Cartridge for smoking device

A simplified support member design for smoking device cartridges, featuring a first wall portion and shaft portion, addresses the complexity and cost issues of existing support elements, enhancing aerosol generation and taste by cooling and guiding aerosol flow.

JP7706194B2Active Publication Date: 2025-07-11FUTURE TECHNOLOGY CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
JP2024195680
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-07-11
Estimated Expiration
2040-08-27

AI Technical Summary

Technical Problem

The existing support elements in smoking devices have complex structures and high manufacturing costs, as described in Patent Document 1.

Method used

A simplified support member design for a smoking device cartridge, comprising a first wall portion with a first flow path and a shaft portion, which supports the aerosol-forming base material and guides aerosol flow, while being integrated with a mouthpiece.

Benefits of technology

The simplified support member structure reduces manufacturing costs and stabilizes aerosol generation, improves aroma and taste by cooling and exchanging aerosol, and prevents deformation during use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007706194000001
    Figure 0007706194000001
  • Figure 0007706194000002
    Figure 0007706194000002
  • Figure 0007706194000003
    Figure 0007706194000003
Patent Text Reader

Abstract

To simplify a structure of a supporting member being, a part of a cartridge for a smoking tool.SOLUTION: A cartridge 2 for a smoking tool comprises an aerosol forming base material 23, a mouthpiece 40, and a supporting member 130. The supporting member includes: a first wall part 131 that is formed in a first disk-like shape, is disposed at a position for facing the aerosol forming base material, and has a first flow path through which aerosol generated by the aerosol forming base material being heated flows; and a second wall part 137 that is formed in a second disk-like shape, is provided so as to face the mouthpiece, and has a second flow path through which the aerosol flows. A diameter of the first wall part is approximately equal to a diameter of the aerosol forming base material and a diameter of the second wall part is equal to the diameter of the first wall part. The first flow path is a first penetration hole that penetrates the first wall part and the second flow path is a second penetration hole that penetrates the second wall part. A size of the second penetration hole is larger than a size of the first penetration hole.SELECTED DRAWING: Figure 15
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a cartridge for a smoking device.

Background Art

[0002] In recent years, tobacco products that heat a tobacco cartridge containing tobacco components without using a flame and suck the vaporized tobacco components have become widely known. Also, due to the diversification of tastes, cartridge products for enjoying the aroma and taste of plants that do not contain tobacco components without using a flame like tobacco have begun to be known. For example, Patent Document 1 states that "a smoking article for use in an aerosol generating device includes an aerosol-forming substrate located at the uppermost upstream end of the smoking article and a support element located immediately downstream of the aerosol-forming substrate. The support element abuts against the aerosol-forming substrate, and the aerosol-forming substrate is configured to be penetrable by a heating element of an aerosol generating device having a diameter between about 40 percent and about 70 percent of the diameter of the aerosol-forming substrate without substantially deforming the smoking article. The support element is configured to resist movement downstream of the aerosol-forming substrate during insertion of the heating element of the aerosol generating device into the aerosol-forming substrate." (See the abstract).

[0003]

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] The support element (support member) described in Patent Document 1 is a hollow cylindrical member with a flow path formed in the central portion, so there are problems such as a complex structure and high manufacturing costs.

[0006] The present invention has been made in view of such circumstances, and an object thereof is to simplify the structure of a support member that is a part of a cartridge for a smoking device.

Means for Solving the Problems

Means for Solving the Problems

[0007] To achieve the above object, one aspect of the present invention is an aerosol-forming base material made from a tobacco plant or a non-tobacco plant, a mouthpiece disposed coaxially with the aerosol-forming base material, and a support member disposed between the aerosol-forming base material and the mouthpiece for supporting the aerosol-forming base material, wherein the support member is disposed at a position facing the aerosol-forming base material and has a first wall portion having a first flow path through which aerosol generated by heating the aerosol-forming base material flows, and a shaft portion extending from the first wall portion toward the mouthpiece. and a support member that supports the aerosol-forming base material, and is a cartridge for a smoking device, wherein the support member is disposed at a position facing the aerosol-forming base material, and has a first wall portion having a first flow path through which aerosol generated by heating the aerosol-forming base material flows, and a shaft portion extending from the first wall portion toward the mouthpiece. and a support member that supports the aerosol-forming base material, and is a cartridge for a smoking device, wherein the support member is disposed at a position facing the aerosol-forming base material, and has a first wall portion having a first flow path through which aerosol generated by heating the aerosol-forming base material flows, and a shaft portion extending from the first wall portion toward the mouthpiece. and a support member that supports the aerosol-forming base material, and is a cartridge for a smoking device, wherein the support member is disposed at a position facing the aerosol-forming base material, and has a first wall portion having a first flow path through which aerosol generated by heating the aerosol-forming base material flows, and a shaft portion extending from the first wall portion toward the mouthpiece. and a support member that supports the aerosol-forming base material, and is a cartridge for a smoking device, wherein the support member is disposed at a position facing the aerosol-forming base material, and has a first wall portion having a first flow path through which aerosol generated by heating the aerosol-forming base material flows, and a shaft portion extending from the first wall portion toward the mouthpiece. and a support member that supports the aerosol-forming base material, and is a cartridge for a smoking device, wherein the support member is disposed at a position facing the aerosol-forming base material, and has a first wall portion having a first flow path through which aerosol generated by heating the aerosol-forming base material flows, and a shaft portion extending from the first wall portion toward the mouthpiece. and a support member that supports the aerosol-forming base material, and is a cartridge for a smoking device, wherein the support member is disposed at a position facing the aerosol-forming base material, and has a first wall portion having a first flow path through which aerosol generated by heating the aerosol-forming base material flows, and a shaft portion extending from the first wall portion toward the mouthpiece.

Advantages of the Invention

[0008] According to the present invention, the structure of the support member, which is a part of the cartridge for a smoking device, can be simplified. In addition, problems, configurations, and effects other than those described above will be clarified by the description of the following embodiments. will be clarified by the description of the following embodiments.

Brief Description of the Drawings

[0009]

Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Figure 7

Figure 8

Figure 9

Figure 10

Figure 11

Figure 12

Figure 13

Figure 14

Figure 15

Figure 16

Figure 17

Figure 18

Figure 19

Figure 20

Figure 21

Mode for Carrying Out the Invention

[0010] Hereinafter, embodiments of the present invention will be described with reference to the drawings.

[0011] (First Embodiment) FIG. 1 is a cross-sectional view of a cartridge 1 for a smoking device according to a first embodiment of the present invention. As shown in FIG. 1, the cartridge 1 for a smoking device according to the first embodiment includes a heating element 20, a support member 3 0, and a mouthpiece 40. The heating element 20, the support member 30, and the mouthpiece 40 are arranged side by side on the central axis C1. And the heating element 20, the support member 30, and the mouth piece 40 are wound and integrated by a sheet-like exterior member 10. The exterior member 1 0 is made of, for example, paper.

[0012] Here, the cartridge 1 for a smoking device shown in FIG. 1 has, for example, a diameter of 6.5 to 7.5 mm, and a length of 40 to 60 mm. Further, the heating element 20 has a length of 10 to 25 mm Of course, the cartridge for a smoking device may be formed with other dimensions.

[0013] The heating element 20 is formed in a cylindrical shape by winding an aerosol-forming substrate 23, which is a filling material, with a sheet-like packaging member 25, and the aerosol-forming substrate 23 is exposed at both ends thereof. That is, both ends of the heating element 20 are not covered by a lid member (for example, paper). Note that the packaging member 25 is made of, for example, paper, but the material is not limited as long as it is a sheet-like member.

[0014] The aerosol-forming substrate 23 is composed of a smoking material made from a tobacco plant or a non-tobacco plant as a raw material, which will be described in detail later. The aerosol-forming substrate 23 is formed, for example, by bundling strip-shaped members and is arranged such that its longitudinal direction is along the central axis C1.

[0015] ​​When the aerosol forming substrate 23 is formed of a strip-shaped member, the cross-section perpendicular to the central axis C1 is substantially rectangular, and the ratio of the long side to the short side of the cross-section is, for example, in the range of 1.5:1 to 30:1 which is preferable. Also, the length of the aerosol forming substrate 23 is preferably substantially the same as the length of the heated body 20. As an example of the dimensions of the aerosol forming substrate 23, the long side is 1.5 mm, the short side is 0.3 mm, and the length is 12 mm. Of course, the aerosol forming substrate 23 is not limited to a strip-shaped member. For example, it may be a rod-shaped member

[0016] or a particulate member. Also, the aerosol forming substrate 23 may be a combination of a strip-shaped member and a particulate member, a combination of a strip-shaped member and a rod-shaped member a combination of a rod-shaped member and a particulate member, or a combination of a strip-shaped member, a rod-shaped member, and a particulate member. In these cases, if at least part of the raw materials of each member is different, it is preferable because the aroma and taste are improved. The mouthpiece 40 is a part that constitutes the suction port of the smoking implement cartridge 1 and is formed using, for example, paper

[0017] or the like. Also, the mouthpiece 40 may include a cellulose acetate filter or the like that removes fine particles. Part of the fine particles in the water vapor or aerosol generated by the heated body 20 is filtered by the filter of this mouthpiece 40. The support member 30 includes a first wall portion 31 and a shaft portion 34. The support member 30 is made of, for example, silica cone, and the first wall portion 31 and the shaft portion 34 are integrally formed. Of course, the two may be separately

[0018] formed. When the shaft portion 34 is provided separately from the first wall portion 31, the shaft portion When the shaft portion 34 is provided separately from the first wall portion 31, the shaft portion When the shaft portion 34 is provided separately from the first wall portion 31, the shaft portion As the configuration of 34, for example, a rolled paper or a crumpled polymer sheet can be used. It can be used.

[0019] The first wall portion 31 is formed in a disk shape. The diameter of the first wall portion 31 is substantially equal to the diameter of the aerosol forming base material 23. Here, "substantially equal" means the case where it is equal to the diameter of the aerosol forming base material 23 and the dimension including the thickness of the packaging member 25 in the diameter of the aerosol forming base material 23, that is, it includes the case where it is equal to the diameter of the heated body 20. Note that the diameter of the first wall portion 31 may be smaller than the diameter of the aerosol forming base material 23. The first wall portion 31 is disposed at a position facing the aerosol forming base material 23, and the end surface of the first wall portion 31 is in contact with the end portion (end surface) of the aerosol forming base material 23. The end portion (end surface) of the shaft portion 34 is in contact with the end surface of the mouthpiece 40. By the first wall portion 31 being in contact with the aerosol forming base material 23 and the end portion 34a of the shaft portion 34 being in contact with the mouthpiece 40, the axial movement of the aerosol forming base material 23 is restricted. Figure 2 is a cross-sectional view taken along line II-II of the first wall portion 31 shown in Figure 1. As shown in Figure 2, the first wall portion 31 has a plurality (four in this embodiment) of through holes (first through holes) 32. The four through holes 32 are arranged at equal intervals (90-degree intervals) along the circumferential direction. These four through holes 32 are for the air generated when the aerosol forming base material 23 is heated. It is in contact with the end portion (end surface) of the aerosol forming base material 23.

[0020] The shaft portion 34 is formed in a columnar shape. The shaft portion 34 extends coaxially with the central axis C1 from the first wall portion 31 toward the mouthpiece 40. The end portion 34a of the shaft portion 34 is in contact with the end surface of the mouthpiece 40. It is in contact with the end surface of the mouthpiece 40.

[0021] When the first wall portion 31 contacts the aerosol forming base material 23 and the end portion 34a of the shaft portion 34 contacts the mouthpiece 40, the axial movement of the aerosol forming base material 23 is restricted. It is restricted.

[0022] Figure 2 is a cross-sectional view taken along line II-II of the first wall portion 31 shown in Figure 1. As shown in Figure 2, the first wall portion 31 has a plurality (four in this embodiment) of through holes (first through holes) 32. The four through holes 32 are arranged at equal intervals (90-degree intervals) along the circumferential direction. The first wall portion 31 has a plurality (four in this embodiment) of through holes (first through holes) 32. The four through holes 32 are arranged at equal intervals (90-degree intervals) along the circumferential direction respectively. These four through holes 32 are for the air generated when the aerosol forming base material 23 is heated. The through-hole 32 constitutes a first flow path through which the aerosol flows. It is the perfect size for this purpose.

[0023] Moreover, the space S1 between the shaft portion 34 and the exterior member 10 is a flow path through which the aerosol flows. The space S1 functions as an exchange portion where the aerosols flowing through each through hole 32 exchange with each other, The support member 30 also functions as a cooling portion for cooling the aerosol. The generated aerosol is guided to the mouthpiece 40. At that time, the aerosol is guided to the shaft portion 34. The space S1 between the exterior member 10 and the mouthpiece 40 allows air to flow and is cooled. It is then sucked into the smoker's mouth through the cigarette.

[0024] Here, the thickness of the first wall portion 31 is in the range of about 1 / 3 to 1 / 10 of the length of the shaft portion 34. In this way, the effect of aerosol exchange and cooling through the space S1 can be effectively achieved. This is because the strength of the support member 30 can be ensured while maintaining the same.

[0025] Next, specific examples of the raw material used as the aerosol-forming substrate 23 will be described. The sol-forming substrate 23 is composed of any one or a combination of the following raw materials: will be done.

[0026] The aerosol-forming substrate 23 is made from a tobacco plant or a non-tobacco plant. Examples of tobacco include tobacco leaves, tobacco stems, expanded tobacco, homogenized tobacco, etc. Examples of the plant include plants other than tobacco plants. Preferred parts of non-tobacco plants include , leaves, pulp, seeds, roots (scaly roots, tuberous roots, etc.), stems, tubers, skin (stem bark, bark, etc.), flowers (petals, male Examples include stems, pistils, etc., stems, branches, etc.

[0027] In this specification, the term "plants" refers to a group of plants, such as grasses and trees, in contrast to animals. In addition to organisms that have roots and live in fixed locations, there are also microalgae and seaweeds. This also includes algae, mushrooms, and other fungi.

[0028] The aerosol-forming substrate 23 is, for example, a dried and ground non-tobacco plant. Aerosol formers, microcrystalline cellulose, flavor additives, preservatives, The mixture is mixed with an adhesive or thickener, crushed or classified into powder or granules, or coated with a sheet. After forming the material into a ball shape, it is cut into strips or rods having a specified width and length. can be.

[0029] For example, when the non-tobacco plant part is a leaf, tea can be preferably used. Not only are the plants that produce tea different, but even the same plants can produce different teas depending on how they are processed. Specifically, for example, Japanese tea, black tea, angelica tea, sweet tea, gynostemma tea, aloe tea, Ginkgo leaf tea, oolong tea, turmeric tea, salicylate tea, Eleuthero tea, plantain tea, Kiodoshi tea, persimmon leaf tea, chamomile tea, chamomile tea, Kawara Kemei tea, quince tea, chrysanthemum tea, Gymnema tea, guava tea, wolfberry tea, soft leaf tea, black bean tea, gennoshoko tea, brown rice tea, burdock Tea, comfrey tea, bifu tea, cherry blossom tea, saffron tea, shiitake tea, shiso tea, jasmine tea, Ginger tea, horsetail tea, Japanese parsley tea, Swertia japonica tea, Buckwheat tea, Aralia aralia tea, Dandelion tea, Sweet tea Tea, Houttuynia tea, Eucommia tea, Sword bean tea, Elderberry tea, Ragweed tea, Job's tears tea, Habu tea , loquat leaf tea, pu-erh tea, safflower tea, pine needle tea, mate tea, barley tea, megusurinoki tea, mugwort tea These include eucalyptus tea, monk fruit tea, rooibos tea, and bitter melon tea. You may use the tea leaves after drinking the tea. By using tea leaves or the like, expensive tea can be reused and effectively utilized.

[0030] Furthermore, extracts of non-tobacco plants exemplified above, so-called extracts or processed products can also be used. Examples of the form of the extract include liquid, water candy, powder, granule, solution, etc.

[0031] The aerosol former as a raw material of the aerosol forming base material 23 is glycerin, propylene glycol, sorbitol, triethylene glycol, lactic acid, diacetin (glycerin diacetate), triacetin (glycerin triacetate), triethylene glycol diacetate, triethyl citrate, isopropyl myristate, methyl stearate, dimethyl dodecanedioate, dimethyl tetradecanedioate, etc. Among them, glycerin and propylene glycol are preferred.

[0032] The microcrystalline cellulose as a raw material of the aerosol forming base material 23 is, for example, obtained by partially depolymerizing α-cellulose obtained from fibrous plant pulp with an acid, and is obtained by removing the soluble part from cellulose and appropriately crystallizing the insoluble part. It is .

[0033] The microcrystalline cellulose may remain in powder form or may be dispersed in a solvent such as water to form a suspension. In this case, for dispersion in the solvent, a high-speed stirrer, a high-pressure homogenizer, etc. can be used.

[0034] Furthermore, a flavor additive for adding flavor as a raw material of the aerosol forming base material 23 is preferably used as needed. Examples of the flavor additive include perilla, cocoa, coffee, tea extract, Examples include powders of catechins in tea extracts. As preservatives, those used in foods are preferred, and examples thereof include sorbic acid, potassium sorbate, benzoic acid, sodium benzoate, etc.

[0035] The aerosol-forming substrate 23 may contain menthol and a water-insoluble crosslinked polymer (preferably poly vinylpyrrolidone). By combining menthol with a water-insoluble crosslinked polymer, the sublimation of menthol can be effectively suppressed, and the flavor of menthol can be maintained for a long time. Here, menthol is not limited to those obtained from natural products and may be a synthetic product. Also, those containing peppermint, mint, peppermint oil, and other menthol may be used.

[0036] The flavor additive is provided in the mouthpiece 40, for example, by impregnating the wall of the mouthpiece 40. The mode in which the flavor additive is provided in the mouthpiece 40 is not limited to such a mode. For example, a capsule containing the flavor additive may be embedded in the wall of the mouthpiece 40 so that the flavor additive is provided in the mouthpiece 40. Or, a capsule 60 containing the flavor additive may be disposed between the mouthpiece 40 and the heated body 20 (see FIGS. 19 and 20). When the flavor additive is enclosed in the capsule 60, the smoker can break the capsule 60 by pressing it with a finger and volatilize the aromatic component of the flavor additive at a desired timing.

[0037] Furthermore, when the flavor additive is enclosed in a microcapsule, for example, ​​​​​​​​​The microcapsules present may be provided on the object to be heated 20.

[0038] As the binder or thickener as a raw material of the aerosol forming base material 23, gum arabic, guar gum, gum tragacanth, rubbers such as gum arabic and locust bean gum, for example, hydroxy propyl cellulose, carboxymethyl cellulose, hydroxyethyl cellulose, methyl cellulose and cellulose binders such as ethyl cellulose, for example, starch, organic acids such as alginic acid, sodium alginate, sodium carboxymethyl cellulose, polysaccharides such as conjugate base salts of organic acids such as carrageenan, agar and pectin, and combinations thereof can be mentioned.

[0039] (Method for producing aerosol forming base material) Regarding the method for producing the aerosol forming base material 23 described above, it will be described separately for each step. The aerosol forming base material 23 manufacturing process includes a drying and pulverizing process for drying and pulverizing the tobacco plant or non-tobacco plant as the main raw material, weighing, etc., a preparation process for pretreatment, weighing, etc. of other raw materials, a mixing process for mixing the raw materials to form a composition, and a filler forming process for forming the composition. has. Yes.

[0040] In the drying and pulverizing process, in order to make the tobacco plant or non-tobacco plant use part (for example, leaves, seeds, dried fruits, stems, barks, roots, etc.) as the main raw material into a composition, it is processed into a predetermined pulverized product. At this time, it is preferable to adjust the water content to a convenient amount for absorbing or supporting the aerosol former, water and other components to be added later. In drying, the temperature is preferably 60 ° C or higher and 80 ° C or lower. By setting it within this range, while avoiding the dissipation of the required flavor components, the required It is easy to reach the desired moisture content. Further, in the drying and pulverizing process, a sieving process for sieving the pulverized material can be provided, and it can be adjusted to a desired particle size and put into the mixing process.

[0041] In the preparation process, the raw materials necessary for producing the aerosol-forming substrate 23 can be prepared. The aforementioned microcrystalline cellulose is weighed in the preparation process and put into the mixing process.

[0042] In the mixing process, an ordinary mixer can be used. For example, a form in which the raw materials in the mixing tank are mixed while applying a shearing force with stirring blades is preferably used.

[0043] In the filler forming process, the composition in which various raw materials are mixed is formed into a thin sheet and then cut to form the aerosol-forming substrate 23 in the shape of a strip or a rod. In this embodiment, in order to form a thin sheet, a three-roll mill is prepared. When using a three-roll mill, by compression due to being pushed into the narrow roll gap and shearing due to the roll speed difference, kneading, dispersion, etc. can be performed while it is possible to form a sheet with a desired thickness using a doctor blade, which is preferable. It can also be produced using a press roller or a press machine.

[0044] Also, in order to obtain a powdery or granular aerosol-forming substrate 23, it is preferable to appropriately pulverize or classify the above composition. The average particle diameter of the powdery or granular aerosol-forming substrate 23 is preferably, for example, 0.1 to 3.0 mm, and more preferably 0.5 mm or less. This average particle diameter is obtained, for example, by the sieving method described in JIS K 0069:1992. That is, this average particle diameter is determined by a plurality of sieves. ​ Regarding the test results, the mass is integrated starting from the larger eye opening, and it refers to the diameter corresponding to 50% of that mass. Also, in the integrated value 50 in the particle size distribution obtained by the laser diffraction / scattering method %, the particle diameter can be used as the average particle diameter.

[0045] In the filler forming step, other means such as passing the composition through an orifice under pressure for forming may be used. Also, in the filler forming step, if necessary, flavor additives such as non-tobacco plants, aerosol formers, binders or thickeners, and preservatives may be further added, or water or the like may be added.

[0046] The thickness of the sheet obtained in the filler forming step is preferably in the range of 0.1 mm to 1.0 mm, more preferably in the range of 0.1 mm to 0.5 mm. The obtained sheet is cut to a predetermined width by a cutter, such as a rotary cutter with a rotating blade method.

[0047] Here, when imparting adhesiveness to the surface of the aerosol forming substrate 23, there is no particular limitation as long as it is a means capable of imparting adhesiveness, but it is sufficient to adhere at least a part of the aforementioned binder. By imparting adhesiveness, when combining the strip-shaped or rod-shaped aerosol forming substrate 23 with the powdery or granular aerosol forming substrate 23, the powdery or granular aerosol forming substrate 23 can be stably held on the surface of the strip-shaped or rod-shaped aerosol forming substrate 23.

[0048] (Method of using a cartridge for a smoking device) The method of using the cartridge 1 for a smoking device will be described. FIG. 3 is a cross-sectional view of the state where the cartridge 1 for a smoking device is inserted into the smoking device 70. The cartridge 1 for a smoking device is a heated smoking It is mounted on and used with the smoking device 70. The smoking device 70 has an insertion part 72 for inserting the cartridge 1 for smoking device. A needle-shaped or blade-shaped heating part 75 is provided in the insertion part 72. When the heating part 75 generates heat with the cartridge 1 for smoking device inserted into the insertion part 72, an aerosol is generated from the aerosol-forming substrate 23. In this state, when the smoker holds the mouthpiece 40 and sucks, the aerosol flows through the space S1 and the mouthpiece 40 in sequence and flows into the smoker's mouth.

[0049] According to the cartridge 1 for smoking device according to the first embodiment configured as described above, the following effects can be achieved.

[0050] Since the support member 30 is composed of the first wall part 31 and the shaft part 34, the configuration of the support member 30 can be simplified compared with the prior art, and the manufacturing cost of the support member 30 can be reduced.

[0051] Also, since the support member 30 is interposed between the aerosol-forming substrate 23 and the mouthpiece 40 and restricts the axial movement of the aerosol-forming substrate 23, when the cartridge 1 for smoking device is inserted into the smoking device 70, the position of the aerosol-forming substrate 23 is prevented from shifting. Therefore, the heating of the aerosol-forming substrate 23 by the heating part 75 is stabilized, and a good aerosol is generated.

[0052] Also, since the outer member 10 is supported by the outer peripheral surface of the first wall part 31, radial deformation when the cartridge 1 for smoking device is grasped by fingers can be prevented. Also, by providing the support member 30, axial deformation when the cartridge 1 for smoking device is inserted into the smoking device 70 can also be prevented.

[0053] ​​​​​​​​​​ Moreover, the aerosol passing through the four through-holes 32 is cooled while being exchanged by the space S1 so that the aroma and taste of the aerosol are improved.

[0054] Next, a modification of the smoking implement cartridge 1 according to the first embodiment will be described.

[0055] (Modification 1-1) FIG. 4 is a cross-sectional view of the first wall portion 31-1 according to Modification 1-1. Note that FIG. 4 is a cross-sectional view taken at the same position as the line I-I in FIG. 1 -II. In the first wall portion 31-1 shown in FIG. 4, a plurality (for example, four) of notches (first notches) 32-1 are provided at the outer peripheral edge. These four notches 32-1 are arranged at intervals of 90 degrees in the circumferential direction and constitute the first flow path through which the aerosol passes. Even with such a configuration, the same operational effects as those of the above-described first embodiment are achieved. Note that the number of notches 32-1 is not limited. For example, one large notch 32-1 may be provided. Alternatively, the plurality of notches 32-1 may have different sizes from each other.

[0056] (Modification 1-2) FIG. 5 is a cross-sectional view of the first wall portion 31-2 according to Modification 1-2. Note that FIG. 5 is a cross-sectional view taken at the same position as the line I-I in FIG. 1 -II. In the first wall portion 31-2 shown in FIG. 5, the outer shape viewed from the axial direction is formed in a regular hexagon. Between the outer peripheral edge of the first wall portion 31-2 and the exterior member 10 wound so as to contact each vertex of the first wall portion 31-2, six flow paths 32-2 are formed. These six flow paths 32-2 constitute the first flow path through which the aerosol passes. Even with such a configuration, the same operational effects as those of the above-described first embodiment are achieved. Note that the outer shape of the first wall portion 31-2 may be a polygon other than a regular hexagon.

[0057] ​​​ (Second Embodiment) Next, a cartridge for a smoking device according to the second embodiment of the present invention will be described. The second embodiment cartridge 2 for a smoking device has a basically the same configuration as the cartridge 1 for a smoking device according to the first embodiment, but the configuration of the support member is different. Therefore, in the following description, the focus will be on this difference, and descriptions overlapping with the first embodiment will be omitted.

[0058] FIG. 6 is a cross-sectional view of a cartridge 2 for a smoking device according to the second embodiment of the present invention. As shown in FIG. 6, the cartridge 2 for a smoking device according to the second embodiment includes a heated body 20, a support member 1 30, and a mouthpiece 40.

[0059] The support member 130 includes a first wall portion 131, a shaft portion 134, and a second wall portion 137. The support member 130 is made of, for example, silicone, and the first wall portion 131, the shaft portion 134, and the second wall portion 137 are integrally formed. Of course, the three may be formed separately. In addition, when the shaft portion 134 is provided separately from the first wall portion 131 and the second wall portion 137, as the configuration of the shaft portion 1 34, for example, a rolled paper or a crumpled polymer sheet can be used.

[0060] The first wall portion 131 is formed in a disk shape. The diameter of the first wall portion 131 is substantially equal to the diameter of the aerosol forming base material 23. Of course, the diameter of the first wall portion 131 may be smaller than the diameter of the aerosol forming base material 2 3. The first wall portion 131 is disposed at a position facing the aerosol forming base material 23, and the end face of the first wall portion 131 is in contact with the end portion (end face) of the aerosol forming base material 23.

[0061] The second wall portion 137 is formed in a disc shape. The diameter of the second wall portion 137 is the same as that of the first wall portion 1 31. Of course, the diameter of the second wall portion 137 may be smaller than that of the first wall portion 131 . The second wall portion 137 is disposed at a position facing the mouthpiece 40, and the end face of the second wall portion 137 is in contact with the end face of the mouthpiece 40

[0062] The shaft portion 134 is formed in a columnar shape. The shaft portion 134 extends along the same axis as the central axis C1 and connects the first wall portion 131 and the second wall portion 137

[0063] When the first wall portion 131 contacts the aerosol-forming substrate 23 and the second wall portion 137 contacts the mouthpiece 40, the axial movement of the aerosol-forming substrate 23 is restricted

[0064] FIG. 7 is a cross-sectional view taken along line VII-VII of the first wall portion 131 shown in FIG. 6. As shown in FIG. 7 , the first wall portion 131 has a plurality (four in this embodiment) of through holes (first through holes) 132 . The four through holes 132 are arranged at equal intervals (90-degree intervals) along the circumferential direction . These four through holes 132 constitute a first flow path through which the aerosol generated by heating the aerosol-forming substrate 23 flows. Note that the diameter of the through hole 132 is of a size suitable for the flow of the aerosol

[0065] FIG. 8 is a cross-sectional view taken along line VIII-VIII of the second wall portion 137 shown in FIG. 6. As shown in FIG. 8 , the second wall portion 137 has a plurality (six in this embodiment) of through holes (second through holes) 13 8. The six through holes 138 are arranged at equal intervals (60-degree intervals) along the circumferential direction . These six through holes 138 are such that when the aerosol-forming substrate 23 is heated​​ constitutes a second flow path through which the aerosol generated therein flows. The diameter of the through hole 138 is such that it is suitable for the aerosol to flow through. Here, in the present embodiment, the through hole 132 and the through hole 138 have the same diameter, but the number of each is different.

[0066] Also, the space S1 between the shaft portion 134 and the outer member 10 is a flow path through which the aerosol flows and, similar to the first embodiment, functions as an alternating portion where the aerosol flowing through each through hole 132 alternates and also functions as a cooling portion for cooling the aerosol.

[0067] According to the cigarette cartridge 2 according to the second embodiment configured as described above, the following effects can be achieved.

[0068] Since the support member 130 is composed of the first wall portion 131, the shaft portion 134, and the second wall portion 137 , the configuration of the support member 130 can be simplified compared to the conventional one, and the manufacturing cost of the support member 130 can be reduced.

[0069] Also, since the support member 130 is interposed between the aerosol forming substrate 23 and the mouthpiece 40 and restricts the axial movement of the aerosol forming substrate 23, when the cigarette cartridge 2 is inserted into the smoking device 70, the position of the aerosol forming substrate 23 is prevented from shifting . Therefore, the heating of the aerosol forming substrate 23 by the heating portion 75 is stabilized, and a good aerosol is generated.

[0070] Also, since the outer member 1 0 is supported by the outer peripheral surface of the first wall portion 131 and the outer peripheral surface of the second wall portion 137, deformation in the radial direction when grasping the cigarette cartridge 2 with fingers is prevented Furthermore, by providing the support member 130, the cartridge 2 for the smoking article can be It is also possible to prevent deformation in the axial direction when inserting into 70.

[0071] In addition, the aerosol that has passed through the four through holes 132 is cooled while being exchanged by the space S1. Then, the air is inhaled from the mouthpiece 40 through the six through holes 138. The aroma and taste of the sol are improved. Moreover, the number of through holes 138 in the second wall portion 137 is Since the number of the through holes 132 in the wall portion 131 is larger than that of the through holes 132 in the wall portion 131, the aerosol can be inhaled from the mouthpiece 40. This reduces resistance when smoking, resulting in a more comfortable smoking experience for the smoker.

[0072] Next, a modified example of the cartridge 2 for a smoking article according to the second embodiment will be described.

[0073] (Variation 2-1) FIG. 9 is a cross-sectional view of a first wall portion 131-1 according to the modified example 2-1, and FIG. 9 is a cross-sectional view of the second wall portion 137-1 taken along the same line as line VII-VII in FIG. 10 is a cross-sectional view taken along the same line as in FIG. 6. FIG.

[0074] As shown in FIG. 9, the first wall portion 131-1 according to the modification 2-1 has four notches (first These four notches 132-1 are The first flow path is formed through the first electrode.

[0075] On the other hand, as shown in FIG. 10, the second wall portion 137-1 according to the modification 2-1 has six notches. These six notches 138-1 are aerosol The notches 132-1 and 138-1 have the same size. It is so.

[0076] Thus, even when the first wall portion 131-1 and the second wall portion 137-1 each have notches 132-1 and 138-1 instead of through holes, the same operational effects as those of the second embodiment can be achieved.

[0077] (Modification 2-2) FIG. 11 is a cross-sectional view of the second wall portion 137-2 according to Modification 2-2. Note that FIG. 11 is a cross-sectional view taken at the same position as the VIII-VIII line in FIG. 6. In Modification 2-2, since the first wall portion has the same configuration as the first wall portion 131 shown in FIG. 7, the description thereof will be omitted.

[0078] As shown in FIG. 11, the second wall portion 137-2 according to Modification 2-2 has two long holes (second through holes) 138-2. These two long holes 138-2 form the second flow path through which the aerosol flows. And the total opening area of the two long holes 138-2 is larger than the total opening area of the four through holes 132 (see FIG. 7). That is, the size of the long holes 138-2 of the second wall portion 137-2 is larger than the size of the through holes 132 of the first wall portion 131. Even in this Modification 2-2, the same operational effects as those of the second embodiment can be achieved.

[0079] (Modification 2-3) FIG. 12 is a cross-sectional view of the second wall portion 137-3 according to Modification 2-3. Note that FIG. 12 is a cross-sectional view taken at the same position as the VIII-VIII line in FIG. 6. In Modification 2-3, since the first wall portion has the same configuration as the first wall portion 131-1 shown in FIG. 9, the description thereof will be omitted .

[0080] ​​​​​​As shown in FIG. 12, the second wall portion 137-2 according to Modification 2-3 has four notches (the second notches) 138-3. That is, in Modification 2-3, the number of notches is the same in the first wall portion 131-1 and the second wall portion 137-2. These four notches 138-3 constitute the second flow path through which the aerosol flows. And the size of each notch 138-3 is larger than that of each notch 132-1. Even in this Modification 2-3, the same operating effects as those of the second embodiment can be achieved.

[0081] (Modification 2-4) FIG. 13 is a cross-sectional view of the smoking implement cartridge 2 according to Modification 2-4. As shown in FIG. 13, the support member 130 in Modification 2-4 has a third wall portion 135 between the first wall portion 131 and the second wall portion 137. The third wall portion 135 is formed in a disk shape. The diameter of the third wall portion 135 is equal to or less than the diameters of the first wall portion 131 and the second wall portion 137. And in Modification 2-4, the space between the first wall portion 131 and the second wall portion 137 is partitioned by the third wall portion 1 35. Therefore, a space S1-1 is formed between the first wall portion 131 and the third wall portion 135, and a space S1-2 is formed between the second wall portion 137 and the third wall portion 135. Note that the axial position of the third wall portion 135 may be anywhere between the first wall portion 131 and the second wall portion 137, but in this Modification 204, the third wall portion 135 is disposed at a substantially intermediate position between the first wall portion 131 and the second wall portion 137.

[0082] FIG. 14 is a cross-sectional view taken along line XIV-XIV of the third wall portion 135 shown in FIG. 13. As shown in FIG. 14, the third wall portion 135 has a plurality (for example, five) of through holes 136. The five through The holes 136 are each arranged at equal intervals (72-degree intervals) along the circumferential direction. These five through-holes 136 form a third flow path through which the aerosol generated by heating the aerosol-forming substrate 23 flows. In this modification, the through-hole 132, the through-hole 136, and the through- hole 138 have the same diameter, but the number of each is different. Note that the number of the through-holes 136 can be arbitrary.

[0083] According to this modification 2-4, the same operational effects as those of the second embodiment can be achieved. Further, since the third wall portion 135 is provided, the strength of the support member 130 is improved, and deformation of the smoking implement cartridge 2 in the radial direction and the axial direction can be further prevented.

[0084] (Modification 2-5) FIG. 15 is a cross-sectional view of the smoking implement cartridge 2 according to Modification 2-5. As shown in FIG. 15, in Modification 2-5, the support member 130 has two shaft portions 134-1 provided between the first wall portion 131 and the second wall portion 137. According to this configuration, since the rigidity of the support member 130 is increased, when the smoking implement cartridge 2 is inserted into the smoking implement 70, deformation of the smoking implement cartridge 2 can be further prevented. Note that the number of the shaft portions 134-1 may be three or more.

[0085] (Third Embodiment) Next, the smoking implement cartridge according to the third embodiment will be described. The smoking implement cartridge 3 according to the third embodiment has basically the same configuration as the smoking implement cartridge 2 according to the second embodiment, but mainly differs in the configuration of the support member. Therefore, in the following description, the focus will be on this difference, and the description overlapping with the second embodiment will be omitted.

[0086] FIG. 16 is a cross-sectional view of the cartridge 3 for a smoking device according to the third embodiment of the present invention. FIG. 16 As shown in, the cartridge 3 for a smoking device according to the third embodiment includes a heated body 20, a support member 230, and a mouthpiece 40.

[0087] The support member 230 includes a first wall portion 231, a shaft portion 234, and a second wall portion 237. . The first wall portion 231 is the same as the first wall portion 131 of the second embodiment, and the shaft portion 234 is the second same as the shaft portion 134 of the second embodiment. Therefore, the structural difference between the support member 230 according to the third embodiment and the support member 130 according to the second embodiment is the diameter of the second wall portion. Specifically , in the second embodiment, the diameter of the second wall portion 137 is the same as the diameter of the first wall portion 131, but in the third embodiment, the diameter of the second wall portion 237 is smaller than the diameter of the first wall portion 231. . Specifically, the diameter of the second wall portion 237 is larger than the diameter of the shaft portion 234 and is about 1 / 2 to 2 / 3 of the diameter of the first wall portion 231.

[0088] FIG. 17 is a cross-sectional view taken along line XVII-XVII of the second wall portion 237 shown in FIG. 16. As shown in FIG. 17 , the second wall portion 237 has a plurality (six in this embodiment) of through holes (second through holes ) 238. The six through holes 238 are arranged at equal intervals (60-degree intervals) along the circumferential direction. These six through holes 238 constitute a second flow path through which the aerosol generated by heating the aerosol-forming substrate 23 flows. Further, an annular space S2 is formed between the outer peripheral edge of the second wall portion 23 7 and the exterior member 10, and the aerosol can pass through this space S2.

[0089] ​​​According to the cigarette smoking implement cartridge 3 according to the third embodiment configured as described above, the following effects can be achieved.

[0090] Since the support member 230 is composed of the first wall portion 231, the shaft portion 234, and the second wall portion 237, compared with the prior art, the configuration of the support member 230 can be simplified, and the manufacturing cost of the support member 230 can be reduced.

[0091] In addition, since the support member 230 is interposed between the aerosol forming substrate 23 and the mouthpiece 40 and restricts the axial movement of the aerosol forming substrate 23, when the cigarette smoking implement cartridge 3 is inserted into the cigarette smoking implement 70, the position of the aerosol forming substrate 23 is prevented from shifting. Therefore, the heating of the aerosol forming substrate 23 by the heating portion 75 is stabilized, and a good aerosol is generated.

[0092] In addition, the aerosol passing through the four through holes 232 is exchanged and cooled by the space S1, and then inhaled from the mouthpiece 40 through the six through holes 238. Therefore, the aroma and taste of the aerosol are improved. Further, in the third embodiment, the aerosol is guided to the mouthpiece 40 through the space S2. Thereby, the suction resistance of the aerosol is reduced, and the suction feeling is good. is good.

[0093] Next, a modified example of the cigarette smoking implement cartridge 3 according to the third embodiment will be described.

[0094] (Modified Example 3-1) FIG. 18 is a cross-sectional view of the cigarette smoking implement cartridge 3 according to the modified example 3-1. As shown in FIG. 18, the cigarette smoking implement cartridge 3 according to the modified example 3-1 includes a first ​​​The diameters of the first wall portion 231 and the second wall portion 237 are the same, and both are smaller than the diameter of the exterior member 10. Therefore, an annular space S3 is also formed between the outer peripheral edge of the first wall portion 231 and the exterior member 10. It is configured in such a way.

[0095] According to this configuration, the aerosol flows through the spaces S3, S1, and S2 and is inhaled from the mouthpiece 40. Since the suction resistance can be suppressed by these spaces S1 to S3, the suction feeling is good. Also, since both the first wall portion 231 and the second wall portion 237 have a small diameter, the weight of the support member 230 can be reduced. Also in this Modification 3-1, the diameter of the second wall portion 237 may be the same as or smaller than the diameter of the first wall portion 231.

[0096] (Modification 3-2) FIG. 19 is a cross-sectional view of the smoking implement cartridge 3 according to Modification 3-2. As shown in FIG. 19, the smoking implement cartridge 3 according to Modification 3-2 has a space S4 formed between the support member 230 and the mouthpiece 4 0, and the capsule 60 is disposed in this space S4. The capsule 60 is sandwiched between the second wall portion 237 and the mouthpiece 40 and is fixed in position. This capsule 60 changes the aroma and taste of the aerosol and can use various flavor additives described above.

[0097] According to this Modification 3-2, since the aerosol is flavored by the capsule 60, the aroma and taste can be improved. Also, by crushing the capsule 60 by hand, a deeper taste can be realized.

[0098] (Modification 3-3) FIG. 20 is a cross-sectional view of the smoking implement cartridge 3 according to Modification 3-3. As shown in FIG. 20, in the smoking implement cartridge 3 according to Modification 3-3, a space S5 is formed between the support member 230 and the aerosol-forming base material 23, and the capsule 60 is disposed in this space S5. Therefore, the capsule 60 is sandwiched between the first wall portion 231 and the aerosol-forming base material 23 and is fixed in position.

[0099] According to this Modification 3-3, as in Modification 3-2, since the aerosol is flavored by the capsule 60, the aroma and taste can be improved. Further, by crushing the capsule 60 by hand, a deeper taste can be achieved.

[0100] Note that the capsule 60 can also be provided between the first wall portion 231 and the second wall portion 237. In this case, a plurality of capsules 60 smaller than the capsule 60 of Modification 3-3 may be provided in the space S1. Further, when a plurality of capsules 60 are provided, if the flavor additives of the respective capsules 60 are made different, the aroma and taste will be further improved.

[0101] (Modification 3-4) FIG. 21 is a cross-sectional view of the smoking implement cartridge 3 according to Modification 3-4. As shown in FIG. 21, in Modification 3-4, instead of the second wall portion 237 of the support member 230, an annular rim portion 255 and three spoke portions 250 that extend radially from the end portion 134a of the shaft portion 134 and connect the end portion 134a and the rim portion 25 5 are provided. Even with this configuration, the support member 230 can be simplified. Moreover, it can have the same function as the second wall portion 237. Also, there is an advantage that the weight can be reduced as compared with the case of using the second wall portion 237. Note that this rim ​​​​​​The flange portion 255 can be omitted.

[0102] Note that the present invention is not limited to the above-described embodiments, and various modifications are possible without departing from the gist of the present invention. All technical matters included in the technical idea described in the claims are the subject of the present invention. The above embodiments show preferred examples, but those skilled in the art can realize various alternative examples, modified examples, deformed examples, or improved examples from the content disclosed in this specification, and these are included in the technical scope described in the appended claims. For example, the first wall portion may be disk-shaped and the second wall portion may be polygonal (see FIG. 5), or vice versa. Also, the first wall portion and / or the second wall portion may be non-polygonal and have an indefinite shape. In that case, the length of the largest portion of the second wall portion is equal to or less than the length of the largest portion of the first wall portion. Also, a configuration in which a through-hole is provided in the first wall portion and the second wall portion is a notch, or vice versa, may be used. Thus, any configuration disclosed in this specification can be applied to the first wall portion and the second wall portion.

[0103]

[0104]

[0105]

[0105] etc. can be mentioned. Those with these shapes can be used by mixing one or more of them. It is possible.

[0106] In addition, the shape of the aerosol-forming substrate 23 may be in the form of, for example, strands, porous, etc. To make it porous, for example, it can be formed by piercing a dried sheet with a plurality of needles several times (other methods are also possible). It can be formed by, for example, piercing a dried sheet with a plurality of needles several times (other methods are also acceptable).

[0107] The shape of the powdery or granular aerosol-forming substrate 23 may be in the form of, for example, granules, pellets, etc. It may be in such a form.

[0108] The powdery or granular aerosol-forming substrate 23 may be solidified into a block shape, or slightly hydrated or oil may be added to make it into a paste shape.

Explanation of symbols

[0109] 1, 2, 3 Cartridge for smoking device 10 Exterior member 20 Heated body 23 Aerosol-forming substrate 25 Packaging member 30, 130, 230 Support member 31, 31-1, 31-2, 131, 231 First wall portion 32, 132 Through hole (first through hole, first flow path) 34, 134, 134-1, 234 Shaft portion 40 Mouthpiece 60 Capsule 135 Third wall portion 136 Through hole (third flow path) 132-1 Notch (first notch, first flow path) 137, 137-1, 137-2, 137-3, 237 Second wall portion 138, 238 Through hole (second through hole, second flow path) Notches 138-1 and 138-3 (second notch, second flow path) Elongated hole 138-2 (second through hole, second flow path)

Claims

Claim 1 An aerosol-forming substrate made from a tobacco or non-tobacco plant, a mouthpiece disposed coaxially with the aerosol-forming substrate, and a support member disposed between the aerosol-forming substrate and the mouthpiece, the smoking article cartridge comprising: wherein the support member is formed in a first disk shape, is disposed at a position facing the aerosol-forming substrate, and has a first wall portion having a first flow path through which an aerosol generated by heating the aerosol-forming substrate flows; is formed in a second disk shape, is provided so as to face the mouthpiece, and includes a second wall portion having a second flow path through which the aerosol flows; the diameter of the first wall portion is substantially equal to the diameter of the aerosol-forming substrate; the diameter of the second wall portion is equal to the diameter of the first wall portion; the first flow path is a first through hole penetrating the first wall portion; the second flow path is a second through hole penetrating the second wall portion; and the size of the second through hole is larger than the size of the first through hole. A smoking article cartridge characterized by this.

Citation Information

Patent Citations

  • Incense core support and incense core having same

    CN110680018A

  • Smoking articles for use with internal heating elements

    JP2015519915A

  • Cigarette cartridge and supporting element

    JP2020124222A