The present invention relates to a nebulizing apparatus, and more particularly to a nebulizing apparatus for nebulizing a solution into nebulized particles.
At present, conventional nebulizing apparatuses use the vibration principle to convert a liquid into a mist to float in the air. Liquid molecules are incorporated into the air due to the effect of Brownian movement, so as to change properties of the air. Such apparatuses are widely applied in drug or fragrance dispersing apparatuses, or applied to countries in drier regions for the purpose of indoor humidification.
However, a nebulizing apparatus conventionally used for changing properties of the air has no function of circulating and recycling water. When the nebulizing apparatus is in use, water drops are often condensed at the outlet of the nebulizing apparatus for spraying nebulized particles. After these water drops are accumulated to a certain extent, they flow to the location (e.g. a tabletop), at which the nebulizing apparatus is placed, along the surface of the nebulizing apparatus to wet the surroundings or to blur the peripheral articles, such as a tablecloth, garments, etc.
Moreover, traditional nebulizing apparatuses with submerged ultrasonic vibrators must consume a relatively large amount of power to generate water mists. Batteries or other power supply means for providing low currents (e.g. USB power lines using a 5 volt direct current) cannot be used to supply power thereto, which in turn results in inconvenience of carrying.
In view of the above-mentioned problems of the prior art, an object of the present invention is to provide a nebulizing apparatus for preventing the nebulized particles from wetting the periphery of the nebulizing apparatus or from blurring the articles around the nebulizing apparatus.
According to the object of the present invention, there is provided a nebulizing apparatus comprising a reservoir, an outer housing, a nebulizing unit, a chassis, a fan, a control unit and a power supply unit. The outer housing includes an accommodation space. The reservoir is disposed in the accommodation space and provided for storing a solution. The nebulizing unit is disposed in the reservoir at the position adjacent to the top of the reservoir for nebulizing the liquid stored in the reservoir to generate nebulized particles from the solution. The chassis is disposed between the reservoir and the outer housing. The fan is disposed on the chassis for blowing the nebulized particles outside of the outer housing. The control unit is disposed on the chassis and connected to the nebulizing unit and the fan. The power supply unit is disposed on the chassis and connected with the control unit, and provides the required power to the nebulizing unit and the fan through the control unit.
The reservoir comprises an outer cup, an inner cup, a first filtering unit and a driving unit. The outer cup is disposed in the accommodation space. The inner cup is disposed in the outer cup. The first filtering unit is disposed on the bottom of the inner cup. The driving unit is disposed on the bottom of the outer cup. The driving unit is used for actively driving the solution in the outer cup into the nebulizing unit. The inner cup and the outer cup communicate with each other. A condensed liquid returns to the inner cup in the reservoir along the inner side of the first cover, and then flows into the outer cup after the impurities are filtered by the first filtering unit. Finally, the driving unit drives the solution in the outer cup into the nebulizing unit for nebulizing the solution.
The nebulizing unit comprises a fixed base, a liquid conduit and a nebulizing module. The fixed base is disposed between the inner cup and the outer cup and connected to the inner cup. One end of the liquid conduit is disposed on one side of the fixed base, and the other end of the liquid conduit is connected with the driving unit. The liquid conduit is used for transmitting the solution pumped by the driving unit from the outer cup. The nebulizing module is disposed on the fixed base at the position adjacent to the liquid conduit. The solution pumped by the driving unit from the outer cup forms a curved liquid film in the gap between the driving unit and the nebulizing unit. The curved liquid film is attached to the nebulizing unit.
The nebulizing module comprises a piezoelectric drive element and a nebulizing plate. The piezoelectric drive element is disposed on the fixed base. The nebulizing plate has a plurality of millipores and is connected with the piezoelectric drive element. The nebulizing plate is disposed on the fixed base and spaced apart from the liquid conduit at an interval. The curved liquid film is attached to a surface of the nebulizing unit. The piezoelectric drive element facilitates the vibration of the nebulizing plate, so that the plurality of millipores of the nebulizing plate nebulize the curved liquid film to generate the nebulized particles.
As described above, the nebulizing apparatus of the present invention may have one or more of the following advantages:
(1) The driving unit of the liquid recovery mechanism of the nebulizing apparatus of the present invention is an active driving unit that can actively supply a solution to the nebulizing unit. Besides, the nebulizing apparatus has an external power unit, so it consumes much less energy than nebulizing apparatuses in other forms and provides great carrying convenience.
(2) Compared with a conventional nebulizing apparatus, the nebulizing apparatus of the present invention can save energy in recovering condensed solution.
(3) The nebulizing apparatus of the present invention has a control unit provided for regulating the atomization frequency.
(4) The configuration of the liquid recovery mechanism of the nebulizing apparatus of the present invention is designed to completely recover condensed liquid so as to avoid wetting of the location where the nebulizing apparatus exists.
(5) The first cover of the nebulizing apparatus of the present invention can also shield against nebulized particles of larger diameters, so that such nebulized particles are attached to the first cover and can be recovered and nebulized, and so that nebulized particles of smaller diameters can be released out. Hence, the nebulizing apparatus provides the function of screening nebulized particles by particle diameter, and can enhance diffusion in conjunction with the fan.
Hereinafter, embodiments of the nebulizing apparatus according to the present invention will be described with reference to the related drawings. For the convenience of understanding the description, the same elements in the embodiments will be given the same reference numerals.
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According to the above description, the driving unit 24 drives the solution in the outer cup 20 into the nebulizing unit 4, and the nebulizing unit 4 nebulizes the solution transported from the reservoir 2. Furthermore, a condensed liquid formed by condensing the nebulized particles on the first cover 3 can be recovered to the inner cup 22 along the inner side of the first cover 3, and then flows into the outer cup 20 after filtered by the first filtering unit 26. In this way, the above-mentioned steps can be repeated in a cycle to achieve the purpose of avoiding wetting of the periphery of the nebulizing apparatus or blurring of the articles around the nebulizing apparatus.
The first filtering unit 26 may be any substance capable of filtering impurities, such as a filter screen, porphyries andesite, a filter cartridge, a carbon filter layer or an organic foam. A second filtering unit 28 may be optionally added to the bottom of the inner cup 22. Similarly, the second filtering unit 28 may be made of a replaceable filtering material, for example, any substance capable of filtering impurities, such as a filter screen, porphyries andesite, a filter cartridge, a carbon filter layer or an organic foam. If the first filtering unit 24 or the second filtering unit 28 is of an organic foam and the solution is essential oil, the nebulizing apparatus of the present invention has a function of diffusing aroma. Also, the driving unit 24 may be any equipment or component capable of causing the solution to move, such as a pump, a capillary transfer line, etc. The materials of the inner cup 22 and the outer cup 20 are one selected from any corresponding suitable plastics, metals, alloys or composite materials, or a combination thereof.
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Furthermore, the power supply unit 7 and the external power unit 70 are respectively used for providing the power required for actuation of the control unit 9, the fan 6 and the multicolor light-emitting element 8. The control unit 9 can control the vibration frequency of or the mode of intermittent actuation of the piezoelectric drive element 440, the luminous states of the multicolor light-emitting element 8 corresponding to the states of the nebulizing apparatus, and the rotational speed of the fan 6. The control switch 90 allows the user to regulate the vibration frequency of the piezoelectric drive element 440 and the rotational speed of the fan 6.
Also, the control unit 9 controls the color variation or the flickering state of the multicolor light-emitting element 8, so that the user can know the current operation state of the nebulizing apparatus. For example, when the vibration frequency of or the mode of intermittent actuation of the piezoelectric drive element 440 increases, the multicolor light-emitting element 8 displays one color. When the vibration frequency of or the mode of intermittent actuation of the piezoelectric drive element 440 decreases, the multicolor light-emitting element 8 displays another color. Furthermore, the multicolor light-emitting element 8 indicates an insufficient level of the solution in the reservoir or failure with yet another color or flickering state. Namely, light of different colors and flickering states emitted by the multicolor light-emitting element 8 can indicate different modes of operation or failure.
In addition, the power supply unit 7 may be a battery case or a charger. Thus, when the second cover 14 is removed from the outer housing 1, it is convenient to replace the battery case or a battery in the charger. The external power unit 70 (referring to
Moreover, the surface of the outer housing 1 is provided with a plurality of hollowed out holes 16. The hollowed out holes 16 may be arranged in the form of cherry blossoms, stars, diamonds, etc. The fan 6 intakes the gas outside of the outer housing 1 through the hollowed out holes 16 of the outer housing 1 into the outer housing 1, and blows the nebulized particles through the opening 12 to the outside of the outer housing 1 in conjunction with the space within the outer housing 1 formed by the other assemblies. If not in use, the first cover 3 can be inversely covered and accommodated for convenient carrying. The solution used in the nebulizing apparatus may be water, a drug solution, aromatic essential oil, or the like, or a mixed solution thereof.
The above description is illustrative only and is not to be considered limiting. Various modifications or changes can be made without departing from the spirit and scope of the invention. All such equivalent modifications and changes shall be included within the scope of the appended claims.
Number | Date | Country | Kind |
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099206120 | Apr 2010 | TW | national |