The field of the invention is an atomization system for electronic cigarettes.
An electronic smoking device, such as an electronic cigarette (e-cig or e-cigarette), electronic cigar, personal vaporizer (PV) or electronic nicotine delivery system (ENDS) is a battery-powered vaporizer which creates an aerosol or vapor. In general, these devices have a heating element that atomizes a liquid solution known as e-liquid. There remains a need for an improved atomization system.
Provided herein is a novel atomization system for an electronic cigarette comprising a liquid ejection unit (hereinafter the “ejection unit”), an electronic cigarette comprising the same, and a novel atomization method for vaporizing an e-liquid in an electronic cigarette using the atomization system. The atomization system may further comprise a liquid supply unit coupled with the ejection unit.
An atomization system includes an ejection unit having a vaporization chamber defined by a housing with a first end and a second end, and a vaporization element in the housing. The vaporization chamber is filled with an e-liquid when in use. The first end comprises an ejection plate comprising multiple micro-openings. The sizes of the micro-openings are so small that the liquid surface tension around these micro-openings can prevent e-liquid from leaking when the vaporization element is not activated. When the heating element is activated, a portion of the e-liquid in the vaporization chamber is vaporized. The vaporized portion of the e-liquid expands due to the liquid to gas phase change and forces the unvaporized e-liquid through the micro-openings to form an aerosol. The aerosol may be suitable for inhalation without further atomization processes (e.g., by heat, vibration, ultrasound, and microwave). The particle size distribution of the aerosol may be adjusted and controlled by the sizes and shapes of the micro-openings, as well as the distances between the adjacent micro-openings.
In order to fully understand the manner in which the above-recited details and other advantages and objects according to the invention are obtained, a more detailed description of the invention will be rendered by reference to specific embodiments thereof. Other features and advantages of the invention will become apparent from the following detailed description. Although the invention has been described with reference to various embodiments and specific examples, it will be readily appreciated by those skilled in the art that many modifications and adaptations of the invention are possible without deviating from the spirit and scope of the invention. Thus, it is to be clearly understood that this description is made only by way of example and not as a limitation on the scope of the invention. For example, the elements of one embodiment can be combined with other embodiments in addition to or in lieu of the elements of other embodiments.
A section view of an embodiment of the ejection unit 1 is provided in
Alternatively, as shown in
The housing 11 may have any shape suitable, e.g., a tubular, a cubic, triangular, hexangular, and polyangular. The housing 11 may be made of one or more materials (e.g., steel) having a Rockwell C scale of hardness (HRC) of about 50 to about 75, about 55 to about 70, about 58 to 65, or about 60.
The ejection plate 14 may be positioned inside of the vaporization chamber 10 (
The ejection plate 14 may comprise micro-openings 15 having a uniform size (
The one-way valve 17 can be opened inwards of the housing 11 to allow refill of e-liquid into the vaporization chamber 10. The one-way valve 17 will block the opening 16 by the liquid pressure once the vaporization chamber 10 is filled with e-liquid.
The vaporization element 18 can be any device that can vaporize e-liquid in close proximity. For example, the vaporization element 18 can be a heating element (e.g., heating coil (
The e-liquid may comprise one or more volatile solvents. Examples of the suitable volatile solvents include, without limitation, cyclohexane, and alcohol (e.g., ethanol). The one or more volatile solvents together constitute more than about 40%, more than about 50%, or more than about 60% of the total volume of the e-liquid.
The ejection unit 1 may further comprise an opening on the housing 11 or the second end 13 for e-liquid refill. The opening may further comprise an one-way valve or a seal to prevent leaking.
Provided herein is also an atomization system comprising the ejection unit. The atomization system may further comprise a liquid-supply unit coupled to the opening of the second end of the ejection unit to supply e-liquid for ejection.
The housing 11 of the ejection unit 1 may be separable from the housing 51 of the liquid-supply unit 50. Alternatively, the housing 11 and the housing 51 may be integrated as one.
The liquid-supply unit 50 may be refilled through the third open end 52. Optionally, the liquid-supply unit 50 further comprises another opening 57 on the housing 51 or the second end 53 for e-liquid refill. The opening 57 may further comprise a one-way valve or a seal to prevent leaking.
Provided herein are also embodiments of an electronic cigarette comprising the atomization system comprising an ejection unit, an inhalation unit in airflow communication with the micro-openings of the ejection unit, and a battery unit electrically coupled to the vaporization element.
The battery unit 70 comprises a battery 72 and optionally a control circuit 73 that can activate the vaporization element 18. The vaporization element 18 may be activated by a sensor 74 that can sense the inhalation of a user and coupled to the control circuit 73, and/or by a switch 75 controlled directly by the user. Optionally the battery unit 70 further comprises an outer housing 71 that houses the battery 73, optionally the control circuit 73 and one or more conductive elements that electrically couple the vaporization element 18 and the battery unit 70. Alternatively, the housing 11 of the ejection unit 1 and/or the housing 51 of the liquid-supply unit 50 may comprise one or more conductive elements that electrically couple the vaporization element 18 and the battery unit 70 (
Provided herein are also embodiments of an atomization method for an electronic cigarette comprising:
the aerosol obtained from the ejection of step b) has a particle size of about 0.5 μm to about 10 μm, about 1 μm to about 5 μm, or about 2 to about 3 μm as measured by mass median diameter (MMD).
The viscosity of the liquid, the ejection force, and the characteristics of the micro-openings may be adjusted to obtain a desired particle size.
A method for atomization of a liquid to create an aerosol for inhalation may also comprises:
The method may further comprise pressurizing the vaporization chamber by heating liquid in the vaporization chamber.
The method may further comprise maintaining a volume of bulk liquid against the micro-openings in the vaporization chamber so that only bulk liquid passes through the micro-openings.
Thus, novel devices and methods have been shown and described. Various modifications and substitutions may of course be made without departing from the spirit and scope of the invention. The invention, therefore, should not be limited, except to the following claims and their equivalents.
This application is a continuation of International Application No. PCT/CN2018/087325, filed May 17, 2018, which is herein incorporated by reference in its entirety.
Number | Date | Country | |
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Parent | PCT/CN2018/087325 | May 2018 | US |
Child | 17098889 | US |