Mixed humidifier using air cooling for cooling
By connecting the steam channel and the mist outlet channel in the humidifier and using a combination design of a fan and a cooler, the problems of steam leakage and insufficient mist output are solved, achieving efficient steam emission and increased mist output, while also providing high-temperature sterilization and rapid mist output.
Patent Information
- Application Number
- CN202423304716.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing humidifiers have steam leakage problems during the sterilization process and insufficient mist output, which cannot effectively prevent white powder pollution and improve the mist output speed.
A hybrid humidifier was designed. By connecting the steam channel and the mist outlet channel, the fan is used as both a water mist emission drive and a steam emission drive. Combined with a cooler, the water is cooled and atomized, thereby increasing the mist output and achieving high-temperature sterilization.
It achieves effective steam emission, increases the amount of mist output, improves the mist output speed, and avoids white powder pollution through high-temperature sterilization, possessing the advantages of rapid mist output and efficient sterilization.
Smart Images

Figure CN223677896U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to air humidification field especially utilizes the mixed humidifier of air cooling. BACKGROUND
[0002] KR200170374Y1 discloses a humidifier, the heater element installed in the sterilization groove works, the water in it is heated to the predetermined temperature, the water after heating flows along the cochlea-shaped cooling channel communicated with the humidification groove, and is cooled to the specified temperature (about 40 degrees below) by the air of the air blower to supply the humidification water tank, and the water of the humidification water tank is converted into fine particles by the vibration device.
[0003] The above scheme supplies the water cooled by the air blower to the humidification groove by bypassing the water by a predetermined distance, can prevent the vibration device from being damaged by heat, and the water of the humidification water tank is boiled and sterilized, so that the health problem of white powder pollution can be avoided, but the steam discharge problem in the sterilization groove is not considered, and the water mist is generated only by the vibration device, so that the water mist output is low. SUMMARY
[0004] In order to improve the deficiency in the prior art, the utility model provides a mixed humidifier utilizing air cooling.
[0005] As a solution, the humidifier comprises: a water tank provided with a water outlet; a heating water tank, a water outlet control device and a steam channel, the heating water tank is provided with a heater, the steam channel is used for discharging the steam generated by the heater, and the water outlet control device is used for controlling the opening and closing of the water outlet so that the water in the water tank can enter the heating water tank; a misting water tank and a mist outlet channel, the misting water tank is provided with a misting device, and the mist outlet channel is used for discharging the water mist generated by the misting device and the steam generated by the heating water tank after mixing; a cooler, which is respectively communicated with the heating water tank and the misting water tank, is used for providing a path for the water flowing from the heating water tank into the misting water tank; and a fan, the outlet of the steam channel is communicated to the mist outlet channel, the fan is used as a multiplexing device of the driving device of the water mist discharge and the driving device of the steam discharge, and the wind blown by the fan is all or partially guided to the cooler as the cooling source of the water in the cooling cooler.
[0006] The utility model is mixed by the communication of the steam channel and the mist outlet channel, which is additionally arranged, solves the steam discharge generated during heating and sterilization, increases the mist output of the machine, and achieves the effect of killing two birds with one stone; the wind of the fan is finally blown to the mist outlet channel to form negative pressure, pulls the water mist and the steam discharge, and improves the mist discharge speed; the water in the water tank flows into the heating water tank to be heated and boiled, the boiling water is cooled by the cooler and then is misted, and the effect of high-temperature sterilization is achieved.
[0007] The humidifier also comprises the following accessory schemes:
[0008] The outlet of the steam channel is directly communicated to the mist outlet channel, and the air outlet path of the fan is configured to be communicated to the external space of the humidifier at least through the mist outlet channel.
[0009] The mist outlet channel is connected with the mixing space, and the air outlet path of the fan is configured to be communicated to the external space of the humidifier at least through the mist outlet channel.
[0010] The cooling device comprises at least a cooling water tank, and the cooling water tank is respectively communicated with the heating water tank and the atomizing water tank as a path.
[0011] The cooling device comprises at least a cooling water tank, and the cooling water tank is respectively communicated with the heating water tank and the atomizing water tank as a path.
[0012] The cooling device comprises at least a cooling water tank, and the cooling water tank is respectively communicated with the heating water tank and the atomizing water tank as a path.
[0013] The cooling device comprises at least a cooling water tank, and the cooling water tank is respectively communicated with the heating water tank and the atomizing water tank as a path.
[0014] The cooling device comprises at least a cooling water tank, and the cooling water tank is respectively communicated with the heating water tank and the atomizing water tank as a path.
[0015] The water outlet control device is a float valve.
[0016] The atomizer is an ultrasonic atomizer. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The structure of the humidifier is shown;
[0018] Figure 2 The design of the first air duct structure is shown;
[0019] Figure 3 The design of the second air duct structure is shown;
[0020] Figure 4 The design of the third air duct structure is shown;
[0021] Figure 5 The first angle section structure of the fan blowing the outer side of the heat body is shown;
[0022] Figure 6 The second angle section structure of the fan blowing the outer side of the heat body is shown. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application.
[0024] Referring to Figure 1 The humidifier is composed of a water tank 100 and a base 200, the water tank 100 is provided with a water outlet 101, and the top surface of the base 200 is provided with sunken grooves to form a heating water tank 210 and an atomizing water tank 220.
[0025] The heating water tank 210 is provided with a heater installed at the bottom, and a steam passage 211 is communicated with the top of the heating water tank 210, which is used to discharge the steam generated by the heater. The humidifier is provided with a water outlet control device, which is used to control the opening and closing of the water outlet so that the water in the water tank can enter the heating water tank 210.
[0026] The heating water tank 210 and the atomizing water tank 220 are communicated through a cooler, which provides a path for the water to flow from the heating water tank 210 to the atomizing water tank 220.
[0027] The atomization water tank 220 is provided with an atomizer at the bottom, an ultrasonic atomization sheet is used, the top of the tank is communicated with a mist outlet channel 300, the outlet of the steam channel 211 is communicated to the mist outlet channel 300, the humidifier is provided with a fan 400, the fan 400 is used as a multiplexing device of a water mist discharging driving device and a steam discharging driving device, the mist outlet channel 300 discharges the water mist generated by the atomizer and the mixed steam generated by the heating water tank 210 from the humidifier, and the wind blown by the fan 400 is all or partially guided to blow to the cooler as a cooling source of water in the cooling cooler.
[0028] The humidifier has the advantages that the steam generated during heating and sterilization is discharged, the mist output of the machine is increased, one blow achieves two effects, the wind of the fan 400 is finally blown to the mist outlet channel 300 to form negative pressure, the water mist and the steam are discharged, and the mist output speed is improved, the water in the water tank flows into the heating water tank 210 to be heated and boiled, the boiling water is cooled by the cooler and then atomized, and the effect of high-temperature sterilization is achieved.
[0029] As a first implementation mode that the steam channel is communicated with the mist outlet channel, referring to Figure 2 , the mist outlet channel 300 is directly communicated with the atomization water tank 220 and located above the atomization water tank 220, the outlet of the steam channel 211 is directly communicated to the mist outlet channel 300, and the air outlet path of the fan 400 is configured to be communicated to the external space of the humidifier at least via the mist outlet channel 300. The steam generated during heating is mixed with the water mist generated by atomization through the steam channel, and is discharged out of the machine, and the flow direction of the steam is shown by arrows in the figure.
[0030] As a second implementation mode that the steam channel is communicated with the mist outlet channel, referring to Figure 3 , the atomization water tank 220 is provided with a water mist channel 221, the water mist channel 221 is used for discharging the water mist generated by the atomizer, the outlet of the steam channel 211 is communicated with the outlet of the water mist channel 221 to form a mixing space 500, the mist outlet channel 300 is connected with the mixing space 500, and the air outlet path of the fan 400 is configured to be communicated to the external space of the humidifier at least via the mist outlet channel 300. The steam generated during heating is mixed with the atomized water vapor in the mixing space, and is discharged out of the machine, and the flow direction of the steam is shown by arrows in the figure.
[0031] As a third implementation mode that the steam channel is communicated with the mist outlet channel, preferably, referring to Figure 1 , Figure 4, the cooler at least comprises a cooling water tank 230, which is connected to the heating water tank 210 and the atomizing water tank 220 respectively as the path; the outlet of the fan 400 extends into the cooling water tank 230 to guide part or all of the blown air to the water surface in the cooling water tank 230, thereby enhancing the cooling effect; at this time, the fan 400 is reused as the cooling device for the water in the cooling water tank 230, and the air outlet path of the fan 400 is configured to be connected to the external space of the humidifier at least through the mist outlet channel 300 to form a negative pressure to push the steam and water mist out. By connecting the heating water tank 210, the cooling water tank 230, and the atomizing water tank 220 to form a channel above them, the steam generated during heating passes through the channel and mixes with the atomized water vapor, and is discharged out of the machine; the flow direction of the steam is shown by the arrows in the figure. Further, the cooling water tank 230 is provided with a heat sink 231 having heat transfer performance; the heat sink 231 has a built-in cavity, one end of the heat sink 231 extends into the water tank, and the other end extends into the cooling water tank 230; the heat sink 231 serves as a heat exchange component for the water in the water tank and the water in the cooling water tank, thereby further enhancing the cooling effect. The side wall of the cooling water tank 230 is provided with a water passing port 232 connected to the heating water tank and the atomizing water tank 220 respectively; the outlet of the fan 400 extends into the cavity of the heat sink 231, and the holes in the cavity of the heat sink 231 are connected to the mist outlet channel 300 through the air passing channel 233. The air passing channel 233 is arranged in the side wall of the cooling water tank 230; the steam channel 211 is configured to have at least part of the section using the gap between the cooling water tank 230 and the heat sink 231 as a steam transmission channel, and is connected to the mist outlet channel 300 through the air passing channel 233, thereby achieving a compact structure, and at the same time, the heat sink is used to cool the steam.
[0032] As another solution, in addition to the above-mentioned embodiments, referring to Figure 5 、 Figure 6 , the cooler at least comprises a cooling water tank 230, which is connected to the heating water tank 210 and the atomizing water tank 220 respectively as the path; the cooling water tank 230 is provided with a heat sink 231 having heat transfer performance; the heat sink 231 has a built-in cavity, one end of the heat sink 231 extends into the water tank, and the other end extends into the cooling water tank 230; the side wall of the cooling water tank 230 is provided with a water passing port connected to the heating water tank and the atomizing water tank 220 respectively; the air blown out of the discharge port 401 of the fan 400 is guided to blow against the outer wall of the heat sink 231, the side wall of the cooling water tank 230 is provided with an air passing channel connected to the mist outlet channel 300, and the air outlet path of the fan 400 is configured to be discharged out of the humidifier through the mist outlet channel 300.
[0033] For another solution, the cooler at least comprises a cooling water tank 230, which is respectively communicated with the heating water tank 210 and the atomizing water tank 220 as a path; the cooling water tank 230 is provided with a heat sink 231 with heat transfer performance, the heat sink 231 is in contact with water in the cooling water tank 230; the wind blown by the fan 400 is guided to blow to the heat sink 231 in whole or in part, the fan 400 is multiplexed as a cooling device for water in the cooling water tank 230, and an air outlet path of the fan 400 is configured to be communicated to an external space of the humidifier at least via the mist outlet channel 300. The heat sink 231 does not contact the water in the water tank for cooling, which is more conducive to the separation design of the water tank, the hot water is accelerated to cool through the wind and the heat sink, and is mainly suitable for products with small heating power and atomization amount.
[0034] In the utility model, the water tank 100 is arranged below the base 200 to form an upper water filling type, and the water outlet control device is a float valve.
[0035] It should be finally pointed out that the above examples are only used to illustrate the technical solutions of the utility model, and are not used to limit the protection scope of the utility model. Although the utility model has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the utility model can be modified or replaced equivalently without departing from the essence and scope of the technical solutions of the utility model.
Claims
1. A hybrid humidifier using air cooling for temperature reduction, characterized by, Comprising: a water tank provided with a water outlet; a heating water tank, a water outlet control device and a steam passage, the heating water tank is installed with a heater, the steam passage is used to discharge steam generated by the heater, the water outlet control device is used to control the opening and closing of the water outlet so that the water in the water tank can enter the heating water tank; an atomizing water tank and a mist outlet passage, the atomizing water tank is installed with an atomizer, the mist outlet passage is used to discharge the water mist generated by the atomizer and the steam generated by the heating water tank after mixing; a cooler, respectively connected with the heating water tank and the atomizing water tank, used to provide a path for the water to flow from the heating water tank to the atomizing water tank; a fan, the outlet of the steam passage is connected to the mist outlet passage, the fan is used as a multiplexing device of the driving device of the water mist discharge and the driving device of the steam discharge, the air blown by the fan is all or part of the air blown to the cooler as the cooling source of the water in the cooler.
2. The hybrid humidifier according to claim 1, characterized in that: the mist outlet passage is directly connected to the atomizing water tank and located above the atomizing water tank, the outlet of the steam passage is directly connected to the mist outlet passage, and the air outlet path of the fan is configured to at least communicate to the external space of the humidifier through the mist outlet passage.
3. The hybrid humidifier according to claim 1, characterized in that: the atomizing water tank is configured with a water mist passage used to discharge the water mist generated by the atomizer; the outlet of the steam passage is connected to the outlet of the water mist passage to form a mixing space; the mist outlet passage is connected to the mixing space, and the air outlet path of the fan is configured to at least communicate to the external space of the humidifier through the mist outlet passage.
4. The hybrid humidifier according to claim 1, characterized in that: the cooler at least includes a cooling water tank, and the cooling water tank is respectively connected with the heating water tank and the atomizing water tank as the path; the air outlet of the fan extends into the cooling water tank to guide part or all of the blown air to the water surface in the cooling water tank, and the fan is multiplexed as a cooling device for the water in the cooling water tank, and the air outlet path of the fan is configured to at least communicate to the external space of the humidifier through the mist outlet passage.
5. The hybrid humidifier according to claim 4, characterized in that: the cooling water tank is configured with a heat sink having heat transfer performance; the heat sink is internally provided with a cavity, one end of the heat sink extends into the water tank, the other end of the heat sink extends into the cooling water tank, and the cavity side wall is provided with a water passage respectively connected with the heating water tank and the atomizing water tank; the air outlet of the fan extends into the cavity of the heat sink, and the cavity of the heat sink is connected to the mist outlet passage through an air passage.
6. The hybrid humidifier according to claim 5, characterized in that: the air passage is provided in the side wall of the cooling water tank; the steam passage is configured to at least have a part of the section using the gap between the cooling water tank and the heat sink as a steam transmission passage, and is connected to the mist outlet passage through the air passage.
7. The hybrid humidifier according to claim 1, characterized in that: the cooler at least includes a cooling water tank, and the cooling water tank is respectively connected with the heating water tank and the atomizing water tank as the path; The cooling water tank is provided with a heat sink with heat transfer performance, which is in contact with water in the cooling water tank; The air blown by the fan is all or partially guided to the heat sink, the fan is multiplexed as a cooling device for water in the cooling water tank, and an air outlet path of the fan is configured to be communicated to an external space of the humidifier at least via the mist outlet channel.
8. The hybrid humidifier according to claim 1, characterized in that: The cooler at least comprises a cooling water tank, which is respectively communicated with the heating water tank and the atomizing water tank as the path; The cooling water tank is provided with a heat sink with heat transfer performance; The heat sink is internally provided with a cavity, one end of the heat sink extends into the water tank, the other end extends into the cooling water tank, and a water passage is formed in a side wall of the cavity to respectively communicate with the heating water tank and the atomizing water tank; The air blown by the fan is all or partially guided to the heat sink, the cooling water tank is provided with a wind passage in a side wall thereof, the wind passage is communicated to the mist outlet channel, and an air outlet path of the fan is configured to be discharged to the humidifier via the mist outlet channel.
9. The hybrid humidifier according to claim 1, characterized in that: A base is arranged below the water tank to accommodate each water tank, and the water outlet control device is a float valve.
10. The hybrid humidifier of claim 1, wherein: The atomizer is an ultrasonic atomizer.
Citation Information
Patent Citations
Humidifier
KR200170374Y1