A heat-and-burn stick containing a foam-like aerosol-generating material disposed within a container
The aerosol-generating article with a foam-like material and air-permeable seal addresses taste and cleaning issues in heat-not-burn devices, providing a better tobacco experience with reduced heating and cleaning needs.
Patent Information
- Application Number
- JP2025023667
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-06-21
- Filing Date
- 2025-02-17
- Publication Date
- 2025-08-21
- Estimated Expiration
- 2040-06-19
AI Technical Summary
Existing heat-not-burn aerosol-generating articles do not provide a taste and sensory experience comparable to traditional smoking articles and require high heating temperatures, necessitating extensive cleaning of heating devices.
An aerosol-generating article with a foam-like aerosol-generating material in a container, featuring an air-permeable seal and container, allows indirect heating and contains debris, reducing cleaning frequency and enhancing taste experience.
The article provides a more pleasant tobacco taste with lower heating requirements and minimizes device cleaning, offering a smoother inhalation experience.
Smart Images

Figure 0007727868000001 
Figure 0007727868000002
Abstract
Description
[Technical Field]
[0001] The present invention relates to the field of tobacco, and particularly tobacco-containing foam or mousse-like aerosol-generating materials for use in heat-and-no-burn articles, in which the aerosol-generating material is provided in a container that is housed within the portion of the aerosol-generating article that is heated for smoking. [Background technology]
[0002] Aerosol-generating articles containing aerosol-generating materials for use in heat-not-burn (HnB) smoking devices have been known since the 1980s. Nevertheless, they have only become more popular in the 21st century, as research has revealed that HnB vapor does not release most of the chemicals found in tobacco smoke. Furthermore, when HnB smoking articles are used in HnB holders, no combustion exhaust process occurs. Therefore, it is generally accepted that the aerosol generated is not smoke, and therefore such smoking articles are better known as aerosol-generating articles.
[0003] Commercially available HnB systems, such as Glo (manufactured by British American Tobacco (BAT)) or IQOS (Philip Morris International (PMI)), include a charger, a holder, and a tobacco stick, plug, or capsule. The tobacco stick inserted into the holder is heated by an electronically controlled heating element.
[0004] U.S. Patent Application Publication No. 20150150302 relates to a rod for use as an aerosol-generating article, comprising at least two sheets of tobacco material gathered together and surrounded by a wrapper, the sheets of tobacco material being physically or chemically different from one another. The sheets of tobacco material may have the same or different thicknesses or may be crimped. An aerosol-generating substrate is provided in the portion that directly contacts a heat source.
[0005] WO 2017 / 202965 relates to a method for providing an aerosol-generating device for use with an article, such as a shape-deformable aerosol-forming substrate. The article has a layer of aerosol-forming substrate and a second layer, such as a mesh arrangement, with an open layer. The open layer allows air and aerosol or evaporated material from the substrate to enter the interior of the aerosol-generating article and the open layer. The article may further be provided with an outer paper layer, such as cigarette paper, over the open layer and under the aerosol-forming substrate layer.
[0006] U.S. Patent Application Publication No. 2011 / 088708 A1 describes a smokable filler material and a method for making the same, wherein the smokable filler material includes a foaming agent, a substance capable of forming chemical crosslinks, and a crosslinking agent. It is disclosed that the smokable filler material is a self-supporting foam when dried. Advantageously, drying the stabilized foamed material further stabilizes the foamed structure, allowing for further processing. It is further disclosed therein that the foamed material is dried to maintain stability.
[0007] While existing HnB aerosol-generating materials and articles are becoming more popular, consumers also recognize that they do not provide a taste and sensory experience comparable to that of traditional smoking articles such as cigarettes or cigars. In particular, consumers feel that currently available products do not taste like real tobacco.
[0008] Additionally, existing heat-and-no-burn products and devices require heating the reconstituted tobacco material to extremely high temperatures of over 300°C up to 350°C, which primarily requires insulating the heating device to avoid harm to the consumer, but also requires cooling the generated aerosol prior to inhalation by the consumer, which is typically achieved by a polylactic acid (PLA) pleated film incorporated into the filter of the heated aerosol-generating article. Summary of the Invention [Problem to be solved by the invention]
[0009] It would therefore be advantageous to provide consumers with aerosol-generating articles and materials that provide a more pleasant taste experience to consumers that more closely resembles real tobacco, and that also require less heating for aerosol generation and therefore less cooling for consumption. [Means for solving the problem]
[0010] The present inventors have discovered a solution to the problems discussed above with a novel and inventive aerosol-generating article as defined in the claims.
[0011] A first aspect of the present invention is therefore to provide an aerosol-generating article comprising a fill quantity of aerosol-generating material disposed within a container, the aerosol-generating material being provided in the form of molded individual elements comprising a foam-like material, the aerosol-generating article further comprising a seal provided at one longitudinal end of the container, the seal being made of an air-permeable material and / or having an air-permeable structure whereby air can flow through it.
[0012] With this novel aerosol-generating article, the inventors have surprisingly discovered that the aerosol-generating article of the present invention has several advantages. The first advantage is that the foam-like material contained within the container is subjected to less direct heating, and therefore, a lower, more suitable temperature (e.g., less than 300°C) for heating the foam-like aerosol-generating material is provided due to the gaps disposed between the individual molded elements. Furthermore, any clumps or debris generated from the aerosol-generating material heated by the heating element are primarily contained within the container. This has the advantage of significantly reducing the number of times it is necessary to clean the heating element of the HnB heating device or holder after use. Furthermore, the seal, which only allows air to flow through it, acts as a good barrier to prevent any clumps of aerosol-generating material provided in the aerosol-generating article from falling from the article of the invention onto a heating device used with or on a user's clothing, particularly when the aerosol-generating material comes into contact with the heating element of the heating device and is removed (or pulled) from the heating element (blade). After consumption, the consumed item is removed from the heating device, and the seal then acts as a wiping member along the heater element to remove any adhering aerosol-generating material so that the surface of the heating element is free of debris (or only leaves very minimal traces of aerosol-generating material), which has the advantage of significantly reducing the number of times the heating element of the heating device needs to be cleaned after use.
[0013] According to one preferred embodiment, the container is air permeable, which has the advantage that heated air can pass through the container, thereby allowing the charge of aerosol to be expelled from the container to the mouthpiece end during use.
[0014] According to another preferred embodiment, the container comprises an air-permeable material and / or structure, such as micropores or a mesh, that allows heated air to pass through the container, thereby allowing a charge of aerosol to be expelled from the container to the mouthpiece end during use.
[0015] In another embodiment, the air permeable material is selected from the group consisting of cellulose acetate, paper, metal, heat resistant plastic, activated carbon, or combinations thereof.
[0016] In another preferred embodiment, the aerosol-generating material comprises tobacco-derived material having a weight of 0.1 to 66% by weight of the foam, preferably 0.1 to 33% by weight of the foam.
[0017] According to another embodiment, the tobacco-derived substance is selected from the group consisting of tobacco, tobacco flavors, nicotine, and derivatives of nicotine.
[0018] In yet another embodiment, the aerosol-generating material further comprises an aerosol-forming agent, a foam stabilizer, and a foam former, the aerosol-forming agent preferably having a weight amount of 10 to 80% by weight, preferably 30 to 70% by weight, of the weight of the foam.
[0019] In another preferred embodiment, the container comprises a tubular wall made of a material selected from the group consisting of paper, metal, plastic, silica, or combinations thereof.
[0020] In another embodiment, the container is filled to a maximum of 95% of its space, preferably 90%, 80%, 70%, 60%, or 50%. For example, the inventors have found that optimal airflow can be achieved when approximately 70% of the space of the section housing the container is filled with aerosol-generating material. Users of the aerosol-generating article generally experience a smooth, tobacco-rich taste experience. When approximately 90% of the space of the section is filled with the container containing aerosol-generating material, most users can generally experience a strong taste experience that is closer to that of real tobacco.
[0021] According to yet another embodiment, the aerosol-generating material comprises a plurality of individual elements shaped in the form of pods, granules, elongated fibers, elongated spirals, or combinations thereof. The inventors have found that, while individual elements having different shapes generally do not significantly differ in sensory taste experience, individual elements having an elongated shape may be preferred because they are easier to manufacture (e.g., by extrusion). Conversely, individual elements having a granular shape allow sufficient gaps for airflow, and therefore the user generally has a better inhalation experience.
[0022] In another particularly preferred embodiment, the aerosol-generating material comprises a bundle of elongated fibers, each elongated fiber having an average diameter of 0.3 to 5 mm, preferably 0.5 to 1 mm.
[0023] In one particularly preferred embodiment, the aerosol-generating article further comprises a filter attached to a longitudinal end of the container.
[0024] According to yet another preferred embodiment, the filter comprises cellulose acetate, paper, a heat resistant plastic or polymer, activated carbon, a flavoring agent, or a combination thereof.
[0025] According to one preferred embodiment, the seal is configured to allow air to flow from said first longitudinal end to the second longitudinal end of the elongated portion. The seal may be made of a gel, silica, rubber, slurry, matrix, etc.
[0026] According to some preferred embodiments, the container is positioned such that the longitudinal edges of the container are substantially parallel to the longitudinal edges of the aerosol-generating article, such that a seal is thereby provided at one longitudinal edge.
[0027] In a further variant of the invention, the mouthpiece portion is attached to a second longitudinal end of the elongate portion opposite the sealing portion, in other words, the mouthpiece portion is preferably provided on one longitudinal end of the aerosol-generating article, while the sealing portion is provided on another longitudinal end of the aerosol-generating article.
[0028] In one embodiment, a portion is provided in the aerosol-generating article, preferably between the mouthpiece portion and the seal portion, and a container for holding the aerosol-generating material is included within said portion of the aerosol-generating article.
[0029] To this end, it is reiterated throughout this application that the expression "longitudinal end of the container" does not strictly refer to the container alone, but, unless otherwise specified, refers to the end opposite the filter section. In other words, the longitudinal end refers to a portion parallel to the longitudinal end of the aerosol-generating article, such that the sealing portion is provided at one longitudinal end (of the aerosol-generating article as shown in the figures) and the mouthpiece section is provided at another longitudinal end. The aerosol-generating material portion is provided between them.
[0030] "About" or "approximately" in reference to a given numerical value means including the numerical value within 10% of the specified value. All values given in this disclosure should be understood to be complemented by the term "about" unless otherwise clear from the context.
[0031] The indefinite articles "a" or "an" do not exclude a plurality and should therefore be treated in a broad sense.
[0032] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs.
[0033] As used herein, the term "longitudinal" refers to a direction corresponding to a major longitudinal axis of the aerosol-generating article extending between the upstream and downstream ends of the aerosol-generating article. During use, air is drawn longitudinally through the aerosol-generating article. The term "transverse" refers to a direction perpendicular to the longitudinal axis.
[0034] As used herein, the term "container" refers to a hollow object in the form of a box, housing, or the like that can be used to hold, especially carry, or store, one or more elements therein. The material from which the container is formed is different from the material of the elements contained within the container.
[0035] As used herein, the term "foam" is used interchangeably with the term "mousse." The foam of the present invention is an open-cell foam according to certain embodiments. As used herein, an open-cell foam should be understood as a foam that can be considered to be formed of a plurality of interconnected pores (formed from a structural material derived from a foam-forming agent in combination with interacting components such as foam stabilizers, solid components such as tobacco particles, and some solvents) that can contain a mixture of fluid, particularly a humectant / liquid aerosol-forming substrate and air, where at least a significant portion (e.g., more than 50% by volume) of the pores in the foam are fluidly connected to each other, contrary to closed-cell foams, where the majority of the pores form separate pockets, each completely surrounded by a pore-forming material, substantially preventing fluid from passing freely between the pores. The foams, particularly mousses, formed as described herein are currently considered to be mostly open-cell foams, particularly mousses, because, based on measuring the weight of the foams, particularly mousses, before and after heating, it appears that substantially all of the moisturizing agent has been released, which cannot be easily explained by whether the moisturizing agent was able to migrate through adjacent pores and reach the surface of the foam, particularly the mousse portion, after heating the foam, particularly the mousse portion, to release steam.However, alternative explanations cannot be completely ruled out.For example, the closed cells could possibly be opened by bursting the closed cell walls as a result of the pressure of vaporized gas, etc.For example, according to the definition of the present invention, the term "foam" cannot be equated with terms such as gel, cream, or slurry.
[0036] The tobacco component-containing agent may be any compound, mixture, particulate material, and / or solution that contains and / or carries tobacco constituents, such as tobacco, tobacco particles, tobacco flavors, and / or nicotine, either artificially included or naturally contained in tobacco. In contrast, an example of an artificially added non-tobacco flavor would be menthol.
[0037] As used herein, the term "heated aerosol-generating article" refers to an aerosol-generating article for producing an aerosol that includes an aerosol-generating material that is intended to be heated, rather than combusted, to release volatile compounds capable of forming an aerosol.
[0038] As used herein, the term "aerosol-generating material" refers to a material capable of releasing volatile compounds that can form an aerosol when heated. The aerosol generated from the aerosol-generating materials of the aerosol-generating articles described herein may be visible or invisible and may include vapor (e.g., fine particles of a gaseous substance that is normally a liquid or solid at room temperature) and droplets of gas and condensed vapor.
[0039] The aerosol-forming agent may be, for example, any compound, mixture, and / or solution capable of forming an aerosol when heated and / or in admixture with tobacco component-containing agents. Well-known examples include humectants such as glycerin and propylene glycol, other alcohols such as ethanol, etc.
[0040] As used herein, wt% should be understood as weight percent based on the total weight of the foam unless otherwise specified. In this disclosure, all amounts are given in wt% units unless otherwise expressly stated or clear from the context. Further in this disclosure, all amounts given in wt% units for a particular foam add up to 100 wt%. Thus, weight percent is calculated by dividing the mass of each component by the total mass of the foam unless otherwise specified or clear from the context. [Brief explanation of the drawings]
[0041] [Figure 1] 1 shows a schematic diagram of an aerosol-generating article according to an embodiment of the present invention. [Figure 2] 1 shows a cross-sectional view of a portion housing a container in which an aerosol-generating material is contained within the container. DETAILED DESCRIPTION OF THE INVENTION
[0042] 1 shows an exemplary embodiment of an aerosol-generating article 100 according to the present invention. The aerosol-generating article 100 has a cylindrical shape similar to currently commercially available heat-and-no-combustion articles.
[0043] The aerosol-generating article 100 comprises a plurality of sections 10, 20, 30 arranged longitudinally from end to end. One longitudinal end of the aerosol-generating article 100 represents a distal end 15, while another longitudinal end of the aerosol-generating article 100 represents a proximal oral end 25. In the embodiment shown in Figure 1, the aerosol-generating article 100 comprises a sealing section 10, an aerosol-generating material section 20, and a mouthpiece section 30. These sections 10, 20, 30 may be abuttingly attached together by one or several wrappers to form an elongated, generally cylindrical aerosol-generating article.
[0044] It should also be noted that the mouthpiece section 30 itself may be formed from either a single segment of filter material, for example cellulose acetate as known from conventional cigarettes, or from multiple segments conventionally joined together by one or several plug wraps to form a multi-segment mouthpiece. Such a multi-segment mouthpiece may, inter alia, comprise a central hole acetate segment 301 in contact with the aerosol-generating material portion 20, followed by an aerosol-cooling portion 302 formed, for example, from a pleated polylactic acid (PLA) film, and a monoacetate filter portion 303 at the mouthpiece end 25, which mouth-end filter segment 303 may contain one or more flavor-releasing elements, such as capsules or threads (see FIG. 1).
[0045] In use, the aerosol-generating article 100 is inserted into a vaporizer or heating device that includes a heater, such that at least the aerosol-generating material portion 20 cooperates with the heating element 200. If the heating element 200 is a heating blade or rod element, it may, for example, penetrate the aerosol-generating article 100 from the distal end 15, and the aerosol-generating article 100 may slide over the heating element until it extends into portion 20 and heats the tobacco-containing aerosol-generating material contained therein. The aerosol-generating article 100 is designed so that, in use, when a user inhales or draws through the mouthpiece at the mouth end 25, the aerosol generated upon heating of the aerosol-generating material in portion 20 can flow longitudinally from the distal end 15 to the mouth end 25.
[0046] The seal 10 acts as an additional shield in addition to the container 22 to prevent chunks or debris from the aerosol-generating material 65 from being drawn out along with the heating element 200 when the aerosol-generating article 100 is drawn out of the holder of the smoking device.
[0047] 2 shows a cross-sectional view (taken along dotted line AA) of the aerosol-generating material section 20 of FIG. 1. The aerosol-generating material section 20 includes a plurality of containers 22, each containing a fill of aerosol-generating material 65 within a foam-like structure. The containers 22 may be provided with a breathable structure, such as mesh, or may be made of a breathable material, such as paper. It is also conceivable that the containers 22 may be made of a thermally conductive material, particularly a metal such as aluminum, zinc, copper, brass, or chrome steel, to allow heat transfer from the heating element of the heating device to the foam-like aerosol-generating material 65 essentially by conduction to generate aerosols.
[0048] The foam material 65 may include a tobacco-containing material, preferably a foam aerosol-generating material 65 as described in WO 2018 / 122375 A1, and is contained within the container 22 in an average amount of approximately 100 to 1000 mg, preferably approximately 250 to 400 mg, of aerosol-generating material per dose. For example, if a single dose of the smoking article weighs between 300 mg, then only approximately 50 mg to 60 mg of the aerosol-generating material will be tobacco-containing material.
[0049] In this particular embodiment, the cross section (dashed line AA) of portion 20 shows that container 22 is generally circular. In other words, container 22 can be provided as granules, pods, discs, elongated fibers, elongated spirals, etc. For example, container 22 in the form of elongated fibers or elongated spirals has the advantages of high processability, simplicity (manufactured by extrusion), and easier control of density and airflow.
[0050] Advantageously, the one or more airflow channels 75 are arranged longitudinally in the longitudinal direction of the aerosol-generating article 100, which allows aerosol circulation and insertion of the article onto the blade or rod-shaped heating element 200 of the heating device when used with the inventive article 100 to heat the heating device.
[0051] To this end, it is disclosed that the aerosol-generating material 65, which is a foam-like or mousse-like material, preferably comprises a tobacco-containing or derived material, i.e., a material derived from a real tobacco plant or seed. The aerosol-generating material 65 can be provided to the container 22 via different methods known to those skilled in the art.
[0052] With the novel aerosol-generating article, the inventors have surprisingly discovered that an aerosol-generating material in a foam or mousse form, where the foam material is contained within the container 22, can achieve and provide a more homogenized form of tobacco-containing material. Such an aerosol-generating article advantageously provides a denser, more tobacco-flavored, and homogenous aerosol, providing consumers with a better user experience compared to reconstituted cigarettes. For example, the aerosol-generating article of the present invention allows for the delivery of up to 15-20 puffs of aerosol with pronounced tobacco character, while requiring only a very small amount of tobacco material (e.g., only 60 mg of a 250-400 mg serving of tobacco-containing material).
[0053] 1, a sealing portion 10 is provided on the aerosol-generating article 100 of the present invention at a portion furthest from the mouth end 25. The sealing portion 10 may comprise a solid material such as a gel, rubber, matrix, or slurry.
[0054] As explained above, the heating blade 200 or rod element 200 of the vaporizer or heating device can penetrate the seal 10 and reach the portion 20, which includes a plurality of containers 22, where the heating element 200 contacts the foam-like material 65 provided inside the containers 22, thereby generating a charge of aerosol when the foam-like material 65 is heated by the heating element 200. Although unintentional, small pieces of debris typically form from the heated foam-like aerosol-generating article 100, and these small pieces or chunks often adhere to the surface of the heating element 200 of the smoking device. This requires users to frequently clean their smoking devices.
[0055] The seal 10 may be provided in the aerosol-generating article 100 of the present invention to clean (e.g., discard) the heating blade or rod element when the article 100 is removed from the heating blade or rod element, thereby preventing the aerosol-generating material 65 or fragments thereof from leaving the portion 20 containing the container 22 having the aerosol-generating material 65. Thus, the heating element 200 is automatically cleaned by the seal 10 when it is removed from the aerosol-generating article 100, thereby reducing the frequency with which the surface of the heating blade element of the smoking device needs to be cleaned. To this end, it is disclosed that the material selected to form the seal 10 should be able to withstand the heat of the heating element 200, for example, at least 500°C and up to 1000°C.
[0056] Due to the container 22 in which the aerosol-generating material 65, in foam or mousse form, is contained, the heat of the heating device is not directly transferred to the aerosol-generating material 65. The inventors have found that the foam aerosol-generating material 65 contained within the container 22 is indirectly heated by the heating element 200 and has a temperature of approximately 230° C. in use, which is ideal for the foam material to emit a load of aerosol.
[0057] It is reiterated herein that the one or more air channels 75 provided through the container 22 are preferably parallel to the longitudinal direction of the aerosol-generating article 100 so that air can flow from the distal end 15 of the aerosol-generating article 100 to the oral end 25 of the mouthpiece 30 so that a user can inhale aerosol through the mouthpiece during use.
[0058] It will be appreciated that the aerosol-generating article 100 shown in FIG. 1 may also be suitable for use with any type of existing heated, non-combustion aerosol-generating device, particularly, but not limited to, devices that include a blade or rod heating element inserted into a charge of aerosol-generating material or a peripheral portion wound in a rod shape with a mouthpiece.
Claims
1. An aerosol-generating article (100) comprising a sealing portion (10), a mouthpiece portion (30), and an aerosol-generating material portion (20) disposed between the sealing portion (10) and the mouthpiece portion (30), The aerosol-generating material portion (20) includes a container (22) that functions as a first shield, the container (22) carrying or containing the aerosol-generating material (65) and having an air-permeable structure; said sealing part (10) acts as a second shield and is made of an air permeable material and / or has an air permeable structure, so that air can flow therethrough; The aerosol-generating article (100) is configured to be inserted into a heating device having a heating element (200), and the container (22) and the sealing portion (10) are configured so that when the aerosol-generating article (100) is withdrawn from the heating device, clumps or fragments from the aerosol-generating material (65) are not withdrawn along with the heating element (200).
2. 10. The aerosol-generating article (100) of claim 1, wherein the container (22) is air permeable.
3. 3. The aerosol-generating article (100) of claim 1 or 2, wherein the container (22) has a mesh as the air-permeable structure.
4. 4. The aerosol-generating article (100) of any one of claims 1 to 3, wherein the air-permeable material is selected from the group consisting of cellulose acetate, paper, metal, heat-resistant plastic, activated carbon, or combinations thereof.
5. The aerosol-generating article (100) of any one of claims 1 to 4, wherein the aerosol-generating material (65) comprises a tobacco-derived substance.
6. 6. The aerosol-generating article (100) of claim 5, wherein the tobacco-derived substance is selected from the group consisting of tobacco, tobacco flavors, nicotine, and derivatives of nicotine.
7. The aerosol-generating article (100) of any one of claims 1 to 6, wherein the aerosol-generating material (65) further comprises an aerosol-forming agent, a foam stabilizer, and a foam-forming agent.
8. 8. The aerosol-generating article (100) of any one of claims 1 to 7, wherein the container (22) comprises a tubular wall made of a material selected from the group consisting of paper, metal, plastic, silica, or combinations thereof.
9. The aerosol-generating article (100) of any one of claims 1 to 8, wherein the container is filled to a maximum of 95% of its space.
10. 10. The aerosol-generating article (100) of any one of claims 1 to 9, wherein the aerosol-generating material (65) comprises a plurality of individual elements shaped in the form of pods, granules, elongated fibers, elongated spirals, or combinations thereof.
11. 11. The aerosol-generating article (100) of claim 10, wherein the aerosol-generating material comprises a bundle of elongated fibers, each elongated fiber having an average diameter of 0.3 to 5 mm.
12. An aerosol-generating article (100) described in any one of claims 1 to 11, wherein the mouthpiece portion (30) includes a filter.
13. 13. The aerosol-generating article (100) of claim 12, wherein the filter comprises cellulose acetate, paper, a heat-resistant plastic or polymer, activated carbon, a flavoring agent, or a combination thereof.
14. The aerosol-generating article (100) according to any one of the preceding claims, wherein the sealing portion (10) is provided with a gel, silica, rubber, a slurry, a matrix or the like.
15. An aerosol-generating article (100) described in any one of claims 1 to 14, wherein the container (22) has an extruded structure to control air flow.
Citation Information
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