Flavor-generating items
The fragrance-generating article with a susceptor-containing sheet and corrugated layers addresses inefficient delivery by ensuring stable and efficient flavor or aerosol delivery through heat insulation and protection from direct heating, maintaining a lightweight and cost-effective design.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-09-16
- Publication Date
- 2026-04-09
AI Technical Summary
Existing fragrance attractors, such as smoking material heating devices, face issues with inefficient delivery of flavor or aerosol due to direct contact with heating sources, which can crush the delivery mechanism and transfer heat, leading to unstable flavor or aerosol delivery.
A fragrance-generating article with a susceptor-containing sheet sandwiched between corrugated first and second sheets, allowing gaps for efficient flavor or aerosol passage, heat insulation, and protection from direct heating contact, using a liner sheet to prevent crushing and heat transfer.
Ensures stable and efficient delivery of flavor or aerosol by preventing crushing and heat transfer, while maintaining a lightweight and cost-effective design.
Smart Images

Figure 0007843360000001 
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Abstract
Description
Technical Field
[0001] The present invention relates to a fragrance-generating article.
Background Art
[0002] Conventionally, a fragrance attractor for attracting a fragrance or the like without burning a material is known. As such a fragrance attractor, for example, a smoking material heating device that forms an aerosol by heating a smoking material composed of tobacco containing a volatile component is known. As such a smoking material, a consumable having a slab-shaped tobacco, a spacer, and a filter is known (see Patent Document 1).
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] An object of the present invention is to provide a cartridge and a fragrance attractor having a new structure.
Means for Solving the Problems
[0005] According to a first aspect, a fragrance-generating article is provided. This fragrance-generating article has a flat susceptor-containing sheet containing a susceptor material, and a corrugated first sheet and a second sheet disposed on both sides of the susceptor-containing sheet, and at least one of the susceptor-containing sheet, the first sheet, and the second sheet contains tobacco.
[0006] According to the first embodiment, a gap can be formed between the susceptor-containing sheet and the first and second sheets through which flavor or aerosol generated from tobacco can pass. This allows for efficient delivery of the flavor or aerosol generated from tobacco downstream. Furthermore, since the susceptor-containing sheet contains susceptor material, tobacco can be heated without contacting the flavor-generating article with a heating source. Therefore, the gap will not be crushed by contact with the flavor-generating article by a heater or the like, allowing for stable delivery of flavor or aerosol. Moreover, since the susceptor-containing sheet containing the susceptor material is sandwiched between the first and second sheets, the heat generated by the susceptor material can be suppressed from being transferred to the surface of the flavor-generating article by the gap through which flavor or aerosol passes. As a result, a complex heat insulation mechanism can be eliminated from the flavor inhaler.
[0007] The second aspect is characterized in that, in the first aspect, the tobacco contains an aerosol source.
[0008] According to the second embodiment, the amount of aerosol delivered to the user can be increased.
[0009] The third aspect is characterized in that, in the first or second aspect, the first sheet has a first surface facing the susceptor-containing sheet and a second surface opposite to the first surface, and a liner sheet is provided on the second surface.
[0010] According to the third embodiment, since the first sheet is covered by the liner sheet, the user can handle the flavor-generating article without directly touching the first sheet. This prevents the first sheet from being crushed, thus maintaining the gap between the susceptor-containing sheet and the first sheet and allowing for stable delivery of flavor or aerosol. Furthermore, when removing the flavor-generating article from the flavor inhaler after use, the liner sheet can prevent the heat from the susceptor-containing sheet from being transferred to the user's hand.
[0011] The fourth aspect is characterized in that, in the third aspect, the liner sheet is made of paper.
[0012] According to the fourth embodiment, a lightweight and inexpensive flavor-generating article can be provided.
[0013] The fifth aspect is characterized in that, in the third or fourth aspect, part or all of the gap between the first sheet and the liner sheet is closed.
[0014] According to the fifth embodiment, the passage of air through the gap between the first sheet and the liner sheet is suppressed. As a result, air passing through the flavor-generating article can easily flow through the gap between the susceptor-containing sheet and the first and second sheets, so that the flavor or aerosol generated from the tobacco can be efficiently delivered downstream.
[0015] The sixth aspect is characterized in that, in any of the first to fifth aspects, at least one of the first sheet and the second sheet includes paper or pulp mold.
[0016] According to the sixth embodiment, a lightweight, inexpensive, and robust flavor-generating article can be provided.
[0017] The seventh aspect is characterized in that, in any of the first to sixth aspects, the height of the wave portion of at least one of the first sheet and the second sheet is 0.2 mm or more and 2.0 mm or less.
[0018] If the height of the above-mentioned wave portion is less than 0.2 mm, the gap between the susceptor-containing sheet and at least one of the first and second sheets becomes too small, which may prevent efficient delivery of flavor or aerosol generated from tobacco downstream. In this case, the heat insulation provided by the gap between the susceptor-containing sheet and at least one of the first and second sheets may also decrease. If the height of the above-mentioned wave portion exceeds 2.0 mm, the size of the flavor-generating article becomes too large. Therefore, according to the seventh embodiment, flavor or aerosol can be efficiently delivered, and the size of the flavor-generating article can be suppressed.
[0019] The eighth aspect is characterized in that, in any of the first to seventh aspects, the height of the wave portion of the first sheet and the height of the wave portion of the second sheet are different.
[0020] According to the eighth aspect, the size of the gap between the susceptor-containing sheet and the first sheet and the size of the gap between the susceptor-containing sheet and the second sheet can be made different. Therefore, for example, when a first tobacco sheet and a second tobacco sheet containing different tobacco flavors are laminated together, the amount of each flavor delivered can be adjusted by allowing the first flavor from the first tobacco sheet to pass through the first gap and the second flavor from the second tobacco sheet to pass through the second gap, thereby supplying the user with the desired flavor.
[0021] The ninth aspect is characterized in that, in any of the first to eighth aspects, the width of the wave portion of at least one of the first sheet and the second sheet is 0.2 mm or more and 2.0 mm or less.
[0022] If the width of the wave portion is less than 0.2 mm, the suction resistance when passing an aerosol through the waves and inhaling it may increase undesirably. If this width exceeds 2.0 mm, the intensity of the flavor-generating article may decrease. Therefore, according to the ninth embodiment, the intensity of the flavor-generating article can be maintained while suppressing an undesirable increase in suction resistance.
[0023] Aspect 10 is summarized in that in any one of Aspects 1 to 9, at least one of the first sheet and the second sheet contains a fragrance.
[0024] According to Aspect 10, in addition to the fragrance or aerosol, the fragrance can be supplied to the user.
[0025] Aspect 11 is summarized in that in any one of Aspects 1 to 10, the susceptor-containing sheet extends only partially in the longitudinal direction or the width direction of the fragrance-generating article.
[0026] According to Aspect 11, the susceptor-containing sheet has a length or width shorter than the overall length or width of the fragrance-generating article. Therefore, since the fragrance-generating article does not need to be provided with a susceptor-containing sheet having a size similar to its overall size, the amount of susceptor-containing sheet required for the fragrance-generating article can be provided, and the susceptor material can be reduced.
[0027] Aspect 12 is summarized in that in any one of Aspects 1 to 11, the susceptor-containing sheet includes the sheet-like susceptor material and a tobacco sheet laminated on the sheet-like susceptor material.
[0028] According to Aspect 12, the tobacco sheet can be heated by inductively heating the sheet-like susceptor material.
[0029] Aspect 13 is summarized in that in Aspect 12, the sheet-like susceptor material has an area smaller than that of the tobacco sheet.
[0030] According to Aspect 13, the susceptor material can be saved.
[0031] The fourteenth embodiment is characterized in that, in the twelfth or thirteenth embodiment, the tobacco sheet includes a first tobacco sheet and a second tobacco sheet, and the sheet-like susceptor material is sandwiched between the first tobacco sheet and the second tobacco sheet.
[0032] According to the 14th embodiment, the first tobacco sheet and the second tobacco sheet can be heated more uniformly by induction heating of the sheet-shaped susceptor material.
[0033] The 15th embodiment is characterized in that, in the 14th embodiment, the first tobacco sheet and the second tobacco sheet differ from each other in at least one of the following: flavor, thickness, aerosol source content, and surface shape.
[0034] According to the 15th embodiment, if the flavors are different, different flavors can be generated from the first tobacco sheet and the second tobacco sheet. Therefore, by adjusting the amount of each flavor delivered, the user can be supplied with the desired flavor. Also, if the thickness is different, a relatively thin tobacco sheet will have a faster temperature rise, allowing for efficient delivery of the initial flavor or aerosol. In contrast, a relatively thick tobacco sheet will have a slower temperature rise, allowing the generation of flavor or aerosol to continue until the latter half of smoking. If the aerosol source content is different, a tobacco sheet with a relatively low aerosol source content will have a faster temperature rise, allowing for efficient delivery of the initial flavor or aerosol. In contrast, a tobacco sheet with a relatively high aerosol source content will have a slower temperature rise, allowing the generation of flavor or aerosol to continue until the latter half of smoking. Also, if the surface shapes of the tobacco sheets are different, a tobacco sheet with a relatively large surface area can efficiently deliver the initial flavor or aerosol. In contrast, with tobacco sheets having a relatively small surface area, the temperature rise is slower, and the generation of flavor or aerosol can be sustained until the latter half of smoking.
[0035] The sixteenth aspect is characterized in that, in any of the first to eleventh aspects, the susceptor-containing sheet comprises a tobacco sheet and granular susceptor material.
[0036] According to the 16th embodiment, the tobacco sheet can be heated by induction heating of the granular susceptor material.
[0037] The 17th aspect is characterized in that, in any of the 12th to 16th aspects, the thickness of the tobacco sheet is 0.25 mm or more and 4.0 mm or less.
[0038] If the thickness of the tobacco sheet is less than 0.25 mm, the amount of flavor or aerosol generated per unit area of the sheet may be reduced. If the thickness of the tobacco sheet exceeds 4.0 mm, the size of the flavor-generating article becomes too large. In this case, heating the tobacco sheet takes time, which may result in a longer time until the initial puff or insufficient delivery of the initial puff. Therefore, according to the 17th embodiment, sufficient flavor or aerosol can be generated while suppressing the size of the flavor-generating article.
[0039] The 18th aspect is characterized in that, in any of the 1st to 11th aspects, the susceptor-containing sheet consists only of the susceptor material, or includes a sheet-like susceptor material and a non-tobacco sheet laminated on the sheet-like susceptor material.
[0040] According to the 18th embodiment, since the susceptor-containing sheet does not contain tobacco, tobacco is contained in at least one of the first sheet and the second sheet. As a result, when the susceptor-containing sheet is induced to heat, the tobacco contained in at least one of the first sheet and the second sheet is heated, and flavor or aerosol may be generated.
[0041] The 19th aspect is characterized in that, in any of the 1st to 18th aspects, at least one of the first sheet and the second sheet contains the tobacco.
[0042] According to the 19th embodiment, when the susceptor-containing sheet is inductively heated, the tobacco contained in at least one of the first sheet and the second sheet is heated, and flavor or aerosol may be generated.
[0043] The 20th embodiment is characterized in that, in any of the first to 19 embodiments, at least one of the first sheet and the second sheet is a non-tobacco sheet.
[0044] According to the 20th embodiment, since at least one of the first sheet and the second sheet is formed from any material other than tobacco, a lightweight, inexpensive, and robust flavor-generating article can be provided. [Brief explanation of the drawing]
[0045] [Figure 1] This is a schematic side view of a flavor suction device for heating a flavor-generating article according to this embodiment. [Figure 2] This is a schematic diagram of an example of a flavor inhaler. [Figure 3] This is a perspective view of an item that produces flavor. [Figure 4] Figure 3 is a cross-sectional view of the flavor-generating article, taken from the longitudinal direction. [Figure 5] This is a cross-sectional view of a flavor-generating article according to another embodiment, viewed from the longitudinal direction. [Figure 6A] This is a cross-sectional view showing the structure of the susceptor-containing sheet of the flavor-generating article according to this embodiment. [Figure 6B] A cross-sectional view showing the structure of a susceptor-containing sheet in a flavor-generating article according to another embodiment. [Figure 7A] A cross-sectional view showing the structure of a susceptor-containing sheet in a flavor-generating article according to another embodiment. [Figure 7B] This is a cross-sectional view showing the configuration of a susceptor-containing sheet of a flavor-generating article according to another embodiment. [Modes for carrying out the invention]
[0046] Embodiments of the present invention will be described below with reference to the drawings. In the drawings described below, the same or corresponding components are denoted by the same reference numerals, and redundant descriptions are omitted. In this specification, "longitudinal direction" refers to the direction in which air passes through the flavor-generating article. Alternatively, "longitudinal direction" refers to the direction in which the concave or convex shape of the first or second sheet, as described later, extends. In this specification, "short direction" or "width direction" refers to the direction perpendicular to the longitudinal direction.
[0047] Figure 1 is a schematic side view of a flavor inhaler for heating a flavor-generating article according to this embodiment. The flavor inhaler 100 according to this embodiment is configured to generate flavor or aerosol by heating a flavor source or aerosol source contained in the flavor-generating article. As shown in the figure, the flavor inhaler 100 has a first housing 110, a second housing 120, and a suction port 130. The first housing 110 and the second housing 120 may be configured to be detachable from each other. The suction port 130 may be detachably connected to one end of the second housing 120, or may be formed integrally with the second housing 120.
[0048] Figure 2 is a schematic diagram of an example of a flavor inhaler 100. As shown in the figure, the flavor inhaler 100 includes a battery 140, a heating unit 150, a control circuit 170, and a cooling unit 160, which are located inside the first housing 110 and the second housing 120, respectively. The first housing 110 and the second housing 120 are rotatably connected to each other, for example, by a hinge. The first housing 110 and the second housing 120 may also be connected to each other in a way that allows for complete separation, such as by a snap fit or screw fastening. By completely separating the first housing 110 and the second housing 120 in this way, the cooling unit 160, the suction port 130, and the heating unit 150 can be easily cleaned.
[0049] The battery 140 is configured to supply power to the heating unit 150 and the control circuit 170, etc. For example, the battery 140 is a lithium-ion battery. The battery 140 may be rechargeable by an external power source. The cooling unit 160 is configured to cool the aerosol generated from the flavor generating article 10. The cooling unit 160 may be, for example, a space through which the passing aerosol is naturally cooled. Alternatively, the cooling unit 160 may be arranged or filled with one or more materials selected from the group consisting of polyethylene, polypropylene, polyvinyl chloride, polyethylene terephthalate, polylactic acid, cellulose acetate, and aluminum foil. By arranging or filling the cooling unit 160 with these materials, the aerosol can be cooled more efficiently.
[0050] In the illustrated example, the heating unit 150 has an induction coil 150b for inductively heating the susceptor contained in the flavor-generating article 10. The flavor inhaler 100 shown in Figure 2 may also have an electromagnetic shield (not shown) between the heating unit 150 and the control circuit 170 to suppress electromagnetic waves generated by the induction coil 150b from reaching the control circuit 170. The heating unit 150 is configured to heat the flavor-generating article 10 to, for example, 200°C to 350°C.
[0051] The control circuit 170 consists of a CPU and memory, and controls the operation of the flavor inhaler 100. For example, the control circuit 170 starts heating the flavor generating item 10 in response to user operation on an input device such as a push button or a slide switch (not shown), and stops heating the flavor generating item 10 after a certain period of time has elapsed. The control circuit 170 may also stop heating the flavor generating item 10 even before a certain period of time has elapsed since the start of heating if the number of puffing actions by the user exceeds a certain value. For example, the puffing action is detected by a sensor (not shown).
[0052] Alternatively, the control circuit 170 may start heating the flavor-generating article 10 in response to the start of the puffing operation and stop heating the flavor-generating article 10 in response to the end of the puffing operation. The control circuit 170 may also stop heating the flavor-generating article 10 even before the end of the puffing operation if a certain amount of time has elapsed since the start of the puffing operation. In the illustrated example, the control circuit 170 is positioned between the battery 140 and the heating unit 150 to suppress heat transfer from the heating unit 150 to the battery 140.
[0053] The flavor generating article 10 is heated by the heating section 150, generating vapor and aerosols of an aerosol source or flavor source. The vapor and aerosols generated in the flavor generating article 10 are cooled by passing through the cooling section 160 and reach the user's mouth through the inlet 130. In this embodiment, the flavor generating article 10 is in the form of a sheet, plate, or card.
[0054] Next, the flavor generating article 10 will be described in detail. Figure 3 is a perspective view of the flavor generating article 10. Figure 4 is a cross-sectional view of the flavor generating article 10 shown in Figure 3, taken from the longitudinal direction d1. As shown in Figure 3, the flavor generating article 10 can be formed as a flat sheet overall. As shown in Figures 3 and 4, the flavor generating article 10 has a flat susceptor-containing sheet 20 containing susceptor material, and corrugated first sheet 42 and second sheet 44 arranged on both sides of the susceptor-containing sheet 20. Specifically, the susceptor-containing sheet 20 is a substantially flat sheet overall. At least one of the susceptor-containing sheet 20, the first sheet 42, and the second sheet 44 contains tobacco and generates flavor or aerosol upon heating. In this embodiment, the first sheet 42 and the second sheet 44 have a sinusoidal cross-section. However, the invention is not limited to this, and at least one of the first sheet 42 and the second sheet 44 may have a corrugated cross-section of any shape, such as rectangular, triangular, or sawtooth.
[0055] Specific examples of tobacco include shredded dried tobacco leaves, crushed tobacco leaves, or tobacco extract (extracts from water, organic solvents, or mixed solutions thereof). Crushed tobacco leaves are particles obtained by crushing tobacco leaves. For example, the average particle size of the crushed tobacco leaves can be 30 to 120 μm. Crushing can be performed using a known crushing machine, and may be dry or wet. Therefore, crushed tobacco leaves are also called tobacco particles. In this embodiment, the average particle size is determined by laser diffraction / scattering, specifically measured using a laser diffraction particle size distribution analyzer (e.g., Horiba LA-950). Furthermore, the type of tobacco is not limited, and yellow varieties, Burley varieties, Oriental varieties, native varieties, and other Nicotiana tabacum and Nicotiana rustica varieties can be used. The amount of tobacco contained in the first susceptor-containing sheet 20, the first sheet 42, or the second sheet 44 is not particularly limited, but is preferably 1 to 30% by weight, more preferably 10 to 20% by weight.
[0056] If at least one of the first sheet 42 and the second sheet 44 contains tobacco, the tobacco may be supported on a sheet made of non-tobacco fibers such as pulp fibers or nonwoven fabric. Alternatively, at least one of the first sheet 42 and the second sheet 44 may be formed from a tobacco sheet. The tobacco sheet can be a sheet made from tobacco leaves, a cast sheet from tobacco leaves, a rolled sheet from tobacco leaves, etc. The tobacco sheet may further contain an aerosol source. The type of aerosol source is not particularly limited, and various extracts from natural products and / or their components can be selected depending on the application. The aerosol source is preferably a polyhydric alcohol, and can be, for example, glycerin, propylene glycol, triacetin, 1,3-butanediol, and mixtures thereof.
[0057] According to the flavor generating article 10 shown in Figures 3 and 4, gaps S1 and S2 can be formed between the susceptor-containing sheet 20 and the first sheet 42 and second sheet 44, respectively, through which flavor or aerosol generated from tobacco can pass. This allows for efficient delivery of flavor or aerosol generated from tobacco downstream. Furthermore, since the susceptor-containing sheet 20 contains susceptor material, the tobacco can be heated without contacting the flavor generating article 10 with a heating source. Therefore, the gaps S1 and S2 will not be crushed by contact with the flavor generating article 10 by a heater or the like, allowing for stable delivery of flavor or aerosol. Moreover, since the susceptor-containing sheet 20 containing susceptor material is sandwiched between the first sheet 42 and the second sheet 44, the heat generated by the susceptor material can be suppressed from being transferred to the surface of the flavor generating article 10 by the gap through which flavor or aerosol passes. As a result, a complex heat insulation mechanism can be eliminated from the flavor inhaler 100. The tobacco may contain an aerosol source. Furthermore, at least one of the susceptor-containing sheet 20, the first sheet 42, and the second sheet 44 may contain an aerosol source. In this case, the amount of aerosol delivered to the user can be increased.
[0058] As shown in Figure 4, the first sheet 42 has a first surface 42a facing the susceptor-containing sheet 20 and a second surface 42b opposite to the first surface 42a. In this embodiment, it is preferable that the first liner sheet 51 is provided on the second surface 42b. In this case, since the first sheet 42 is covered by the first liner sheet 51, the user can handle the flavor-generating article 10 without directly touching the first sheet 42. This prevents the first sheet 42 from being crushed, thus maintaining the gap S1 between the susceptor-containing sheet 20 and the first sheet 42 and enabling stable delivery of flavor or aerosol. Furthermore, when removing the flavor-generating article 10 from the flavor inhaler 100 after use, the first liner sheet 51 can prevent the heat from the susceptor-containing sheet 20 from being transferred to the user's hand.
[0059] Similarly, the second sheet 44 has a first surface 44a facing the susceptor-containing sheet 20 and a second surface 44b opposite to the first surface 44a. In this embodiment, it is preferable that a second liner sheet 52 is provided on the second surface 44b. In this case, since the second sheet 44 is covered by the second liner sheet 52, the user can handle the flavor-generating article 10 without directly touching the second sheet 44. This prevents the second sheet 44 from being crushed, thus maintaining the gap S2 between the susceptor-containing sheet 20 and the second sheet 44 and enabling stable delivery of flavor or aerosol. Furthermore, when the flavor-generating article 10 is removed from the flavor inhaler 100 after use, the second liner sheet 52 can prevent the heat from the susceptor-containing sheet 20 from being transferred to the user's hand.
[0060] Preferably, at least one of the first liner sheet 51 and the second liner sheet 52 is made of paper. In this case, a lightweight and inexpensive flavor-generating article 10 can be provided. As shown in Figure 4, a gap S3 is formed between the first sheet 42 and the first liner sheet 51. Preferably, part or all of this gap S3 is closed. In this case, the passage of air through the gap S3 between the first sheet 42 and the first liner sheet 51 is suppressed. This makes it easier for air passing through the flavor-generating article 10 to flow through the gaps S1 and S2 between the susceptor-containing sheet 20 and the first sheet 42 and the second sheet 44, so that the flavor or aerosol generated from the susceptor-containing sheet 20 can be efficiently delivered downstream. Similarly, a gap S4 is formed between the second sheet 44 and the second liner sheet 52. Preferably, part or all of this gap S4 is closed. In this case, the passage of air through the gap S4 between the second sheet 44 and the second liner sheet 52 is suppressed. This makes it easier for air passing through the flavor-generating article 10 to flow through the gaps S1 and S2 between the susceptor-containing sheet 20 and the first sheet 42 and the second sheet 44, thereby efficiently delivering the flavor or aerosol generated from the susceptor-containing sheet 20 downstream. As shown in Figure 4, it is preferable that at least one of the first liner sheet 51 and the second liner sheet 52 is flat.
[0061] As shown in Figure 3, the first sheet 42 and the second sheet 44 have convex and concave sections extending along the longitudinal direction d1, giving them a corrugated cross-section. The first sheet 42 and the second sheet 44 can also be described as a ridged sheet as a whole.
[0062] At least one of the first sheet 42 and the second sheet 44 may be a non-tobacco sheet formed from a non-tobacco material. In this case, specifically, for example, it is preferable that at least one of the first sheet 42 and the second sheet 44 includes paper or pulp mold. This allows the flavor-generating article 10 to be formed to be lightweight, inexpensive, and robust. At least one of the first sheet 42 and the second sheet 44 may contain tobacco. In this case, when the susceptor-containing sheet 20 is induction-heated, the tobacco contained in at least one of the first sheet 42 and the second sheet 44 is heated, and flavor or aerosol can be generated.
[0063] In the example shown in Figure 4, the first sheet 42 and the second sheet 44 have the same corrugated cross-sectional shape and face each other via the susceptor-containing sheet 20 with a phase difference of 90°. In other words, the first sheet 42 has a convex portion 42c and a concave portion 42d, and the second sheet 44 has a convex portion 44c and a concave portion 44d, and the first sheet 42 and the second sheet 44 can be arranged such that the concave portion 42d and the convex portion 44c face each other via the susceptor-containing sheet 20.
[0064] Figure 5 is a cross-sectional view of the flavor-generating article 10 according to another embodiment, viewed from the longitudinal direction d1. As shown in Figure 5, the first sheet 42 and the second sheet 44 may have the same corrugated cross-sectional shape and face each other via the susceptor-containing sheet 20 so that their phases coincide. In other words, the first sheet 42 and the second sheet 44 may be arranged such that the recess 42d of the first sheet 42 and the recess 44d of the second sheet 44 face each other via the susceptor-containing sheet 20.
[0065] In the examples shown in Figures 4 and 5, the wave height and width of the cross-sections of the first sheet 42 and the second sheet 44 are the same. However, the wave height or width of the cross-section of the first sheet 42 may be different from the wave height or width of the cross-section of the second sheet 44.
[0066] The height h1 of the wavy portion of at least one of the first sheet 42 and the second sheet 44 is preferably 0.2 mm or more and 2.0 mm or less. If the height h1 of this wavy portion (see Figure 4) is less than 0.2 mm, the gaps S1 and S2 between the susceptor-containing sheet 20 and at least one of the first sheet 42 and the second sheet 44 become too small, which may prevent the efficient delivery of flavor or aerosol generated from tobacco downstream. In this case, the thermal insulation provided by the gaps S1 and S2 between the susceptor-containing sheet 20 and at least one of the first sheet 42 and the second sheet 44 may also decrease. If the height h1 of this wavy portion exceeds 2.0 mm, the size of the flavor-generating article 10 becomes too large. Therefore, if the height h1 of the wavy portion is within the above range, the flavor or aerosol can be efficiently delivered, and the size of the flavor-generating article 10 can be suppressed.
[0067] The width of the wave portion (i.e., the length between wave peaks) of at least one of the first sheet 42 and the second sheet 44 is preferably 0.2 mm or more and 2.0 mm or less. If this width is less than 0.2 mm, the suction resistance when an aerosol is passed through the waves and inhaled may increase undesirably. If this width exceeds 2.0 mm, the intensity of the flavor-generating article 10 may decrease. Therefore, if this width is within the above range, the intensity of the flavor-generating article 10 can be maintained while suppressing an undesirable increase in suction resistance.
[0068] At least one of the first sheet 42 and the second sheet 44 may contain a fragrance. In this case, the fragrance can be supplied to the user in addition to the flavor or aerosol. The type of fragrance is not particularly limited, and from the viewpoint of imparting a good fragrance, acetanisole, acetophenone, acetylpyrazine, 2-acetylthiazole, alfalfa extract, amyl alcohol, amyl butyrate, trans-anethole, star anise oil, apple juice, Peruvian balsam oil, beeswax absolute, benzaldehyde, benzoin resinoid, benzyl alcohol, benzyl benzoate, benzyl phenylacetate, benzyl propionate, 2,3-butanedione, 2-butanol, butyl butyrate, butyric acid, caramel, cardamom oil, carob absolute, β-carotene, carrot juice, L-carvone, β-caryophyllene, cassia bark oil, cedarwood oil, celery seed oil, chamomile oil, cinnamaldehyde, cinnamic acid, cinnamyl alcohol, cinnamyl cinnamate, citronella oil, DL-citronella Ronellol, Clary Sage Extract, Cocoa, Coffee, Cognac Oil, Coriander Oil, Cumin Aldehyde, Davana Oil, δ-Decalactone, γ-Decalactone, Decanoic Acid, Dill Herb Oil, 3,4-Dimethyl-1,2-Cyclopentanedione, 4,5-Dimethyl-3-Hydroxy-2,5-Dihydrofuran-2-one, 3,7-Dimethyl-6-Octenic Acid, 2,3-Dimethylpyrazine, 2,5-Dimethylpyrazine, 2,6-Dimethylpyrazine, Ethyl 2-Methyl Butyrate, Ethyl Ethyl Butyrate, Ethyl Hexanoate, Ethyl Isovalerate, Ethyl Lactate, Ethyl Laurate, Ethyl Levulinate, Ethyl Maltol, Ethyl Octanoate, Ethyl Oleate, Ethyl Palmitate, Ethyl Phenyl Ethyl, Ethyl Propionate, Ethyl Stearate, Ethyl Valerate, Ethyl Vanillin, Ethyl Vanillin Glucoside, 2-Ethyl-3,(5 or 6)-dimethylpyrazine, 5-ethyl-3-hydroxy-4-methyl-2(5H)-furanone, 2-ethyl-3-methylpyrazine, eucalyptol, fenugreek absolute, genus absolute, gentian root infusion, geraniol, geranyl acetate, grape juice, guaiacol, guava extract, γ-heptalactone, γ-hexalactone, hexanoic acid, cis-3-hexen-1-ol, hexyl acetate, hexyl alcohol, hexyl phenylacetate, honey, 4-hydroxy-3-pentenoic acid Chloride, 4-hydroxy-4-(3-hydroxy-1-butenyl)-3,5,5-trimethyl-2-cyclohexen-1-one, 4-(para-hydroxyphenyl)-2-butanone, sodium 4-hydroxyundecanoate, inmortel absolute, β-ionone, isoamyl acetate, isoamyl butyrate, isoamyl phenylacetate, isobutyl acetate, isobutyl phenylacetate, jasmine absolute, cola nut tincture, labdanum oil, lemon terpene oil, licorice extract, linalool, linalyl acetate, robe Dioscorea root oil, maltol, maple syrup, menthol, menthone, L-menthyl acetate, paramethoxybenzaldehyde, methyl-2-pyrrolyl ketone, methyl anthranilate, methyl phenylacetate, methyl salicylate, 4'-methylacetophenone, methylcyclopentenolone, 3-methylvaleric acid, mimosa absolute, honey, myristic acid, nerol, nerolidol, γ-nonalactone, nutmeg oil, δ-octaractone, octanal, octanoic acid, orange flower oil, orange oil, orris root oil, palmitic acid, ω-pentadyl Calactone, peppermint oil, petitgrain Paraguay oil, phenethyl alcohol, phenethyl phenylacetate, phenylacetic acid, piperonal, plum extract, propenyl guaetol, propyl acetate, 3-propyridenephthalide, prune juice, pyruvic acid, raisin extract, rose oil, rum, sage oil, sandalwood oil, spearmint oil, styrax absolute, marigold oil, tea distillate, α-terpineol, terpinyl acetate, 5,6,7,8-tetrahydroquinoxaline, 1,5,5,9-Tetramethyl-13-oxacyclo(8.3.0.0(4.9))tridecane, 2,3,5,6-tetramethylpyrazine, thyme oil, tomato extract, 2-tridecanone, triethyl citrate, 4-(2,6,6-trimethyl-1-cyclohexenyl)2-buten-4-one, 2,6,6-trimethyl-2-cyclohexen-1,4-dione, 4-(2,6,6-trimethyl-1,3-cyclohexadienyl)2-buten-4-one, 2,3,5-trimethylpyrazine, γ-undecalactone, γ-valerolactone, vanilla extract, vanillin, veratrol At least one of the following may be selected: aldehydes, violet leaf absolute, N-ethyl-p-menthane-3-carboamide (WS-3), ethyl-2-(p-menthane-3-carboxamide) acetate (WS-5), sugars (sucrose, fructose, etc.), cocoa powder, carob powder, coriander powder, licorice powder, orange peel powder, rosehip powder, chamomile flower powder, lemon verbena powder, peppermint powder, leaf powder, spearmint powder, black tea powder, natural plant-based fragrances (e.g., jasmine oil, lemon oil, vetiver oil, lovage oil), and esters.
[0069] Furthermore, the susceptor-containing sheet 20 may extend only to a portion of the flavor-generating article 10 in the longitudinal direction d1 or the width direction d2. In this case, the susceptor-containing sheet 20 has a length or width shorter than the overall length or width of the flavor-generating article 10. Therefore, the flavor-generating article 10 does not need to have a susceptor-containing sheet 20 that is the same size as its overall size, and the amount of susceptor material can be reduced by providing only the necessary amount of susceptor-containing sheet 20 relative to the flavor-generating article 10.
[0070] Figure 6A is a cross-sectional view showing the configuration of the susceptor-containing sheet 20 of the flavor-generating article 10 according to this embodiment. Figure 6B is a cross-sectional view showing the configuration of the susceptor-containing sheet 20 of the flavor-generating article 10 according to another embodiment. As shown in Figure 6A, in this embodiment, the susceptor-containing sheet 20 may have a sheet-like susceptor material 25 and a tobacco sheet 21 laminated on the sheet-like susceptor material 25. In this case, the tobacco sheet 21 can be heated by induction heating of the sheet-like susceptor material 25.
[0071] Specifically, in this embodiment, the tobacco sheet 21 of the susceptor-containing sheet 20 preferably includes a first tobacco sheet 21a and a second tobacco sheet 21b. In this case, as shown in Figure 6A, it is preferable that the sheet-shaped susceptor material 25 is sandwiched between the first tobacco sheet 21a and the second tobacco sheet 21b. In this case, the sheet-shaped susceptor material 25 is induction-heated, which allows the first tobacco sheet 21a and the second tobacco sheet 21b to be heated more uniformly. However, the second tobacco sheet 21b may be directly laminated on the first tobacco sheet 21a. Furthermore, the tobacco sheet 21 may contain only the first tobacco sheet 21a or only the second tobacco sheet 21b.
[0072] The first tobacco sheet 21a and the second tobacco sheet 21b may have the same shape (thickness, length, or width) or the same composition, or they may have different shapes (thickness, length, or width) or different composition. Specifically, for example, the first tobacco sheet 21a and the second tobacco sheet 21b may differ from each other in at least one of the following: flavor, thickness, aerosol source content, and surface shape. If the flavors are different, different flavors can be generated from the first tobacco sheet 21a and the second tobacco sheet 21b. Therefore, by adjusting the amount of each flavor delivered, the desired flavor can be supplied to the user. For example, the first tobacco sheet 21a and the second tobacco sheet 21b can have different flavors by using tobacco sheets with different tobacco types and blending ratios, such as Burley, yellow, Orient, and traditional varieties. If the thicknesses are different, the relatively thinner tobacco sheet will heat up faster, and the initial flavor or aerosol delivery can be carried out efficiently. In contrast, with relatively thick tobacco sheets, the temperature rise is slower, and the generation of flavor or aerosol can be sustained until the latter half of smoking. When the aerosol source content differs, tobacco sheets with a relatively low aerosol source content experience a faster temperature rise, and the initial delivery of flavor or aerosol can be efficient. In contrast, tobacco sheets with a relatively high aerosol source content experience a slower temperature rise, and the generation of flavor or aerosol can be sustained until the latter half of smoking. Furthermore, when the surface shapes of the tobacco sheets differ, tobacco sheets with a relatively large surface area can efficiently deliver the initial flavor or aerosol. In contrast, tobacco sheets with a relatively small surface area experience a slower temperature rise, and the generation of flavor or aerosol can be sustained until the latter half of smoking.
[0073] In the example shown in Figure 5, as described above, the first sheet 42 and the second sheet 44 have the same corrugated cross-sectional shape. However, the design is not limited to this, and the height of the corrugated portion of the first sheet 42 and the height of the corrugated portion of the second sheet 44 may be different. In this case, the size of the gap S1 between the susceptor-containing sheet 20 and the first sheet 42 and the size of the gap S2 between the susceptor-containing sheet 20 and the second sheet 44 can be made different. Therefore, for example, as shown in Figure 6A, when the susceptor-containing sheet 20 is formed by laminating a first tobacco sheet 21a and a second tobacco sheet 21b, the amount of the first flavor from the first tobacco sheet 21a is allowed to pass through gap S1, and the second flavor from the second tobacco sheet 21b is allowed to pass through gap S2, thereby adjusting the delivery amount of each and supplying the user with the desired flavor.
[0074] The sheet-like susceptor material 25 may have a smaller area than the tobacco sheet 21. In this case, the susceptor material 25 can be saved. The area referred to here is the area of the tobacco sheet 21 or susceptor material 25 extending in the longitudinal direction d1 and the width direction d2 as shown in Figure 3.
[0075] As shown in Figure 6B, in another embodiment, the susceptor-containing sheet 20 may have a tobacco sheet 21 and granular susceptor material 26. In this case, the tobacco sheet 21 can be heated by induction heating of the granular susceptor material 26. In the illustrated example, the granular susceptor material 26 is contained inside the tobacco sheet 21, but is not limited to this and may be arranged to adhere to the surface of the tobacco sheet 21. The particle size of the granular susceptor material 26 may be, for example, 0.1 mm or more and 3 mm or less.
[0076] The thickness of the tobacco sheet 21 shown in Figures 6A and 6B is preferably 0.25 mm or more and 4.0 mm or less. If the thickness of the tobacco sheet 21 is less than 0.25 mm, the amount of flavor or aerosol generated per unit area of the sheet may be reduced. If the thickness of the tobacco sheet 21 is greater than 4.0 mm, the size of the flavor generating article 10 becomes too large. In this case, heating the tobacco sheet 21 takes time, which may result in a longer time until the initial puff or insufficient delivery of the initial puff. Therefore, if the thickness of the tobacco sheet 21 is within the above range, sufficient flavor or aerosol can be generated, and the size of the flavor generating article 10 can be suppressed. Note that, as shown in Figure 6A, if the tobacco sheet 21 includes multiple tobacco sheets, the thickness here refers to the total thickness of the multiple tobacco sheets.
[0077] As shown in Figures 6A and 6B, the tobacco sheet 21 can be a sheet of tobacco leaves, a cast sheet of tobacco leaves, a rolled sheet of tobacco leaves, or the like. The tobacco sheet 21 may further contain an aerosol source. The type of aerosol source is not particularly limited, and extracts from various natural products and / or their components can be selected depending on the application. The aerosol source is preferably a polyhydric alcohol, and can be, for example, glycerin, propylene glycol, triacetin, 1,3-butanediol, or mixtures thereof. The tobacco sheet 21 may also contain the above-mentioned flavorings that can be added to the first sheet 42 and the second sheet 44.
[0078] Figure 7A is a cross-sectional view showing the configuration of the susceptor-containing sheet 20 of the flavor-generating article 10 according to another embodiment. Figure 7B is a cross-sectional view showing the configuration of the susceptor-containing sheet 20 of the flavor-generating article 10 according to yet another embodiment. The susceptor-containing sheets 20 shown in Figures 7A and 7B differ from the susceptor-containing sheets 20 shown in Figures 6A and 6B in that they do not contain tobacco. The susceptor-containing sheet 20 shown in Figure 7A consists only of a sheet-like susceptor material 25. The susceptor-containing sheet 20 shown in Figure 7B includes a sheet-like susceptor material 25 and a non-tobacco sheet 27 laminated on the susceptor material 25. Since the susceptor-containing sheets 20 shown in Figures 7A and 7B do not contain tobacco, in this case, at least one of the first sheet 42 and the second sheet 44 shown in Figures 3 to 5 contains tobacco. As a result, the susceptor-containing sheet 20 is inductively heated, which heats the tobacco contained in at least one of the first sheet 42 and the second sheet 44, and can generate flavor or aerosol.
[0079] In the susceptor-containing sheet 20 shown in Figure 7B, the non-tobacco sheet 27 may include paper or pulp mold. This allows the flavor-generating article 10 to be formed to be lightweight, inexpensive, and robust. The non-tobacco sheet 27 may be, for example, a nonwoven fabric. The non-tobacco sheet 27 may hold an aerosol source. In this case, the amount of aerosol delivered to the user can be increased.
[0080] Although embodiments of the present invention have been described above, the present invention is not limited to the above embodiments, and various modifications are possible within the scope of the claims, specification, and drawings. Furthermore, any shape or material not directly described in the specification and drawings is within the scope of the technical idea of the present invention as long as it achieves the function and effect of the present invention. [Explanation of Symbols]
[0081] 10: Flavor-generating items 20: Sheet material 21: Tobacco Sheet 21a: First tobacco sheet 21b: Second tobacco sheet 25,26: Susceptor materials 27: Non-tobacco seat 42: Sheet 1 42a: 1st page 42b: 2nd side 44: Second seat 44a: 1st page 44b: 2nd side 51: First liner sheet S3: Gap S4: Gap d1: Longitudinal direction d2: Width direction h1: height
Claims
1. An article that generates flavor, A flat susceptor-containing sheet containing susceptor material, The susceptor-containing sheet comprises a first sheet and a second sheet arranged on both sides of the sheet, At least one of the susceptor-containing sheet, the first sheet, and the second sheet contains tobacco, The aforementioned flavor-generating article is formed in a flat, sheet-like shape overall.
2. In the flavor-generating article described in claim 1, The aforementioned tobacco is a flavor-generating article containing an aerosol source.
3. In the flavor-generating article described in claim 1, The first sheet has a first surface facing the susceptor-containing sheet and a second surface opposite to the first surface, and a liner sheet is provided on the second surface, thereby generating a flavor.
4. In the flavor-generating article described in claim 3, The aforementioned liner sheet is made of paper, and is a flavor-generating article.
5. In the flavor-generating article described in claim 3, A flavor-generating article in which part or all of the gap between the first sheet and the liner sheet is closed.
6. In the flavor-generating article described in claim 1, A flavor-generating article in which at least one of the first sheet and the second sheet includes paper or pulp mold.
7. In the flavor-generating article described in claim 1, A flavor-generating article wherein the height of the wavy portion of at least one of the first sheet and the second sheet is 0.2 mm or more and 2.0 mm or less.
8. In the flavor-generating article described in claim 1, A flavor-generating article in which the height of the wave portion of the first sheet and the height of the wave portion of the second sheet are different.
9. In the flavor-generating article described in claim 1, A flavor-generating article wherein the width of the wave portion of at least one of the first sheet and the second sheet is 0.2 mm or more and 2.0 mm or less.
10. In the flavor-generating article described in claim 1, At least one of the first sheet and the second sheet is a flavor-generating article containing a fragrance.
11. In the flavor-generating article described in claim 1, The susceptor-containing sheet extends only to a portion of the flavor-generating article in the longitudinal or widthwise direction.
12. In the flavor-generating article described in claim 1, The susceptor-containing sheet is a flavor-generating article comprising a sheet-like susceptor material and a tobacco sheet laminated on the sheet-like susceptor material.
13. In the flavor-generating article described in claim 12, The sheet-like susceptor material is a flavor-generating article having a smaller surface area than the tobacco sheet.
14. In the flavor-generating article described in claim 12, The aforementioned tobacco sheet includes a first tobacco sheet and a second tobacco sheet. The sheet-like susceptor material is sandwiched between the first tobacco sheet and the second tobacco sheet, forming a flavor-generating article.
15. In the flavor-generating article described in claim 14, Flavor-generating articles wherein the first tobacco sheet and the second tobacco sheet differ from each other in at least one of their flavor, thickness, aerosol source content, and surface shape.
16. In the flavor-generating article described in claim 1, The susceptor-containing sheet is a flavor-generating article comprising a tobacco sheet and granular susceptor material.
17. In the flavor-generating article described in claim 12, The aforementioned tobacco sheet has a thickness of 0.25 mm or more and 4.0 mm or less, and is a flavor-generating article.
18. In the flavor-generating article described in claim 1, The susceptor-containing sheet comprises either the susceptor material alone, or a sheet-like susceptor material and a non-tobacco sheet laminated on the sheet-like susceptor material, wherein the susceptor-containing sheet is a flavor-generating article.
19. In the flavor-generating article described in claim 1, A flavor-generating article in which at least one of the first sheet and the second sheet contains tobacco.
20. In an article that generates flavor according to any one of claims 1 to 19, A flavor-generating article in which at least one of the first sheet and the second sheet is a non-tobacco sheet.
21. A flat susceptor-containing sheet comprising a susceptor material, The susceptor-containing sheet comprises a first sheet and a second sheet with a wave-shaped configuration, arranged on both sides of the sheet. At least one of the susceptor-containing sheet, the first sheet, and the second sheet contains tobacco, The first sheet has a first surface facing the susceptor-containing sheet and a second surface opposite to the first surface, and a liner sheet is provided on the second surface. A flavor-generating article in which part or all of the gap between the first sheet and the liner sheet is closed.
Citation Information
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