Smoking article including flavor delivery member

The embedded flavor delivery member in the filter segment addresses flavor volatility by releasing liquid flavorant upon external force, enhancing sensory experience and manufacturing protection, while maintaining RTD levels.

JP2025134023AActive Publication Date: 2025-09-11PHILIP MORRIS PRODUCTS SA
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Patent Information

Application Number
JP2025119907
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2013-03-28
Filing Date
2025-07-16
Publication Date
2025-09-11
Estimated Expiration
2034-03-28

AI Technical Summary

Technical Problem

Existing smoking articles face challenges in maintaining flavor effectiveness over time due to volatile flavoring agents that evaporate or migrate, and there is a need for improved flavor transfer and diffusion control while maintaining desirable properties.

Method used

A filter design with a flavor delivery member embedded within the filter segment, surrounded by filter material, releases liquid flavorant upon external force application, with a cross-sectional area of at least 30% of the filter segment, using fibers of 5.0 to 12.0 denier per filament and total denier of 10,000 to 35,000, providing enhanced flavor release and resistance to withdrawal.

Benefits of technology

The filter achieves a unique sensory experience with controlled flavor release, higher resistance to withdrawal, and improved protection of the flavor delivery member during manufacturing, while maintaining desirable RTD levels and flavor intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a filter (103) for a smoking article (100).SOLUTION: A filter (103) comprises a filter segment (201) comprising a filter material, and the filter segment (201) has a cross sectional area measured perpendicularly to the longitudinal direction of the filter (103). The filter further comprises a flavor delivery member (205) embedded in the filter segment (201) and surrounded on all sides by the filter material (203). The flavor delivery member (205) comprises a structural material enclosing a liquid flavorant for flavoring smoke during smoking of a smoking article provided with the filter (103), and the flavor delivery member (205) releases at least a portion of the liquid flavorant when the filter (103) is subjected to external force. The cross sectional area of the flavor delivery member (205) measured perpendicularly to the longitudinal direction of the filter (103) is about 30% of the cross sectional area of the filter segment (201) or greater.SELECTED DRAWING: Figure 3
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Description

[Technical Field]

[0001] The present invention relates to a filter for a smoking article and to a smoking article equipped with a filter. [Background technology]

[0002] Combustible smoking articles, such as cigarettes, typically comprise shredded tobacco (usually in the form of cut filler) surrounded by a paper wrapper that forms a tobacco rod. A cigarette is consumed by a consumer by lighting one end of the cigarette and burning the shredded tobacco rod. The consumer then receives mainstream smoke by drawing on the opposite end (the mouth end or filter end) of the cigarette. The shredded tobacco may be a single type of tobacco or a mixture of two or more types of tobacco.

[0003] Numerous smoking articles have also been proposed in the art in which an aerosol-forming substrate, such as tobacco, is heated rather than combusted. In heated smoking articles, an aerosol is generated by heating the aerosol-forming substrate. Known heated smoking articles include, for example, smoking articles in which the aerosol is generated by electrical heating or by heat transfer from a combustible fuel element or heat source to the aerosol-forming substrate. During smoking, volatile compounds are released from the aerosol-forming substrate by heat transfer from the heat source and are entrained in the air drawn through the smoking article. As the released compounds cool, they condense to form an aerosol, which is inhaled by the consumer. Smoking articles are also known in which a nicotine-containing aerosol is generated from tobacco material, tobacco extract, or other nicotine sources without combustion, and in some cases without heating, for example, by a chemical reaction.

[0004] Smoking articles, particularly cigarettes, typically include a filter aligned in end-to-end relationship with a tobacco rod or another aerosol-forming substrate. The filter typically includes a plug of cellulose acetate tow attached to the tobacco rod or other aerosol-forming substrate by tipping paper. Mainstream smoke ventilation can be achieved by one or more rows of perforations in the tipping paper located near positions along the filter.

[0005] Flavoring agents can be added to cigarettes and smoking articles. Some consumers prefer cigarettes that can selectively provide one or more flavors depending on the consumer's immediate desire, either short-term or long-term. However, certain flavoring agents are volatile and tend to evaporate or migrate over time, reducing the effectiveness of these flavoring agents.

[0006] It is therefore desirable to provide smoking articles and filters for smoking articles that promote flavor transfer to the smoke and minimize flavor diffusion while still maintaining other desirable properties of the smoking article. Summary of the Invention

[0007] According to a first aspect of the present invention, there is provided a filter for a smoking article, the filter comprising: a filter segment comprising a filter material, the filter segment having a cross-sectional area measured perpendicular to a longitudinal axis of the filter; and a flavor delivery member embedded within the filter segment and surrounded on all sides by the filter material, the flavor delivery member comprising a structural material that confines a liquid flavorant for flavoring smoke during smoking, the flavor delivery member releasing at least a portion of the liquid flavorant when the filter is exposed to an external force, the cross-sectional area of ​​the flavor delivery member measured perpendicular to the longitudinal axis of the filter being about 30% or more of the cross-sectional area of ​​the filter segment, and the filter material of the filter segment comprising fibers of about 5.0 to about 12.0 denier per filament and a total of about 10,000 to about 35,000 denier.

[0008] The external force can be applied in any direction, but is preferably applied perpendicular to the longitudinal axis of the filter. One preferred method of applying the external force is for the user to squeeze or apply an external force to the filter containing the flavor delivery member before or while smoking the smoking article containing the filter. The application of the squeezing or compression action or external force preferably breaks the flavor delivery member, thereby releasing at least a portion of the liquid flavorant into the filter. Alternatively, the squeezing or compression action can provide a sustained release of the liquid flavorant over a range of compression forces. The liquid flavorant can then flavor the smoke passing through the filter. An external device, such as a clamping device, a tube compression device, tweezers, or any other device for applying a compressive force, can also be used to concentrate the force at a predetermined filter location.

[0009] The cross-sectional area of ​​the flavor delivery member is larger than that of the filter segment in prior art filters. Because the cross-sectional area of ​​the flavor delivery member is greater than or equal to about 30% of the cross-sectional area of ​​the filter segment, less than about 70% of the cross-sectional area of ​​the filter segment remains permeable to air and smoke. Thus, in the filter of the present invention, the flavor delivery member has a higher blocking effect than prior art filters. This leads to several effects that are different from those observed in prior art filters and can be advantageous. First, the filter can have a higher resistance to withdrawal (RTD) than prior art filters before the flavor delivery member releases the liquid flavorant. This is because the flow of air and smoke through the filter segment is forced through a relatively small area of ​​filter material around the flavor delivery member. Such a higher RTD can create a new and unique sensory experience for consumers. Second, when the filter is subjected to an external force and the flavor delivery member releases the liquid flavor (e.g., when the flavor delivery member is broken), the cross-sectional area of ​​the filter segment that is permeable to gas flow increases, resulting in a rapid flow of air and smoke through the filter. That is, there is a drop in RTD (from a relatively high starting RTD) and also a noticeable change in flavor due to the liquid flavor. Again, this creates an uplifting and exciting sensory experience for the consumer.

[0010] Third, because the flavor delivery member's dimensions are large compared to the dimensions of the filter segment, the flavor delivery member is susceptible to damage during manufacturing or handling (because the flavor delivery member is close to the outside of the filter). However, the inventors of the present invention have realized that by embedding the flavor delivery member within the filter material, the flavor delivery member is better protected during manufacturing and handling. The flavor delivery member is retained within the filter material, but it is still possible for a consumer to locate the flavor delivery member within the filter and apply the necessary external force to release the liquid flavor. This allows the filters of the present invention to use larger flavor delivery members (relative to the filter's dimensions) than would be possible if they were used within a recess within the filter, such as in a "plug-space-plug" filter. Embedding the flavor delivery member within the filter material of the filter segment may have the added benefit of simplifying manufacturing, since the flavor delivery member can be incorporated between the fibers of the filter material tow. This allows for the use of conventional manufacturing techniques in which a continuous tow material with embedded flavor delivery members is cut into filter segments. A separate step for inserting the flavor delivery member is not required.

[0011] In accordance with the present invention, the filter material of the filter segment is appropriately selected to achieve a desired balance of RTD (including RTD before and after release of the liquid flavor), an appropriate amount of material to properly retain the flavor delivery member within the filter segment, and an appropriate amount of material to prevent the filter material from deforming around the flavor delivery member.

[0012] In particular, the filter material of the filter segment includes fibers having a density of about 5.0 to about 12.0 denier per filament, with a total density of about 10,000 and about 35,000 denier. The total density of such filter material is lower than prior art filter materials with embedded flavor delivery members. This allows for a desirable RTD while providing an adequate amount of material to support the flavor delivery member and avoid swelling of the filter material around the flavor delivery member.

[0013] Preferably, the filter segment comprises fibers having a denier per filament (dpf) of about 6.0 or greater. In one desirable embodiment, the filter segment comprises large-diameter fibers having a dpf of about 8.0. Preferably, the total denier of the filter segment is less than about 30,000, and more preferably less than about 25,000. Additionally or alternatively, the total denier of the filter segment is greater than about 12,000. In one desirable embodiment, the total denier of the filter segment comprises large-diameter fibers having a denier of about 15,000. The number of fibers (total denier divided by dpf) present in the filter segment may be less than about 6,000, and preferably less than about 5,000. Such filter materials have been found to provide an appropriate balance when the flavor delivery member is embedded within the filter material (between the RTD and the flavor delivery member support) while avoiding deformation of the filter material.

[0014] An additional advantage of using a filter material according to the present invention is that it facilitates embedding of the flavor delivery member within the filter material. The inventors have recognized that embedding the flavor delivery member within a filter material with a relatively low total density protects the flavor delivery member during manufacturing and handling, even if the flavor delivery member is close to the outer surface of the filter. The use of a filter material with a low total density allows the flavor delivery member to be embedded without causing deformation (e.g., blistering) of the filter. The low density material effectively provides voids for the flavor delivery member incorporated into the filter material. At the same time, the filter material provides fibers that allow flavor to escape at the outer tip of the filter and facilitate flavor uptake by the smoke.

[0015] Yet another advantage provided by the use of the filter material according to the present invention is that for slim cigarettes having a diameter of about 6.0 mm or less, the low density filter material can achieve standard tar delivery levels and maximize flavor even when these smoking articles contain relatively small amounts of tobacco.

[0016] As previously discussed, in accordance with the filter of the present invention, the cross-sectional area of ​​the filter blocked by the flavor delivery member is greater than that of the prior art. Thus, smoking articles utilizing such filters may have a higher RTD than prior art smoking articles before the liquid flavorant is released. Such a higher RTD may create a new and unique sensory experience for consumers. The RTD of the smoking article may be about 130 mm H2O or greater, preferably about 150 mm H2O or greater, before the liquid flavorant is released. Additionally or alternatively, the RTD of the smoking article may be about 210 mm H2O or greater. The RTD of the smoking article is preferably between about 130 mm H2O and about 210 mm H2O, and more preferably between about 150 mm H2O and about 210 mm H2O.

[0017] Furthermore, there is a reduction in RTD when the flavor delivery member is crushed, which may create a new and different sensory experience for the consumer. The reduction in RTD may be due to the reduction in size of the flavor delivery member when crushed. The RTD of the smoking article may decrease by at least about 10 mm HO after the flavor delivery member is crushed, preferably by at least about 20 mm HO, and more preferably by at least about 30 mm HO.

[0018] As used herein, the terms "upstream" and "downstream" are used to describe the relative positions of elements of a filter or smoking article relative to the direction of mainstream smoke as it is drawn from the lighting end of the smoking article through the filter.

[0019] As used herein, the phrase "surrounded on all sides" means that the flavor delivery member is immediately adjacent to the filter material of the filter segment in the upstream and downstream (longitudinal) directions and in the transverse direction. That is, the flavor delivery member is fully embedded within the filter material and is not in a separate recess. Preferably, the flavor delivery member is incorporated into the filter material during its manufacture. For example, the flavor delivery member may be incorporated between fibers of a continuous rod of filter material, which is then cut into filter segments.

[0020] The cross-sectional area of ​​the flavor delivery member, measured perpendicular to the longitudinal axis of the filter, is about 30% or more of the cross-sectional area of ​​the filter segment, also measured perpendicular to the longitudinal axis of the filter. Alternatively, expressed another way, the percentage of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is less than about 70%. (If the filter includes a wrapper, such as plug wrap or tipping paper, the cross-sectional area of ​​the filter segment is typically measured within the wrapper.) The cross-sectional area of ​​the flavor delivery member is preferably about 30% or more of the cross-sectional area of ​​the filter segment, and can be less than about 80%. Alternatively, expressed another way, the percentage of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is preferably about 20% or more and less than about 70%.

[0021] More preferably, the cross-sectional area of ​​the flavor delivery member, measured perpendicular to the longitudinal axis of the filter, is about 45% or more of the cross-sectional area of ​​the filter segment. Or, expressed another way, the proportion of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is less than about 55%. The cross-sectional area of ​​the flavor delivery member is preferably about 45% or more of the cross-sectional area of ​​the filter segment, and may be less than about 80%. Or, expressed another way, the proportion of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is preferably about 20% or more and less than about 55%.

[0022] More preferably, the cross-sectional area of ​​the flavor delivery member, measured perpendicular to the longitudinal axis of the filter, is about 55% or more of the cross-sectional area of ​​the filter segment. Or, expressed another way, the proportion of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is less than about 45%. The cross-sectional area of ​​the flavor delivery member is preferably about 55% or more of the cross-sectional area of ​​the filter segment, and may be less than about 80%. Or, expressed another way, the proportion of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is preferably about 20% or more and less than about 45%.

[0023] Preferably, the filter diameter is less than about 6.5 mm. More preferably, the filter diameter is about 3.6 mm to about 6.5 mm. (Filter diameter is generally measured within any wrapper material, such as plug wrap or tipping paper, unless otherwise specified herein.) More preferably, the filter diameter is about 3.6 mm to about 5.5 mm. Even more preferably, the filter diameter is about 3.6 mm to about 4.5 mm.

[0024] The filter may be approximately 27 mm long, with the center of the flavor delivery member located approximately 13.5 mm from the downstream end of the filter. In this case, if the filter segment is the only component of the filter, the center of the flavor delivery member may be located approximately 13.5 mm from the downstream end of the filter segment, or if the filter includes an additional filter element, the center of the flavor delivery member may be located approximately 13.5 mm from the downstream end of the filter, which may or may not be the downstream end of the filter segment. Alternatively, the filter may be approximately 32 mm long, with the center of the flavor delivery member located approximately 16 mm from the downstream end of the filter. In this case, if the filter segment is the only component of the filter, the center of the flavor delivery member may be located approximately 16 mm from the downstream end of the filter segment, or if the filter includes an additional filter element, the center of the flavor delivery member may be located approximately 16 mm from the downstream end of the filter, which may or may not be the downstream end of the filter segment. As used herein, the "center" of the flavor delivery member refers to the midpoint between the most downstream and most upstream portions of the flavor delivery member.

[0025] The flavor delivery member may be positioned symmetrically or asymmetrically within the filter. When the flavor delivery member is positioned symmetrically within the filter, the center of the flavor delivery member is equidistant between the upstream and downstream ends of the filter. The filter may include one or more additional filter elements upstream of the filter segment, downstream of the filter segment, or both upstream and downstream of the filter segment. When the filter includes additional elements and the flavor delivery member arrangement is symmetrical across the entire filter, the flavor delivery member arrangement may be either symmetrical or asymmetrical across the filter segment, depending on the position and length of the additional filter element. When the flavor delivery member is positioned asymmetrically within the filter, the center of the flavor delivery member is not equidistant between the upstream and downstream ends of the filter. For example, the flavor delivery member may be located in the upstream third of the filter or the downstream third of the filter. When the filter includes additional elements and the flavor delivery member arrangement is asymmetrical across the entire filter, the flavor delivery member arrangement may be either symmetrical or asymmetrical across the filter segment, depending on the position and length of the additional filter element.

[0026] In one preferred embodiment, the filter segment and flavor delivery member are circular in cross section, the filter segment having a diameter of about 3.6 mm to about 6.5 mm, and the flavor delivery member having a diameter of about 2.5 mm to about 4.5 mm, measured perpendicular to the longitudinal axis of the filter. For example, the diameter of the filter segment (inside any filter wrapper) may be about 6.1 mm. For example, the diameter of the flavor delivery member may be about 3.5 mm. In this embodiment, the cross-sectional area of ​​the flavor delivery member, measured perpendicular to the longitudinal axis of the filter, is about 33% of the cross-sectional area of ​​the filter segment. Or, expressed another way, the proportion of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is about 67%. A "slim cigarette" having an overall diameter of about 7.0 mm may use a filter having a diameter of about 6.1 mm.

[0027] In another preferred embodiment, the filter segment and flavor delivery member are circular in cross section, the filter segment having a diameter of about 3.6 mm to about 5.5 mm, and the flavor delivery member having a diameter of about 3.0 mm to about 3.5 mm, measured perpendicular to the longitudinal axis of the filter. For example, the diameter of the filter segment (inside any filter wrapper) may be about 4.5 mm. For example, the diameter of the flavor delivery member may be about 3.2 mm. In this embodiment, the cross-sectional area of ​​the flavor delivery member, measured perpendicular to the longitudinal axis of the filter, is about 51% of the cross-sectional area of ​​the filter segment. Alternatively, expressed another way, the proportion of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is about 49%. Filters having a diameter of less than about 4.5 mm may be used in "super slim cigarettes" having an overall diameter of less than about 5.4 mm.

[0028] In another preferred embodiment, the filter segment and flavor delivery member are circular in cross section, the filter segment having a diameter of about 3.6 mm to about 4.5 mm, and the flavor delivery member having a diameter of about 3.0 mm to about 3.5 mm, measured perpendicular to the longitudinal axis of the filter. For example, the diameter of the filter segment (inside any filter wrapper) may be about 3.8 mm. For example, the diameter of the flavor delivery member may be about 3.2 mm. In this embodiment, the cross-sectional area of ​​the flavor delivery member, measured perpendicular to the longitudinal axis of the filter, is about 71% of the cross-sectional area of ​​the filter segment. Alternatively, expressed another way, the proportion of the cross-sectional area of ​​the filter segment that remains permeable to air and smoke after the flavor delivery member is embedded in the filter material is less than about 29%. A "microslim cigarette" having an overall diameter of about 4.7 mm may use a filter having a diameter of about 3.8 mm.

[0029] The term "flavor delivery member" refers to any delivery system that delivers flavor, including in this case a structural material that encapsulates a liquid flavorant. Providing a flavor delivery member that releases a liquid flavorant when the filter is exposed to an external force allows the release of the liquid flavorant in a consumer-controlled manner. An external force can be applied before or during use of the smoking article, thereby releasing the liquid flavorant. The external force on the flavor delivery member can cause the liquid flavorant to escape the flavor delivery member and interact with the smoking article, changing its properties and thereby emitting smoke therefrom. Because the liquid flavorant is only released when an external force is applied to the filter, this reduces the possibility of the liquid flavorant dispersing or decomposing, for example, during storage.

[0030] The flavor delivery member can be any desired size, so long as the cross-sectional area of ​​the flavor delivery member measured perpendicular to the longitudinal axis of the filter is at least about 30% of the cross-sectional area of ​​the filter segment. For example, the flavor delivery member can be spherical with a diameter of about 2.5 mm to about 4.5 mm, preferably about 3.0 mm to about 3.5 mm. Alternatively, the flavor delivery member can be spherical with a diameter of less than about 3.4 mm, preferably about 3.2 mm.

[0031] Small flavor delivery members can present numerous manufacturing challenges. Using a flavor delivery member with a cross-sectional area that is about 30% or greater than the cross-sectional area of ​​the filter segment can avoid these manufacturing challenges in some embodiments. A flavor delivery member that is larger relative to the filter segment maximizes the amount of liquid flavor trapped within the flavor delivery member, allowing consumers to achieve a desired flavor level. In the case of flavor delivery members with an outer shell and an inner core, larger flavor delivery members also include a proportionately thicker outer shell. Such a shell is relatively simple to manufacture for consistent production and with a desired burst strength.

[0032] The flavor delivery member may have any suitable structure in which the structural material confines the liquid flavorant. The flavor delivery member may comprise a matrix structure defining multiple regions within which the liquid flavorant is trapped until released when an external force is applied to the filter. More preferably, however, the flavor delivery member comprises a capsule. The capsule preferably comprises an outer shell and an inner core containing the liquid flavorant. The outer shell is preferably substantially continuous. The outer shell is preferably sealed before the application of the external force, but is frangible and breakable to release the liquid flavorant upon application of the external force. The capsule may be formed in a variety of physical configurations, including, but not limited to, single-part capsules, multi-part capsules, single-wall capsules, multi-wall capsules, large capsules, and small capsules.

[0033] When the flavor delivery member comprises a matrix structure defining multiple regions that confine the liquid flavorant, the flavor delivery member may release the liquid flavorant when the filter is subjected to an external force exceeding at least a force range of 5 N. The flavor delivery member's force versus compression curve may have a peak of about 5 N to about 24 N. Alternatively, when the filter is a capsule configured such that the flavor delivery member ruptures or breaks to release the liquid flavorant when exposed to an external force (for example, but not limited to, when the capsule comprises a shell and an inner core), the capsule may have any desired burst strength. The burst strength is the force at which the capsule ruptures (applied to the capsule from outside the filter). The burst strength may be the peak of the capsule's force versus compression curve. Preferably, the capsule has a burst strength of about 5 N (0.5 kgf) to about 24 N (2.4 kgf). More preferably, the capsule has a burst strength of about 8 N (0.8 kgf) to about 20 N (2.0 kgf). More preferably, the capsule has a burst strength of about 12 N (1.2 kgf) to about 16 N (1.6 kgf).

[0034] The flavor delivery members may have any suitable shape, for example, spheres, spheroids, or ellipsoids, although it is preferred that the flavor delivery members are generally spherical. This may include flavor delivery members having a sphericity value of at least about 0.9, although a sphericity value of approximately 1 is preferred. Sphericity is a measure of how spherical an object is, with a perfect sphere having a sphericity value of 1. The sphericity value may be determined by determining the average of the maximum and minimum diameters, subtracting the difference between the maximum and minimum diameters from the average, and dividing the result by the average. It is preferred that the generally spherical flavor delivery members comprise a generally spherical outer shell.

[0035] The flavour delivery member may be manufactured according to any suitable method (eg, by co-extrusion), as will be appreciated by those skilled in the art.

[0036] Preferably, only one flavor delivery member is embedded within the filter. However, additional flavor delivery members may be provided along the longitudinal axis of the filter. The additional flavor delivery members may be provided in the same filter segment or in additional filter segments. If additional flavor delivery members are provided within the filter, they may have the same or different properties from each other.

[0037] The flavor delivery member may comprise any suitable substance or combination of materials, such as those used in drug delivery capsules, liquid-filled capsules, or other encapsulating materials. By way of example, flavor delivery members may be those commonly used in the pharmaceutical industry. Such flavor delivery members may be, for example, gelatin-based or formed from polymeric materials such as modified cellulose. One type of modified cellulose that may be used is hydroxypropylmethylcellulose. In addition to gelatin or modified cellulose, or in addition to both gelatin and modified cellulose, the outer shell may include a polysaccharide.

[0038] The liquid flavorant may include any flavor compound or tobacco extract suitable for releasably disposing in liquid form within the flavor delivery member to enhance the flavor of mainstream smoke produced when a smoking article containing a filter is smoked. Suitable flavors or fragrances include, but are not limited to, menthol, mint (such as peppermint and Dutch spice), chocolate, licorice, citrus and other fruit flavors, gamma octamer, vanillin, ethyl vanillin, breath freshening flavors, spice flavors (such as cinnamon), methyl salicylate, linalool, bergamot oil, geranium oil, lemon oil, ginger oil, and tobacco flavor. Other suitable flavors may include flavor compounds selected from the group including acids, alcohols, esters, aldehydes, ketones, pyrazines, combinations or mixtures thereof, and the like.

[0039] The filter material (of the filter segment or any additional filter element) may comprise any suitable substance or material. Examples of suitable materials include, but are not limited to, cellulose acetate, cellulose, regenerated cellulose, polylactic acid, polyvinyl alcohol, nylon, polyhydroxybutyrate, polypropylene, paper, thermoplastics (such as starch), nonwoven materials, and combinations thereof. One or more materials may be formed into an open cell structure. Preferably, the filter material comprises cellulose acetate tow.

[0040] The filter may include additional materials either within the filter segment or within one or more additional elements incorporated into the filter. For example, the additional materials may be incorporated into the fibrous filter tow of the filter segment or into the additional filter element. For example, the filter may include an absorbent material. The term "absorbent" refers to any substance that can function as an adsorbent, an absorbent, or both. The absorbent material may comprise activated carbon. The absorbent may be incorporated within the filter segment in which the flavor-delivering member is embedded. However, it is more preferred that the absorbent be incorporated into an additional filter element upstream of the filter segment. Alternatively or additionally, the filter may include an adhesive, a plasticizer, or a flavor-releasing agent, or a combination thereof.

[0041] When an absorbent material (such as activated carbon) is provided within the filter, either within the filter segment in which the flavor delivery member is embedded or within an additional filter element, the flavor delivery member is preferably downstream of the absorbent, such that the absorbent filters the smoking article and the liquid flavorant is released into the filter without affecting the effectiveness of the liquid flavorant due to absorption or adsorption by the absorbent.

[0042] The filter may contain flavor-releasing agents such as flavored cellulose threads, meerschaum, molecular sieves, or flavor-permeable activated carbon.

[0043] The filter may include one or more additional filter elements upstream, downstream, or both upstream and downstream of the filter segment. When the filter includes additional elements, the filter segment with the embedded flavor delivery member is only one of the filter components of the smoking article filter, rather than the entire smoking article filter. The additional filter element may be axially disposed with the filter segment. For example, the filter may further include plug(s) or disk(s) of filter material downstream of the filter segment, plug(s) or disk(s) of filter material upstream of the filter segment, or plugs or disks of filter material downstream and upstream of the filter segment. Alternatively or additionally, the filter may further include hollow tube(s) downstream of the filter segment, hollow tube(s) upstream of the filter segment, or hollow tube(s) downstream and upstream of the filter segment. When more than one hollow tube is provided, the hollow tubes may have the same or different dimensions. Alternatively, or in addition, the filter may further include voids or depressions downstream, upstream, or both downstream and upstream of the filter segment. Such voids or depressions may be defined by a filter wrapper surrounding the filter material. The voids or depressions may be empty or filled with any suitable material.

[0044] Various filter configurations may be used, each incorporating one or more flavor delivery members. Exemplary filter structures that may be used include, but are not limited to, mono-filters, dual-filters, triple-filters, single- or multi-cavity filters, recessed filters, free-flow filters, and combinations thereof. Mono-filters typically contain cellulose acetate tow or cellulose paper materials. Dual-filters typically contain a cellulose acetate mouth end and a pure cellulose or cellulose acetate segment. The length and pressure drop of the segments within the dual-filter may be adjusted to provide optimal adsorption while maintaining an acceptable RTD. Cavity filters contain at least two segments (e.g., acetate-acetate, acetate-paper, or paper-paper) separated by at least one cavity. Recessed filters contain an open cavity at the mouth end.

[0045] The filter may include a filter wrapper surrounding at least the filter material. The filter wrapper provides strength and structural rigidity for the filter, including the filter segment. When the filter includes one or more additional filter elements, the filter segment and the one or more additional filter elements are preferably overwrapped with a filter wrapper. The filter wrapper may include any suitable material. The filter wrapper may prevent deformation of the outside of the filter segment at the location where the flavor delivery member is embedded within the filter material. The filter wrapper may include a seam including one or more rows of adhesive. Preferably, the seam includes two rows of adhesive. One row of adhesive may include a hot melt adhesive. The one row of adhesive may include polyvinyl alcohol.

[0046] Filters according to the present invention may be advantageously used in filters for filter cigarettes and other smoking articles in which tobacco material is combusted to form smoke. Alternatively, filters according to the present invention may be used in smoking articles in which tobacco material is heated rather than combusted to form aerosol. Filters according to the present invention may also be used in smoking articles in which nicotine-containing aerosol is produced from tobacco material, tobacco extract, or other nicotine source without combustion or heating.

[0047] According to a second aspect of the present invention, there is provided a smoking article comprising an aerosol-forming substrate and a filter according to the first aspect of the present invention. According to the second aspect of the present invention, there is provided a smoking article comprising a tobacco substrate and a filter according to the first aspect of the present invention. According to the second aspect of the present invention, there is also provided a smoking article comprising a tobacco rod and a filter according to the first aspect of the present invention.

[0048] In the case of a conventional cigarette, the aerosol-forming substrate may comprise a tobacco-containing portion, which is sometimes referred to as a tobacco rod or cigarette rod. Thus, a cigarette typically comprises two portions: a tobacco-containing portion and a filter. Tipping paper typically surrounds the filter, which forms the mouth end of the cigarette. The tipping paper overlaps the tobacco rod to hold the filter and tobacco rod together. The tobacco rod typically includes a paper wrapper in which the tobacco is wrapped, with an adhesive holding the seam of the paper wrapper together. The tobacco rod has a first end attached to the filter and a second end that is lit or heated to smoke the tobacco. When the tobacco rod is lit or heated to smoke, smoke travels from the downstream lit end to the filter end of the tobacco rod and further downstream through the filter.

[0049] Examples of suitable types of tobacco material that may be used include, but are not limited to, flue-cured tobacco, burley tobacco, Maryland tobacco, Oriental tobacco, rare tobacco, specialty tobacco, mixtures thereof, and the like. Tobacco material may be provided in any suitable form, including, but not limited to, tobacco lamina, processed tobacco material (such as volume-expanded or puffed tobacco), processed tobacco stems (such as cut-rolled or cut-puffed stems), reconstituted tobacco material, mixtures thereof, and the like. Tobacco substitutes may also be used. In traditional cigarette manufacturing, tobacco is typically used in the form of cut filler, i.e., pieces or strings cut to widths ranging from about 2.5 mm to about 1.2 mm, or even about 0.6 mm. The length of the string ranges from about 6 mm to about 75 mm. Slim cigarettes (diameters of about 6.0 mm or less) do not require expanded tobacco. In slim cigarettes, preferably, less than about 20% of the total tobacco in the cigarette is expanded tobacco.

[0050] The packing density of tobacco within a smoking article is approximately 200 mgcm -3 Preferably, the tobacco packing density of the smoking article is about 220 mgcm or more. -3 More preferably, the packing density of tobacco in the smoking article is about 240 mgcm or more. -3 Slim cigarettes (diameters of about 6.0 mm or less) have a relatively high packing or tamping density of about 200 mgcm. -3 is acceptable.

[0051] Preferably, the smoking article further comprises a tipping material attached to the tobacco rod or other aerosol-forming substrate and the filter. The tipping material provides additional strength and structural rigidity for the filter segment and may reduce the likelihood of deformation of the outer surface of the filter segment where the flavor delivery member is embedded within the filter material.

[0052] The tipping material may include a ventilation zone comprising perforations extending through the tipping material. The degree of ventilation is preferably greater than about 60%, more preferably greater than about 70%, and even more preferably greater than about 80%. The degree of ventilation is preferably less than about 95%, more preferably less than about 90%, and even more preferably less than about 85%. The degree of ventilation is preferably between about 60% and about 95%, more preferably between about 70% and about 90%, and even more preferably between about 80% and about 85%. Ventilation can reduce both the particulate phase and gas phase components of mainstream smoke. However, the RTD levels of smoking articles with high levels of ventilation may be too low to be considered acceptable to consumers. However, due to their relatively large cross-sectional area, the addition of a flavor delivery member embedded within the filter can result in a higher RTD, making the filter's RTD level desirable. When used with high ventilation, the flavor delivery member can increase the RTD while reducing both the particulate phase and gas phase components of mainstream smoke.

[0053] The tipping material may include at least one row of perforations to provide ventilation for mainstream smoke. If the filter includes a filter wrapper, the perforations preferably extend through the filter wrapper. Alternatively, the filter wrapper may be permeable. The tipping material may be a standard pre-perforated tipping material. Alternatively, the tipping material may be perforated (e.g., using a laser) during the manufacturing process according to a desired number, size, and location of perforations. The number, size, and location of perforations may be selected to provide a desired level of ventilation. In conjunction with the flavor delivery member and filter material, ventilation produces a desired RTD level. The RTD of the smoking article may be about 130 mm H2O or greater before the liquid flavorant is released (e.g., before the flavor delivery member is crushed).

[0054] A ventilation zone is preferably provided upstream of the flavor delivery member to reduce the possibility of liquid flavor leaking through the perforations after release. In one embodiment, the filter is approximately 27 mm long, the center of the flavor delivery member is located approximately 13.5 mm from the downstream end of the filter, and the row of perforations is provided approximately 18 mm from the downstream end of the filter. In this case, if the filter segment is the only component of the filter, the row of perforations is located approximately 18 mm from the downstream end of the filter segment, or if the filter includes an additional filter element, the row of perforations is located approximately 18 mm from the downstream end of the filter, which may or may not be the downstream end of the filter segment. In one embodiment, the filter is approximately 32 mm long. The row of perforations may be provided at least approximately 11 mm from the downstream end of the filter.

[0055] In one embodiment, the smoking article further comprises a tipping material adhering the tobacco substrate and filter, the tipping material comprising a ventilation zone comprising perforations extending through the tipping material, the perforations being located upstream of the flavor delivery member.

[0056] Preferably, the tipping material is substantially impermeable to the liquid flavor of the flavor delivery member. A low-permeability tipping material prevents the liquid flavor from penetrating the tipping material and causing unsightly stains on the exterior of the tipping material. Any suitable material may be used, including, but not limited to, cellophane and polyvinylidene chloride.

[0057] A third aspect of the present invention relates to the use of a flavor delivery member in a filter for a smoking article, the filter comprising a filter segment including a filter material, the filter segment having a cross-sectional area measured perpendicular to the longitudinal axis of the filter, a flavor delivery member embedded within the filter segment and surrounded on all sides by the filter material, the flavor delivery member comprising a structural material that confines a liquid flavorant for flavoring smoke during smoking, wherein the flavor delivery member releases at least a portion of the liquid flavorant when the filter is exposed to an external force, and the cross-sectional area of ​​the flavor delivery member measured perpendicular to the longitudinal axis of the filter is at least about 30% of the cross-sectional area of ​​the filter segment.

[0058] According to a fourth aspect of the present invention, there is provided a method of manufacturing a filter for a smoking article, the method comprising the steps of: providing a continuous rod of filter material spaced apart along a longitudinal axis of the rod, wherein flavor delivery members are embedded within the filter material, each flavor delivery member comprising a structural material having a liquid flavorant encapsulated therein, and wherein the cross-sectional area of ​​each flavor delivery member measured perpendicular to the longitudinal axis of the rod is about 30% of the cross-sectional area of ​​the rod; and cutting the continuous rod of filter material at longitudinally spaced cuts to produce filter segments of filter material, each filter segment comprising a flavor delivery member embedded within the filter segment and surrounded on all sides by filter material.

[0059] The method of the fourth aspect of the invention is simple because the flavour delivery member is incorporated directly into the filter material. For example, the flavour delivery member may incorporate fibres of filter material which are bundled together to form a filter material tow. No separate step is required to insert the flavour delivery member.

[0060] Features described in relation to one aspect of the invention may also be applied to other aspects of the invention.

[0061] The invention will now be further described, by way of example only, with reference to the accompanying drawings in which: [Brief explanation of the drawings]

[0062] [Figure 1] FIG. 1 is a perspective view of a smoking article according to one embodiment of the present invention. [Figure 2] FIG. 2 is a cross-sectional view of a filter according to one embodiment of the present invention. [Figure 3] FIG. 3 is a cross-sectional view taken along line III-III in FIG. DETAILED DESCRIPTION OF THE INVENTION

[0063] FIG. 1 is a perspective view of a smoking article 100 according to one embodiment of the present invention. The smoking article 100 includes a typically cylindrical tobacco rod 101 and a typically cylindrical filter 103. The tobacco rod 101 and filter 103 are axially disposed in an end-to-end relationship and are preferably adjacent to one another. The tobacco rod includes an outer wrapper 105 surrounding a smoking material. The outer wrapper 105 may be a porous wrapping material or a paper wrapper. The tobacco is preferably shredded tobacco or tobacco cut filler. The tobacco rod 101 has an upstream lighting end 107 and a downstream end 109. The filter 103 has an upstream end 111 and a downstream mouth end 113. The upstream end 111 of the filter 103 is adjacent to the downstream end 109 of the tobacco rod 101. The filter material of the filter 103 is encased within a filter wrapper (not shown). Although not shown in FIG. 1, a flavor delivery member in the form of a capsule is embedded in the filter 103.

[0064] The filter 103 is attached to the tobacco rod 101 by tipping material 115, which surrounds the entire length of the filter 103 and adjacent regions of the tobacco rod 101. For clarity, the tipping material 115 is shown partially removed from the smoking article in FIG. 1 . The tipping material 115 is typically a paper-like product; however, any suitable material can be used. The tipping material preferably comprises a material that is substantially impermeable to the liquid flavorant in the capsule. In this embodiment, the tipping material 115 includes a circumferential row of perforations 117 aligned with the filter 103. The perforations are provided for mainstream smoke ventilation and are located upstream of a capsule (not shown) embedded within the filter 103.

[0065] In this specification, the relative positions of "upstream" and "downstream" between components of a smoking article are described with reference to the direction of mainstream smoke as it is drawn from the tobacco rod 101 and through the filter 103.

[0066] Figure 2 is a cross-sectional view of the filter 103 of Figure 1 according to one embodiment of the present invention. Figure 3 is a cross-sectional view taken along line III-III in Figure 2. In Figures 2 and 3, the filter 103 includes a filter segment 201 of filter material 203. The filter 103 further includes a flavor delivery member in the form of a spherical capsule 205.

[0067] In the embodiment of Figures 2 and 3, a capsule 205 is embedded within the filter segment 201 and is surrounded on all sides by filter material 203. In this embodiment, the capsule has an outer shell and an inner core, the inner core containing a liquid flavorant. The liquid flavorant is for flavoring smoke during smoking of a smoking article containing the filter. The capsule 205 releases at least a portion of the liquid flavorant when the filter is subjected to an external force, such as squeezing by a consumer. In the embodiment shown in Figures 2 and 3, the capsule is generally spherical and has a substantially continuous outer shell containing the liquid flavorant.

[0068] As shown in Figure 3, capsule 205 has a diameter 301 and filter segment 201 has a diameter 303 (inside the filter wrapper). Thus, the cross-sectional area of ​​capsule 205, measured perpendicular to the longitudinal axis of the filter, is the annular area π(301) 2 Similarly, the cross-sectional area of ​​the filter segment 201 measured perpendicular to the longitudinal axis of the filter is the annular area π(303) 2 Therefore, the cross-sectional area of ​​the capsule 205 as a percentage of the cross-sectional area of ​​the filter segment 201 is The file is TIFF2025134023000002.tif1435. [Example]

[0069] According to a first embodiment of the present invention, the diameter 301 of the capsule 205 is approximately 3.5 mm, the diameter 303 of the filter segment 201 inside the filter wrapper is approximately 6.41 mm, and the diameter of the filter segment 201 outside the filter wrapper is approximately 7.21 mm. The diameter of the filter-containing cigarette (sometimes referred to as a slim cigarette) is approximately 7.35 mm. In this embodiment, the cross-sectional area of ​​the capsule is approximately 30% of the cross-sectional area of ​​the filter segment. In this embodiment, the length of the cigarette may be approximately 97 mm or approximately 83 mm. In this embodiment, the length of the filter may be approximately 27 mm or approximately 32 mm, and the length of the tipping paper may be approximately 32 mm or approximately 36 mm. The circumferential row of perforations may be provided at least approximately 11 mm, but preferably approximately 18 mm, from the mouth end, and the center of the capsule may be provided approximately 13.5 mm from the mouth end. [Example]

[0070] According to a second embodiment of the present invention, the diameter 301 of the capsule 205 is approximately 3.5 mm, the diameter 303 of the filter segment 201 inside the filter wrapper is approximately 6.19 mm, and the diameter of the filter segment 201 outside the filter wrapper is approximately 6.99 mm. The diameter of the filter-containing cigarette (sometimes referred to as a slim cigarette) is approximately 7.10 mm. In this embodiment, the cross-sectional area of ​​the capsule is approximately 32% of the cross-sectional area of ​​the filter segment. In this embodiment, the length of the cigarette may be approximately 97 mm or approximately 83 mm. In this embodiment, the length of the filter may be approximately 27 mm or approximately 32 mm, and the length of the tipping paper may be approximately 32 mm or approximately 36 mm. The circumferential row of perforations may be provided at least approximately 11 mm, but preferably approximately 18 mm, from the mouth end, and the center of the capsule may be provided approximately 13.5 mm from the mouth end. [Example]

[0071] According to a third embodiment of the present invention, the diameter 301 of the capsule 205 is approximately 3.5 mm, the diameter 303 of the filter segment 201 inside the filter wrapper is approximately 6.09 mm, and the diameter of the filter segment 201 outside the filter wrapper is approximately 6.89 mm. The diameter of the filter-containing cigarette (sometimes referred to as a slim cigarette) is approximately 7.00 mm. In this embodiment, the cross-sectional area of ​​the capsule is approximately 33% of the cross-sectional area of ​​the filter segment. In this embodiment, the length of the cigarette may be approximately 97 mm or approximately 83 mm. In this embodiment, the length of the filter may be approximately 27 mm or approximately 32 mm, and the length of the tipping paper may be approximately 32 mm or approximately 36 mm. The circumferential row of perforations may be provided at least approximately 11 mm, but preferably approximately 18 mm, from the mouth end, and the center of the capsule may be provided approximately 13.5 mm from the mouth end. [Example]

[0072] According to a fourth embodiment of the present invention, the diameter 301 of the capsule 205 is approximately 3.2 mm, the diameter 303 of the filter segment 201 inside the filter wrapper is approximately 4.55 mm, and the diameter of the filter segment 201 outside the filter wrapper is approximately 5.35 mm. The diameter of the filter-containing cigarette (sometimes referred to as a super slim cigarette) is approximately 5.41 mm. In this embodiment, the cross-sectional area of ​​the capsule is approximately 49% of the cross-sectional area of ​​the filter segment. In this embodiment, the length of the cigarette may be approximately 97 mm or approximately 83 mm. In this embodiment, the length of the filter may be approximately 27 mm or approximately 32 mm, and the length of the tipping paper may be approximately 32 mm or approximately 36 mm. The circumferential row of perforations may be provided at least approximately 11 mm, but preferably approximately 18 mm, from the mouth end, and the center of the capsule may be provided approximately 13.5 mm from the mouth end. [Example]

[0073] According to a fifth embodiment of the present invention, the diameter 301 of the capsule 205 is approximately 3.0 mm, the diameter 303 of the filter segment 201 inside the filter wrapper is approximately 3.84 mm, and the diameter of the filter segment 201 outside the filter wrapper is approximately 4.64 mm. The diameter of a cigarette including a filter (sometimes referred to as a microslim cigarette) is approximately 4.70 mm. In this embodiment, the cross-sectional area of ​​the capsule is approximately 61% of the cross-sectional area of ​​the filter segments. In this embodiment, the cigarette may be about 97 mm or about 83 mm long. In this embodiment, the filter may be about 27 mm or about 32 mm long, and the tipping paper may be about 32 mm or about 36 mm long. The circumferential row of perforations may be provided at least about 11 mm, but preferably about 18 mm, from the mouth end, and the center of the capsule may be provided about 13.5 mm from the mouth end. [Example]

[0074] According to a sixth embodiment of the present invention, the diameter 301 of the capsule 205 is approximately 3.2 mm, the diameter 303 of the filter segment 201 inside the filter wrapper is approximately 3.84 mm, and the diameter of the filter segment 201 outside the filter wrapper is approximately 4.64 mm. The diameter of the filter-containing cigarette (sometimes referred to as a microslim cigarette) is approximately 4.70 mm. In this embodiment, the cross-sectional area of ​​the capsule is approximately 69% of the cross-sectional area of ​​the filter segments. In this embodiment, the cigarette may be about 97 mm or about 83 mm long. In this embodiment, the filter may be about 27 mm or about 32 mm long, and the tipping paper may be about 32 mm or about 36 mm long. The circumferential row of perforations may be provided at least about 11 mm, but preferably about 18 mm, from the mouth end, and the center of the capsule may be provided about 13.5 mm from the mouth end.

Claims

1. A filter for a smoking article, the filter comprising: a filter segment comprising a filter material, said filter segment having a cross-sectional area measured perpendicular to a longitudinal axis of the filter; a flavor delivery member embedded in the filter segment and surrounded on all sides by the filter material, the flavor delivery member comprising a structural material that encapsulates a liquid flavorant for flavoring smoke during smoking, the flavor delivery member releasing at least a portion of the liquid flavorant when the filter is exposed to an external force; a cross-sectional area of ​​the flavor delivery member measured perpendicular to the longitudinal axis of the filter is greater than or equal to about 30% of a cross-sectional area of ​​the filter segment; Also, the filter material of the filter segment comprises fibers having a denier per filament of about 5.0 to about 12.0, and a total denier of about 10,000 to about 35,000.

2. 10. The filter of claim 1, wherein the filter has a diameter of less than about 6.5 mm.

3. 3. The filter of claim 1, wherein the cross-sectional area of ​​the flavor delivery member measured perpendicular to the longitudinal axis of the filter is about 45% or more of the cross-sectional area of ​​the filter segment.

4. 4. The filter of claim 1, wherein the cross-sectional area of ​​the flavor delivery member measured perpendicular to the longitudinal axis of the filter is about 55% or more of the cross-sectional area of ​​the filter segment.

5. The filter of any one of claims 1 to 4, wherein the flavour delivery member comprises a capsule.

6. 6. The filter of claim 5, wherein the capsule has a burst strength of about 5 N to about 24 N.

7. 7. The filter of any one of claims 1 to 6, wherein the filter material comprises fibers of about 5.0 to about 12.0 denier per filament and about 12,000 to about 30,000 total denier.

8. 8. The filter of claim 1, wherein the filter segment and the flavor delivery member have a circular cross section, the filter segment has a diameter of about 3.6 mm to about 6.5 mm, and the flavor delivery member has a diameter of about 2.5 mm to about 4.5 mm.

9. 9. The filter of claim 1, wherein the filter segment and the flavor delivery member have a circular cross section, the filter segment has a diameter of about 3.6 mm to about 5.5 mm, and the flavor delivery member has a diameter of about 3.0 mm to about 3.5 mm.

10. 9. The filter of claim 8, wherein the filter segment and the flavor delivery member have circular cross sections, the filter segment has a diameter of about 3.6 mm to about 4.5 mm, and the flavor delivery member has a diameter of about 3.0 mm to about 3.5 mm.

11. A smoking article comprising: a tobacco substrate; A smoking article comprising the filter according to any one of claims 1 to 10.

12. 12. The smoking article of claim 11, wherein the tobacco substrate is a tobacco rod.

13. 13. A smoking article as described in claim 11 or 12, further comprising a tipping material attaching the tobacco substrate and the filter, the tipping material comprising a ventilation zone including perforations extending through the tipping material, the perforations being located upstream of the flavor delivery member.

14. 14. The smoking article of claim 13, wherein the tipping material is substantially impermeable to the liquid flavorant of the flavor delivery member.

15. The RTD of the smoking article reaches about 130 mm H before the liquid flavorant is released. 2 Smoking article according to any one of claims 11 to 14, wherein the smoking rate exceeds O.

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