WO2018113286A1 - 暖雾加湿器 - Google Patents

暖雾加湿器 Download PDF

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Publication number
WO2018113286A1
WO2018113286A1 PCT/CN2017/093593 CN2017093593W WO2018113286A1 WO 2018113286 A1 WO2018113286 A1 WO 2018113286A1 CN 2017093593 W CN2017093593 W CN 2017093593W WO 2018113286 A1 WO2018113286 A1 WO 2018113286A1
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Prior art keywords
water tank
water
base
warm mist
mist humidifier
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Ceased
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PCT/CN2017/093593
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English (en)
French (fr)
Inventor
曾琦
胡亚波
林振华
侯剑飞
胡晓波
杨一琬
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Publication of WO2018113286A1 publication Critical patent/WO2018113286A1/zh
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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
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating

Definitions

  • the invention relates to the field of household appliances, in particular to a warm mist humidifier.
  • Warm mist humidifiers are already a common electrical appliance.
  • the existing warm mist humidifier generally comprises a water tank and a heat generating tank.
  • the water tank is connected with the heat generating tank and hydrates the heat generating tank, and the water in the heat generating tank is heated to generate water vapor to atomize and humidify the environment.
  • the cold water in the water tank is in direct contact with the hot water in the heating bath, the hot and cold water alternates rapidly, and the heat loss is severe, which greatly limits the heating efficiency of the warm mist humidifier.
  • the heat in the heating tank is also easily transferred to the water tank, so that the air in the water tank is thermally expanded, so that more water is pressed into the water tank, causing overflow in the water tank.
  • a new warm mist humidifier is provided to solve the problems of rapid alternating hot and cold water of the humidifier, serious heat loss, low heating efficiency and easy overflow.
  • an embodiment of the present invention provides a warm mist humidifier comprising a base and a water tank disposed on the base, the base having a water tank and a heat generating groove, wherein the water tank is in communication with the water tank, A bypass passage is disposed between the water tank and the heat generating tank, and the water tank supplies water to the heat generating tank through the bypass passage.
  • the bypass passage is disposed around the water tank, and the bypass passage includes a water inlet connected to the water tank and a water outlet communicating with the heat generating groove at two ends of the passage, between the water inlet and the water outlet Set up with an isolation structure.
  • the water tank is a circular groove surrounded by an annular side wall, and the bypass channel It is a circular arc channel.
  • the bypass channel is a superior arc structure.
  • the water outlet end is provided with a square hole bent from the bypass passage toward the heat generating groove, and water in the bypass passage enters the heat generating groove through the square hole.
  • the air duct assembly is disposed on the base, the air duct assembly is in communication with the heat generating slot, the bottom of the air duct assembly is provided with a rib, and the rib is combined with the square hole Match.
  • the water tank further comprises a bottom of the water tank that cooperates with the annular side wall and the wall of the wall, and a convex portion extending from the bottom of the water tank toward the water tank.
  • the bottom of the water tank is provided with a water tank nut assembled with the water tank, and the water tank nut is provided with a water drain connected to the water tank.
  • the water outlet is provided with a water outlet valve, and the convex portion cooperates with the water outlet valve to discharge the water tank.
  • the base further includes an air inlet
  • the air duct assembly includes a fixing portion that cooperates with the base, an air inlet portion that cooperates with the air inlet, and a duct that extends from the fixing portion toward the mist cover.
  • the air duct is a duct structure, and the top end of the air duct is provided with a grid-shaped tunnel.
  • the warm mist humidifier of the invention adopts a roundabout way to replenish water, and the hot and cold water does not directly contact each other, thereby reducing heat exchange, preventing heat loss and water tank overflow, and improving heating efficiency and product reliability.
  • Figure 1 is a schematic exploded view of the warm mist humidifier of the present invention
  • Figure 2 is a longitudinal sectional structural view of the warm mist humidifier of the present invention
  • Figure 3 is a schematic view showing the water supply mode of the base component of the warm mist humidifier of the present invention.
  • Figure 4 is a perspective view showing the structure of the warm mist humidifier duct assembly of the present invention.
  • the warm mist humidifier of the present invention comprises a base 10, a duct assembly 30, a water tank 40, and a base 50 having a water tank 50 and a heat generating groove 60.
  • the water tank 40 is disposed on the base 10 and is used for supplying water to the water tank 50.
  • the heat generating tank 60 vaporizes and humidifies the water, and is discharged through the air duct assembly 30.
  • the outer casing 20 may be disposed outside the water tank 40 as needed, or may be on the outer casing 20. Set the decorative pattern.
  • a fog cover 23 can be disposed to cooperate with the air outlet end of the air duct assembly 30.
  • the fog cover 23 is provided with a fog hole 231, and an air guiding structure matched with the fog hole 231 can be disposed to change the fog. direction.
  • the water tank 50 includes a water tank bottom 51, an annular side wall 53 that cooperates with the water tank bottom 51 and surrounds the tank structure.
  • the water tank 50 is a circular groove surrounded by the annular side wall 53.
  • the water tank 50 of other shapes and configurations may be selected.
  • the water tank 40 is detachably disposed on the base 10.
  • the bottom of the water tank 40 is provided with a water tank nut 41.
  • the water tank nut 41 is screwed on the water tank 40, and the water tank nut 41 is opened, that is, water can be injected into the water tank 40, and water is injected into the water tank 40.
  • the water tank 40 is inverted on the base, and the water tank nut 41 is turned down in the water tank, so that the water tank can be filled.
  • the water tank 40 is further provided with a through hole, that is, the water tank has a hollow annular design, and the air duct assembly 30 passes through the through hole and is respectively connected to the base 10 and the mist cover 23.
  • the water tank nut 41 is combined with the annular side wall 53 of the water tank 50. Further, the water tank nut 41 is provided with a water discharge port 411 that communicates with the water tank 40. Through the water outlet 411, the water in the water tank 40 enters the water tank 50.
  • the water outlet 411 is provided with a water outlet valve, and the water outlet valve is in communication with the water outlet 411. Further, the water tank 50 is further provided with a convex portion 54 protruding from the water tank bottom 51 toward the water tank 40, the convex portion 54 and the water outlet. When the valve is matched, when the water tank 40 is buckled on the base, the convex portion 54 opens the valve piece of the water outlet valve to make the water tank 40 discharge water.
  • the heat generating groove 60 is also disposed on the base 10.
  • the air duct assembly 30 is disposed corresponding to the heat generating groove 60, and communicates with the heat generating groove 60 and the mist discharging hole 231, so that the water vapor generated in the heat generating groove 60 passes.
  • the air duct assembly 30 reaches the mist hole 231 and is discharged into the environment to function as a warm mist humidification.
  • a bypass passage 70 is provided between the water tank 50 and the heat generating groove 60, and the water tank 50 replenishes the heat generating groove 60 through the bypass passage 70.
  • the bypass passage 70 includes a water inlet 71 and a water outlet 72 respectively disposed at both ends of the passage.
  • the water inlet 71 communicates with the water tank 50, and the water outlet 72 communicates with the heat generation groove 60.
  • the water tank 50 is a circular groove
  • the bypass passage 70 is a circular arc-shaped passage surrounding the water tank 50.
  • the bypass passage 70 is in the shape of a superior arc, so that the path of water in the bypass passage is as large as possible.
  • an isolation structure 80 is disposed between the water inlet 71 and the water outlet 72 to ensure that the hot and cold water at the two outlets, that is, the cold water in the water tank 50 and the hot water in the heat generation tank 60 are not mixed together.
  • the isolation structure 80 is integrally formed on the base 10.
  • the water outlet 72 is provided with a square hole 721 which is formed by bending from the extending end of the bypass passage 70 toward the heat generating groove 60, and is tightened at the end of the square hole 721 to reduce the cold.
  • the heat between the hot water is lost.
  • the bottom of the air duct assembly 30 is provided with a rib 311 for assembling with the square hole 721, which can reduce the contact area between the heat generating groove and the water tank, further reduce heat loss, and reduce the heat generating groove 60 and The heat exchange between the hot water and the cold water between the water tanks 50 improves the heat generation efficiency.
  • the arrangement of the bypass passage 70 can also prevent the hot water in the heat generating tank 60 from transferring heat to the water tank 40 through the water tank 50, so that the air in the water tank 40 is thermally expanded, so that more water is pressed into the water tank 50, thereby causing The overflow increases the reliability of the product.
  • the base 10 is further provided with an air inlet 90.
  • the air duct assembly 30 includes a fixing portion 31 that cooperates with the base 10, an air inlet portion 32 that cooperates with the air inlet 90, and a mist cover from the fixing portion 31.
  • the air passage 33 extending in the 23 direction is provided with a grid-shaped opening 331 at the top end of the air passage 33.
  • the grid-shaped tunnel 331 is provided corresponding to the mist-passing hole 231 to form an air outlet of the water vapor.
  • the base 10 is provided with a fixing groove 11 for cooperating with the fixing portion 31 to assemble the air duct assembly 30 on the base 10.
  • the rib 311 is disposed on the air inlet portion 32 to reduce heat loss in the heat generating groove 60.
  • the air passage 33 is a cylindrical structure having a narrow upper portion and a narrow upper portion. In this way, the discharged steam can be concentrated to provide a better warm mist humidification effect and improve the performance of the product.
  • the base 10 When assembling the air duct 33, the base 10 is assembled first, the small end of the air duct 33 is facing upward, the big end is facing downward, and the air duct assembly is assembled with the fixing groove 11 on the base, and then the water tank 50 is assembled. The water tank 40 is assembled above to complete the assembly.
  • the warm mist humidifier of the invention adopts a roundabout way to replenish water, and the hot and cold water does not directly contact each other, thereby reducing heat exchange, preventing heat loss and water tank overflow, and improving heating efficiency and product reliability.

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

Abstract

一种暖雾加湿器,包括底座(10)和设置在所述底座上的水箱(40),所述底座(10)上具有水槽(50)和发热槽(60),所述水槽(50)与所述水箱(40)连通,其特征在于,所述水槽(50)与所述发热槽(60)之间设有迂回通道(70),所述水槽(50)通过所述迂回通道(70)向所述发热槽(60)中补水。该暖雾加湿器采用迂回方式补水,冷热水之间不直接接触,减少了热量交换,防止了热量散失和水箱溢水,提高了加热效率和产品的可靠性。

Description

暖雾加湿器 技术领域
本发明涉及家电领域,特别涉及一种暖雾加湿器。
背景技术
随着科技的进步和生活水平的提高,人们对家居生活质量的要求越来越高,暖雾加湿器已经是一种常用的电器。
现有暖雾加湿器一般包括水箱,以及发热槽,水箱与发热槽相连并给发热槽补水,通过对发热槽内的水进行加热产生水蒸气对环境进行雾化和加湿。然而现有的结构,水箱内的冷水与发热槽内的热水之间直接接触,冷热水交替快,热量散失严重,很大程度地限制了暖雾加湿器的加热效率。此外,加热槽内的热量也容易传递到水箱中,使水箱内的空气会受热膨胀,进而使得更多的水压入到水槽中,造成水箱内的溢水。
因此,实有必要提供一种新的暖雾加湿器,以解决上述问题。
发明内容
本发明实施例中提供一种新的暖雾加湿器,以解决现有技术中的加湿器冷热水交替快,热量散失严重,加热效率低和容易溢水的问题。
为实现上述目的,本发明实施例提供一种暖雾加湿器,包括底座和设置在所述底座上的水箱,所述底座上具有水槽和发热槽,所述水槽与所述水箱连通,所述水槽与所述发热槽之间设有迂回通道,所述水槽通过所述迂回通道向所述发热槽中补水。
作为优选,所述迂回通道环绕所述水槽设置,所述迂回通道包括分别设置在通道两端的与水槽相通的入水口和与发热槽相通的出水口,所述入水口和所述出水口之间设置有隔离结构。
作为优选,所述水槽是由环状侧壁围成的圆形槽,所述迂回通道 为圆弧形通道。
作为优选,所述迂回通道为优弧结构。
作为优选,所述出水口端设置有自所述迂回通道向所述发热槽方向弯折延伸的方形孔,所述迂回通道内的水通过所述方形孔进入所述发热槽。
作为优选,包括设置在所述底座上的风道组件,所述风道组件与所述发热槽相连通,所述风道组件底部设置有筋条,所述筋条与所述方形孔相组配。
作为优选,所述水槽还包括与环状侧壁配合围城槽体的水槽底部,以及自水槽底部向水箱方向延伸的凸起部。
作为优选,所述水箱底部设置有与水槽组配的水箱螺母,所述水箱螺母上设置有与水箱相连通的下水口。
作为优选,所述下水口设置有出水阀门,所述凸起部与所述出水阀门配合,使所述水箱出水。
作为优选,所述底座进一步包括进风口,所述风道组件包括与底座配合的固定部、与所述进风口相配合的进风部和自固定部向出雾盖方向延伸的风道,所述风道为管道结构,所述风道顶端设有栅状孔道。
本发明的暖雾加湿器采用迂回方式补水,冷热水之间不直接接触,减少了热量交换,防止了热量散失和水箱溢水,提高了加热效率和产品的可靠性。
附图说明
图1:本发明暖雾加湿器的分解结构示意图;
图2:本发明暖雾加湿器的纵向剖视结构示意图;
图3:本发明暖雾加湿器底座组件补水方式示意图;
图4:本发明暖雾加湿器风道组件的立体结构示意图。
附图标记说明:10、底座;11、固定槽;20、壳体;21、外壳;23、出雾盖;231、出雾孔;30、风道组件;31、固定部;311、筋条;32、进风部;33、风道;331、栅状孔道;40、水箱;41、水箱螺母;411、下水口;50、水槽;51、水槽底部;53、环状侧壁;54、凸起部;60、 发热槽;70、迂回通道;71、入水口;72、出水口;80、隔离结构;90、进风口。
具体实施方式
下面结合附图和具体实施例对本发明作进一步详细描述,但不作为对本发明的限定。
请参考图1和图2,本发明中的暖雾加湿器包括底座10,风道组件30,水箱40,底座10上具有水槽50和发热槽60。水箱40设置在底座10上,并用于向水槽50供水,发热槽60使水汽化加湿,并通过风道组件30排出,根据需要,可以在水箱40外部罩设外壳20,还可以在外壳20上设置装饰图案。另外,还可以设置与风道组件30的出风端配合的出雾盖23,出雾盖23上设置有出雾孔231,可以设置与出雾孔231配合的导风结构,从而改变出雾方向。
水槽50包括水槽底部51、与水槽底部51配合并围城槽体结构的一环状侧壁53。在本实施方式中,水槽50为由环状侧壁53围成的圆形槽,当然,在其他实施方式中,也可选择其他形状和结构的水槽50。
水箱40可拆卸地设置在底座10上,水箱40上的底部设置有水箱螺母41,水箱螺母41拧在水箱40上,打开水箱螺母41,即可以像水箱40内注水,向水箱40内注水后,将水箱40倒扣在底座上,水箱螺母41朝下倒扣在水槽中,即可以完成水箱的注水。进一步的,水箱40上还设置有通孔,即水箱为中空环状设计,风道组件30穿过该通孔,分别与底座10和出雾盖23相连。
在本实施方式中,水箱螺母41与水槽50的环状侧壁53组配在一起,进一步的,水箱螺母41上设置有与水箱40连通的下水口411。通过该下水口411,水箱40中的水进入水槽50中。
下水口411设置有出水阀门,该出水阀门与下水口411相连通,进一步的,水槽50上还设置有自水槽底部51向水箱40方向凸起的凸起部54,该凸起部54与出水阀门配合设置,在水箱40倒扣在底座上时,凸起部54顶开出水阀门的阀片,使水箱40出水。
发热槽60也设置在底座10上,风道组件30与发热槽60对应设置,连通发热槽60和出雾孔231,使得发热槽60中产生的水蒸气通过 风道组件30到达出雾孔231排放到环境中,起到暖雾加湿的作用。
如图3所示,水槽50与发热槽60之间设置有迂回通道70,水槽50通过该迂回通道70向发热槽60中补水。迂回通道70包括分别设置在通道两端的入水口71和出水口72,入水口71与水槽50相通,出水口72与发热槽60相通。在本实施方式中,水槽50为圆形槽,迂回通道70为环绕水槽50的圆弧形通道,优选的,迂回通道70为优弧的形状,使水在迂回通道内的路径尽可能大。进一步的,入水口71和出水口72之间设置有隔离结构80,以保证两出口的冷热水,即水槽50中的冷水与发热槽60中的热水不混同在一起。该隔离结构80一体成型设置在底座10上。
进一步的,出水口72上设置有方形孔721,该方形孔721为自迂回通道70的延伸端向发热槽60方向弯折延伸形成,并且在方形孔721的端部收紧,以减小冷热水之间的热量散失。进一步的,风道组件30的底部设置有筋条311,该筋条311用于与方形孔721组配,可以减少发热槽与水槽的接触面积,进一步减少热量的散失,减少了发热槽60与水槽50之间的热水冷水的热交换,提高了发热效率。迂回通道70的设置,也可以避免发热槽60中的热水通过水槽50将热量传到水箱40中,导致水箱40内的空气受热膨胀,使得更多的水压入到水槽50中,而造成的溢水,提高了产品的可靠性。
参照图3和图4,底座10上进一步设有进风口90,风道组件30包括与底座10配合的固定部31、与进风口90配合的进风部32和自固定部31向出雾盖23方向延伸的风道33,风道33的顶端设有栅状孔道331。该栅状孔道331与出雾孔231相对应设置,以形成水蒸气的出气口。
对应的,底座10上设置有固定槽11,用于与固定部31配合,将风道组件30组配在底座10上。筋条311设置在进风部32上,以减少发热槽60内的热量散失。风道33为一个下部宽上部窄的筒状结构。这样,可以使喷出的蒸汽集中,以起到更好的暖雾加湿作用,提高产品的性能。
在装配风道33时,先装配好底座10,将风道33的小端朝上,大端朝下,再将风道组件与底座上的固定槽11组配好,然后在水槽50 上面装配好水箱40,即可完成组装。
本发明的暖雾加湿器采用迂回方式补水,冷热水之间不直接接触,减少了热量交换,防止了热量散失和水箱溢水,提高了加热效率和产品的可靠性。
当然,以上是本发明的优选实施方式。应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明基本原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本发明的保护范围。

Claims (10)

  1. 一种暖雾加湿器,包括底座(10)和设置在所述底座(10)上的水箱(40),所述底座(10)上具有水槽(50)和发热槽(60),所述水槽(50)与所述水箱(40)连通,其特征在于,所述水槽(50)与所述发热槽(60)之间设有迂回通道(70),所述水槽(50)通过所述迂回通道(70)向所述发热槽(60)中补水。
  2. 根据权利要求1所述的暖雾加湿器,其特征在于,所述迂回通道(70)环绕所述水槽(50)设置,所述迂回通道(70)包括与所述水槽(50)相连通的入水口(71)和与所述发热槽(60)相连通的出水口(72),所述入水口(71)和所述出水口(72)之间设置有隔离结构(80)。
  3. 根据权利要求2所述的暖雾加湿器,其特征在于,所述水槽(50)为由环状侧壁(53)围成的圆形槽,所述迂回通道(70)为圆弧形通道。
  4. 根据权利要求3所述的暖雾加湿器,其特征在于,所述迂回通道(70)为优弧结构。
  5. 根据权利要求2所述的暖雾加湿器,其特征在于,所述出水口(72)设置有自所述迂回通道(70)向所述发热槽(60)方向弯折延伸的方形孔(721),所述迂回通道(70)内的水通过所述方形孔(721)进入所述发热槽(60)。
  6. 根据权利要求5所述的暖雾加湿器,其特征在于,包括设置在所述底座(10)上的风道组件(30),所述风道组件(30)固定在所述底座(10)上并与所述发热槽(60)相连通,所述风道组件(30)底部设置有筋条(311),所述筋条(311)与所述方形孔(721)相组配。
  7. 根据权利要求3所述的暖雾加湿器,其特征在于,所述水槽(50)还包括与环状侧壁(53)配合围城槽体的水槽底部(51),以及自所述水槽底部(51)向所述水箱(40)方向延伸的凸起部(54)。
  8. 根据权利要求7所述的暖雾加湿器,其特征在于,所述水箱(40)包括水箱螺母(41),所述水箱螺母(41)上设置有与水箱(40)相连通的下水口(411)。
  9. 根据权利要求8所述的暖雾加湿器,其特征在于,所述下水口(411)设置有出水阀门,所述凸起部(54)与所述出水阀门配合,使 所述水箱(40)出水。
  10. 根据权利要求6所述的暖雾加湿器,其特征在于,所述底座(10)进一步包括进风口(90),所述风道组件(30)包括与底座(10)配合的固定部(31)、与所述进风口(90)相配合的进风部(32)和自固定部(31)向远离底座(10)方向延伸的风道(33),所述风道(33)为管道结构,所述风道(33)顶端设有栅状孔道(331)。
PCT/CN2017/093593 2016-12-20 2017-07-20 暖雾加湿器 Ceased WO2018113286A1 (zh)

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