1. Field of the Invention
The present invention relates to an atomizing apparatus for producing by atomization a fine water mist or fog of aerosol particles of a size capable being suspended in air.
2. Description of the Prior Art
Conventional atomizing apparatuses include a high-frequency shaker generating high-frequency vibration to vibrate the water around the shaker, so that the water produces droplets. Further, the droplets are blew up and suspended in the ambient environment by an electrical fan or the like. Wherein users can add some essential oil into water. Whereby the droplets can kill germs, remove odor, freshen up, or other functions. Many similar apparatuses are disclosed, such as TW M281635 and TW M280812.
Wherein when users turn on these apparatuses, the drops will spread and vaporize to the ambient environment. The essential oil can be suspended in air direct. For distributing the essential oil more evenly and more rapidly, the drop size in the water mist ought to be droplets preferably. However, after these atomizing apparatuses of said patents generate the water mist, the water mist will be sprayed to the ambient environment direct whether the drops in the water mist are large or small in size. Thereby the effect of the drops is limited.
Besides said atomizing apparatuses, there is another kind of atomizing apparatus disclosed in TW I337878. It is formed with a curved gas channel with a baffle. The baffle can block the dust or the water mist carried the dust. However, the baffle of the atomizing apparatus fixes on an outer housing direct and extends inwardly. The length of the baffle is too long to being manufactured easily. Secondly, the part of the baffle fixed on an outer housing direct is cleaned difficultly.
The present invention is, therefore, arisen to obviate or at least mitigate the above mentioned disadvantages.
The main object of the present invention is to provide an atomizing device which is capable of generating and spaying the smaller and finer water mist.
To achieve the above and other objects, an atomizer of the present invention includes a shell, a droplets straining device, an atomizing device, and an air blower.
The shell is formed with a receiving space for storaging water therein. The shell is formed with an air intake channel and an exhaust channel. The air intake channel and the exhaust channel communicate to the receiving space respectively. The exhaust channel has a tubular space.
The droplets straining device comprises a rod and a division plate assembly. The division plate assembly extends from the rod radially. The droplets straining device is received in a tubular space. An outer periphery of the division plate assembly away from the rod abuts a periphery of the tubular space. The division plate defines the tubular space into a gas channel. The gas channel extends non-linearly.
The atomizing device is disposed in the shell and located in the receiving space. The atomizing device is used for atomizing the water in the receiving space and distributing the atomized water in the receiving space.
The air blower is disposed in the shell firmly. The air blower is used for driving air via the air intake channel into the receiving space and then via the exhaust channel away from the receiving space, so that the air and the atomized water flows through the gas channel of the droplets straining device.
Thereby the roundabout and curved gas channel of the droplets straining device of the atomizer of the present invention can block the larger drops of the water mist, and the smaller drops can pass through the gas channel to outside of the shell. The present invention can produce and spray the extremely fine mist.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
Please refer to
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The bottom housing 15 is detachably assembled to the base 11 and is used for containing water in the room between the bottom housing 15 and the base 11. Wherein the amount of water preferably is less than or equal to one half of the room, so that the room still has some dead space.
The base 11 is formed with two openings 111 and a transparent window 112. And the air blower 2, the rotary device 4, and an ultraviolet lamp 7 are disposed in the base 11 firmly. Wherein the air blower 2 corresponds to one of the openings, the other opening 111 keeps opening freely. The ultraviolet lamp 7 corresponds to the transparent window 112, so that the ultraviolet lamp towards the room between the base 11 and the bottom housing 15 emits ultraviolet ray through the transparent window 112 into the room. Please refer to
Please refer to
The tank 13 disposed on the laminate 12 includes a valve 131 receiving in the concave groove 121. The tank 13 contains water. The water can flow through the valve 131 into the concave groove 121 of the laminate. Wherein the valve 131 is able to be turned on and off as the amount of water in the concave groove 121, so as to avoid too much water from the tank 13 filling into the concave groove 121 and overflowing the concave groove 121.
The outer housing 14 disposed on the laminate 12 is formed with an opening 141 corresponding to the pore 126 of the top of the exhaust cylinder 125, so that the air of the receiving space of the shell exhausts outwardly via the exhaust channel and the opening 141. Please refer to
Please refer to
The atomizing device 3 is disposed on the laminate 12. When the atomizing device 3 is turned on, it would generate high-frequency vibration to vibrate and atomize the water contacting the atomizing device 3 into droplets. The droplets would suspend upwardly in the air so the exhaust cylinder 125 is full of droplets. When the air exhausts to outside of the shell outwardly, the droplets would flow out to outside of the shell with the air. Wherein the atomizing device 3 further has a sensor 31 extending upwardly. The sensor 31 is used for determining the water level. When the atomizing device 3 is immersed in the water and the water level rises up to a predetermined level of the atomizing device 3, the sensor 31 would turn off the atomizing device 3.
The rotary device 4 disposed in the base 11 is used for providing a rotary power. More definitely, the rotary device 4 is a motor or the like and includes gear assembly or other similar rotational speed adjustable mechanisms.
The rotary blade 5 is disposed on the rotary device 4 used for driving the rotary blade 5 to rotate. Please refer to
A top of the rotation axle 51 is installed on the rotary device 4, and a bottom of the rotation axle 51 extends from the plate 52 axially and narrows down gradually. The bottom of the rotation axle 51 inserts to the water contained in the bottom housing 15. Also, the bottom of the rotation axle 51 is hollow so as to lose its weight. The rotary blade 5 is located in the room between the base 11 and the bottom housing 15. And the baffle 113 of the base surrounds the rotary blade 5. More specifically, the baffle 113 surrounds the plate 52.
The water contained in the bottom housing 15 is thrown and sprayed by said rotary device 4 and rotary blade 5. And then the water strikes against the baffle 113. Thereafter, the water mist or the droplets are generated and carry the anions. When the rotary device 4 drives the rotary blade 5 to rotate, due to the water contained in the bottom housing 15, especially in contact with the bottom of the rotation axle 51, is influenced by the effect of centrifugal force and its adhesion force, so that the water is moved along the surface of the rotation axle 51 to the surface of the plate 52, and further is sprayed radially by the surface of the plate 52 and strikes against the baffle 113. The water contained in the bottom housing 15 is stricken continuously and then falls down like a waterfall. Afterwards the present invention produces water mist or droplets carried the anions in the room between the base 11 and the bottom housing 15. The air driven by the air blower 2 carries the water mist or the droplets to the exhaust cylinder 125, and further flows to outside of the shell together.
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The droplets straining device 6 comprises a bottom plate 63 extending from a bottom of the rod radially. An outer periphery of the bottom plate 63 abuts the periphery of the tubular space. The bottom plate 63 is formed with plural openings 631 communicating between the space under the bottom plate 63 and the gas channel divided by the division plate assembly. In addition, please refer to
The use of said device, please refer to
Wherein the present invention can throw and spray the water contained in the bottom housing 15 with the rotary device 4 and the rotary blade 5, so as to produce the droplets carried the anions. At the same time, the present invention can produce the droplets with the atomizing device 3. Therefore, in other embodiments of the present invention, if the present invention removes the atomizing device 3, the combination of the rotary device 4 and the rotary blade 5 can still serve as another atomizing device and produces the droplets. In this condition, the present invention without the atomizing device 3 can still produce droplets. To the contrary, if the present invention removes the rotary device 4 and the rotary blade 5 and keeps the atomizing device 3 therein, the atomizing device 3 can produce the droplets. In this condition, the present invention without rotary device 4 and the rotary blade 5 can still produce droplets.
Accordingly, when the droplets flow with the air through the gas channel of the droplets straining device 6, due to the gas channel is roundabout and curved, some larger droplets would easily collide and adhere to the droplets straining device 6 or the exhaust cylinder 125. After the drops adhered to the droplets straining device 6 or the exhaust cylinder 125 achieve to enough weight, the drops are dripped down to the concave groove 121 of the laminate by the earth gravity. Only the smaller drops can pass through the gas channel of the droplets straining device and spray to outside of the shell. Thereby the present invention can produces and sprays water mist, which is extremely fine.
Secondly, the present invention can produce the droplets carried the anions with the rotary device 4 and the rotary blade 5. The drops produced by the rotary device 4 and the rotary blade 5 move to the exhaust cylinder. Thereafter the drops further combine with the droplets produced by the atomizing device 3. Wherein the smaller drops is lighter than the larger drops, so that the smaller drops are easier combine with the drops carried the anions than the larger drops. Relatively, some of the larger drops are easy not to carry the anions. At the moment, the droplets straining device filter and recycle the larger drops. Thereby the water mist sprayed by the present invention can carry large number of the anions and enhance the effect of the present invention.
In this embodiment, the droplets straining device has six division plates. The air and the water mist have to go through many curves before spraying to outside of the shell. In an actual test, even if placing a tissue paper on the opening of the outer housing and the water mist contacts to the tissue paper, the tissue paper is not wet as well. It is thus clear that the atomizer of the present invention can truly produce extremely fine water mist.
Additionally, the division plate assembly of the droplets straining device of the present invention is disposed on the rod, when users would like to detach and clean the present invention, users can detach and separate the water mist screening and the exhaust cylinder. In other words, the structure of the present invention is simple and easy to clean. It is very convenient to use for a general family.
Moreover, each division plate of the droplets straining device of the present invention outwardly extends from the rod located in the middle of the droplets straining device. Each position of the division plate is closer to the rod so the structure of the droplets straining device is appropriate for manufacturing, particularly appropriate for manufacturing by plastic injection. The present invention has lower manufacturing costs or threshold.
Number | Date | Country | Kind |
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101200354 | Jan 2012 | TW | national |