HEATING-TYPE HUMIDIFIER
The present disclosure provides a heating-type humidifier, including a water tank and a base. The water tank is arranged within the base, and the water tank includes a gas guide pipe, a gas outlet, and a water filling port; the gas outlet is communicated with the gas guide pipe. The base defines a cold gas tank and a heating tank that are communicated with the gas guide pipe, and the cold gas tank is communicated with the water tank through a water supply switch. The cold gas tank is communicated with the heating tank through a guide pipe, the guide pipe being a heat dissipation pipe.
The present disclosure claims priority of Chinese Patent Applications No. 202222077353.4 and 202220203673.7, filed on Aug. 9, 2022 and Jan. 20, 2022, in the China National Intellectual Property Administration, the entire contents of which are hereby incorporated by reference in their entirety.
TECHNICAL FIELDThe present disclosure relates to the field of humidifiers, and in particular to a heating-type humidifier.
BACKGROUNDHeating-type humidifiers are electrothermal humidifiers. According to the principle that electric current generates heat through electrical resistance and electrical energy is converted into heat, an electric heating pipe is submerged in water and the electric heating pipe generates heat, which causes the water to boil and turn into water vapor, thereby producing a moderate humidity environment.
An existing electrothermal humidifier generally defines a cold-water tank and a hot-water tank, the cold-water tank configured to provide the hot-water tank with water supply. The cold-water tank is arranged around the hot-water tank to achieve heating atomization while reducing the temperature of a side wall of the hot-water tank, thereby avoiding the shell of the humidifier from being affected by heat. In order to enhance the usage feeling, the electrothermal humidifier performs atomization operations in the cold-water tank and hot-water tank respectively, and combines cold and hot atomized gas to obtain the atomized gas with appropriate temperature. In the above electrothermal humidifier, the cold-water tank and hot-water tank are connected with each other, which will cause hot water backflow to the cold-water tank, leading to damage to an atomization part in the cold-water tank, such that the humidifier cannot perform the atomization operation, thereby affecting the service life of the humidifier.
Therefore, how to improve the structure of the existing heating-type humidifier, how to reduce the backflow of hot water in the hot-water tank, and effectively perform cooling and heat dissipation to enhance the service life of the product is one of the technical problems to be solved by those in the art.
SUMMARY OF THE DISCLOSURETo solve the above technical problems in the related art, the purpose of the present disclosure is to provide a heating-type humidifier that prevents hot water from flowing backwards and can effectively dissipate heat.
To achieve the above purposes, technical solutions adopted by the present disclosure are as follows.
A heating-type humidifier, comprising a water tank and a base;
wherein the water tank is arranged within the base, and the water tank comprises a gas guide pipe, a gas outlet, and a water filling port; the gas outlet is communicated with the gas guide pipe;
the base defines a cold gas tank and a heating tank that are communicated with the gas guide pipe, and the cold gas tank is communicated with the water tank through a water supply switch;
the cold gas tank is communicated with the heating tank through a guide pipe, the guide pipe being a heat dissipation pipe.
In some embodiments, a heat dissipation fan is arranged within the base, and air inlet end of the heat dissipation fan is arranged facing the guide pipe.
In some embodiments, the heat dissipation pipe is a metal pipe.
In some embodiments, a water level of the heating tank is higher than a water level of the cold gas tank.
In some embodiments, the heating tank is a recess arranged with an electric heating assembly and is connected to the gas guide pipe.
In some embodiments, the heating tank is a heating cup, and the gas guide pipe is communicated with the heating cup.
In some embodiments, a switch is arranged at an opening of the heating cup, and the water tank is pressed against the switch to open the heating cup.
In some embodiments, the switch comprises a fixing member and an opening-closing member;
the opening-closing member is arranged with a drive post toward the fixing member, the drive post passing through the fixing member to contact with the water tank;
the fixing member and the drive post are gripped between a spring;
the water tank is capable of pressing against the drive post to compress the spring and drive the opening-closing member to displace away from the fixing member, for opening an opening of the fixing member;
the water tank is capable of being disengaged from the drive post to release the spring and drive the opening-closing member to displace toward the fixing member, for sealing the opening of the fixing member.
In some embodiments, the opening comprises a plurality of openings each in a fan-shaped hole, and the plurality of openings are distributed in a circular array.
In some embodiments, the cold gas tank is L-shaped; an atomization assembly is disposed on an end of the cold gas tank, and the water supply switch is disposed on another end of the cold gas tank;
a bottom surface of the cold gas tank defines a connection port communicated with the guide pipe; the connection port is defined near the heating tank.
After adopting the above technical solution, the present disclosure has the following advantages over the related art.
In the present disclosure, the base is arranged with relatively independent and interval set cold gas tank and heating tank, the cold fog tank and heating tank being connected through the heat dissipation pipe. The water level of the heating tank is higher than the water level of the cold gas tank, thereby effectively avoiding backflow of the hot water in the heating tank. In addition, the heat dissipation pipe is further arranged with a heat dissipation fan, to effectively enhance the heat dissipation effect. If a small amount of hot water backflows in the heating tank, the water will also be cooled in the heat pipe, thereby avoiding damage to the atomization part in the cold gas tank, extending the service life of the product, reducing maintenance and repair costs, and effectively solving the technical problems of the related art.
The foregoing and/or additional aspects and advantages of the present disclosure will become apparent and easily understood from the description of the embodiments in conjunction with the accompanying drawings.
100, water tank; 110, gas outlet.
200, base; 210, cold gas tank; 220, heating tank; 230, atomization assembly; 240, water supply switch; 250, electric heating assembly.
300, gas guide pipe; 400, heat dissipation fan.
500, switch; 510, fixing member; 511, opening; 520, opening-closing member; 521, drive post.
600, guide pipe.
DETAILED DESCRIPTIONIn order to make the object, technical solutions, and advantages of the present disclosure more clearly understood, the present disclosure is described in further detail hereinafter in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are intended only to explain the present disclosure and are not intended to limit it.
In the present disclosure, it should be noted that the terms “up”, “down”, “left”, “right” “vertical”, “horizontal”, “inside”, “outside”, etc. are based on the orientation or position relationship shown in the attached drawings and are merely intended to facilitate and simplify the description of the present disclosure, not to indicate or imply that a device or element of the present disclosure must have a particular orientation, and therefore are not to be construed as limiting the present disclosure.
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Specifically, the gas guide pipe 300 is a circular pipe, which has a gas inlet end and a gas outlet end. The gas outlet end is disposed at the top of the water tank 100, so as to effectively discharge the atomized gas; the gas guide pipe 300 is arranged within the water tank 100.
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It should be noted that the cold gas tank 210 is connected to an inner cavity of the water tank 100 through the water outlet of the water tank 100, and controlled to be connected or disconnected by the water supply switch 240; the water contained in the cold gas tank 210 and the water tank 100 is at room temperature, and the not too high water temperature is intended for atomization operation.
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The above mentioned is only specific implementations of the present disclosure, but the scope of the present disclosure is not limited to it, and any variation or replacement that can be readily thought of by any person skilled in the art within the technical scope disclosed by the present disclosure should be covered by the scope of the present disclosure. Therefore, the scope of the present disclosure should be subject to the scope of the claims.
Claims
1. A heating-type humidifier, comprising a water tank and a base;
- wherein the water tank is arranged within the base, and the water tank comprises a gas guide pipe, a gas outlet, and a water filling port; the gas outlet is communicated with the gas guide pipe;
- the base defines a cold gas tank and a heating tank that are communicated with the gas guide pipe, and the cold gas tank is communicated with the water tank through a water supply switch;
- the cold gas tank is communicated with the heating tank through a guide pipe, the guide pipe being a heat dissipation pipe.
2. The heating-type humidifier according to claim 1, wherein a heat dissipation fan is arranged within the base, and air inlet end of the heat dissipation fan is arranged facing the guide pipe.
3. The heating-type humidifier according to claim 1, wherein the heat dissipation pipe is a metal pipe.
4. The heating-type humidifier according to claim 1, wherein a water level of the heating tank is higher than a water level of the cold gas tank.
5. The heating-type humidifier according to claim 1, wherein the heating tank is a recess arranged with an electric heating assembly and is connected to the gas guide pipe.
6. The heating-type humidifier according to claim 1, wherein the heating tank is a heating cup, and the gas guide pipe is communicated with the heating cup.
7. The heating-type humidifier according to claim 6, wherein a switch is arranged at an opening of the heating cup, and the water tank is pressed against the switch to open the heating cup.
8. The heating-type humidifier according to claim 7, wherein the switch comprises a fixing member and an opening-closing member;
- the opening-closing member is arranged with a drive post toward the fixing member, the drive post passing through the fixing member to contact with the water tank;
- the fixing member and the drive post are gripped between a spring;
- the water tank is capable of pressing against the drive post to compress the spring and drive the opening-closing member to displace away from the fixing member, for opening an opening of the fixing member;
- the water tank is capable of being disengaged from the drive post to release the spring and drive the opening-closing member to displace toward the fixing member, for sealing the opening of the fixing member.
9. The heating-type humidifier according to claim 7, wherein the opening comprises a plurality of openings each in a fan-shaped hole, and the plurality of openings are distributed in a circular array.
10. The heating-type humidifier according to claim 1, wherein the cold gas tank is L-shaped; an atomization assembly is disposed on an end of the cold gas tank, and the water supply switch is disposed on another end of the cold gas tank;
- a bottom surface of the cold gas tank defines a connection port communicated with the guide pipe; the connection port is defined near the heating tank.
Type: Application
Filed: Dec 29, 2022
Publication Date: Jul 20, 2023
Inventors: Jueyuan Chen (Xiamen), Weilin Wu (Xiamen), Zhenyuan Liao (Xiamen), Xiangyi Tu (Xiamen)
Application Number: 18/147,810