Smoking accessories cartridges

The cartridge design simplifies manufacturing by using a skeletal member with regions of varying properties and susceptor materials to improve handling and reduce complexity, addressing the inefficiencies in positioning the susceptor within the heated substrate.

JP2026083191APending Publication Date: 2026-05-19FUTURE TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
FUTURE TECHNOLOGY CO LTD
Filing Date
2026-02-27
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The manufacturing process of aerosol-generating cartridges for smoking devices is complicated due to the need to position a susceptor along the radial central axis within a heated substrate, which involves cutting a relatively hard susceptor material while avoiding crushing a soft substrate, leading to potential efficiency decreases.

Method used

A cartridge design with a cylindrical skeletal member partitioning the internal space, featuring regions with different properties such as air permeability and heat generation, using a susceptor material that generates heat under an induced magnetic field, and comprising sheets with varying susceptor materials and paper layers.

Benefits of technology

This design simplifies the manufacturing process, enhancing efficiency by allowing easier handling and positioning of susceptor materials, thereby reducing manufacturing complexity and potential damage to the substrate.

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Abstract

This helps to suppress the decline in manufacturing efficiency of cartridges for smoking accessories. [Solution] The smoking device cartridge 10 according to this disclosure extends from one side to the other in the longitudinal direction. A cylindrical frame material 11 that partitions the internal space 16 of the building, and the above one side of the internal space 16 of the frame material 11 A heating substrate 12 is placed in the region, and the skeletal material 11 is heated by a predetermined induced magnetic field. It has a heating element 22 containing a heat-generating susceptor material. The smoking device cartridge 10 is a smoking device When inserted into the induced magnetic field generated by the device, the heating element 22 of the skeletal material 11 generates heat, heating the substrate 12. Heat it up.
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Description

Technical Field

[0004] , , , , , ,

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

Background Art

[0002] Patent Document 1 describes an aerosol-generating article for generating an aerosol that can be inhaled upon heating. The aerosol-generating article includes four elements arranged coaxially: an aerosol-forming substrate, a support element, an aerosol-cooling element, and a mouthpiece. Each of these four elements is a substantially cylindrical element, and each has a substantially the same diameter. These four elements are arranged continuously and surrounded by an outer wrapper to form a cylindrical rod. An elongated two-layer susceptor is located within the aerosol-forming substrate and in contact with the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. substance-containing aerosol-generating article. The aerosol-generating article includes four elements arranged coaxially: an aerosol-forming substrate, a support element, an aerosol-cooling element, and a mouthpiece. Each of these four elements is a substantially cylindrical element, and each has a substantially the same diameter. These four elements are arranged continuously and surrounded by an outer wrapper to form a cylindrical rod. An elongated two-layer susceptor is located within the aerosol-forming substrate and in contact with the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. arranged four elements: an aerosol-forming substrate, a support element, an aerosol-cooling element, and a mouthpiece. Each of these four elements is a substantially cylindrical element, and each has a substantially the same diameter. These four elements are arranged continuously and surrounded by an outer wrapper to form a cylindrical rod. An elongated two-layer susceptor is located within the aerosol-forming substrate and in contact with the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. Each of these four elements is a substantially cylindrical element, and each has a substantially the same diameter. These four elements are arranged continuously and surrounded by an outer wrapper to form a cylindrical rod. An elongated two-layer susceptor is located within the aerosol-forming substrate and in contact with the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. These four elements are arranged continuously and surrounded by an outer wrapper to form a cylindrical rod. An elongated two-layer susceptor is located within the aerosol-forming substrate and in contact with the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. An elongated two-layer susceptor is located within the aerosol-forming substrate and in contact with the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. substrate and in contact with the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. The susceptor is formed from a first susceptor material that is adhesively bonded to a second susceptor material. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. The first susceptor material is in the form of strips of stainless steel, and the second susceptor material is a patch of nickel. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. The susceptor has a length substantially equal to the length of the aerosol-forming substrate and is located along the central axis in the radial direction of the radius of the aerosol-forming substrate. axis in the radial direction of the radius of the aerosol-forming substrate.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] In the aerosol-generating article (cartridge for a smoking device) described in Patent Document 1, the susceptor Since it is positioned along the radial central axis within the aerosol-forming substrate (heated substrate), smoking device During the manufacturing of the cartridge, the susceptor is held in place so as not to shift from the center of the substrate to be heated. It is necessary to do so. Also, the substrate to be heated is a relatively soft material, while the susceptor contains Since the susceptor material is a metal such as stainless steel or nickel, the center of the long heating substrate When manufacturing by cutting a long susceptor, positioned in a specific location, to the desired length, relatively flexible... It is necessary to cut the relatively hard susceptor while ensuring that the soft edges of the heating substrate are not crushed. Yes. Thus, in the case of the smoking device cartridge described in Patent Document 1, the manufacturing process is complicated. This could potentially lead to a decrease in manufacturing efficiency.

[0005] Therefore, this disclosure provides a cartridge for smoking devices that can suppress the decrease in manufacturing efficiency. This is the purpose. [Means for solving the problem]

[0006] To solve the above problems, the cartridge for a smoking device according to the first aspect of the present invention has a longitudinal direction A cylindrical skeletal member that partitions the internal space extending from one side to the other, and the internal space of the skeletal member The system comprises a heating substrate arranged in the region on one side, and the skeletal material is subjected to a predetermined induced magnetic field. It has a heat-generating section containing a susceptor material that generates heat.

[0007] A second aspect of the present invention is a cartridge for a smoking device according to the first aspect, wherein the skeletal material It has a first region and a second region which are different regions in the longitudinal direction, and the first region The first and second regions have different properties from each other, and the heating element is located in the first and second regions. It is provided in at least one of the regions.

[0008] The third aspect of the present invention is the cartridge for a smoking device according to the second aspect, wherein the skeleton material the first region and the second region of the are different from each other in air permeability.

[0009] The fourth aspect of the present invention is the cartridge for a smoking device according to the second aspect or the third aspect, wherein the first region and the second region of the skeleton material are different from each other in heat generation property toward the outer diameter side, the first region is arranged at a position that overlaps at least in the radial direction with respect to the heated base material and has the heat generating portion, and the second region has a lower heat generation property toward the outer diameter side than the first region.

[0010] The fifth aspect of the present invention is the cartridge for a smoking device according to any one of the second aspect to the fourth aspect, wherein the heat generating portion includes a first heat generating portion provided in the first region and containing a first susceptor material, and a second heat generating portion provided in the second region and containing a second susceptor material, and the Curie temperature of the second susceptor material is lower than the Curie temperature of the first susceptor material.

[0011] <00…The sixth aspect of the present invention is the cartridge for a smoking device according to any one of the second aspect to the fifth aspect, wherein the skeleton material is formed into a cylindrical shape by winding a plurality of sheets including a first sheet forming the first region and a second sheet forming the second region, and in an overlap portion where the plurality of sheets overlap each other, the sheet on one side is located on the outer diameter side more than the sheet on the other side. [[ID=3…

[0012] The seventh aspect of the present invention is the cartridge for a smoking device according to the sixth aspect, wherein the skeleton material is formed into a cylindrical shape by spirally winding the plurality of sheets in a direction inclined with respect to the longitudinal direction. ​​​​

[0013] The eighth aspect of the present invention is the cartridge for a smoking device according to any one of the first to seventh aspects above, wherein the heating part of the skeleton material is formed in a layer, the inner diameter side layer contains the susceptor material, and the outer diameter side layer is paper.

[0014] The ninth aspect of the present invention is the cartridge for a smoking device according to any one of the first to eighth aspects above, which is provided with a paper packaging material covering the outer diameter side of the skeleton material.

Advantages of the Invention

[0015] According to the present disclosure, it is possible to suppress a decrease in the manufacturing efficiency of the cartridge for a smoking device.

Brief Description of the Drawings

[0016] [Figure 1] It is a diagram showing an example of a usage mode of the cartridge for a smoking device according to the present disclosure. [Figure 2] It is an external view of the cartridge for a smoking device according to the first embodiment of the present invention. [Figure 3] It is a cross-sectional view taken along the arrow III-III in FIG. 2. [Figure 4] It is a cross-sectional view of the cartridge for a smoking device according to the second embodiment of the present invention. [Figure 5] It is a cross-sectional view of the cartridge for a smoking device according to the third embodiment of the present invention. [Figure 6] It is an external view of the cartridge for a smoking device according to the fourth embodiment of the present invention. [Figure 7] It is a cross-sectional view of the cartridge for a smoking device according to the fifth embodiment of the present invention.

Modes for Carrying Out the Invention

[0017] Hereinafter, an embodiment of the present invention will be described based on the drawings. In the description of the drawings, the same The same symbols are used for the elements, and redundant explanations are omitted. Also, the dimensional ratios in the drawings are merely... However, this is just one example and not the only one. Furthermore, for the sake of explanation, some parts may be exaggerated. In some cases, this is the case. Also, in each figure, the left side is considered one side in the longitudinal direction, and the right side is considered the other side in the longitudinal direction. I will explain from the other side's perspective.

[0018] Furthermore, in this specification, "smoking" generally refers to the use of tobacco leaves of the Solanaceae family or the genus Nicotiana. Inhaling smoke containing nicotine, tar, etc., produced by burning or heating materials containing tobacco components. It often means that, but here it simply means "to enjoy the smoke," "to savor the smoke," or "to enjoy the smoke." It means "to fully enjoy," and the aromatic components that make up the smoke are not limited to tobacco materials, but also include non-tobacco materials. This also applies to those that use [this method].

[0019] Figure 1 shows an example of how the smoking device cartridge 1 according to this disclosure is used.

[0020] As shown in Figure 1, the smoking device cartridge 1 according to this disclosure uses the smoking device 100 Smoking is permitted. The smoking device 100 utilizes an induced magnetic field (a magnetic field generated by electromagnetic induction). The smoking device 100 is a smoking device that inductively heats the cartridge 1 for the smoking device. An insertion section 101 for inserting the cartridge 1, and a guide located within the insertion section 101. The heating coil 102 and the control device (not shown) for the induction heating coil 102 and the battery (not shown) The system includes a control unit 103 which includes the following: It is arranged to surround the smoking device cartridge 1, and when an electric current flows, it induces It generates a magnetic field.

[0021] Figure 2 is an external view of a smoking device cartridge 10 according to the first embodiment of the present invention. Figure 3 This is a cross-sectional view taken along the line III-III in Figure 2. Note that the white arrows in Figure 3 indicate the entry of air during suction. It roughly indicates the direction.

[0022] As shown in Figures 2 and 3, the smoking device cartridge 10 according to the first embodiment of the present invention is The column comprises a cylindrical skeletal material 11 and a heated substrate 12 that generates an aerosol when heated, It is formed in a certain shape. In this embodiment, the smoking device cartridge 10 is further formed with a filter 13 and It comprises a wire member 20.

[0023] The skeletal material 11 is a component that constitutes the exoskeleton of the smoking device cartridge 10, and in the longitudinal direction The internal space 16 extending from one side (right side in Figure 3) to the other side (left side in Figure 3) is partitioned. It is formed in a cylindrical shape. The skeletal material 11 consists of multiple (two in this embodiment) sheets 14, 15 It is wound up to form a cylindrical shape. In this embodiment, the skeletal material 11 is made of two sheets 14, 15 It is wound spirally in a direction inclined with respect to the longitudinal direction to form a cylindrical shape. In the region on one side of the space 16 (the region on the side of the longitudinal center), the heating substrate 12 is positioned. A sealing member 20 is located at the end of the internal space 16 of the skeletal material 11. A filter 13 is placed at the other end of the internal space 16 of the skeletal material 11. The length of the frame material 11 is preferably 30 mm or more and 80 mm or less. The diameter of the frame material 11 is A thickness of 4.0 mm to 9.0 mm is preferred, and from the viewpoint of ease of handling for the user, 5.0 mm is preferable. A thickness of 8.0 mm or less is even more preferable.

[0024] The skeletal material 11 is formed by the first sheet 14 of the two sheets 14, 15. It has a first region 17 and a second region 18 formed by the second sheet 15. Regions 7 and 18 are arranged adjacent to each other in a spiral shape that is inclined with respect to the longitudinal direction. In other words, the skeletal material 11 has a first region 17 and a second region which are different regions in the longitudinal direction. It has two regions 18. The ends of each sheet 14, 15 in the width direction overlap each other (O They are glued to each other in a burlapped state. Both ends in the width direction of each sheet 14, 15 The width (length in the longitudinal direction) of the overlapping portion 21 of each sheet 14, 15 is It is narrower than the width of the non-overlapping portion. In the overlapping portion 21, the above one side The sheet on the other side is located on the outer diameter side (radially outward) than the other sheet mentioned above. For example, In the overlapping portion 21 of the enlarged section of Figure 3, the second sheet 15 on one side is on the other side It is located on the outer diameter side of the first sheet 14.

[0025] The two sheets 14 and 15 are sheets with different properties, and thus the skeletal material 1 The first region 17 and the second region 18 of 1 have different properties. The two sheets 14 and 15 are The skeletal material 11 is formed to constitute the exoskeleton of the smoking device cartridge 10, It has relatively high strength.

[0026] The first sheet 14 is a sheet formed in layers (in this embodiment, in two layers), and inside The first sheet has a first layer 14a on the radial side (inner side in the radial direction) and a second layer 14b on the outer diameter side. The first layer 14a of 14 contains a susceptor material that generates heat due to the induced magnetic field. The skeletal material 11 has a heat-generating section 22 which includes a susceptor material that generates heat by a predetermined induced magnetic field. In this embodiment, the heat-generating portion 22 is formed by the first sheet 14, which is a first region 17 It is provided in the second layer 14b of the first sheet 14. The first sheet 14 is, for example By laminating a thin film-like susceptor material to one side of the paper (the side that will become the inner diameter), the shape is formed. It may be done in this way. Thus, in this embodiment, the entire area of ​​the first region 17 of the skeletal material 11 is induced It functions as a heat-generating section 22 containing a susceptor material that generates heat due to the magnetic field. Part 22 may also be called a susceptor. In this embodiment, the first region 17 and the second region 18 are Since they are arranged in a spiral shape that is inclined with respect to the longitudinal direction while being adjacent to each other, the first sheet The first region 17 formed by 14 is a continuous spiral shape extending from one side to the other of the skeletal material 11. It is provided at the position that overlaps radially with respect to the substrate 12 to be heated from the outside, A first region 17 of the skeletal material 11 exists, which functions as a heat-generating area 22.

[0027] Susceptor materials include iron, stainless steel, nickel, brass, titanium, and aluminum. Copper, Co, chromium, FeOFe2O3, NiOFe2O3, CuOFe2O3, MgOF e2O3, MnBi, MnSb, MnOFe2O3, Y3Fe5O12, CrO2, Mn Examples include As, Gd, Dy, and carbon materials (e.g., carbon, graphite), which have magnetic properties. Iron, ferritic iron, ferrite powder, ferrite particles, ferritic stainless steel, Ferromagnetic steel, stainless steel, nickel, cobalt, or a combination of these metallic materials. Which is preferable? In particular, iron, which is a ferromagnetic material; aluminum, which is a paramagnetic material; and ferrodiamagnetic material. A chromium alloy or a multi-layered material made of such materials is more preferable.

[0028] The second sheet 15 is a paper sheet that does not contain susceptor material, and is different from the first sheet 14. It also has high breathability. The breathability of the second sheet 15 is achieved, for example, by providing tiny pores. It may be secured. In this way, the first region 17 and the second region 18 of the skeletal material 11 are relative to each other. The breathability is different. In this embodiment, the first region 17 generates heat due to a predetermined induced magnetic field. Region 18 has heat properties, while Region 2 does not. Also, Region 2 18 is more heat-generating than Region 1. It has higher breathability than 7.

[0029] The inner surface of the skeletal material 11 may be coated or impregnated with a fragrance material. The fragrance material may be: Generally, there are no particular limitations as long as it is used in smoking accessory cartridges 10, for example, Examples include Baco extract, vanillin, chocolate, cocoa, and menthol.

[0030] The manufacturing method for the skeletal material 11 is, for example, to use two sheets on a cylindrical temporary core member (not shown). The two sheets 14 and 15 are arranged alternately in the longitudinal direction. Next, the two cylindrical pieces are wound spirally in a direction that is inclined relative to it to form a cylindrical shape. The sheets 14 and 15 are removed from the temporary core member, cut to the desired length, and the skeletal material 11 is manufactured. To manufacture. Note that the two sheets 14 and 15 are made by cutting the edges of each other in the width direction before winding them onto the temporary core member. The parts may be glued together beforehand to form a single sheet. Alternatively, two sheets may be used. While winding sheets 4 and 15 around the temporary core member, bond the ends of the two sheets 14 and 15 together in the width direction. You may do so.

[0031] The heated substrate 12 is a component that generates an aerosol when heated, and is part of the skeletal material 11. It fills the other end of the space 16 in the longitudinal direction and is supported by the skeletal material 11. 2 is a paste-like substance that has been dried (hereinafter simply referred to as "paste"). Forms: rectangular strips extending in the longitudinal direction, sheet-like forms, chip-like forms, wood chip-like forms. It is in a state or in a powdery form (including powder, fine particles, granules, and granular form). That's fine.

[0032] When the substrate to be heated 12 is in the form of a strip, its width is preferably 0.1 mm or more and 1.0 mm or less. Furthermore, it is more preferable that the thickness is 0.2 mm or more and 0.8 mm or less. Also, the heated substrate 12 is In the case of a sheet-like form, the thickness is preferably 0.1 mm or more and 1.0 mm or less. It is more preferable that the particles are between 0.1 mm and 0.5 mm in size. Furthermore, the heated substrate 12 is granular. In the case of a certain shape, the average diameter is preferably 0.1 mm or more and 3.0 mm or less. It is more preferable that the thickness be between 4 mm and 0.8 mm.

[0033] The heated substrate 12 generates an aerosol from the tobacco material and / or non-tobacco material. Solformer, microcrystalline cellulose, flavor enhancers, preservatives, adhesives, thickeners, etc. A method of mixing and passing the mixture through an orifice or nozzle under pressure to form a rod shape, and a heating substrate 1 A method of forming the composition for 2 into a thin sheet and then cutting it, or for the heated substrate 12 Examples of methods include drying the composition and grinding it to form granules.

[0034] Aerosol formers are compounds that generate aerosols by vaporizing or atomizing upon heating. Or a mixture of compounds. Examples of aerosol forms include glycerin and propylene glycol. Glycerin, sorbitol, triethylene glycol, lactic acid, diacetin (glycerin diacetin) Tart), triacetin (glycerin triacetate), triethylene glycol diacetate Tart, triethyl citrate, isopropyl myristate, methyl stearate, dodeca Dimethyl tetradecanedione and dimethyl tetradecanedione can be used, but especially plant Physical glycerin and propylene glycol are preferably used. These aerosol forms Ma can be used alone or in a mixture of two or more types.

[0035] Furthermore, the non-tobacco material (aromatic component that produces an aroma when heated) that forms the heated substrate 12 is... The following are some examples, but are not limited to these.

[0036] In this embodiment, there are no particular restrictions on the non-tobacco material that can be used, as long as it is a plant other than tobacco. It can be used. Examples of usable plant parts include roots (bulbs, tubers, and bulbs). (including, etc.), stems (corms, rhizomes, Jerusalem artichoke rhizomes), tubers, bark (including stem bark, tree bark, etc.), Various parts can be used, including leaves, flowers (including petals, pistils, stamens, etc.), tree trunks, and branches.

[0037] Bulbous plants include onions, spider lilies, tulips, hyacinths, garlic, and jackfruit. As for corms, lilies, and bulbs, crocuses, gladiolus, freesias, irises, and taro. Konjac, and as tubers, konjac, cyclamen, anemone, begonia, and Chinese artichoke. Potatoes, apios (a type of tuber), and as rhizomes, canna, lotus (lotus root), and ginger. As for tubers, dahlias, sweet potatoes, cassava, and Jerusalem artichokes; as for rhizomes, yamano The genus Apocynaceae (including yams such as Japanese yam, wild yam, and Chinese yam), and others such as turnips and burdock. Examples include coriander, carrots, radishes, and kudzu. Stems include asparagus, bamboo shoots, and coriander. Examples include daikon radish, yacon, and corn.

[0038] The above-mentioned potatoes or the plants listed below contain carbohydrates, and a small portion of the heating substrate 12 Both are preferably used as some of the materials. For example, as starch, cornstarch (and Corn, potato starch, sweet potato starch, tapioca These include starch (tapioca), which is sometimes used as a thickener, stabilizer, etc. Crosslinking improves acid resistance, heat resistance, and shear resistance, while esterification and etherification improve acid resistance, heat resistance, and shear resistance. Improved storage stability, accelerated gelatinization, improved transparency through oxidation, improved film properties, and improved storage stability. This can be achieved by taking measures such as the above.

[0039] From plant seeds come tamarind seed gum, guar gum, locust bean gum, and from tree sap... From gum arabic, karaya gum, pectin from fruits, and cellulose from other plants. Konjac mannan, which has agarose as its main component, and soybean polysaccharides can be obtained. It can be used after being modified, such as cationized guar gum.

[0040] From seaweed, there are three types of carrageenan: kappa-carrageenan, iota-carrageenan, and lambda-carrageenan. Carrageenan, agar, and alginic acid can be obtained, along with carrageenan metal salts and alginic acid. It is also used as a salt of sodium acid, etc.

[0041] Plants used as herbs and spices include, for example, gardenia fruit and kaffir lime. Kanno leaves, myoga ginger, mugwort, wasabi, ajwain seeds, anise, alfalfa, erythrina Cinnamomum cinnamomum, shallot, tarragon, everlasting flower, elderflower, o Rustic spice, orris root, oregano, orange peel, orange blossom, orange lily -Fu, Cayenne chili pepper, German chamomile, Chamo Meal Roman, cardamom, curry leaves, garlic, catnip Caraway, caraway seeds, osmanthus, cumin, cumin seeds, cloves Green cardamom, green pepper, cornflower, saffron, cedar, cinnamon Jasmine, juniper berries, bhut jolokia, ginger, star anise Spearmint, sumac, sage, savory, celery, celery seed, Turmeric, thyme, tamarind, tarragon, chervil Chives, dill, dill seeds, tomatoes (sun-dried tomatoes), tonka beans, dried cilantro - Nutmeg, hibiscus, habanero, jalapeño, bird's eye, basil, vanilla, Cilantro (coriander), parsley, paprika, hyssop, piments despelette, pinto Cup pepper, fenugreek seeds, fennel, brown mustard, black cardamom Mon, black cumin, black pepper, vetiver, pennyroyal, peppermint ( Mint, horseradish, white pepper, white mustard, poppy seeds Porcini mushrooms, marjoram, mustard seeds, maniguette, marigold, malbaf Flower, Mace, Yarrow Flower, Eucalyptus, Lavender, Licorice, Linden, Red Clover, red pepper, lemongrass, lemon verbena, lemon balm, lemon pepper Rose, rosebuds (purple), rosehip, rose petal, rose Sumary, rose red, bay leaf, long pepper, sesame (raw sesame, roasted) Ingredients such as sesame, golden chili peppers, Sichuan peppercorns, Mitaka pepper, Japanese pepper, chili peppers, and yuzu can be used. Also, mixed spices (for example, five-spice powder, garam masala, ras el hanout, barig) Chicken curry masala, tandoori masala, quatre épices, herbes de Provence ) or a mixture of various plants used in potpourri can be used.

[0042] Also, for example, peaches, blueberries, lemons, oranges, apples, bananas, pineapples Ru, mango, grape, kumquat, melon, plum, almond, cocoa, coffee beans, peanut Edible fruits (flesh) and seeds such as nut, sunflower, olive, walnut, and other nuts. You can use it.

[0043] Furthermore, tea varieties can be used. Tea varieties are not only different in that they are made from different plants, but they are also made from the same plant. The type of tea varies depending on the processing method. Specifically, for example, Japanese tea, black tea, Angelica keiskei tea, Amacha, Amachazuru tea, Aloe tea, Ginkgo leaf tea, Oolong tea, Turmeric tea, Quercus glauca Tea, Eleutherococcus senticosus tea, Plantain tea, Glechoma hederacea tea, Persimmon leaf tea, Chamomile tea , cassia seed tea, quince tea, chrysanthemum tea, gymnema tea, guava tea, goji berry tea, mulberry leaf tea, black bean tea, Geranium thunbergii tea, brown rice tea, burdock tea, comfrey tea, kelp tea, cherry blossom tea, saffron tea, oak Bamboo tea, perilla tea, jasmine tea, ginger tea, horsetail tea, sweet flag tea, swertia tea, so Ba tea, Aralia elata tea, Dandelion tea, Sweet tea, Houttuynia cordata tea, Eucommia ulmoides tea, Sword bean tea, Elderberry tea, Ligustrum tea, Job's tears tea, Senna tea, Loquat leaf tea, Pu-erh tea, Safflower tea, Pine needle tea, Yerba mate tea Barley tea, Japanese laurel tea, mugwort tea, eucalyptus tea, monk fruit tea, rooibos tea, bitter melon tea, etc. These are some examples. For these teas, you may use the tea leaves after drinking. This allows for the reuse and effective utilization of expensive teas and other products.

[0044] As mentioned above, kelp (for tea) was listed as a specific example of a plant that can be used, but there are other plants as well. Aosa, Aonori, Akamoku, Asakusanori, Arame, Iwanori (rock seaweed), Egonori, Ogonori, Gagome kelp, Kajime, Ganiashi, Kubirezuta, Kurome, Kombu, Susabinori , dulse, Chishima kelp, Tsuruarame, Tengusa, Tororo kelp, Nekoashi kelp genus, Nori (seaweed), Habanori, Hijiki, Hitogusa, Hirome, Funori, Bouaonori, Macon Bu, mekabu, mozuku, and wakame can, of course, also be used.

[0045] As mentioned above, brown rice (tea) was cited as a specific example of a plant that can be used, but other varieties of rice can be used. Indica (Indian type, continental type, long grain), Glaberima (African rice), Satie Ba variety (Asian rice), Javanica variety (Java type, tropical island type, large grain variety), Japonica variety ( Japanese type, temperate island type, short grain variety, and NERICA (an interspecific hybrid of Asian rice and African rice) are also included, of course. It can be used for various purposes, and can also be used as a powder or rice bran.

[0046] Furthermore, while wheat (tea) was given as a specific example of a plant that can be used, other examples of wheat varieties include: Millet, oats (cultivated varieties of wild oats, also called oats), barley, crow Wheat, millet, cordon millet, wheat, finger millet, teff, and pearl millet E, hulless barley (a variety of barley), adlay (a fruit, not a seed), barnyard millet, foxtail millet Nio, Makomo, Mochimugi (glutinous barley), Morokoshi (sorghum, sorghum, corn) Gum, corn, and rye can also be used, of course.

[0047] Furthermore, while black beans (tea) were given as a specific example of a plant that can be used, other types of grains (legumes) are also available. Other examples include adzuki beans, carob beans, kidney beans, and pea beans. Spee (English: Lathyrus sativus) Vigna angularis, cowpea, winged bean, Zeocalpa beans, broad beans, soybeans, bamboo beans, cantaloupe, tamarind, teparii Bean, sword bean, jack bean (English: Mucuna pruriens), Bambara Beans, chickpeas, hyacinth beans, red beans, horse beans (English: Macrotyl) Oma uniflorum, moss bean, lima bean, peanut, mung bean, rupee Eggplant, lentils, and lentils (Hentou) can also be used, of course.

[0048] Furthermore, while buckwheat (tea) was given as a specific example of a plant that can be used, what are some examples of other plants? And of course, amaranth, quinoa, and buckwheat are also used. It is possible.

[0049] Furthermore, as a specific example of a plant that can be used, shiitake mushrooms (tea) were mentioned, but as for mushrooms... These include matsutake, shiitake, hatsutake, shimeji, truffle, button mushroom, and agaricus. It can be done.

[0050] Also, sugarcane (even the molasses residue is acceptable), sugar beets, cypress, pine, and cedar. The trunks and branches of fragrant trees such as cypress, camellia, and sandalwood, as well as their bark, leaves, and roots, can also be used. Ferns, mosses, etc., can also be used as non-tobacco plants. For example, by-products and lees (sake lees, grape lees) used in the production of fermented alcoholic beverages such as sake and wine. The pomace (consisting of grape skins, seeds, and stems) can also be used. Furthermore, as mentioned above... You may use a mixture of various plants. Of course, you can also use plants other than those listed here. It is also possible.

[0051] Furthermore, herbal medicines known as traditional Chinese medicines are also favored. For example, the following: Indigo (Aisou), Madder root (Akanekon), Red-eyed oak (Akamegashiwa), Catechuan (Asenyaku) ), benzoin, Weilingxian, Artemisia capillaris, fennel ( Fennel, turmeric, dried plum, black oak, oak Quercus serrata, Arctostaphylos uva-ursi, Corydalis ambigua, Corydalis ambigua, Corydalis ambigua Astragalus, Astragalus, Scutellaria, Polygonatum, Phellodendron, Coptis japonica, Prunus serrulata, Hypericum erectum, Polygala tenuifolia, Sophora japonica Kaika, Gaihaku, Kagosou, Kashi, He Shou Wu Curcuma zedoaria, Phellodendron bark, Pueraria lobata, Chamomile, Melon root (Lactobacillus), Caronine, Dried Ginger, Licorice, Coltsfoot Ka), Mud lily (Gaiyo), Balloon flower (Kikyo), Citrus fruit (Kigushi), Citrus shell (Kikoku), Citrus fruit (Pheasant), Chrysanthemum (Kikuka), Orange peel (Kippi), Qianghu (Kyokatsu), Almond kernel (Kyonin) ), kumquat, honeysuckle, goldberry, goji berry (Lycium barbarum), goji berry leaves, Sophora flavescens, walnut, cinnamon bark, black Kuromoji (Japanese spicebush), Kubaku (Oak), Keigai (Schizonepeta tenuifolia), Keihi (Cinnamon bark), Ketsumeishi (Cassia seed) Meishi, Kengoshi, Genjin, Koui, Kouka, Albizia bark (Goukanpi), Citrus fragrant (Koukou), Citrus fragrant drum (Koushi), Citrus fragrant (Koju), Red ginseng ( Koujin, Koubushi, Koubei, Kouboku, Kouho (N), Gokahi, Goshitsu, Goshuyu, Gojokon ), burdock seeds, schisandra berries, bupleurum, asarum, safflower Orchid, Smilax china, Hawthorn, Gardenia, Cornus officinalis Cornus officinalis), mountain soybean root (Sanzukon), jujube seed (Sansounin), Japanese pepper (Sansho), three-edged rhizome (Sanryō), Dioscorea japonica, Rehmannia glutinosa, Aster tataricus, Dioscorea japonica Pi), Shikon (purple gromwell root), Shisoshi (perilla seed), Shisoyou (perilla leaf), Shitsurishi (a type of lily), Persimmon buds (Shitei), Earthworm (Jifushi), Peony (Shakuyaku), Snakehead (Jashōshi), Sand Symplocos chinensis, Plantago asiatica, Plantago asiatica, and Cardamine humilis Houttuynia cordata, ginger, palm fruit, palm leaf (Yang), Cimicifuga, Wheat, Iris root, Magnolia (Shin) i) Ligustrum lucidum, Ligustrum bark, Ligustrum lucidum, Ligustrum lucidum U), Juushi, Shokumoku, Seihi, Sekisho Turmeric, pomegranate peel, Dendrobium, Ligusticum, front Hu (Zenko), River bone (Senkotsu), Spinning flower (Senpukuka), Bone tree (Sekkotsuboku), Grass Fruit (Soka), Soukakushi, Soukisei, Soujishi, Atractylodes lancea, Thuja orientalis, Scutellaria baicalensis, and Mulberry bark ), Sappanwood, Sappanwood leaves, Sappanwood pods, Rhubarb, Jujube (Taisou), Daifukuhi, Takusha, Tanjin, Chi Kujo, Chikusetsuninjin, Chikuyou, Chimo, Chi Yu), cloves (Chōji), Uncaria rhynchophylla (Chōtōkō), dried tangerine peel (Chinpi), Arisaema (Ten) Arisaema, Gastrodia elata, Asparagus cochinchinensis, Winter melon seed, Angelica sinensis ( Angelica root, castor bean, Codonopsis pilosula, Peach kernel Sea urchin, orange peel (touhi), rabbit's roe (toshishi), horse chestnut (tochinomi), Eucommia ulmoides, Dokkatsu, Dokakon, Nikujuyou, Nikuzuku, Nintou Rumex rotundifolia, ginseng, fritillary buds, malt, tallow tree seeds White bladderwort, Ophiopogon japonicus, Hakoshi paper, Peppermint , Bangka, Hange, Hanbi, Banlangkon, Hanjiren (Hanshiren), Lily bulb (Yurine), White bud (Byakushi), White-flowered snake-tongued grass (Byakukajazetsu) (Sou), Hyakubukon, Byakujutsu, Binrouji, Bouyi (Boui), Chino Root (Bokon), Bofu (Bofu), Houou, Dandelion Root (Hou) Eykon, Peony bark, Ephedra, Hemp seed, Viburnum Cereal tree, pine resin, Akebia quinata, Japanese quince, Saussurea chinensis, Myrrh, horsetail, kettle, yakuchi, night-blooming wisteria Utou), Luo Han Guo (monk fruit), Lan So (orchid grass), Longan Fruit (longan fruit), Gentian ( Gentian, galangal, reishi mushroom, forsythia, gentian grass (Rensensou), lotus seed (ren'niku), rekon (rokon).

[0052] Furthermore, extracts of non-tobacco plants, as exemplified above, can also be used. The extract can take the form of liquid, syrup, powder, granules, solution, etc.

[0053] The filter 13 allows the flow of aerosol from the heated substrate 12, A component for restricting the flow of detached material and dust from the heated substrate 12 and preventing the inhalation of such material. and is positioned at the other end of the internal space 16 of the skeletal material 11 and fitted into the skeletal material 11. In other words, the heated substrate 12 is located within the internal space 16 of the skeletal material 11, and is located below the filter 13. It is also arranged on the one side mentioned above. Filter 13 is, for example, a cellulose acetate filter. It can be formed using the above. The filter 13 is spaced apart from the heated substrate 12 toward the other side. They are arranged in this configuration. In this embodiment, the internal space 16 of the skeletal material 11 is arranged between the heated substrate 12 and the Nothing is placed in the intermediate region 19 between filter 13 and the filter. Filter 13 allows the The smoke and aromatic components of Arosol are inhaled, allowing users to enjoy a more comfortable smoking experience. Furthermore, the filter 13 is designed to allow the user to more easily inhale aerosols, with a circumferential orientation. Multiple holes (not shown) may be formed at equal intervals. Also, in this embodiment, Nothing is placed in the intermediate region 19 between the heating substrate 12 and the filter 13, but this is not limited to this. It is not a support part that supports the heated substrate 12, filter 13, or skeletal material 11, for example. Materials and other elements may be placed in the intermediate region 19.

[0054] The length of the filter 13 is between 3% and 60% of the total length of the smoking device cartridge 10. It is preferable that the percentage is 5% or more and 30% or less. By making the length of 13 between 3% and 60% of the total length of the smoking device cartridge 10, Ruta 13 can generate sufficient aromatic components while maintaining breathability. By making the length of the 13 between 5% and 30% of the total length of the smoking device cartridge 10, the bone The sheathing member 11 can properly support the filter 13. The length of the filter 13 is If the filter 13 is to be 3% to 10% of the total length of the smoking accessory cartridge 10, the skeletal material 1 It is preferable to adhere it to the one end of 1 as described above.

[0055] The sealing member 20 is positioned on one side of the heated substrate 12 and is above the internal space 16 This prevents fragments of the heated substrate 12 from falling to the side.

[0056] In the smoking device cartridge 10 configured as described above, the skeletal material 11 generates a predetermined induced magnetic field. Since it has a heating section 22 containing a susceptor material that generates heat, the susceptor is heated by the substrate 1 Unlike when placed inside 2, the susceptor is positioned at a desired location on the heated substrate 12 (for example, at the center) There is no need to position it in a specific location. Also, the skeletal material 11 is located outside the smoking device cartridge 10. A component that makes up the skeleton and has relatively high strength, so the heat-generating part including the susceptor material Even if 22 is present, in a state where it is formed in a long length (a state where multiple skeletal members 11 are continuous) When cutting the frame material 11 to the desired length, care must be taken to prevent the frame material 11 from being crushed. It is not easily cut.

[0057] Thus, according to this embodiment, the decrease in manufacturing efficiency of the smoking accessory cartridge 10 is suppressed. It is possible.

[0058] Furthermore, the first region 17 and the second region 18 of the skeletal material 11 have different properties from each other, The sheet that constitutes the region (in this embodiment, the first sheet 14 that constitutes the first region 17) Therefore, while ensuring the heat generation for heating the substrate 12 to be heated, the other region is composed of The sheet (in this embodiment, the second sheet 15 constituting the second region 18) ensures breathability. It can be preserved.

[0059] Furthermore, the second region 18 of the skeletal material 11 has higher breathability than the first region 17. Therefore, since ventilation can be ensured in the second region 18 of the skeletal material 11, the user can breathe This reduces the suction force required when drawing in the smoke device cartridge 10.

[0060] Furthermore, the first region 17 is a heat-generating section 22 that generates heat due to a predetermined induced magnetic field. Therefore, when smoking the smoking device cartridge 10 using the smoking device 1, The induction magnetic field generated by the induction heating coil 102 causes the heating element 22 to heat up, heating the base to be heated. The material 12 can be heated.

[0061] Furthermore, the skeletal material 11 is a component that constitutes the exoskeleton of the smoking device cartridge 10, and Because it has relatively high strength, it is difficult to crush. For this reason, a single thin sheet (for example, a single thin Unlike cylindrical outer materials formed from paper, etc., the management (storage, movement) of the skeletal material 11 (etc.) are easy.

[0062] Furthermore, the skeletal material 11 consists of two sheets 14 and 15 arranged spirally in a direction inclined with respect to the longitudinal direction. It is wound in a shape to form a cylindrical shape. The ends of each sheet 14, 15 in the width direction overlap each other. They are bonded to each other in an overlapping state. That is, two sheets 14, The overlapping portion 21 of 15 is inclined with respect to the longitudinal direction of the smoking device cartridge 10. It extends in that direction. Thus, the two sheets 14 and 15 that are bonded to each other overlap Since the wrap portion 21 is provided in the circumferential direction of the smoking device cartridge 10, the user can use the smoking device The force that twists or bends the cartridge 10 can be distributed, and the smoking device cart This can improve the overall strength of Ridge 10.

[0063] Furthermore, since the overlapping portion 21 of the two sheets 14 and 15 is arranged in a spiral shape, A spiral step can be provided on the inner circumferential surface of the skeletal material 11. Therefore, this step allows This can create a smooth aerosol airflow, improving the taste, flavor, and breath efficiency. It can be improved.

[0064] Furthermore, in the overlapping portion 21 of the two sheets 14 and 15, the sheet on one side is It is located on the outer diameter side of the sheet on the other side mentioned above. Therefore, the smoking device cartridge 10 When inserting the smoking device 100 into the insertion part 101, the overlap of the two sheets 14 and 15 This prevents part 21 from getting caught on the smoking device 100, and the sheet on the other side from peeling off. This prevents it from being put away.

[0065] Furthermore, the first sheet 14 forming the first region 17 is layered (in this embodiment, two layers) A sheet is formed having a first layer 14a on the inner diameter side and a second layer 14b on the outer diameter side. The first layer 14a contains susceptor material, and the second layer 14b is paper that does not contain susceptor material. Therefore, when the first layer 14a is heated by the induced magnetic field, the heat generated on the outer diameter side is absorbed by the second layer. It can be suppressed by 14b.

[0066] In this embodiment, the two sheets 14 and 15 are screwed in a direction inclined with respect to the longitudinal direction. A cylindrical frame material 11 was formed by winding multiple sheets in a spiral manner, but the direction in which the sheets were wound was longitudinal. It is not limited to the direction of inclination with respect to the direction. For example, sheet 14 and sheet 15 are in the longitudinal direction Arrange multiple sheets alternately, so that each sheet 14, 15 forms a ring. It may be wound around the circumference (flat winding). In this case, the first region 17 and the second region of the skeletal material 11 18 is arranged alternately in the longitudinal direction, and at least one first region 17 is added The heating substrate 12 is heated by a position that overlaps the heating substrate 12 from the outside in the radial direction. It can be done.

[0067] Furthermore, in this embodiment, a filter 13 is provided in the smoking device cartridge 10, It is not necessary to provide the 13. Also, in this embodiment, the smoking device cartridge 10 is sealed Although member 20 is provided, it is not necessary to provide the sealing member 20.

[0068] Furthermore, in this embodiment, in the overlap portion 21 of the two sheets 14 and 15, The sheet on one side is positioned on the outer diameter side compared to the sheet on the other side, but this is not the only option. It's not that.

[0069] In this embodiment, the first sheet 14 is formed in layers, and the first layer 14a contains a susceptor material This configuration includes not including susceptor material in the second layer 14b, but is not limited to this. Instead, for example, the first layer 14a and the second layer 14b are made of different susceptor materials. It could also be included in the configuration.

[0070] Furthermore, although the first sheet 14 is formed in layers in this embodiment, the embodiment is not limited to this. However, for example, it could be a single-layer first sheet 14 formed by kneading in susceptor material. stomach.

[0071] Furthermore, in this embodiment, the air permeability between the first region 17 and the second region 18 of the skeletal material 11 is different. However, this is not the only example; the first area 17 and the second area 18 are essentially the same. It may also be breathable. In this case as well, one of the first regions 17 has the ability to generate heat due to induction heating. Although they possess the same properties, the other second region 18 does not generate heat, so their properties are different.

[0072] Next, a second embodiment of the present invention will be described with reference to the drawings. Smoking accessories cart of this embodiment The ridge 30 is such that both the first region 17 and the second region 18 of the skeletal material 11 are heat-generating areas. This differs from the first embodiment. Note that components similar to those in the first embodiment are denoted by the same reference numerals. I will omit the explanation.

[0073] Figure 4 is a cross-sectional view of a smoking device cartridge 30 according to a second embodiment of the present invention.

[0074] As shown in Figure 4, the smoking device cartridge 30 according to this embodiment has a cylindrical frame material 11 It comprises a heated substrate 12 that generates an aerosol when heated, and is formed in a columnar shape.

[0075] The skeletal material 11 is formed into a cylindrical shape by winding together multiple sheets (two in this embodiment) 31 and 32. This partitions the internal space 16 that extends longitudinally inward. In this embodiment, the skeletal material 11 is Two sheets 31 and 32 are spirally wound in a direction inclined with respect to the longitudinal direction to form a cylindrical shape. It will be accomplished.

[0076] The skeletal material 11 is formed by the first sheet 31 of the two sheets 31, 32. It has a first region 17 and a second region 18 formed by the second sheet 32. The two ends of 1.32 in the width direction are glued together in an overlapping state. The overlapping portions 2 at both ends in the width direction of each sheet 31, 32. The width of 1 (length in the longitudinal direction) is the width of the non-overlapping portion of each sheet 31, 32. It is narrower than the sheet on the other side. In the overlap portion 21, the sheet on one side is narrower than the sheet on the other side. It is also located on the outer diameter side (outer side in the radial direction). For example, the overlapping portion of the enlarged section in Figure 4. In 21, the second sheet 32 ​​on one side is positioned on the outer diameter side than the first sheet 31 on the other side. It is placed there.

[0077] The first sheet 31 contains a first susceptor material that generates heat due to the induced magnetic field. The second sheet 32 ​​contains a second susceptor material that generates heat due to the induced magnetic field. The first region 17 contains a first susceptor material that generates heat due to a predetermined induced magnetic field. A section 33a is provided, and in the second region 18, a second susceptor that generates heat by a predetermined induced magnetic field A second heating element 33b containing the material is provided. Thus, in this embodiment, the skeletal material 11 In both the first region 17 and the second region 18, there is a susceptor material that generates heat due to the induced magnetic field (first region 17). Heat-generating sections 33a and 33b are provided, which include a susceptor material and a second susceptor material. The heating elements 33a and 33b may also be referred to as susceptors. They are heated radially with respect to the substrate 12. At the overlapping position from the outside, the first region 1 of the skeletal material 11 functions as the heat-generating parts 33a and 33b. Areas 7 and 18 exist. Note that both the first sheet 31 and the second sheet 32 ​​are It may be a single layer sheet formed by kneading septa material, or the first substance described above. It may be formed in a layered manner, similar to the first sheet 14 of the applied form, having a layer containing susceptor material.

[0078] The first susceptor material can be iron, stainless steel, ferritic iron, ferrite powder, ferrite Examples include ferrite particles, ferritic stainless steel, and ferromagnetic steel, as well as ferromagnetic iron and stainless steel. Stainless steel is preferred. As for the second susceptor material, nickel, brass, titanium, and aluminum are preferred. Examples include nium and chromium, with ferromagnetic nickel and diamagnetic chromium being preferred. It seems so.

[0079] The Curie temperature of the second susceptor material is lower than that of the first susceptor material. For example, the Curie temperature of the first susceptor material is preferably 500°C to 1200°C, and the second susceptor The Curie temperature of the suppository material is preferably between 180°C and 390°C. The second susceptor material is The Néel temperature may be lower than the Curie temperature of the first susceptor material. In particular, the Curie temperature of the first susceptor material is preferably 500°C to 1200°C, and the second susceptor The nail temperature of the septa material is preferably between 180°C and 390°C.

[0080] In the smoking device cartridge 30 configured as described above, the first region 17 and the skeletal material 11 In both the first and second regions 18, a susceptor material that generates heat due to the induced magnetic field (first susceptor material and Heat-generating sections 33a and 33b are provided, including the second susceptor material, and the second susceptor material The Curie temperature is lower than the Curie temperature of the first susceptor material. Therefore, the cartridge for smoking devices The heating temperatures of the heating elements 33a and 33b of the 30 can be controlled by the Curie temperature. For example, by passing an electric current through the induction heating coil 102 of the smoking device 100, an induced magnetic field is generated. When heat is generated from the heat-generating parts 33a and 33b of the first region 17 and the second region 18, the second The second heating element 33b in region 18 reaches the Curie temperature of the second susceptor material and the second heating element 33 When the ferromagnetism of b is lost, control is activated to stop the flow of current to the induction heating coil 102. By performing this in section 103, the temperature rise of the first heating element 33a in the first region 17 is further reduced. It can be stopped.

[0081] Furthermore, in the smoking device cartridge 30, the skeletal material 11 generates heat due to a predetermined induced magnetic field. Since it has heating elements 33a and 33b containing susceptor material, similar to the first embodiment described above, This helps to suppress the decrease in manufacturing efficiency of the smoking device cartridge 30.

[0082] Furthermore, in this embodiment, the two sheets 31 and 32 are screwed in a direction inclined with respect to the longitudinal direction. A cylindrical frame material 11 was formed by winding multiple sheets in a spiral manner, but the direction in which the sheets were wound was longitudinal. It is not limited to a direction inclined with respect to the direction. For example, the first sheet 31 and the second sheet 32 Arrange multiple sheets alternately in the longitudinal direction, so that each sheet 31, 32 forms a ring. 1,32 may be wound around the circumference (flat winding). In this case, the first region 17 of the skeletal material 11 and The second region 18 consists of multiple units arranged alternately in the longitudinal direction, and at least the first region 17 is The heating substrate 12 is positioned to overlap the heating substrate 12 from the outside in the radial direction, so that it can be heated. It is possible.

[0083] Next, a third embodiment of the present invention will be described based on the drawings. Smoking cart of this embodiment The ridge 40 differs from the first embodiment in that the skeletal material 11 has three regions. Components similar to those in one embodiment are denoted by the same reference numerals and their descriptions are omitted.

[0084] Figure 5 is an external view of a smoking device cartridge 40 according to the fourth embodiment of the present invention. The cross-section of the smoking device cartridge 40 according to this embodiment is, excluding the skeletal material 11, the first embodiment This is essentially the same as the state (see Figure 3).

[0085] The smoking device cartridge 40 according to this embodiment comprises a cylindrical frame material 11 and an air that is heated It comprises a heated substrate 12 that generates rosol and is formed in a columnar shape.

[0086] As shown in Figure 5, the skeletal material 11 consists of multiple (three in this embodiment) sheets 14, 15, 41 is wound to form a cylindrical shape. In this embodiment, the skeletal material 11 is made of three sheets 14, 15 and 41 are spirally wound in a direction inclined with respect to the longitudinal direction to form a cylindrical shape.

[0087] The skeletal material 11 is composed of the first sheet 14 among the three sheets 14, 15, and 41. The first region 17, the second region 18 composed of the second sheet 15, and the third sheet 4 It has a third region 42 composed of 1. In this embodiment, the first region 17, the second region Region 18 and the third region 42 are adjacent to each other and are spiral inclined with respect to the longitudinal direction. It is provided in the width direction. The ends of each sheet 14, 15, 41 overlap each other (overlapping They are glued to each other in a wrapped state. Both sides in the width direction of each sheet 14, 15, 41. The width of the overlapping portion 21 is the width of the non-overlapping sheets 14, 15, and 41. It is narrower than the width of the section. In the overlap section 21, the sheet on one side is narrower than the sheet on the other side. It is located on the outer diameter side (outer in the radial direction) of the t.

[0088] The skeletal material 11 has a heat-generating section 22 which includes a susceptor material that generates heat in a predetermined induced magnetic field. The heat-generating portion 22 is provided in the first region 17 formed by the first sheet 14. Sheet 2 15 is a paper sheet that does not contain susceptor material, and is more than Sheet 14 It has high breathability. The third sheet 41 is a paper sheet different from the second sheet 15, and It has even better breathability than 2 sheets 15. That is, the first region 17 and the second region of the skeletal material 11 Regions 18 and 42 have different properties. In this embodiment, the third region of the skeletal material 11 Although the 3rd region 42 was defined as a region with even higher breathability than the 2nd region 18, it is not limited to this. Rather, the third region 42 has properties different from both the first region 17 and the second region 18. Just be there.

[0089] In the smoking device cartridge 40 configured as described above, the first region 17 and the second region 1 Since it has a third region 42 that has different properties from both of 8, the properties of the third region 42 are desired By setting the properties, the skeletal material 11 can be given various performance characteristics.

[0090] Furthermore, in the smoking device cartridge 40, the skeletal material 11 generates heat due to a predetermined induced magnetic field. Since it has a heating element 22 containing a susceptor material, it is a smoking device car similar to the first embodiment described above. This can help prevent a decrease in the manufacturing efficiency of cartridge 40.

[0091] In this embodiment, the three sheets 14, 15, and 41 are inclined with respect to the longitudinal direction. The sheets were wound spirally in the direction to form a cylindrical frame material 11, but the direction in which the multiple sheets were wound was, It is not limited to a direction inclined with respect to the longitudinal direction. For example, each sheet 14, 15, 41 is in the longitudinal direction. Arrange multiple sheets alternately in the direction of the hand, so that each sheet 14, 15, and 41 forms a ring. The first of the frame material 11 Region 17, the second region 18, and the third region 42 are arranged alternately in the longitudinal direction, and at least The first region 17 is configured to enable heating of the substrate 12 to be heated, and is located radially outward relative to the substrate 12. It is placed in a position where it overlaps with the other.

[0092] Furthermore, in this embodiment, in addition to the first region 17 and the second region 18, the third region 42 is a skeletal material. Although provided in 11, it is not limited to this, and the skeletal material 11 is at least in the first region 1 It is sufficient to have region 7 and second region 18. For example, the skeletal material 11 has first region 17 and second region 2 It may have four or more regions (regions with different properties from each other) including region 18.

[0093] Next, a fourth embodiment of the present invention will be described with reference to the drawings. Smoking cart of this embodiment The ridge 50 differs from the first embodiment in that the skeletal material 11 is formed from a single sheet 51. They differ. Note that components similar to those in the first embodiment are denoted by the same reference numerals and their descriptions are omitted. To abbreviate.

[0094] Figure 6 is a cross-sectional view of a smoking device cartridge 50 according to a fourth embodiment of the present invention.

[0095] As shown in Figure 6, the smoking device cartridge 50 according to this embodiment has a cylindrical skeletal material 11 It comprises a heated substrate 12 that generates an aerosol when heated, and is formed in a columnar shape.

[0096] The skeletal material 11 is formed into a cylindrical shape by flat-winding a single sheet 51. Material 11 has a heating element 52 on one side of the predetermined position and on the other side of the predetermined position It has a heat-suppressing section 53. That is, the skeletal material 11 has different regions in the longitudinal direction. It has a first region 54 (heat-generating part 52) ​​and a second region 55 (heat-suppressing part 53), and the first region 5 4 and the second region 55 have different properties. In this embodiment, the heating element 52 of the first region 54 However, the heat generation toward the outer diameter side is not suppressed, and the heat generation suppression portion 53 of the second region 55 toward the outer diameter side The heat generation is kept lower than that of the first region 54. Thus, in this embodiment, the skeleton The first region 54 and the second region 55 of material 11 have different heat generation properties toward the outer diameter side.

[0097] The heating element 52 of the first region 54 is a sheet 51 that generates heat due to a predetermined induced magnetic field. This region contains the septa material and is positioned to overlap the heated substrate 12 from the outside in the radial direction. It is placed. For the susceptor material, the same susceptor material as in the first embodiment described above is used. It is possible.

[0098] The heat generation suppression section 53 of the second region 55 includes a susceptor material that generates heat due to a predetermined induced magnetic field. This is the area that is not included, and is the entire area on the other side of the frame material 11 from the predetermined position mentioned above. In terms of form, the heat-suppressing part 53 does not contain susceptor material, thus reducing heat generation towards the outer diameter side. This is kept lower than the first region of 54.

[0099] In the smoking device cartridge 50 configured as described above, the skeletal material 11 generates a predetermined induced magnetic field. Since it has a heating section 52 that includes a susceptor material that generates heat, it is the same as the first embodiment described above. This helps to suppress the decrease in manufacturing efficiency of the smoking accessory cartridges 50.

[0100] Furthermore, the heating portion 52 of the first region 54 of the skeletal material 11 includes a susceptor material, and the heated substrate 1 Since it is positioned to overlap with 2 from the outside in the radial direction, it generates heat due to the induced magnetic field, The substrate 12 to be heated can be heated.

[0101] Furthermore, the heat generation suppression portion 53 of the second region 55 of the frame material 11 is located at the predetermined position of the frame material 11. This also applies to the entire area on the other side, and the heat generation towards the outer diameter side is kept lower than in the first region 54. Therefore, when inhaling the smoking device cartridge 50, the transfer of heat to the lips is suppressed. can.

[0102] In this embodiment, a heating element 52 is provided in the first region 54 of the skeletal material 11, and a second region 55 This region was defined as the region that does not contain susceptor material, but it is not limited to this, and the second region 5 5 may also be provided with a heat-generating section containing a susceptor material that generates heat due to a predetermined induced magnetic field. In this case, for example, a sheet (paper, etc.) that can suppress heat generation toward the outer diameter side is placed in the second region 55. By winding it on the outer diameter side, the second region 55 may function as a heat generation suppression section 53. In this case, the second region 55 does not suppress heat generation toward the inner diameter side, and therefore functions as a heat-generating area. Furthermore, it also functions as a heat-suppressing section 53 that reduces heat generation towards the outer diameter. In this case, the Curie temperature of the susceptor material (second susceptor material) included in the second region 55 is , lower than the Curie temperature of the susceptor material (first susceptor material) included in the first region 54 You may do so.

[0103] Furthermore, in this embodiment, heat generation occurs on the outer diameter side of the first region 54 and the second region 55 of the skeletal material 11. While sex is defined as having different properties, it is not limited to this; for example, in the first domain 5 The permeability between region 4 and the second region 55 may be made to be different from each other. Alternatively, the first region 54 The heat generation and air permeability on the outer diameter side of the second region 55 may be made to be different properties from each other. stomach.

[0104] Next, a fifth embodiment of the present invention will be described based on the drawings. Smoking cart of this embodiment The ridge 60 differs from the first embodiment in that it includes a packaging material 61 that covers the outer periphery of the skeletal material 11. Furthermore, components similar to those in the first embodiment are denoted by the same reference numerals, and their descriptions are omitted.

[0105] Figure 7 is a cross-sectional view of a smoking device cartridge 60 according to a fifth embodiment of the present invention.

[0106] As shown in Figure 7, the smoking device cartridge 60 according to this embodiment has a cylindrical skeletal material 11 The heating substrate 12 generates an aerosol when heated, and the packaging covers the outer periphery of the skeletal material 11. It comprises material 61 and is formed in a columnar shape.

[0107] The skeletal material 11 has a heat-generating section 22 which includes a susceptor material that generates heat in a predetermined induced magnetic field. The heat-generating portion 22 is provided in the first region 17 formed by the first sheet 14. Sheet 15 is a paper sheet that does not contain susceptor material.

[0108] The packaging material 61 is made of paper to improve the design and strength of the smoking accessory cartridge 50. It is a decorative sheet that is adhered to the outer surface of the frame material 11.

[0109] In the smoking device cartridge 60 configured as described above, the skeletal material 11 generates a predetermined induced magnetic field. Since it has a heating section 22 containing a susceptor material that generates heat, it is the same as the first embodiment described above. This helps to suppress the decrease in manufacturing efficiency of the smoking accessory cartridges 60.

[0110] Furthermore, since the skeletal material 11 is covered with packaging material 61, the smoking device is protected by the packaging material 61. The design and strength of the cartridge 60 can be improved. Furthermore, the fifth embodiment Another embodiment will be described. In this other embodiment, the first sheet 14 is made of iron, which is a ferromagnetic material, and the second Sheet 15 contains chromium, which is a ferrodiamagnetic material, and packaging material 61 contains aluminum, which is a paramagnetic material. Each contains. As a result, the smoking cartridge 60 is made of aluminum. The heat from the iron can be efficiently transferred to the chromium, and the smoking device 100 is heated by the iron. Heating 2, the heat of the iron is transferred through the aluminum, and the chromium that receives the heat is used to heat the substrate 12 It can detect the temperature and control the heating process.

[0111] In this embodiment, the skeletal material 11 covered by the packaging material 61 is made of the first sheet 14 and The skeletal material 11 is formed by two sheets 15, but it is not limited to this. For example, as in the smoking device cartridge 50 according to the fourth embodiment described above, one sheet 51 The skeletal material 11, which is formed into a cylindrical shape by flat winding, is covered with the packaging material 61. That's good too.

[0112] The present invention has been described above based on the above embodiments, but the present invention is the above embodiment The invention is not limited to the content of the state, and can be modified as appropriate without departing from the present invention. There are. That is, other embodiments, examples, and operation techniques made by those skilled in the art based on this embodiment are of course all included in the scope of the present invention. And it is needless to say that all of them are included in the scope of the present invention.

Explanation of Reference Numerals

[0113] 1, 10, 30, 40, 50, 60: Cartridge for smoking device 11: Skeletal material 12: Heated substrate 14, 31: First sheet 15, 32: Second sheet 16: Internal space 17, 54: First region 18, 55: Second region 21: Overlap portion 22, 52: Heat generating part ३३a: First heat generating part ३३b: Second heat generating part 61: Packaging material

Claims

[Claim 1] A cylindrical skeletal member that partitions the internal space extending from one side to the other in the longitudinal direction, The skeletal material comprises a heating substrate disposed in the region on one side of the internal space of the skeletal material, The aforementioned skeletal material has a heating section that includes a susceptor material that generates heat by a predetermined induced magnetic field, The skeletal material has a first region and a second region which are different regions in the longitudinal direction, The first region and the second region have different properties from each other. The heat-generating portion is provided in at least one of the first region and the second region. The first region and the second region of the skeletal material have different heat generation properties toward the outer diameter side. The first region is positioned at least in a position that overlaps radially with respect to the substrate to be heated and has the heating portion, The second region has lower heat generation towards the outer diameter than the first region. A cartridge for smoking accessories characterized by the following features.