Energy-gathering type humidifier structure
By setting the insulation layer and the burst assembly on the energy-concentrating sleeve assembly of the humidifier, the problem of lack of insulation and insulation of the air outlet pipe is solved, the heating and atomization efficiency is improved, energy consumption is reduced and noise is reduced.
Patent Information
- Application Number
- CN202422139237.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-30
AI Technical Summary
The air outlet pipes of existing humidifiers lack the thermal insulation function, which causes the water vapor to cool down by cold water during the flow process, and partially condense into water droplets to flow back, affecting the heating efficiency and atomization efficiency.
An energy-concentrating humidifier structure is designed, using an energy-concentrating sleeve assembly, and a hollow insulation layer is installed thereon to reduce heat loss, and a bubble breaker component is installed on the upper part of the energy-concentrating sleeve assembly to puncture larger bubbles in advance to avoid bubble sounds.
By reducing heat loss and improving insulation performance, heating efficiency and atomization efficiency are improved, energy consumption is reduced, and a tranquil environment is provided.
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Figure CN222993097U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a structure of an energy - concentrating humidifier. Background Art
[0002] Chinese Patent Document No. CN214370689U discloses a humidifier with an air - outlet noise - reduction structure on October 8, 2021, which includes a humidifier main body, as well as a water tank, an air outlet pipe and a heating plate placed in the humidifier main body. The heating plate is located below the water tank, a channel for accommodating the air outlet pipe is provided in the middle of the water tank, and the air outlet pipe covers the top of the heating plate and forms an atomization cavity inside.
[0003] Based on the above, the technical problem existing in the prior art is that the air outlet pipe does not have the function of heat insulation. When the water vapor generated by the evaporation of the electric heating element flows upward, it will be cooled by the cold water in the water tank. A part of the cooled water vapor will be condensed into water droplets, resulting in backflow. At the same time, this heat loss will also affect the heating efficiency and the atomization efficiency is low, which needs to be further improved. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a structure of an energy - concentrating humidifier with low energy consumption and high atomization efficiency to overcome the deficiencies in the prior art.
[0005] A structure of an energy - concentrating humidifier designed according to this purpose includes a humidifier body. A container for containing liquid is arranged in the humidifier body. An electric heating element for heating the liquid is arranged on the container. A heat - concentrating sleeve assembly for concentrating heat is arranged in the container. The electric heating element is arranged within the range where the heat - concentrating sleeve assembly is located. A hollow heat - insulation layer is arranged on the heat - concentrating sleeve assembly, and the heat - insulation layer is arranged at the upper part, middle part and / or lower part of the heat - concentrating sleeve assembly.
[0006] Further, the heat - concentrating sleeve assembly includes an inner sleeve and an outer sleeve sleeved outside the inner sleeve, and the heat - insulation layer is hermetically arranged between the inner sleeve and the outer sleeve.
[0007] Further, the upper and lower ends of the inner sleeve are respectively connected to the upper and lower ends of the outer sleeve.
[0008] Further, a top cover is arranged above the container. The top cover is provided with an atomization outlet, and the atomization outlet is provided with a mist - outlet cover with a mist outlet, and the atomization outlet is communicated with the mist outlet.
[0009] Further, an air inlet is also arranged on the top cover, and the air inlet, the inner cavity of the container and the atomization outlet are mutually communicated.
[0010] Further, the mist - outlet cover includes an annular mounting seat arranged on the top cover, and an atomization mesh cover is installed in the annular mounting seat.
[0011] Furthermore, a bubble-breaking component is provided at the upper part of the energy-gathering sleeve assembly; the bubble-breaking component includes a bubble-breaking seat provided at the upper part of the energy-gathering sleeve assembly, and a bubble-breaking grid is provided inside the bubble-breaking seat.
[0012] Furthermore, a mist-gathering cover is provided on the bubble-breaking seat, a mist outlet nozzle is provided on the mist-gathering cover, and a mist outlet cover is arranged above the mist outlet nozzle.
[0013] Furthermore, the mist outlet nozzle is arranged in a conical structure with a smaller upper part and a larger lower part.
[0014] Furthermore, the inside of the energy-gathering sleeve assembly is a boiling water area, the outside of the energy-gathering sleeve assembly is a water storage area, and a communication area for communicating the boiling water area and the water storage area is provided below the energy-gathering sleeve assembly.
[0015] In the utility model, a hollow heat insulation layer is provided on the energy-gathering sleeve assembly. Through the heat insulation layer, the heat transfer between the outside and the inside of the energy-gathering sleeve assembly can be reduced as much as possible, so as to reduce the heat loss inside the energy-gathering sleeve assembly, so that when the water vapor flows upward, the condensation and backflow of the water vapor caused by heat loss can be reduced as much as possible. At the same time, the heating efficiency inside the energy-gathering sleeve assembly can also be improved by improving the heat preservation performance, so as to improve the atomization efficiency.
[0016] In the utility model, a bubble-breaking component is provided at the upper part of the energy-gathering sleeve assembly; larger bubbles can be punctured in advance, and these larger bubbles can be prevented from forming larger bubbles, thereby eliminating the bubble sound when the larger bubbles burst and providing a more peaceful environment for users.
[0017] In summary, the utility model has the characteristics of low energy consumption and high atomization efficiency. Description of the Drawings
[0018] Figure 1 It is a schematic cross-sectional structure diagram of a humidifier.
[0019] Figure 2 It is a schematic exploded structure diagram of the energy-gathering sleeve assembly.
[0020] Figure 3 It is Figure 1 The enlarged structure diagram at A in
[0021] Figure 4 It is a schematic exploded structure diagram of the bubble-breaking component.
[0022] Figure 5 It is a schematic exploded structure diagram of the mist outlet cover and the top cover.
[0023] Figure 6 It is a schematic exploded structure diagram of the humidifier.
[0024] Figure 7 Exploded structural schematic diagram of another embodiment of the mist outlet cover and the top cover.
[0025] In the figure: 10 is the humidifier body, 100 is the top cover, 101 is the atomization outlet, 102 is the air inlet, 110 is the container, 111 is the boiling water area, 112 is the water storage area, 120 is the electric heating element, 20 is the heat concentrating sleeve assembly, 210 is the inner sleeve, 220 is the outer sleeve, 30 is the bubble breaking assembly, 310 is the bubble breaking seat, 311 is the bubble breaking grid, 320 is the fog concentrating cover, 321 is the mist outlet nozzle, 40 is the mist outlet cover, 400 is the mist outlet, 410 is the annular mounting seat, 420 is the atomization mesh cover, and the arrows in the figure indicate the gas flow direction. Detailed implementation manners
[0026] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0027] Refer to Figures 1-6 , a heat concentrating type humidifier structure, including a humidifier body 10, a container 110 for containing liquid is arranged inside the humidifier body 10, an electric heating element 120 for heating the liquid is arranged on the container 110, a heat concentrating sleeve assembly 20 for concentrating heat is arranged inside the container 110, and the electric heating element 120 is arranged within the range where the heat concentrating sleeve assembly 20 is located. A hollow heat insulation layer 200 is arranged on the heat concentrating sleeve assembly 20. The heat insulation layer 200 is arranged at the upper part, middle part, and / or lower part of the heat concentrating sleeve assembly 20.
[0028] Refer to Figure 1 and Figure 2 , the heat concentrating sleeve assembly 20 includes an inner sleeve 210 and an outer sleeve 220 sleeved outside the inner sleeve 210, and the heat insulation layer 200 is hermetically arranged between the inner sleeve 210 and the outer sleeve 220.
[0029] Furthermore, the inner sleeve 210 is made of stainless steel.
[0030] As Figure 1 shown, the inside of the heat concentrating sleeve assembly 20 is the boiling water area 111, the outside of the heat concentrating sleeve assembly 20 is the water storage area 112, and a communication area for communicating the boiling water area 111 and the water storage area 112 is arranged below the heat concentrating sleeve assembly 20.
[0031] The function of the communication area is that the water in the water storage area 112 can flow into the boiling water area. During use, the electric heating element 120 heats the water in the boiling water area 111 until it boils to generate water vapor and flows upward and is output to the outside. The functions of the heat concentrating sleeve assembly 20 and the heat insulation layer 200 are to reduce the heat transfer between the boiling water area 111 and the water storage area 112, avoid heat loss inside the boiling water area, and achieve better concentrated heating.
[0032] See Figure 2 , the upper and lower ends of the inner sleeve 210 are respectively connected to the upper and lower ends of the outer sleeve 220.
[0033] Furthermore, a first convex ring 211 is provided at the lower end of the inner sleeve 210, and the lower end face of the outer sleeve 220 is connected to the first convex ring 211. A second convex ring 221 is provided on the upper end face of the outer sleeve 220, and the second convex ring 221 is connected to the upper end face of the inner sleeve 210.
[0034] Furthermore, both the inner sleeve 210 and the outer sleeve 220 have a tapered structure with a smaller upper part and a larger lower part.
[0035] Furthermore, the inner sleeve 210 is fixedly installed in the container 110 by using an existing detachable connection structure.
[0036] See Figure 3 , a top cover 100 is provided above the container 110, the top cover 100 is provided with an atomization outlet 101, the atomization outlet 101 is provided with a mist outlet cover 40 with a mist outlet 400, and the atomization outlet 101 is communicated with the mist outlet 400.
[0037] An air inlet 102 is further provided on the top cover 100, and the air inlet 102, the inner cavity of the container 110 and the atomization outlet 101 are communicated with each other.
[0038] The function of the air inlet 102 is that when the water vapor output from the upper part of the energy-gathering sleeve assembly 20 flows to the atomization outlet 101, the water vapor releases to generate negative pressure, so that the air outside the humidifier body 10 comes to the atomization outlet 101 through the air inlet 102 to mix with the water vapor and then is output to the outside from the atomization outlet 101. The input of external air and the mixing with water vapor can cool the water vapor to prevent the risk of scalding due to too high temperature. At the same time, it also plays a role in accelerating the release of heat energy in the energy-gathering sleeve assembly 20 and preventing the boiling water in the energy-gathering sleeve assembly 20 from splashing out.
[0039] See Figure 5 , the mist outlet cover 40 includes an annular mounting seat 410 provided on the top cover 100, and an atomization mesh cover 420 is installed in the annular mounting seat 410. The uniformly distributed mist outlets 400 can quickly disperse and flow the atomized water vapor into the external air from different mist outlets 400. The function of the dispersed output is to quickly cool the water vapor to avoid the risk of scalding due to too high temperature.
[0040] Furthermore, the annular mounting seat 410 is installed in the atomization outlet 101.
[0041] See Figure 1 , Figure 3 and Figure 4, a bubble-breaking component 30 is provided at the upper part of the energy-gathering sleeve component 20. When water vapor carrying relatively large bubbles flows upward through the energy-gathering sleeve component 20, the acting force of the bubble-breaking component 30 can cause the relatively large bubbles to burst, so as to eliminate the relatively large bubbles, gather the water vapor, and reduce noise.
[0042] Furthermore, the bubble-breaking component 30 includes a bubble-breaking seat 310 provided at the upper part of the energy-gathering sleeve component 20, and a bubble-breaking grid 311 is arranged inside the bubble-breaking seat 310. Regarding the function of the bubble-breaking grid 311, when water vapor carrying relatively large bubbles passes through the dense grid, the grid contacts the bubbles to cause the relatively large bubbles to burst, thereby preventing the generation of larger bubbles.
[0043] See Figure 4 , a fog-gathering cover 320 is provided on the bubble-breaking seat 310, and a fog outlet nozzle 321 is provided on the fog-gathering cover 320. The fog outlet nozzle 321 is arranged in a conical structure with a smaller upper part and a larger lower part. The fog outlet cover 40 is sleeved above the fog outlet nozzle 321.
[0044] The arrangement of the fog outlet nozzle 321 with a smaller upper part and a larger lower part can compress the water vapor to increase the flow rate of the water vapor, so that the atomized water vapor can flow upward higher to achieve better mixing with the external air.
[0045] See Figure 7 , the annular mounting seat 410 and the atomization mesh cover 420 can be made into an integral structure.
[0046] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, so it cannot be understood as a limitation to the present invention. The terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features.
[0047] The foregoing has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments, and what is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed for the present utility model is defined by the appended claims and their equivalents.
Claims
1. An energy-gathering humidifier structure, comprising a humidifier body (10), wherein a container (110) for containing liquid is arranged in the humidifier body (10), an electric heating element (120) for heating the liquid is arranged on the container (110), an energy-gathering sleeve assembly (20) for gathering heat is arranged in the container (110), and the electric heating element (120) is arranged within the range where the energy-gathering sleeve assembly (20) is located, characterized in that: The energy concentrating sleeve assembly (20) is provided with a hollow heat-insulating layer (200), and the heat-insulating layer (200) is arranged at the upper part, the middle part and / or the lower part of the energy concentrating sleeve assembly (20).
2. The energy-concentrating humidifier structure according to claim 1 is characterized in that: The energy-gathering sleeve assembly (20) comprises an inner sleeve (210) and an outer sleeve (220) sleeved outside the inner sleeve (210), and the heat-insulating layer (200) is closed and arranged between the inner sleeve (210) and the outer sleeve (220).
3. The energy-concentrating humidifier structure according to claim 2 is characterized in that: The upper and lower ends of the inner sleeve (210) are respectively connected to the upper and lower ends of the outer sleeve (220).
4. The energy-concentrating humidifier structure according to claim 1 is characterized in that: A top cover (100) is arranged above the container (110), and an atomization outlet (101) connected to the inner cavity of the container (110) is arranged on the top cover (100), and a mist outlet cover (40) with a mist outlet (400) is arranged on the atomization outlet (101), and the atomization outlet (101) is connected to the mist outlet (400).
5. The energy-concentrating humidifier structure according to claim 4 is characterized in that: The top cover (100) is also provided with an air input port (102), and the air input port (102), the inner cavity of the container (110) and the atomization outlet (101) are interconnected.
6. The energy-concentrating humidifier structure according to claim 4, characterized in that: The mist outlet cover (40) comprises an annular mounting seat (410) arranged on the top cover (100), and an atomizing mesh cover (420) is mounted on the annular mounting seat (410).
7. The energy-concentrating humidifier structure according to claim 6, characterized in that: A bubble breaking assembly (30) is arranged on the upper part of the energy gathering sleeve assembly (20); the bubble breaking assembly (30) comprises a bubble breaking seat (310) arranged on the upper part of the energy gathering sleeve assembly (20), and a bubble breaking grid (311) is arranged in the bubble breaking seat (310).
8. The energy-concentrating humidifier structure according to claim 7, characterized in that: The bubble breaking seat (310) is provided with a mist collecting hood (320), the mist collecting hood (320) is provided with a mist outlet nozzle (321), and the mist outlet cover (40) is provided above the mist outlet nozzle (321).
9. The energy-concentrating humidifier structure according to claim 8, characterized in that: The mist outlet nozzle (321) is arranged in a conical structure that is small at the top and large at the bottom.
10. The energy-concentrating humidifier structure according to claim 1, characterized in that: The interior of the energy gathering sleeve assembly (20) is a boiling water area (111), the exterior of the energy gathering sleeve assembly (20) is a water storage area (112), and a connecting area for connecting the boiling water area (111) and the water storage area (112) is provided below the energy gathering sleeve assembly (20).
Citation Information
Patent Citations
Humidifier with air outlet noise reduction structure
CN214370689U