CN106969457B - Humidifying and purifying device - Google Patents

Humidifying and purifying device Download PDF

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Publication number
CN106969457B
CN106969457B CN201611019558.XA CN201611019558A CN106969457B CN 106969457 B CN106969457 B CN 106969457B CN 201611019558 A CN201611019558 A CN 201611019558A CN 106969457 B CN106969457 B CN 106969457B
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CN
China
Prior art keywords
watering
shell
water
transmission shaft
sink
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.)
Active
Application number
CN201611019558.XA
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Chinese (zh)
Other versions
CN106969457A (en
Inventor
郑敞旭
崔智恩
孙常赫
李晶雨
金泰润
李英具
李建荣
权赫珠
李钟洙
李庆浩
郑云敞
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
Publication of CN106969457A publication Critical patent/CN106969457A/en
Application granted granted Critical
Publication of CN106969457B publication Critical patent/CN106969457B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • 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
    • F24F8/80Self-contained air purifiers
    • 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

Abstract

The present invention provides a kind of humidifying and purifying device, humidifying and purifying device of the invention, wherein include: sink, for storing water;Water shell, configures inside the sink, and the water of the sink is sucked inside, the water of sucking pumps up water to upside when rotated, sprays the water to be pumped up water;Water motor is poured, provides rotary force to the watering shell;Transmission shaft, configuration pour described water motor and are connected with the watering shell, the rotary force for pouring water motor is passed to the watering shell in the watering enclosure interior.The present invention has the advantages that watering shell can be rotated by the transmission shaft configured in watering enclosure interior.

Description

Humidifying and purifying device
Technical field
The present invention relates to humidifying and purifying devices.
Background technique
Conditioner has the air conditioner of the temperature for controlling air, for removing the impurity of air to keep purifying The air purifier of degree, humidifier from moisture to air, the dehumidifier for removing the moisture in air for providing etc..
Existing humidifier is distinguished are as follows: in the vibration-type humidifier that jolting plate makes water atomization and it spues into air; And the nature evaporation type humidifier of natural evaporation is carried out in humidifying filter.
The nature evaporation type humidifier is distinguished are as follows: utilize driving force rotating circular disk, the aerial disc surfaces of water into 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.
In humidification, a part in the air of flowing is filtered existing humidifier in the filter.But by Its major function is humidification function in existing humidifier, and there are the weaker problems of the function of purification air.
Also, existing humidifier is using the structure for adding filtering function in humidification, therefore, it is impossible to only for sky Gas is filtered and is acted.
Therefore, even if there are in the state of humidity height in existing humidifier, when user needs to carry out air cleaning The problem of by humidification is implemented.
Summary of the invention
The purpose of the present invention is to provide a kind of humidifying and purifying devices, and humidification function and air-cleaning function can be made independent Ground is acted.
The purpose of the present invention is to provide a kind of humidifying and purifying devices, configured with the transmission module that can be separated.
The purpose of the present invention is to provide a kind of humidifying and purifying devices, configure watering shell in sink, pour in matrix configuration The rotary force for pouring water motor is supplied to watering shell by water hull body.
The purpose of the present invention is to provide a kind of humidifying and purifying devices, can transmit rotation by the hookup that can be separated Turn power.
The purpose of the present invention is to provide a kind of humidifying and purifying devices, are alongst formed longlyer in transmission shaft When, vibration and bias can be made to reach minimum.
The purpose of the present invention is to provide a kind of humidifying and purifying devices, and the second hookup is configured the outer lower portion in sink For delivery to rotary force, watering shell is rotated by the transmission shaft combined with the second hookup.
The purpose of the present invention is not limited to the purpose mentioned above arrived, and those skilled in the art can be by below Record is expressly understood that the other purposes not being mentioned to.
Humidifying and purifying device of the invention, wherein include: sink, for storing water;Water shell, configures in the water Inside slot, the water of the sink is sucked into inside, the water of sucking pumps up water to upside when rotated, injection is pumped up water The water;Water motor is poured, provides rotary force to the watering shell;Transmission shaft is configured in the watering enclosure interior, by institute It states and pours water motor and be connected with the watering shell, the rotary force for pouring water motor is passed into the watering shell.
The lower part poured water motor and be configurable on the sink, the transmission shaft through the sink bottom surface and with institute Watering shell is stated to combine.
The watering shell can further include: watering interconnecting piece is configured in the watering enclosure interior, to the watering shell Inside is convexly formed;The transmission shaft is combined with the watering interconnecting piece to transmit rotary force.
The present invention can further include: bushing is arranged in the transmission shaft;The bushing is formed by metal material.
The bushing is located at higher position than the full-water level of the sink.
The sink can further include: cylinder, the inside configured in the watering shell;The cylinder is in the watering shell Inside be convexly formed to upside, the transmission shaft with the watering shell through the cylinder and combining.
The present invention can further include: transmission housing is configured in the inside of the cylinder;The transmission housing is by the cylinder Inside support, the transmission housing are formed with for the perforative hollow portion of the transmission shaft, and the transmission shaft runs through the drive shell Body and the cylinder are simultaneously combined with the watering shell.
The present invention can further include: bearing configures inside the transmission housing;The transmission shaft is through the bearing Mode is arranged.
The present invention can further include: shaft filler washer configures inside the transmission housing;The shaft filler washer closing is described hollow Portion, the transmission shaft are arranged in a manner of through the shaft filler washer.
The transmission housing is combinable to be fixed on the sink.
The watering shell can include: the first watering shell, the inside bottom surface with the sink is to suck gap size phase It dividually configures, opening-like state is distinguished in the upper side and lower side;Second watering shell, the upper side and lower side difference are opening-like State is assembled in the upper end of the first watering shell, is connected with the first watering enclosure interior;Watering case lid, with institute The upper end for stating the second watering shell combines, and covers the upper surface of described second watering shell;Driving section, configuration are poured described first At least one party in water hull body, the second watering shell and case lid of watering, is transmitted to rotary force from the water motor that pours;It is described Transmission shaft is combined with the driving section.
The upper end of the transmission shaft can be combined with the watering case lid.
The present invention can further include: bushing is arranged in the driving section;Transmission shaft phase in a manner of through the bushing In conjunction with the upper end of the transmission shaft is combined with the watering case lid.
The present invention can further include: cylinder is convexly formed in the bottom surface of the sink to upside;The transmission shaft runs through institute It states cylinder and is combined with the watering shell, the cylinder is located on the downside of the driving section.
The present invention can further include: transmission housing is configured in the inside of the cylinder;The transmission housing includes: cartridge housing Body, the opening-like state in the upper side and lower side;Shell cap combines on the upside of the bear box, and the transmission shaft is along upper The shell cap is run through in lower direction;Shaft filler washer configures between the shell cap and the transmission shaft, is clamped in the shell cap And it is fixed;Shell elastic component is arranged between the bear box and the shell cap, for providing elastic force.
One kind that humidifying and purifying device of the invention has the following effects that or its more than.
The first, watering shell can be rotated by the transmission shaft configured in watering enclosure interior.
Even if second, watering shell is extended to form along up and down direction longlyer, due to transmission shaft and the two of watering shell Place combines, and the bias of watering shell and vibration can be made to reach minimum.
Even if third, watering shell are extended to form along up and down direction longlyer, due to being configured with bushing, energy in transmission shaft The bias of watering shell and vibration is enough set to reach minimum.
4th, higher position is located at than the full-water level of sink due to bushing, the bushing is not immersed in water, and can make to pour The bias of water hull body and vibration reach minimum.
5th, sink is fixed on due to transmission housing, transmission shaft is transmitted shell and supports and rotated, and can make to water The bias of shell and vibration reach minimum.
6th, due to being formed with cylinder in sink, configure transmission housing in the column body, can make the water of sink with The contact of transmission housing reaches minimum.
Effect of the 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.
Detailed description of the invention
Fig. 1 is the perspective view of the humidifying and purifying device of the first embodiment of the present invention.
Fig. 2 is the exploded perspective view of Fig. 1.
Fig. 3 is the decomposition main view of Fig. 1.
Fig. 4 is the sectional view splitted along the line B-B of Fig. 3.
Fig. 5 is the schematic diagram for showing the air flowing of the humidifying and purifying device of the first embodiment of the present invention.
Fig. 6 is the perspective view of the air cleaning module shown in Fig. 2 as viewed from downside.
Fig. 7 is the main view of air cleaning module shown in Fig. 2.
Fig. 8 is the sectional view splitted along the line A-A of Fig. 7.
Fig. 9 is the left side view of air cleaning module shown in Fig. 2.
Figure 10 is the sectional view splitted along the line B-B of Fig. 9.
Figure 11 is the top view of upper main body shown in Fig. 2.
Figure 12 is the sectional view splitted along the line C-C of Figure 11.
Figure 13 is the perspective view of the first hookup shown in Figure 12.
Figure 14 is the perspective view as viewed from the downside of Figure 13.
Figure 15 is the sectional side view of Figure 13.
Figure 16 is the perspective view of the second hookup shown in Fig. 8.
Figure 17 is the perspective view as viewed from the downside of Figure 16.
Figure 18 is the sectional side view of Figure 16.
Figure 19 is the enlarged drawing of D shown in Fig. 8.
Figure 20 is the enlarged drawing of E shown in Fig. 8.
Figure 21 is the enlarged drawing of F shown in Fig. 8.
Figure 22 is the enlarged drawing of G shown in Fig. 8.
Figure 23 is the perspective view for showing the setting state of watering shell shown in Fig. 4.
Figure 24 is the main view of Figure 23.
Figure 25 is the sectional view splitted along the M-M line of Figure 24.
Figure 26 is the exploded perspective view of watering shell shown in Figure 23.
Figure 27 is the perspective view as viewed from the downside of Figure 26.
Figure 28 is the main view of Figure 26.
Figure 29 is the sectional view splitted along the N-N line of Figure 28.
Figure 30 is the exploded perspective view of transmission shaft and bushing shown in Figure 26.
Figure 31 is the main view of Figure 30.
Figure 32 is the sectional view splitted along the O-O line of Figure 31.
Figure 33 is the sectional view for showing the transmission module of the second embodiment of the present invention.
Figure 34 is the sectional view for pouring water unit for showing the third embodiment of the present invention.
Figure 35 is the sectional view for pouring water unit for showing the fourth embodiment of the present invention.
The explanation of appended drawing reference
10: filter assemblies;20: blowing unit;30: sink;40: pouring water unit;51: sink humidifies medium;55: spuing Humidify medium;100: air cleaner module;110: matrix;120: upper main body;130: lower main body;150: blowing fan shell;160: Display module;200: air cleaning module;210: visual main body;230: cap assembly;260: connector
Specific embodiment
Advantages of the present invention, feature and for realizing its method can by referring to accompanying drawing and the embodiment that is described in detail later more Add clear.But the present invention is not limited to embodiments disclosed below, but can be realized by variform, this implementation Example merely to more completely disclose the present invention, thus to technical field belonging to the present invention those of ordinary skill more completely The scope of the present invention is prompted, the present invention is only defined by the range of claims.Throughout the specification, identical attached drawing Label indicates identical structural detail.
Hereinafter, the embodiment of the present invention is described in detail referring to attached drawing.
Fig. 1 is the perspective view of the humidifying and purifying device of the first embodiment of the present invention, and Fig. 2 is the exploded perspective view of Fig. 1, figure 3 be the decomposition main view of Fig. 1, and Fig. 4 is the sectional view splitted along the line B-B of Fig. 3, and Fig. 5 is to show of the invention first to implement The schematic diagram of the air flowing of the humidifying and purifying device of example.
The humidifying and purifying device of the present embodiment includes: air cleaner module 100 (air clean modul e);And it puts Set the air cleaning module 200 (air w ash module) in 100 upside of air cleaner module.
The air cleaner module 100 is filtered after sucking outside air, and crossing air filtering, to 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 It spues to outside.
The air cleaning module 200 includes the sink 30 of storage water.When isolating the air cleaning module 200, The sink 30 can be separated from the air cleaner module 100.The air cleaning module 200 is placed on air cleaner mould 100 top of block.
User can isolate the air cleaning module 200 from air cleaner module 100, and to the air cleaning isolated Module 200 is cleaned.User can be to cleaning inside the air cleaner module 100 for isolating air cleaning module 200.In In the case where isolating the air cleaning module 200, the top user oriented of the air cleaner module 100 is open.It is described Air cleaner module 100 can be cleaned after being individually separated out aftermentioned filter assemblies 10.
User can supply water to the air cleaning module 200.It is formed in the air cleaning module 200 for water flow Road, so as to supply water externally to the sink 30.
The water supply flow path is configured to supply water to the sink at any time.For example, in the air cleaning mould In the case where in the movement of block 200, it can also be supplied water by water supply flow path.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 flow path.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 flow path.
The air cleaner module 100 is connected with air cleaning module 200 by connecting flow path 103.Due to the sky Gas cleaning module 200 is arranged in a detachable fashion, and the connection flow path 103 is distributed in air cleaner module 100 and sky Gas cleaning module 200.
The connection flow path for being formed in the air cleaner module 100 is defined as cleaning connection flow path 104, by being formed in The connection flow path for stating air cleaning module 200 is defined as humidification connection flow path 105.Only put in the air cleaning module 200 When being placed in the air cleaner module 100, the connection flow path can just be made to be connected, and accurately constitute the flow path of air.
For the flowing of the air passed through in the air cleaner module 100 and air cleaning module 200 will later into 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 flow path 104;It crosses Filter module 10 is arranged in a detachable fashion relative to described matrix 110, implements filtering to the air of flowing;Blowing unit 20, it configures inside described matrix 110, flows air.
Outside air is sucked inside described matrix 110 by the suction passage 101.Flow path is connected by the cleaning 104 will be supplied to the air cleaning module 200 by filtered air in the filter assemblies 10.
In the present embodiment, described matrix 110 is made of two parts.
Described matrix 110 includes: lower main body 130, is used to form shape, is formed with suction inlet 111 in downside;Upper main body 120, it is used to form shape, is combined on the upside of the lower main body 130.
At least one party in the air cleaner module 100 or air cleaning module 200 may be configured with for user Show the display module 160 of action state.In the present embodiment, it is provided in described matrix 110 and is humidified for being shown to user The display module 160 of the action state of purification device.
The upper main body 120 and lower main body 130 are assembled in an integrated manner.Differently with the present embodiment, 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 described in support The loading of air cleaning module 200.
The upper main body 120 provides the structure that can steadily place the sink 30.The upper main body 120 is the sky The structure that the sink 30 of gas cleaning module 200 can be separated.The upper main body 120 is the structure of recess, so as to accommodate The sink 30.
The upper main body 120 is formed to 110 inner recess of described matrix, can be to 110 inner containment institute of described matrix Sink 30 is stated, hereby it is possible to more move downward the center of gravity of humidifying and purifying device.
The humidifying and purifying device of the present embodiment is clear by the air by 100 input power of air cleaner module Clean module 100 provides power supply to the air cleaning module 200.Since 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 Power supply structure.
Since the air cleaner module 100 and air cleaning module 200 are realized by the upper main body 120, in institute State the connector 260 that main body 120 configures the oriented offer of air cleaning module 200 power supply.Match 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 260 upside of connector.The cap assembly 230 passes through the top connector 270 Receive the power supply that the connector 260 supplies.
The filter assemblies 10 are detachably assembled in described matrix 110.
The filter assemblies 10 provide filtering flow path 102, and implement to filter to outside air.
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 are configured in a manner of intersecting with the flow direction along the upstream air of vertical direction.It is described Filter assemblies 10 are configured along the horizontal direction orthogonal with the mobile phase of air flowed from the upward side in downside.
The filter assemblies 10 can be slided relative to described matrix 110 along horizontal direction.
The blowing unit 20 generates the flowing of air.The configuration of blowing unit 20 makes sky inside described matrix 110 Gas is flowed from the upward side in downside.
The blowing unit 20 is made of blowing fan shell 150, air supply motor 22 and blowing fan 24.In the present embodiment In, in upside, blowing fan 24 is configured in downside for the configuration of air supply motor 22.
The configuration of blowing fan shell 150 is inside described matrix 110.The blowing fan shell 150 provides the sky of flowing The flow path of gas.The air supply motor 22 and blowing fan 24 are configured in the blowing fan shell 150.
The configuration of blowing fan shell 150 is in 10 upside of filter assemblies, and configuration is in upper 120 downside of main body.
The blowing fan 24 be centrifugal fan, downside suck air after, radially outside discharge air.It is described to send Fan 24 radially outside and upside discharge air.The outboard end of the blowing fan 24 is formed along radial upside.
In order to reach minimum with the contact of the air of flowing, the configuration of air supply motor 22 is 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: sink 30, and water of the storage for humidification is placed in a detachable fashion The air cleaner module 100;Water unit 40 is poured, configures inside the sink 30, sprays the water of the sink;Humidify medium 50, moisture is provided by the air of the water-soaked pouring water unit 40 and spraying, Xiang Liudong;Visual main body 210, with the sink 30 It combines, by it can be seen that internal material is formed;Cap assembly 230 is placed on the visual main body in a detachable fashion 210, it is formed with the discharge flow path 107 of discharge air and the water supply flow path 109 to supply water.
The sink 30 is placed on the upper main body 120.It is described to pour the configuration of water unit 40 inside the sink 30, in institute It states and is rotated inside sink 30.
The water unit 40 that pours sucks water inside the sink, and the water of sucking is pumped up water to upside, and will be raised The radially outside injection of the water of water.It is described pour water unit 40 include watering shell 800, the watering shell 800 to its inside inhale Enter water, after the water being inhaled into is pumped up water to upside, radially outside is sprayed by it.
Humidification medium 50 described in the water-soaked sprayed from the watering shell 800.The water sprayed from the watering shell 800 It can be towards at least one party's injection in the visual main body 210 or humidification medium 50.
In the present embodiment, the medial surface of the watering shell 800 towards the visual main body 210 sprays water, injection Water is wandered downwards along the inside of the visual main body 210.It is formed in the form of water droplet in the medial surface of the visual main body 210 The drop formed, user can see the drop by the visual main body 210.
The visual main body 210 is combined with the sink 30, and is located at the upside of the sink 30.The visual main body 210 at least part is formed by the material for capableing of perspective inside.
The drop formed on 210 medial surface of visual main body can show the form for forming raindrop.From the visual master The drop that body 210 is wandered soaks the humidification medium 50.
It can configure display module 160 in the outside of the visual main body 210.The display module 160 can be with visual main body 210 or upper main body 120 in a side combine.In the present embodiment, the configuration of display module 160 is in the upper main body 120.
When placing the air cleaning module 200, the lateral surface and the display module 160 of the visual main body 210 Mutually it is close to.At least part in the surface of the display module 160 is formed by the material of reflected light.
The surface of the display module 160 will be also projected in the drop that the visual main body 210 is formed.User as a result, This movement of drop can be observed at two in the visual main body 210 and display module 160.
The sink 30 is formed with the sink inflow entrance 31 of air dredging.The sky supplied from the air cleaner module 100 Gas is by the sink inflow entrance 31 to 200 internal flow of air cleaning module.
The humidification medium 50 includes: sink humidification medium 51, and configuration is in connection flow path 103;And the humidification medium that spues 55, it configures in discharge flow path 107.
Sink humidification medium 51 configuration is on connection flow path 103, and in the present embodiment, the sink humidifies medium 51 Configure the sink inflow entrance 31 in sink 30.The sink humidification medium 51 is located at the inside of sink inflow entrance 31, to passing through The air for stating sink inflow entrance 31 provides humidification.
Sink humidification medium 51 covers the sink inflow entrance 31, air through sink humidification medium 51 and to 30 internal flow of sink.
The discharge humidification configuration of medium 55 is on discharge flow path 107.The discharge humidification medium 55 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.
Discharge humidification medium 55 covers the discharge flow path 107, air through discharges humidify medium 55 and to It is flowed outside cap assembly 230.
Hereinafter, being illustrated referring to attached drawing to the flowing of air.
When blowing unit 20 is acted, outside air is by being formed in the suction passage 101 of the downside of matrix 110 It flows into inside matrix 110.The upward side of air sucked by the suction passage 101 is mobile, and passes through air in the process Cleaning module 100 and air cleaning module 200, it is outside by being formed in the discharge flow path 107 of upside of air cleaning module 200 Portion spues.
The air for sucking the suction passage 101 passes through the filtering flow path 102 of filter assemblies 10, is passing through the filtering During flow path 102, the filter assemblies 10 are filtered outside air.
It is flowed by blowing unit 20 to connection flow path 103 by the air of the filtering flow path 102.Pass through the filtering After the air of flow path 102 is pressed by blowing fan 24, flowed along blowing fan shell 150 to connection flow path 103.
The configuration of blowing unit 20 can make the impurity such as dust be attached to described send after filtering flow path 102 The case where fan 24, reaches minimum.
In the case where before the blowing unit 20 is configured at filtering flow path 102, impurity is attached on blowing fan 24, and by This causes cleaning period to shorten.
Also, since the configuration of blowing unit 20 is before humidifying flow path 106, moisture can be made to be attached to 24 surface of blowing fan The case where reach minimum.In the case where 24 surface of blowing fan is pasted with the moisture of humidification, the feelings such as generation impurity is sticky or mouldy A possibility that condition, is larger.
Since the blowing unit 20 configuration is between filtering flow path 102 and humidification flow path 106, impurity can be made to attach Situation reaches at least, and can suitably provide the flowing pressure of air.
The connection flow path 103 connects flow path 104 by the cleaning for being formed in air cleaner module 100 and to be formed in air clear The humidification connection flow path 105 of mold cleaning block 200 is constituted.
When the air cleaning module 200 is in the state for being placed on upper main body 120, the cleaning connects flow path 104 It will be connected with humidification connection flow path 105.When the air cleaning module 200 is in by isolated state, the cleaning connects It connects flow path 104 and humidification connection flow path 105 exposes to outside.
The cleaning connection flow path 104 may be formed at main body 120, and humidification connection flow path 105 is formed in air cleaning mould Block 200.
The cleaning connection flow path 104 and humidification connection flow path 105 are formed as pipeline form, to form specific stream Road.In the present embodiment, connection flow path 103 be dispersed to main body 120 a part of works and one of the sink 30 Separation structure object will form the connection flow path 103 when the air cleaning module 200 is placed in upper main body 120.
In the present embodiment, the upper main body 120 provides the outboard structure object of the connection flow path 103, the sink 30 The inside structure object of the connection flow path 103 is provided.
That is, forming the connection flow path 103 between the outside of the sink 30 and the inside of upper main body 120.Institute as a result, Connection flow path 103 is stated to be formed between sink 30 and upper main body 120.The sink 30 forms the inside of the connection flow path 103 Wall, the upper main body 120 formed it is described connection flow path 103 outside wall.
It is distributed the structure of connection flow path 103 in this way, the works to form flow path can be made to reach minimum.Institute Connection flow path 103 is stated to be formed along up and down direction.
It is flowed by the air of the connection flow path 103 to humidification flow path 106.The humidification flow path 106 is for supplying The section of moisture.In the present embodiment, the humidification flow path 106 is from sink humidification medium 51 until spuing and humidifying medium 55.
With medium 51 is humidified by sink in connection flow path 103, moisture can be supplied to air in the process.This Outside, it is provided with inside the sink 30 from described and pours the water droplet and the moisture evaporated from sink 30 that water unit 40 disperses.
With medium 55 is humidified by the discharge inside the sink 30, moisture can be supplied again in the process.
In the humidification flow path 106, medium 51,30 inside of sink and the humidification medium that spues are humidified by the sink 55 supply moisture.
Exposed by discharge flow path 107 to outside by the air of the humidification medium 55 that spues.
Fig. 6 is the perspective view of the air cleaning module shown in Fig. 2 as viewed from downside, and Fig. 7 is air cleaning mould shown in Fig. 2 The main view of block, Fig. 8 are the sectional views splitted along the line A-A of Fig. 7, and Fig. 9 is the left side view of air cleaning module shown in Fig. 2 Figure, Figure 10 are the sectional views splitted along the line B-B of Fig. 9, and Figure 11 is the top view of upper main body shown in Fig. 2, Figure 12 be along The sectional view that the line C-C of Figure 11 is splitted, Figure 13 are the perspective views of the first hookup shown in Figure 12, and Figure 14 is from the downside of Figure 13 The perspective view looked, Figure 15 are the sectional side views of Figure 13, and Figure 16 is the perspective view of the second hookup shown in Fig. 8, Figure 17 be from The perspective view looked on the downside of Figure 16, Figure 18 are the sectional side views of Figure 16, and Figure 19 is the enlarged drawing of D shown in Fig. 8, and Figure 20 is figure The enlarged drawing of E shown in 8, Figure 21 are the enlarged drawings of F shown in Fig. 8, and Figure 22 is the enlarged drawing of G shown in Fig. 8.
Referring to attached drawing, the watering shell 800 for pouring water unit 40 and making to configure inside sink 30 is rotated, and passes through institute The rotation for stating watering shell 800 sprays the water of 30 internal reservoir of sink to the medial surface of visual main body 210.
It is described to pour the offer of water unit 40 for rotating the structure of the watering shell 800.The water unit 40 that pours is described The transmission that power can be transmitted to the watering shell 800 also is provided in the structure that sink 30 can be separated with upper main body 120 Module 600.
The structure for pouring water unit 40 is described in more details as follows.
The water unit 40 that pours includes: watering shell 800, pours water motor 42, transmission module 600.
The water unit 40 that pours includes: watering shell 800, configures inside sink 30, is rotated with by sink 30 Water sucking is internal, and the water of sucking is pumped up water to upside, and the water to pump up water is spued to outside;Water motor 42 is poured, Xiang Suoshu is poured Water hull body 800 provides rotary force;The rotary force for pouring water motor 42 is passed to the watering shell by transmission module 600 800。
The watering shell 800 be the water stored in sink 30 is pumped up water to upside after, by its radially outside into The structure of row injection.
The water motor 42 that pours is to provide the structure of the rotary force for rotating the watering shell 800.
The transmission module 600 is for the rotary force for pouring water motor 42 to be passed to the watering shell 800 Structure.
The watering shell 800 pours water motor 42 and transmission module 600 and can be arranged at sink 30.In the case, User needs to pour water motor 42 and also lifts together when separating air cleaning module 200.Also, pouring the also group of water motor 42 In the case where air cleaning module 200, when air cleaning module 200 is separated from air cleaner module 100, need to make to pour The power supply structure of water motor 42 has the structure that can be separated.
Therefore, it is prompted in the present embodiment and configures the water motor 42 that pours of weight weight in upper main body 120, and only make to pour water hull Body 800 and the isolated structure of transmission module 600.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 watering shell 800 and to pour water motor 42 be the structure that can be separated.It is described to pour water hull Body 800 configures inside air cleaning module 200, pours the configuration of water motor 42 inside air cleaner module 100.Described in separation When air cleaning module 200, the watering shell 800 is separated from air cleaner module 100 together with sink 30.
In order to realize the watering shell 800 and pour the separated structure of water motor 42, the biography is designed as in the present embodiment Dynamic model block 600 has the structure that can be separated.
Hereinafter, the transmission module to the present embodiment is described in more details.
The rotary force for pouring water motor 42 is passed to watering shell 800 by the transmission module 600, and is had and can be separated Drive mechanism.In the present embodiment, hookup 610,620 is configured in order to realize the transmission that can be separated (coupler)。
Configuration is poured the hookup that water motor 42 combines and be defined as first in the air cleaner module 100 and with described Hookup 610.
It is combined in a detachable fashion by configuration in the air cleaning module 200 and with first hookup 610 Hookup be defined as the second hookup 620.
One in first hookup 610 or the second hookup 620 is public shape, 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 in the form of being inserted into the second hookup 620.With this implementation Example differently, can also second hookup 620 be inserted into the form of first hookup 610 and be combined.
The water motor 42 that pours is arranged in upper main body 120.The water motor 42 that pours is located at 22 upside of air supply motor, with 22 phase of air supply motor is dividually configured.The sink 30 is placed inside the upper main body 120.In the sink 30 When being placed in main body 120, first, second hookup 610,620 is connected in a manner of it can be driven.
The watering motor drive shaft 43 for pouring water motor 42 is configured towards upside.In the upper end of the watering motor drive shaft 43 First hookup 610 is set.
The upper main body 120 includes: upper interior main body 122, and the sink 30 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 shape of matrix 110;Upper guide part 124 configures between the upper interior main body 122 and upper outer main body 128, by air It is guided on the upside of to the upper interior main body 122;Outer visual main body 214, combines with the upper outer main body 128, by see-through The material outside that is formed and configured in visual main body 210.
The configuration of first hookup 610 is in upper interior main body 122.The configuration of first hookup 610 is in upper interior main body 122 Sink insertion space inside.The configuration of first hookup 610 is exposed in upper interior main body 122, and 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 surface 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 It sets.The tooth form of first hookup 610 forms broached-tooth design relative to the circumferencial direction of watering motor drive shaft 43 (serration)。
First hookup 610 includes: the first hookup main body 612;First broached-tooth design 614 is formed in described The lateral surface of one hookup main body 612;Motor drive shaft engaging portion 615 is formed in the inside of the first hookup main body 612, The opening-like state in downside is formed, and watering motor drive shaft 43 is inserted into the motor drive shaft engaging portion 615;Motor drive shaft groove 616 is formed in institute Motor drive shaft engaging portion 615 is stated, the binding force with the watering motor drive shaft 43 is provided;It is anti-to enter block 618, limit the watering horse Up to the insertion depth of axis 43.
The upper side of first hookup 610 is formed in a manner of being plugged.The first hookup main body as a result, 612 upper side is formed as plane.Differently with the present embodiment, the upper side of the first hookup main body 612 can be in opening State is formed, and can be connected with the motor drive shaft engaging portion 615.
First broached-tooth design 614 is relative to watering motor drive shaft 43 along radially protruding.First broached-tooth design 614 It is extended to form longlyer along up and down direction.First broached-tooth design 614 is circumferentially square centered on the motor drive shaft 43 that waters To configured with multiple.First broached-tooth design 614 is formed in an inclined manner along up and down direction.First broached-tooth design 614 form inclination closer to its court of upside direction close with the central axis of watering motor drive shaft 43.
The upside of watering motor drive shaft 43 is inserted into the motor drive shaft engaging portion 615.The motor drive shaft groove 616 and watering Motor drive shaft 43 is assembled in the form of being interference fitted.It is right with the motor drive shaft groove 616 to be formed in the watering motor drive shaft 43 The protrusion (not shown) answered.
The anti-block 618 that enters is supported by the watering motor drive shaft 43, when assembling first hookup 610, limit Make its excessive movement.
It is inserted into first hookup 610 in second hookup 620, rotary force can be transmitted when being combined.
Second hookup 620 includes: the second hookup main body 622;Hookup engaging portion 625 is formed in described The inside of two hookup main bodys 622, the opening-like state in downside are formed, and the first hookup 610 is inserted into the hookup engaging portion 625;Second broached-tooth design 624 is formed in the medial surface of the second hookup main body 622, with first broached-tooth design 614 It is meshed;Transmission shaft engaging portion 627 is formed in the second hookup main body 622, transmits and rotates to the watering shell 800 The transmission shaft 640 of power is combined with the transmission shaft engaging portion 627;Transmission shaft groove 626 is formed in the transmission shaft engaging portion 627, the binding force with the transmission shaft 640 is provided.
The shape of the hookup engaging portion 625 is corresponded to each other with the shape of the first hookup main body 612.Described One hookup main body 612 is inserted into the hookup engaging portion 625.The first hookup main body 612 and the second hookup main body 622 can be separated along up and down direction, and mutual detent is then formed along direction of rotation.
Transmission shaft 640 is located at 620 upside of the second hookup, and is inserted into the transmission shaft engaging portion 627.The transmission Axis 640 is combined in the form of being interference fitted with the transmission shaft groove 626.
The transmission shaft groove 626 is configured on the basis of the motor drive shaft 43 that waters along radial, and canyon topography at.
In the present embodiment, the transmission shaft engaging portion 627 is formed as the space being connected with hookup engaging portion 625. Differently with the present embodiment, the transmission shaft engaging portion 627 can be formed with hookup engaging portion 625 in a manner of mutually separating.
The sectional area of the transmission shaft engaging portion 627 is smaller formed than the sectional area of hookup engaging portion 625.As a result, Step is formed between the transmission shaft engaging portion 627 and hookup engaging portion 625, so as to limit first hookup 610 movement.
Second broached-tooth design 624 has shape corresponding with first broached-tooth design 614, and is mutually nibbled It closes.
Watering motor drive shaft 43 is located at the downside of first hookup 610, and transmission shaft 640 is located at the second hookup 620 Upside.The watering motor drive shaft 43 and transmission shaft 640 can be configured at a column.
First hookup 610 and the second hookup 620 provide clutch function.Only in first hookup 610 and second hookup 620 when combining, the rotary force for the motor drive shaft 43 that waters could be passed to transmission shaft 640.
Since the hookup engaging portion 625 is configured to its downside form that sectional area is wide, upside sectional area is narrow, placing When air cleaning module 100, the combination of first hookup 610 and the second hookup 620 can be easily implemented.
Even if first hookup 610 and the second hookup 620 are not at the state along up and down direction accurate alignment, First, second broached-tooth design 614,624 can also be used to realize aligned in position.
The transmission module 600 is for the rotary force for pouring water motor 42 to be passed to watering shell 800.In the present embodiment In, most of structure setting of the transmission module 600 is in the sink 30, such as a part of structure of the first hookup 610 It is arranged in upper main body 120.
The transmission module 600 includes: transmission housing 630, inside the cylinder 35 of sink 30;Transmission shaft 640, is located at It inside the transmission housing 630, is protruded through the transmission housing 630 and to upside, provides rotation to the watering shell 800 Power;Bearing 670, between the transmission shaft 640 and transmission housing 630;Under second hookup 620, with the transmission shaft 640 End combines, and Xiang Suoshu transmission shaft 640 transmits rotary force;First hookup 610 is combined with watering motor drive shaft 43, can divide From mode combined with second hookup 620, when second hookup 620 combines, pour water motor for described The rotary force of axis 43 passes to second hookup 620.
In the present embodiment, the transmission module 600 is arranged inside cylinder 35, is contacted with cutting with water phase.
In the present embodiment, the transmission housing 630, transmission shaft 640, bearing 670, the configuration of the second hookup 620 are in institute It states inside cylinder 35.
The transmission shaft 640 is arranged in a manner of running through transmission housing 630 along up and down direction.The transmission shaft 640 can It is rotated in the state of running through transmission housing 630.
The transmission housing 630 can be formed by metal material.The transmission housing 630 can be high by corrosion resistance aluminium or Huang Copper material is formed.
The transmission housing 630 is arranged inside sink 30.The sink 30, which is formed with, is exposed the first hookup 610 Insert port 39.The transmission housing 630 closes the upside of the insert port 39.
The transmission shaft 640 runs through the transmission housing 630 along up and down direction.The upper end of the transmission shaft 640 and institute It states watering shell 800 to combine, 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 sink 30, and configures in transmission housing Inside 630.Differently with the present embodiment, second hookup 620 is configurable on the downside of the bottom surface of sink 30.
The configuration of bearing 670 is between transmission housing 630 and transmission shaft 640.In the present embodiment, the transmission shaft 640 are configured in a manner of through the bearing 670.
The transmission housing 630 includes: bear box 650, and the opening-like state in the upper side and lower side is formed;Shell cap 660 (housing cap) is combined with the upside of the bear box 650, and transmission shaft 640 runs through the shell along up and down direction Cap 660;Shaft filler washer 680 (gasket) configures between the shell cap 660 and transmission shaft 640, is clamped in the shell cap 660 and be fixed;Shell elastic component 690 is arranged between bearing 670 and shell cap 660, for providing elastic force.
The transmission shaft 640 is formed with the bearing support end 641 for supporting the bearing 670.The bearing 670 is by the axis Hold the support of support end 641.The downside diameter ratio upside at the bearing support end 641 is larger formed.The shaft filler washer 680 from After the upside insertion of the transmission shaft 640, supported by the bearing support end 641.
The shell cap 660 is combined with the upper end of bear box 650.The shell cap 660 is fixedly clamped in cartridge housing Body 650.The shell cap 660 is formed as ring-shaped.The shell cap 660 is formed with hollow portion 661, the transmission shaft in inside 640 run through the hollow portion 661 along up and down direction.
The shell cap 660 includes: shell cap main body 662, is supported by bear box 650, is formed with and passes through for transmission shaft 640 The hollow portion 661 worn;Cap support portion 664 is formed in the shell cap main body 662, is used to support shaft filler washer 680.
The cap support portion 664 is convexly formed to 640 side of transmission shaft.The shaft filler washer 680 is supported by the cap Portion 664 supports.
The shell cap 660 is located at the lower section of the upper surface of cylinder 35.It is formed in the cylinder 35 for the transmission shaft 640 Perforative cylinder opening portion 39.
The shell 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 sink 30 can be cut off by the shaft filler washer 680 flows into inside cylinder 35.In the upside shape of the cylinder 35 The perforative cylinder hole 36 of the transmission shaft 640 is supplied at having.Shell cap 660 is located at 36 downside of cylinder hole, in the shell cap The 660 configuration shaft filler washers 680.
Also, the shaft filler washer 680 can be cut off water and flow into inside bear box 650.
The transmission shaft 640 through bearing 670, shaft filler washer 680, shell cap 660, cylinder 35 and with watering 800 phase of shell In conjunction with.
The shaft filler washer 680 includes: washer body 682, is close to 664 phase of cap support portion;684 (gasket of washer diaphragm Diaphragm), it is convexly formed from the washer body 682 to transmission shaft 640.
The washer body 682 is formed as the section " ┗ ", and lateral surface and downside are supported by shell cap 660.The pad Circle diaphragm 684 is integrally formed with washer body 682.
The washer diaphragm 684 is mutually close to the lateral surface of transmission shaft 640.The washer diaphragm 684 is in the up-down direction There are two formation, is flowed into dual mode cutting water.
The configuration of shell elastic component 690 is between shell cap 660 and bearing 670.The upper end of shell elastic component 690 Shell cap 660 is flexibly supported, lower end is flexibly supported by bearing 670.
The shell elastic component 690 passes through elastic force to downside pressure bearing 670.In the shell elastic component 690 Under the action of, bearing 670 can be supported by bearing support end 641.
The shell elastic component 690 makes the vibration of bearing 670 reach minimum when transmission shaft 640 rotates.
In the present embodiment, transmission housing 630 is arranged inside the cylinder 35, differently with the present embodiment, the biography Dynamic shell 630 can be to exposing inside sink.
In the present embodiment, the transmission shaft 640 is extended longlyer along up and down direction.Due to the transmission shaft 640 are extended longlyer along up and down direction, can easily increase the capacity of sink 30 as desired.
In the capacity hour of sink 30, second hookup 620 directly can be set in watering shell 800.In the case, may be used The structures such as transmission shaft 640 and bearing 670 are removed, so as to more simplify structure.
When the capacity of sink 30 is big, the long watering shell 800 of lower-upper length is needed.The length of watering shell 800 becomes When long, vibration will be generated when being rotated.That is, in the case where rotary force is only delivered to the downside of watering shell 800, watering Shell 800 such as will be distorted at the deformation, and speed difference occurs for the upper side and lower side of watering shell 800.
Under the action of such deformation or speed difference, a large amount of vibration will be generated in watering shell 800.In particular, inhaling Enter to the watering shell 800 inside and the water that pumps up water will to generate bigger vibration.Described water hull is poured being drawn into In the case that water inside body 800 is configured with eccentric state, bigger vibration will be generated.
In the present embodiment, the transmission shaft 640 in the state of extend along up and down direction longlyer with watering shell 800 center of gravity and upper end combine respectively, therefore are able to solve problem described above.
That is, in the structure of such as the present embodiment, even if the height with sink 30 increases and increases the height of watering shell 800 Degree can also make vibration reach minimum.
Hereinafter, the watering shell to the first embodiment of the present invention is described in more details.
Figure 23 is the perspective view for showing the setting state of watering shell shown in Fig. 4, and Figure 24 is the main view of Figure 23, Figure 25 It is the sectional view splitted along the M-M line of Figure 24, Figure 26 is the exploded perspective view of watering shell shown in Figure 23, and Figure 27 is from figure The perspective view that 26 downside is looked, Figure 28 are the main views of Figure 26, and Figure 29 is the sectional view splitted along the N-N line of Figure 28, figure 30 be the exploded perspective view of transmission shaft and bushing shown in Figure 26, and Figure 31 is the main view of Figure 30, and Figure 32 is the O-O along Figure 31 The sectional view that line is splitted.
The watering shell 800 is the structure for spraying the water stored in sink 30.The watering shell 800 is configured with For the structure pumped up water to be effectively performed to the water stored in sink 30.
The rotary force that water motor 42 is poured in watering shell 800 reception is rotated, and when being rotated, can internally be inhaled After entering the water stored in sink 30, it is pumped up water to upside.The water to pump up water inside to the watering shell 800 passes through injection Mouth 410 is spued.
In the watering shell 800 configured with the unit that pumps up water.The unit that pumps up water is used for (pumping) institute of pumping up water to upside State the water of sink 30.The method pumped up water to the water of sink can there are many.
For example, water is sprayed after being pumped up water by the lift pump.
For example, make water shell rotated, when being rotated, can by with water formed friction or interfere come into Row pumps up water.
In the present embodiment, the structure pumped up water is prompted through the rotation of watering shell 800.In the present embodiment In, the unit that pumps up water is by the friction with water or to interfere water pushing away pump up water groove 810 (groove) to the upper side.
The groove 810 that pumps up water as the unit that pumps up water is formed in the medial surface of the watering shell 800.The groove that pumps up water 810 for improving efficiency of pumping up water.The groove 810 that pumps up water is convexly formed in 800 medial surface of watering shell.It is described to pump up water Groove 810 extends to form longlyer along up and down direction.The groove 810 that pumps up water is relative to watering motor drive shaft 43 or transmission shaft 640 radial are configured.
It is described watering shell 800 lower end and sink 30 bottom surface by it is separated a predetermined distance with formed sucking interval 801, H1.The water of sink 30 is watered by 801 sucking of sucking interval inside shell 800.
The water level H2 of the sink 30 of the watering sprayable water of shell 800 is formed to be higher than sucking interval H1 and lower than spray Loophole 410.The water level H2 includes full-water level.
When water level H2 is lower than sucking interval H1, can not pump up water since water is not inhaled into.In the water level H2 high When jet port 410, the water to pump up water to jet port 410 can not be sprayed.
The watering shell 800 is formed with the open state in its downside.The watering shell 800 is cup-shape.It is described The shell 800 that waters is by the inverted shape of cup.Shell space 805 is formed with inside the watering shell 800.
The cylinder 35 (column) of sink 30 is located inside the watering shell 800, is configured with inside the cylinder 35 Transmission module 600.The watering shell 800 is configured in a manner of coating cylinder 35.
The watering shell 800 is formed, and closer to upside, its plane section becomes more to extend.The cylinder 35 is formed For closer to upside, its plane section becomes more to reduce.The shape of the watering shell 800 and cylinder 35 is for being effectively performed The shape pumped up water.The shell space 805 becomes more to increase closer to its volume of upside.
When the watering shell 800 is rotated, it is inhaled into internal water under the influence of centrifugal force, is poured being tightly attached to 800 inner peripheral surface of water hull body.The groove 810 that pumps up water for being formed in watering 800 inner peripheral surface of shell is provided to internal water is inhaled into Rotary force.
The jet port 410 that the water for that will suck spues to outside is formed in the watering shell 800.In the present embodiment In, the jet port 410 is configured as along horizontal direction discharge water.The water to be pumped up water passes through the jet port 410 to outside It spues.
In the present embodiment, it can be sprayed from the water that the jet port 410 spues to visual main body 210.
The jet port 410 can adjust its number according to design condition.In the present embodiment, the jet port 410 with Mode with difference in height configures multiple in watering shell 800.Jet port by configuration in the upside of the watering shell 800 is determined Justice is the second jet port, and the jet port for the centre configured in watering shell is defined as the first jet port.
The water sprayed from first jet port is for humidifying.The water sprayed from second jet port is for humidifying, pouring Water and rain scape.
The water sprayed from second jet port can be wandered and soak sink humidification medium.
The water sprayed from second jet port can disperse after colliding with visual main body to form rain scape.From The water of the second jet port injection is transformed to small drop, these drops can clean after colliding with visual main body It crosses in the watering of air filtering and utilizes.
When the watering shell 800 is more than first rotation speed to be rotated, can be sprayed from first jet port Water.When the watering shell 800 is more than second rotation speed to be rotated, water can be sprayed from second jet port.
Second rotation speed and first rotation speed are comparably high speed.
Only in watering 800 high speed rotation of shell, could spue water from second jet port.It can be configured For the second jet port discharge water can not be passed through under the speed that the watering shell 800 usually rotates.First spray Loophole spues water in watering all stages for usually being acted of shell.
Second jet port may be configured with multiple.First jet port may be configured with multiple.
When the shell 800 that waters is rotated with usual rotation speed, the water to be pumped up water is at least higher than the first jet port Ground rises.When the watering shell 800 is carried out at high speed rotation, more than the height waterborne for rising to the second jet port pumped up water.
Second jet port can be along the circumferencial direction of watering shell 800 configured with multiple.First jet port It can be along the circumferencial direction of watering shell 800 configured with multiple.
When the watering shell 800 is without rotation, 410 discharge water of jet port can not be passed through.In user only with purification When mode (air cleaner module is acted, and the mode that air cleaning module stops) acting it, water unit 40 is poured Without movement, and only blowing unit 20 is acted.When user only acts it with humidifying mode, the watering Shell 800 is rotated, and passes through the 410 discharge water of jet port.When user drives purification pattern and humidifying mode simultaneously, The water to spue from the jet port 410 can be sprayed to the medial surface of visual main body 210.
Since watering shell 800 is rotated, the visual main body 210 is beaten in the water attack to spue from the jet port 410 Medial surface, and moved along the medial surface of the visual main body 210.
User can confirm to spray the situation of water with visual manner by visual main body 210.The injection table of such water Show in being acted with humidifying mode.During user can intuitively confirm to act with humidifying mode by the injection of water.
In the visual main body 210 because the water sprayed forms drop, the drop will be wandered downwards.
In the present embodiment, the watering shell 800 is made of three parts.Differently with the present embodiment, the watering Shell 800 can be made by one or two component.
The bottom surface of lower end from the sink 30 of the watering shell 800 is separated a predetermined distance to be configured.
The watering shell 800 include: the first watering shell 820, second watering shell 840, watering case lid 860 and Watering driving section 880.
The watering shell 800 is assembled with 640 phase of transmission shaft, configured with for being transmitted to rotation from the transmission shaft 640 The structure of power.In the present embodiment, in the watering shell 800, water driving section 880 and watering case lid 860 and transmission The assembling of 640 phase of axis.The watering shell 800 is combined with transmission shaft 640 in Liang Chu, and is transmitted to rotary force from Liang Chu.
Differently with the present embodiment, the watering shell 800 can combine at one with transmission shaft 640, and from combining One at be transmitted to rotary force.
Also, the other modes that differently with the present embodiment, the watering shell 800 can not be transmission shaft are transmitted to rotation Turn power.For example, the rotary force for pouring water motor can be transmitted in a manner of conveyer belt-pulley.For example, can be transmitted with gear engagement system To the rotary force for pouring water motor.For example, the rotary force for pouring water motor can be transmitted in a manner of chain conveyer.For example, can be with clutch Mode is transmitted to the rotary force for pouring water motor.
Hereinafter, the structure of the transmission shaft 640 is described as follows.
The transmission shaft 640 is held on it and lower end is respectively formed with screw thread 643,644, is formed with bearing branch in outer peripheral surface Support end 641,645 and axis support end 642.
Threaded upper ends 643 and watering 860 phase of case lid assembling.Lower thread 644 is assembled with 620 phase of the second hookup.
The bearing support end 641,645 and axis support end 642 are formed by changing the diameter of transmission shaft 640.Institute It states bearing support end 641,645 and is used to support bearing.The axis support end 642 is used to support watering driving section 880.
The lower thread 644 can be combined directly with the second hookup 620.In the present embodiment, in the second hookup 620 transmission engaging portion 627 configures additional hookup combination member 646, will transmission by the hookup combination member 646 Axis 640 and the second hookup 620 combine.
It is formed with transmission shaft groove 626 along up and down direction in the outer peripheral surface of the hookup combination member 646, in inner circumferential Face is formed with the screw thread (not shown) with 644 phase of lower thread assembling.
Then, each structure of the watering shell 800 is illustrated.
Opening-like state is formed respectively for the upper side and lower side of the first watering shell 820, is formed with and is pumped up water in medial surface Groove 810.The lower end of the first watering shell 820 and the bottom surface of sink 30 are separated a predetermined distance, to form sucking interval 801。
Opening-like state is formed respectively for the upper side and lower side of second watering shell 840, and is assembled in described first and is poured water hull The upper end of body 820.
The watering case lid 860 is combined with the upper end of the second watering shell 840, and covers second watering The upper aspect of shell 840.
The watering driving section 880 and at least one party's phase in the first watering shell 820 or the second watering shell 840 Connection, for delivery to the rotary force of transmission module 600.In the present embodiment, the watering driving section 880 and first watering Shell 820 is connected.
Differently with the present embodiment, it is described first watering shell 820 and second watering shell 840 can in an integrated manner into Row production.Also, differently with the present embodiment, the first watering shell 820 and watering case lid 860 can be in an integrated manner It is made.
The upper lateral section of the first watering shell 820 is formed more widerly than lower lateral section.The first watering shell 820 It is formed and is tilted along up and down direction.The first watering shell 820 can be the narrow conical form in lower lateral section.
The groove 810 that pumps up water is formed with inside the first watering shell 820.The groove 810 that pumps up water is along upper and lower To formation.The groove 810 that pumps up water is radial centered on the motor drive shaft 43 that waters to be configured.It is described pump up water groove 810 can Configured with multiple, protruded towards 800 axis center of watering shell.
The lower end of the first watering shell 820 and the inner bottom surface of sink 30 mutually separate and form sucking interval 801.The The upper end of one watering shell 820 is combined with the lower end of the second watering shell 840.
The first watering shell 820 can mutually be assembled with the second watering shell 840 or phase decomposition.In the present embodiment, institute The first watering shell 820 and the second watering shell 840 are stated by screw in conjunction with being assembled.In the first watering shell 820 Upside outer peripheral surface is formed with screw thread 822, is formed with screw thread 842 in the lower inner circumferential surface of the second watering shell 840.
The screw thread 822 for being formed in the first watering shell 820 is defined as the first screw thread 822, is formed in described second The screw thread 842 of watering shell 840 is defined as the second screw thread 842.
First of the movement for limiting the second watering shell 840 is formed in the downside of first screw thread 822 Baffle 823 (barrier).The first baffle 823 is formed along the circumferencial direction of the first watering shell 820.Described One baffle 823 is formed as band form, and the outside of the watering shell 820 of Xiang Suoshu first is convexly formed.
When shell 820 and the second watering shell 840 are watered in assembling first, the first baffle 823 is tightly attached to described the The lower end of two watering shells 840.The first baffle 823 is more convexly formed outward than first screw thread 822.
Configured with the first 825 (pac king) of liner between first screw thread 822 and first baffle 823.Described One liner 825 is leaked for cutting off water between the first watering shell 820 and the second watering shell 840.First liner 825 It is formed by elastic material.First liner 825 is formed as annular state.
Muscle 824 is set configured with liner in order to fix the position of first liner 825.Muscle 824 is arranged in the liner It is configurable on the extended line of the first screw thread 822.The liner setting muscle 824 can be a part of the first screw thread 822.
First screw thread 822 can be formed with multiple as a result, be distributed in a discontinuous manner.
General jet port 411 is configured in the first watering shell 820.In the present embodiment, the general jet port There are two 411 configurations.Two general jet ports 411 are formed towards mutual opposite direction.
The interior outside of first watering shell 820 is connected by the general jet port 411.In the present embodiment, described one As the inside opening area ratio outer openings area of jet port 411 formed widerly.
It is formed in the outer peripheral surface of the second watering shell 840 and pours hydrofoil 850.The hydrofoil 850 that pours can make humidification empty Gas is flowed.Also, the hydrofoil 850 that pours can be formed along will water shell 800 to the direction of pressure on the downside of downside.Institute Watering shell 800 is stated when being rotated, under the action of the water to pump up water, the watering shell 800 is under pressure to upside.It is described It pours hydrofoil 850 and is preferably formed as the watering shell 800 that presses to downside.
When the watering shell 800 is rotated, the hydrofoil 850 that pours draws in the air on periphery and makes its downward effluent It is dynamic.The air of humidification flow path 106 configured with the watering shell 800 is under the action of the flowing of blowing fan 24, major part It is flowed to 107 side of discharge flow path, the air for pouring 850 periphery of hydrofoil is then towards direction flowing in contrast.
It is described pour hydrofoil 850 and can be formed locally flow opposite air with the air based on blowing fan 24 and flow.It is based on The air flowing for pouring hydrofoil 850 has the effect of that the water particle for making watering 800 periphery of shell is flowed to sink 30.Institute State pour hydrofoil 850 have along downside direction formed wind direction, and draw in humidification flow path 106 water particle effect.
Also, based on the air flowing for pouring hydrofoil 850 in water from water supply flow path 109 to the top of watering shell 800 When falling, the effect that the water that will fall off collects to watering 800 side of shell is executed.
In the case where water supply in the watering shell 800 rotation by water supply flow path 109, water pours water hull with described 800 surface of body collides and disperses in an irregular pattern.It is being supplied water based on the air flowing for pouring hydrofoil 850 When, the phenomenon that water particle that will be dispersed collects to watering 800 surface side of shell can be presented.
The second watering shell 840 is formed with high speed jet port 412,413.The high speed jet port 412,413 directions Visual main body 210 sprays water.In the present embodiment, there are two the configurations of high speed jet port 412,413.The high speed is sprayed Mouth is defined as the first high speed jet port 412 and the second high speed jet port 413.
The first high speed jet port 412 and the second high speed jet port 413 shape in the opposite direction on the basis of transmission shaft 640 At.
In the present embodiment, the first high speed jet port 412 and the second high speed jet port 413 form defined height Difference.The first high speed jet port 412 and the second high speed jet port 413 are configured without in identical height.
Difference of height is formed by the first high speed jet port 412 and the second high speed jet port 413, can be made and visual main body The position of 210 water to collide is differently set.As a result, when the watering shell 800 is rotated, from the first high speed The water that jet port 412 sprays and the water from the injection of the second high speed jet port 413 will pass through mutually different path.
It is spray line by the path definition of the water to collide with the medial surface of visual main body 210.
The spray line that the first high speed jet port 412 is formed is defined as the first spray line, second high speed is sprayed The spray lines that mouth 413 is formed are defined as the second spray line.
In the present embodiment, it on the basis of certain of the visual main body 210, is sprayed from the first high speed jet port 412 Water pass through after, by the water that is sprayed from the second high speed jet port 413 in another height after the stipulated time.That is, institute State visual main body 210 medial surface formed two spray lines, the performance of visual manner in this way, be able to use family more added with Water is being sprayed in the cognition of effect ground.
In the case where the two high speed jet port discharge water from configuration in constant height, an injection will be only formed Line.When the shell 800 that waters is carried out at high speed rotation, even if the first, second high speed jet port 412,413 is in opposite direction, Phase difference will be formed extremely shortly.In the case, cause parablepsia and be considered as wandering water from a spray line.
In addition, in the case where forming two spray lines, since the position that water is collided is different, the sound occurred by collision Sound will also be form differently.That is, the sound occurred from the first spray line and the sound occurred from the second spray line are by different terrain At.Sound equipment difference in this way, user can confirm that watering shell 800 is being rotated with audible means.
By the sound equipment difference of the spray line, there is the effect that running-active status is effectively conveyed to person visually impaired or the person that listens to barrier Fruit.Also, under the situation of not light, the state that humidifying and purifying device is in movement can be also easily verified that.
In addition, being formed in the inside of the second watering shell 840 for inhibiting the moisture film of moisture film rotational flow to inhibit Muscle 870.The moisture film rotational flow refers to the flowing of the medial surface rotation along watering shell 800.
The groove 810 that pumps up water of the first watering shell 820 is to be used to form the moisture film rotational flow, the moisture film suppression Muscle 870 processed is for inhibiting the moisture film rotational flow.
In the first watering shell 820, since it is desired that pump up water to rise to the second watering shell 840 for waterborne, Moisture film rotational flow will be energetically generated, and the water for rising to the second watering shell 840 does not form moisture film rotation then Flowing is more easily sprayed by high speed jet port 412,413.
In the case where forming the moisture film rotational flow of high speed inside the second watering shell 840, water will be along inside Flowing, rather than spued by high speed jet port.
Also, it is detained the water for getting over volume in the second watering shell 840, the vibration formed in the shell 800 that waters becomes It is bigger.The water to pump up water to the second watering shell 840 needs promptly to be sprayed by high speed jet port 412,413, The bias of watering shell 800 can be made to reach minimum, and corresponding vibration is made also to reach minimum.
The moisture film inhibits muscle 870 so that moisture film rotational flow is reached minimum for executing, and makes the inclined of shell 800 of watering accordingly The heart and vibration reach the smallest function.
The moisture film inhibits muscle 870 to be convexly formed in the inside of the second watering shell 840 towards 640 side of transmission shaft.Institute Stating moisture film inhibits muscle 870 to be formed along the direction to intersect with moisture film rotational flow.
The moisture film rotational flow along the second watering shell 840 medial surface twist or circle is flowed, institute Stating moisture film inhibits muscle 870 to be formed preferably along up and down direction.
In the present embodiment, the moisture film inhibits muscle 870 to be formed along vertical direction.The moisture film inhibits muscle 870 can shape It is multiple at having.In the present embodiment, the moisture film inhibits there are three the configurations of muscle 870.Multiple moisture films inhibit muscle 870 to be driven By being configured at equal intervals on the basis of axis 640.
In the present embodiment, it is 5mm that the moisture film, which inhibits the protrusion length of muscle 870,.The moisture film inhibits the protrusion of muscle 870 Length is associated with the thickness of moisture film rotational flow, can diversely be changed according to embodiment.
In the present embodiment, the moisture film inhibits muscle 870 to be formed in a manner of being connected with watering driving section 880.Pass through It is made in a manner of inhibiting muscle 870 to be connected with watering driving section 880 moisture film, mold can be simplified.
The watering driving section 880 is the structure for the rotary force of transmission shaft 640 to be passed to watering shell 800.
In the present embodiment, the watering driving section 880 is connected with the second watering shell 840.It is different from the present embodiment Ground, the watering driving section 880 can be connected with the first watering shell 820.
In the present embodiment, the watering driving section 880 is made in an integrated manner with the second watering shell 840. Differently with the present embodiment, the watering driving section 880 can be with the second watering 840 phase of shell assembling.
The watering driving section 880 includes: bushing setting unit 882, positioned at the axis center of watering shell 800;Watering connection The bushing setting unit 882 is connected by portion 884 with watering shell 800.In the present embodiment, the bushing setting unit 882, Watering interconnecting piece 884 and the second watering shell 840 are injection molded and are made in an integrated manner.
The watering interconnecting piece 884 is made as muscle form.The watering interconnecting piece 884 is on the basis of axis center in radiation Shape is configured, and is formed with multiple.
In the present embodiment, the watering interconnecting piece 884 inhibits muscle 870 to be made in an integrated manner with moisture film.Institute It states watering interconnecting piece 884 and inhibits muscle 870 to be formed in a manner of being connected with moisture film.
The transmission shaft 640 is configured through the bushing setting unit 882.
The opening-like state in downside of the bushing setting unit 882 is formed.It is inserted by the downside of the bushing setting unit 882 Bushing 90 (bushing).
The bushing setting unit 882 and bushing 90 can be separated along up and down direction.The bushing setting unit 882 and lining Set 90 forms mutual detent in a rotational direction.
For this purpose, the side in the bushing setting unit 882 or bushing 90 is formed with bushing detent portion 93, another rectangular At there is bushing detent slot 883.In the present embodiment, it is formed with bushing detent portion 93 in bushing 90, in the formation of bushing setting unit 882 There is bushing detent slot 883.
The bushing detent slot 883 is formed in the medial surface of bushing setting unit 882, in a concave manner.The bushing Detent portion 93 is formed in the lateral surface of bushing 90, in the shape of protrusion.
Bushing detent portion 93 is inserted into bushing detent slot 883 and is clamped.
The bushing 90 is combined with the transmission shaft 640 of transmission module 600.
The bushing 90 combines with the transmission shaft 640 and is transmitted to rotary force.The bushing 90 is preferably by metal Material is formed.In the case where not being hard metal material, it would be possible to can wear, this becomes the reason of causing vibration.
The bushing 90 is formed with along the perforative bushing axis mesoporous 91 of up and down direction.It is inserted into the bushing axis mesoporous 91 The transmission shaft 640.
The bushing 90 reduces vibration when the watering shell 800 rotates.The bushing 90 is located on transmission shaft 640. In the present embodiment, the bushing 90 is located at the center of gravity of the watering shell 800.Since the bushing 90 is located at watering shell 800 center of gravity can significantly reduce the vibration of watering shell 800 when being rotated.
The bushing 90 is located at higher position than the full-water level of sink 30.The bushing 90 is located at than the groove 810 that pumps up water Higher position.
The bushing 90 and transmission shaft 640 are assembled with clamping combination.The bushing 90 is by the transmission shaft 640 Support.
In order to support the bushing 90, transmission shaft 640 is formed with axis support end 642.It is base with the axis support end 642 The diameter of standard, upside is small, and the diameter of downside is big.
The bushing 90 is inserted by the upside of the transmission shaft 640.
To make the abrasion generated reach minimum, the axis support end 642 is formed as taper, cavity or with cambered shape Shape.In the case where the axis support end 642 is formed as right angle, may be ground in assembling process or action process Damage.
In the case where the axis support end 642 is worn, the reason of becoming the movement of bushing 90 and cause vibration.And And in the case where axis support end 642 is worn, bushing 90 will likely be tilted or be moved, and thus cause pair with transmission shaft 640 It is neat bad.Also, in the case where the undesirable situation of alignment of bushing 90 and transmission shaft 640 occurs, bias occurs when being rotated, and Thus cause to shake.
The bushing support end 92 supported by the axis support end 642 is formed in the bushing axis mesoporous 91.The bushing Axis mesoporous 91 is formed, on the basis of the bushing support end 92, on the upside of diameter is small, downside diameter is big.
In the present embodiment, the axis support end 642 and bushing support end 92 are accordingly constituted at one.With the present embodiment Differently, the axis support end 642 and bushing support end 92 may be formed at more than at two.It in the case, can be along the biography The length direction of moving axis 640 is configured with multiple axis support ends 642, is configured with inside bushing axis mesoporous 91 also along length direction Multiple bushing support ends 92.
In the present embodiment, the axis support end 642 and bushing support end 92 are configured in middle section, but the axis branch The position for supportting end 642 and bushing support end 92 is unrelated with function.For example, the axis support end 642 and bushing support end 92 can match Set the upside or downside on bushing axis mesoporous 91.
The transmission shaft 640 is formed with the axis card plane 645 for forming mutual detent with the bushing 90 when being rotated. The axis card plane 645 is formed in the outer peripheral surface of transmission shaft 640, and is formed along up and down direction.The axis card plane 645 and institute Axis support end 642 is stated to be connected.In the present embodiment, the axis support end 642 is configured in the upside of axis card plane 645.
The bushing 90 is formed with bushing card plane 95 corresponding with the axis card plane 645.The bushing card plane 95 For the face for forming bushing axis mesoporous 91.In the present embodiment, the axis card plane 645 and bushing card plane 95 are configured with multiple. Differently with the present embodiment, the axis card plane 645 and bushing card plane 95 can also be configured only at one.
The mutual detent and the axis support end 642 and bushing of the axis card plane 645 and bushing card plane 95 support The mutual detent at end 92 is the alignment unit (all ign) for being aligned the bushing 90.
The mutual detent of the axis card plane 645 and bushing card plane 95 provides the alignment function to vertical direction.It is described The mutual detent of axis support end 642 and bushing support end 92 provides the alignment to horizontal direction.
The mutual detent and the axis card plane 645 and bushing detent of the axis support end 642 and bushing support end 92 The mutual detent in face 95 provides the alignment to mutually different direction.
Since alignment unit provides the alignment to multiple directions, the bushing 90 can be more accurately set, and can Assembly failure is set to reach minimum.
The watering case lid 860 is combined with the upside of the second watering shell 840, pours water hull for closing described second The upside of body 840.The watering case lid 860 is combined with screw fashion with the second watering shell 840.
In the present embodiment, the watering case lid 860 is assembled with 600 phase of transmission module.Differently with the present embodiment, institute The state separated with 600 phase of transmission module can also be formed by stating watering case lid 860.In the watering case lid 860 and transmission shaft In the case that 640 combine, it can more efficiently reduce the bias and vibration of watering shell 800.
The watering case lid 860 includes: lid main body 862, covers the upside opening portion of the second watering shell 840; Lid main board 863 is extended to form in the lid main body 862 to downside, coats the upper end of the second watering shell 840;Liner Muscle 864 is set, the downside of the lid main body 862 is formed in, with the lid main board 863 formation mutually separated a predetermined distance;Axis is solid Determine portion 866, is fixed on the transmission shaft 640;The axis fixed part 866 is connected by reinforcing rib 868 with liner setting muscle 864.
Be formed as round when the lid main body 862 is as viewed from vertical view.The diameter of the lid main body 862 is than the second watering shell 840 diameter is larger formed.
The lid main board 863 forms the periphery of the lid main body 862.The lid main board 863 is formed as ring-shaped, with The lid main body 862 is made in an integrated manner.The lid main board 863 is formed with multiple raised 861 in outer side, institute Protrusion 861 is stated circumferentially to be formed in 360 degree of range.Described raised 861 in separation watering 860 Shi Xiangyong of case lid Family provides gripping sense.
The liner setting muscle 864 is located at the inside of the lid main board 863, separately advises with 863 phase of lid main board Set a distance.The second liner 865 is provided between the lid main board 863 and liner setting muscle 864.
It can be by between the 865 closing watering case lid 860 of the second liner and the second watering shell 840.
The lid main board 863 and the second watering shell 840 can be combined with screw fashion.In the present embodiment, institute It states watering case lid 860 and the second watering shell 840 is assembled with interference fit type.
The axis fixed part 866 is assembled with 640 phase of transmission shaft, is transmitted to rotary force from the transmission shaft 640.
The axis fixed part 866 and transmission shaft 640 can be combined with screw fashion.For this purpose, in the transmission shaft 640 Upper end outer peripheral surface is formed with for the screw thread 643 in conjunction with the screw of the watering case lid 860.
The screw thread for assembling with 640 phase of transmission shaft can be formed in the axis fixed part 866.In the present embodiment In, it is configured with axis fixing component 867 in the axis fixed part 866, the axis fixing component 867 passes through dual injection molding mode With 866 being integrally formed of axis fixed part.In the present embodiment, nut is used as the axis fixing component 867.
Differently with the watering case lid 860, the axis fixing component 867 uses metal material.Due to transmission shaft 640 Formed by metal material, with the transmission shaft 640 with screw fashion in conjunction with part be also required to be formed by metal material, Cai Neng Prevent to wear when being combined or be damaged.It is formed by metal material or the axis the watering case lid 860 is whole In the case that fixed part 866 is formed by metal material, screw thread preferably is formed in the axis fixed part 866 itself.
The diameter of watering case lid 860 to the second watering shell 840 is larger formed.When as viewed from upside, only reveal The watering case lid 860 out, the second watering shell 840 and the first watering shell 820 are then not exposed.
At least part in water supplied as a result, to the water supply flow path 109 can be fallen to the watering case lid 860 It falls.In the case where the watering shell 800 is rotated, the water fallen to the watering case lid 860 pours water hull described Radially outside is sprayed on body lid 860 surface.
The watering case lid 860 of rotation sprays the water of supply along direction of rotation, can present like water is from rain The effect that umbrella is fallen.In particular, water droplet can be multiple raised 861 of the circumferencial direction configuration along the watering case lid 860 It is stripped.
Figure 33 is the sectional view for showing the transmission module of the second embodiment of the present invention.
Differently, transmission shaft 640' and watering shell 800 only exist for the transmission module of the present embodiment and the first embodiment It is combined at one.
In the present embodiment, the transmission shaft 640 ' is only combined with bushing 90, without with watering 860 phase knot of case lid It closes.The transmission shaft 640 ' transmits rotary force to bushing 90, and the bushing 90 is rotated together with watering shell 800.
Remaining structure is identical as the first embodiment, therefore is omitted from being described in detail.
Figure 34 is the sectional view for pouring water unit for showing the third embodiment of the present invention.
The water unit 40 that pours of the present embodiment is made of the first watering shell 1820 and watering case lid 860.The present embodiment Watering shell 1800 compared with first embodiment, length is formed shortlyer.
In the present embodiment, transmission module includes: the first hookup, the second hookup, transmission shaft 640.
Since the height of the watering shell 1800 is shorter, no setting is required for reducing bushing, the transmission housing, axis of vibration The structures such as hold.Due to being not provided with transmission housing in the sink 30', thus no setting is required cylinder.
The transmission shaft 640 is combined with the second hookup 620 and watering case lid 860.
In addition, being configured with jet port 414 in the watering case lid 860.The jet port 414 is towards upside with inclined Mode is formed.The jet port 414 sprays the water to pump up water upwards.
The medial surface of the water and visual main body 210 that spray from the jet port 414 collides.
Remaining structure is identical as the first embodiment, therefore is omitted from being described in detail.
Figure 35 is the sectional view for pouring water unit for showing the fourth embodiment of the present invention.
The present embodiment pours water unit and the first embodiment differently, wherein removal cylinder, transmission housing and constitute. The transmission module of the present embodiment includes: transmission shaft 640, bushing 90.
In particular, transmission shaft 640 is connected directly with water motor 42 is poured, and it is not provided with hookup.
The bottom surface of the sink 30 " is provided with bearing 670, transmission shaft 640 through the bearing 670 and with watering shell 800 combine.
The sink 30 " of the present embodiment is without being provided with cylinder.
Remaining structure is identical as the first embodiment, therefore is omitted from being described in detail.
Above by reference to attached drawing, preferred embodiments of the present invention have been disclosed for illustrative, but the present invention is not limited to the above institutes The specific embodiment stated, in the range of the technical idea of the invention advocated in without departing substantially from claims, this field Those skilled in the art can carry out various deformation implementation to it, such deformation implementation should not be detached from technical idea of the invention or Prospect and individually understood.

Claims (15)

1. a kind of humidifying and purifying device, wherein
Include:
Sink is formed with the side that bottom surface and the periphery from the bottom surface extend to upside, to be formed in inside for storing water Space;
Water shell, configures inside the sink, is separately configured with the bottom surface of the sink, the downside of the watering shell It is internal to suck the water of the sink in opening, the water of sucking is pumped up water to upside when rotated, and is formed with The jet port of the water to be pumped up water to outer jet;
Water motor is poured, is configured on the downside of the bottom surface of the sink, provides rotary force to the watering shell;And
Transmission shaft is configured in the watering enclosure interior, and the lower end of the transmission shaft is combined with the water motor that pours, to upside Extend to be connected with the watering shell, the rotary force for pouring water motor passed into the watering shell,
The watering shell includes:
Axis fixed part, the inner crest face configured in the watering shell, combines with the upper end of the transmission shaft;And
It waters driving section, is protruded in the inner peripheries of the watering shell facing towards the transmission shaft, from the axis fixed part It is combined to downside by separated position with the transmission shaft.
2. humidifying and purifying device according to claim 1, wherein
The watering motor configurations in the lower part of the sink, the transmission shaft through the sink bottom surface and with the watering Shell combines.
3. humidifying and purifying device according to claim 1, wherein
The watering shell further include:
Water interconnecting piece, configures in the watering enclosure interior, is convexly formed to the watering case inside;
The transmission shaft is combined with the watering interconnecting piece to transmit rotary force.
4. humidifying and purifying device according to claim 1, wherein
Further include:
Bushing is arranged in the transmission shaft;
The bushing is formed by metal material.
5. humidifying and purifying device according to claim 4, wherein
The bushing is located at higher position than the full-water level of the sink.
6. humidifying and purifying device according to claim 1, wherein
The sink further include:
Cylinder, the inside configured in the watering shell;
The cylinder it is described watering shell inside be convexly formed to upside, the transmission shaft through the cylinder and with institute Watering shell is stated to combine.
7. humidifying and purifying device according to claim 6, wherein
Further include:
Transmission housing is configured in the inside of the cylinder;
The transmission housing is supported by the inside of the cylinder, and the transmission housing is formed with perforative hollow for the transmission shaft Portion, the transmission shaft are combined through the transmission housing and the cylinder and with the watering shell.
8. humidifying and purifying device according to claim 7, wherein
Further include:
Bearing configures inside the transmission housing;
The transmission shaft is arranged in a manner of through the bearing.
9. humidifying and purifying device according to claim 7, wherein
Further include:
Shaft filler washer configures inside the transmission housing;
The shaft filler washer closes the hollow portion, and the transmission shaft is arranged in a manner of through the shaft filler washer.
10. humidifying and purifying device according to claim 7, wherein
The transmission housing is in conjunction with being fixed on the sink.
11. humidifying and purifying device according to claim 1, wherein
The watering shell further include:
First watering shell is mutually dividually configured with the inside bottom surface of the sink with sucking gap size, the upper side and lower side Opening-like state respectively;
Opening-like state is distinguished in second watering shell, the upper side and lower side, the upper end of the first watering shell is assembled in, with institute The first watering enclosure interior is stated to be connected;And
Watering case lid is combined with the upper end of the second watering shell, covers the upper surface of described second watering shell, described Axis fixed part is arranged in the watering case lid,
The watering driving section configures at least one in the first watering shell, the second watering shell and case lid of watering Side, is transmitted to rotary force from the water motor that pours.
12. humidifying and purifying device according to claim 11, wherein
The upper end of the transmission shaft is combined with the watering case lid.
13. humidifying and purifying device according to claim 11, wherein
Further include:
Bushing is arranged in the watering driving section;
The transmission shaft combines in a manner of through the bushing, and the upper end of the transmission shaft is mutually tied with the watering case lid It closes.
14. humidifying and purifying device according to claim 11, wherein
Further include:
Cylinder is convexly formed in the bottom surface of the sink to upside;
The transmission shaft is combined through the cylinder and with the watering shell, and the cylinder is located under the watering driving section Side.
15. humidifying and purifying device according to claim 14, wherein
Further include:
Transmission housing is configured in the inside of the cylinder;
The transmission housing includes:
Bear box, the opening-like state in the upper side and lower side,
Shell cap combines on the upside of the bear box, and the transmission shaft runs through the shell cap along up and down direction,
Shaft filler washer configures between the shell cap and the transmission shaft, is clamped in the shell cap and is fixed;
Shell elastic component is arranged between the bear box and the shell cap, for providing elastic force.
CN201611019558.XA 2015-10-30 2016-10-31 Humidifying and purifying device Active CN106969457B (en)

Applications Claiming Priority (16)

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US201562248463P 2015-10-30 2015-10-30
US62/248,463 2015-10-30
KR10-2015-0156254 2015-11-07
KR20150156254 2015-11-07
KR10-2015-0156255 2015-11-07
KR20150156255 2015-11-07
KR10-2015-0185876 2015-12-24
KR20150185876 2015-12-24
KR1020160037235A KR20170051142A (en) 2015-10-30 2016-03-28 apparatus for both humidification and air cleaning
KR10-2016-0037235 2016-03-28
US201662355118P 2016-06-27 2016-06-27
US62/355,118 2016-06-27
KR10-2016-0083053 2016-06-30
KR20160083053 2016-06-30
KR10-2016-0129316 2016-10-06
KR1020160129316A KR101957162B1 (en) 2015-10-30 2016-10-06 apparatus for both humidification and air cleaning

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CN204068536U (en) * 2014-08-19 2014-12-31 河南省三马起重机械有限公司 Damping conical rotor machine is used in a kind of driving

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Publication number Priority date Publication date Assignee Title
KR0132123Y1 (en) * 1995-10-05 1999-01-15 이승일 Humidifier by blowing type
JP2003307327A (en) * 2002-04-17 2003-10-31 Rabi:Kk Anion generator
CN101056688A (en) * 2004-11-17 2007-10-17 株式会社大宇电子 Wet type air cleaner
CN101111296A (en) * 2005-02-03 2008-01-23 尹璋植 Centrifugal wet type air cleaner utilizing a spin vaporizer and a spiral on the basis of a labyrinth effect
CN202083055U (en) * 2011-05-17 2011-12-21 宁波真和电器股份有限公司 Air purification and humidification device
CN204068536U (en) * 2014-08-19 2014-12-31 河南省三马起重机械有限公司 Damping conical rotor machine is used in a kind of driving

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KR20170051237A (en) 2017-05-11
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