CN106288105B - Bottled humidifier - Google Patents

Bottled humidifier Download PDF

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Publication number
CN106288105B
CN106288105B CN201610876935.5A CN201610876935A CN106288105B CN 106288105 B CN106288105 B CN 106288105B CN 201610876935 A CN201610876935 A CN 201610876935A CN 106288105 B CN106288105 B CN 106288105B
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liquid
bottle
liquid storage
channel
storage channel
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CN106288105A (en
Inventor
谭德强
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Foshan Nanhai Keri Electronic Co ltd
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Foshan Nanhai Keri Electronic Co ltd
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    • 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
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/0008Control or safety arrangements for air-humidification
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices

Abstract

The invention relates to a bottled humidifier, which comprises a base, an atomizing device arranged on the base and a controller electrically connected with the atomizing device, wherein the controller is electrically connected with the atomizing device; the liquid atomization device is characterized in that the liquid storage channel is approximately L-shaped and comprises a vertical liquid storage channel and a horizontal liquid storage channel, and the base is also provided with a bottle body connecting mechanism which can be detachably connected with an inverted liquid storage bottle and enables a bottle opening of the liquid storage bottle to be in sealed butt joint with a liquid inlet of the vertical liquid storage channel; atomizing device can dismantle the connection and be in on the liquid outlet of level stock solution passageway, be favorable to having entered into like this the recovery of atomized liquid and the convenient change along with the atomized liquid kind change atomizing device in the stock solution passageway can reduce the residual amount of atomized liquid by at utmost.

Description

Bottled humidifier
Technical Field
The present invention relates to an atomizer that atomizes water or the like to humidify indoor air, and more particularly, to a bottle humidifier that stores atomized liquid using a detachable liquid storage bottle.
Background
The humidifier is generally used for humidifying indoor air to keep the indoor space at proper humidity, and can adjust air smell after additives such as essence are added into atomized liquid, so that the comfort of a user is improved.
For example, chinese patent 201410492905.5 discloses a microporous atomizing humidifier capable of automatically adjusting air pressure, which includes a base 1 and a water storage bottle 2. The side wall of the base 1 is provided with a spray outlet 101, and the inner side of the spray outlet 101 is provided with a micropore atomization sheet 5 which is electrically connected with the circuit board through an atomization head. A connecting sleeve 6 is fixed on the upper portion of an inner cavity of the base 1, and a water inlet 601 is formed in the bottom of the connecting sleeve 6. The base 1 is further provided with a connecting pipe assembly 7 connected with the water inlet 601, the connecting pipe assembly 7 comprises a V-shaped pipe 701 and an inclined pipe 702, a water absorption cotton stick 10 is arranged in the inclined pipe 702, and one end of the water absorption cotton stick 10 is abutted to the microporous atomization sheet 5. In order to keep the air pressure in the inner cavity of the water storage bottle 2 balanced with the external air pressure, the connecting pipe assembly 7 is provided with an air inlet branch pipe 8, the air inlet branch pipe 8 is provided with an automatic one-way air inlet valve 9, and the one-way air inlet is automatically adjusted through the automatic one-way air inlet valve 9.
Still alternatively, chinese utility model patent 201320312867.1 discloses a micropore atomizing humidifier, including upper end open-ended aqua storage tank and back-off in the water tank of aqua storage tank upper end, the delivery port of water tank stretches into in the aqua storage tank, one side of aqua storage tank is equipped with the atomizing head.
Disclosure of Invention
Carry out the analysis discovery to above-mentioned two patents 201410492905.5 and 201320312867.1, the humidifier that above-mentioned two patents are disclosed all belongs to bottled formula humidifier, and the back is atomized completely to the atomizing liquid in the stock solution bottle, can accomplish supplementary atomizing liquid through changing the stock solution bottle, and the fluid infusion operation is very convenient. However, when the liquid in the liquid storage bottle is not completely atomized and needs to be replaced by different kinds of atomized liquid, the operation becomes very difficult. In patent 201320312867.1, a water tank in a humidifier is directly reversed at the upper end of a notch of a water storage tank, a water outlet of the water tank penetrates through the notch to be inserted into the water storage tank, the notch of the water storage tank is much larger than the water outlet of the water tank, the notch of the water storage tank is sealed by a main box body of the water tank, the arrangement mode is not convenient for recovering atomized liquid which flows into the water storage tank into the water tank, and because no sealing device is arranged between the water storage tank and the water tank, when the humidifier is inverted, the atomized liquid in the water storage tank can leak out of the humidifier through a gap between the water storage tank and the water tank. And in patent 201410492905.5, because the slope pipe is the slope upwards setting, must set up the cotton stick that absorbs water for this reason in it and be used for conveying the atomized liquid, remain in a large amount of atomized liquid on the cotton stick that absorbs water can not retrieve, remain atomized liquid on the cotton stick that absorbs water can adulterate the atomized liquid after the change in the atomized liquid that influences the purity of the atomized liquid after the change, also can influence the atomizing smell in later stage. Also, a certain amount of atomized liquid remains in the atomizing heads of 201410492905.5 and 201320312867.1, and for this reason, the structure of the humidifiers of 201410492905.5 and 201320312867.1 does not facilitate the recovery of the atomized liquid.
In view of this, the present invention aims to improve the structure of the humidifier, so that the humidifier not only can be used for conveniently replacing the liquid storage bottle, but also can be used for conveniently and effectively recovering the atomized liquid which flows into the base, thereby greatly reducing the residual amount of the atomized liquid, and reducing or avoiding the influence of the residual atomized liquid on the purity of the replaced atomized liquid and the influence on the atomized smell after the liquid storage bottle is replaced.
Aiming at the defects of the prior art, the invention provides a bottled humidifier, which comprises a base, an atomizing device arranged on the base and a controller electrically connected with the atomizing device; the liquid atomization device is characterized in that the liquid storage channel is approximately L-shaped and comprises a vertical liquid storage channel and a horizontal liquid storage channel, and the base is also provided with a bottle body connecting mechanism which can be detachably connected with an inverted liquid storage bottle and enables a bottle opening of the liquid storage bottle to be in sealed butt joint with a liquid inlet of the vertical liquid storage channel; the atomizing device is detachably connected to the liquid outlet of the horizontal liquid storage channel.
The base is the main part base of humidifier, not only is used for installing functional devices such as atomizing device, controller, can also be used for the fixed stay the stock solution bottle.
Wherein the liquid storage bottle is a container for storing atomized liquid, and the liquid storage bottle is independent from the base but detachably connected to the base.
The vertical liquid storage channel and the horizontal liquid storage channel are communicated liquid storage channels, atomized liquid entering the vertical liquid storage channel from a liquid inlet of the vertical liquid storage channel can enter the horizontal liquid storage channel and flow out from a liquid outlet of the horizontal liquid storage channel. The vertical liquid storage channel and the horizontal liquid storage channel are named after the relative orientation, and under the normal working state of the bottle-type humidifier, the liquid storage channel which is approximately vertically arranged is named as the vertical liquid storage channel, and the liquid storage channel which is approximately horizontally arranged is named as the horizontal liquid storage channel.
The bottle body connecting mechanism is a structure arranged on the base and used for connecting and fixing the liquid storage bottle. The bottle body connecting mechanism can adopt various embodiments, such as:
first, the bottle body connecting mechanism is an internal connecting thread arranged on the liquid inlet. Therefore, the liquid inlet is in spiral sealing connection with the bottle mouth of the liquid storage bottle through the internal connecting threads on the liquid inlet, and the atomized liquid in the liquid storage channel and the atomized liquid in the liquid storage bottle basically cannot leak out through a gap between the liquid inlet and the bottle mouth of the liquid storage bottle no matter the liquid storage bottle is inverted in the normal working process or the base is inverted in the atomized liquid recycling process, so that the atomized liquid can be smoothly recycled.
And in the second mode, the bottle body connecting mechanism is an external connecting thread arranged on the liquid inlet. The external connecting thread can achieve technical effects similar to those of the internal connecting thread, and the technical effects are not repeatedly discussed.
And thirdly, the bottle body connecting mechanism is a connecting cylinder arranged on the outer peripheral wall of the liquid inlet, the liquid inlet extends into the connecting cylinder, and a cylinder inner connecting thread used for connecting the bottle mouth of the liquid storage bottle is arranged on the connecting cylinder. The connecting cylinder can be integrated with the liquid storage channel and can be independent of the liquid storage channel and arranged on the liquid inlet peripheral wall. The connecting cylinder is the tube-shape and has a section of thick bamboo inner chamber that has certain extending height on the vertical direction, for this reason, the connecting cylinder can be used for connecting the location the stock solution bottle can also improve right the installation steadiness of stock solution bottle reduces the degree of swaying of stock solution bottle. In addition, the internal barrel connection thread can achieve technical effects similar to those of the internal barrel connection thread, and the technical effects are not repeatedly discussed. In order to further improve the sealing degree between the liquid inlet and the bottle mouth of the liquid storage bottle, the further technical scheme is that a sealing lamination is arranged on the liquid inlet.
The bottle mouth of the liquid storage bottle is in sealed butt joint with the liquid inlet of the vertical liquid storage channel, the connection relation between the bottle mouth of the liquid storage bottle and the liquid inlet of the vertical liquid storage channel is defined by the characteristics, and the bottle mouth of the liquid storage bottle can be indirectly in butt joint with the liquid inlet of the vertical liquid storage channel through the intermediate transition channel or can be directly in butt joint with the liquid inlet of the vertical liquid storage channel. As for the direct butt joint mode, the bottle mouth of the liquid storage bottle directly rotates on the inner side wall of the liquid inlet of the vertical liquid storage channel in a threaded manner, or the bottle mouth of the liquid storage bottle directly rotates on the outer side wall of the liquid inlet of the vertical liquid storage channel in a threaded manner, or the bottle mouth of the liquid storage bottle abuts against the outer peripheral wall of the liquid inlet of the vertical liquid storage channel and covers the liquid inlet of the vertical liquid storage channel. In any way, after the liquid storage bottle is connected to the bottle body connecting mechanism, the liquid storage bottle is communicated with the vertical liquid storage channel, and the bottle opening of the liquid storage bottle can basically and completely receive atomized liquid flowing back from the liquid inlet of the vertical liquid storage channel.
According to the technical scheme, compared with the prior art, the invention has the beneficial technical effects that:
1. because the liquid storage channel is approximately L-shaped and comprises a vertical liquid storage channel and a horizontal liquid storage channel, and because the horizontal liquid storage channel extends approximately horizontally instead of the inclined pipe in the 201410492905.5 patent extending upwards obviously in an inclined way, a water absorption cotton stick is not needed to be arranged in the horizontal liquid storage channel for conveying atomized liquid, and the water absorption cotton stick is prevented from storing a large amount of residual atomized liquid.
2. Because atomizing device can dismantle the connection on the liquid outlet of level stock solution passageway, for this reason, atomizing device is a device that can change conveniently, also can avoid remaining through changing atomizing device when changing the atomizing liquid in the difference atomizing liquid influences the atomizing liquid after changing the atomizing liquid that atomizing device is last.
3. The bottle body connecting mechanism is arranged on the base and can be detachably connected with the inverted liquid storage bottle, and the bottle opening of the liquid storage bottle is in butt joint with the liquid inlet of the vertical liquid storage channel, so that atomized liquid can be replaced together with the liquid storage bottle when the atomized liquid is replaced, and the atomized liquid flowing into the liquid storage channel can be conveniently recycled into the liquid storage bottle by the mode that the bottle opening of the liquid storage bottle is in butt joint with the liquid inlet of the vertical liquid storage channel.
In conclusion, the stock solution bottle with atomizing device can dismantle the connection and be in on the bottled formula humidifier and the horizontal stock solution passageway's of roughly level setting mode is favorable to having entered into the recovery of atomized liquid and the atomizing device is changed along with the transform of atomized liquid kind conveniently in the stock solution passageway, can reduce the residual amount of atomized liquid to the at utmost.
Further technical scheme can also be, atomizing device includes micropore atomizing piece, left casing and right casing be provided with on the casing of a left side be used for with the inlet channel of liquid outlet intercommunication be provided with out the fog passageway on the casing of a right side, micropore atomizing piece passes through sealing device and seals the setting between fog passageway and inlet channel. Like this, follow the atomized liquid that the liquid outlet flows into by in the inlet channel micropore atomizing piece atomizes for the atomizing steam, the atomizing steam passes through go out the fog passageway and carry in the external space.
The atomizing device further comprises a pair of spiral conductive springs arranged beside the micropore atomizing sheet, and the tail ends of the pair of spiral conductive springs are respectively and electrically connected with the positive electrode layer and the negative electrode layer of the micropore atomizing sheet; and the left shell is provided with a pair of first conductive terminals which are respectively electrically connected with the head ends of the spiral conductive springs.
The further technical scheme can also be that a recessed area for installing the atomization device is arranged on the base, and a liquid outlet of the horizontal liquid storage channel is communicated with the recessed area; and the recessed area is also provided with a second conductive terminal which can be electrically connected with the first conductive terminal, and the second conductive terminal is electrically connected with the controller. Like this, the depressed area can be used for accomodating fixedly atomizing device to and to first conductive terminal and second conductive terminal protect, avoid at atomizing in-process, the atomizing steam splash falls on them and causes the damage to them.
The invention, having the above features and advantages, may be applied to humidifiers, particularly bottle humidifiers.
Drawings
Fig. 1 is a schematic perspective view of a bottle humidifier to which the present invention is applied;
fig. 2 is an exploded view of a bottle humidifier to which the present invention is applied;
FIG. 3 is a schematic sectional view of the liquid storage passage 4 with the connector barrel 5 mounted thereon;
fig. 4 is a schematic sectional view of the atomizing device 8.
Detailed Description
As shown in the figure, the present invention provides a bottle humidifier, which includes a base 1, an atomizing device 8 disposed on the base 1, and a controller 6 electrically connected to the atomizing device 8; the base 1 is provided with a liquid storage channel 4, the atomizing device 8 is used for atomizing liquid in the liquid storage channel 4, and the atomizing device is characterized in that the liquid storage channel 4 is approximately L-shaped and comprises a vertical liquid storage channel 42 and a horizontal liquid storage channel 41, the base 1 is also provided with a bottle body connecting mechanism, and the bottle body connecting mechanism can be detachably connected with an inverted liquid storage bottle 3 and enables a bottle mouth 30 of the liquid storage bottle 3 to be in sealing butt joint with a liquid inlet 420 of the vertical liquid storage channel 42; the atomization device 8 is detachably connected to the liquid outlet 410 of the horizontal liquid storage channel 41.
The structure of the bottle humidifier according to the present invention will be further described with reference to the accompanying drawings.
As shown in fig. 1 and 2, the base 1 is a main body base of the humidifier, and includes a left base housing 10 and a right base housing 11 which are arranged left and right, the left base housing 10 and the right base housing 11 are fastened together to form a base housing accommodating chamber therebetween, and functional components such as a controller 6, a liquid storage channel 4, and a water level checking device 7 for checking a liquid storage amount of the liquid storage channel 4 are accommodated in the base housing accommodating chamber.
Be provided with on the left seat casing 10 and be used for with the electrically conductive inserted sheet 100 of power supply socket plug-in connection, electrically conductive inserted sheet 100 with controller 6 electricity is connected be provided with on the right seat casing 11 and be used for installing atomizing device 8's depressed area 110. A communication hole 111 is provided at a substantially central position of the recessed area 110, a second conductive terminal 112 capable of being electrically connected to a first conductive terminal 87 to be discussed later is provided on a hole peripheral wall of the communication hole 111, and the second conductive terminal 112 is electrically connected to the controller 6. In this way, the recessed area 110 can be used for accommodating and fixing the atomization device 8, and protecting the first conductive terminal 87 and the second conductive terminal 112, so as to prevent the atomization steam from splashing onto the first conductive terminal 87 and the second conductive terminal 112 and damaging the first conductive terminal and the second conductive terminal in the atomization process.
As shown in fig. 2 and 4, the atomizing device 8 includes a microporous atomizing sheet 84, a left housing 82 and a right housing 81, a liquid inlet channel 820 for communicating with the liquid outlet 410 is disposed on the left housing 82, a mist outlet channel 810 is disposed on the right housing 81, and the microporous atomizing sheet 84 is hermetically disposed between the mist outlet channel 810 and the liquid inlet channel 820 through a sealing device. Specifically, the right and left sides of the microporous atomization sheet 84 are respectively provided with an annular sealing member (86, 85), the annular sealing member 86 is arranged between the microporous atomization sheet 84 and the right housing 81 in a sealing manner, and the annular sealing member 85 is arranged between the microporous atomization sheet 84 and the left housing 82 in a sealing manner. Thus, the atomized liquid flowing out from the liquid outlet 410 flows into the liquid inlet channel 820 and is atomized into atomized vapor by the microporous atomizing sheet 84, and the atomized vapor is conveyed out of the external space through the mist outlet channel 810. The atomization device 8 further comprises a pair of spiral conductive springs 83 arranged beside the micropore atomization sheet 84, and the tail ends of the pair of spiral conductive springs 83 are respectively electrically connected with the positive electrode layer and the negative electrode layer of the micropore atomization sheet 84; the left housing 82 is provided with a pair of first conductive terminals 87 electrically connected to the head ends of the coil conductive springs 83, respectively. Upon removably attaching the atomizing device 8 within the recessed area 110, the first conductive terminal 87 is electrically connected to the second conductive terminal 112 to provide an electrical signal to the microporous atomizing sheet 84. Because atomizing device 8 releasable connection is in on the liquid outlet 410 of stock solution passageway 4, for this reason, atomizing device 8 is a device that can change conveniently, also can avoid remaining through changing atomizing device 8 when changing the atomizing liquid in the difference atomizing liquid the atomizing liquid purity after changing is influenced to the atomizing liquid on atomizing device 8.
As shown in fig. 2 and 3, the liquid storage channel 4 is substantially L-shaped and includes a vertical liquid storage channel 42 and a horizontal liquid storage channel 41, and a liquid outlet 410 of the horizontal liquid storage channel 41 extends out of the recessed area 110 through the communication hole 111 of the right seat housing 11. The vertical liquid storage channel 42 and the horizontal liquid storage channel 41 are communicated liquid storage channels, and the atomized liquid entering the vertical liquid storage channel 42 from the liquid inlet 420 of the vertical liquid storage channel 42 can enter the horizontal liquid storage channel 41 and flow out from the liquid outlet 410 of the horizontal liquid storage channel 41. The vertical liquid storage channel 42 and the horizontal liquid storage channel 41 are named after their relative orientations, and in the normal working state of the bottle humidifier, the liquid storage channel 4 arranged approximately vertically is named as the vertical liquid storage channel 42, and the liquid storage channel 4 arranged approximately horizontally is named as the horizontal liquid storage channel 41. Since the horizontal reservoir channel 41 extends generally horizontally, rather than extending significantly obliquely upward like the angled tube of 201410492905.5, a water-absorbent swab is not required to be disposed within the horizontal reservoir channel 41 to deliver the aerosolized liquid, and is prevented from storing residual aerosolized liquid.
The base 1 is further provided with a bottle body connecting mechanism which is a structural body arranged on the base 1 and is used for connecting and fixing the liquid storage bottle 3. The bottle body connecting mechanism can adopt various embodiments, such as:
first, the bottle body connecting mechanism is an internal connecting thread provided on the liquid inlet 420. Therefore, the liquid inlet 420 is in spiral sealing connection with the bottle mouth 30 of the liquid storage bottle 3 through the internal connecting threads on the liquid inlet 420, and the atomized liquid in the liquid storage channel 4 and the atomized liquid in the liquid storage bottle 3 basically cannot leak out through a gap between the liquid inlet 420 and the bottle mouth 30 of the liquid storage bottle 3 no matter the liquid storage bottle 3 is inverted in the normal working process or the base 1 is inverted in the atomized liquid recycling process, so that the atomized liquid can be recycled smoothly.
Secondly, the bottle body connecting mechanism is an external connecting thread arranged on the liquid inlet 420. The external connecting thread can achieve technical effects similar to those of the internal connecting thread, and the technical effects are not repeatedly discussed.
Thirdly, as shown in fig. 2, the bottle body connecting mechanism is a connecting cylinder 5 disposed on the outer peripheral wall of the liquid inlet 420, the liquid inlet 420 of the vertical liquid storage channel 42 extends into the connecting cylinder 5, and the connecting cylinder 5 is disposed with a cylinder inner connecting thread 500 for connecting the bottle opening 30 of the liquid storage bottle 3. The connector 5 is a structure which is provided on the outer peripheral wall of the liquid inlet 420 through a connector gasket 51 independently of the liquid storage passage 4, but the connector 5 may be formed integrally with the liquid storage passage 4. Connecting cylinder 5 is the tube-shape and has a section of thick bamboo inner chamber 50 that has certain extending height on the vertical direction, for this reason, connecting cylinder 5 can be used for connecting the location stock solution bottle 3 can also improve the installation steadiness of stock solution bottle 3 reduces the degree of swaying of stock solution bottle 3. In addition, the barrel internal connection thread 500 can achieve technical effects similar to those of the internal connection thread described above, and the discussion thereof will not be repeated. In order to further improve the sealing degree between the liquid inlet 420 and the bottle mouth 30 of the liquid storage bottle 3, a sealing lamination 9 is further arranged on the liquid inlet 420.
In use, the liquid storage bottle 3 is screwed on the connecting thread 500 in the barrel, the bottle mouth 30 of the liquid storage bottle 3 is pressed on the sealing lamination 9 and covers the liquid inlet 420 of the vertical liquid storage channel 42, the liquid inlet 420 extends into the liquid storage bottle 3, the bottle mouth 30 of the liquid storage bottle 3 is in sealing butt joint with the liquid inlet 420 of the vertical liquid storage channel 42, so that the liquid storage bottle 3 and the vertical liquid storage channel 42 are communicated with each other, and the bottle mouth 30 of the liquid storage bottle 3 can substantially and completely receive atomized liquid flowing out from the liquid inlet 420 of the vertical liquid storage channel 42.
In order to make the bottle mouth 30 of the liquid storage bottle 3 and the liquid inlet 420 of the vertical liquid storage channel 42 abut against each other, an indirect abutting manner may be adopted in addition to the above-mentioned direct abutting manner, for example, the bottle mouth 30 of the liquid storage bottle 3 and the liquid inlet 420 of the vertical liquid storage channel 42 are indirectly abutted via an intermediate transition channel.
Because the bottle body connecting mechanism is further arranged on the base 1, the bottle body connecting mechanism can be detachably connected with the inverted liquid storage bottle 3 and enables the bottle mouth 30 of the liquid storage bottle 3 to be in butt joint with the liquid inlet 420 of the vertical liquid storage channel 42, so that atomized liquid can be replaced together with the liquid storage bottle 3 when the atomized liquid is intentionally replaced, and the atomized liquid flowing into the liquid storage channel 4 can be conveniently recycled into the liquid storage bottle 3 by the butt joint of the bottle mouth 30 of the liquid storage bottle 3 and the liquid inlet 420 of the vertical liquid storage channel 42.
As shown in fig. 2 and 3, the water level check device 7 is provided in the horizontal liquid storage channel 41 in order to detect the amount of the liquid stored in the liquid storage channel 4. The water level checking device 7 includes a light-transmitting mirror 70 and a liquid level control circuit board 75. The light-transmitting mirror 70 is provided with two mutually perpendicular inclined mirror surfaces (710, 711). An optical signal transmitting terminal 73 and an optical signal receiving terminal 74 are provided on the liquid level control circuit board 75. The optical signal transmitting terminal 73 and the optical signal receiving terminal 74 are respectively disposed corresponding to the tilt mirrors (710, 711). When no liquid exists in the liquid storage channel 4, the optical signal transmitting end 73 irradiates the inclined mirror surface 710, most optical signals are refracted to the inclined mirror surface 710 through the refraction effect, then are refracted to the optical signal receiving end 74, and the optical signal receiving end 74 converts the optical signals into electric signals after receiving the optical signals and sends the electric signals to the liquid level control circuit board 75 to form water shortage signals. When there is liquid in the liquid storage channel 4, after the optical signal of the optical signal transmitting end 73 irradiates the inclined mirror 710, most of the optical signal is refracted into the liquid through the refraction of the liquid, and when the optical signal receiving end 74 cannot receive the optical signal, the liquid level control circuit board 75 determines that the liquid exists.
In conclusion, stock solution bottle 3 with atomizing device 8 can dismantle the connection and be in on the bottled formula humidifier and the horizontal stock solution passageway 41's of roughly horizontal setting mode is favorable to having entered into the recovery of the atomized liquid in stock solution passageway 4 and change atomizing device along with the transform of atomized liquid kind conveniently, can reduce the residual amount of atomized liquid to the at utmost.

Claims (8)

1. The bottled humidifier comprises a base, an atomizing device arranged on the base and a controller electrically connected with the atomizing device; the liquid atomization device is characterized in that the liquid storage channel is approximately L-shaped and comprises a vertical liquid storage channel and a horizontal liquid storage channel, and the base is also provided with a bottle body connecting mechanism which can be detachably connected with an inverted liquid storage bottle and enables a bottle opening of the liquid storage bottle to be in sealed butt joint with a liquid inlet of the vertical liquid storage channel; the atomizing device is detachably connected to the liquid outlet of the horizontal liquid storage channel.
2. The bottle humidifier of claim 1, wherein the bottle connecting mechanism is an internal connecting thread disposed on the liquid inlet.
3. The bottle humidifier of claim 1, wherein the bottle body connecting mechanism is an external connecting thread provided on the liquid inlet.
4. The bottle humidifier according to claim 1, wherein the bottle connecting mechanism is a connecting cylinder disposed on an outer peripheral wall of the liquid inlet, the liquid inlet extends into the connecting cylinder, and a cylinder inner connecting thread for connecting a bottle mouth of the liquid storage bottle is disposed on the connecting cylinder.
5. The bottle humidifier of claim 4 wherein a sealing lamination is provided on said liquid inlet.
6. A bottle humidifier according to any one of claims 1-5, wherein said atomizing device includes a microporous atomizing sheet, a left housing and a right housing, a liquid inlet channel for communicating with said liquid outlet is disposed on said left housing, a mist outlet channel is disposed on said right housing, and said microporous atomizing sheet is sealingly disposed between said mist outlet channel and said liquid inlet channel by a sealing device.
7. The bottled humidifier according to claim 6, wherein said atomizing means further comprises a pair of spiral conductive springs disposed beside said microporous atomizing sheet, and tail ends of said pair of spiral conductive springs are electrically connected to positive and negative electrode layers of said microporous atomizing sheet, respectively; and the left shell is provided with a pair of first conductive terminals which are respectively electrically connected with the head ends of the spiral conductive springs.
8. The bottle humidifier according to claim 7, wherein a recessed area is provided on the base for mounting the atomizing device, and a liquid outlet of the horizontal liquid storage channel is connected to the recessed area; and the recessed area is also provided with a second conductive terminal which can be electrically connected with the first conductive terminal, and the second conductive terminal is electrically connected with the controller.
CN201610876935.5A 2016-10-09 2016-10-09 Bottled humidifier Active CN106288105B (en)

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