support end 642 waters driving section 880 for support.
The lower end screw thread 644 directly can be combined with the second hookup 620.In the present embodiment, in the second hookup 620 transmission joint portion 627 configures extra hookup combination member 646, will be driven by the hookup combination member 646 The hookup 620 of axle 640 and second is combined.
Along above-below direction power transmission shaft groove 626 is formed with the outer peripheral face of the hookup combination member 646, in inner circumferential Face is formed with the screw thread (not shown) mutually assembled with the lower end screw thread 644.
Figure 20 is the schematic diagram for the leveller for showing the second embodiment of the present invention.
The leveller of the present embodiment is the movement-oriented part 310 ' formed with curve mode.
The movement-oriented part 310 ' can be formed as spiral shape towards the housing 800 that waters.Multiple movement-oriented parts 310 ' can Spiral shape is configured to towards power transmission shaft 640.
In the present embodiment, the border 315 of the movement-oriented part 310 ' is formed with curve mode.
Remaining structure is identical with the first embodiment below, therefore is omitted from detailed description.
Figure 21 is the schematic diagram for the leveller for showing the third embodiment of the present invention.
(rib) form of muscle 1310 can be used to replace movement-oriented part for the leveller of the present embodiment.
The muscle 1310 is formed in the bottom surface of tank, and is protruded to upside.The muscle 1310 is alongst longlylyer Extension, and be formed as rectilinear configuration.With the present embodiment differently, the muscle 1310 is formed as tracing pattern.
The muscle 1310 towards the water that side direction rotates in tank 300 with producing resistance.The muscle 1310 will be towards side The water that direction rotates is guided to the side of housing 800 of watering.
The inner side of the muscle 1310 is mutually separated with the housing 800 that waters, and outside and the madial wall of tank 300 are mutually separated.
Coming in every shape for the leveller of the present embodiment, it is similar with movement-oriented part.
Remaining structure is identical with the first embodiment below, therefore is omitted from detailed description.
Figure 22 is the schematic diagram for the leveller for showing the fourth embodiment of the present invention, and Figure 23 is Figure 22 orthogonal view.
In the present embodiment, it is configured with as the muscle 317,318 with the single leveller of movement-oriented part 310.
The muscle 317,318 configures the madial wall in tank 300, and is protruded to inner side.The muscle 317,318 can be formed For the madial wall of tank is connected with bottom surface.
The muscle 317,318 is radial centered on power transmission shaft 640 or the housing 800 that waters to be configured.
The muscle 317,318 configures the outermost inside tank, with the water generation resistance rotated towards side direction.Due to The muscle 317,318 is located at the outermost of tank, can further reduce outside water level.
The muscle 317,318 may be configured with multiple, and the height of each muscle 317,318 is differently from each other formed.By making each muscle 317th, 318 height is formed respectively differently, can energetically form sinuous flow to the water of rotation.
Remaining structure is identical with the first embodiment below, therefore is omitted from detailed description.
Figure 24 is the schematic diagram for the movement-oriented part for showing the fifth embodiment of the present invention.
With the fourth embodiment differently, the muscle 319 of the present embodiment is formed as curve.
The muscle 319 forms the madial wall in tank.The muscle 319 can be formed as spiral shape along the madial wall of tank.
Remaining structure is identical with the first embodiment below, therefore is omitted from detailed description.
Above by reference to accompanying drawing, preferred embodiments of the present invention have been disclosed for illustrative, but the present invention is not limited to above institute In the range of the specific embodiment stated, the technological thought of the invention advocated in without departing substantially from claims, this area Those skilled in the art can carry out various deformation implementation to it, such deformation implementation should not depart from the present invention technological thought or Prospect and individually understood.

Claims (16)

1. a kind of humidifying and purifying device, wherein,
Including:
Tank, for storing water,
Watered housing, configures inside the tank, and the revolving force that water motor is poured in transmission reception is rotated, and is being rotated When, the water of the tank is sucked into inside, after the water of suction is pumped up water to upside, the water pumped up water is sprayed, And
Leveller, is configured inside the tank, is protruded to the inside of the tank;
When the housing that waters is rotated, the leveller and the water rotated towards a direction produce resistance.
2. humidifying and purifying device according to claim 1, wherein,
Inner bottom surface of the leveller configuration in the tank.
3. humidifying and purifying device according to claim 1, wherein,
Inner bottom surface formation gradient of the leveller in the tank.
4. humidifying and purifying device according to claim 1, wherein,
When the housing that waters is rotated, the leveller guides in the outside of water from the tank to inner side.
5. humidifying and purifying device according to claim 1, wherein,
Internal side wall of the leveller configuration in the tank.
6. humidifying and purifying device according to claim 5, wherein,
The leveller is convexly formed in the internal side wall of the tank to inner side.
7. humidifying and purifying device according to claim 1, wherein,
The leveller is included in the muscle that the internal side wall of the tank is protruded to inner side.
8. humidifying and purifying device according to claim 1, wherein,
The leveller is included in the muscle that the inner bottom surface of the tank is protruded to upside.
9. humidifying and purifying device according to claim 1, wherein,
The leveller alongst extends to be formed, and is formed as straight line or arc shape.
10. humidifying and purifying device according to claim 1, wherein,
The inner bottom surface of water housing and the tank mutually separates and forms suction interval,
The leveller guides water to the suction interval.
11. humidifying and purifying device according to claim 1, wherein,
The leveller includes forming the movement-oriented part in the inner bottom surface of the tank,
The movement-oriented part includes:
First inclined plane, with being configured in the way of the inclined bottom surface, to be formed towards the flow direction of water,
Second inclined plane, so that with being configured in the way of the inclined bottom surface, court is with the first inclined plane opposite direction with inclined Mode is formed,
Border, first inclined plane is connected with second inclined plane.
12. humidifying and purifying device according to claim 11, wherein,
The inclination angle of first inclined plane is less than the inclination angle of second inclined plane.
13. humidifying and purifying device according to claim 11, wherein,
The inner side of the movement-oriented part is mutually separated with the housing that waters, outside and the tank of the movement-oriented part Side wall is mutually separated.
14. humidifying and purifying device according to claim 11, wherein,
The movement-oriented part is configured with multiple, and the movement-oriented part is circumferentially matched somebody with somebody on the basis of the housing that waters Put, each described movement-oriented part is mutually separated.
15. humidifying and purifying device according to claim 11, wherein,
The inner bottom surface of water housing and the tank mutually separates and forms suction interval,
The movement-oriented part is located at interval at higher position than the suction.
16. humidifying and purifying device according to claim 11, wherein,
The movement-oriented part alongst extends to be formed, and is formed as straight line or arc shape.
CN201610996882.0A 2015-10-30 2016-10-31 Humidifying and purifying device Pending CN107101306A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111246314.6A CN113959027A (en) 2015-10-30 2016-10-31 Humidifying and purifying device

Applications Claiming Priority (14)

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US201562248463P 2015-10-30 2015-10-30
US62/248,463 2015-10-30
KR20150156254 2015-11-07
KR10-2015-0156254 2015-11-07
KR20150185850 2015-12-24
KR10-2015-0185850 2015-12-24
KR10-2016-0037235 2016-03-28
KR1020160037235A KR20170051142A (en) 2015-10-30 2016-03-28 apparatus for both humidification and air cleaning
US201662355118P 2016-06-27 2016-06-27
US62/355,118 2016-06-27
KR10-2016-0083062 2016-06-30
KR20160083062 2016-06-30
KR1020160129319A KR101931708B1 (en) 2015-10-30 2016-10-06 apparatus for both humidification and air cleaning
KR10-2016-0129319 2016-10-06

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US3188007A (en) * 1962-04-16 1965-06-08 Hankscraft Co Humidifier
CN2509205Y (en) * 2001-11-13 2002-09-04 宁波华利电器厂 Turbulent washing machine
JP2004154535A (en) * 2002-09-12 2004-06-03 Takutoron Kk Minus ion generator which is easy of maintenance
CN2718436Y (en) * 2004-07-06 2005-08-17 台棱股份有限公司 Spray humidifying device for greenhouse
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CN102100487A (en) * 2009-12-17 2011-06-22 彭亚军 Cup for soya-bean milk making machine and soya-bean milk making machine using same
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CN202536009U (en) * 2012-03-21 2012-11-21 格力电器(中山)小家电制造有限公司 Cup body of soybean milk maker

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