WO2020052173A1 - 加湿器及取暖器 - Google Patents

加湿器及取暖器 Download PDF

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Publication number
WO2020052173A1
WO2020052173A1 PCT/CN2018/125090 CN2018125090W WO2020052173A1 WO 2020052173 A1 WO2020052173 A1 WO 2020052173A1 CN 2018125090 W CN2018125090 W CN 2018125090W WO 2020052173 A1 WO2020052173 A1 WO 2020052173A1
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Prior art keywords
storage cavity
water storage
cavity
fan
humidifier
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PCT/CN2018/125090
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English (en)
French (fr)
Inventor
赵诚
罗进
康宽洋
杨鑫
谢新艳
Original Assignee
广东美的环境电器制造有限公司
美的集团股份有限公司
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Application filed by 广东美的环境电器制造有限公司, 美的集团股份有限公司 filed Critical 广东美的环境电器制造有限公司
Publication of WO2020052173A1 publication Critical patent/WO2020052173A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • 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
    • 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
    • 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
    • F24F6/08Air-humidification, e.g. cooling by humidification by evaporation of water in the air using heated wet elements
    • F24F6/10Air-humidification, e.g. cooling by humidification by evaporation of water in the air using heated wet elements heated electrically
    • 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

Definitions

  • the invention relates to the technical field of household appliances, in particular to a humidifier and a heater.
  • the water storage cavity and the atomization cavity are isolated from each other, and the water in the water storage cavity is quantitatively supplied to the atomization cavity through a certain control structure.
  • the water is atomized by an oscillation plate assembly, and an additional special separate
  • the provided mist exhaust pipe exhausts the mist, so the prior art humidifiers are large in size and difficult to achieve small size design.
  • the existing humidifiers are used in a single way and can only be used as separate products. Use in other products with small installation space.
  • the main purpose of the embodiments of the present application is to provide a humidifier and a heater with a simple structure and a small size.
  • a humidifier which includes a housing component, a cover component, an oscillating plate component, and a fan; and a water storage cavity and a receiving cavity are formed inside the housing component.
  • an isolation column the water storage cavity and the storage cavity are isolated from each other in the up-down direction, the isolation column extends from the storage cavity into the water storage cavity, and the water storage cavity is formed to be open with an opening facing upward
  • a mounting hole is formed at an interface between the water storage cavity and the receiving cavity
  • the cover assembly includes a cover body, and the cover body cover is disposed at an opening of the water storage cavity, and the cover
  • a water injection port communicating with the water storage cavity is formed on the body body
  • an exhaust port communicating with the water storage cavity is formed in the cover assembly and / or the housing assembly
  • the oscillating plate assembly is disposed at The installation hole on one side of the receiving cavity to form mist in the air on the top of the water storage cavity; the fan is located in the receiving cavity, and the airflow generated by the fan is introduced through the isolation column In the air in the water storage cavity.
  • the fan is close to a side wall of the accommodating cavity, and the isolation column extends upward from a corresponding position of an air outlet of the fan.
  • the side wall and / or the bottom wall of the accommodating cavity is formed with an air inlet which is in communication with the air inlet of the fan.
  • the humidifier further includes a circuit board, the circuit board is placed vertically, the fan and the circuit board are located on the same side of the oscillating board assembly in the horizontal direction, and the air inlet is located on the circuit
  • the board is on the bottom wall or side wall of the receiving cavity facing away from the fan.
  • the cover assembly includes an air cylinder extending downward from the lower surface of the cover body, the air cylinder cover is disposed above the isolation column and the installation hole, and the exhaust port It is formed on the cover assembly, the exhaust port is located inside the air cylinder, and the water injection port is located outside the air cylinder.
  • a space is formed between the inner wall of the water storage cavity and the isolation column, and a part of the structure of the air guide tube is inserted into the space.
  • the air guide tube includes a first portion surrounding the outside of the separation column, a second portion located at the periphery of the mounting hole, and a third portion located at the periphery of the exhaust port.
  • a necking structure is formed at a junction between the first and second portions; the second portion forms a structure with large middle ends and small ends, and a middle portion of the second portion is formed with the
  • the mounting hole has a concentric arc structure and is tangent to both end portions of the second portion.
  • an air outlet is formed on a side wall of the upper end of the isolation column, and the air outlet faces a position above the installation hole.
  • exhaust port and the isolation column are respectively located on opposite sides of the housing component with the largest straight line distance in the horizontal plane projection.
  • the housing assembly includes a bottom plate, and a side plate and a partition plate integrally formed, the side plate has a hollow structure with two ends open, and the bottom plate is detachably connected to a lower end of the side plate.
  • a partition is located between the inner walls of the side plates to separate the receiving cavity and the water storage cavity.
  • the humidifier further includes a water supply component, the water supply component is installed at a water injection port of the cover body, and a lower end of the water supply component extends into the water storage cavity.
  • Another aspect of the embodiments of the present application further provides a heater, which includes the humidifier described above.
  • the airflow generated by the fan can carry the mist in the upper cavity of the water storage cavity through the exhaust port, and there is no need to separately set a special mist exhaust pipe, so the overall structure of the humidifier is more compact and the product design
  • the size can be smaller and takes up less space.
  • FIG. 1 is a schematic diagram of an explosion structure of a humidifier according to a first embodiment of the present application
  • FIG. 2 is a schematic structural diagram of a housing component of the humidifier shown in FIG. 1;
  • FIG. 3 is a top view of the housing assembly and the air cylinder shown in FIG. 2;
  • FIG. 4 is a cross-sectional view taken along the direction A-A in FIG. 3, where the direction of the arrow indicates the direction of airflow;
  • FIG. 5 is a cross-sectional view taken along the direction B-B in FIG. 4, wherein a water supply component is added;
  • FIG. 6 is a schematic structural diagram of a cover assembly of the humidifier shown in FIG. 1;
  • FIG. 7 is a schematic structural diagram of a humidifier according to a second embodiment of the present application, in which an arrow direction indicates a flow direction of an airflow.
  • the humidifier includes a housing component 2, a cover component 1, an oscillation plate component 5, a fan 3, a circuit board 4, and a water supply component 6.
  • the housing assembly 2 is formed with a water storage cavity 20 and a storage cavity 21 which are isolated from each other in the up-down direction, and a separation column 22 extending from the storage cavity 21 into the water storage cavity 20.
  • the water storage cavity 20 is formed to open upwards.
  • a mounting hole (not shown) is formed at the junction of the water storage cavity 20 and the storage cavity 21, and the oscillating plate assembly 5 is disposed at the mounting hole on the side of the storage cavity 21 so as to be in the air on top of the water storage cavity 20. Formation of mist.
  • the cover assembly 1 includes a cover body 10, which is disposed over the opening of the water storage cavity 20.
  • a water injection port 101 is formed on the cover body 10 and communicates with the water storage cavity 20.
  • the cover assembly 1 and / or the housing assembly 2 are formed with an exhaust port 100 communicating with the water storage cavity 20, and are formed as a cavity above the lower surface of the cover body 10 and the liquid level of the water storage cavity 20, and the oscillating plate
  • the mist generated by the module 5 is collected in the cavity and can be discharged through the exhaust port 100.
  • the fan 3 is located in the accommodating chamber 21, and the airflow generated by the fan 3 is introduced into the air in the upper part of the water storage chamber 20 through the isolation column 22.
  • the air flow generated by the fan 3 can carry the mist in the upper cavity of the water storage chamber 20 through
  • the air outlet 100 is exhausted, and there is no need to separately set a mist exhaust pipe, so the overall structure of the humidifier is more compact, the product design size can be smaller, and it takes up little space, which can be used as a stand-alone product alone or can be combined in the installation space.
  • the exhaust port 100 may be formed on the cover assembly 1 or the housing assembly 2, or the cover assembly 1 and the housing assembly 2 may simultaneously form a drain communicating with the water storage cavity 20. Air port 100. It can be understood that the cover assembly 1 and the housing assembly 2 simultaneously form the exhaust port 100 in communication with the water storage chamber 20, which includes the following three cases: one is that the cover assembly 1 and the housing assembly 2 are both provided with There is an exhaust port 100 communicating with the water storage chamber 20; the other is that the gap between the cover assembly 1 and the housing assembly 2 can also serve as the exhaust port 100; the other is the cover assembly 1 and the shell
  • the body assembly 2 is provided with an exhaust port 100 in communication with the water storage chamber 20, and at the same time, the gap between the cover assembly 1 and the housing assembly 2 also functions as the exhaust port 100.
  • the exhaust port 100 is formed on the cover assembly 1.
  • the water supply assembly 6 is installed at the water injection port 101 of the cover body 10, and the lower end of the water supply assembly 6 projects into the water storage cavity 20.
  • the water supply assembly 6 in this embodiment is connected to an external water source, and is used to add water to the water storage chamber 20 of the humidifier.
  • the cover assembly 1 includes an air guide 11 extending downward from the lower surface of the cover body 10.
  • the air guide 11 is disposed above the isolation column 22 and the mounting hole, and the exhaust port 100 is located on the air guide.
  • the water injection port 101 is located outside the air cylinder 11, specifically, the lower end of the air cylinder 11 penetrates into the water in the water storage chamber 20, so that the mist generated by the oscillating plate assembly 5 is collected in the air cylinder 11, so that the mist is relatively concentrated
  • the airflow generated by the fan 3 is introduced into the air guide 11 through the isolation column 22, and then the mist in the air guide 11 is discharged from the exhaust port 100.
  • the air guide 11 can perform a drainage function, so that the mist can be more effectively humidified from the humidification. Discharge in the device, increase the amount of mist.
  • the exhaust port 100 and the isolation column 22 are located on the opposite sides of the housing assembly 2 with the largest straight line distance in the horizontal plane projection, so that the airflow from the isolation column 22 is the farthest.
  • the diversion path can carry the mist in the air cylinder 11 out of the humidifier without any dead angles, which helps the airflow to carry more mist out, and increases the amount of mist from the humidifier.
  • the projection of the casing assembly 2 in the horizontal plane direction is substantially rectangular, and the exhaust port 100 and the isolation column 22 are located at diagonal corners of the casing assembly 2 in the horizontal plane projection, respectively.
  • the exhaust port 100 and the isolation column 22 are respectively located at two opposite corners of the shell assembly 2.
  • the air guide 11 includes an outer tube surrounding the isolation column 22.
  • the connection between the first portion 111 and the second portion 112 forms a necked structure, and the second portion 112 forms a "large middle end and small end" structure, that is, the size of the first end connected to the first part 111 and the second end connected to the third part 113 are smaller than the size of the middle part.
  • the oscillating plate assembly 5 at the hole forms a better envelope effect, so that the mist is more concentrated in the second portion 112 of the air guide tube 11; further, the middle portion of the second portion 112 is generally a concentric arc structure with the mounting hole. The part is tangent to both ends.
  • the air cylinder 11 can be fitted as close as possible to the edge of the mounting hole, and the space of the air cylinder 11 is minimized, so that the mist is more concentrated, so as to increase the amount of mist and the effect. Can also avoid Sharp corners, to avoid turbulence, it is better diversion.
  • an air outlet 220 is formed on the upper side wall of the isolation post 22.
  • the air outlet 220 faces a position above the mounting hole, which helps to carry the mist generated by the oscillating plate assembly 5 out of the exhaust port.
  • the housing assembly 2 includes a bottom plate 23 and a side plate 25 and a partition plate 24 integrally formed.
  • the side plate 25 is a hollow structure with upper and lower ends open.
  • the bottom plate 23 is detachably connected to the lower end of the side plate 25.
  • the partition plate 24 is integrally formed between the inner walls of the side plates 25 to separate the receiving cavity 21 and the water storage cavity 20.
  • the bottom plate 23 and the side plate 25 can be detachably connected by means of screws or snap-fits.
  • the bottom plate 23, the partition plate 24 and the side plate 25 are jointly enclosed by a receiving cavity 21, a fan 3, a circuit board 4, and an oscillation plate assembly 5
  • the isostructure is installed in the receiving cavity 21.
  • the water storage cavity 20 and the receiving cavity 21 are respectively located on two different structural members. There is usually a gap when the two split structural members are installed, so other additional structures are needed. To achieve the waterproof function, so that the structure is bloated and bulky, unable to achieve product miniaturization.
  • the partition plate 24 and the side plate 25 are integrally formed, and there is no water leakage. Only the side plate 25 is spaced between the water storage chamber 20 and the receiving chamber 21, which simplifies the traditional humidifier structure and overcomes the traditional split structure. Defects make the structure simpler, so that the size of the humidifier can be made smaller.
  • a small space 26 is formed between the side plate 25 and the isolation post 22, and a part of the structure corresponding to the lower end of the air cylinder 11 is inserted into the space 26. Since a part of the structure of the air cylinder 11 is inserted into the interval 26, it is beneficial to enhance the stability of the humidifier and provide the structural strength of the humidifier.
  • the isolation column 22 corresponds to the position of the air outlet of the fan 3, reducing the wind speed loss between the air outlet of the fan 3 and the air inlet of the isolation column 22 is beneficial to the isolation column 22 to better introduce the airflow generated by the fan 3 into the water storage chamber 20 In the upper air.
  • the fan 3 is close to the side wall of the accommodating cavity 21, and the isolation post 22 extends upward from a corresponding position of the air outlet of the fan 3.
  • An air inlet 27 communicating with the air inlet of the fan 3 is formed on the side wall and / or the bottom wall of the accommodation cavity 21. Specifically, an air inlet communicating with the air inlet of the fan 3 is formed on the side wall of the accommodation cavity 21. 27; or an air inlet 27 communicating with the air inlet of the fan 3 is formed on the bottom wall of the receiving cavity 21; or an air inlet communicating with the air inlet of the fan 3 is formed on the side wall and the bottom wall of the receiving cavity 21 27.
  • the circuit board 4 can be placed in any manner. In this embodiment, please refer to FIG. 4.
  • the circuit board 4 is placed vertically.
  • the fan 3 and the circuit board 4 are located on the same side of the oscillation plate assembly 5 in the horizontal direction.
  • the air inlet 27 is located on the same side.
  • the circuit board 4 is on the bottom wall and / or the side wall of the receiving cavity 21 on the side facing away from the fan 3.
  • the external air passes through the air inlet 27, the circuit board 4, and then enters the fan 3, that is, the circuit board 4 is located on the intake air path of the fan 3, so that the circuit board 4 can be effectively cooled, and at the same time, because the fan 3 Part of the intake airflow will be in contact with the oscillating plate assembly 5, so the oscillating plate assembly 5 can also be effectively cooled.
  • the air inlet 27 is provided on the bottom wall and / or the side wall of the accommodating cavity 21 near the fan 3 side, and the outside air passes through.
  • the air inlet hole 27 enters one side of the fan 3, and then the airflow is introduced into the air of the water storage chamber 20 through the isolation column 22 under the action of the fan 3, and finally the mist is discharged from the exhaust port 100.
  • a heater (not shown), which includes a casing, a heat generating component located in the casing, and any one of the humidifiers described above.
  • the humidifier in the embodiment of the present application has a small size and can be applied to a heater with a small space.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
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Abstract

一种加湿器和取暖器,该加湿器包括壳体组件(2)、盖体组件(1)、振荡板组件(5)以及风机(3);所述壳体组件(2)的内部形成有储水腔(20)、容纳腔(21)以及隔离柱(22),所述储水腔(20)和所述容纳腔(21)沿上下方向相互隔离、所述隔离柱(22)从所述容纳腔(21)伸入所述储水腔(20)内,所述储水腔(20)形成为开口朝上的开放结构,所述风机(3)位于所述容纳腔(21)内,所述风机(3)产生的气流通过所述隔离柱(22)引入所述储水腔(20)内的空气中。加湿器通过风机(3)产生的气流可携带储水腔(20)上部空腔中的雾气经排气口(100)排出,不用额外单独专门设置排雾管道,因此加湿器的整体结构更加紧凑、产品的设计尺寸可以更小,占用空间很少。

Description

加湿器及取暖器
本申请要求2018年9月13日在中国国家知识产权局提交的申请号为201811067450.7、发明名称为“加湿器及取暖器”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及家用电器技术领域,尤其涉及一种加湿器及取暖器。
背景技术
现有的加湿器中,储水腔和雾化腔相互隔离,储水腔中的水通过一定的控制结构定量供应至雾化腔,通过振荡板组件将水雾化,并通过一个额外专门单独设置的排雾管道将雾气排出,因而现有技术的加湿器尺寸都较大、难以实现小尺寸设计,导致现有的加湿器使用方式单一,仅仅只能作为单独的产品使用,不能复合搭载于安装空间狭小的其他产品内进行使用。
发明内容
有鉴于此,本申请实施例的主要目的在于提供一种结构简单、尺寸小的加湿器及取暖器。
为达到上述目的,本申请实施例的一方面提供了一种加湿器,包括壳体组件、盖体组件、振荡板组件、以及风机;所述壳体组件的内部形成有储水腔、容纳腔以及隔离柱,所述储水腔和所述容纳腔沿上下方向相互隔离、所述隔离柱从所述容纳腔伸入所述储水腔内,所述储水腔形成为开口朝上的开放结构,所述储水腔和所述容纳腔的交界处形成有安装孔;所述盖体组件包括盖体本体,所述盖体本体罩设于所述储水腔的开口处,所述盖体本体上形成有与所述储水腔连通的注水口;所述盖体组件和/或所述壳 体组件形成有与所述储水腔连通的排气口;所述振荡板组件设置于所述容纳腔一侧的所述安装孔处,以在所述储水腔的顶部的空气中形成雾气;所述风机位于所述容纳腔内,所述风机产生的气流通过所述隔离柱引入所述储水腔内的空气中。
进一步地,所述风机靠近所述容纳腔的侧壁,所述隔离柱从所述风机的出风口的对应位置处向上延伸。
进一步地,所述容纳腔的侧壁和/或底壁上形成有与所述风机的进风口连通的进气口。
进一步地,所述加湿器还包括电路板,所述电路板竖向放置,所述风机和所述电路板位于所述振荡板组件沿水平方向的同一侧,所述进气口位于所述电路板背离所述风机一侧的容纳腔的底壁或侧壁上。
进一步地,所述盖体组件包括从所述盖体本体的下表面向下沿伸的导气筒,所述导气筒罩设于所述隔离柱、所述安装孔的上方,所述排气口形成于所述盖体组件上,所述排气口位于所述导气筒的内侧,所述注水口位于所述导气筒的外侧。
进一步地,所述储水腔的内壁与所述隔离柱之间形成间隔,所述导气筒的部分结构插入所述间隔内。
进一步地,在水平方向上的投影中,所述导气筒包括包围在所述隔离柱外侧的第一部、位于所述安装孔外围的第二部、以及位于所述排气口外围的第三部,其中,所述第一部和所述第二部的连接处形成缩颈结构;所述第二部形成中间大两端小的结构,所述第二部的中间部分形成为与所述安装孔同心的圆弧结构且与所述第二部的两端部分相切。
进一步地,所述隔离柱的上端的侧壁上形成有出气口,所述出气口朝向所述安装孔的上方的位置。
进一步地,所述排气口和所述隔离柱分别位于所述壳体组件在水平面 投影中直线距离最大的相对两侧。
进一步地,所述壳体组件包括底板、以及一体成型的侧板和隔板,所述侧板呈两端开放的中空结构,所述底板可拆卸地连接于所述侧板的下端,所述隔板位于所述侧板的内壁之间以分隔出所述容纳腔和所述储水腔。
进一步地,所述加湿器还包括供水组件,所述供水组件安装于所述盖体本体的注水口处,所述供水组件的下端伸入所述储水腔内。
本申请实施例的另一方面还提供了一种取暖器,所述取暖器包括上述所述的加湿器。
本申请实施例的加湿器,风机产生的气流可携带储水腔上部空腔中的雾气经排气口排出,不用额外单独专门设置排雾管道,因此加湿器的整体结构更加紧凑、产品的设计尺寸可以更小,占用空间少。
附图说明
图1为本申请第一实施例提供的一种加湿器的爆炸结构示意图;
图2为图1所示加湿器的壳体组件的结构示意图;
图3为图2所示壳体组件和导气筒的俯视图;
图4为沿图3中A-A方向的剖视图,其中箭头方向表示气流的流向;
图5为沿图4中B-B方向的剖视图,其中,增加了供水组件;
图6为图1所示加湿器的盖体组件的结构示意图;
图7为本申请第二实施例提供的加湿器的结构示意图,其中箭头方向表示气流的流向。
具体实施方式
本申请实施例提供了一种加湿器,请参阅图1-6,该加湿器包括壳体组件2、盖体组件1、振荡板组件5、风机3、电路板4、以及供水组件6。
壳体组件2的内部形成有上下方向相互隔离的储水腔20和容纳腔21、以 及从容纳腔21伸入储水腔20内的隔离柱22,储水腔20形成为开口朝上的开放结构,储水腔20和容纳腔21的交界处形成有安装孔(图未标示),振荡板组件5设置于容纳腔21一侧的安装孔处,以在储水腔20的顶部的空气中形成雾气。
盖体组件1包括盖体本体10,盖体本体10罩设于储水腔20的开口处,请参阅图1,盖体本体10上形成有与储水腔20连通的注水口101。盖体组件1和/或壳体组件2形成有与储水腔20连通的排气口100,在盖体本体10的下表面和储水腔20的液面之上形成为空腔,振荡板组件5产生的雾气汇集于该空腔内并可经排气口100排出。风机3位于容纳腔21内,风机3产生的气流通过隔离柱22引入储水腔20上部的空气中,也就是说,风机3产生的气流可携带储水腔20上部空腔中的雾气经排气口100排出,不用额外单独设置排雾管道,因此加湿器的整体结构更加紧凑、产品的设计尺寸可以更小,占用空间很少,能够单独作为独立的产品使用,也能够复合搭载于安装空间狭小的其他产品内,例如,搭载于取暖器内。
需要说明的是,排气口100可以形成于盖体组件1上,也可以形成于壳体组件2上,也可以是盖体组件1和壳体组件2同时形成与储水腔20连通的排气口100。可以理解的是,盖体组件1和壳体组件2同时形成与储水腔20连通的排气口100包含有下述三种情况:一种是盖体组件1和壳体组件2上均设有与储水腔20连通的排气口100;另一种是盖体组件1和壳体组件2之间的间隙也可以充当排气口100的作用;还有一种是盖体组件1和壳体组件2上均设有与储水腔20连通的排气口100,同时盖体组件1和壳体组件2之间的间隙也充当排气口100的作用。
本实施例中,排气口100形成于盖体组件1上。
请参阅图1,供水组件6安装于盖体本体10的注水口101处,供水组件6的下端伸入储水腔20内。本实施例供水组件6与外部水源相连,用以给加湿 器的储水腔20内加水。
请参阅图6,盖体组件1包括从盖体本体10的下表面向下沿伸的导气筒11,导气筒11罩设于隔离柱22和安装孔的上方,且排气口100位于导气筒11的内侧,注水口101位于导气筒11的外侧,具体地,导气筒11的下端深入储水腔20内的水中,使得振荡板组件5产生的雾气汇集在导气筒11内,使得雾气相对集中,风机3产生的气流经隔离柱22导入导气筒11内,进而携带导气筒11内的雾气从排气口100排出,如此,导气筒11可以起到引流作用,使得雾气能够更加有效地从加湿器内排出,增大出雾量。
为了进一步增加出雾量,请参阅图3,排气口100和隔离柱22分别位于壳体组件2在水平面投影中直线距离最大的相对两侧,如此,使得隔离柱22导出的气流有最远的导流路径,能够基本无死角地将导气筒11内的雾气携带出加湿器,有助于气流携带更多的雾气排出,增大加湿器的出雾量。本实施例中,请参见图3,壳体组件2在水平面方向的投影大致为矩形,排气口100和隔离柱22分别位于壳体组件2在水平面投影的对角处。
进一步,请参阅图3和图5,在水平面方向的投影中,排气口100和隔离柱22分别位于壳组组件2的两对角处,具体地,导气筒11包括包围隔离柱22外侧的第一部111、位于安装孔外围的第二部112、以及位于排气口100外围的第三部113,其中,第一部111和第二部112的连接处形成缩颈结构,第二部112形成“中间大两端小”的结构,即与第一部111连接的第一端以及与第三部113连接的第二端的尺寸均小于位于中间部分的尺寸,如此使得导气筒11对安装孔处的振荡板组件5形成更好的包络效果,使得雾气更加集中在导气筒11的第二部112内;进一步,第二部112的中间部分大致与安装孔为同心圆弧结构,中间部分与两端部分相切,一方面能够使得导气筒11尽量贴合于安装孔的边缘设置,尽量缩小导气筒11的空间,使得雾气更加集中,以增加出雾量和出雾效果,另一方面也能够避免尖角,避免产生紊流,使其 导流效果更好。
请参阅图4,在隔离柱22的上端的侧壁上形成有出气口220,出气口220朝向安装孔上方的位置,有助于将振荡板组件5产生的雾气携带出排气口。
请参阅图4,壳体组件2包括底板23、以及一体成型的侧板25和隔板24,侧板25呈上下两端开放的中空结构,底板23可拆卸地连接于侧板25的下端,隔板24一体成型于侧板25的内壁之间以分隔出容纳腔21和储水腔20。底板23与侧板25可以通过螺钉或者卡接的方式实现可拆卸连接,底板23、隔板24以及侧板25之间共同围设成容纳腔21,风机3、电路板4、振荡板组件5等结构安装于该容纳腔21内。
由于传统的加湿器通常采用分体式结构,储水腔20和容纳腔21分别位于两个不同的结构件上,两分体式结构件在安装的时候通常会存在间隙,从而需要做其他的附加结构来实现防水的功能,如此造成结构臃肿庞大,无法实现产品小型化。本实施例采用隔板24与侧板25一体成型,不漏水,储水腔20和容纳腔21之间只间隔了侧板25,简化了传统的加湿器结构,克服了传统的分体式结构的缺陷,使得结构更加简单,从而使得加湿器尺寸能够做小。
请参阅图4,侧板25与隔离柱22之间形成较小的间隔26,导气筒11的下端的对应处的部分结构插入该间隔26内。由于将导气筒11的部分结构插入间隔26内,有利于增强加湿器的稳定性,提供加湿器的结构强度。
隔离柱22与风机3的出风口位置对应,降低风机3的出风口至隔离柱22的进风口之间的风速损失,有利于隔离柱22更好地将风机3产生的气流引入储水腔20上部的空气中。请参阅图4,风机3靠近容纳腔21的侧壁,隔离柱22从风机3的出风口的对应位置处向上延伸。
容纳腔21的侧壁和/或底壁上形成有与风机3的进风口连通的进气口27,具体地,容纳腔21的侧壁上形成有与风机3的进风口连通的进气口27;或者 容纳腔21的底壁上形成有与风机3的进风口连通的进气口27;或者容纳腔21的侧壁和底壁上均形成有与风机3的进风口连通的进气口27。
电路板4的放置方式不限,在本实施例中,请参阅图4,电路板4竖向放置,风机3和电路板4位于振荡板组件5沿水平方向的同一侧,进气口27位于电路板4背离风机3一侧的容纳腔21的底壁和/或侧壁上。外部空气依次经过进气口27、电路板4、再进入风机3,也就是说,电路板4位于风机3的进气气路上,如此可以对电路板4进行有效的降温,同时,由于风机3的部分进气气流会与振荡板组件5接触,因此,也能对振荡板组件5进行有效地降温。
本申请的第二实施例中,请参阅图7,与上述实施例不同的是,进气口27设于靠近风机3一侧的容纳腔21的底壁和/或侧壁上,外部空气通过进气孔27进入风机3的一侧,然后在风机3的作用下通过隔离柱22将气流引入储水腔20的空气中,最后携带雾气从排气口100排出。
本申请实施例的另一方面提供一种取暖器(图未示出),该取暖器包括壳体、位于壳体内的发热组件以及上述任一种的加湿器。本申请实施例的加湿器尺寸较小,能够适用于空间狭小的取暖器内部。
以上所述,仅为本申请的具体实施方式,但本申请的保护范围并不同限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以所述权利要求的保护范围为准。

Claims (12)

  1. 加湿器,其特征在于,所述加湿器包括:
    壳体组件,所述壳体组件的内部形成有储水腔、容纳腔以及隔离柱,所述储水腔和所述容纳腔沿上下方向相互隔离、所述隔离柱从所述容纳腔伸入所述储水腔内,所述储水腔形成为开口朝上的开放结构,所述储水腔和所述容纳腔的交界处形成有安装孔;
    盖体组件,所述盖体组件包括盖体本体,所述盖体本体罩设于所述储水腔的开口处,所述盖体本体上形成有与所述储水腔连通的注水口,所述盖体组件和/或所述壳体组件形成有与所述储水腔连通的排气口;
    振荡板组件,所述振荡板组件设置于所述容纳腔一侧的所述安装孔处,以在所述储水腔的顶部的空气中形成雾气;
    风机,所述风机位于所述容纳腔内,所述风机产生的气流通过所述隔离柱引入所述储水腔顶部的空气中。
  2. 根据权利要求1所述的加湿器,其特征在于,所述风机靠近所述容纳腔的侧壁,所述隔离柱从所述风机的出风口的对应位置处向上延伸。
  3. 根据权利要求1所述的加湿器,其特征在于,所述容纳腔的侧壁和/或底壁上形成有与所述风机的进风口连通的进气口。
  4. 根据权利要求3所述的加湿器,其特征在于,所述加湿器还包括电路板,所述电路板竖向放置,所述风机和所述电路板位于所述振荡板组件沿水平方向的同一侧,所述进气口位于所述电路板背离所述风机一侧的容纳腔的底壁或侧壁上。
  5. 根据权利要求1所述的加湿器,其特征在于,所述盖体组件包括从所述盖体本体的下表面向下沿伸的导气筒,所述导气筒罩设于所述隔离柱和所述安装孔的上方,所述排气口形成于所述盖体组件上,所述排气口位于所述导气筒的内侧,所述注水口位于所述导气筒的外侧。
  6. 根据权利要求5所述的加湿器,其特征在于,所述储水腔的内壁与所述隔离柱之间形成间隔,所述导气筒的部分结构插入所述间隔内。
  7. 根据权利要求5所述的加湿器,其特征在于,在水平方向上的投影中,所述导气筒包括包围在所述隔离柱外侧的第一部、位于所述安装孔外围的第二部、以及位于所述排气口外围的第三部,其中,所述第一部和所述第二部的连接处形成缩颈结构;所述第二部形成中间大两端小的结构,所述第二部的中间部分形成为与所述安装孔同心的圆弧结构且与所述第二部的两端部分相切。
  8. 根据权利要求5所述的加湿器,其特征在于,所述排气口和所述隔离柱分别位于所述壳体组件在水平面投影中直线距离最大的相对两侧。
  9. 根据权利要求1所述的加湿器,其特征在于,所述隔离柱的上端的侧壁上形成有出气口,所述出气口朝向所述安装孔的上方的位置。
  10. 根据权利要求1所述的加湿器,其特征在于,所述壳体组件包括底板、以及一体成型的侧板和隔板,所述侧板呈两端开放的中空结构,所述底板可拆卸地连接于所述侧板的下端,所述隔板位于所述侧板的内壁之间以分隔出所述容纳腔和所述储水腔。
  11. 根据权利要求1所述的加湿器,其特征在于,所述加湿器还包括供水组件,所述供水组件安装于所述盖体本体的注水口处,所述供水组件的下端伸入所述储水腔内。
  12. 一种取暖器,其特征在于,所述取暖器包括权利要求1~11任意一项所述的加湿器。
PCT/CN2018/125090 2018-09-13 2018-12-28 加湿器及取暖器 WO2020052173A1 (zh)

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