The present application is based upon and claims priority to Chinese Patent Application No. 201911324483.X, filed with the Chinese Patent Office on Dec. 20, 2019, titled “AEROSOL GENERATING DEVICE”, the entire content of which is incorporated herein by reference.
Embodiments of the present application relate to the field of smoking sets which are noncombustible when being heated, and in particular, relate to an aerosol generating device.
Tobacco products (e.g., cigarettes, cigars, etc.) burn tobacco to produce tobacco smoke during use. Attempts have been made to replace these tobacco-burning products by manufacturing products that release compounds without burning.
An example of such products is a heating device, which release compounds by heating instead of burning a material. For example, the material may be tobacco or other non-tobacco products, and these non-tobacco products may or may not contain nicotine. As another example, there is a heating device that heats a tobacco product around the circumference thereof so that the tobacco product releases a compound to generate an aerosol. For example, Chinese Patent Application No. 201780028361.9, which is a known technology, uses a tubular resistance or thin film heater to heat the tobacco product received in the tubular hollow space.
In an aspect, the embodiment of the present application discloses an aerosol generating device for heating a smokable material to generate aerosol for smoking. The aerosol generating device includes a housing. The housing is provided therein with: a cavity, being configured to receive a smokable material; an infrared emitter, being in a tubular shape which is around the cavity and extended along the axial direction of the cavity; wherein the infrared emitter is configured to radiate infrared rays to the smokable material received in the cavity to heat the smokable material; a holding mechanism arranged around the cavity; wherein the holding mechanism is configured to support the smokable material received in the cavity in the radial direction of the cavity to prevent the movement of the smokable material in the radial direction of the cavity; wherein in the radial direction of the cavity, a distance between an inner surface of the infrared emitter and the central axis of the cavity is larger than the shortest distance between the holding mechanism and the central axis of the cavity, so that a space is maintained between the smokable material and the inner surface of the infrared emitter when the smokable material is received in the cavity.
Optionally, the distance between the inner surface of the infrared emitter and the central axis of the cavity is 0.5 mm to 10 mm larger than the shortest distance between the holding mechanism and the central axis of the cavity.
Optionally, the housing is further provided therein with a first support which at least partially extends into the cavity in the radial direction, and the first support is configured to abut against the smokable material abuts in the axial direction when the smokable material is received in the cavity, thereby providing locking for the smokable material in the axial direction of the cavity.
Optionally, the holding mechanism includes an extension part extending from the first support into the infrared emitter, and the extension part is arranged in an annular shape around the cavity; the extension part has an inner diameter smaller than that of the infrared emitter, and the extension part is configured to abut against the outer surface of the smokable material received in the cavity in the radial direction, thereby preventing the movement of the smokable material in the radial direction of the cavity and forming the space.
Optionally, at least a part of the inner surface of the extension part is an inclined surface that inclines inward radially, and the smokable material at least partially abuts against the first support under the guidance of the inner surface of the extension part.
Optionally, the infrared emitter includes a first end and a second end which are opposite along the length direction; the holding mechanism includes a second support that supports or holds the infrared emitter at the first end or the second end; the second support is in an annular shape coaxially arranged with the infrared emitter; the second support has an inner diameter smaller than that of the infrared emitter, and the second support is configured to abut against the outer surface of the smokable material received in the cavity in the radial direction, thereby preventing the movement of the smokable material in the radial direction of the cavity and forming the space.
Optionally, the infrared emitter includes a first end and a second end which are opposite along the length direction; the housing is provided therein with a second support that supports or holds the infrared emitter at the first end or the second end; the holding mechanism includes a plurality of flanges extending from the second support along the radial direction of the cavity, and the flanges are arranged around the central axis of the cavity; the shortest distance between the flange and the central axis of the cavity in the radial direction of the cavity is smaller than the distance between the inner surface of the infrared emitter and the central axis of the cavity, and the flanges are configured to abut against the outer surface of the smokable material received in the cavity in the radial direction, thereby preventing the movement of the smokable material in the radial direction of the cavity and forming the space.
Optionally, the flanges are inclined inward radially to guide the smokable material when the smokable material is received in the cavity.
Optionally, the housing includes a proximal end and a distal end which are opposite along the length direction; wherein the proximal end is provided with a receiving hole through which the smokable material is capable of being received in or removed from the cavity; the distal end is provided with an air inlet opposite to the receiving hole; the first end of the infrared emitter is opposite to the receiving hole, and the second end thereof is opposite to the air inlet; the second support is configured to support or hold the annular shape of the infrared emitter at the second end; the housing is further provided therein with a tubular element positioned between the air inlet and the second support; the hollow space of the tubular element and the second support is arranged as an airflow path from the air inlet to the cavity.
Optionally, the housing is provided therein with a tubular base extending along the axial direction of the cavity and surrounding the cavity; the infrared emitter includes an infrared emission coating formed on an outer surface of the tubular base; the holding mechanism includes a portion of the tubular base with a reduced inner diameter, and the holding mechanism abuts against the outer surface of the smokable material received in the cavity through the portion with the reduced inner diameter, thereby preventing the movement of the smokable material in the radial direction of the cavity and forming the space.
One or more embodiments are illustrated by pictures in corresponding attached drawings, and this does not constitute limitation on the embodiments. Elements with the same reference numerals in the attached drawings are shown as similar elements, and the pictures in the attached drawings do not constitute scale limitation unless otherwise stated specifically.
In order to make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the attached drawings in the embodiments of the present application. Obviously, the embodiments described are only part but not all of the embodiments of the present application. It shall be appreciated that, the specific embodiments described herein are only used for explaining the present application, and are not intended to limit the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor belong to the scope claimed in the present application.
It shall be noted that, when an element is expressed as “fixed” to another element, it may be directly on another element, or there may be one or more intervening elements therebetween. When an element is expressed as “connected” to another element, it may be directly connected to another element, or there may be one or more intervening elements therebetween. Terms such as “vertical”, “horizontal”, “left”, “right” and other similar expressions used in this specification are for illustration purposes only.
In addition, technical features involved in various embodiments of the present application described below can be combined with each other as long as they do not conflict with each other.
An embodiment of the present application provides an aerosol generating device for heating instead of burning a smokable material, such as cigarettes, so as to volatilize or release at least one component of the smokable material to form aerosol for smoking.
Based on a preferred embodiment, the aerosol generating device heats the smokable material by radiating far infrared rays with the heating effect e.g., far infrared rays of 3 μm to 15 μm. When the wavelength of the infrared rays matches the absorption wavelength of the volatile component of the smokable material during use, the energy of the infrared rays is easily absorbed by the smokable material, and then the smokable material is heated to volatilize at least one volatile component thereof to generate aerosol for smoking.
Reference may be made to
Further, the internal structure of the housing 10 is as shown in
As shown in
In an embodiment, the infrared emission coating 32 may be a coating made of ceramic-based materials such as zirconium, or Fe—Mn—Cu-based materials, tungsten-based materials, or transition metals and oxides thereof.
In another embodiment, the infrared emission coating 32 is preferably composed of oxides of at least one metal element such as Mg, Al, Ti, Zr, Mn, Fe, Co, Ni, Cu, Cr or the like. These metal oxides will radiate the above-mentioned far infrared rays with the heating effect when heated to a proper temperature. Alternatively, the thickness of the infrared emission coating 32 may be controlled to be 30 μm to 50 μm. The infrared emission coating 32 may be formed on the surface of the base 31 by spraying the oxides of the above metal elements on the outer surface of the base 31 by atmospheric plasma spraying and then curing the oxides.
Alternatively, the infrared emission coating 32 may also be formed on the inner surface of the base 32.
The infrared emitter 30 further includes a first conductive coating 33 and a second conductive coating 34 respectively formed on at least a part of the outer surfaces of the opposite ends of the infrared emission coating 32. According to the embodiment shown in
In the embodiment shown in
In an embodiment, the size or thickness of the space 50 in the radial direction is preferably controlled to be 0.5 mm to 10 mm, and in another embodiment, the size of the space 50 in the radial direction is controlled to be 3 mm to 5 mm in order to make the size and thickness of the housing 10 appropriate to the infrared radiation range.
Further referring to
In an embodiment, a certain interval is maintained between the inner tube wall 41 of the heat insulator 40 and the infrared emitter 30 to form an air dielectric layer 44, which may further promote the heat insulation by the low heat conductivity coefficient of air.
Further referring to the embodiment shown in
In addition, further referring to
Further referring to
Furthermore, in an embodiment shown in
Reference may be made to
As shown in
Similarly, in an embodiment shown in
Further referring to
Furthermore, according to the above embodiment, the structures for stably holding the smokable material A in the cavity 35 along the radial direction may be realized by the flange 61 provided on the inner surface of the upper support 60 and the inner surface of the annular extension part 72 of the lower support 70 respectively, and both the flange 61 and the inner surface of the annular extension part 72 can abut against and clamp the outer surface of the smokable material A in the radial direction. Meanwhile, as shown in
In other similar embodiments, it is also possible to adopt additional or independent annular or clamping structures or components arranged around the outer surface of the smokable material A to implement the above holding function.
For example, in yet another embodiment shown in
It shall be noted that, the specification and attached drawings of the present application show preferred embodiments of the present application. However, the present application can be implemented in many different forms, and it is not limited to the embodiments described in this specification. These embodiments are not construed as additional restrictions on the content of the present application, but are provided for a more thorough and comprehensive understanding of the disclosure of the present application. In addition, the above technical features continue to be combined with each other to form various embodiments not listed above, all of which are regarded as within the scope described in the specification of the present application. Further speaking, those of ordinary skill in the art can make improvements or variations according to the above description, and all these improvements and variations shall fall within the scope claimed in the appended claims of the present application.
Number | Date | Country | Kind |
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201911324483.X | Dec 2019 | CN | national |
Number | Date | Country | |
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Parent | PCT/CN2020/137720 | Dec 2020 | US |
Child | 17844102 | US |