Field of the Disclosure
[0001] The present disclosure relates to a consumable for use in a smoking substitute system
and particularly, although not exclusively, to a heat-not-burn (HNB) consumable.
Background
[0002] The smoking of tobacco is generally considered to expose a smoker to potentially
harmful substances. It is generally thought that a significant amount of the potentially
harmful substances are generated through the heat caused by the burning and/or combustion
of the tobacco and the constituents of the burnt tobacco in the tobacco smoke itself.
[0003] Conventional combustible smoking articles, such as cigarettes, typically comprise
a cylindrical rod of tobacco comprising shreds of tobacco which is surrounded by a
wrapper, and usually also a cylindrical filter axially aligned in an abutting relationship
with the wrapped tobacco rod. The filter typically comprises a filtration material
which is circumscribed by a plug wrap. The wrapped tobacco rod and the filter are
joined together by a wrapped band of tipping paper that circumscribes the entire length
of the filter and an adjacent portion of the wrapped tobacco rod. A conventional cigarette
of this type is used by lighting the end opposite to the filter, and burning the tobacco
rod. The smoker receives mainstream smoke into their mouth by drawing on the mouth
end or filter end of the cigarette.
[0004] Combustion of organic material such as tobacco is known to produce tar and other
potentially harmful byproducts. There have been proposed various smoking substitute
systems (or "substitute smoking systems") in order to avoid the smoking of tobacco.
[0005] Such smoking substitute systems can form part of nicotine replacement therapies aimed
at people who wish to stop smoking and overcome a dependence on nicotine.
[0006] Smoking substitute systems include electronic systems that permit a user to simulate
the act of smoking by producing an aerosol (also referred to as a "vapour") that is
drawn into the lungs through the mouth (inhaled) and then exhaled. The inhaled aerosol
typically bears nicotine and/or flavourings without, or with fewer of, the odour and
health risks associated with traditional smoking.
[0007] In general, smoking substitute systems are intended to provide a substitute for the
rituals of smoking, whilst providing the user with a similar experience and satisfaction
to those experienced with traditional smoking and with combustible tobacco products.
Some smoking substitute systems use smoking substitute articles that are designed
to resemble a traditional cigarette and are cylindrical in form with a mouthpiece
at one end.
[0008] The popularity and use of smoking substitute systems has grown rapidly in the past
few years. Although originally marketed as an aid to assist habitual smokers wishing
to quit tobacco smoking, consumers are increasingly viewing smoking substitute systems
as desirable lifestyle accessories.
[0009] There are a number of different categories of smoking substitute systems, each utilising
a different smoking substitute approach.
[0010] One approach for a smoking substitute system is the so-called "heat not burn" ("HNB")
approach in which tobacco (rather than an "e-liquid") is heated or warmed to release
vapour. The tobacco may be leaf tobacco or reconstituted tobacco. The vapour may contain
nicotine and/or flavourings. In the HNB approach the intention is that the tobacco
is heated but not burned, i.e. the tobacco does not undergo combustion.
[0011] A typical HNB smoking substitute system may include a device and a consumable. The
consumable may include the tobacco material. The device and consumable may be configured
to be physically coupled together. In use, heat may be imparted to the tobacco material
by a heating element of the device, wherein airflow through the tobacco material causes
moisture in the tobacco material to be released as vapour. A vapour may also be formed
from a carrier in the tobacco material (this carrier may for example include propylene
glycol and/or vegetable glycerine) and additionally volatile compounds released from
the tobacco. The released vapour may be entrained in the airflow drawn through the
tobacco.
[0012] As the vapour passes through the consumable (entrained in the airflow) from an inlet
to a mouthpiece (outlet), the vapour cools and condenses to form an aerosol for inhalation
by the user. The aerosol will normally contain the volatile compounds.
[0013] In HNB smoking substitute systems, heating as opposed to burning the tobacco material
is believed to cause fewer, or smaller quantities, of the more harmful compounds ordinarily
produced during smoking. Consequently, the HNB approach may reduce the odour and/or
health risks that can arise through the burning, combustion and pyrolytic degradation
of tobacco.
[0014] EP2550877A1 discloses a conventional smoking article.
[0015] There is a need for improved design of HNB consumables to enhance the user experience
and improve the function of the HNB smoking substitute system.
[0016] The present disclosure has been devised in the light of the above considerations.
Summary of the Disclosure
[0017] At its most general, the present disclosure relates to an aerosol-forming article
e.g. a smoking substitute article such as an HNB consumable comprising a cavity in
an aerosol-forming material, the cavity housing a vapour modifier for modifying the
vapour released during heating of the aerosol-forming material. According to a first
aspect, the present invention provides an aerosol-forming article (e.g. a smoking
substitute article such as an HNB consumable) as defined by claim 1.
[0018] By providing an aerosol-forming substrate having a vapour modifier within a cavity
spacing first and second portions of an aerosol-forming material, the user experience
can be tailored and thereby enhanced. The vapour modifier can be selected such that
the user is exposed to a vapour/an aerosol having different properties e.g. a modified
flavour and/or modified strength of volatile compounds and/or modified visible vapour
volume.
[0019] The term "vapour modifier" is intended to refer to a component, e.g. a material,
compound or substrate that modifies the vapour generated by the aerosol-forming substrate
e.g. that modifies the flavour of and/or the strength of volatile compound in and/or
the visible vapour (total particulate matter TPM) of the vapour generated by the aerosol-forming
substrate.
[0020] As used herein, the terms "upstream" and "downstream" are intended to refer to the
flow direction of the vapour/aerosol i.e. with the downstream end of the consumable
being the mouth end or outlet where the aerosol exits the consumable for inhalation
by the user. The upstream end of the consumable is the opposing end to the downstream
end.
[0021] The first, upstream portion of aerosol-forming material and the second, downstream
portion of aerosol-forming material are both formed of the same aerosol-forming material
i.e. are both formed from a first aerosol-forming material. In other words, the cavity
and vapour modifier are sandwiched between two portions of the first aerosol-forming
material.
[0022] The vapour modifier comprises a second aerosol-forming material. The second aerosol-forming
material is different to aerosol-forming material used to form the first and second
portions of the aerosol-forming substrate e.g. the second aerosol-forming material
is different to the first aerosol-forming material.
[0023] There is provided an article/HNB consumable comprising an aerosol-forming substrate
wherein the aerosol-forming substrate comprises two portions of a first aerosol-forming
material sandwiching an axially interposed portion of a second aerosol-forming material.
[0024] The aerosol-forming substrate is capable of being heated to release at least one
volatile compound that can form an aerosol. The aerosol-forming substrate may be located
at the upstream end of the consumable.
[0025] In order to generate an aerosol, the first and second aerosol-forming material comprises
at least one volatile compound that is intended to be vaporised/aerosolised and that
may provide the user with a recreational and/or medicinal effect when inhaled. The
chemical and/or physiologically active volatile compounds include nicotine, and optionally
the group consisting of: cocaine, caffeine, opiates and opoids, cathine and cathinone,
kavalactones, mysticin, beta-carboline alkaloids, salvinorin A together with any combinations,
functional equivalents to, and/or synthetic alternatives of the foregoing.
[0026] The first and second aerosol-forming materials both comprise plant material. The
plant material being
Nicotiana species (Tobacco). The aerosol-forming material may further comprise at least one plant material selected
from the list including
Amaranthus dubius, Arctostaphylos uva-ursi (Bearberry),
Argemone mexicana, Amica, Artemisia vulgaris, Yellow Tees,
Galea zacatechichi, Canavalia maritima (Baybean),
Cecropia mexicana (Guamura),
Cestrum noctumum, Cynoglossum virginianum (wild comfrey),
Cytisus scoparius, Damiana, Entada rheedii, Eschscholzia califomica (California Poppy),
Fittonia albivenis, Hippobroma longiflora, Humulus japonica (Japanese Hops),
Humulus lupulus (Hops),
Lactuca virosa (Lettuce Opium),
Laggera alata, Leonotis leonurus, Leonurus cardiaca (Motherwort),
Leonurus sibiricus (Honeyweed),
Lobelia cardinalis, Lobelia inflata (Indian-tobacco),
Lobelia siphilitica, Nepeta cataria (Catnip),
Nymphaea alba (White Lily),
Nymphaea caerulea (Blue Lily), Opium poppy,
Passiflora incamata (Passionflower),
Pedicularis densiflora (Indian Warrior),
Pedicularis groenlandica (Elephant's Head),
Salvia divinorum, Salvia dorrii (Tobacco Sage), Salvia species (Sage),
Scutellaria galericulata, Scutellaria lateriflora, Scutellaria nana, Scutellaria species (Skullcap),
Sida acuta (Wireweed),
Sida rhombifolia, Silene capensis, Syzygium aromaticum (Clove),
Tagetes lucida (Mexican Tarragon),
Tarchonanthus camphoratus, Tumera diffusa (Damiana),
Verbascum (Mullein),
Zamia latifolia (Maconha Brava) together with any combinations, functional equivalents to, and/or
synthetic alternatives of the foregoing.
[0027] The first aerosol-forming material and the second aerosol-forming material comprises
tobacco which will contain nicotine as a volatile compound.
[0028] Any type of tobacco may be used. This includes, but is not limited to, flue-cured
tobacco, burley tobacco, Maryland Tobacco, dark-air cured tobacco, oriental tobacco,
dark-fired tobacco, perique tobacco and rustica tobacco. This also includes blends
of the above mentioned tobaccos.
[0029] Any suitable parts of the tobacco plant may be used. This includes leaves, stems,
roots, bark, seeds and flowers.
[0030] The aerosol-forming material forming the upstream and downstream portions (e.g. the
first aerosol-forming material) comprises reconstituted tobacco (e.g. slurry recon
or paper recon), and may further comprise one or more of tobacco, tobacco derivatives,
expanded tobacco, and/or shredded tobacco.
[0031] The aerosol-forming material forming the upstream and downstream portions (e.g. the
first aerosol-forming material) may comprise a gathered sheet of homogenised (e.g.
paper/slurry recon) tobacco or gathered shreds/strips formed from such a sheet.
[0032] In some embodiments, the sheet used to form the first aerosol-forming material has
a grammage greater than or equal to 100 g/m
2, e.g. greater than or equal to 110 g/m
2 such as greater than or equal to 120 g/m
2.
[0033] The sheet may have a grammage of less than or equal to 300 g/m
2 e.g. less than or equal to 250 g/m
2 or less than or equal to 200 g/m
2.
[0034] The sheet may have a grammage of between 120 and 190 g/m
2.
[0035] The first aerosol-forming material may comprise at least 50 wt% plant material, e.g.
at least 60 wt% plant material e.g. around 65 wt% plant material. The aerosol-forming
substrate may comprise 80 wt% or less plant material e.g. 75 or 70 wt% or less plant
material.
[0036] The second aerosol-forming material comprises extruded tobacco. For example, the
second aerosol-forming material may comprise pellets, granules or chips of extruded
tobacco.
[0037] Extruded tobacco can be produced by forming a liquid mixture of powered tobacco and
a binding agent such as a gum (e.g. xanthan, guar, arabic and/or locust bean gum).
The liquid mixture is heated and then extruded through a die. The extrudate is dried
and then may be subsequently cut into pellets, chips or granules.
[0038] The first and second portions of the aerosol-forming substrate both comprise reconstituted
tobacco (e.g. shreds/strip of a sheet of recon tobacco) and the second aerosol-forming
material (housed within the cavity) comprises extruded tobacco (e.g. pellet/chips/granules
of extruded tobacco). The extruded tobacco housed in the cavity will deliver a vapour
with a higher nicotine content than the reconstituted tobacco portions.
[0039] In other embodiments, the vapour modifier is an additive carrier. In these embodiments,
the aerosol-forming material forming the first and second portions of the aerosol-forming
substrate (e.g. the first aerosol-forming material) may be as described above). There
is provided an article/HNB consumable comprising an aerosol-forming substrate wherein
the aerosol-forming substrate comprises two portions of an aerosol-forming material
sandwiching an additive carrier.
[0040] In other arrangements outside of the scope of the present invention, the additive
carrier may be a capsule or micro-moulding e.g. a crushable or meltable capsule or
micro-moulding having a crushable or meltable outer shell containing the additive.
The additive carrier may be substantially spherical.
[0041] The additive carrier may include an additive selected from humectants or flavourants.
[0042] Suitable humectants include polyhydric alcohols (e.g. propylene glycol (PG), triethylene
glycol, 1,2-butane diol and vegetable glycerine (VG)) and their esters (e.g. glycerol
mono-, di- or tri-acetate). Inclusion of an humectant in the additive carrier within
the cavity allows the generation of an increased amount of visible vapour potentially
at lower temperatures.
[0043] The flavourant may be provided in solid or liquid form within the additive carrier.
It may include menthol, liquorice, chocolate, fruit flavour (including e.g. citrus,
cherry etc.), vanilla, spice (e.g. ginger, cinnamon) and tobacco flavour.
[0044] The aerosol-forming substrate e.g. the first and/or second aerosol-forming material
may further comprise one or more additives selected from humectants, flavourants,
fillers, aqueous/non-aqueous solvents and binders.
[0045] Humectants are provided as vapour generators - the resulting vapour helps carry the
volatile active compounds and increases visible vapour. Suitable humectants include
polyhydric alcohols (e.g. propylene glycol (PG), triethylene glycol, 1,2-butane diol
and vegetable glycerine (VG)) and their esters (e.g. glycerol mono-, di- or tri-acetate).
They may be present in the aerosol-forming substrate in an amount between 1 and 50
wt%.
[0046] The humectant content of the aerosol-forming substrate may have a lower limit of
at least 1 % by weight of the plant material, such as at least 2 wt %, such as at
least 5 wt %, such as at least 10 wt %, such as at least 20 wt %, such as at least
30 wt %, or such as least 40 wt %.
[0047] The humectant content of the aerosol-forming substrate may have an upper limit of
at most 50 % by weight of the plant material, such as at most 40 wt %, such as at
most 30 wt %, or such as at most 20 wt %.
[0048] Preferably, the humectant content is 1 to 40 wt % of the aerosol-forming substrate,
such as 1 to 20 wt %
[0049] Suitable binders are known in the art and may act to bind together the components
forming the aerosol-forming substrate. Binders may comprise starches and/or cellulosic
binders such as methyl cellulose, ethyl cellulose, hydroxypropyl cellulose, hydroxyethyl
cellulose and methyl cellulose, gums such as xanthan, guar, arabic and/or locust bean
gum, organic acids and their salts such as alginic acid/ sodium alginate, agar and
pectins.
[0050] Preferably the binder content is 5 to 10 wt% of the aerosol-forming substrate e.g.
around 6 to 8 wt%.
[0051] Suitable fillers are known in the art and may act to strengthen the aerosol-forming
substrate. Fillers may comprise fibrous (non-tobacco) fillers such as cellulose fibres,
lignocellulose fibres (e.g. wood fibres), jute fibres and combinations thereof.
[0052] Preferably, the filler content is 5 to 10 wt% of the aerosol-forming substrate e.g.
around 6 to 9 wt%.
[0053] The aerosol-forming substrate may comprise an aqueous and/or non-aqueous solvent.
In some embodiments, the aerosol forming substrate has a water content of between
5 and 10 wt% e.g. between 6-9 wt% such as between 7-9 wt%.
[0054] The flavourant may be provided in solid or liquid form. It may include menthol, liquorice,
chocolate, fruit flavour (including e.g. citrus, cherry etc.), vanilla, spice (e.g.
ginger, cinnamon) and tobacco flavour. The flavourant may be evenly dispersed/dosed
throughout the first and/or second aerosol-forming material.
[0055] The aerosol-forming substrate may be formed in a substantially cylindrical shape
such that the consumable resembles a conventional cigarette. It may have a diameter
of between 5 and 10mm e.g. between 6 and 9mm or 6 and 8mm e.g. around 7 mm.
[0056] Each of the first/second portions of aerosol-forming material may have an axial length
of between 5 and 10mm e.g. between 6 and 9mm or 6 and 9mm such as around 7mm.
[0057] The cavity may have an axial length of around 3 to 7mm, e.g. 4 or 5 to 6mm such as
around 6mm.
[0058] The aerosol-forming substrate may be circumscribed by a wrapping layer e.g. a paper
wrapping layer. The wrapping layer may overlie an inner foil layer or may comprise
a paper/foil laminate (with the foil innermost).
[0059] The article/consumable may comprise at least one filter element. There may be a terminal
filter element at the downstream/mouth end of the article/consumable.
[0060] The or at least one of the filter element(s) (e.g. the terminal filter element) may
be comprised of cellulose acetate or polypropylene tow. The at least one filter element
(e.g. the terminal filter element) may be comprised of activated charcoal. The at
least one filter element (e.g. the terminal element) may be comprised of paper. The
or each filter element may be at least partly (e.g. entirely) circumscribed with a
plug wrap e.g. a paper plug wrap.
[0061] The or each filter element may have a substantially cylindrical shape with a diameter
substantially matching the diameter of the aerosol-forming substrate (with or without
its associated wrapping layer). The axial length of the or each filter element may
be less than 20mm, e.g. between 8 and 15mm, for example between 9 and 13 mm e.g. between
10 and 12mm.
[0062] The or at least one of the filter element(s) may be a solid filter element. The or
at least one of the filter element(s) may be a hollow bore filter element. The or
each hollow bore filter may have a bore diameter of between 1 and 5 mm, e.g. between
2 and 4 mm or between 2 and 3 mm.
[0063] There may be a plurality of e.g. two filter elements which may be adjacent one another
or which may be spaced apart. Any filter element(s) upstream of the terminal filter
element may be circumscribed by the (paper) wrapping layer.
[0064] The terminal filter element (at the downstream end of the article/consumable) may
be joined to the upstream elements forming the article/consumable by a circumscribing
tipping layer e.g. a tipping paper layer. The tipping paper may have an axial length
longer than the axial length of the terminal filter element such that the tipping
paper completely circumscribes the terminal filter element plus the wrapping layer
surrounding any adjacent upstream element.
[0065] The or at least one of the filter elements e.g. the terminal filter element may include
a capsule e.g. a crushable capsule (crush-ball) containing a liquid flavourant e.g.
a liquid flavourant as described above. The capsule can be crushed by the user during
smoking of the consumable to release the flavourant. The capsule may be located at
the axial centre of the terminal filter element.
[0066] In some embodiments, the article/consumable may comprise an aerosol-cooling element
which is adapted to cool the aerosol generated from the aerosol-forming substrate
(by heat exchange) before being inhaled by the user.
[0067] The aerosol-cooling element will be downstream from the aerosol-forming substrate.
For example, it may be between the aerosol-forming substrate and a/the filter element
and/or between two filter elements. The aerosol cooling element may be at least partly
(e.g. entirely) circumscribed by the (paper) wrapping layer.
[0068] The aerosol-cooling element may be formed of a plastics material selected from the
group consisting of polylactic acid (PLA), polyvinyl chloride (PVC), polyethylene
(PE) and polyethylene terephthalate (PET). The aerosol-cooling element may be formed
of a crimped/gathered sheet of material to form a structure having a high surface
area with a plurality of longitudinal channels to maximise heat exchange and cooling
of the aerosol.
[0069] The article/consumable may comprise a spacer element that defines a space or cavity
between the aerosol-forming substrate and the downstream end of the consumable. The
spacer element may comprise a cardboard tube. The spacer element may be circumscribed
by the (paper) wrapping layer.
[0070] The spacer element may have an external diameter of between 5 and 10mm e.g. between
6 and 9mm or 6 and 8mm e.g. around 7 mm. It may have an axial length of between 10
and 15mm e.g. between 12 and 14 mm or 13 and 14mm e.g. around 14mm.
[0071] In a second aspect, there is provided a system comprising an article/consumable according
to the first aspect and a device comprising a heating element.
[0072] The device may be a HNB device i.e. a device adapted to heat but not combust the
aerosol-forming substrate.
[0073] The device may comprise a main body for housing the heating element. The heating
element may comprise an elongated e.g. rod, tube-shaped or blade heating element.
The heating element may project into or surround a cavity within the main body for
receiving the article/consumable.
[0074] The device (e.g. the main body) may further comprise an electrical power supply e.g.
a (rechargeable) battery for powering the heating element. It may further comprise
a control unit to control the supply of power to the heating element.
[0075] In a third aspect, there is provided a method of using a system according to the
second aspect, the method comprising:
inserting the article/consumable into the device; and
heating the article/consumable using the heating element.
[0076] In some embodiments, the method comprises inserting the article/consumable into a
cavity within the main body and penetrating the article/consumable with the heating
element upon insertion of the article/consumable. For example, the heating element
may penetrate the aerosol-forming substrate in the article/consumable.
[0077] The skilled person will appreciate that except where mutually exclusive, a feature
or parameter described in relation to any one of the above aspects may be applied
to any other aspect. Furthermore, except where mutually exclusive, any feature or
parameter described herein may be applied to any aspect and/or combined with any other
feature or parameter described herein.
Summary of the Figures
[0078] So that the invention may be understood, and so that further aspects and features
thereof may be appreciated, embodiments illustrating the principles of the invention
will now be discussed in further detail with reference to the accompanying figures,
in which:
Figure 1 shows a first embodiment of an HNB consumable;
Figure 2 shows an alternative arrangement of an HNB consumable
Figure 3 shows a second embodiment of an HNB consumable; and
Figure 4 shows the first embodiment within a device forming an HNB system.
Detailed Description of the Figures
[0079] As shown in Figure 1, the HNB consumable 1 comprises an aerosol-forming substrate
2 at the upstream end of the consumable 1.
[0080] The aerosol-forming substrate 2 comprises a first, upstream portion 13 of reconstituted
tobacco spaced from a second, downstream portion 14 of reconstituted tobacco by a
cavity 15.
[0081] The cavity 15 is filled with granules/chips/pellets of extruded tobacco 16.
[0082] The aerosol-forming substrate 2 is dosed with 20 wt% of a humectant such as propylene
glycol (PG) or vegetable glycerine (VG).
[0083] The aerosol-forming substrate 2 is formed in a substantially cylindrical shape such
that the consumable resembles a conventional cigarette. It has diameter of around
7mm and each of the two portions 13, 14 of reconstituted tobacco has an axial length
of around 7 mm whilst the cavity has an axial length of around 6mm.
[0084] The aerosol-forming substrate 2 is circumscribed by a paper wrapping layer 3.
[0085] The consumable 1 comprises an upstream filter element 4 and a downstream (terminal)
filter element 5. The two filter elements 4, 5 and spaced by a cardboard spacer tube
6. Both filter elements 4, 5 are formed of cellulose acetate tow and wrapped with
a respective paper plug layer (not shown).
[0086] Both filter elements have a substantially cylindrical shape. The diameter of the
upstream filter 4 matches the diameter of the aerosol-forming substrate 2. The diameter
of the terminal filter element 5 is slightly larger and matches the combined diameter
of the aerosol-forming substrate 2 and the wrapping layer 3.
[0087] The upstream filter element is slightly shorter in axial length than the terminal
filter element at an axial length of 10mm compared to 12mm for the terminal filter
element.
[0088] The cardboard tube spacer is longer than each of the two filter portions having an
axial length of around 14mm.
[0089] Each filter element 4, 5 is a hollow bore filter element with a hollow, longitudinally
extending bore. The diameter of the bore in the upstream filter is slightly larger
than the diameter of the bore in the terminal filter having a diameter of 3mm compared
to 2 mm for the terminal filter element.
[0090] The cardboard spacer tube 6 and the upstream filter portion 4 are circumscribed by
the wrapping layer 3.
[0091] The terminal filter element 5 is joined to the upstream elements forming the consumable
by a circumscribing paper tipping layer 7. The tipping layer 7 encircles the terminal
filter portion and has an axial length of around 20mm such that it overlays a portion
of the cardboard tube spacer 6.
[0092] Figure 2 shows an alternative arrangement of a consumable 1' which is the same as
that shown in Figure 1 except that the cavity 15 houses an additive carrier 17 which
is a crushable capsule (crush-ball) having a shell wall containing polypropylene glycol
or vegetable glycerine.
[0093] The terminal filter element 5 comprises a further crushable capsule 8 (crush-ball)
having a shell wall containing a liquid menthol or cherry or vanilla flavourant. The
capsule 8 is spherical and has a diameter of 3.5mm. It is positioned within the axial
centre of the terminal filter portion 5. In other embodiments (not shown), the capsule
8 can be omitted.
[0094] Furthermore, the capsule could be included in the terminal filter portion 5 of the
Figure 1 embodiment.
[0095] Figure 3 shows another embodiment of a consumable 1" which is the same as the first
embodiment except that the wrapping layer 3 does not completely circumscribe the cardboard
spacer tube 6 such that there is an annular gap 9 between the tipping layer 7 and
the cardboard spacer tube 6 downstream of the end of the wrapping layer 3. In an alternative
arrangement, outside of the scope of the present invention, the extruded tobacco 16
in the cavity 15 could be replaced with the crushable capsule 17 of the Figure 2 arrangement
and/or the crushable capsule 8 of the Figure 2 may be included in the terminal filter
portion 5.
[0096] Figure 4 shows the first embodiment inserted into an HNB device 10 comprising a rod-shaped
heating element (not shown). The heating element projects into a cavity 11 within
the main body 12 of the device.
[0097] The consumable 1 is inserted into the cavity 11 of the main body 12 of the device
10 such that the heating rod penetrates the aerosol-forming substrate 2. Heating of
the reconstituted tobacco in the aerosol-forming substrate 2 is effected by powering
the heating element (e.g. with a rechargeable battery (not shown)). As the tobacco
is heated, moisture and volatile compound (e.g. nicotine) within the tobacco and the
humectant are released as a vapour and entrained within an airflow generated by inhalation
by the user at the terminal filter portion 5. Additive carriers 17 and/or crushable
capsules 8 could, in arrangements outside of the scope of the present invention, be
ruptured by pressure to modify the flavour and/or amount of visible vapour during
smoking of the consumable.
[0098] As the vapour cools within the upstream filter element 4 and the cardboard spacer
tube 6, it condenses to form an aerosol containing the volatile compounds for inhalation
by the user.
[0099] For the avoidance of any doubt, any theoretical explanations provided herein are
provided for the purposes of improving the understanding of a reader. The inventors
do not wish to be bound by any of these theoretical explanations.
[0100] Any section headings used herein are for organizational purposes only and are not
to be construed as limiting the subject matter described.
[0101] Throughout this specification, including the claims which follow, unless the context
requires otherwise, the words "have", "comprise", and "include", and variations such
as "having", "comprises", "comprising", and "including" will be understood to imply
the inclusion of a stated integer or step or group of integers or steps but not the
exclusion of any other integer or step or group of integers or steps.
[0102] It must be noted that, as used in the specification and the appended claims, the
singular forms "a," "an," and "the" include plural referents unless the context clearly
dictates otherwise. Ranges may be expressed herein as from "about" one particular
value, and/or to "about" another particular value. When such a range is expressed,
another embodiment includes from the one particular value and/or to the other particular
value. Similarly, when values are expressed as approximations, by the use of the antecedent
"about," it will be understood that the particular value forms another embodiment.
The term "about" in relation to a numerical value is optional and means, for example,
+/- 10%.
[0103] The words "preferred" and "preferably" are used herein refer to embodiments of the
invention that may provide certain benefits under some circumstances. It is to be
appreciated, however, that other embodiments may also be preferred under the same
or different circumstances.