1. Field of the Invention
The present invention relates to an aromatic nebulizing diffuser and more particularly, to such an aromatic nebulizing diffuser, which provides maximized aromatic fluid holding capacity, creates enhanced decorative and visual effects of aroma diffusion, and facilitates general maintenance and cleaning activities.
2. Description of the Related Art
With fast economic development and technological advancement and the rise of human civilization, there is a growing emphasis on the level of material and spiritual life, and having a good living environment has become the goal of people actively want to pursue. Further, air conditioners, air purifiers, fragrances, electric jasmines, aromatic nebulizing diffusers, perfume dispensers are intensively used in offices, rooms, cars, and many other living environments to eliminate bad smells and stale air, improving the work efficiency and mental health. Further, many new designs of aromatic nebulizing diffusers and perfume dispensers have been continuously created and have appeared on the market.
However, commercial aromatic nebulizing diffusers and perfume dispensers commonly have the following drawbacks:
Therefore, it is desirable to provide an aromatic nebulizing diffuser, which eliminates the aforesaid drawbacks.
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 provides enhanced decorative and visual effects of aroma diffusion.
It is another object of the present invention to provide an aromatic nebulizing diffuser, which maximizes the fluid accommodation capacity.
It is still another object of the present invention to provide an aromatic nebulizing diffuser, which facilitates general maintenance and cleaning activities.
To achieve this and other objects of the present invention, an aromatic nebulizing diffuser comprises a bottom holder shell, which comprises an accommodation open chamber and a plurality of air vents in communication with the accommodation open chamber, an electric fan mounted in the accommodation open chamber and operable to suck outside air through the air vents into the accommodation open chamber, a fluid container, which comprises a container body mounted in the bottom holder shell to close the accommodation open chamber and adapted for holding an aromatic fluid, a through hole located at the bottom side of the container body, a side block located at the periphery of the container body and defining a bottom air inlet in air communication with the accommodation open chamber and air vents of the bottom holder shell, a top air outlet and an air passage in communication between the bottom air inlet and the top air outlet, a container cover detachably covering the container body, an air intake port and a coupling tube located at the container body in air communication with the inside space of the container body, an oscillator sealed in the through hole of the fluid container and adapted to oscillate an aromatic fluid in the container body into a mist of aromatic fluid droplets, a circuit board electrically coupled with the oscillator, a power supply unit electrically connected to the electric fan, the oscillator and the circuit board to provide the electric fan, the oscillator and the circuit board with the necessary working voltage, and a cover shell, which comprises a bottom open end coupled to the bottom holder shell to surround the fluid container, a pressurized space defined therein around the fluid container and an inside coupling hole coupled to the coupling tube.
Preferably, the bottom holder shell comprises a plurality of columns and a step located on the inside thereof; the container body comprises a bottom mounting flange supported on the step of the bottom holder shell and affixed to the columns with fastening members.
Preferably, a gasket ring is sealed in between the bottom mounting flange of the container body and the step of the bottom holder shell.
Preferably, the container cover comprises a plurality of locating rods; the cover shell comprises a plurality of locating sleeves respectively coupled to the locating rods of the container cover.
Preferably, the aromatic nebulizing diffuser further comprises an oscillator sealing gasket ring mounted in the through hole of the fluid container to seal the oscillator in the through hole, and a locating plate bonded to the container body of the fluid container to seal the oscillator sealing gasket ring in the through hole of the fluid.
Preferably, the cover shell further comprises a flat ramp-shaped spout located at the top side thereof in communication with the coupling hole for output of an oscillated mist of aromatic fluid droplets.
Preferably, the aromatic nebulizing diffuser further comprises a plurality of elastic mounting members mounted in the accommodation open chamber of the bottom, and a plurality of light-emitting devices mounted in the elastic mounting members and electrically connected to the power supply unit.
Preferably, the bottom holder shell and the cover shell are selectively made in one of transparent, translucent, partially transparent, locally transparent, partially translucent and locally translucent forms.
Preferably, the aromatic nebulizing diffuser further comprises a functional keypad mounted in the accommodation open chamber of the bottom holder shell. The functional keypad comprises a circuit board electrically coupled to the oscillator, the oscillator circuit board and the power supply unit, a plurality of key switches electrically connected to the circuit board for functional controls, and a plurality of light guide rods; the bottom holder shell comprises means for receiving the key switches and the light guide rods.
Preferably, the bottom holder shell comprises a plurality of retaining studs protruded from the inner side of the top edge thereof inside the accommodation open chamber; the cover shell comprises a bottom coupling flange downwardly extended from the bottom side thereof and insertable into the accommodation open chamber of the bottom holder shell, and a plurality of L-shaped retaining grooves located at said bottom coupling flange corresponding to the retaining studs. The L-shaped retaining grooves are respectively coupled to the retaining studs when the bottom coupling flange of the cover shell is vertically downwardly into the accommodation open chamber of the bottom holder shell and then rotated horizontally relative to the bottom holder shell through a predetermined angle.
Other advantages and features of the present invention will be fully understood by reference to the following specification in conjunction with the accompanying drawings, in which like reference signs denote like components of structure.
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The container cover 32 is detachably covered on the container body 31 to facilitating filling an aromatic fluid in the container body 31, comprising an air intake port 321 in communication with the inside space of the container body 31, and a coupling tube 322 and a plurality of locating rods 323 for securing the cover shell 70.
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The oscillator circuit board 50 is mounted in the accommodation open chamber 11 and electrically connected to the oscillator 40 for driving the oscillator 40 to oscillate the aromatic fluid in the container body 31 into a mist of aerosol droplets.
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The cover shell 70 further comprises a plurality of locating sleeves 73 respectively sleeved onto the locating rods 323 of the container cover 32. Subject to coupling between the locating sleeves 73 and the locating rods 323, the cover shell 70 can be quickly secured to or removed from the container cover 32. After removal of the cover shell 70 from the container cover 32, the user can open the container cover 32 from the container body 31 and fill an aromatic fluid in the container body 31.
The cover shell 70 further comprises a flat ramp-shaped spout 75 located at the top side thereof in communication with the coupling hole 72, the coupling tube 322 of the container cover 32 and the inside space of the container body 31.
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Further, the bottom holder shell 10 and the cover shell 70 can be transparent, translucent, partially or locally transparent, or partially or locally translucent. They can be selected from the material groups of glass, translucent ceramic, frosted glass, acrylic, plastic and crystal. Further, the bottom holder shell 10 and the cover shell 70 can be made in any of a variety of colors, or having any of a variety of color designs. By means of controlling the light-emitting devices 80 to give off colored light during diffusing of a mist of aromatic fluid droplets, the invention can create brilliant visual effects.
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Because the dimension of the pressurized space S is larger than the diameter of the air intake port 321 of the container cover 32, subject to the principles of fluid dynamics, the intake flow of air induced by the electric fan 20 will be accumulated in the pressurized space S and pressurized, and then guided out of the air intake port 321 rapidly to form a strong upward airflow that will go through the coupling hole 72 and flat ramp-shaped spout 75 of the cover shell 70 to carry the diffused mist of aromatic fluid droplets to the outside open air in a substantially horizontal direction. Unlike conventional upward diffusion designs, the horizontal diffusion manner of the present invention enhances the effect of aroma diffusion.
Further, because the side block 315 is located at the periphery of the fluid container 30, it does not occupy any fluid accommodation space of the fluid container 30, and therefore the fluid accommodation capacity of the fluid container 30 is maximized.
Further, the air intake port 321 is configured to guide intake air toward the inside wall of the container cover 32 and the inside wall of the container body 31 to induce compact, enhancing the lifting of the mist of aromatic fluid droplets.
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The operation of the rotating connection structure between the bottom holder shell 10 and the cover shell 70 is explained hereinafter.
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In conclusion, the aromatic nebulizing diffuser of the present invention is characterized in that: the arrangement of the side block at the periphery of the fluid container and the formation of the pressurized space in between the cover shell and the fluid container enhance the effects of mist diffusion and maximize the fluid accommodation capacity; the design of the flat ramp-shaped spout of the cover shell enhances decorative and visual effects of aroma diffusion; the rotating connection structure between the bottom holder shell and the cover shell facilitates general maintenance and cleaning activities.
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.