CN105864946B - A kind of humidifier - Google Patents
A kind of humidifier Download PDFInfo
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- CN105864946B CN105864946B CN201610340963.5A CN201610340963A CN105864946B CN 105864946 B CN105864946 B CN 105864946B CN 201610340963 A CN201610340963 A CN 201610340963A CN 105864946 B CN105864946 B CN 105864946B
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F6/00—Air-humidification, e.g. cooling by humidification
- F24F6/02—Air-humidification, e.g. cooling by humidification by evaporation of water in the air
- F24F6/08—Air-humidification, e.g. cooling by humidification by evaporation of water in the air using heated wet elements
- F24F6/10—Air-humidification, e.g. cooling by humidification by evaporation of water in the air using heated wet elements heated electrically
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F6/00—Air-humidification, e.g. cooling by humidification
- F24F2006/008—Air-humidifier with water reservoir
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Air Humidification (AREA)
Abstract
The present invention relates to a kind of humidifiers, and including the pedestal and liquid reserve tank being fixedly connected, liquid reserve tank is in above the reservoir of pedestal and conveys liquid to reservoir;Pedestal includes pedestal and first assembly on the base and the second component is set side by side in the horizontal direction;First assembly includes the first component with reservoir, and the second component includes the second component with heating tank, and reservoir and heating tank are opening up;Pass through at least one section of channel connection between reservoir and heating tank;The first connectivity part that reservoir is connected to channel is higher than the second connectivity part that heating tank is connected to channel.The present invention improves the heating efficiency of humidifier, reduces energy consumption.Further, the phenomenon that effectively preventing air heats in liquid reserve tank and the liquid in liquid reserve tank be pressed into reservoir, and then preventing liquid storage tank liquid excessive and cause liquid spill.
Description
Technical field
The present invention relates to a kind of technical field of electric appliances, more particularly to a kind of humidifier.
Background technique
Humidifier water tub and heating region currently on the market directly communicates, so that in the hot water and sink of heating region
Cold water constantly carries out heat exchange, so not only waste of energy, but also makes air in water tank due to the cold water heating in sink
Temperature increases, therefore Water in Water Tanks can be pressed into sink or even make gutter spill by air hot in water tank.
For this purpose, occurring being able to achieve the humidifier of intelligent moisturizing.This kind of humidifier increases the electronics member device of intelligent control
Part is unfavorable for marketing to increase complete machine cost.
Therefore not only energy consumption is high for the humidifier of the prior art, and heating efficiency is low, and is easy spilling water.
Summary of the invention
In view of this, the present invention provides a kind of humidifier, main purpose is to improve the heating efficiency of humidifier, reduces energy
Consumption.
In order to achieve the above objectives, present invention generally provides following technical solutions:
The embodiment of the present invention provides a kind of humidifier, including the pedestal and liquid reserve tank being fixedly connected, at the liquid reserve tank
Liquid is conveyed above the reservoir of the pedestal and to the reservoir;
The pedestal includes pedestal and the first assembly being disposed side by side on the pedestal in the horizontal direction and the second component;
The first assembly includes the first component with the reservoir, and second component includes having heating tank
Second component, the reservoir and the heating tank are opening up;
Pass through at least one section of channel connection between the reservoir and the heating tank;
The first connectivity part that the reservoir is connected to the channel is higher than that the heating tank is connected to the channel
Two connectivity parts.
The object of the invention to solve the technical problems also can be used following technical measures and further realize.
Preferably, the reservoir is equipped with first through hole, and the first through hole is first connectivity part, the heating tank
Equipped with the second through-hole, second through-hole is second connectivity part;
The bottom end of the first through hole is higher than the bottom end of second through-hole.
Preferably, the lower section of the reservoir is arranged in the channel.
Preferably, the first assembly is divided into first layer and the second layer, and the first layer of the first assembly is in second
The lower section of layer;
The first component is in the second layer of the first assembly, and the first assembly further includes third member, described
The first layer of the first assembly is arranged in third member, and the third member has and above and below the reservoir corresponding first
The slot bottom of groove, the reservoir is embedded in first groove;
The channel is arranged between the slot bottom outer surface of the reservoir and the slot bottom inner surface of first groove.
Preferably, the slot bottom outer surface of the reservoir and the slot bottom inner surface of first groove fit, while institute
The a part for stating the slot bottom of reservoir, which raises upward, forms gap with the slot bottom inner surface of first groove, the reservoir
The one end for the part that slot bottom raises upward extends at the first through hole, and the other end extends to second through-hole, described convex
The gap risen between part and the slot bottom inner surface of first groove forms the channel.
Preferably, the channel is curved channel and/or broken line channel.
Preferably, the channel forms circular passage along the slot bottom edge of the reservoir.
Preferably, the slot bottom of the reservoir is circle, and the channel is the circle close to the slot bottom edge of the reservoir
Circular passage, the circular ring shape channel are separated into two in the position being connected to the first through hole and/or second through-hole
Section.
Preferably, the width in the channel is 6 millimeters, and the height in the channel is 6 millimeters.
Preferably, the slot bottom of the reservoir is arranged in the first through hole, and second through-hole is arranged in the heating
On the side wall of slot being separated by with the reservoir, the channel does not reach the slot bottom edge of the reservoir;
Sunken regions, the sinking are equipped with close to the position of the heating tank on the slot bottom inner surface of first groove
The bottom surface in region is lower than the bottom end of the first through hole, but is not less than the bottom end of second through-hole;
One end of the sunken regions is connected to the channel, and the other end of the sunken regions extends to and described second
Through-hole connection;
Second through-hole is connected to by the sunken regions with the channel.
Preferably, second through-hole is two, and parallel side-by-side is arranged two second through-holes in the horizontal direction, two
Second through-hole respectively corresponds two sections of circular ring shape channels.
Preferably, second component further includes leading mist structure, and the mist structure setting of leading is in the top of the heating tank
And it is corresponding up and down with the heating tank, the liquid heated through the heating tank becomes steam from the mist guide tube row for leading mist structure
Out.
Preferably, second component is divided into first layer and the second layer, and the first layer of second component is in described the
The first layer of second component is arranged in two layers of lower section, the heating tank, and the mist structure setting of leading is at described second group
The second layer of part.
Preferably, humidifier further include:
The top for leading mist structure is arranged in mist lid out, the mist lid out, and the fog outlet of the mist lid out is led with described
The mist guide tube of mist structure communicates.
Preferably, the first layer of the first layer of the first assembly and second component is an integral molding structure;
The second layer of the second layer of the first assembly and second component is an integral molding structure.
By above-mentioned technical proposal, humidifier of the present invention is at least had the advantage that
A kind of humidifier of the present invention is described by the way that at least one section of channel is arranged between the reservoir and the heating tank
Channel is connected to the reservoir and the heating tank, so that the liquid in the reservoir can only be by described in the inflow of the channel
Heating tank to limit the fluid flow for flowing to heating tank from reservoir, while also limiting the fluid flow of heat exchange.And
And the first connectivity part being connected to the channel due to the reservoir is higher than second that the heating tank is connected to the channel
Connectivity part, therefore liquid unidirectionally can only flow to heating tank from reservoir, and can not flowing back, further reduce the reservoir and
Liquid in the heating tank carries out the possibility of heat exchange, to reduce the thermal loss of the liquid of heating tank, thus improves
The heating efficiency of humidifier, reduces energy consumption.Simultaneously as the reduction of heat exchange, to reduce air liter in liquid reserve tank
High possibility, thus effectively prevent air heats in liquid reserve tank and the liquid in liquid reserve tank is pressed into reservoir, and then prevent
Liquid storage tank liquid is excessive and the phenomenon that cause liquid spill.
The above description is only an overview of the technical scheme of the present invention, in order to better understand the technical means of the present invention,
And can be implemented in accordance with the contents of the specification, the following is a detailed description of the preferred embodiments of the present invention and the accompanying drawings.
Detailed description of the invention
Fig. 1 is a kind of overall structure diagram for humidifier that the embodiment of the present invention provides;
Fig. 2 is a kind of three-dimensional configuration schematic diagram for humidifier that the embodiment of the present invention provides;
Fig. 3 is a kind of pedestal the schematic diagram of the section structure for humidifier that the embodiment of the present invention provides;
Fig. 4 is the I enlarged drawing of Fig. 3;
Fig. 5 is that a kind of liquid for humidifier that the embodiment of the present invention provides flows to floor map;
Fig. 6 is a kind of top view of the pedestal first layer for humidifier that the embodiment of the present invention provides;
Fig. 7 is a kind of three dimensional structure diagram of the pedestal first layer for humidifier that the embodiment of the present invention provides;
Fig. 8 is that a kind of three-dimensional structure at a visual angle of the pedestal second layer for humidifier that the embodiment of the present invention provides is shown
It is intended to;
Fig. 9 is a kind of three-dimensional structure at another visual angle of the pedestal second layer for humidifier that the embodiment of the present invention provides
Schematic diagram;
Figure 10 is a kind of three-dimensional knot at another visual angle of the pedestal second layer for humidifier that the embodiment of the present invention provides
Structure schematic diagram.
Specific embodiment
It is of the invention to reach the technical means and efficacy that predetermined goal of the invention is taken further to illustrate, below in conjunction with
Specific embodiment, structure, feature and its effect applied according to the present invention is described in detail such as in attached drawing and preferred embodiment
Afterwards.In the following description, what different " embodiment " or " embodiment " referred to is not necessarily the same embodiment.In addition, one or more
Special characteristic, structure or feature in a embodiment can be combined by any suitable form.
As shown in fig. 1~fig. 5, a kind of humidifier that one embodiment of the present of invention proposes, including the pedestal being fixedly connected
100 and liquid reserve tank 200, the liquid reserve tank 200 is in 1111 top of reservoir of the pedestal 100 and to the reservoir 1111
Convey liquid.The pedestal 100 includes pedestal 130 and the first assembly being disposed side by side on the pedestal 130 in the horizontal direction
110 and second component 120.The first assembly 110 includes the first component 111 with the reservoir 1111, and described second
Component 120 includes the second component 121 with heating tank 1211, and the reservoir 1111 and the heating tank 1211 are open court
On.It is connected between the reservoir 1111 and the heating tank 1211 by least one section of channel 140.The reservoir 1111 with
The first connectivity part that the channel 140 is connected to is higher than the second connectivity part that the heating tank 1211 is connected to the channel 140.Tool
Body process can be preferably, after the liquid inflow reservoir 1111 in the liquid reserve tank 200 reach a certain height, liquid reserve tank
Gas pressure intensity in 200 reduces, and the sum of gas pressure intensity and liquid pressure in liquid reserve tank 200 reach with the atmospheric pressure of air
When equilibrium state, the liquid in the liquid reserve tank 200 cannot be continued to flow into the reservoir 1111.In the reservoir 1111
Liquid flowed into the heating tank 1211 by the channel 140.The liquid by the heating tank 1211 heating after at
For steam, the outer humidifying air of humidifier is discharged.Preferably, the slot bottom inner surface of the reservoir 1111 is higher than the heating tank
1211 slot bottom inner surface.
A kind of humidifier that one embodiment of the present of invention proposes between the reservoir and the heating tank by setting
At least one section of channel is set, the channel is connected to the reservoir and the heating tank, so that the liquid in the reservoir can only
The heating tank is flowed by the channel, to limit the fluid flow for flowing to heating tank from reservoir, while also being limited
The fluid flow of heat exchange.And since the first connectivity part that the reservoir is connected to the channel is higher than the heating tank
The second connectivity part being connected to the channel, therefore liquid unidirectionally can only flow to heating tank from reservoir, and can not flow back, into one
Step reduces the possibility that the liquid in the reservoir and the heating tank carries out heat exchange, to reduce the liquid of heating tank
Thermal loss, thus improve the heating efficiency of humidifier, reduce energy consumption.Simultaneously as the reduction of heat exchange, to subtract
The raised possibility of air in small liquid reserve tank, thus effectively prevent air heats in liquid reserve tank and by the liquid pressure in liquid reserve tank
The phenomenon that entering reservoir, and then preventing liquid storage tank liquid excessive and cause liquid spill.
Further, as shown in figure 5, first through hole 1112, the first through hole can be set in the reservoir 1111
1112 be first connectivity part.As shown in fig. 7, the second through-hole 1212 can be set in the heating tank 1211, described second is logical
Hole 1212 is second connectivity part.And the bottom end of the first through hole 1112 is higher than the bottom end of second through-hole 1212, with
The flow direction for guaranteeing the liquid is to flow from the first through hole 1112 along the channel 140 to the direction of second through-hole 1212
Dynamic, i.e., the described liquid flows to the heating tank 1211 from the reservoir 1111, prevents liquid from flowing round about, avoids
Heated liquid flows back to the reservoir 1111 and loses heat and cause energy dissipation in heating tank 1211, thus reduces
The energy consumption of humidifier.
Further, as shown in Figure 3 and Figure 4, the channel 140 can be set in the lower section of the reservoir 1111.Tool
Body, the slot bottom inner surface of the reservoir 1111 may include horizontal plane as shown in Fig. 2, Fig. 3, Fig. 8 and Fig. 9, the channel
140 can or less parallel parallel with the horizontal plane.
Further, as shown in Fig. 2, Fig. 7~Figure 10, the first assembly 110 can be divided into first layer 1101 and second
Layer 1102, and the first layer 1101 of the first assembly 110 is in the lower section of the second layer 1102.The first component 111 is in
The second layer 1102 of the first assembly 110, the first assembly 110 further include third member 112, the third member 112
The first layer 1101 of the first assembly 110 is set, and the third member 112 has corresponding with about 1111 reservoir
The first groove 1113.
As shown in Fig. 2~Fig. 4 and Fig. 9~Figure 10, the slot bottom of the reservoir 1111 can be preferably thin-wall construction, described
The slot bottom of reservoir 1111 can be embedded in first groove 1113.The channel 140 can be set in the reservoir
Between 1111 slot bottom outer surface and the slot bottom inner surface of first groove 1113, the slot bottom inner surface of the reservoir 1111
Slot bottom outer surface with the reservoir 1111 can be opposite face.
Preferably, as shown in Fig. 3~Fig. 5 and Fig. 7~Figure 10, the slot bottom outer surface of the reservoir 1111 and described first
The slot bottom inner surface of groove 1113 fits, while a part of the slot bottom of the reservoir 1111 raises upward and described first
The slot bottom inner surface of groove 1113 forms gap, and the one end for the part that the slot bottom of the reservoir 1111 raises upward extends to institute
It states at first through hole 1112, the other end extends to second through-hole 1212, the convex portion and first groove 1113
Slot bottom inner surface between gap form the channel 140.As shown in the figure, the convex portion is the bending section of arch
Point.
Further, as shown in Fig. 5, Fig. 8~Figure 10, the channel 140 can be curved channel and/or broken line channel.
Such as the channel 140 can be arc line shaped, the curved channel of wave linear shape, can also be zigzag broken line channel.Generally
For, curved channel is more smoother than broken line channel, is conducive to the flowing of liquid.The channel 140 can be coiled into arbitrary shape,
So that the length in channel is as long as possible, and the channel 140 is set to generate the effect of detour, and then the heating tank can be reduced
Heat exchange is carried out between colder liquid in hotter liquid in 1211 and reservoir 1111, thus described add can be reduced
Heat loss in heat channel 1211 improves heating efficiency, increases the humidification amount of humidifier.It can also prevent the heating tank 1211
In heat liquid heat is passed in the liquid reserve tank 200 by the reservoir 1111, make the sky in the liquid reserve tank 200
Gas expanded by heating causes more liquid to be pressed into the reservoir 1111, when the volume of the reservoir 1111 is inadequate
When, and overflow liquid.
Preferably, as shown in Fig. 5, Fig. 8~Figure 10, the channel 140 can be for along the slot bottom side of the reservoir 1111
The circular passage that edge is formed.For example, the channel 140 can be for close to institute when the slot bottom of the reservoir 1111 is round
State the circular ring shape channel at the slot bottom edge of reservoir 1111, as shown in figure 5, the circular ring shape channel with the first through hole
It is separately formed at 1112 as two-way, the liquid flows to the heating tank 1211 from two-way respectively.As shown in figure 5, in order to make
The entrance in the circular ring shape channel and outlet distance as far as possible, the entrance, that is, circular ring shape channel and the reservoir
1111 the first connectivity part, the outlet are second connectivity part in the circular ring shape channel and the heating tank 1211, to generate
Good detour effect, reduces the heat exchange of heating tank 1211 and reservoir 1111, and the first through hole 1112 can be set
At the endpoint farthest apart from heating tank 1211 in the circular ring shape channel.
Preferably, the section in the channel 140 is U-shaped structure, it is preferred that its width can be 6 millimeters, while described logical
The height in road 140 may be 6 millimeters.
Further, as shown in Fig. 8, Fig. 9 and Figure 10, the first through hole 1112 passes through the slot bottom of the reservoir 1111
Surfaces externally and internally.As shown in figs. 4 and 7, second through-hole 1212 can be set in the heating tank 1211 and the liquid storage
On the side wall 12111 that slot 1111 is separated by.As shown in Fig. 5, Fig. 8 and Fig. 9, since the channel 140 does not reach the reservoir
1111 slot bottom edge, the connection between the channel 140 and second through-hole 1212 can be by first groove
Close to the position of the heating tank 1211, setting sunken regions 11131 are realized on 1113 slot bottom inner surface, such as Fig. 3, Fig. 4, Fig. 6
With shown in Fig. 7.The bottom surface of the sunken regions 11131 is lower than the bottom end of the first through hole 1112, but is not less than described second
The bottom end of through-hole 1212, to adapt to the liquid from the reservoir 1111 to the flow direction of the heating tank 1211.Such as Fig. 4 institute
Show, one end of the sunken regions 11131 is connected to the channel 140, the other end of the sunken regions 11131 extend to
Second through-hole 1212 is connected to, so that second through-hole 1212 be made to pass through the sunken regions 11131 and the channel 140
Connection.
Preferably, as shown in fig. 7, second through-hole 1212 can be two, two second through-holes 1212 are in water
Square it is arranged on the side wall 12111 to parallel side-by-side, it is logical that two second through-holes 1212 respectively correspond the circular ring shape
The two-way in road, as shown in Figure 5.
Further, after the liquid heating in heating tank 1211 becomes evaporation of vapours, liquid in reservoir 1111 can be after
Afterflow is into heating tank 1211, and after the liquid level in reservoir 1111 is lower, due to gravity, the liquid in liquid reserve tank be will continue to
It flows in reservoir 1111.And after the liquid in liquid reserve tank flows in reservoir, until in liquid reserve tank air pressure add liquid pressure,
When reaching equilibrium state with atmospheric pressure, the liquid in liquid reserve tank is no longer flowed into reservoir 1111.
Further, as shown in Fig. 2~Fig. 4, Fig. 8~Figure 10, second component 120 can also include leading mist structure
1221, the top of the heating tank 1211 and, warp corresponding with about 1211 heating tank is arranged in the mist structure 1221 of leading
The liquid that the heating tank 1211 heats becomes steam from the mist guide tube discharge for leading mist structure 1221.
Further, as shown in Fig. 2~Fig. 4 and Fig. 7~Figure 10, second component 120 can be divided into first layer 1201
With the second layer 1202, the first layer 1201 of second component 120 is in the lower section of the second layer 1202, the heating tank
1211 are arranged in the first layer 1201 of second component 120, and second component 120 is arranged in the mist structure 1221 of leading
The second layer 1202.
Preferably, the first layer of the first layer of the first assembly and second component is an integral molding structure.
Preferably, the second layer of the second layer of the first assembly and second component is an integral molding structure.
Alternatively, first assembly can be fixedly connected with the second layer of the second component by same plate.In the plate face to institute
The direction of pedestal is stated, protrusion is provided with fastening structure, and the fastening structure being arranged corresponding on pedestal is adapted, by first assembly
It is installed on pedestal with the second component fastening.Preferably, the first assembly second layer, the second component second layer, fastening structure and institute
Plate is stated to be integrally formed to be formed.
Preferably, first assembly can also be fixedly connected with the first layer of the second component by another plate.At this point, it can be
Base seat lid.
Further, as shown in Figure 1 and Figure 2, humidifier can also include mist lid 300, and the setting of mist lid 300 out exists
The top for leading mist structure 1221.Specifically, the mist lid 300 out can be fastened on the liquid reserve tank 200, it is described to lead mist
The mist guide tube 12211 of structure 1221 is passed through from the liquid reserve tank 200, and it is described go out mist lid 300 fog outlet 310 with it is described
The mist guide tube 12211 for leading mist structure 1221 communicates.The liquid that heating tank 1211 heats becomes to lead mist structure from described after steam
1221 mist guide tube reach it is described go out mist lid 300 fog outlet 310, be finally discharged in air, make that there was dampness in the air, it is empty to play humidification
The effect of gas.
When assembly, first mounted base upward by one end, that is, small end with mist guide tube has the one end for leading mist structure i.e. big
End downward, then by circular groove similar in internal diameter numerical value in reservoir lower end outer circle and pedestal cooperates, and assembles, then in liquid storage
Liquid reserve tank is assembled above slot, entire pedestal assembly is completed.
The structure that the present invention uses uses detour water supplementing method between reservoir and heating tank, slows down in heating tank
The heat exchange of cold water between hot water and reservoir is conducive to save heat, improves heating efficiency;It also avoids in heating tank
Heat is transmitted in liquid reserve tank by reservoir, causes the generation of liquid spillover.
In conclusion it will be readily appreciated by those skilled in the art that above-mentioned each advantageous manner can under the premise of not conflicting
Freely to combine, be superimposed.
The above described is only a preferred embodiment of the present invention, be not intended to limit the present invention in any form, according to
According to technical spirit any simple modification, equivalent change and modification to the above embodiments of the invention, this hair is still fallen within
In the range of bright technical solution.
Claims (14)
1. a kind of humidifier, which is characterized in that including the pedestal and liquid reserve tank being fixedly connected,
The liquid reserve tank is in above the reservoir of the pedestal and conveys liquid to the reservoir;
The pedestal includes pedestal and the first assembly being disposed side by side on the pedestal in the horizontal direction and the second component;
The first assembly includes the first component with the reservoir, and second component includes second with heating tank
Component, the reservoir and the heating tank are opening up;
Pass through at least one section of channel connection between the reservoir and the heating tank;
The first connectivity part that the reservoir is connected to the channel is higher than the heating tank is connected to the channel second and connects
Logical place.
2. humidifier according to claim 1, which is characterized in that
The reservoir is equipped with first through hole, and the first through hole is first connectivity part, and it is logical that the heating tank is equipped with second
Hole, second through-hole are second connectivity part;
The bottom end of the first through hole is higher than the bottom end of second through-hole.
3. humidifier according to claim 2, which is characterized in that
The lower section of the reservoir is arranged in the channel.
4. humidifier according to claim 2 or 3, which is characterized in that
The first assembly is divided into first layer and the second layer, and the first layer of the first assembly is in the lower section of the second layer;
The first component is in the second layer of the first assembly, and the first assembly further includes third member, the third
The first layer of the first assembly is arranged in component, and the third member has recessed with above and below the reservoir corresponding first
The slot bottom of slot, the reservoir is embedded in first groove;
The channel is arranged between the slot bottom outer surface of the reservoir and the slot bottom inner surface of first groove.
5. humidifier according to claim 4, which is characterized in that
The slot bottom outer surface of the reservoir and the slot bottom inner surface of first groove fit, while the slot of the reservoir
The a part at bottom, which raises upward, forms gap with the slot bottom inner surface of first groove, and the slot bottom of the reservoir raises upward
One end of part extend at the first through hole, the other end extends to second through-hole, the convex portion with it is described
Gap between the slot bottom inner surface of first groove forms the channel.
6. humidifier according to claim 5, which is characterized in that
The channel is curved channel and/or broken line channel.
7. humidifier according to claim 5, which is characterized in that
The slot bottom of the reservoir is circle, and the channel is close to the circular ring shape channel at the slot bottom edge of the reservoir, institute
It states circular ring shape channel and is separated into two sections in the position being connected to the first through hole and/or second through-hole.
8. according to humidifier described in claim 5 or 6 or 7, which is characterized in that
The width in the channel is 6 millimeters, and the height in the channel is 6 millimeters.
9. humidifier according to claim 7, which is characterized in that
The first through hole is arranged in the slot bottom of the reservoir, and second through-hole is being arranged in the heating tank with the storage
On the side wall that liquid bath is separated by, the channel does not reach the slot bottom edge of the reservoir;
Sunken regions, the sunken regions are equipped with close to the position of the heating tank on the slot bottom inner surface of first groove
Bottom surface be lower than the first through hole bottom end, but be not less than second through-hole bottom end;
One end of the sunken regions is connected to the channel, and the other end of the sunken regions extends to and second through-hole
Connection;
Second through-hole is connected to by the sunken regions with the channel.
10. humidifier according to claim 9, which is characterized in that
Second through-hole is two, and parallel side-by-side is arranged two second through-holes in the horizontal direction, and two described second logical
Hole respectively corresponds two sections of circular ring shape channels.
11. the humidifier according to any one of claim 5-7 or 10, which is characterized in that
Second component further includes leading mist structure, it is described lead mist structure setting the top of the heating tank and with the heating
Slot is corresponding up and down, and the liquid heated through the heating tank becomes steam from the mist guide tube discharge for leading mist structure.
12. humidifier according to claim 11, which is characterized in that
Second component is divided into first layer and the second layer, and the first layer of second component is in the lower section of the second layer,
The first layer of second component is arranged in the heating tank, and the mist structure setting of leading is in the second layer of second component.
13. humidifier according to claim 12, which is characterized in that further include:
The top for leading mist structure is arranged in mist lid out, the mist lid out, and the fog outlet of mist lid out leads mist knot with described
The mist guide tube of structure communicates.
14. humidifier according to claim 12 or 13, which is characterized in that
The first layer of the first layer of the first assembly and second component is an integral molding structure;
The second layer of the second layer of the first assembly and second component is an integral molding structure.
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Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN106765810B (en) * | 2016-12-20 | 2022-04-19 | 珠海格力电器股份有限公司 | Warm fog humidifier |
CN106969458B (en) * | 2017-04-24 | 2023-09-26 | 珠海格力电器股份有限公司 | Heating humidifier water storage structure and humidifier |
CN108444024B (en) * | 2018-06-27 | 2023-11-14 | 小熊电器股份有限公司 | Upper water adding humidifier for providing hot fog |
CN110553332B (en) * | 2019-09-25 | 2024-03-19 | 佛山市一格科技有限公司 | Humidifier |
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JP2006084079A (en) * | 2004-09-15 | 2006-03-30 | Tiger Vacuum Bottle Co Ltd | Humidifier |
JP2008039382A (en) * | 2006-08-04 | 2008-02-21 | Wooritec Co Ltd | Upper water supply type humidifier |
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CN2143746Y (en) * | 1992-11-30 | 1993-10-13 | 韩记行股份有限公司 | Humidifier |
CN2171803Y (en) * | 1993-09-11 | 1994-07-13 | 北京市亚都人工环境科技公司 | Light wave humidifier for household |
KR0143839B1 (en) * | 1995-08-30 | 1998-08-01 | 배순훈 | Heater ultrasonic humidifier |
JP2006266606A (en) * | 2005-03-24 | 2006-10-05 | Tiger Vacuum Bottle Co Ltd | Humidifier |
JP2010266092A (en) * | 2009-05-13 | 2010-11-25 | Tiger Vacuum Bottle Co Ltd | Humidifier |
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