cartridge
The cartridge with a lid having a weakened inner layer ensures sealed storage and easy airflow access, addressing leakage and freshness issues in shisha devices, enhancing user experience and substrate integrity.
Patent Information
- Application Number
- JP2022500627
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-07-23
- Filing Date
- 2020-07-22
- Publication Date
- 2025-08-13
- Estimated Expiration
- 2040-07-22
AI Technical Summary
Conventional shisha devices using charcoal for heating tobacco generate harmful combustion by-products and carbon monoxide, while electrically heated devices lack effective sealing mechanisms to prevent leakage and maintain freshness of aerosol-forming substrates.
A cartridge with a lid featuring an inner layer having a weakened area that forms an opening when the outer layer is removed, ensuring sealed storage and easy access to airflow paths, using materials like aluminum or polymers for the body and lid layers.
The cartridge maintains substrate freshness and prevents leakage, providing a clean and intuitive user experience by ensuring the aerosol-forming substrate remains sealed until use, reducing contamination and extending shelf life.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a cartridge for containing an aerosol-forming substrate, particularly for use in an aerosol generating device. The cartridge has a lid including one or more weakened areas, where an opening is formed when an outer layer of the lid is removed. Embodiments of the disclosure relate to a cartridge, a device, a hookah device, and a cartridge with an aerosol-forming substrate for use in a hookah device. [Background technology]
[0002] Conventional shisha devices are used for smoking tobacco and are configured so that the vapor and smoke pass through a basin before being inhaled by the consumer. Shisha devices may include a single outlet, or may include two or more outlets so that the device may be used by two or more consumers simultaneously. Using a shisha device is considered by some to be a recreational activity and a social experience.
[0003] Typically, traditional shishas are used in combination with a substrate, sometimes referred to in the art as hookah, tobacco mollusk, or simply mollusk. Traditional shisha substrates are relatively high in sugar (in some cases up to about 50% compared to the about 20% typically found in traditional tobacco substrates such as combustible cigarettes). The tobacco used in shisha devices may be mixed with other ingredients, for example, to increase the amount of vapor and smoke produced, or to modify the flavor, or both.
[0004] Conventional shisha devices employ charcoal (such as charcoal pellets) to heat, and sometimes burn, a tobacco substrate to generate an aerosol for inhalation by the user. The use of charcoal to heat the tobacco may result in full or partial combustion of the tobacco or other components. Additionally, charcoal may generate harmful or potentially harmful products, such as carbon monoxide, which may mix with the shisha vapor and pass through the water basin to the outlet.
[0005] One way to reduce the production of carbon monoxide and combustion by-products is to use e-liquids rather than tobacco. Shisha devices that use e-liquids eliminate the combustion by-products but deprive shisha consumers of the experience that comes from traditional tobacco. Summary of the Invention
[0006] Other shisha devices have been proposed that employ electric heaters to heat but not burn the tobacco. Such electrically heated, non-combustion shisha devices heat the tobacco substrate to a temperature sufficient to generate an aerosol from the substrate without burning the substrate, thus reducing or eliminating the by-products associated with tobacco combustion.
[0007] The shisha device may employ a cartridge for containing an aerosol-forming substrate. The cartridge may be filled with such an aerosol-forming substrate. The aerosol-forming substrate may comprise tobacco, preferably a shisha substrate, such as molasses (a mixture of tobacco, water, sugar, and other ingredients such as glycerin and flavorings). A heating system in the electrically heated shisha device heats the contents of the cartridge to generate an aerosol, which is carried to the user via the airflow path.
[0008] To facilitate airflow through the cartridge and aerosol flow from the cartridge, the shisha cartridge may have one or more holes through one or more walls. The cartridge may include one or more holes at the top, one or more holes at the bottom, or both one or more holes at the top and one or more holes at the bottom. Holes may also be located along the sides of the cartridge.
[0009] If not sealed, the holes or openings in the cartridge can result in leakage problems as well as loss of freshness (e.g., moisture content) or contamination of the substrate. For one or more reasons, such as to maintain freshness, to prevent leakage of the substrate, or to preserve the quality and integrity of the substrate during storage, it is desirable to close or seal the openings or holes in the cartridge before use, or between uses if the entire contents of the cartridge are not used at one time.
[0010] It is desirable to provide a cartridge (such as a shisha cartridge) that remains sealed until the outer layer of the lid is removed.It is desirable to provide a cartridge (such as a shisha cartridge) where one or more openings are automatically formed in the cartridge body when the outer layer of the lid is removed.It is desirable to provide a shisha cartridge where the outer layer of the lid is part of the outer packaging.
[0011] According to an embodiment of the present disclosure, there is provided a cartridge for containing an aerosol-forming substrate. The cartridge may comprise a body. The body may comprise a sidewall and at least one lid arranged to cover the top, bottom, or both the top and bottom. The cartridge may comprise a cavity within the body. The cavity may be configured to receive the aerosol-forming substrate. The at least one lid may comprise an inner layer facing the cavity and an outer layer facing the outside of the body. The inner layer may comprise a weakened area. When the outer layer is removed, the weakened area of the inner layer may form an opening. The cavity may be in fluid communication with the outside of the cartridge body through the formed opening. In some embodiments, the aerosol-forming substrate comprises tobacco. In some embodiments, the cartridge is a shisha cartridge, and the aerosol-forming substrate comprises a shisha substrate (such as a hookah). In some embodiments, one or more additional openings are provided in the body of the cartridge, as described below. This advantageously provides an airflow path through the cartridge.
[0012] According to an embodiment of the present disclosure, there is provided a cartridge for containing an aerosol-forming substrate. The cartridge comprises a body. The body comprises a sidewall and at least one lid arranged to cover the top, bottom, or both the top and bottom. The cartridge comprises a cavity within the body. The cavity is configured to receive the aerosol-forming substrate. The at least one lid comprises an inner layer facing the cavity and an outer layer facing the outside of the body. The inner layer comprises a weakened area. When the outer layer is removed, the weakened area of the inner layer forms an opening. The cavity is in fluid communication with the outside of the cartridge body through the formed opening. In some embodiments, the aerosol-forming substrate comprises tobacco. In some embodiments, the cartridge is a shisha cartridge, and the aerosol-forming substrate comprises a shisha substrate (such as a hookah). In some embodiments, one or more additional openings are provided in the body of the cartridge, as described below. This advantageously provides an airflow path through the cartridge.
[0013] Various embodiments of the present disclosure relate to a cartridge including a lid having an inner layer facing the cavity and an outer layer facing the outside of the cartridge body. The inner layer has a weakened area. When the outer layer is removed, the weakened area of the inner layer forms an opening. In some embodiments, when the outer layer is removed, the weakened area of the inner layer deforms to form the opening. In some embodiments, when the outer layer is removed, the weakened area of the inner layer undergoes mechanical failure to form the opening. The weakened area can assume various shapes and sizes. The weakened area may comprise multiple weakened areas. The weakened area may comprise a pattern of multiple weakened areas. The multiple weakened areas may be distributed uniformly across the inner layer. In some embodiments, the pattern may comprise dots, parallel lines, non-parallel lines, a spiral pattern, or a combination thereof. The lid may cover the top or bottom of the cartridge, or both the top and bottom. Advantageously, the multiple weakened areas may reduce the amount of force applied by a user to remove the outer layer to form an opening in the inner layer. Advantageously, providing a pattern of multiple areas of weakness may help ensure the formation of an opening in the inner layer when the outer layer is removed, regardless of one or more of the orientation, direction of force, and amount of force applied by a user to remove the outer layer. Advantageously, an even distribution of multiple areas of weakness helps ensure the formation of one or more openings in the inner layer when the outer layer is removed.
[0014] The term "weakened area" is used herein to refer to an area or portion that is weaker (e.g., has lower mechanical strength) than the area surrounding the weak area. The weak area may comprise a fracture line. When sufficient force is applied to the lid (e.g., by pulling, peeling, or tearing), mechanical failure (e.g., tearing) occurs at the weak area. Mechanical failure may occur along the fracture line. The weak area may be achieved in any suitable manner. For example, the weak area may be achieved by providing reduced mechanical strength in the area of the weak area. Examples of ways to achieve reduced material strength include reducing the thickness of the material, perforating or scoring, etching, laser cutting, providing a weaker material than the surrounding area, providing a frangible material or area, or providing an adhesive in the weak area and no adhesive in the surrounding area. A frangible material is understood to mean a material that breaks when force is applied without elastically deforming and without retaining its cohesion as a single body.
[0015] In some embodiments, the area of weakness may be formed by scoring the inner layer. In some embodiments, the area of weakness may be formed by pressing an area on the inside of the lid. In some embodiments, the area of weakness may be formed by thinning or weakening the material by etching, laser, etc. In some embodiments, the area of weakness may be formed by adhesively bonding a portion of the inner layer to the outer layer and leaving an adjacent portion unbonded.
[0016] The outer layer may be part of an outer packaging that at least partially surrounds the body of the cartridge, and when the cartridge is removed from the outer packaging, the outer layer is removed from the body, leaving an opening on the inner layer.
[0017] In embodiments where the lid covers only one of the top and bottom, the other of the top and bottom may include a hole and a removable sticker or film covering the hole. Alternatively, the other of the top and bottom may be pierceable rather than holeless. The piercing may be achieved using a hookah device or accessory. In embodiments where the lid covers only the bottom, the top may be an open top covered by a removable lid, removal of the lid revealing the open top.
[0018] Some embodiments of the present disclosure relate to a shisha cartridge. In some embodiments, the cartridge is a shisha cartridge including a lid having an inner layer facing a cavity and an outer layer facing the outside of the shisha cartridge body. The inner layer has a weakened area. When the outer layer is removed, the weakened area of the inner layer forms an opening. The weakened area can have various shapes and sizes. The weakened area may consist of a pattern of weakened areas. The lid can cover the top or bottom, or both the top and bottom, of the shisha cartridge.
[0019] The cartridge may be closed before use. Prior to use, a user may remove the outer layer of the lid from the cartridge. An opening is formed in the top or bottom, or both the top and bottom, by removing the outer layer of the lid. Advantageously, the cartridge may be easy to use. Advantageously, using the cartridge may be clean and intuitive. The cartridge may therefore reduce the likelihood of leakage of the contents. Advantageously, the cartridge may therefore be better to store and transport. The cartridge may also be less likely to dry out, allowing the contents to remain fresher for longer, while also reducing the likelihood of degradation of flavorants, glycerol, or other components that may be part of the substrate.
[0020] According to an embodiment of the present disclosure, there is provided an aerosol generation system comprising the above-described cartridge and an aerosol generation device. The cartridge may include an aerosol-generating substrate disposed therein. The aerosol generation device may include a receptacle for receiving the cartridge. The aerosol generation device may include a heating element for heating the aerosol-generating substrate when the cartridge is received in the receptacle of the aerosol generation device.
[0021] According to an embodiment of the present disclosure, there is provided an aerosol generation system comprising the above-described cartridge and an aerosol generation device. The cartridge includes an aerosol-generating substrate disposed therein. The aerosol generation device includes a receptacle for receiving the cartridge. The aerosol generation device includes a heating element for heating the aerosol-generating substrate when the cartridge is received in the receptacle of the aerosol generation device.
[0022] According to an embodiment of the present disclosure, there is provided a shisha system comprising the above-described cartridge and a shisha device. The cartridge may include an aerosol-generating substrate disposed therein. The shisha device may comprise a receptacle for receiving the cartridge. The shisha device may comprise a heating element for heating the aerosol-generating substrate when the cartridge is received in the receptacle of the shisha device. The shisha device may comprise a vessel having a liquid fill level and defining a headspace above the liquid fill level. The shisha device may comprise an aerosol conduit for conveying aerosol from the receptacle to the vessel. The shisha device may comprise an outlet in fluid communication with the headspace.
[0023] According to an embodiment of the present disclosure, there is provided a shisha system comprising the above-described cartridge and a shisha device. The cartridge includes an aerosol-generating substrate disposed therein. The shisha device comprises a receptacle for receiving the cartridge. The shisha device comprises a heating element for heating the aerosol-generating substrate when the cartridge is received in the receptacle of the shisha device. The shisha device comprises a vessel having a liquid fill level and defining a headspace above the liquid fill level. The shisha device comprises an aerosol conduit for conveying aerosol from the receptacle to the vessel and an outlet in fluid communication with the headspace.
[0024] In some embodiments where the lid is part of the outer packaging, the opening in the cartridge may be conveniently formed by removing the cartridge from the outer packaging. Additionally, an outer packaging that also functions as a lid saves material and manufacturing costs.
[0025] The term "aerosol" is used herein to refer to a suspension of solid particles or liquid droplets in a gas, such as air, which may contain volatile flavor compounds. The term "aerosol-forming substrate" is used herein to refer to a material that is heated to volatilize one or more components of the aerosol-forming substrate and generate an aerosol. The aerosol-forming substrate may be located inside a cartridge.
[0026] The terms "unitary" and "integrally formed" are used herein to describe elements that are formed of one piece (a single, inseparable part) and cannot be separably removed from one another without causing structural damage to that part.
[0027] Also, as used herein, the singular forms "a," "an," and "the" include embodiments having plural referents unless the context clearly dictates otherwise.
[0028] As used herein, "or" is generally used in the sense of "one or the other, or both," unless the context clearly dictates otherwise.
[0029] The term "about" is used herein in conjunction with numerical values to include normal variations in measurements as expected by those skilled in the art, and is understood to have the same meaning as "approximately." The term "about" is understood to encompass a typical range of error. A typical range of error may be, for example, ±5% of the indicated value.
[0030] As used herein, the words "have," "having," "include," "including," "comprise," "comprising," and the like are used in an open-ended sense and generally mean "including, but not limited to." It will be understood that "consisting essentially of," "consisting of," and the like are encompassed by "comprising" and the like.
[0031] The words "preferred" and "preferably" refer to embodiments of the invention that may offer certain advantages, under particular circumstances. However, other embodiments may also be preferred, under the same or other circumstances. Moreover, the recitation of one or more preferred embodiments does not imply that other embodiments are not useful, and is not intended to exclude other embodiments from the scope of the present disclosure, including the claims.
[0032] As used herein, the term "substantially" has the same meaning as "significantly" and may be understood to have at least about 90%, at least about 95%, or at least about 98% of the meaning of the subsequent modifying term. As used herein, the term "not substantially" has the same meaning as "not significantly" and may be understood to have the opposite meaning of "substantially," i.e., to have at most 10%, at most 5%, or at most 2% of the meaning of the subsequent modifying term.
[0033] The cartridge of the present disclosure may include any suitable body defining a cavity. An aerosol-forming substrate may be disposed within the cavity of the cartridge. The body is preferably formed from one or more heat-resistant materials, such as a heat-resistant metal or polymer. The body may include a thermally conductive material. For example, the body may include aluminum, copper, zinc, nickel, silver, any alloy thereof, and combinations thereof. Preferably, the body includes aluminum. In some embodiments, the body includes a laminate material.
[0034] According to one embodiment, the cartridge includes a lid having an inner layer facing the cavity and an outer layer facing the outside of the cartridge body. The inner layer has a weakened area. The lid may cover the top or bottom, or both the top and bottom, of the cartridge. When the outer layer is removed, the weakened area in the inner layer forms an opening. The opening may function as an inlet, an outlet, or both an inlet and an outlet for the cartridge.
[0035] The areas of weakness can be provided in a variety of shapes and sizes. The areas of weakness may consist of a pattern of areas of weakness. In some embodiments, the pattern consists of dots, parallel lines, non-parallel lines, a spiral pattern, or a combination thereof.
[0036] The cartridge may be of any suitable shape. For example, the cartridge may have a shape configured to be received by a shisha device. The cartridge may have a substantially cubic shape, a cylindrical shape, a frusto-conical shape, or any other suitable shape. Preferably, the cartridge has a generally cylindrical or frusto-conical shape.
[0037] The cartridge may be used in an aerosol generating device. The aerosol generating device may include, for example, an aerosol generating component, a power source, an airflow path having an airflow inlet and an airflow outlet, and a receptacle configured to receive the cartridge. The aerosol generating device may include control electronics or other features configured to facilitate use and / or operation of the device. The aerosol generating device may be a shisha device. The aerosol generating element may be a heating element.
[0038] The aerosol-generating device (e.g., a hookah device) is configured to heat the aerosol-forming substrate in the cartridge. The device may be configured to heat the aerosol-forming substrate in the cartridge by conduction. The cartridge is preferably shaped and sized to allow contact with the heating element of the hookah device or to minimize the distance between the heating element and the aerosol-forming substrate in the cartridge to provide efficient heat transfer from the heating element to the aerosol-forming substrate in the cartridge. Heat may be generated by any suitable mechanism, such as by resistance heating, induction, infrared heating, or any combination of two or more of resistance heating, induction heating, and infrared heating. To facilitate induction heating, the cartridge may be provided with a susceptor. For example, the cartridge body may be made of or include a material capable of functioning as a susceptor (e.g., aluminum), or a susceptor material may be provided within the cartridge cavity. The susceptor material may be provided within the cartridge cavity in any form (e.g., powder, solid block, fragments, etc.).
[0039] To facilitate infrared heating, in some embodiments, the cartridge may be configured to be heated by infrared radiation, or the cartridge may be configured to heat the aerosol-forming substrate by conduction. For example, in some embodiments, the cartridge has an outer surface comprising a high-emissivity material, while at least one wall of the cartridge body is made of a thermally conductive material. The high-emissivity material may have an emissivity of at least 0.8, preferably at least 0.9. The high-emissivity material may be applied as a coating. The high-emissivity material may comprise one or more transition metal oxides. The high-emissivity material may be Cr2O3, CoO x , Fe2O3, and NiO. The high-emissivity material may be coated on the outer surface of the cartridge. The coating may comprise a refractory pigment and a binder. The refractory pigment may be selected from one or more of zirconia, zirconia silicate, aluminum oxide, aluminum silicate, and silicon oxide. In this manner, for example, a photonic source provided as part of the aerosol-generating device may generate electromagnetic radiation to heat the high-emissivity material to indirectly heat the aerosol-forming substrate in the cartridge.
[0040] To facilitate infrared heating, in some embodiments, the apparatus may be arranged to heat the aerosol-forming substrate with infrared radiation. The apparatus may comprise a photonic device configured to generate a beam of IR radiation directed at the aerosol-forming substrate. In some embodiments, the wavelength of the beam of IR radiation ranges from 800 nm (nanometers) to 2300 nm, preferably from 1300 nm to 2000 nm. In some embodiments, the diameter of the beam of IR radiation ranges from 1 mm (millimeters) to 110 mm, preferably from 2 mm to 100 mm, and more preferably from 5 mm to 80 mm. In some embodiments, the power of the beam of IR radiation ranges from 0.1 W to 30 W, preferably from 0.5 W to 25 W, more preferably from 1 W to 20 W, and more preferably from 1 W to 3 W. In some embodiments, the energy density of the beam of IR radiation ranges from 0.010 W / cm. 2 (Watts / square centimeter) ~30W / cm 2 , preferably 0.050 W / cm 2 ~6 W / cm 2 , more preferably 0.100 W / cm 2 ~3 W / cm 2 may be in the range of
[0041] Any suitable aerosol-forming substrate may be provided in the cavity of the cartridge. The aerosol-forming substrate is preferably a substrate capable of releasing a volatile compound. The aerosol-forming substrate is preferably a substrate capable of releasing a compound capable of forming an aerosol. The volatile compound may be released by heating the aerosol-forming substrate. The aerosol-forming substrate may be solid or liquid, or may comprise both solid and liquid components. The aerosol-forming substrate is preferably a shisha substrate. Shisha substrate is understood to mean a consumable material suitable for use in a shisha device. The shisha substrate may comprise molasses.
[0042] The aerosol-forming substrate may comprise nicotine. The nicotine-containing aerosol-forming substrate may comprise a nicotine salt matrix. The aerosol-forming substrate may comprise a plant-derived material. The aerosol-forming substrate preferably comprises tobacco. The tobacco-containing material preferably comprises volatile tobacco flavour compounds that are released from the aerosol-forming substrate on heating. The aerosol-forming substrate may comprise a homogenised tobacco material. The homogenised tobacco material may be formed by agglomerating particulate tobacco. The aerosol-forming substrate may alternatively or additionally comprise a non-tobacco-containing material. The aerosol-forming substrate may comprise a homogenised plant-derived material.
[0043] The aerosol-forming substrate may comprise, for example, one or more of powder, granules, pellets, pieces, spaghetti, strips, or sheets. The aerosol-forming substrate may contain one or more of herbal leaves, tobacco leaves, tobacco stem pieces, reconstituted tobacco, homogenized tobacco, extruded tobacco, and expanded tobacco.
[0044] The aerosol-forming substrate may contain at least one aerosol former. Suitable aerosol formers include compounds or mixtures of compounds that facilitate the formation of a dense, stable aerosol during use and that are substantially resistant to thermal decomposition at the operating temperatures of the hookah device. Suitable aerosol formers are well known in the art and include, but are not limited to, polyhydric alcohols (e.g., triethylene glycol, 1,3-butanediol, glycerin), esters of polyhydric alcohols (e.g., glycerol monoacetate, diacetate, or triacetate), and aliphatic esters of monocarboxylic, dicarboxylic, or polycarboxylic acids (e.g., dimethyl dodecanedioate, dimethyl tetradecanedioate, etc.). Particularly preferred aerosol formers are polyhydric alcohols or mixtures thereof (e.g., triethylene glycol, 1,3-butanediol, and most preferably, glycerin). The aerosol-forming substrate may contain any suitable amount of aerosol former. For example, the aerosol former content of the substrate may be 5% or more by dry weight, and preferably greater than 30% by dry weight. The aerosol former content may be less than about 95% on a dry weight basis. Preferably, the aerosol former content is up to about 55%.
[0045] The aerosol-forming substrate preferably comprises nicotine and at least one aerosol former, hi some embodiments, the aerosol former is glycerin or a mixture of glycerin and one or more other suitable aerosol formers (such as those described above).
[0046] The aerosol-forming substrate may contain other additives and ingredients (such as flavorings, sweeteners, etc.). In some embodiments, the aerosol-forming substrate contains one or more sugars in any suitable amount. Preferably, the aerosol-forming substrate contains invert sugar. Invert sugar is a mixture of glucose and fructose obtained by splitting sucrose. Preferably, the aerosol-forming substrate contains about 1% to about 40% by weight of a sugar (such as invert sugar). In some embodiments, the one or more sugars may be mixed with a suitable carrier, such as corn starch or maltodextrin.
[0047] In some embodiments, the aerosol-forming substrate comprises one or more sensory enhancers. Suitable sensory enhancers include flavors and sensates (such as cooling agents). Suitable flavors include natural or synthetic menthol, peppermint, spearmint, coffee, tea, spices (such as cinnamon, clove, ginger, or combinations thereof), cocoa, vanilla, fruit flavors, chocolate, eucalyptus, geranium, eugenol, agave, juniper, anethole, linalool, and any combination thereof.
[0048] In some embodiments, the aerosol-forming substrate is in the form of a suspension. For example, the aerosol-forming substrate may comprise molasses. As used herein, "molasses" refers to an aerosol-forming substrate composition comprising about 20% or more sugars. For example, molasses may comprise at least about 25% sugars by weight, such as at least about 35% sugars by weight. Typically, molasses contains less than about 60% sugars by weight, such as less than about 50% sugars by weight.
[0049] Any suitable amount of aerosol-forming substrate (e.g., molasses or tobacco substrate) may be disposed in the cavity. In some preferred embodiments, about 3 g to about 25 g of aerosol-forming substrate is disposed in the cavity. The cartridge may contain at least 6 g, at least 7 g, at least 8 g, or at least 9 g of aerosol-forming substrate. The cartridge may contain up to 15 g, up to 12 g, up to 11 g, or up to 10 g of aerosol-forming substrate. Preferably, about 7 g to about 13 g of aerosol-forming substrate is disposed in the cavity.
[0050] The aerosol-forming substrate may be provided on or embedded within a thermally stable carrier. The term "thermally stable" is used herein to refer to a material that does not substantially degrade at temperatures to which the substrate is typically heated (e.g., about 150°C to about 300°C). The carrier may comprise a thin layer of the substrate deposited on a first major surface, a second major outer surface, or both the first and second major surfaces. The carrier may be formed, for example, of paper or a paper-like material, a nonwoven carbon fiber mat, a low-mass open-mesh metal screen, or a perforated metal foil, or any other thermally stable polymeric matrix. Alternatively, the carrier may take the form of a powder, granules, pellets, pieces, spaghetti, strips, or sheets. The carrier may be a nonwoven fabric or fiber bundle incorporating tobacco components. The nonwoven fabric or fiber bundle may comprise, for example, carbon fibers, natural cellulose fibers, or cellulose derivative fibers.
[0051] The cartridge body may include one or more walls. In some embodiments, the body includes a top wall, a bottom wall, and a side wall. In some embodiments, the lid forms the top wall, or the bottom wall, or both the top and bottom walls. The side wall may be cylindrical or frusto-conical extending from bottom to top. The body may include one or more parts. For example, the side wall and the bottom wall may be a single, integral part. The side wall and the bottom wall may be two parts configured to engage with each other in any suitable manner. For example, the side wall and the bottom wall may be configured to engage with each other by a threaded or interference fit. The side wall and the bottom wall may be two parts bonded together. For example, the side wall and the bottom wall may be bonded together by welding or with an adhesive. The top wall and the side wall may be a single, integral part. The side wall and the top wall may be two parts configured to engage with each other in any suitable manner. For example, the side wall and the top wall may be configured to engage with each other by a threaded or interference fit. The side wall and the top wall may be two pieces joined together. For example, the side wall and the top wall may be joined together by welding or with an adhesive. The top wall, side wall, and bottom wall may all be a single, integral piece. The top wall, side wall, and bottom wall may be three separate pieces configured to engage with each other in any suitable manner. For example, the top wall, side wall, and bottom wall may be configured to engage with each other by threading, an interference fit, welding, or an adhesive.
[0052] One or more walls of the body may form a heatable wall or surface. As used herein, "heatable wall" and "heatable surface" refer to an area of a wall or surface to which heat may be applied, either directly or indirectly. A heatable wall or surface may function as a heat transfer surface through which heat may be transferred from the outside of the body to the cavity or to the interior surface of the cavity.
[0053] The body of the cartridge preferably has a length (e.g., axial length along the vertical central axis) of about 15 cm or less. In some embodiments, the body has a length of about 10 cm or less. The body may have an inner diameter of about 1 cm or more. The inner diameter of the body may be about 1.75 cm or more. The cartridge may have a cavity with a length of about 70 cm or less. 2 ~Approx. 100cm 2 etc., about 25cm 2 ~Approx. 100cm 2 The cavity may have a heatable surface area of about 10 cm. 3 ~about 50cm 3 Preferably, the length is about 25 cm. 3 ~about 40cm 3 In some embodiments, the body has a length ranging from about 3.5 cm to about 7 cm. The inner diameter of the body may be from about 1.5 cm to about 4 cm. The body may be inserted into the cavity at a depth of about 70 cm. 2 ~Approx. 100cm 2 etc., about 30cm 2 ~Approx. 100cm 2 The cavity may have a heatable surface area of about 10 cm. 3 ~about 50cm 3 Preferably, the length is about 25 cm. 3 ~about 40cm 3 The body is preferably cylindrical or frusto-conical.
[0054] According to one embodiment, the cartridge includes a lid having an inner layer facing the cavity and an outer layer facing the outside of the cartridge body. The inner layer has a weakened area that can form an opening when the outer layer is removed. The walls of the body may be made of one or more materials. The inner and outer layers of the lid may be made of the same, similar, or different materials as the walls of the body. The body may include one or more heat-resistant materials, such as a heat-resistant metal or polymer. For example, the body may include aluminum, copper, zinc, nickel, silver, any alloy thereof, and combinations thereof. The body may also include one or more heat-deformable materials, such as a heat-deformable polymer or other material that can change shape at a threshold temperature. In some embodiments, the body includes a laminate material or multiple layers including two or more materials.
[0055] The openings, including the formed openings and any other openings in the cartridge, may provide openings or vents through one or more walls of the body. The vents may be inlets, outlets, or both. The vents may be located in the bottom wall, top wall, side walls, or combinations thereof of the cartridge. In some embodiments, the vents (e.g., one or more inlets and one or more outlets) are formed when the outer layer of the lid is removed to allow air to flow through the aerosol-forming substrate when the cartridge is used with a shisha device.
[0056] The size of the opening formed in the weakened region after removing the outer layer may be selected to provide a desired resistance to withdrawal (RTD) through the cartridge. For example, the weakened region may cover 5% or more, 10% or more, 15% or more, 20% or more, 25% or more, 30% or more of the lid surface area, or 50% or less, 45% or less, 40% or less, 35% or less, 30% or less, 25% or less, or 20% or less of the lid surface area. In one embodiment, the weakened region (or opening formed in the weakened region) may cover approximately 30% of the lid surface area.
[0057] The cartridge may include additional openings (or in some embodiments, no top wall) to form one or more additional vent holes in the cartridge. The additional openings may be covered by a peelable label, such as a sticker, foil, etc. The cartridge may also include a penetrable wall. The penetrable wall may be pierced to form the opening using a shisha device or accessory.
[0058] The one or more inlets and outlets, once formed or opened, are preferably sized and shaped to provide an appropriate resistance to withdrawal (RTD) through the cartridge. In some embodiments, the RTD through the cartridge from inlet(s) to outlet(s) may be about 10 mmH2O to about 50 mmH2O, preferably about 20 mmH2O to about 40 mmH2O. The RTD of a sample refers to the difference in static pressure between the two ends of the sample when traversed by an airflow under steady conditions with a volumetric flow rate of 17.5 milliliters / second at the output end. The RTD of a sample may be measured using the method described in ISO standard 6565:2002.
[0059] After being formed or opened, one or more openings on the body may cover 5% or more, 10% or more, 15% or more, 20% or more, or 25% or more of the area of the wall in which the opening is located. For example, if the opening is on the top wall, the opening may cover at least 5% of the area of the top wall. One or more openings on the body may cover 75% or less, 50% or less, 40% or less, or 30% or less of the area of the wall in which the opening is located.
[0060] The cartridge may include a removable seal or film that covers one or more inlets or outlets prior to use. The removable seal or film is preferably sufficient to prevent airflow through the inlets and outlets to prevent leakage of the cartridge contents and to extend shelf life. The removable seal or film may comprise a peelable label such as a sticker, foil, or the like. The label, sticker, or foil may be affixed to the cartridge in any suitable manner, such as by adhesive, crimping, welding, or otherwise bonding to the container. The removable seal or film may include a tab that can be grasped to peel or remove the label, sticker, or foil from the cartridge.
[0061] The inner layer of the lid may be constructed from any suitable material. For example, the inner layer may include a polymeric material, metal, paper, or a combination thereof. In one embodiment, the inner layer includes a metal foil. In one embodiment, the inner layer includes a polymeric foil. The inner layer may have any suitable thickness. For example, the inner layer may have a thickness of 20 μm or more, 50 μm or more, 100 μm or more, or 200 μm or more. The inner layer may have a thickness of 1 mm or less, 750 μm or less, or 500 μm or less. The thickness of the inner layer may vary across the lid. For example, the thickness of the inner layer at the weakened region may be less than in areas outside the weakened region.
[0062] The inner and outer layers of the lid may be bonded together. For example, the inner and outer layers of the lid may be bonded together by an adhesive layer. The adhesive layer may comprise, for example, an adhesive, a solder, or other bond capable of bonding the inner and outer layers together.
[0063] The weakened area may be provided or formed by any suitable technique. For example, the weakened area may be provided or formed by scoring, cutting, or laser cutting the inner layer. The scoring, cutting, or laser cutting may result in a partial cut. The weakened area may be provided or formed by pressing or embossing an inner area of the lid. This pressing may form a thinner (fragile) area of the inner layer. The inner and outer layers may be first laminated together. This pressing may compress a portion of the inner layer into the outer layer. Removal of the outer layer from the cartridge may remove the compressed portion into the outer layer, forming an opening in the inner layer. In another example, the weakened area may be provided or formed by etching the inner layer. Etching may form a thinner (fragile) area of the inner layer. The weakened area may be provided or formed by providing a weaker or more fragile material compared to the surrounding area.
[0064] In some embodiments, the material of the inner layer is frangible. When a force (such as a pull or tear) is applied to the frangible material, a mechanical failure occurs and one or more openings are formed. Outside the weakened area, the frangible material may be supported, for example, by being adhered to the outer layer. In one example, an adhesive layer is provided in one area and not in a surrounding area, such that a weakened area is formed between the bonded and unbonded areas. The adhesive layer may, for example, bond the inner and outer layers together. The adhesive layer may comprise, for example, glue, solder, or other bonding agent capable of bonding the inner and outer layers together. The material of the inner layer may be frangible due to its thickness (e.g., a thin layer of plastic), its material properties (e.g., aluminum foil or paper), or both its thickness and material properties.
[0065] The outer layer may comprise any suitable material. For example, the outer layer may comprise a polymeric material, metal, paper, cardboard, or a combination thereof. In one embodiment, the outer layer comprises cardboard. In one embodiment, the outer layer comprises metal. In one embodiment, the outer layer comprises a polymeric material. The outer layer may have any suitable thickness. For example, the outer layer may have a thickness of 20 μm or more, 100 μm or more, 500 μm or more, or 1 mm or more. The outer layer may have a thickness of 5 mm or less, 4 mm or less, 3 mm or less, 2 mm or less, or 1 mm or less.
[0066] In one embodiment, the outer layer comprises cardboard and the inner layer comprises metal foil. In one embodiment, the outer layer comprises cardboard and the inner layer comprises a polymeric film. In one embodiment, the outer layer comprises cardboard and the inner layer comprises paper. In one embodiment, the outer layer comprises metal and the inner layer comprises metal foil. In one embodiment, the outer layer comprises metal and the inner layer comprises a polymeric film. In one embodiment, the outer layer comprises a polymeric material and the inner layer comprises a metal foil or polymeric film. The outer and inner layers may be adhered together by an adhesive layer.
[0067] The outer layer may be constructed so that it can be removed (e.g., pulled, peeled, or torn) from the cartridge without tools. Preferably, the outer layer is constructed so that removing the outer layer also removes a portion of the inner layer. The inner layer can tear (e.g., exhibit mechanical failure) along one or more edges of the weakened portion. The inner layer can tear along a break line defined by the weakened portion. According to some embodiments, removing the outer layer and tearing at least a portion of the inner layer forms one or more openings in the cartridge.
[0068] The lid or outer layer may include features to facilitate removal of the outer layer, for example, the lid or outer layer may include a pull tab.
[0069] In some embodiments, the outer layer may be part of the outer packaging. In some embodiments, the outer layer may be integral with the outer packaging. The outer layer may include text, images, logos, branding, or other indicia. The outer packaging may at least partially surround the body of the cartridge. For example, the outer packaging may surround or cover the top, or the bottom, or both the top and bottom of the cartridge. The outer packaging may surround or cover the top and at least one side of the body, or the bottom and at least one side of the body, or the top, bottom, and at least one side of the body. When the cartridge is removed from the outer packaging, the outer layer is detached from the body and an opening is formed in the inner layer. In some embodiments, when the cartridge is removed from the outer packaging, the cartridge body is separated from the packaging, while the outer layer remains attached to the packaging, and an opening is formed in the inner layer.
[0070] The outer layer may be part of an outer packaging that at least partially surrounds multiple cartridges. The outer packaging may form a connected top, a connected bottom, or both a connected top and bottom for multiple cartridges. A connected top or bottom may refer to a top or bottom that spans the inner layer of multiple cartridges. For example, the outer layer may be part of an outer packaging that houses two or more, three or more, or four or more cartridges. The outer layer may be part of an outer packaging that houses up to six, eight, or ten cartridges. In some embodiments, the outer layer may be part of an outer packaging that houses four cartridges. When a cartridge is removed from the outer packaging, the cartridge body is separated from the packaging. The portion of the packaging that forms the outer layer on the removed cartridge may be separated from the cartridge body and the inner layer and may remain as part of the packaging. Alternatively, the portion of the packaging that forms the outer layer on the removed cartridge may be separated from the remainder of the packaging and remain on the cartridge body. The remaining outer layer may then be later removed from the cartridge body to form an opening in the weakened area of the inner layer.
[0071] In some embodiments, the cartridge is a shisha cartridge that can be used with any suitable shisha device. The shisha device is preferably configured to heat the aerosol-forming substrate in the cartridge sufficiently to form an aerosol from the aerosol-forming substrate, but not to combust the aerosol-forming substrate. For example, the shisha device may be configured to heat the aerosol-forming substrate to a temperature in the range of about 150°C to about 300°C, more preferably about 180°C to about 250°C, or about 200°C to about 230°C.
[0072] The shisha device may include a receptacle for receiving the cartridge. The shisha device may include a heating element configured to contact or be proximate to the body of the cartridge when the cartridge is received in the receptacle. The heating element may form at least a portion of the receptacle. For example, the heating element may form at least a portion of the surface of the receptacle. The shisha cartridge may be configured to transfer heat from the heating element to the aerosol-forming substrate in the cavity by conduction. In some embodiments, the heating element includes an electric heating element. In some embodiments, the heating element includes a resistive heating component. For example, the heating element may include one or more resistive wires or other resistive elements. The resistive wire may be in contact with a thermally conductive material to distribute the generated heat over a wider area. Examples of suitable conductive materials include aluminum, copper, zinc, nickel, silver, and combinations thereof. The heating element may form at least a portion of the surface of the receptacle.
[0073] The shisha device may include control electronics operably coupled to the heating element. The control electronics may be configured to control heating of the heating element. The control electronics may be configured to control the temperature to which the aerosol-forming substrate in the cartridge is heated. The control electronics may be provided in any suitable form, for example, a controller, or a memory and a controller. The controller may include one or more of an application specific integrated circuit (ASIC) state machine, a digital signal processor, a gate array, a microprocessor, or equivalent discrete or integrated logic circuitry. The control electronics may include a memory containing instructions that cause one or more components of the circuitry to perform functions or aspects of the control electronics. The functionality attributed to the control electronics in this disclosure may be embodied as one or more of software, firmware, and hardware.
[0074] The electronic circuitry may include a microprocessor, which may be a programmable microprocessor. The electronic circuitry may be configured to regulate the supply of electrical power. The electrical power may be supplied to the heater element in the form of current pulses.
[0075] In some embodiments, the control electronics may be configured to monitor the electrical resistance of the heating element and to control the supply of power to the heating element in response to the electrical resistance of the heating element. In this manner, the control electronics may regulate the temperature of the resistive element.
[0076] The shisha device may include a temperature sensor, such as a thermocouple. The temperature sensor may be operably coupled to the control electronics to control the temperature of the heating element. The temperature sensor may be positioned in any suitable location. For example, the temperature sensor may be configured to be inserted into the cartridge when received in the receptacle to monitor the temperature of the heated aerosol-forming substrate. Additionally or alternatively, the temperature sensor may be in contact with the heating element. Additionally or alternatively, the temperature sensor may be positioned to detect the temperature at the aerosol outlet of the shisha device or a portion thereof. The sensor may send a signal related to the sensed temperature to the control electronics. The control electronics may adjust the heating of the heating element in response to the signal to achieve the appropriate temperature at the sensor.
[0077] The control electronics may be operably coupled to a power source. The shisha device may include any suitable power source. For example, the power source of the shisha device may be a battery or a set of batteries. The power source battery may be rechargeable, removable and replaceable, or rechargeable, removable, and replaceable. Any suitable battery may be used, for example, a commercially available heavy-duty type battery or a standard battery (such as those used for heavy-duty industrial power tools). Alternatively, the power source may be any type of power source, including a supercapacitor or hypercapacitor. Alternatively, the assembly may be connected to an external power source or may be electrically and electronically designed for such purpose. Regardless of the type of power source employed, the power source preferably provides sufficient energy for the normal functioning of the assembly for at least one shisha session until the aerosol is depleted from the aerosol-forming substrate in the cartridge before being recharged or requiring connection to an external power source. The power source preferably provides sufficient energy for the normal functioning of the assembly for at least about 70 minutes of continuous operation of the device before being recharged or requiring connection to an external power source.
[0078] In one embodiment, a shisha device includes an aerosol-generating element including a cartridge receptacle, a heating element, an aerosol outlet, and an ambient air inlet. The cartridge receptacle is configured to receive a cartridge according to the present disclosure containing an aerosol-forming substrate. The heating element may define at least a portion of a surface of the receptacle.
[0079] The shisha device includes an outside air inlet channel in fluid communication with the receptacle. During use, when the substrate within the cartridge is heated, the aerosol former components in the substrate vaporize. Air flowing through the cartridge from the outside air inlet channel becomes entrained with the aerosol generated from the aerosol former components in the cartridge.
[0080] Some electrically heated shisha devices employ preheated air and typically employ airflow paths that move the air near the heat source as the puff occurs. Additionally, some electrically heated shisha devices employ elements that increase radiant heat transfer by increasing the heated surface area.
[0081] The fresh air inlet channel may include one or more openings through the cartridge receptacle such that fresh air from outside the shisha device may flow through the channel and through the one or more openings into the cartridge receptacle. If the channel includes two or more openings, it may include a manifold for directing air flowing through the channel to each opening. Preferably, the shisha device includes two or more fresh air inlet channels.
[0082] As described above, the cartridge includes one or more openings (e.g., inlets or outlets) formed in the body to allow air to flow through the cartridge. If the receptacle includes one or more inlet openings, at least some of the inlets in the cartridge may align with openings in the top of the receptacle. The cartridge may include alignment features configured to mate with complementary alignment features in the receptacle to align the inlets of the cartridge with the openings in the receptacle when the cartridge is inserted into the receptacle.
[0083] Air entering the cartridge may flow across, through, or across and through the aerosol-forming substrate, entraining the aerosol and exiting the cartridge and receptacle via the aerosol outlet, from which the aerosol-carrying air enters the vessel of the shisha device.
[0084] The shisha device may include any suitable vessel defining an interior volume configured to contain a liquid and defining an outlet in a headspace above a liquid fill level. The vessel may include an optically transparent or opaque housing that allows a consumer to observe the contents contained in the vessel. The vessel may include a liquid fill boundary, such as a liquid fill line. The vessel housing may be formed of any suitable material. For example, the vessel housing may include glass or a suitable rigid plastic material. The vessel is preferably detachable from the portion of the shisha assembly that includes the aerosol-generating element to allow a consumer to fill, empty, or clean the vessel.
[0085] The vessel may be filled by the consumer to a liquid fill level. The liquid preferably comprises water, which may optionally be infused with one or more colors, flavors, or colorants and flavors. For example, the water may be infused with a plant infusion and / or an herbal infusion.
[0086] Aerosol entrained in the air exiting the aerosol outlet of the receptacle may travel through a conduit positioned within the vessel. The conduit may be connected to the aerosol outlet of the aerosol-generating element and may have an opening below the liquid fill level of the vessel such that the aerosol flowing through the vessel passes through an opening in the conduit, then through the liquid, into the headspace of the vessel, and out through the headspace outlet for delivery to a consumer.
[0087] The headspace outlet may be coupled to a hose with a mouthpiece for delivering the aerosol to a consumer. The mouthpiece may include an activation element, such as a user-activatable switch, or a puff sensor arranged to detect a user's puff at the mouthpiece, or both a user-activatable switch and a puff sensor. The activation element is operably coupled to control electronics of the shisha device. The activation element may be wirelessly coupled to the control electronics. Activation of the activation element may cause the control electronics to activate the heating element rather than constantly supplying energy to the heating element. As a result, use of an activation element may function to conserve energy compared to devices not employing such an element, providing on-demand heating rather than constant heating.
[0088] For illustrative purposes, one method of using a shisha device as described herein is provided below in chronological order. The vessel may be removed from other components of the shisha device and filled with water. One or more of natural fruit juices, plant infusions, and herbal infusions may be added to the water for flavoring. The amount of liquid added should cover a portion of the conduit but not exceed the fill level mark that may optionally be present on the vessel. The vessel is then reassembled into the shisha device. A cartridge may be prepared by removing the outer layer of the lid and any removable film (if present). A portion of the aerosol-generating element may be removed or opened to allow the cartridge to be inserted into the receptacle. The aerosol-generating element may then be reassembled or closed. The device may then be turned on. Turning on the device may initiate a heating profile of the heating element to heat the aerosol-forming substrate to a temperature above the vaporization temperature of the aerosol-forming substrate but below the combustion temperature. The aerosol-forming compound in the aerosol-forming substrate vaporizes, generating an aerosol. The user may puff on the mouthpiece as desired. The user may continue to use the device for a desired length of time, or until no aerosol is visible or delivered. In some embodiments, the device may be configured to automatically shut off when the cartridge, or a compartment of the cartridge, is depleted of available aerosol-forming substrate. In some embodiments, the consumer may refill the device with an unused cartridge, for example, after receiving a signal from the device that the aerosol-forming substrate in the cartridge is depleted or nearly depleted. The shisha device may be turned off at any time by the consumer, for example, by switching off the device.
[0089] The shisha device may have any suitable air management. In one embodiment, a puff from the user creates a drawing effect, causing low pressure inside the device, which forces outside air to flow through the device's air inlet, into the outside air inlet channel, and into the receptacle. The air can then flow through the cartridge in the receptacle and be entrained with the aerosol generated from the aerosol-forming substrate. The air containing the entrained aerosol then exits the aerosol outlet of the receptacle and flows through a conduit into the liquid inside the vessel. The aerosol then bubbles out of the liquid, enters a headspace above the liquid level in the vessel, exits the headspace outlet, and passes through a hose and mouthpiece for delivery to the consumer. The flow of outside air and the flow of aerosol inside the shisha device may be driven by the puff from the user.
[0090] Reference will now be made to the drawings, which illustrate one or more embodiments described in the present disclosure. However, it will be understood that other embodiments not illustrated in the drawings fall within the scope and spirit of the present disclosure. Like numbers used in the figures refer to like components. The use of different numbers to refer to components in different figures is not intended to indicate that the differently numbered components may not be identical or similar to other numbered components. The figures are presented for purposes of illustration and not limitation. Schematic diagrams presented in the figures are not necessarily drawn to scale. [Brief explanation of the drawings]
[0091] [Figure 1] FIG. 1 is a schematic diagram of a shisha device. [Figure 2A] 2A is a schematic top perspective view of a body of a shisha cartridge for use in the shisha device of FIG. 1, according to one embodiment. [Figure 2B] 2B is a schematic bottom perspective view of a body of a shisha cartridge for use in the shisha device of FIG. 1, according to one embodiment. [Figure 3A] FIG. 3A is a schematic bottom view of the cartridge. [Figure 3B] FIG. 3B is a schematic top view of the cartridge. [Figure 4A] FIG. 4A is a schematic perspective view of a cartridge in a closed state, according to one embodiment. [Figure 4B] FIG. 4B is a schematic perspective view of the cartridge in an open state, according to one embodiment. [Figure 5A] FIG. 5A is a schematic cross-sectional view of a cartridge in a closed state, according to one embodiment. [Figure 5B] FIG. 5B is a schematic cross-sectional view of the cartridge in an open state, according to one embodiment. [Figure 6A] FIG. 6A is a partial cross-sectional view of a cartridge lid in a closed state, according to one embodiment. [Figure 6B] FIG. 6B is a partial cross-sectional view of the lid of the cartridge in an open state, according to one embodiment. [Figure 7A] FIG. 7A is a partial cross-sectional view of a cartridge lid in a closed state, according to one embodiment. [Figure 7B] 7A and 7B each show a partial cross-sectional view of the lid of the cartridge in an open position, according to one embodiment. [Figure 8] FIG. 8 is a schematic perspective view of a cartridge in an open state according to one embodiment. [Figure 9A] FIG. 9A is a schematic perspective view of a cartridge in a closed state, according to one embodiment. [Figure 9B] FIG. 9B is a schematic perspective view of the cartridge in an open state, according to one embodiment. [Figure 10A] FIG. 10A is a schematic perspective view of a cartridge in a closed state, according to one embodiment. [Figure 10B] FIG. 10B is a schematic perspective view of the cartridge in an open state, according to one embodiment. [Figure 11A] FIG. 11A is a schematic perspective view of a cartridge in a closed state, according to one embodiment. [Figure 11B] 11A and 11B are schematic perspective views of the cartridge in an open state, according to one embodiment. [Figure 12]FIG. 12 is a schematic side view of a cartridge in its outer packaging, according to one embodiment. [Figure 13A] FIG. 13A is a schematic perspective view of a cartridge in its outer packaging, according to one embodiment. [Figure 13B] FIG. 13B is a schematic side view of the cartridge of FIG. 13A in a closed state, according to one embodiment. [Figure 13C] FIG. 13C is a schematic side view of the cartridge of FIG. 13A in an open state, according to one embodiment. [Figure 14A] FIG. 14A is a schematic perspective view of a cartridge in its outer packaging, according to one embodiment. [Figure 14B] FIG. 14B is a schematic perspective view of a cartridge in its outer packaging, according to one embodiment. [Figure 15] FIG. 15 is a schematic perspective view of a cartridge in its outer packaging, according to one embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0092] 1 is a schematic cross-sectional view of one embodiment of a shisha device 100. The device 100 includes a vessel 17 defining an interior volume configured to contain a liquid 19 and defining a headspace outlet 15 above a fill level of the liquid 19. The liquid 19 preferably includes water, which may optionally be infused with one or more colorants, or one or more flavorants, or one or more colorants and one or more flavorants. For example, the water may be infused with one or both of a plant infusion and an herbal infusion.
[0093] The device 100 also includes an aerosol-generating element 130. The aerosol-generating element 130 includes a receptacle 140 configured to receive a cartridge 200 containing an aerosol-forming substrate. The aerosol-generating element 130 may also include a heating element 160. The heating element 160 may form at least one surface of the receptacle 140. In the illustrated embodiment, the heating element 160 defines a side of the receptacle 140. The aerosol-generating element 130 also includes an ambient air inlet channel 170 that draws ambient air into the device 100. In some embodiments, a portion of the ambient air inlet channel 170 is formed by the heating element 160 to heat the air before it enters the receptacle 140. The preheated air then enters the cartridge 200, which is also heated by the heating element 160 and carries the aerosol generated by the aerosol-forming element and the aerosol-forming substrate. The air exits the outlet of the aerosol-generating element 130 and enters the conduit 190 .
[0094] Conduit 190 carries air and aerosol into vessel 17 below the level of liquid 19. The air and aerosol may be bubbled through liquid 19 and exit headspace outlet 15 of vessel 17. A hose 20 may be attached to headspace outlet 15 for carrying the aerosol to the user's mouth. A mouthpiece 25 may be attached to or form part of hose 20.
[0095] Exemplary airflow paths through the device in use are illustrated by the bold arrows in FIG. Mouthpiece 25 may include an activation element 27. Activation element 27 may be a switch, button, or the like, or may be an inhalation sensor, or the like. Activation element 27 may be located in any other suitable location on device 100. Activation element 27 may wirelessly communicate with control electronics 30 to activate device 100 for use, for example, by causing power source 35 to power heating element 160, or to cause the control electronics to activate heating element 160.
[0096] The control electronics 30 and power supply 35 may be located in any suitable location on the aerosol-generation element 130, including locations other than the bottom portion of the element 130 as illustrated in FIG.
[0097] 2A and 2B, a schematic depiction of a body 210 is shown. The body 210 may include a side wall 212, a top wall 215, and a bottom wall 213 that define a cavity 218. The side wall 212 may be cylindrical or frusto-conical, as shown. FIG. 2A shows the body 210 without the top and illustrates the cavity 218 within the body. The body 210 may define a central axis A extending through the body 210. As shown in FIG. 2B, the top may include a flange 219 extending from the side wall 212. The flange 219 may rest on a shoulder of a receptacle of a shisha device such that the cartridge 200 may be easily removed from the receptacle after use by grasping the flange.
[0098] 3A and 3B, the top 215 and bottom 213 of the body generally may have a plurality of openings 217, 216 to allow airflow through the cartridge when the cartridge is in use. According to some embodiments, the openings are present when the cartridge is in an open state. The openings 216, 217 in the top 215 and bottom 213 may be aligned with one another. The cartridge 200 may also, or alternatively, include openings along the sidewall 212. The openings 217, 216 may be blocked by an outer layer of a lid or by a peelable seal or liner when the cartridge is stored prior to use.
[0099] 4A and 4B illustrate schematic perspective views of a cartridge 200 according to one embodiment. In FIG. 4A, the cartridge 200 is in a closed state. The cartridge 200 includes a lid 220 having an inner layer 221 facing the cavity 118 and an outer layer 222 facing the outside of the body 210 of the cartridge 200. The inner layer 221 has one or more weakened areas 223, as shown. The lid 220 can cover the top, bottom, or both the top and bottom of the cartridge 200, as shown. When the outer layer 222 is removed, as shown in FIG. 4B, the weakened areas 223 of the inner layer 221 form an opening 217, and the cartridge 200 is in an open state. The opening 217 provides fluid communication between the cavity 118 inside the body 210 and the outside or the cartridge 200. Opening 217 may function as an entrance, an exit, or both an entrance and an exit for cartridge 200. Cartridge 200 may additionally include a peelable film 230 or sticker that covers a pre-fabricated opening 216 in the bottom (or any wall not including the lid).
[0100] 5A-7B illustrate various embodiments of weakened regions and openings. Referring now to FIG. 5A, the weakened region 223 may be provided or formed by pressing or embossing an area of the interior 228 of the lid 220. The interior layer 221 and the exterior layer 222 may first be laminated together. This pressing may create a thinner (more frangible) region of the interior layer 221. This pressing may compress a portion of the interior layer 221 into the exterior layer 222, as shown. Removal of the exterior layer 222 from the cartridge may remove the compressed portion into the exterior layer (removed portion 243), forming an opening 217 in the interior layer 221, as shown in FIG. 5B. The opening 217 allows airflow 270 through the wall of the cartridge 220 (in this case, through the interior layer 221 of the lid 220). The opening 217 provides fluid communication between the cavity 118 within the body 210 and the exterior or cartridge 200.
[0101] 6A and 6B show partial cross-sectional views of a lid in which an area of weakness 223 is provided or formed by scoring, cutting, or laser cutting the inner layer 221. The scoring, cutting, or laser cutting may result in a partial cut. When the outer layer 222 is removed as shown in FIG. 6B, a portion 243 of the inner layer 221 at the area of weakness 223 may be removed with the outer layer 222, resulting in the formation of an opening 217. The lid 220 may include an adhesive between the inner layer 221 and the outer layer 222. The lid 220 may include an adhesive in the area of the area of weakness 223.
[0102] 7A and 7B, the weakened area 223 is provided or formed by applying adhesive 242 in some areas and not applying adhesive in other areas. The weakened area 223 may be formed in an area adjacent to the adhesive 242. The inner layer 221 may be made of a weaker material (e.g., aluminum foil) than the outer layer 222 to facilitate fracture of the inner layer 221 at the weakened area 223. When the outer layer 222 is removed as shown in FIG. 7B, the portion 243 of the inner layer 221 at the weakened area 223 may be removed along with the outer layer 222, resulting in the formation of the opening 217.
[0103] 8, the outer layer 222 of the lid 220 may be attached to the cartridge 200 such that the outer layer 222 remains attached when the lid is opened (when the outer layer 222 is removed). The outer layer 222 may include a tab 244 to facilitate pulling, peeling, or tearing the outer layer 222. The cartridge may include a slot-shaped weakened area 223 and an opening 217.
[0104] The areas of weakness 223 may be provided in any suitable shape. The areas of weakness 223 and the resulting opening(s) 217 may comprise multiple points, as shown in Figures 4A and 4B, or may comprise one or more lines or slots, as shown in Figures 9A and 9B. The lines or slots of the areas of weakness 223 and the resulting opening(s) 217 may be substantially parallel.
[0105] In one exemplary embodiment shown in Figures 1OA and 1OB, the weakened area 223 and resulting opening 217 may comprise an elongated slot in the shape of a cross or X.
[0106] The areas of weakness 223 can take on a variety of regular or irregular patterns or shapes. In one exemplary embodiment shown in Figures 11A and 11B, the areas of weakness 223 and the resulting openings 217 may comprise a spiral shape.
[0107] In some embodiments, multiple cartridges 200 may be housed within an outer packaging 300, as shown in FIGS. 12-15. The outer packaging 300 may at least partially surround the multiple cartridges 200. For example, the outer packaging 300 may surround or cover the top and bottom of the cartridges 200, as shown. The outer packaging 300 may form a connected top, a connected bottom, or both a connected top and bottom for the multiple cartridges. Although a package of four cartridges is shown, the package may include any desired number of cartridges. For example, the outer layer 222, 332 may be part of an outer packaging 300 that houses two or more, three or more, four or more cartridges 200, or up to six, eight, or ten cartridges 200. The outer packaging 300 may form the outer layer 222, 332 of the lid 220. In embodiments in which the outer packaging 300 surrounds or covers the top and bottom of the cartridge 200, the outer packaging 300 may form the outer layers 222, 332 of the lid 220 at both the top and bottom. The outer packaging 300 may further surround or cover at least one side of the cartridge 200 (see Figures 13A-13C). Each cartridge 200 in the outer packaging 300 may include an inner layer 221, 231 disposed between the outer layer 222, 332 and the body 210 of the cartridge 200.
[0108] 13C and 14B, when the cartridge 200 is removed from the outer packaging 300, the cartridge body 210 is separated from the packaging 300, while the outer layers 222, 332 remain attached to the packaging 300. Removal of the cartridge 200 causes an opening 217 to form, allowing airflow 270 through the inner layers 221, 331.
[0109] In some embodiments, the cartridge 200 may be removed from the outer packaging 300 such that the cartridge 200, the inner layers 221, 331, and the portion of the packaging 322 forming the outer layers 222, 332 of the lid remain intact on the cartridge, as shown in Figure 15. The outer packaging 300 may include features to facilitate separation of a portion of the outer packaging 300 (including only one cartridge), such as scoring or perforations 323. The outer layers 222, 332 remaining on the cartridge 200 may then be later removed from the cartridge body 210 to form openings 217 in the weakened areas 223 of the inner layers 221, 331.
[0110] Thus, a cartridge for an aerosol generating device, such as a shisha device, is described. Various modifications and variations of the present invention will be apparent to those skilled in the art without departing from the scope and spirit of the invention. Although the present invention has been described in connection with certain preferred embodiments, it should be understood that the present invention as claimed should not be unduly limited to such specific embodiments. Indeed, various modifications of the described methods for carrying out the invention that are obvious to those skilled in the mechanical, chemical, and aerosol-generating article manufacturing or related fields are intended to be within the scope of the following claims.
Claims
1. A cartridge for containing an aerosol-forming substrate, comprising: a body having a sidewall and at least one lid disposed over a top, a bottom, or both the top and bottom; a cavity within the body; the at least one lid includes an inner layer facing the cavity and an outer layer facing an exterior of the body, the inner layer including a weakened region; A cartridge wherein removing the outer layer removes a portion of the material of the inner layer.
2. The cartridge of claim 1 , wherein the weakened area of the inner layer forms an opening when the outer layer is removed.
3. A cartridge according to any one of claims 1 to 2, wherein the outer layer and the inner layer are bonded together by an adhesive.
4. A cartridge according to any preceding claim, wherein the outer layer comprises a pull tab.
5. A cartridge according to any one of claims 1 to 4, wherein the weakened area is formed by scoring the inner layer.
6. A cartridge according to any one of claims 1 to 5, wherein the weakened area is formed by pressing the area on the inner layer of the lid.
7. The cartridge of any one of claims 1 to 6, wherein the weakened area comprises a plurality of weakened areas.
8. A cartridge as described in claim 7, wherein the plurality of weak areas are arranged in a pattern, and the pattern of the weak areas includes a pattern of dots.
9. A cartridge as described in claim 7 or claim 8, wherein the plurality of weak areas are arranged in a pattern, and the pattern of weak areas includes a pattern of parallel or non-parallel lines.
10. A cartridge according to any preceding claim, wherein the outer layer forms part of an outer packaging that at least partially surrounds the body of the cartridge.
11. The cartridge of claim 10, wherein the outer packaging forms a single outer packaging for multiple cartridges.
12. 12. A cartridge according to claim 10 or claim 11, wherein removing the cartridge from the outer packaging removes the outer layer from the body and forms an opening in the inner layer.
13. A cartridge according to any preceding claim, comprising an aerosol-forming substrate disposed in the cavity.
14. A shisha system, A cartridge according to any one of claims 1 to 13, having an aerosol-generating substrate disposed in the cartridge; and A shisha device, a receptacle for receiving the cartridge; a heating element for heating the aerosol-generating substrate when the cartridge is received in the receptacle of the shisha device; a vessel having a liquid fill level and defining a headspace above the liquid fill level; an aerosol conduit for conveying the aerosol from the receptacle to the vessel; an outlet in fluid communication with the headspace;
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