WO2023236308A1 - 一种增加加湿量的蒸发式加湿器 - Google Patents

一种增加加湿量的蒸发式加湿器 Download PDF

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WO2023236308A1
WO2023236308A1 PCT/CN2022/105118 CN2022105118W WO2023236308A1 WO 2023236308 A1 WO2023236308 A1 WO 2023236308A1 CN 2022105118 W CN2022105118 W CN 2022105118W WO 2023236308 A1 WO2023236308 A1 WO 2023236308A1
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water
water tank
heating tank
sealing block
tank
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PCT/CN2022/105118
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English (en)
French (fr)
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杜建洪
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杜建洪
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Publication of WO2023236308A1 publication Critical patent/WO2023236308A1/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
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • F24F13/06Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser
    • 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
    • F24F13/24Means for preventing or suppressing noise
    • 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

Definitions

  • the invention belongs to the field of evaporative humidifiers, and in particular relates to an evaporative humidifier that increases humidification capacity.
  • the general approach is to increase the power of the heating element.
  • increasing the power of the heating element will increase power consumption.
  • the upper part of the heating element of a humidifier is in direct contact with the water body to heat the water, and a large amount of heat is lost from the lower part to the cavity below.
  • the traditional method is to use a fan to discharge the heat out of the cavity, causing heat loss.
  • the purpose of embodiments of the present invention is to provide an evaporative humidifier with increased humidification capacity, aiming to solve the problems mentioned in the above background.
  • An evaporative humidifier that increases humidification capacity includes a water tank cover, a water tank and a fuselage.
  • the water tank is cooperatively placed in the fuselage.
  • the top of the water tank is detachably provided with a water tank cover. It includes: a heating tank, a heating tank is provided on the inner lower part of the fuselage, and a heating plate is provided on the lower side of the heating tank, and the water body in the heating tank is heated and evaporated through the heating plate; an air guide pipe, There is an air guide tube on the inside.
  • the lower end of the air guide tube is connected with the inner cavity of the heating tank.
  • the upper end of the air guide tube is equipped with a muffler tube.
  • the water vapor generated in the heating tank is discharged through the air guide tube and the muffler tube in turn; humidification improves components and connecting components, the lower side of the heating tank is provided with a lower cavity in the fuselage, the lower cavity is connected to the inner cavity of the heating tank through the connecting component, and when the water tank is placed in the fuselage, the communication component is used to connect the inner cavity of the heating tank and the lower cavity; when the water tank is not installed in the fuselage, the communication component is used to block the communication between the inner cavity of the heating tank and the lower cavity.
  • the humidification lifting assembly is installed in the lower cavity, and the humidification lifting assembly is used to supply air to the surface of the boiling water in the inner cavity of the heating tank when the inner cavity of the heating tank and the lower cavity are connected, thereby lifting the boiling water.
  • the surface water vapor is generated at a high speed and accelerates the water vapor to be discharged from the air duct.
  • the humidification lifting assembly includes a fan and a fan holder.
  • the fan holder is installed and fixed in the lower cavity.
  • the fan is cooperatively installed and fixed on the fan holder.
  • the fan is used to move the lower cavity The air is transported to the inner cavity of the heating tank through the connecting component.
  • air inlets are also provided on the side walls of the fuselage.
  • the communication component includes a push rod, a sealing block, a spring, an air outlet, an outer sleeve and a support rod seat.
  • a push rod is installed and fixed at the bottom of the water tank, and a support rod seat is installed and fixed in the lower cavity.
  • the support rod seat includes a support rod and a support, the support rod is installed and fixed on the support, the support rod is provided with a sealing block for sliding movement, and the support rod is also provided with a spring for elastic support of the sealing block.
  • the outer sleeve of the sealing block is slidably arranged on the outside, and the outer sleeve is fixed in the lower cavity.
  • An air outlet is provided on the top of the outer sleeve, and the lower cavity is connected to the inner cavity of the heating tank through the air outlet; when After the water tank is placed in the fuselage, the ejector pin presses the sealing block. At this time, the lower cavity is connected to the inner cavity of the heating tank through the air outlet; when the water tank is not installed in the fuselage, the ejector pin and The sealing block is separated. At this time, the upper end of the sealing block seals the air outlet, and the connection between the inner cavity and the lower cavity of the heating tank is cut off by the sealing block.
  • the air outlet has a circular shape
  • the ejector rod and the sealing block are vertically corresponding
  • the ejector rod has a cylindrical structure
  • the diameter of the ejector rod is smaller than the diameter of the air outlet.
  • the sealing block has a ladder-like structure, and the upper end of the sealing block is used to seal the air outlet at the upper end of the outer sleeve.
  • the portion where the sealing block is slidably connected to the outer sleeve also has a plurality of circumferentially distributed openings. Ventilation slot.
  • one side of the heating tank is also provided with a warm water tank in the fuselage.
  • the warm water tank is connected to the inner cavity of the water tank outside the air guide pipe.
  • the warm water tank and the heating tank are separated by water-proof cotton.
  • the water-proof cotton is used to make the water in the hot water tank automatically replenish the heating tank after the water in the heating tank is reduced.
  • the air guide tube has a tapered cylinder structure with a small top and a large bottom.
  • the inner cavity cross-section of the air guide tube is circular.
  • the muffler tube is installed and fixed in the middle of the top of the air guide tube, and the muffler tube is The lower end surface is located below the inner top surface of the air guide tube.
  • the water tank cover is also provided with an exhaust hole, and the exhaust hole is connected to the muffler pipe.
  • An embodiment of the present invention provides an evaporative humidifier that increases the amount of humidification.
  • the heating plate can directly heat the water, and use a fan to remove the heat from the lower cavity. After opening The air outlet flows into the inner cavity of the heating tank, and the high-speed hot air blows to the surface of the boiling water, increasing the production speed of water vapor, and uses the wind pressure to quickly flow to the air duct and discharge it, thereby increasing the evaporation of water without increasing power consumption. In this case, the humidification amount is increased.
  • the sealing block can seal the air outlet after the water tank is removed, preventing water from flowing into the cavity below through the air outlet and damaging electronic components; when the water tank is placed in the fuselage, the water tank The push rod at the bottom pushes open the sealing block, and an air circulation channel is formed between the inner cavity of the heating tank, the lower cavity and the air outlet, which facilitates the fan's air delivery work and is stable and reliable.
  • Figure 1 is a schematic diagram of the exploded structure of an evaporative humidifier that increases humidification capacity provided by an embodiment of the present invention
  • Figure 2 is an overall partial cross-sectional structural schematic diagram of an evaporative humidifier that increases humidification capacity provided by an embodiment of the present invention
  • Figure 3 is a partial cross-sectional structural schematic diagram of Figure 2;
  • Figure 4 is a schematic diagram of the front structure of Figure 3;
  • Figure 5 is a partial structural diagram of the fuselage in Figure 1 in a top view.
  • an evaporative humidifier for increasing humidification capacity provided in one embodiment of the present invention includes a water tank cover 1, a water tank 2 and a fuselage 3.
  • the water tank 2 is placed inside the fuselage 3.
  • the top of the water tank 2 is removable with a water tank cover 1, and also includes:
  • Heating tank 15 A heating tank 15 is provided at the inner lower part of the fuselage 3.
  • a heating plate 13 is provided on the lower side of the heating tank 15. The water in the heating tank 15 is heated and evaporated through the heating plate 13;
  • Air guide pipe 11 is provided inside the water tank 2.
  • the lower end of the air guide pipe 11 is connected with the inner cavity of the heating tank 15.
  • the upper end of the air guide pipe 11 is equipped with a muffler pipe 10, which passes through the air guide pipe 11 and The muffler tube 10 discharges the water vapor generated in the heating tank 15;
  • the lower side of the heating tank 15 is provided with a lower cavity 14 in the fuselage 3, the lower cavity 14 is connected to the inner cavity of the heating tank 15 through the connecting assembly, and when the water tank 2 is placed in the fuselage 3, and the inner cavity of the heating tank 15 and the lower cavity 14 are connected through the communication component; when the water tank 2 is not installed in the fuselage 3, through the communication
  • the component blocks the communication between the inner cavity of the heating tank 15 and the lower cavity 14; the humidification lifting assembly is installed in the lower cavity 14, and the humidification lifting assembly is used between the inner cavity of the heating tank 15 and the lower cavity 14.
  • the humidification lifting assembly includes a fan 8 and a fan holder 9.
  • the fan holder 9 is installed and fixed in the lower cavity 14.
  • the fan 8 It is installed and fixed on the fan holder 9, and the fan 8 is used to transport the air in the lower cavity 14 to the inner cavity of the heating tank 15 through the connecting assembly, so that the heat in the inner cavity of the lower cavity 14 can be fully utilized. use.
  • the side wall of the fuselage 3 is also provided with an air inlet hole. The opening of the air inlet hole facilitates air flow, that is, the air entering through the air inlet hole takes away the heat in the lower cavity 14 to the heating tank 15. It is transported in the inner cavity and then discharged from the air guide tube 11, which is beneficial to the stable and reliable operation of the device.
  • the communication assembly includes a push rod 4, a sealing block 5, a spring 6, an air outlet 7, an outer sleeve 18 and a support rod base 19.
  • a push rod 4 is installed and fixed at the bottom of the water tank 2, and is installed in the lower cavity 14.
  • a support rod base 19 is fixed.
  • the support rod base 19 includes a support rod and a support.
  • the support rod is installed and fixed on the support.
  • the support rod is provided with a sealing block 5 for sliding.
  • the support rod is also provided with a sealing block 5 for sealing.
  • the sealing block 5 is elastically supported by a spring 6.
  • An outer sleeve 18 is provided on the outside of the sealing block 5 for sliding movement.
  • the outer sleeve 18 is fixed in the lower cavity 14.
  • An air outlet is provided at the top of the outer sleeve 18. 7.
  • the lower cavity 14 is connected to the inner cavity of the heating tank 15 through the air outlet 7; when the water tank 2 is placed in the fuselage 3, the push rod 4 presses the sealing block 5, and at this time the lower cavity 14 passes through the outlet.
  • the air outlet 7 is connected with the inner cavity of the heating tank 15; when the water tank 2 is not installed in the fuselage 3, the push rod 4 and the sealing block 5 are separated. At this time, the upper end of the sealing block 5 seals the air outlet 7 (such as As shown in Figure 5), the communication relationship between the inner cavity of the heating tank 15 and the lower cavity 14 is blocked by the sealing block 5.
  • the air outlet 7 is preferably in a circular shape, and the ejector rod 4 and the sealing block 5 are vertically corresponding.
  • the ejector rod 4 is preferably a cylindrical structure, and the diameter of the ejector rod 4 is smaller than the diameter of the air outlet 7, which facilitates the passage of the ejector rod. 4. Press the sealing block 5.
  • the sealing block 5 is preferably of a ladder-like structure.
  • the upper end of the sealing block 5 is used to seal the air outlet 7 at the upper end of the outer sleeve 18.
  • the portion of the sealing block 5 that is slidingly connected to the outer sleeve 18 is also circumferentially connected.
  • a plurality of ventilation slots (not shown) are distributed and provided for air to pass through, so that the air in the lower cavity 14 enters the inner cavity of the heating tank 15 through the ventilation slots and the air outlet 7 in sequence.
  • one side of the heating tank 15 is also provided with a warm water tank 17 in the fuselage 3.
  • the warm water tank 17 is in the water tank 2 outside the air guide pipe 11.
  • the warm water tank 17 and the heating tank 15 are separated by a water-proof cotton 16.
  • the water-proof cotton 16 is used to reduce the water in the heating tank 15, so that the water in the hot water tank 17 can be automatically replenished to the heating tank 15.
  • the specific material of the water-proof cotton 16 is not limited, and can be arranged according to actual needs and common sense in this field.
  • the air guide tube 11 is a tapered cylinder structure with a small top and a large bottom.
  • the inner cavity section of the air guide tube 11 is preferably circular.
  • the muffler tube 10 is installed It is fixed in the middle of the top of the air guide tube 11, and the lower end surface of the muffler tube 10 is preferably located under the inner top surface of the air guide tube 11 to improve the water vapor discharge effect of the muffler tube 10.
  • the specific material of the muffler tube 10 The structure can adopt existing public technology.
  • the water tank cover 1 is also provided with an exhaust hole, and the exhaust hole is connected with the muffler pipe 10.
  • the specific arrangement of the exhaust hole is not limited. In actual application, the required shape can be designed to ensure that the water tank cover 1 is suitable for the water tank. 2. While the upper end of the inner cavity is sealed, the gas in the muffler tube 10 can be discharged evenly, and there is no limit.
  • This evaporative humidifier that increases the humidification capacity is limited by the heating plate 13 and the heating tank 15.
  • the heating plate 13 can directly heat the water, and uses the fan 8 to remove the heat from the lower cavity 14. After opening the The air outlet 7 flows into the inner cavity of the heating tank 15, and the high-speed hot air blows to the surface of the boiling water 12, increasing the generation speed of water vapor, and uses the wind pressure to quickly flow to the air conduit 11 and discharge it, thereby increasing the evaporation of water.
  • a spring 6 is provided on the lower side of the sealing block 5.
  • the sealing block 5 can seal the air outlet 7 after the water tank 2 is removed, preventing water from flowing into the cavity below through the air outlet 7 and damaging electronic components; when the water tank 2 After putting it into the fuselage 3, the push rod 4 at the bottom of the water tank 2 pushes open the sealing block 5, and an air circulation channel is formed between the inner cavity of the heating tank 15, the lower cavity 14 and the air outlet 7, which facilitates the air delivery work of the fan 8. Stable and reliable.
  • each component can be controlled by a controller disclosed in the prior art.
  • the model and circuit connection of each component are not specifically limited and can be flexibly set in actual applications.

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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

一种增加加湿量的蒸发式加湿器,包括水箱盖(1)、水箱(2)和机身(3),机身3()的内侧下部设有加热槽(15),加热槽(15)的下侧配合设有加热盘(13),水箱(2)的内侧设有导气管(11),导气管(11)的下端与加热槽(15)内腔连通,导气管(11)的上端配合安装有消声管(10),加热槽(15)的下侧于机身(3)内设有下腔体(14),下腔体(14)通过连通组件与加热槽(15)的内腔连接,加湿提升组件安装于下腔体(14)内,且加湿提升组件用于在加热槽(15)的内腔和下腔体(14)连通时,向加热槽(15)的内腔沸腾水(12)表面送风,进而提升沸腾水(12)表面水蒸气产生速度,并加速水蒸气从导气管(11)排出。通过对于发热体下方热量的可靠利用,能够提高水的蒸发量,在不增加功耗的情况下,使得加湿量增加。

Description

一种增加加湿量的蒸发式加湿器 技术领域
本发明属于蒸发式加湿器领域,尤其涉及一种增加加湿量的蒸发式加湿器。
背景技术
现有的蒸发式加湿器要提高加湿量,一般的做法是提高发热体功率,但是增加发热体功率,就会增加耗电量。
一般加湿器的发热体上方直接与水体接触,对水进行加温,下方还有大量热量流失在下方腔体内,传统做法是用风扇将热量排出腔体外面,造成热量损失。
因此,针对以上现状,迫切需要开发一种不增加耗电量,且能够增加加湿量的蒸发式加湿器,以克服当前实际应用中的不足。
发明内容
本发明实施例的目的在于提供一种增加加湿量的蒸发式加湿器,旨在解决上述背景中提到的问题。
本发明实施例是这样实现的,一种增加加湿量的蒸发式加湿器,包括水箱盖、水箱和机身,所述水箱配合放置于机身内,水箱的顶部可拆卸设有水箱盖,还包括:加热槽,所述机身的内侧下部设有加热槽,加热槽的下侧配合设有加热盘,通过所述加热盘对加热槽内的水体进行加热蒸发;导气管,所述水箱的内侧设有导气管,导气管的下端与加热槽内腔连通,导气管的上端配合安装有消声管,依次通过所 述导气管和消声管将加热槽内产生的水蒸气排出;加湿提升组件和连通组件,所述加热槽的下侧于机身内设有下腔体,下腔体通过连通组件与所述加热槽的内腔连接,且当所述水箱配合放置于机身内后,通过所述连通组件用于使得加热槽的内腔和下腔体连通;当所述水箱未在机身内安装到位时,通过所述连通组件隔断加热槽的内腔和下腔体的连通关系;所述加湿提升组件安装于下腔体内,且所述加湿提升组件用于在加热槽的内腔和下腔体连通时,向加热槽的内腔沸腾水表面送风,进而提升沸腾水表面水蒸气产生速度,并加速水蒸气从导气管排出。
进一步的技术方案,所述加湿提升组件包括有风扇和风扇固定架,所述风扇固定架安装固定于下腔体内,风扇配合安装固定于风扇固定架上,通过所述风扇用于将下腔体内的空气通过连通组件向加热槽的内腔输送。
进一步的技术方案,所述机身的侧壁上还开设有进风孔。
进一步的技术方案,所述连通组件包括有顶杆、封口块、弹簧、出风口、外套筒和支杆座,所述水箱的底部安装固定有顶杆,下腔体内安装固定有支杆座,支杆座包括有支杆和支座,支杆配合安装固定于支座上,所述支杆上配合滑动设有封口块,支杆上还设有用于对封口块进行弹性支撑的弹簧,所述封口块的外侧配合滑动设有外套筒,外套筒固定于下腔体内,所述外套筒的顶部开设有出风口,下腔体通过出风口与加热槽的内腔连通;当所述水箱配合放置于机身内后,顶杆对封口块进行按压,此时下腔体通过出风口与加热槽的内腔连通; 当所述水箱未在机身内安装到位时,顶杆和封口块分离,此时封口块的上端对出风口进行密封,通过所述封口块隔断加热槽的内腔和下腔体的连通关系。
进一步的技术方案,所述出风口为圆形状,顶杆和封口块竖直对应,顶杆为圆柱形结构,且顶杆的直径小于出风口的直径。
进一步的技术方案,所述封口块为阶梯状结构,封口块的上端用于对外套筒上端的出风口进行密封,所述封口块与外套筒滑动连接的部分还周向分布开设有多条通气槽。
进一步的技术方案,所述加热槽的一侧于机身内还设有温水槽,温水槽与导气管外侧的水箱内腔连通,所述温水槽和加热槽之间通过隔水棉隔开,隔水棉用于使得加热槽内水体减少后,温水槽内的水体能够向加热槽自动补充。
进一步的技术方案,所述导气管为上小下大的锥形筒体结构,导气管的内腔截面为圆形状,消声管安装固定于导气管的顶部中间,且所述消声管的下端面位于导气管的内顶面下侧。
进一步的技术方案,所述水箱盖上还开设有排气孔,排气孔与消声管连通。
本发明实施例提供的一种增加加湿量的蒸发式加湿器,通过加热盘和加热槽的限定,加热盘能够直接对水进行加温,且利用风扇将下腔体内的热量抽走,经过打开的出风口流入到加热槽的内腔中,高速热风吹到沸腾水的表面,提升水蒸气的产生速度,并利用风压快速流向导气管排出,从而提高水的蒸发量,在不增加功耗的情况下,使得 加湿量增加。
另外,封口块的下侧设有弹簧,在弹力作用下,水箱拿开后封口块能够对出风口密封,防止水通过出风口流入下方腔体损坏电子部件;当水箱放入机身后,水箱底部的顶杆推开封口块,加热槽的内腔、下腔体和出风口之间形成空气流通通道,便于风扇进行输风工作,稳定可靠。
附图说明
图1为本发明实施例提供的增加加湿量的蒸发式加湿器的分解结构示意图;
图2为本发明实施例提供的增加加湿量的蒸发式加湿器的整体局部剖视结构示意图;
图3为图2的局部剖视结构示意图;
图4为图3的主视结构示意图;
图5为图1中机身的俯视状态局部结构示意图。
图中:1-水箱盖,2-水箱,3-机身,4-顶杆,5-封口块,6-弹簧,7-出风口,8-风扇,9-风扇固定架,10-消声管,11-导气管,12-沸腾水,13-加热盘,14-下腔体,15-加热槽,16-隔水棉,17-温水槽,18-外套筒,19-支杆座。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
以下结合具体实施例对本发明的具体实现进行详细描述。
如图1-5所示,为本发明一个实施例提供的一种增加加湿量的蒸发式加湿器,包括水箱盖1、水箱2和机身3,所述水箱2配合放置于机身3内,水箱2的顶部可拆卸设有水箱盖1,还包括:
加热槽15,所述机身3的内侧下部设有加热槽15,加热槽15的下侧配合设有加热盘13,通过所述加热盘13对加热槽15内的水体进行加热蒸发;
导气管11,所述水箱2的内侧设有导气管11,导气管11的下端与加热槽15内腔连通,导气管11的上端配合安装有消声管10,依次通过所述导气管11和消声管10将加热槽15内产生的水蒸气排出;
加湿提升组件和连通组件,所述加热槽15的下侧于机身3内设有下腔体14,下腔体14通过连通组件与所述加热槽15的内腔连接,且当所述水箱2配合放置于机身3内后,通过所述连通组件用于使得加热槽15的内腔和下腔体14连通;当所述水箱2未在机身3内安装到位时,通过所述连通组件隔断加热槽15的内腔和下腔体14的连通关系;所述加湿提升组件安装于下腔体14内,且所述加湿提升组件用于在加热槽15的内腔和下腔体14连通时,向加热槽15的内腔沸腾水12表面送风,进而提升沸腾水12表面水蒸气产生速度,并加速水蒸气从导气管11排出,以提高水的蒸发量。
如图2-5所示,作为本发明的一种优选实施例,所述加湿提升组件包括有风扇8和风扇固定架9,所述风扇固定架9安装固定于下腔体14内,风扇8配合安装固定于风扇固定架9上,通过所述风扇8 用于将下腔体14内的空气通过连通组件向加热槽15的内腔输送,进而使得下腔体14内腔的热量得到充分的利用。另外,所述机身3的侧壁上还开设有进风孔,通过进风孔的开设,利于空气流动,即通过进风孔进入空气带走下腔体14内的热量向加热槽15的内腔输送,后从导气管11排出,利于装置稳定可靠的工作。
所述连通组件包括有顶杆4、封口块5、弹簧6、出风口7、外套筒18和支杆座19,所述水箱2的底部安装固定有顶杆4,下腔体14内安装固定有支杆座19,支杆座19包括有支杆和支座,支杆配合安装固定于支座上,所述支杆上配合滑动设有封口块5,支杆上还设有用于对封口块5进行弹性支撑的弹簧6,所述封口块5的外侧配合滑动设有外套筒18,外套筒18固定于下腔体14内,所述外套筒18的顶部开设有出风口7,下腔体14通过出风口7与加热槽15的内腔连通;当所述水箱2配合放置于机身3内后,顶杆4对封口块5进行按压,此时下腔体14通过出风口7与加热槽15的内腔连通;当所述水箱2未在机身3内安装到位时,顶杆4和封口块5分离,此时封口块5的上端对出风口7进行密封(如图5所示),通过所述封口块5隔断加热槽15的内腔和下腔体14的连通关系。另外,对于外套筒18和支杆座19的具体安装不作限定,能够保证连通关系及连通组件的功能即可。
进一步的,所述出风口7优选为圆形状,顶杆4和封口块5竖直对应,顶杆4优选为圆柱形结构,且顶杆4的直径小于出风口7的直径,利于通过顶杆4对封口块5进行按压。
进一步的,所述封口块5优选为阶梯状结构,封口块5的上端用于对外套筒18上端的出风口7进行密封,所述封口块5与外套筒18滑动连接的部分还周向分布开设有多条通气槽(未示出),通过通气槽用于空气通过,进而使得下腔体14内的空气通过依次通气槽和出风口7进入到加热槽15的内腔中。
如图4-5所示,作为本发明的一种优选实施例,所述加热槽15的一侧于机身3内还设有温水槽17,温水槽17与导气管11外侧的水箱2内腔连通,所述温水槽17和加热槽15之间通过隔水棉16隔开,隔水棉16用于使得加热槽15内水体减少后,温水槽17内的水体能够向加热槽15自动补充,隔水棉16的具体材质不作限定,根据实际需要及该领域的常识布置即可。
如图4所示,作为本发明的一种优选实施例,所述导气管11为上小下大的锥形筒体结构,导气管11的内腔截面优选为圆形状,消声管10安装固定于导气管11的顶部中间,且所述消声管10的下端面优选位于导气管11的内顶面下侧,提升消声管10的水蒸气排放效果,消声管10的具体材质、结构采用现有公开技术即可。
进一步的,所述水箱盖1上还开设有排气孔,排气孔与消声管10连通,排气孔的具体布置不作限定,实际应用时可设计需要的造型,保证水箱盖1对水箱2内腔上端进行密封的同时,使得消声管10气体均匀排出即可,不作限定。
该增加加湿量的蒸发式加湿器,通过加热盘13和加热槽15的限定,加热盘13能够直接对水进行加温,且利用风扇8将下腔体14内 的热量抽走,经过打开的出风口7流入到加热槽15的内腔中,高速热风吹到沸腾水12的表面,提升水蒸气的产生速度,并利用风压快速流向导气管11排出,从而提高水的蒸发量,在不增加功耗的情况下,使得加湿量增加。另外,封口块5的下侧设有弹簧6,在弹力作用下,水箱2拿开后封口块5能够对出风口7密封,防止水通过出风口7流入下方腔体损坏电子部件;当水箱2放入机身3后,水箱2底部的顶杆4推开封口块5,加热槽15的内腔、下腔体14和出风口7之间形成空气流通通道,便于风扇8进行输风工作,稳定可靠。
此外,各部件的控制采用现有技术中公开的控制器即可,各部件的型号及电路连接不作具体限定,在实际应用时可灵活设置。
涉及到的电路、电子元器件和模块均为现有技术,本领域技术人员完全可以实现,无须赘言,本发明保护的内容也不涉及对于软件和方法的改进。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (9)

  1. 一种增加加湿量的蒸发式加湿器,包括水箱盖、水箱和机身,所述水箱配合放置于机身内,水箱的顶部可拆卸设有水箱盖,还包括:
    加热槽,所述机身的内侧下部设有加热槽,加热槽的下侧配合设有加热盘,通过所述加热盘对加热槽内的水体进行加热蒸发;
    导气管,所述水箱的内侧设有导气管,导气管的下端与加热槽内腔连通,导气管的上端配合安装有消声管,依次通过所述导气管和消声管将加热槽内产生的水蒸气排出;其特征在于,还包括:
    加湿提升组件和连通组件,所述加热槽的下侧于机身内设有下腔体,下腔体通过连通组件与所述加热槽的内腔连接;
    且当所述水箱配合放置于机身内后,通过所述连通组件用于使得加热槽的内腔和下腔体连通;当所述水箱未在机身内安装到位时,通过所述连通组件隔断加热槽的内腔和下腔体的连通关系;
    所述加湿提升组件安装于下腔体内,且所述加湿提升组件用于在加热槽的内腔和下腔体连通时,向加热槽的内腔沸腾水表面送风,进而提升沸腾水表面水蒸气产生速度,并加速水蒸气从导气管排出。
  2. 根据权利要求1所述的增加加湿量的蒸发式加湿器,其特征在于,所述加湿提升组件包括有风扇和风扇固定架;
    所述风扇固定架安装固定于下腔体内,风扇配合安装固定于风扇固定架上,通过所述风扇用于将下腔体内的空气通过连通组件向加热槽的内腔输送。
  3. 根据权利要求2所述的增加加湿量的蒸发式加湿器,其特征在于,所述机身的侧壁上还开设有进风孔。
  4. 根据权利要求2所述的增加加湿量的蒸发式加湿器,其特征在于,所述连通组件包括有顶杆、封口块、弹簧、出风口、外套筒和支杆座;
    所述水箱的底部安装固定有顶杆,下腔体内安装固定有支杆座,支杆座包括有支杆和支座,支杆配合安装固定于支座上;
    所述支杆上配合滑动设有封口块,支杆上还设有用于对封口块进行弹性支撑的弹簧,所述封口块的外侧配合滑动设有外套筒,外套筒固定于下腔体内,所述外套筒的顶部开设有出风口,下腔体通过出风口与加热槽的内腔连通;
    当所述水箱配合放置于机身内后,顶杆对封口块进行按压,此时下腔体通过出风口与加热槽的内腔连通;
    当所述水箱未在机身内安装到位时,顶杆和封口块分离,此时封口块的上端对出风口进行密封,通过所述封口块隔断加热槽的内腔和下腔体的连通关系。
  5. 根据权利要求4所述的增加加湿量的蒸发式加湿器,其特征在于,所述出风口为圆形状,顶杆和封口块竖直对应,顶杆为圆柱形结构,且顶杆的直径小于出风口的直径。
  6. 根据权利要求5所述的增加加湿量的蒸发式加湿器,其特征在于,所述封口块为阶梯状结构,封口块的上端用于对外套筒上端的出风口进行密封;
    所述封口块与外套筒滑动连接的部分还周向分布开设有多条通气槽。
  7. 根据权利要求1-6任一项所述的增加加湿量的蒸发式加湿器,其特征在于,所述加热槽的一侧于机身内还设有温水槽,温水槽与导气管外侧的水箱内腔连通;所述温水槽和加热槽之间通过隔水棉隔开,隔水棉用于使得加热槽内水体减少后,温水槽内的水体能够向加热槽自动补充。
  8. 根据权利要求7所述的增加加湿量的蒸发式加湿器,其特征在于,所述导气管为上小下大的锥形筒体结构,导气管的内腔截面为圆形状;
    所述消声管安装固定于导气管的顶部中间,且所述消声管的下端面位于导气管的内顶面下侧。
  9. 根据权利要求8所述的增加加湿量的蒸发式加湿器,其特征在于,所述水箱盖上还开设有排气孔,排气孔与消声管连通。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117739442A (zh) * 2024-02-21 2024-03-22 上海库宝制冷设备有限公司 一种冷风机

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102162661A (zh) * 2011-05-10 2011-08-24 中山市连邦电气有限公司 一种连动防漏水式加湿器
CN111043690A (zh) * 2019-12-31 2020-04-21 佛山市思迈乐电器有限公司 一种新型的加湿器
US20200378636A1 (en) * 2019-05-29 2020-12-03 Etekcity Corporation Humidifier with Waterproof Arrangement
CN213300370U (zh) * 2020-08-08 2021-05-28 厦门呼博仕环境工程产业股份有限公司 一种加湿器
CN213480466U (zh) * 2020-10-29 2021-06-18 广东奥迪威传感科技股份有限公司 一种空气加湿器
CN216080155U (zh) * 2021-09-10 2022-03-18 江门市西点电器科技有限公司 加湿器

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102162661A (zh) * 2011-05-10 2011-08-24 中山市连邦电气有限公司 一种连动防漏水式加湿器
US20200378636A1 (en) * 2019-05-29 2020-12-03 Etekcity Corporation Humidifier with Waterproof Arrangement
CN111043690A (zh) * 2019-12-31 2020-04-21 佛山市思迈乐电器有限公司 一种新型的加湿器
CN213300370U (zh) * 2020-08-08 2021-05-28 厦门呼博仕环境工程产业股份有限公司 一种加湿器
CN213480466U (zh) * 2020-10-29 2021-06-18 广东奥迪威传感科技股份有限公司 一种空气加湿器
CN216080155U (zh) * 2021-09-10 2022-03-18 江门市西点电器科技有限公司 加湿器

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117739442A (zh) * 2024-02-21 2024-03-22 上海库宝制冷设备有限公司 一种冷风机
CN117739442B (zh) * 2024-02-21 2024-04-30 上海库宝制冷设备有限公司 一种冷风机

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