Aerosol delivery device with downstream flavor cartridge
The integration of a flavor delivery device with an aerosol delivery device, using an elongated porous substrate and impermeable sleeve, addresses the need for flavor enhancement in electronic cigarettes, offering a customizable and smoke-free flavor experience.
Patent Information
- Application Number
- JP2025135018
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2019-12-10
- Filing Date
- 2025-08-14
- Publication Date
- 2025-11-05
AI Technical Summary
There is a need for additional means to add flavorings to aerosols in aerosol delivery devices, such as electronic cigarettes, to enhance the flavor experience without significant combustion or pyrolysis products.
A flavor delivery device is integrated with an aerosol delivery device, featuring an elongated flavor substrate made of porous materials, surrounded by an impermeable sleeve, which can retain and release flavor materials to enhance the aerosol stream.
The flavor delivery device effectively adds desired flavors to the aerosol stream, mimicking traditional smoking sensations without combustion, providing a customizable and enhanced flavor experience.
Smart Images

Figure 2025166166000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a flavor delivery device configured in combination with an aerosol delivery device. More specifically, such a flavor delivery device can include an elongated flavor substrate including at least one flavor material, the flavor substrate being substantially surrounded by an outer sleeve and optionally disposed substantially within an outer frame. [Background technology]
[0002] Many smoking articles have been proposed over the years as improvements or replacements for smoking products based on burning tobacco. Exemplary replacements include devices in which a solid or liquid fuel is burned to transfer heat to the tobacco, or a chemical reaction is used to provide such a heat source. Examples include the smoking articles described in U.S. Patent No. 9,078,473 to Worm et al., which is incorporated herein by reference.
[0003] The goal of improving or replacing smoking articles has usually been to provide the sensation associated with tobacco, cigars, or pipe smoking without delivering a significant amount of incomplete combustion and pyrolysis products.For this purpose, many smoking products, flavor generators, and medicinal inhalers have been proposed, which utilize electrical energy to vaporize or heat volatile substances, or to provide the sensation of cigarette, cigar, or pipe smoking without significantly burning tobacco.For example, see the various alternative smoking articles, aerosol delivery devices, and heat sources described in the background art in U.S. Patent No. 7,726,320 by Robinson et al., U.S. Patent Application Publication No. 2013 / 0255702 by Griffith Jr. et al., and U.S. Patent Application Publication No. 2014 / 0096781 by Sears et al., which are incorporated herein by reference. See also, for example, the various types of smoking articles, aerosol delivery devices, and electrically powered heat sources referenced by trade name and commercial source in U.S. Patent Application Publication No. 2015 / 0220232 to Bless et al., which is incorporated herein by reference. Additional types of smoking articles, aerosol delivery devices, and electrically powered heat sources referenced by trade name and commercial source are listed in U.S. Patent Application Publication No. 2015 / 0245659 to DePiano et al., which is also incorporated herein by reference in its entirety.Other representative cigarettes or smoking articles that have been described, and in some cases are commercially available, are U.S. Pat. No. 4,735,217 to Gerth et al., U.S. Pat. Nos. 4,922,901, 4,947,874, and 4,947,875 to Brooks et al., U.S. Pat. No. 5,060,671 to Counts et al., U.S. Pat. No. 5,249,586 to Morgan et al., U.S. Pat. No. 5,249,586 to Counts et al., U.S. Pat. No. 5,060,671 to Counts et al., U.S. Pat. No. 5,249,586 to Morgan et al., U.S. Pat. No. 5,060,671 to Counts ...060,671 to Counts et al., U.S. Pat. No. 5,249,586 to Morgan et al., U.S. Pat. No. 5,060,671 to Counts et al., U.S. Pat. No. 5,060,671 to Counts et al., U.S No. 5,388,594 to Higgins et al., U.S. Pat. No. 5,666,977 to Higgins et al., U.S. Pat. No. 6,053,176 to Adams et al., U.S. Pat. No. 6,164,287 to White, U.S. Pat. No. 6,196,218 to Voges, U.S. Pat. No. 6,810,883 to Felter et al., U.S. Pat. No. 6,854,461 to Nichols, U.S. Pat. No. 7,832,410 to Hon, U.S. Pat. No. 7,832,410 to Kobayashi, U.S. Pat. No. 513,253 to Robinson et al., U.S. Pat. No. 7,726,320 to Robinson et al., U.S. Pat. No. 7,896,006 to Hamano, U.S. Pat. No. 6,772,756 to Shayan, U.S. Pat. Appl. Pub. Nos. 2009 / 0095311 to Hon, U.S. Pat. Appl. Pub. Nos. 2006 / 0196518 to Hon, U.S. Pat. Appl. Pub. Nos. 2009 / 0126745 and 2009 / 0188490 to Thorens et al. These include those described in U.S. Patent Application Publication No. 2009 / 0272379, U.S. Patent Application Publication Nos. 2009 / 0260641 and 2009 / 0260642 by Monsees et al., U.S. Patent Application Publication Nos. 2008 / 0149118 and 2010 / 0024834 by Oglesby et al., U.S. Patent Application Publication No. 2010 / 0307518 by Wang, and WO 2010 / 091593 by Hon.
[0004] Representative products that mimic many of the attributes of a traditional cigarette, cigar, or pipe include ACCORD® by Philip Morris Incorporated, ALPHA™, JOYE 510™, and M4™ by InnoVapor LLC, CIRRUS™ and FLING™ by White Cloud Cigarettes, BLU™ by Lorillard Technologies, Inc., COHITA™, COLIBRI™, ELITE CLASSIC™, MAGNUM™, PHANTOM™, and SENSE™ by EPUFFER® International Inc., DUOPRO™, STORM™, and VAPORKING® by Electronic Cigarettes, Inc., EGAR™ by Egar Australia, eGo-C™ and eGo-T™ by Joyetech, ELUSION™ by Elusion UK Ltd, and Eonsmoke. EONSMOKE® by FIN Branding Group, LLC, FIN™ by FIN Branding Group, LLC, SMOKE® by Green Smoke Inc. USA, GREENARETTE™ by Greenarette LLC, HALLIGAN™, HENDU™, JET™, MAXXQ™, PINK™ and PITBULL™ by SMOKE STIK®, HEATBAR™ by Philip Morris International, Inc., HYDRO IMPERIAL™ and LXE™ from Crown7, LOGIC™ and THE CUBAN™ by LOGIC Technology, LUCI® by Luciano Smokes Inc., METRO® by Nicotek, LLC, NJOY® and ONEJOY™ by Sottera, Inc., NO.7™ by SS Choice LLC, PREMIUM ELECTRONIC by PremiumEstore LLC CIGARETTE(TM), Ruyan America, Inc.Marketed under the names RAPP E-MYSTICK™ by Red Dragon Products, LLC, RED DRAGON™ by Red Dragon Products, LLC, RUYAN® by Ruyan Group (Holdings) Ltd., SF® by Smoker Friendly International, LLC, GREEN SMART SMOKER® by The Smart Smoking Electronic Cigarette Company Ltd., SMOKE ASSIST® by Coastline Products LLC, SMOKING EVERYWHERE® by Smoking Everywhere, Inc., V2CIGS™ by VMR Products LLC, VAPOR NINE™ by VaporNine LLC, VAPOR4LIFE® by Vapor 4 Life, Inc., VEPPO™ by E-CigaretteDirect, LLC, VUSE® by RJ Reynolds Vapor Company, Mistic Menthol products by Mistic Ecigs, and Vype products by CN Creative Ltd. Still other electrically powered aerosol delivery devices, particularly those characterized as so-called e-cigarettes, are sold under the trade names COOLER VISIONS™, DIRECT E-CIG™, DRAGONFLY™, EMIST™, EVERSMOKE™, GAMUCCI®, HYBRID FLAME™, KNIGHT STICKS™, ROYAL BLUES™, SMOKETIP®, and SOUTH BEACH SMOKE™. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] U.S. Patent No. 9,078,473 [Patent Document 2] U.S. Patent No. 7,726,320 [Patent Document 3] US Patent Application Publication No. 2013 / 0255702 [Patent Document 4] US Patent Application Publication No. 2014 / 0096781 [Patent Document 5] US Patent Application Publication No. 2015 / 0220232 [Patent Document 6] US Patent Application Publication No. 2015 / 0245659 [Patent Document 7] U.S. Patent No. 4,735,217 [Patent Document 8] U.S. Patent No. 4,922,901 [Patent Document 9] U.S. Patent No. 4,947,874 [Patent Document 10] U.S. Patent No. 4,947,875 [Patent Document 11] U.S. Patent No. 5,060,671 [Patent Document 12] U.S. Patent No. 5,249,586 [Patent Document 13] U.S. Patent No. 5,388,594 [Patent Document 14] U.S. Patent No. 5,666,977 [Patent Document 15] U.S. Patent No. 6,053,176 [Patent Document 16] U.S. Patent No. 6,164,287 [Patent Document 17] U.S. Patent No. 6,196,218 [Patent Document 18] U.S. Patent No. 6,810,883 [Patent Document 19] U.S. Patent No. 6,854,461 [Patent Document 20] U.S. Patent No. 7,832,410 [Patent Document 21] U.S. Patent No. 7,513,253 [Patent Document 22] U.S. Patent No. 7,726,320 [Patent Document 23] U.S. Patent No. 7,896,006 [Patent Document 24] U.S. Patent No. 6,772,756 [Patent Document 25] US Patent Application Publication No. 2009 / 0095311 [Patent Document 26] US Patent Application Publication No. 2006 / 0196518 [Patent Document 27] US Patent Application Publication No. 2009 / 0126745 [Patent Document 28] US Patent Application Publication No. 2009 / 0188490 [Patent Document 29] US Patent Application Publication No. 2009 / 0272379 [Patent Document 30] US Patent Application Publication No. 2009 / 0260641 [Patent Document 31] US Patent Application Publication No. 2009 / 0260642 [Patent Document 32] US Patent Application Publication No. 2008 / 0149118 [Patent Document 33] US Patent Application Publication No. 2010 / 0024834 [Patent Document 34] US Patent Application Publication No. 2010 / 0307518 [Patent Document 35] International Publication No. 2010 / 091593 Summary of the Invention [Problem to be solved by the invention]
[0006] There remains a need in the art for additional means for adding flavorings to aerosols. Accordingly, it would be desirable to provide a flavor delivery device that can be configured to be easily combined with an aerosol delivery device to add a flavor or mixture of flavors to the aerosol formed as desired by the user. [Means for solving the problem]
[0007] In various embodiments, the present disclosure provides a flavor delivery device that can be included in or combined with an aerosol delivery device. The flavor delivery device can incorporate at least one elongated flavor substrate configured to accommodate or retain a flavor material that can be released therefrom to entrain in the aerosol flow. Thus, the flavor delivery device is configured to be included in or attached to the aerosol delivery device, while the flavor delivery device is positioned downstream of a liquid reservoir in the aerosol delivery device that contains, for example, e-liquid. A flavor delivery device containing a different flavor material can enhance the flavor from the e-liquid or generate a flavor when unflavored e-liquid is used.
[0008] In one aspect of the present disclosure, a flavor delivery device includes at least one elongated flavor substrate made from a porous material, the elongated flavor substrate extending along a longitudinal axis between two ends, a first end opposite the second end.
[0009] The elongated flavor base strip comprises a flavor material.
[0010] The flavor delivery device also includes an outer sleeve surrounding the at least one elongated flavor substrate. The outer sleeve is impermeable to the flavor material. In some embodiments, the flavor delivery device can be further characterized by one or more of the following remarks, which can be combined in any number or order:
[0011] One or more of the following conditions may be met: the at least one elongated flavor substrate may be in the form of one or more rods; the at least one elongated flavor substrate may be in the form of one or more tubes; the at least one elongated flavor substrate may be in the form of one of a pleated sheet; the at least one elongated flavor substrate may be in the form of a gathered sheet; the at least one elongated flavor substrate may be in the form of a rolled sheet.
[0012] The porous material forming the at least one elongated flavour substrate may be a polymeric material.
[0013] The polymeric material forming the at least one elongated flavor substrate strip may be selected from the group consisting of polyethylene, polypropylene, polyether, polyester, polylactic acid (PLA), cellulose acetate, nylon, ceramic, or any combination thereof.
[0014] The material forming the outer sleeve surrounding the at least one elongated flavor substrate may be selected from the group consisting of silicone, polyether, polyester, polypropylene, polylactic acid (PLA), nylon, or any combination thereof.
[0015] The at least one elongated flavour substrate may be formed by multiple layers.
[0016] Each layer may further comprise materials having different densities.
[0017] Each layer can be configured to release flavor material at a different rate.
[0018] Each layer may further contain a different flavor material.
[0019] The flavor delivery device may further comprise at least one elongate substrate made from a plurality of fibers.
[0020] The plurality of fibers may be sheath-core fibers.
[0021] The sheath may be a porous material with the core containing the flavor material.
[0022] The flavor delivery device can further include an outer shell extending along a longitudinal axis between a distal end including at least one opening and a proximal end including at least one opening, the outer shell defining a chamber, the at least one elongated flavor substrate disposed within the chamber of the outer shell such that the longitudinal axis of the at least one elongated substrate is generally parallel to the longitudinal axis of the outer shell.
[0023] The outer housing of the flavor delivery device may include one or more openings formed in the outer wall of the housing.
[0024] The elongate flavour delivery device may be removable and replaceable.
[0025] The proximal end of the outer shell of the flavour delivery device can be configured to engage the mouth end of a smoking device.
[0026] In another embodiment of the present disclosure, at least a portion of the flavoring material may be provided within a breakable capsule.
[0027] The flavor delivery device may include a plurality of breakable capsules.
[0028] The breakable capsules may include capsules of at least two significantly different sizes.
[0029] In another aspect of the present disclosure, a cartridge for an aerosol delivery device is provided. The cartridge may include, for example, a cartridge housing having a mouth end, a reservoir containing an aerosol precursor composition, a heater adapted to vaporize the aerosol precursor composition, and a flavor delivery device, as otherwise described herein, positioned downstream of the reservoir relative to the mouth end of the cartridge.
[0030] The present disclosure includes, but is not limited to, the following embodiments.
[0031] Embodiment 1: A flavor delivery device comprising: at least one elongated flavor substrate formed from a porous material and extending along a longitudinal axis between a first end and an opposite second end; a flavor material contained within the elongated flavor substrate; and an outer sleeve substantially surrounding at least the outer periphery of the elongated flavor substrate, wherein the outer sleeve is substantially impermeable to the flavor material.
[0032] Embodiment 2: A flavor delivery device according to embodiment 1, wherein one or more of the following conditions are met: at least one elongated flavor substrate comprises one or more rods; at least one elongated flavor substrate comprises one or more tubes; at least one elongated flavor substrate is in the form of a pleated sheet; at least one elongated flavor substrate is in the form of a gathered sheet; at least one elongated flavor substrate is in the form of a rolled sheet.
[0033] Embodiment 3: A flavor delivery device according to any of embodiments 1 and 2, wherein the porous material forming the at least one elongated flavor substrate is a polymeric material.
[0034] Embodiment 4: The flavor delivery device of any of embodiments 1-3, wherein the polymeric material is selected from the group consisting of polyethylene, polypropylene, polyether, polyester, polylactic acid (PLA), cellulose acetate, nylon, ceramic, or any combination thereof.
[0035] Embodiment 5: A flavor delivery device according to any of embodiments 1 to 4, wherein the outer sleeve is made from a material selected from the group consisting of silicone, polyether, polyester, polypropylene, polylactic acid (PLA), nylon, or any combination thereof.
[0036] Embodiment 6: The flavor delivery device of any of embodiments 1 to 5, wherein at least one elongated flavor substrate is formed by multiple layers.
[0037] Embodiment 7: The flavor delivery device of any of embodiments 1-6, wherein each layer contains a material having a different density.
[0038] Embodiment 8: The flavor delivery device of any of embodiments 1-7, wherein each layer of the plurality of layers is configured to release flavor material at a different rate.
[0039] Embodiment 9: The flavor delivery device of any of embodiments 1-8, wherein each layer of the plurality of layers contains a different flavor material.
[0040] Embodiment 10: The flavor delivery device of any of embodiments 1-9, wherein at least one elongate flavor substrate is formed from a plurality of fibers.
[0041] Embodiment 11: The flavor delivery device of any of embodiments 1-10, wherein at least a portion of the plurality of fibers are sheath-core fibers.
[0042] Embodiment 12: A flavor delivery device according to any of embodiments 1 to 11, wherein the sheath is a porous material and the flavor material is contained in the core.
[0043] Embodiment 13: A flavor delivery device described in any of embodiments 1 to 12, further comprising an outer housing extending along a longitudinal axis between a distal end including at least one opening and a proximal end including at least one opening, the outer housing having an outer wall defining a chamber, and the at least one elongated flavor substrate being disposed within the chamber of the outer shell such that the longitudinal axis of the at least one elongated substrate is generally parallel to the longitudinal axis of the outer housing.
[0044] Embodiment 14: A flavor delivery device according to any of embodiments 1 to 13, wherein the outer housing comprises one or more openings formed in the outer wall of the housing.
[0045] Embodiment 15: The flavor delivery device of any of embodiments 1 to 14, wherein the elongated flavor substrate is removable and replaceable.
[0046] Embodiment 16: A flavor delivery device according to any of embodiments 1 to 15, wherein the proximal end of the outer shell is configured to engage the mouth end of a smoking article.
[0047] Embodiment 17: The flavor delivery device of any of embodiments 1-16, wherein at least a portion of the flavor material is provided within a breakable capsule.
[0048] Embodiment 18: A flavor delivery device according to any of embodiments 1 to 17, wherein the device comprises a plurality of breakable capsules.
[0049] Embodiment 19: A flavor delivery device according to any of embodiments 1 to 18, wherein the plurality of breakable capsules comprises capsules of at least two significantly different sizes.
[0050] Embodiment 20: A cartridge for an aerosol delivery device, comprising: a cartridge housing having a mouth end; a reservoir containing an aerosol precursor composition; a heater adapted to vaporize the aerosol precursor composition; and a flavor delivery device according to claim 1, positioned so that the vaporized aerosol precursor composition passes through the cartridge housing.
[0051] Embodiment 21: The cartridge of embodiment 20, further comprising a mouthpiece connected to the mouth end of the cartridge housing.
[0052] Embodiment 22: A cartridge according to any of embodiments 20 and 21, wherein the mouthpiece comprises a flavor delivery device.
[0053] Embodiment 23: A cartridge according to any of embodiments 20 to 22, wherein the flavor delivery device is disposed over the mouthpiece.
[0054] Embodiment 24: A cartridge according to any of embodiments 20 to 23, wherein the flavor delivery device is removable and replaceable.
[0055] Embodiment 25: A cartridge described in any of embodiments 20 to 24, wherein the flavor delivery device is removably connected to one or both of the mouth end and mouthpiece of the cartridge via one or more of a threaded connection, a magnetic connection, and a friction fit.
[0056] These and other features, aspects, and advantages of the present disclosure will become apparent from the following detailed description read in conjunction with the accompanying drawings, which are briefly described below. The present invention includes any combination of two, three, four, or more of the above-described embodiments, as well as combinations of any two, three, four, or more features or elements described in this disclosure, regardless of whether such features or elements are explicitly combined in the description of a specific embodiment herein. The present disclosure, in any of its various aspects and embodiments, is intended to be read as a whole, such that any separable features or elements of the disclosed invention are intended to be combinable unless the context clearly dictates otherwise.
[0057] To facilitate an understanding of aspects of the present disclosure, reference is now made to the accompanying drawings, which are not necessarily drawn to scale and in which like reference numerals refer to like elements, and in which: The drawings are provided by way of example only and are not to be construed as limiting the present disclosure. [Brief explanation of the drawings]
[0058] [Figure 1A] FIG. 1 is a front view of an exemplary flavor delivery device. [Figure 1B] FIG. 1 is a front view of an exemplary flavor delivery device surrounded by an optional outer sleeve. [Figure 2A] 1 is a perspective view of an exemplary embodiment of a flavor substrate configured in a generally sheet-like form according to the present disclosure. FIG. [Figure 2B] 1 is a perspective view of an exemplary embodiment of a flavor substrate configured in a generally rod-like form according to the present disclosure. FIG. [Figure 2C] 1 is a perspective view of an exemplary embodiment of a flavor substrate configured in a generally tubular form according to the present disclosure. FIG. [Figure 3A] 1 is a partial cross-sectional view of an exemplary embodiment of a flavor substrate at least partially circumscribed by an outer film, wherein the flavor substrate is configured as a pleated sheet. FIG. [Figure 3B] 1 is a partial cross-sectional view of an exemplary embodiment of a flavor substrate at least partially circumscribed by an outer film, wherein the flavor substrate is configured as a gathered sheet. [Figure 3C] 1 is a partial cross-sectional view of an exemplary embodiment of a flavor substrate at least partially circumscribed by an outer film, wherein the flavor substrate is configured as a rolled sheet. FIG. [Figure 3D] 1 is a partial cross-sectional view of an exemplary embodiment of a flavor substrate at least partially circumscribed by an outer film, wherein the flavor substrate is configured as a plurality of rods. [Figure 3E] 1 is a partial cross-sectional view of an exemplary embodiment of a flavor substrate at least partially circumscribed by an outer film, wherein the flavor substrate is configured as a plurality of tubes. [Figure 3F] 1 is a partial cross-sectional view of an exemplary embodiment of a flavor substrate at least partially circumscribed by an outer film, wherein the flavor substrate is configured as a combination of a tube and a plurality of rods. FIG. [Figure 3G] 1 is a partial cross-sectional view of an exemplary embodiment of a flavor substrate at least partially circumscribed by an outer film, wherein the flavor substrate is configured as a combination of a rolled sheet and a plurality of tubes. [Figure 4A] FIG. 1 is a cross-sectional view of an exemplary sheath / core multicomponent fiber. [Figure 4B] FIG. 1 is a cross-sectional view of an example "islands in the sea" multicomponent fiber. [Figure 5] FIG. 1 is a front view of an exemplary flavor delivery device comprising an outer housing showing a body and a mouth portion. [Figure 6] FIG. 1 is an exploded view of an exemplary flavor base surrounded by an outer sleeve, optionally containing at least one breakable capsule containing a flavoring agent inside the flavor base according to the present disclosure. [Figure 7] 1 is a partial cross-sectional view of an aerosol delivery device including a flavor delivery device according to the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0059] The present disclosure will now be described more fully hereinafter with reference to exemplary embodiments thereof. These exemplary embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Indeed, this disclosure may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will satisfy applicable legal requirements. As used in this specification and the appended claims, the singular forms "a," "an," and "the" include plural variations unless the context clearly dictates otherwise.
[0060] The present disclosure provides a description of a flavor delivery device adapted or configured to provide a flavor to a vapor or aerosol stream passing therethrough. The flavor delivery device is particularly suitable for combination with an aerosol delivery device. Thus, the flavor delivery device is adapted or configured to add a flavor to the aerosol formed within the aerosol delivery device. The aerosol delivery device can use electrical energy to heat a material to form an inhalable substance, and such an article can be compact enough to be considered a "handheld" device. The aerosol delivery device can provide some or all of the sensations of smoking a cigarette, cigar, or pipe (e.g., the inhalation and exhalation routine, the type of taste or flavor, the organoleptic effect, the physical sensation, the usage, visual cues such as those provided by a visible aerosol, etc.) without any substantial degree of combustion of the article or device components. The aerosol delivery device may not produce smoke in the sense of an aerosol resulting from the by-products of tobacco combustion or pyrolysis, but rather the article or device may produce vapor (including vapor within an aerosol that can be considered a visible aerosol that can be considered to be described as smoke-like) resulting from the volatilization or vaporization of certain components of the article or device, although in other implementations the aerosol may be invisible. In some implementations, the aerosol delivery device may incorporate tobacco and / or tobacco-derived components. Thus, the aerosol delivery device may be characterized as an electronic smoking article, such as an electronic cigarette or "e-cigarette."
[0061] Although the flavor delivery device is generally described herein with respect to implementations related to aerosol delivery devices, such as so-called "electronic cigarettes," it should be understood that the features, components, features, and methods can be embodied in many different forms and associated with a variety of items. For example, the description provided herein can be employed in combination with implementations of traditional smoking articles (e.g., cigarettes, cigars, pipes, etc.), non-combustion heated cigarettes, and related packaging for any of the products disclosed herein. Accordingly, it should be understood that the description of the features, components, features, and methods disclosed herein are described with respect to embodiments related to aerosol delivery devices by way of example only, and may be embodied and used in a variety of other products and methods.
[0062] An aerosol delivery device incorporating a flavor delivery device according to the present disclosure can also be characterized as a vapor product or drug delivery device. Accordingly, such an article or device can be configured to provide one or more substances (e.g., flavors and / or active pharmaceutical ingredients) in an inhalable form or state. For example, the inhalable substance can be substantially in vapor form (i.e., a substance in the gas phase at a temperature below its critical point). Alternatively, the inhalable substance can be in the form of an aerosol (i.e., a suspension of fine solid particles or liquid droplets in a gas). For simplicity, the term "aerosol" as used herein is meant to include vapors, gases, and aerosols in any form or type suitable for human inhalation, whether or not visible and whether or not in a form that can be considered smoke-like.
[0063] During use, an aerosol delivery device incorporating the flavor delivery device of the present disclosure can be subjected to many of the physical actions used by an individual when using a traditional smoking article (e.g., a cigarette, cigar, or pipe used by lighting and inhaling tobacco). For example, a user of the device of the present disclosure can hold the article like a traditional smoking article, draw on one end of the article to inhale the aerosol produced by the article, take a puff on the cigarette for a selected time interval, etc.
[0064] Thus, in one or more embodiments, the present disclosure can provide a flavor delivery device that can include at least a flavor substrate. The flavor material may, for example, be adsorbed and / or absorbed by the flavor substrate. In particular, the flavor material may be at least partially retained within the pores of the flavor substrate. The retention of the flavor material by the flavor substrate is preferably in a releasable relationship so that the flavor material can be released from the flavor substrate and entrained in the passing aerosol stream. As will be further apparent from the description provided herein, the flavor delivery article may further include a flavor material that can be combined with the flavor substrate and retained thereby. Furthermore, the flavor substrate may be combined with a sheath and / or an outer housing, either alone or already combined with a flavor material. Furthermore, the flavor substrate may include one or more capsules that can be combined therewith.
[0065] An exemplary embodiment of a flavor delivery device 50 is shown in FIGS. 1A and 1B. As seen in FIG. 1A, the flavor delivery device 50 can include at least one elongated flavor substrate 100, preferably formed from a porous material, which can be adapted or configured to retain and release flavor materials. FIG. 1B shows at least one elongated flavor substrate 100 having an outer periphery surrounded by an optional outer sleeve 125. Preferably, the outer sleeve 125 can be substantially impermeable to the flavor materials retained by the flavor substrate 100. As shown, the flavor substrate is generally cylindrical in shape. However, it will be understood that other configurations are also included in the present disclosure, as will become more apparent from further exemplary embodiments provided herein. The outer sleeve 125 can be present around at least a portion of the outer surface of the flavor substrate 100 and, therefore, can surround at least a portion or substantially all of the substrate's periphery. Preferably, the flavor sleeves 125 are absent from the opposing ends (101, 103) of the flavor substrate 100 so that the aerosol can pass from one end to the other, entraining the flavor material as it passes through the flavor substrate.
[0066] In some embodiments, the illustrated flavor substrate 100 is configured to extend along a longitudinal axis between a first end 101 and an opposing second end 103 and thus can have at least a longitudinal dimension or length L. The flavor substrate 100 can vary in shape and therefore can include additional dimensions, such as a thickness and / or a width W, as described further below. For example, the flavor substrate 100 can be configured to provide a substantially large surface area for the passage of flavor liquid from the flavor substrate to the aerosol stream along and / or through the flavor substrate. This can be achieved by providing a flavor substrate of a specific configuration and / or by providing multiple flavor substrates in combination. Such options are evident in relation to the exemplary embodiment shown in FIGS. 2A-2C. As seen in FIG. 2A, the flavor substrate 100 extends along the longitudinal axis L between the first end 101 and the second end 103 and has a width W and a thickness X extending along an axis perpendicular to the longitudinal axis L. Thus, the flavor substrate 100 can be substantially in the form of a sheet having a length (L) of about 0.2 cm to about 5 cm, about 0.3 cm to about 3 cm, about 0.4 cm to about 2.5 cm, or about 0.5 cm to about 2 cm. Similarly, the flavor substrate can have a width (W) of about 10% of the length to about 4000% of the length, about 20% of the length to about 2000% of the length, or about 50% of the length to about 1000% of the length. The thickness (X) can be about 5 microns to about 500 microns, about 10 microns to about 400 microns, or about 20 microns to about 300 microns. Thus, a flavor substrate 100 substantially in sheet form can be adapted or configured to be substantially flat. Optionally, a flavor substrate 100 formed as a flat sheet can be embossed and / or include a plurality of perforations 104 therethrough. The perforations may be substantially circular (see perforation 104a) or elongated (eg in the form of a slit) - see perforation 104b).
[0067] 2B, flavor substrate 100' again extends along a longitudinal axis L between first end 101' and second end 103' and is substantially in the form of a rod having a diameter d. Flavor substrate 101' in rod form can have a length (L) of about 0.2 cm to about 5 cm, about 0.3 cm to about 3 cm, about 0.4 cm to about 2.5 cm, or about 0.5 cm to about 2 cm, and can have a diameter of about 1 micron to about 2,000 microns, about 5 microns to about 1,500 microns, or about 10 microns to about 1,000 microns.
[0068] As seen in FIG. 2C , flavor substrate 100″ is again in the form of a hollow tube extending along a longitudinal axis L between first end 101″ and second end 103″ and having a diameter d. Flavor substrate 101″ in the form of a tube can have a length (L) of about 0.2 cm to about 5 cm, about 0.3 cm to about 3 cm, about 0.4 cm to about 2.5 cm, or about 0.5 cm to about 2 cm, and a diameter of about 0.5 mm to about 25 mm, about 1 mm to about 20 mm, or about 2 mm to about 15 mm. The tube can have a substantially continuous wall 105 that can vary in thickness X along the longitudinal axis of flavor substrate 100″. In some embodiments, the thickness X of substantially continuous wall 105 is preferably substantially uniform along the longitudinal axis of flavor substrate 100″. For example, the substantially continuous wall 105 can have an average thickness X of about 0.01 mm to about 5 mm, about 0.1 mm to about 4 mm, or about 0.2 mm to about 2 mm. The wall thickness may be substantially uniform along substantially the entire length of the tube (e.g., varying by about 15% or less, about 10% or less, about 5% or less, or about 2% or less). In some embodiments, the wall thickness may vary along the length of the tube.
[0069] Flavor substrates in the form of tubes or rods can take on a variety of shapes, including, for example, circular, square, rectangular, oval, triangular, polygonal, and other cross-sectional shapes. Although shown as having a substantially continuous diameter or thickness, in some embodiments, the diameter and / or thickness of the flavor substrate (or flavor substrate wall) can vary along its length. For example, the diameter and / or thickness can increase from the first end (101, 101', 101'') to the second end (103, 103', 103'') such that the diameter and / or thickness at the second end is from about 1% to about 600%, from about 25% to about 500%, from about 50% to about 400%, or from about 75% to about 250% greater than the diameter and / or thickness at the first end. Alternatively, the diameter and / or thickness may decrease from the first end (101, 101', 101'') to the second end (103, 103', 103'') such that the diameter and / or thickness of the second end is between about 1% and about 600%, between about 25% and about 500%, between about 50% and about 400%, or between about 75% and about 250% larger than the diameter of the first end.
[0070] The flavor substrate (100, 100', 100'') can be configured to provide a substantially large surface area for the passage of flavor liquid from the flavor substrate to the aerosol stream passing along the longitudinal length of the flavor substrate. This can be achieved by providing the flavor substrate in a particular configuration and / or by providing multiple flavor substrates in combination. FIG. 3A, for example, shows the flavor substrate 100 in a folded or pleated configuration. An optional outer sleeve 125 is also shown. As a further example, FIG. 3B shows the flavor substrate 100 in a gathered configuration and surrounded by an optional outer sleeve 125. As another example, FIG. 3C shows the flavor substrate 100 in a rolled configuration and surrounded by an optional outer sleeve 125. The flavor substrate 100, substantially in sheet form, can be provided in any one or more of the configurations described above, as well as similar configurations in which the sheet is gathered to maximize the available surface area through which the aerosol or similar fluid can flow. Although only a single sheet is shown as being assembled (e.g., folded, gathered, or rolled), it is understood that multiple sheets (e.g., two, three, four, five, or more) can be combined. Furthermore, when multiple sheets are used, the two or more individual sheets can be formed from different materials and / or adapted or configured to provide different properties. For example, two sheets (or more sheets) adapted to provide two or more different flavors can be utilized to provide a desired flavor combination.
[0071] As yet another example, FIG. 3D shows a plurality of flavor substrates 100′ provided in the form of rods having a substantially square cross-section (although any shaped cross-section is contemplated) and surrounded by an optional outer sleeve 125. While the plurality of rods is shown in a grid pattern, any packing style may be utilized. As yet another example, FIG. 3E shows a plurality of flavor substrates 100″ provided in the form of tubes having a substantially round cross-section (although any shaped cross-section is contemplated) and surrounded by an optional outer sleeve 125. The plurality of tubes may be provided in any packing style desired. As yet another example, FIG. 3F illustrates the use of two different types of flavor substrates. A plurality of flavor substrates 100′ in the form of rods are included along with a single flavor substrate 100″ in the form of a tube, all surrounded by an optional outer sleeve 125. Again, the rods and tubes may have any desired cross-section and may be provided in any desired number. Notably, while only a single flavor substrate tube 100'' is shown, it will be understood that multiple flavor substrate rods 100' may be combined with multiple flavor substrate tubes 100''. As yet another example, FIG. 3G also illustrates the use of two different types of flavor substrates. A flavor substrate 100 in the form of a sheet is contained within a single flavor substrate 100' in the form of a tube, all surrounded by an optional outer sleeve 125. Again, the sheets and tubes can have any desired cross-section and can be provided in any desired number (e.g., a single sheet with multiple tubes, a single tube with multiple sheets, or multiple sheets with multiple tubes). Similarly, any number of flavor substrate rods 100' and / or flavor substrate tubes 100'' may be combined with any number of flavor substrate sheets 100, which may be pleated, gathered, or wrapped.
[0072] In some embodiments, the porous material forming the flavor substrate (100, 100', 100'') may be at least partially formed from one or more polymeric materials, such as polyethersulfone, polypropylene, polyethylene, polyester (e.g., polyethylene terephthalate and polypropylene terephthalate), nylon, polylactic acid (PLA), cellulosic materials (e.g., cellulose nitrate, regenerated cellulose, cellulose acetate), silica, cotton, ceramic, and combinations thereof. Likewise, biodegradable polymers may be utilized for this purpose. For example, the flavor substrate (100, 100', 100'') may be at least partially formed from fibers formed from any of the foregoing materials alone or in combination of one or more. Likewise, any one or more of the foregoing materials may be explicitly excluded from use in one or more embodiments of the present disclosure.
[0073] In further embodiments, the elongated flavor substrate 100 in the flavor delivery device 50 can be formed from one or more layers. A larger number of layers may be utilized, and each layer may be formed from the same or different materials. Furthermore, individual layers can be adapted or configured to exhibit specific properties that can be independent of the remaining layers. Each layer can independently exhibit the same or different density, porosity, thickness, material, or other properties and / or structural characteristics. The elongated flavor substrate 100 may be formed from one, two, three, four, or more layers. When two or more layers are used, the layers can be prepared using coextrusion or other techniques known in the art. In some embodiments, the use of materials having one or more of the above-described different properties in forming the individual layers can be effective to provide a desired result, such as providing different release rates of the flavor material. For example, different release rates between layers may be desired to create different flavor profiles from each layer. More specifically, a layer whose composition includes a higher density material can be effective in providing a relatively slow release of flavor material entrained therein, while a layer comprised of a lower density material can be effective in providing a relatively fast release of flavor material entrained therein.
[0074] In one or more embodiments, the flavor substrate 100 according to the present disclosure can comprise or be substantially formed from a plurality of fibers. As used herein, the term "fiber" includes both finite-length fibers, such as conventional staple fibers and nanofibers, as well as substantially continuous structures, such as continuous filaments, unless otherwise specified. Fibers can have a generally circular or circular cross-section or a non-circular cross-section (e.g., elliptical, rectangular, multilobal, etc.). Fibers can be provided in a variety of configurations, and fibers can include, in particular, multicomponent fibers. As used herein, the term "multicomponent fiber" includes staple and continuous fibers prepared from two or more polymers present in distinct structured domains within the fiber, as opposed to blends where the domains tend to be dispersed, random, or unstructured. For illustrative purposes only, the present subject matter will generally be described with reference to exemplary bicomponent fibers comprising two polymer components. However, the present disclosure more specifically includes fibers having two or more structured components and is not limited to the exemplary bicomponent fibers described below. Although the disclosed embodiments are not limited to two components, the terms first component and second component are used throughout for ease of description.
[0075] Multicomponent fibers can contain multiple polymeric components that are arranged in distinct zones that are substantially uniformly spaced across the cross section of the multicomponent fiber and can extend continuously along the length of the multicomponent fiber. Both the shape of the fiber and the composition of the components therein depend on the equipment used to prepare the fiber, the process conditions, and the melt viscosity of the various components. While a wide variety of fiber configurations are possible, the cross section of the multicomponent fiber can be particularly circular, since equipment typically used to manufacture multicomponent synthetic fibers often produces fibers with a generally circular cross section. However, other cross sections are also encompassed.
[0076] Non-limiting examples of multicomponent fibers that can be used in flavor substrates according to the present disclosure are shown in Figures 4A and 4B. Figure 4A provides a cross-sectional view of an exemplary multicomponent fiber 10 in the form of a sheath / core fiber including at least two structured polymer components: (i) an outer sheath component 2 including a first polymer, and (ii) an inner core component 4 containing a second polymer. The core component 4 may be generally centrally disposed within the outer sheath component 2 in a generally concentric configuration, as shown, or may be off-center in a generally eccentric configuration. Figure 4B shows a further exemplary embodiment of a multicomponent fiber 10 configured as a "matrix" or "islands in the sea" type fiber having multiple inner or "island" polymer components surrounded by an outer matrix or "sea" polymer component. The island components 4 can be generally uniformly disposed within the matrix or sea component 2, as shown in Figure 4B. Alternatively, the island components 4' can be randomly distributed within the sea component 2. In various embodiments, the sea polymer component 2 can contain a first polymer component and the island polymer component 4 can contain a second polymer component.
[0077] Methods for producing multicomponent fibers are well known and need not be described in detail here. Generally, to form a multicomponent fiber, at least two polymers are separately extruded and fed into a polymer distribution system where the polymers are introduced into a segmented spinneret plate. The polymers follow separate paths to the fiber spinneret and are combined in the spinneret holes. The spinneret is configured to give the extrudate a desired shape.
[0078] After being extruded through the die, the resulting thin, fluid strands or filaments remain in a molten state for some distance before solidifying by cooling in the surrounding fluid medium, which can be cooling air blown through the strands. Once solidified, the filaments are wound onto a gusset or another winding surface. In a continuous filament process, the strands are wound onto a gusset, which draws down a thin fluid stream in proportion to the speed of the winding gusset. In a jet process, the strands are collected in a jet, such as an air gun, and blown onto a winding surface, such as a roller or moving belt, to form a spunbond web. In a meltblown process, air is jetted onto the surface of a spinneret, which serves to simultaneously draw down and cool a thin fluid stream deposited on the winding surface within the path of the cooling air, thereby forming a fibrous web. Regardless of the type of melt spinning procedure used, it is important that the thin fluid stream be melt-drawn down in the molten state, i.e., before solidification occurs, in order to reduce the fiber diameter. Typical melt draw-down ratios known in the art can be utilized. If a continuous filament or staple process is used, it may be desirable to draw the strand in a solid state using conventional drawing equipment such as continuous gussets operating at different speeds, see, e.g., U.S. Pat. No. 5,082,899, which is incorporated herein by reference in its entirety.
[0079] After being drawn in the solid state, the continuous filaments may be crimped or textured and cut to the desired fiber length to produce staple fibers. Staple fiber lengths generally range from about 25 to about 50 millimeters, although the fibers can be made longer or shorter as desired. See, for example, U.S. Pat. No. 4,789,592 to Taniguchi et al. and U.S. Pat. No. 5,336,552 to Strack et al., each of which is incorporated herein by reference in its entirety.
[0080] The multicomponent fibers of various embodiments can be staple fibers, tow, spunbond filaments, continuous filaments, or meltblown fibers. Generally, staple, multifilament, and spunbond fibers formed according to the present embodiments can have a denier of about 0.5 to about 100 denier. Meltblown filaments can have a denier of about 0.001 to about 10.0 denier. Monofilament fibers can have a denier of about 50 to about 10,000 denier.
[0081] The multicomponent fibers can be incorporated into or formed into a flavor base, as described elsewhere herein. For example, the fibers can be formed into a nonwoven web by any suitable means, particularly in the art where thermal bonding is used. Furthermore, continuous filaments can be spun directly into a nonwoven web by a spunbonding process. Fibers other than the multicomponent fibers described above can also be present and can include any of a variety of synthetic and / or natural fibers known in the art or listed elsewhere in this disclosure. Examples of synthetic fibers include polyolefins, polyesters, polyamides, acrylics, rayon, cellulose acetate, thermoplastic multicomponent fibers (e.g., conventional sheath / core fibers, e.g., polyethylene sheath / polyester core fibers), and mixtures thereof. Examples of natural fibers include wool, cotton, wood pulp fibers, and mixtures thereof.
[0082] The first and second polymer components can be formed from any material as otherwise described herein. In some embodiments, the first polymer component (e.g., forming the sheath or sea component of a multicomponent fiber) can be adapted or configured to be substantially porous. Non-limiting examples of polymers that can be used to create the porous sheath include nylon, polyethylene, polypropylene, polyester, polyimide, polyetheretherketone (PEEK), polyurethane, polytetrafluoroethylene, and Pebax®. Preparation of these porous materials can be performed by known methods described in the art, such as electrospinning. The second polymer component (e.g., forming the core or island component of a multicomponent fiber) can be adapted or configured to combine a flavor material described herein and then release the flavor material through the first polymer component. Thus, the sheath or sea component can be adapted or configured to store the flavor material mixed with the second polymer component for an extended period of time, extending flavor delivery. In other words, extended or controlled flavor delivery can be achieved such that flavor materials added to the passing aerosol stream are substantially continuous over time, instead of experiencing a decrease in flavor transmission over time.
[0083] In one or more embodiments, the flavor substrate 100 can be prepared, at least in part, from tobacco materials, including, but not limited to, reconstituted tobacco. Suitable reconstituted tobacco can be prepared using any known tobacco reconstitution process in which tobacco residues are combined and configured into a generally sheet-like form. An example of a method for producing reconstituted tobacco is provided in U.S. Patent No. 7,900,639 to Perfetti, which is incorporated by reference.
[0084] In some embodiments, the flavoring material can include one or more flavorings. As used herein, reference to a "flavoring" is intended to refer to a compound or ingredient that can be present in a flavoring material (e.g., a flavored liquid) and delivered to a user and that provides a sensory experience in terms of taste and / or smell. Exemplary flavorings include, but are not limited to, vanillin, ethyl vanillin, cream, tea, coffee, fruit (e.g., apple, cherry, strawberry, peach, and citrus flavors including lime and lemon), maple, menthol, mint, peppermint, spearmint, wintergreen, nutmeg, clove, lavender, cardamom, ginger, honey, anise, sage, rosemary, hibiscus, rosehip, erbamate, guayusa, honeybush, rooibos, erba santa, bacopa monniera, ginkgo biloba, withania somnifera, cinnamon, sandalwood, jasmine, cascarilla, cocoa, licorice, and flavors and flavor packages of the type and characteristics traditionally used in tobacco, cigar, and pipe tobacco flavorings, as well as any combination of the foregoing flavorings. Syrups, such as high fructose corn syrup, can also be used. Suitable exemplary plant-derived compositions are disclosed in U.S. Patent No. 9,107,453 and U.S. Patent Application Publication No. 2012 / 0152265, both by Dube et al., the disclosures of which are incorporated herein by reference in their entireties. The selection of such additional components can vary based on factors such as the sensory characteristics desired in the smoking article, and the present disclosure is intended to encompass such additional components that are readily apparent to those skilled in the art of tobacco and tobacco-related or tobacco-derived products. See, for example, Gutcho, Tobacco Flavoring Substances and Methods, Noyes Data Corp. (1972) and Leffingwell et al., Tobacco Flavoring for Smoking Products (1972). The disclosures of these compositions are incorporated herein by reference in their entireties.For other examples of fragrances that may be suitable for the disclosed products, see, for example, U.S. Patent Application Publication No. 2002 / 0162562 to Williams, U.S. Patent Application Publication No. 2002 / 0162563 to Williams, U.S. Patent Application Publication No. 2003 / 0070687 to Atchley et al., U.S. Patent Application Publication No. 2004 / 0020503 to Williams, U.S. Patent Application Publication No. 2005 / 0178398 to Breslin et al., U.S. Patent Application Publication No. 2006 / 0191548 to Strickland et al., U.S. Patent Application Publication No. 2007 / 0191548 to Holton, Jr. et al., U.S. Patent Application Publication No. 2008 / 0191550 to Holton, Jr. et al., U.S. Patent Application Publication No. 2009 / 0192560 to Holton, Jr. et al., U.S. Patent Application Publication No. 2009 / 0192561 to Holton, Jr. et al., U.S. Patent Application Publication No. 2009 / 0192562 ... See U.S. Patent Application Publication No. 07 / 0062549, U.S. Patent Application Publication No. 2007 / 0186941 to Holton, Jr. et al., U.S. Patent Application Publication No. 2007 / 0186942 to Strickland et al., U.S. Patent Application Publication No. 2008 / 0029110 to Dube et al., U.S. Patent Application Publication No. 2008 / 0029116 to Robinson et al., U.S. Patent Application Publication No. 2008 / 0029117 to Mua et al., U.S. Patent Application Publication No. 2008 / 0173317 to Robinson et al., and U.S. Patent Application Publication No. 2008 / 0209586 to Neilsen et al., each of which is incorporated herein by reference.
[0085] It should be noted that reference to a flavor should not be limited to a single flavor as described above, but may actually represent a combination of one or more flavors. Furthermore, when multiple layers and / or types of flavor bases disclosed herein are utilized, different flavor materials may be utilized on different layers and / or types of flavor bases. For example, a flavor base formed from two layers may include different flavor materials on the two different layers.
[0086] In one or more embodiments, at least a portion of the flavor material may be provided within one or more breakable capsules, which may be included in the elongated flavor substrate 100 of the flavor delivery device 50. The one or more breakable capsules may independently carry a payload incorporating one or more flavor materials, as described above. The flavor material may be released from the breakable capsule by any suitable action, such as by compressing the elongated flavor substrate, by twisting, bending, or folding all or a portion of the flavor delivery device 50, or by any other method for releasing the flavor from the breakable capsule. Thus, if desired, the one or more breakable capsules may be formed from a material configured to rupture during use, for example, due to contact with gas-phase material in the aerosol and / or an increase in temperature associated with the passage of the aerosol. The rupture of the capsule acts to release the contents contained and sealed therein. The release of the contents achieves the intended benefit of the particular content action, whether that benefit results from flavoring, scenting, cooling, or moistening the aerosol.
[0087] The breakable capsules can have any desired shape, such as oval, spherical, or any other possible geometric shape. The breakable capsules can have a rigid outer shell, such as a gelatin outer shell, surrounding the internal payload. Suitable capsules are commercially available from Mane Aromatic Flavors in Nice, France, as a gelatin-encapsulated mixture of medium-chain triglycerides and flavorings. Some flavored capsule names available from Mane Aromatic Flavors are: spearmint, E209123; cinnamon, E0303392; Russian tea, E0303386; lemon, E127382; and menthol, E127384. Representative breakable capsules have diameters of approximately 3.5 mm and approximately 4 mm. The outer shell of the breakable capsule is preferably constructed from food-grade gelatin derived from bovine, porcine, or porcine stock. A wide variety of gelatins can be used, and the selection of gelatin for the exterior of a capsule is believed to be a matter of design choice for those skilled in the art. See Kirk-Othmer, Encyclopedia of Chemical Technology, (4th ed.) 12, 406-416 (1994), incorporated herein by reference.
[0088] Multiple breakable capsules can be housed within the elongated substrate 100 of the flavor delivery device 50. These capsules can contain the same or different flavor materials to enhance flavor or to produce different flavors. The capsules can be positioned at different spots within the elongated flavor substrate so that the flavor materials are released at different times. Multiple breakable capsules can be positioned at the same spot on the elongated flavor substrate 100. For example, multiple breakable capsules can have significantly different sizes or geometric shapes, including spherical or elliptical, with the flavor material contained in the breakable capsule having a larger diameter. For example, a user can break a first capsule by pressing or compressing the flavor substrate to release a first flavor. Later, the user performs a second pressing or compression to break a second breakable capsule containing the flavor material. The second capsule can have a smaller diameter than the first capsule so that the first capsule breaks with less pressure than the pressure required to break the smaller capsule. A second press can be performed later on demand by the user to enhance or extend the flavor from the first capsule.
[0089] The flavor delivery device 50 can include a breakable capsule having a diameter of at least about 1 mm, typically at least about 2 mm, and often at least about 3 mm. Typically, the breakable capsule may have a diameter not exceeding about 6 mm, often not exceeding 5 mm, and frequently not exceeding about 4.5 mm. Particularly preferred breakable capsules have a diameter in the range of about 3 mm to about 5 mm, with particularly highly preferred breakable capsules having a diameter of about 4.5 mm.
[0090] In one or more embodiments, the flavor delivery device 50 may further include an outer sleeve 125 that substantially surrounds the outer periphery of the elongated flavor substrate 100. The outer sleeve 125 can be provided to substantially circumscribe the flavor substrate. Preferably, the outer sleeve 125 extends substantially along the entire longitudinal length L of the flavor substrate 100. However, it is understood that the outer sleeve 125 can extend only along a partial length of the elongated flavor substrate 100, such as only along an approximately central portion of the longitudinal length of the flavor substrate or adjacent only one end of the flavor substrate. As a non-limiting example, the outer sleeve 125 can be in the form of a sheet that can be substantially wrapped around a substrate or combination of substrates, and the wrapped sheet can be glued, sewn, welded, or otherwise attached to one or more of the substrates and / or itself. As a further example, the outer sleeve 125 can be provided in the form of a substantially tube, straw, or the like, and can be slid around the substrates, or the substrates can be disposed within the tube. The outer sleeve 125 can vary in thickness, and the thickness can be substantially constant or can vary along its entire length. In some embodiments, the outer sleeve can have a thickness of about 25 microns to about 2 mm, about 50 microns to about 1 mm, or about 100 microns to about 750 microns. In further embodiments, substantially thicker materials can be used.
[0091] In some embodiments, the outer sleeve 125 surrounding the outer periphery of the elongated flavor substrate 100 may be formed at least in part from one or more polymeric materials, such as polyether, polyester, polypropylene, polylactic acid (PLA), nylon, or combinations thereof. For example, the outer sleeve 125 may be formed at least in part from fibers formed from any of the foregoing materials alone or in combination with one or more of the foregoing materials. Similarly, any one or more of the foregoing materials may be expressly excluded from use in one or more embodiments of the present disclosure. The outer sleeve may be formed from, among other things, a biodegradable material. In other examples, the outer sleeve may be formed from a type of material other than a polymeric material. For example, in some embodiments, the outer sleeve may be formed from paper foil, filter paper, ceramic, aluminum, or any combination thereof. Similarly, combinations of polymeric and non-polymeric materials may also be used. In one or more embodiments, the outer sleeve 125 may be adapted or configured to substantially prevent or resist the passage of any flavor material, particularly under ambient conditions, over an extended period of time (e.g., up to about 6 months, about 1 year, or about 2 years). Thus, the outer sleeve 125 may be substantially impermeable to aqueous liquids and / or oils, at least for a minimum period of time as described above.
[0092] Flavor delivery devices combined with flavor substrates and flavor materials, according to embodiments of the present disclosure, can be particularly suitable for combination with other articles, such as aerosol delivery devices of various forms. Thus, the flavor substrates and flavor materials can be provided in a form that allows the flavor substrate to be easily combined with such additional devices. For example, in some embodiments, the flavor substrate can be combined with an outer shell adapted or configured to removably or permanently retain the flavor substrate. In the embodiment shown in FIG. 5 , an exemplary embodiment of a flavor delivery device 500 can include an outer housing 510 including a body 501 and a mouth portion 502. The body 501 extends along a longitudinal axis between a distal end 511 and a proximal end 513, each end including one or more openings 512 and 514. The outer housing defines a chamber 515 therein. The mouth portion 502 can be attached to the proximal end 513 of the body portion 501 and can include one or more openings 503 formed therein. Thus, the mouth portion 502 may be permanently attached to the body portion 501, removably attached (e.g., hinged), or co-extruded with the body portion to form a single monolithic structure. The outer housing 510 may have one or more openings 520 formed in its body 501.
[0093] FIG. 6 depicts an exploded view of a flavor delivery device 500 according to the present disclosure, including a flavor substrate 100, which may have, for example, an outer sleeve surrounding at least a portion of the flavor substrate. As shown, at least one breakable capsule 525 containing a flavoring agent is optionally housed within the flavor substrate 100. The flavor substrate 100 may include a flavor material therein, which may be the same as or different from the flavor material present within the at least one breakable capsule 525. Alternatively, the flavor substrate may exclude any flavor material other than the flavor material present inside the at least one breakable capsule 525. The flavor substrate 100 may be disposed within a chamber 515 of an outer housing 510. Once present within the chamber 515 of the outer housing 510, the flavor substrate 100 and / or the flavor material present within the at least one breakable capsule 525 may be released by a flow, such as an aerosol flow, passing therethrough. The breakable capsule 525 can be broken, for example, by compressing the elongated flavor substrate 100, or by twisting, bending, folding the flavor delivery device 500 (or only a portion thereof), or by any other method for releasing the flavor from the breakable capsule. The elongated flavor substrate is removable and replaceable. Preferably, at least one elongated flavor substrate, such as the flavor substrate 100, is disposed within the chamber 515 of the outer housing 510 such that the longitudinal axis of the at least one elongated substrate is substantially parallel to the longitudinal axis of the outer housing. The flavor delivery device 500 so formed may then be configured to engage the mouth end of or be inserted into a smoking article or similar device such that vapor or aerosol formed within the delivery device passes through openings 512 in the outer housing 510 of the flavor delivery device 500, and flavor material, for example, held by the flavor substrate 100 and / or breakable capsules, is entrained in the vapor or aerosol that subsequently exits the flavor delivery device through at least one opening 503 in the mouthpiece portion 502 of the flavor delivery device.
[0094] In one or more embodiments, one or more capsules used herein may be in the form of a microcapsule or multiple microcapsules that can incorporate a flavoring material. For example, microcapsules may be particularly useful for storing a flavoring material and then releasing the flavoring material without the need for mechanical action. In other words, release of the flavoring material from the microcapsules may be by contact with a passing aerosol stream (e.g., via heat, moisture, or a chemical reaction that causes the microcapsules to release the flavoring material). Encapsulation of the flavoring material can be carried out using any suitable technique. For example, microcapsules can be formed using any of a variety of chemical encapsulation techniques, such as solvent evaporation, solvent extraction, organic phase separation, interfacial polymerization, simple and complex coacervation, in-situ polymerization, liposomal encapsulation, and nanoencapsulation. Alternatively, physical methods of encapsulation can be used, such as spray coating, pan coating, fluidized bed coating, annular jet coating, spinning disk atomization, spray chilling, spray drying, spray chilling, fixed nozzle coextrusion, centrifugal head coextrusion, or submerged nozzle coextrusion.
[0095] Regardless of the encapsulation method used, the outer wall or shell material and solvent used to form the capsule can vary. Classes of materials typically used as wall or shell materials include proteins, polysaccharides, starches, waxes, fats, natural and synthetic polymers, and resins. Exemplary materials for use in the microencapsulation process used to form microcapsules include gelatin, acacia (gum arabic), polyvinyl acetate, potassium alginate, carob bean gum, potassium citrate, carrageenan, potassium polymetaphosphate, citric acid, potassium tripolyphosphate, dextrin, polyvinyl alcohol, povidone, dimethylpolysiloxane, dimethyl silicone, refined paraffin wax, ethyl cellulose, bleached shellac, modified food starch, sodium alginate, guar gum, sodium citrate, carboxymethylcellulose, hydroxypropyl cellulose, hydroxypropylmethylcellulose, sodium ferrocyanide, sodium polyphosphate, locust bean gum, methylcellulose, sodium trimetaphosphate, methylethylcellulose, sodium tripolyphosphate, microcrystalline wax, tannic acid, petroleum waxes, terpene resins, tragacanth, polyethylene, xanthan gum, and polyethylene glycol.
[0096] Microcapsules are commercially available, and exemplary types of microcapsule technology are described in Gutcho, Microcapsules and Microencapsulation Techniques (1976); Gutcho, Microcapsules and Other Capsules Advances Since 1975 (1979); Kondo, Microcapsule Processing and Technology (1979); Iwamoto et al., AAPS Pharm. Sci. Tech. 2002 3(3):article 25; U.S. Pat. No. 5,004,595 to Cherukuri et al.; U.S. Pat. No. 5,690,990 to Bonner; U.S. Pat. No. 5,759,599 to Wampler et al.; U.S. Pat. No. 6,039,901 to Soper et al.; U.S. Pat. No. 6,045,835 to Soper et al.; U.S. Pat. No. 6,056,992 to Lew; U.S. Pat. No. 6,106,875 to Soper et al.; U.S. Pat. No. 6,117,455 to Takada et al.; U.S. Pat. No. 6,482,433 to DeRoos et al.; and U.S. Pat. No. 6,929,814 to Bouwmeesters et al., each of which is incorporated herein by reference.
[0097] The flavor delivery device is beneficially useful for imparting a desired flavor effect to the aerosol stream. Therefore, the flavor delivery device can be combined with any type of device configured to provide an aerosol stream. This can include, in exemplary embodiments, aerosol delivery devices such as those described further herein or having a different configuration of components, but intended to provide the same function of acting on an aerosol precursor liquid to form a vapor that can be entrained in the passing airflow, thus forming an aerosol. For example, referring to FIG. 7 , when cartridge 404 is engaged with a power unit, a user inhaling through opening 428 at the mouth end of the cartridge causes air to enter through air inlet 418. The air flows through and / or around reservoir 444, entraining the vapor formed by heating of the aerosol precursor composition in liquid transport element 436 by heater 434, thus forming an aerosol that exits through opening 428. Thus, there can be one or more airflow paths through the aerosol delivery device. As described herein, the heater 434 can be positioned substantially within the airflow passageway so that the formed vapor is efficiently available for entrainment in the air flowing through the cartridge 404.
[0098] In one or more embodiments, a mouthpiece 419 is provided in accordance with the present disclosure, and the mouthpiece 419 can be configured to fit or connect to the mouth end of the cartridge 425 of FIG. 7 . In some embodiments, the flavor delivery device 200 described herein can be disposed substantially within the airflow passage. For example, in some embodiments, the flavor delivery device 200 can be disposed within the cartridge 425 near its mouth end, as shown in FIG. 7 . In further embodiments, the flavor delivery device 200 can be configured as described above in connection with FIGS. 5 and 6 (or a similar configuration) and essentially function as the mouthpiece of the aerosol delivery device. In another embodiment, the flavor delivery device can be disposed on a mouthpiece connected to the mouth end of the cartridge housing. Thus, the mouthpiece can be configured to be inserted into the end of the aerosol delivery device and / or configured to slide at least partially over the end of the aerosol delivery device to form a connection therewith. In one or more embodiments, the flavor delivery device 200 may be provided as a stand-alone unit that can be combined with other devices as needed to add flavor to an unflavored aerosol or to provide additional flavor that is mixed with the flavor already provided by the paired device. Additionally, the flavor delivery device may be adapted or configured to be removably attached to one or both of the mouth end of the cartridge 425 and the mouthpiece 419 attached to the mouth end of the cartridge. Such connection may be via any one or more of a threaded connection, a magnetic connection, a press-fit (or friction-fit) connection, or the like. Thus, the flavor delivery device is replaceable by the user.
[0099] Aerosol delivery devices incorporating the flavor device of the present disclosure can generally include multiple components disposed within an outer shell or body. The overall design of the outer shell or body can vary, and the format or configuration of the outer body, which can define the overall size and shape of the aerosol delivery device, can vary. Typically, an elongated body resembling the shape of a cigarette or cigar can be formed from a single, unitary shell, or the elongated body can be formed from two or more separable parts. For example, the aerosol delivery device can be generally tubular in shape and thus comprise an elongated shell or body resembling the shape of a traditional cigarette or cigar. However, various other shapes and configurations can be used in other embodiments (e.g., rectangular or fob-shaped). Thus, the aerosol delivery devices described herein can have any desired configuration.
[0100] In one implementation, all components of the aerosol delivery device are housed within a single outer body, which can be defined as a housing or shell. Alternatively, the aerosol delivery device can have two or more shells that are joined and separable. For example, the aerosol delivery device can have a control body or power unit including a shell that houses one or more reusable components (e.g., a rechargeable battery and various electronics for controlling the operation of the device), as well as a removably attached shell configured as a disposable portion (e.g., a disposable fragrance-containing cartridge). More specific formats, configurations, and arrangements of components within a single-shell type unit or a multi-piece separable shell type unit will become apparent in light of the further disclosure provided herein. Furthermore, various aerosol delivery device designs and component arrangements can be understood by considering commercially available electronic aerosol delivery devices.
[0101] The aerosol delivery device of the present disclosure may comprise some combination of a power source (i.e., an electrical power source), at least one control component (e.g., a means for activating, controlling, regulating, and / or terminating power for heat generation, such as by controlling current flow from the power source to other components of the aerosol delivery device), a heater or heat-generating component (e.g., an electrical resistance or induction heating element or component sometimes commonly referred to as part of an "atomizer"), and an aerosol precursor composition (e.g., a liquid that can generate an aerosol upon application of sufficient heat, such as components commonly referred to as "smoke juice," "e-liquid," and "e-serum"), and a mouth end region or tip that allows for drawing air onto the aerosol delivery device for aerosol inhalation (e.g., a defined air flow path through the article so that the generated aerosol can be collected therefrom upon inhalation).
[0102] The arrangement of components within the aerosol delivery device of the present disclosure can vary. In certain implementations, the aerosol precursor composition can be positioned near the end of the aerosol delivery device, which can be configured to be positioned proximal to the user's mouth to maximize aerosol delivery to the user. However, other configurations are not excluded. Generally, the heating element can be positioned sufficiently close to the aerosol precursor composition so that heat from the heating element volatilizes the aerosol precursor (which itself may contain one or more flavors, medicinal agents, or other additives) and forms an aerosol that can be delivered to the user. When the heating element heats the aerosol precursor composition, an aerosol is formed, released, or generated in a physical form suitable for inhalation by the consumer. It should be noted that references to release, releasing, releases, or released are meant to be interchangeable, including form or generate, forming or generating, forms or generates, and formed or generated. Specifically, inhalable substances are released in the form of vapors or aerosols or mixtures thereof, and such terms are also used interchangeably herein unless otherwise specified.
[0103] As described above, the aerosol delivery device may incorporate a battery and / or other power source (e.g., a capacitor) to provide sufficient current to provide various functions for the aerosol delivery device, such as powering the heater, powering the control system, and powering the indicators. The power source can take a variety of forms. In one example, the power source can provide sufficient power to rapidly heat the heating element to provide aerosol formation and to power the aerosol delivery device throughout a desired duration of use. The power source may be sized to fit conveniently within the aerosol delivery device so that the aerosol delivery device can be easily handled. Furthermore, in one embodiment, the power source is sufficiently lightweight so as not to detract from the desired smoking experience.
[0104] More specific forms, configurations, and arrangements of components within the aerosol delivery device of the present disclosure will become apparent in light of the further disclosure provided below. Furthermore, the selection of various aerosol delivery device components can be understood in light of commercially available electronic aerosol delivery devices. Furthermore, the arrangement of components within the aerosol delivery device can also be understood in light of commercially available electronic aerosol delivery devices. Examples of commercially available products whose components, their methods of operation, materials included therein, and / or other attributes may be included in the devices of the present disclosure, as well as component manufacturers, designers, and / or assignees, and related technology that may be used in the aerosol delivery device of the present disclosure, are described in U.S. Patent Application No. 15 / 222,615, filed July 28, 2016, by Watson et al., which is incorporated herein by reference in its entirety.
[0105] An exemplary embodiment of an aerosol delivery device 400 illustrating components that may be utilized in an aerosol delivery device according to the present disclosure is provided in FIG. 7. As seen in the illustrated cross-sectional view, the aerosol delivery device 400 may include a power supply unit 402 and a cartridge 425 that may be permanently or removably aligned in functional relationship. Engagement between the power supply unit 402 and the cartridge 425 may be press-fit (as shown), threaded, interference fit, magnetic, or the like. In particular, connection components as further described herein may be used. For example, the power supply unit may include a coupler adapted to engage a connector on the cartridge.
[0106] In certain embodiments, one or both of the power supply unit 402 and the cartridge 425 may be referred to as disposable or reusable. For example, the power supply unit may have a replaceable or rechargeable battery and, therefore, may be combined with any type of recharging technology, including connection to a typical electrical outlet, connection to an automobile charger (i.e., cigarette lighter receptacle), and connection to a computer via a universal serial bus (USB) cable or the like. For example, an adapter including a USB connector on one end and a power supply unit connector on the opposite end is disclosed in U.S. Patent Application Publication No. 2014 / 0261495 to Novak et al., which is incorporated herein by reference in its entirety. Furthermore, in some embodiments, the cartridge may comprise a disposable cartridge, as disclosed in U.S. Patent No. 8,910,639 to Chang et al., which is incorporated herein by reference in its entirety.
[0107] As shown in FIG. 7 , power supply unit 402 can be formed from power supply unit shell 401 that can include control components 406 (e.g., a printed circuit board (PCB), integrated circuits, memory components, a microcontroller, etc.), a flow sensor 408, a battery 410, and LEDs 412, which can be variably aligned. In addition to or as an alternative to the LEDs, additional indicators (e.g., haptic feedback components, audio feedback components, etc.) can be included. Additional exemplary types of components that generate visual cues or indicators, such as light-emitting diode (LED) components, and their construction and use, are described in U.S. Pat. No. 5,154,192 to Sprinkel et al.; U.S. Pat. No. 8,499,766 to Newton and U.S. Pat. No. 8,539,959 to Scatterday; U.S. Patent Application Publication No. 2015 / 0020825 to Galloway et al.; and U.S. Patent Application Publication No. 2015 / 0216233 to Sears et al., which are incorporated herein by reference.
[0108] The cartridge 425 can be formed from a cartridge shell 403 enclosing a reservoir 444 in fluid communication with a liquid transport element 436 adapted to draw up or otherwise transport the aerosol precursor composition stored in the reservoir housing to a heater 434. The liquid transport element can be formed from one or more materials configured to transport liquid, such as by capillary action. The liquid transport element can be formed from, for example, fibrous materials (e.g., organic cotton, cellulose acetate, regenerated cellulose fabric, glass fiber), porous ceramic, porous carbon, graphite, porous glass, sintered glass beads, sintered ceramic beads, capillaries, etc. Thus, the liquid transport element can be any material that includes an open pore network (i.e., multiple pores interconnected so that fluid can flow from one pore to another in multiple directions through the element).
[0109] Various embodiments of materials configured to generate heat upon the passage of an electric current may be used to form the resistive heating element 434. Examples of materials from which the wire coil can be formed include Kanthal (FeCrAl), nichrome, molybdenum disilicide (MoSi), molybdenum silicide (MoSi), aluminum-doped molybdenum disilicide (Mo(Si,Al)), titanium, platinum, silver, palladium, graphite and graphite-based materials (e.g., carbon-based foams or yarns), and ceramics (e.g., ceramics with positive or negative temperature coefficients). Similarly, various other embodiments of heating elements can be used. For example, a metal mesh can be disposed around a cylindrical wick, or a ribbon-like metal mesh can be disposed on a ribbon-shaped or sheet-shaped wick. For example, the heating element can be configured to heat an aerosol precursor composition disposed within a liquid transport element via radiant heating, as described in U.S. Patent Application Publication No. 2017 / 0020193, filed December 3, 2015, which is incorporated herein by reference. In another implementation, the heating element can be configured to heat the aerosol precursor composition via induction heating, as described in U.S. Patent Application Publication No. 2017 / 0127722, filed November 6, 2015, the contents of which are incorporated herein by reference. A variety of heater components can be used in the present aerosol delivery device. In various embodiments, one or more microheaters or similar solid-state heaters can be used. Microheaters and atomizers incorporating microheaters suitable for use in the presently disclosed device are described in U.S. Patent No. 8,881,737 to Collett et al., the contents of which are incorporated herein by reference.
[0110] An opening 418 may be present in the cartridge shell 403 (e.g., at the mouth end) to allow the formed aerosol to exit the cartridge 404. Such components are representative of components that may be present in a cartridge and are not intended to limit the scope of cartridge components included in this disclosure.
[0111] The cartridge 425 may also include one or more electronic components 450, which may include integrated circuits, memory components, sensors, etc. The electronic components 450 may be adapted to communicate with the control component 406 and / or external devices by wired or wireless means. The electronic components 450 may be located anywhere within the cartridge 425 or its base 440.
[0112] Although the control component 406 and the flow sensor 408 are shown separately, it is understood that the control component and the flow sensor may be combined as an electronic circuit board to which the mass airflow sensor is directly attached. Furthermore, the electronic circuit board may be oriented horizontally relative to the view of FIG. 7 in that the electronic circuit board may be longitudinally parallel to the central axis of the power supply unit. In some embodiments, the mass airflow sensor may include its own circuit board or other base element to which it can be attached. In some embodiments, a flexible circuit board may be utilized. The flexible circuit board may be configured in a variety of shapes, including a generally tubular shape.
[0113] The power supply unit 402 and cartridge 425 may include components configured to facilitate fluid engagement therebetween. As shown in FIG. 7 , the power supply unit 402 may include a coupler 424 having a cavity 404 therein. The cartridge 425 may include a base 440 adapted to engage with the coupler 424 and may include a protrusion 426 adapted to fit within the cavity 404. Such engagement may facilitate a stable connection between the power supply unit 402 and the cartridge 404, as well as establish an electrical connection between the battery 410, the control components 406 within the power supply unit, and the heater 434 within the cartridge. Additionally, the power supply unit shell 401 may include an air inlet 428, which may be a notch in the shell that connects to the coupler 424, allowing ambient air to pass around the coupler and through the shell as it passes through the coupler cavity 404 and enters the cartridge via the protrusion 426.
[0114] Useful couplers and bases according to the present disclosure are described in U.S. Patent Application Publication No. 2014 / 0261495 to Novak et al., the disclosure of which is incorporated herein by reference in its entirety. For example, a coupler such as that seen in FIG. 7 may define an outer periphery 441 configured to mate with an inner periphery 442 of a base 440. In one embodiment, the inner periphery of the base may define a radius approximately equal to or slightly greater than the radius of the outer periphery of the coupler. Additionally, the coupler 424 may define one or more protrusions 429 on the outer periphery 426 configured to engage with one or more recesses 478 defined in the inner periphery of the base. However, various other embodiments of structures, shapes, and components may be used to couple the base to the coupler. In some embodiments, the connection between the base 440 of the cartridge 425 and the coupler 424 of the power supply unit 402 may be substantially permanent, while in other embodiments the connection therebetween may be releasable, for example, so that the power supply unit can be reused with one or more additional cartridges, which may be disposable and / or refillable.
[0115] The aerosol delivery device 400, in some embodiments, can be generally rod-shaped or tubular in shape, or generally cylindrical in shape. Other embodiments encompass additional shapes and dimensions, such as rectangular or triangular cross-sections, multi-sided shapes, etc. In particular, the power unit 402 may be non-rod-shaped, but rather may have a generally rectangular, circular, or some other shape. Similarly, the power unit 402 may be substantially larger than a power unit that would be expected to be substantially the size of a conventional cigarette.
[0116] The reservoir 444 shown in FIG. 7 can be a container (e.g., formed from walls that are substantially impermeable to the aerosol precursor composition) or a fibrous reservoir. The container walls can be flexible and collapsible. Alternatively, the container walls can be substantially rigid. The container reservoir can be referred to as a tank. Furthermore, a fibrous material can be provided in at least a portion of the container. In an exemplary embodiment, the reservoir 444 can comprise one or more layers of nonwoven fibers formed substantially in the shape of a tube that surrounds the interior of the cartridge shell 403. The aerosol precursor composition can be held in the reservoir 444. For example, a liquid component can be sorbently held by the reservoir 444 (i.e., when the reservoir 444 includes a fibrous material). The reservoir 444 can be fluidly connected to the liquid transport element 436. The liquid transport element 436 can transport the aerosol precursor composition stored in the reservoir 444 via capillary action to the heating element 434, which in this embodiment is in the form of a metal wire coil. The heating element 434 is thus in heating arrangement with the liquid transport element 436.
[0117] During use, when a user pulls on article 400, airflow is detected by sensor 408, activating heating element 434, which vaporizes the components of the aerosol precursor composition. When the mouth end of article 400 is pulled, ambient air enters air inlet 418 and passes through cavity 404 of coupler 424 and the central opening in protrusion 426 of base 440. In cartridge 425, the drawn-in air combines with the formed vapor to form an aerosol. The aerosol is bubbled, aspirated, or otherwise drawn from heating element 434 and out mouth opening 428 at the mouth end of article 400.
[0118] The aerosol delivery device may include an input element. An input can be included to allow a user to control the device's functions and / or to output information to the user. Any component or combination of components can be utilized as an input for controlling the device's functions. For example, one or more push buttons can be used, as described in U.S. Patent Application Publication No. 2015 / 0245658 to Worm et al., incorporated herein by reference. Similarly, a touchscreen can be used, as described in U.S. Patent Application No. 14 / 643,626 to Sears et al., filed March 10, 2015, incorporated herein by reference. As a further example, a component adapted for gesture recognition based on designated movements of the aerosol delivery device can be used as an input. See U.S. Patent Application Publication No. 2016 / 0158782 to Henry et al., incorporated herein by reference.
[0119] In another aspect, the present disclosure may be directed to a kit providing various components as described herein. For example, the kit may include a control body having one or more cartridges. The kit may further include a control body having one or more charging components. The kit may further include a control body having one or more batteries. The kit may further include a control body having one or more cartridges and one or more charging components and / or one or more batteries. In further embodiments, the kit may include multiple cartridges. The kit may further include multiple cartridges and one or more batteries and / or one or more charging components. The kit may further include a case (or other packaging, carrying, or storage component) for housing one or more of the additional kit components. The case may be a reusable rigid or flexible container. Furthermore, the case may simply be a box or other packaging structure. In further embodiments, the disclosed kit may include one or more components of the flavor delivery device described herein. For example, the kit may include one or more outer housings and one or more flavor substrates. Similarly, the kit may include one or more containers of e-liquid that can be combined with the flavor substrates. Additionally, the outer housing, substrate, and container of e-liquid may be included in any combination with the additional kit components described above.
[0120] The foregoing description of the use of the device can be applied to the various embodiments described herein through minor modifications that may be apparent to those skilled in the art in light of the further disclosure provided herein. However, the above description of use is not intended to limit the use of the article, but is provided to fulfill all necessary requirements of the present disclosure.
[0121] The use of the terms "about" and "substantially" herein is intended to indicate that a parameter is exactly as recited or varies from the exactly recited condition by relatively small deviations recognized to result from typical manufacturing methods and / or sampling error. For example, a value recited as being "about" a stated value is intended to encompass the exactly recited value as well as minor deviations therefrom, such as + / -3%, + / -2%, + / -1%, + / -0.5%, or + / -0.1% of the exactly recited value. Similarly, an item described herein as "substantially" having a recited condition is intended to encompass the exactly recited condition as well as minor deviations therefrom that can result from manufacturing methods, etc.
[0122] Many modifications and other implementations of the present disclosure will come to mind to one skilled in the art to which this disclosure pertains having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. It is to be understood, therefore, that the present disclosure is not limited to the specific embodiments disclosed herein, and that modifications and other embodiments are intended to be included within the scope of the appended claims. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
Claims
1. 1. A flavor delivery device comprising: at least one elongated flavor substrate formed from a porous material and extending along a longitudinal axis between a first end and an opposite second end; a flavor material contained within an elongated flavor base; an outer sleeve that substantially surrounds at least the outer periphery of the elongated flavor substrate, the outer sleeve being substantially impermeable to the flavor material; A flavor delivery device comprising:
2. 10. The flavor delivery device of claim 1, wherein one or more of the following conditions are met: the at least one elongated flavor substrate comprises one or more rods; The at least one elongated flavor substrate comprises one or more tubes: the at least one elongated flavor substrate is in the form of a pleated sheet; the at least one elongated flavor substrate is in the form of a gathered sheet; The at least one elongated flavor substrate is in the form of a rolled sheet.
3. 10. The flavor delivery device of claim 1, wherein the porous material forming the at least one elongated flavor substrate is a polymeric material.
4. 4. The flavor delivery device of claim 3, wherein the polymeric material is selected from the group consisting of polyethylene, polypropylene, polyether, polyester, polylactic acid (PLA), cellulose acetate, nylon, ceramic, or any combination thereof.
5. 10. The flavor delivery device of claim 1, wherein the outer sleeve is made from a material selected from the group consisting of silicone, polyether, polyester, polypropylene, polylactic acid (PLA), nylon, or any combination thereof.
6. The flavor delivery device of claim 1 , wherein the at least one elongated flavor substrate is formed by a plurality of layers.
7. The flavor delivery device of claim 6 , wherein each layer contains a material having a different density.
8. The flavor delivery device of claim 6 , wherein each layer of the plurality of layers is configured to release flavor material at a different rate.
9. The flavor delivery device of claim 6 , wherein each layer of the plurality of layers contains a different flavor material.
10. The flavor delivery device of claim 1 , wherein the at least one elongated flavor substrate is formed from a plurality of fibers.
11. The flavor delivery device of any one of claims 1 to 10, wherein at least a portion of the plurality of fibers are sheath-core fibers.
12. 12. The flavor delivery device of claim 11, wherein the sheath is a porous material and the flavor material is contained in the core.
13. 13. The flavor delivery device of any one of claims 1 to 12, further comprising an outer housing extending along a longitudinal axis between a distal end including at least one opening and a proximal end including at least one opening, the outer housing having an outer wall defining a chamber, and the at least one elongate flavor substrate disposed within the chamber of the outer shell such that the longitudinal axis of the at least one elongate substrate is generally parallel to the longitudinal axis of the outer housing.
14. The flavor delivery device of claim 13 , wherein the outer housing comprises one or more openings formed in an outer wall of the housing.
15. 14. The flavor delivery device of claim 13, wherein the elongated flavor substrate is removable and replaceable.
16. 14. The flavor delivery device of claim 13, wherein the proximal end of the outer shell is configured to engage the mouth end of a smoking article.
17. The flavor delivery device of any one of claims 1 to 16, wherein at least a portion of the flavor material is provided within a breakable capsule.
18. 20. The flavor delivery device of claim 17, wherein the device comprises a plurality of breakable capsules.
19. 20. The flavor delivery device of claim 18, wherein the plurality of breakable capsules comprises capsules of at least two significantly different sizes.
20. 1. A cartridge for an aerosol delivery device, comprising: a cartridge housing having a mouth end; an aerosol precursor composition disposed within a housing; an atomizer configured to vaporize the aerosol precursor composition; 10. The flavor delivery device of claim 1 positioned to receive a vaporized aerosol precursor composition; A cartridge comprising:
21. 21. The cartridge of claim 20, further comprising a mouthpiece connected to the mouth end of the cartridge housing.
22. 22. The cartridge of claim 21, wherein the mouthpiece comprises a flavor delivery device.
23. 23. The cartridge of claim 22, wherein the flavor delivery device is located above the mouthpiece.
24. 21. The cartridge of claim 20, wherein the flavor delivery device is removable and replaceable.
25. 22. The cartridge of claim 21, wherein the flavor delivery device is removably connected to one or both of the mouth end and mouthpiece of the cartridge via any one or more of a threaded connection, a magnetic connection, and a friction fit.
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