1. Field of the Invention
The present invention relates to an aromatic diffuser and more particularly, to such a nebulizing diffuser, which utilizes oscillation waves to atomize an aromatic fluid.
2. Description of the Related Art
Regular aromatic nebulizing diffusers or essential oil diffusers commonly have one single outlet for guiding out the generated fine mist of aroma or essential oil droplets. However, diffused water droplets may impact one another in the outlet, and a big ratio of the generated mist will be condensed into fluid that will flow back to the inside of the fluid container, lowering the nebulizing diffusion effect.
Further, in the fluid container of a conventional aromatic nebulizing diffuser or essential oil diffuser, a planar baffle is mounted on the inside to prohibit upward moving of the oscillated aromatic fluid or essential oil. However, this planar baffle causes the major part of the oscillated flow of aromatic fluid or essential oil to flow horizontally, hindering lift of the produced fine mist of aromatic fluid or essential oil droplets.
According to conventional designs, a person can simply see the lifting of the produced fine mist of aromatic fluid or essential oil from the outlet of the fluid container. The conventional designs cannot provide a visual lighting effect to illuminate the lifting of produced fine mist of aromatic fluid or essential oil in the dark or at night.
Further, when the aromatic fluid or essential oil in an aromatic nebulizing diffuser or essential oil diffuser is been oscillated to produce a fine mist of aromatic fluid or essential oil droplets, the wall of the aromatic nebulizing diffuser or essential oil diffuser tends be contaminated with aromatic fluid stains or essential oil stains. In this case, the aromatic nebulizing diffuser or essential oil diffuser must be cleaned so as not to lower the nebulizing performance. However, it is inconvenient to assemble and disassemble conventional aromatic nebulizing diffusers or essential oil diffusers, i.e., conventional designs do not facilitate cleaning.
Further, the single outlet design of conventional aromatic nebulizing diffusers or essential oil diffusers limits the variation of lifting mode of produced fine mist of aromatic fluid or essential oil droplets.
The present invention has been accomplished under the circumstances in view. It is main object of the present invention to provide an aromatic nebulizing diffuser, which has multiple holes for guiding out the generated fine mist of aromatic fluid droplets, facilitating atomization of the aromatic fluid and lifting of the generated fine mist of aromatic fluid droplets and avoiding condensing of the generated fine mist of aromatic fluid droplets,
It is another object of the present invention to provide an aromatic nebulizing diffuser, which prevents splashing of the aromatic fluid during oscillation and has better performance in atomization of the aromatic fluid without increasing the capacity and oscillation frequency of the oscillator.
It is still another object of the present invention to provide an aromatic nebulizing diffuser, which can be easily assembled and disassembled, facilitating cleaning.
It is still another object of the present invention to provide an aromatic nebulizing diffuser, which provides lighting and visual effects, enabling people to see the variation of the lifting of the generated fine mist of aromatic fluid droplets.
It is still another object of the present invention to provide an aromatic nebulizing diffuser, which provides better atomization.
To achieve this and other objects of the present invention, an aromatic nebulizing diffuser comprises a base panel having a plurality of air vents cut through top and bottom sides thereof, an electric fan mounted on the base panel corresponding the air vents for drawing in air, a fluid container, which comprises a horizontal bottom wall, a mounting through hole cut through the horizontal bottom wall; a vertical peripheral wall upwardly extended from the border of the horizontal bottom wall, a fluid chamber surrounded by the horizontal bottom wall and the vertical peripheral wall and holding an aromatic fluid, an air conduit suspending in the fluid chamber, the air conduit having a bottom air inlet extending out of the horizontal bottom wall for guiding in currents of air from the electric fan and a top air outlet for suspending above the fluid level of the aromatic fluid, an ultrasonic oscillator mounted in the mounting through hole of the fluid container and controllable to produce oscillating waves for causing atomization of the aromatic fluid, a power adapter mounted on the base panel and electrically connected with the electric fan and the ultrasonic oscillator to provide the electric fan and the ultrasonic oscillator with the necessary working voltage, a shell surrounding the fluid container and having a top open side connected with the fluid container and a bottom open side connected with the base panel, and a top cover covered on the shell to close the fluid container, The top cover comprises a plurality of jet holes cut through top and bottom walls thereof in communication with the inside space of the fluid chamber and arranged in a circle, and an annular bottom flange protruded from the bottom wall and suspending in the top side inside the fluid chamber of the fluid container for baffling water.
The aromatic nebulizing diffuser further comprises a water lever sensor and a light source carried on the ultrasonic oscillator. The water level sensor is adapted to detect the level of the aromatic fluid in the fluid chamber. The light source is controllable by the ultrasonic oscillator to emit light in illuminating the fluid chamber.
Further, the shell can be prepared from a transparent or translucent that admits light.
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After understanding of the structural details of the component parts of the detachable aromatic nebulizing diffuser 100 and their arrangement, the operation of the detachable aromatic nebulizing diffuser 100 is described hereinafter.
At first, an aromatic fluid (essential oil and water mixture) is filled in the fluid chamber 54 of the fluid container 50, and then the ultrasonic oscillator 60 is turned on to oscillate the aromatic fluid into a fine mist of aromatic fluid droplets. At the same time, the electric fan 30 is started to draw in outside fresh air through the air vents 11 on the base panel 10. The intake currents of air are guided through the air inlet 531 and air outlet 532 of the air conduit 53 into the fluid chamber 54 to further carry the generated fine mist of aromatic fluid droplets out of the top cover 70 into the outside open air via the jet holes 71. Because the generated fine mist of aromatic fluid droplets is quickly carried by the induced currents of air out of the top cover 70 into the outside open air via the jet holes 71, the generated fine mist of aromatic fluid droplets will not be condensed into fluid in the jet holes 71.
Further, the annular bottom flange 72 projects into the inside of the fluid container 50 to prevent splashing of the oscillated aromatic fluid without hindering flowing of the induced currents of air with the generated fine mist of aromatic fluid droplets toward the jet holes 71. Therefore, the invention achieves better atomization of the aromatic fluid when compared to conventional designs that use an ultrasonic oscillator of the same capacity and oscillation frequency.
Further, the shell 40 can be prepared from ceramics and coated with a layer of color coating, showing the shape of a donut and providing a decorative effect.
Further, the base panel 10 has a plurality of tubular upright posts 12 perpendicularly upwardly extended from the top wall thereof. Further, the fluid container 50 has a plurality of bottom mounting rods 512 perpendicularly downwardly extended from the horizontal bottom wall 51 and respectively detachably plugged into the tubular upright posts 12 of the base panel 10. Subject to the matching design between the tubular upright posts 12 of the base panel 10 and the bottom mounting rods 612 of the fluid container 50, the fluid container 50 can be easily detachably installed, facilitating cleaning.
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Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Name | Date | Kind |
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3970250 | Drews | Jul 1976 | A |
Number | Date | Country | |
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20110079660 A1 | Apr 2011 | US |