CN211379610U - Aerosol product - Google Patents

Aerosol product Download PDF

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Publication number
CN211379610U
CN211379610U CN201921638474.3U CN201921638474U CN211379610U CN 211379610 U CN211379610 U CN 211379610U CN 201921638474 U CN201921638474 U CN 201921638474U CN 211379610 U CN211379610 U CN 211379610U
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aerosol
substrate
generating
segment
generating article
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Inventor
夏启东
刘刚
马早兵
靖德军
谌永蕾
袁涛
傅源锋
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Bojie Shanghai Management Consulting Co Ltd
Guangdong Golden Leaf Technology Development Co Ltd
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Gongqingcheng Daole Investment Management Partnership (llp)
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Abstract

An aerosol generating article is provided. An aerosol-generating article comprising: the outer wrapping part, and the aerosol generating substrate, the aerosol circulating part and the filtering part which are adjacent in sequence; the outer wrapping portion collectively wraps the aerosol-generating substrate, the aerosol circulation portion, and the filter portion together; the aerosol-generating substrate comprises one or more segments. An aerosol-generating article comprising an aerosol-generating substrate comprising a plurality of segments, the material of each segment comprising a particulate material and/or a non-particulate material. The application provides an aerosol generation article can produce the effect similar to traditional cigarette, and the taste is good, and smog volume is big.

Description

Aerosol product
Technical Field
The application relates to the field of heating non-burning tobacco, in particular to an aerosol generating product.
Background
When the cigarette is burned, a large amount of harmful chemical substances are generated in smoke, wherein the most harmful chemical substances to human bodies comprise nicotine, tar, carbon monoxide and the like. In aerosol-generating articles, however, the tobacco or tobacco extract is heated rather than combusted in a manner that results in lower levels of harmful constituents of the tobacco and provides the consumer with a certain perception of the characteristics of the tobacco.
At present, the most used tobacco products which are not burnt by heating in the market are IQOS (International quality of service) smoke bomb type products produced by Felmo company, the type products adopt a central electric heating mode to heat smoke bombs, and tobacco sheets are used as smoking substrates, so that the smoke quantity is large, the smoke persistence is good, the smoke is strong, but the manufacturing process is complex, and the cost is high.
In view of this, the present application is specifically made.
SUMMERY OF THE UTILITY MODEL
The first purpose and the second purpose of this application are all provide an aerial fog and take place goods, and processing is convenient, with low costs, and the taste is good, and smog volume is big.
In order to achieve the above object, the following technical solutions are specifically adopted in the present application:
an aerosol-generating article comprising: the outer wrapping part, and the aerosol generating substrate, the aerosol circulating part and the filtering part which are adjacent in sequence;
the outer wrapping portion collectively wraps the aerosol-generating substrate, the aerosol circulation portion, and the filter portion together;
the aerosol-generating substrate comprises one or more segments.
The outside parcel part of the aerial fog emergence base member, aerial fog circulation part and the filter part is taken place to aerial fog that sets up in order and circumference cladding aerial fog, simple structure, processing convenience, and is with low costs.
Preferably, the material used for the aerosol-generating substrate comprises a particulate material and/or a non-particulate material.
More preferably, the aerosol-generating substrate is a non-particulate material that is arranged in an ordered and/or disordered state within the aerosol-generating substrate.
One such case of an ordered arrangement is where the tobacco material or non-tobacco material is cut into regular shapes, either manually or mechanically, and arranged in a regular pattern, wrapped in an aerosol-generating substrate. The non-tobacco material includes an aerosol-forming material that includes a non-tobacco volatile flavoring substance. Disordered state alignment refers to tobacco or non-tobacco material cut into irregular shapes, either manually or mechanically, and wrapped in an aerosol-generating substrate. For example, tobacco or homogenized tobacco sheets are cut into irregular short strands, which may be 3-15mm in length.
The aerosol generation substrate adopts the fuming carrier in various forms such as particles, thin slices, cut tobacco, cut stems and the like, and adopts a composite structure, so that the effect similar to that of a traditional cigarette can be generated, and compared with the substrate of a pure thin slice fuming carrier, the aerosol generation substrate has better taste and larger smoke. And the smoking base body with a composite structure is adopted, so that the smoking base body has multiple tastes, and can meet the requirements of more people.
Further preferably, the non-particulate material is a plurality of elongate sheets arranged regularly parallel to the axial direction of the aerosol-generating article.
Alternatively, the ordered arrangement may be formed by crimping a tobacco or reconstituted tobacco sheet having a plurality of substantially parallel ridges or folds extending along or parallel to the longitudinal axis of the aerosol-generating article.
Preferably, the non-particulate material is in the form of short strands and does not collect regularly within the aerosol-generating substrate.
Preferably, the particulate material comprises one or more of a tobacco material, a non-tobacco material, an additive material comprising one or more of an extract of a tobacco material or other plant material, an aerosol, a binder, a flavour and a flavour, and a combined pelletising material of a tobacco material and a non-tobacco material.
Preferably, the non-tobacco material is a plant material, more preferably a material prepared from powdered raw material of tea stem.
Preferably, the non-particulate material comprises one or more of cut tobacco, cut rolled stem, sheets of tobacco material, sheets of non-tobacco material, and shaped paper and cigarette paper in sheet or thread form provided with a smoking coating.
The sheet-like or thread-like formed paper and cigarette paper provided with a smoke generating coating layer mean a material obtained by coating a surface of the formed paper or cigarette paper with a coating material extracted from a tobacco or non-tobacco material and then processing the coated material into a sheet-like or thread-like form.
Preferably, the aerosol-generating substrate comprises a first substrate segment, a second substrate segment and a third substrate segment which are adjacent in sequence, and the shape and/or arrangement structure of materials adopted by the two adjacent substrate segments are different.
The different shapes and/or arrangement of the materials means that the tobacco or non-tobacco materials are different in shape or different in arrangement rules or different in both shape and arrangement rules. For example, the sheet material and filamentary material come together to form an aerosol-generating substrate; or the flaky materials are arranged in an ordered mode and then mixed and gathered together with the granular materials which are arranged in an unordered mode to form an aerosol generating substrate; or the granular material and the filiform material are arranged and gathered together in a disordered form to form the aerosol generating substrate.
More preferably, the material used for the first and third substrate segments is particulate and the material used for the second substrate segment is non-particulate.
Further preferably, the second substrate section is made of an ordered arrangement of materials.
Preferably, the materials used for the first and third substrate segments are ordered non-particulate materials, and the materials used for the second substrate segment are particulate materials.
More preferably, the non-particulate material comprises one or more of regular elongate tobacco, regular filamentary tobacco and regular lamina homogenisation, the non-particulate material being ordered with its length direction parallel to the axial direction of the aerosol-generating article.
Preferably, the length ratios of the first, second and third base body segments are (1-3): (1-3): (1-3).
Optionally, the length ratio of the first, second and third base body segments may be 1: 1: 1, or 1: 2: 3 or 1: 2: 1 in equal proportion.
Preferably, the aerosol-generating substrate comprises two sections, one of which is of a particulate material and the other of which is of a non-particulate material.
More preferably, the non-particulate material is arranged in an ordered array within the aerosol-generating substrate.
More preferably, the ratio of the lengths of the two segments in the aerosol-generating substrate is (1-3): (1-3).
Preferably, the ratio of the lengths of the two segments in the aerosol-generating substrate is 1: 1 or 1: 2.
preferably, the aerosol-generating substrate is a one-piece structure, and the material used for the aerosol-generating substrate comprises granular material and/or non-granular material.
More preferably, the aerosol-generating substrate is formed from an ordered or disordered array of materials.
Preferably, the aerosol circulation part is a hollow tubular structure comprising one or more of a hollow paper tube, a hollow tubular fastener and a hollow acetate tube.
The hollow tubular fastener may be made of polylactic acid, or other similar materials. The hollow tubular fastener may be a single-hole hollow tubular fastener or a porous hollow tubular fastener, the holes extending through the hollow tubular fastener in the axial direction of the aerosol-generating article.
Preferably, the aerosol circulation portion comprises a support section and a cooling section adjoining each other, the support section adjoining the aerosol-generating substrate, the cooling section adjoining the filter portion.
More preferably, the support section is a hollow acetate fiber tube and the cooling section is a porous hollow tubular fixture.
The support section preferably has an outer diameter approximately equal to the outer diameter of the aerosol-generating article; a support section configured to inhibit downstream movement of the aerosol-forming substrate during insertion of the heating element of the electrical heating device into the aerosol-generating article. The cooling section can reduce the temperature of the generated aerosol.
Preferably, the filter portion comprises one or more of a conventional acetate fiber rod, a capsule-containing acetate fiber rod, a countersunk acetate fiber rod, and a granular acetate fiber rod.
Optionally, the outer wrap portion comprises one or more of a conventional cigarette paper, a coated cigarette paper, and tipping paper.
An aerosol-generating article comprising an aerosol-generating substrate comprising a plurality of segments, the material of each segment comprising a particulate material and/or a non-particulate material.
The granular material has very large specific surface area, and can better carbonize the components of the cigarette core compared with air heat exchange, so the smoke quantity of the granular cigarette is larger when the granular cigarette is re-smoked compared with a pure thin piece cigarette. The use of non-particulate materials is more convenient.
Preferably, the aerosol-generating substrate comprises two sections, the section distal to the proximal labial end being formed from an ordered arrangement of non-particulate material and the section proximal to the proximal labial end being formed from a disordered arrangement of particulate material.
The near lip end is made of non-particle materials, and the far lip end is made of non-particle materials which are arranged in order, so that the particle materials can be prevented from leaking; in addition, the heating plate is inserted from the ordered non-particle material part at the far lip end, so that the heating plate can be inserted more smoothly.
Preferably, the aerosol-generating substrate comprises a first substrate segment, a second substrate segment and a third substrate segment arranged in sequence, the first substrate segment is adjacent to the proximal lip end, the first substrate segment and the third substrate segment are both composed of an ordered array of non-particulate materials, and the second substrate segment is composed of an unordered array of particulate materials.
Set up the aerial fog into orderly + granule + orderly structure of substrate, except can guaranteeing that the granular material in the middle of can not spill, guarantee that the heating plate can be better insert the preface section, first substrate section can not heated, can also play the cooling effect at the suction in-process.
Compared with the prior art, the beneficial effects of this application include at least:
the utility model provides an aerial fog takes place goods arranges aerial fog through sharp order in proper order and takes place base member, aerial fog circulation part, filtering part to wrap up aerial fog base member, aerial fog circulation part and filtering part set together through outside parcel part, simple structure, processing convenience, with low costs, the taste is good, and smog volume is big.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present application and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained from the drawings without inventive effort.
Figure 1 shows a schematic diagram of the structure of an aerosol-generating article provided in examples 1-3 and example 12;
figure 2 shows a schematic structural view of an aerosol-generating article provided in example 4;
figure 3 shows a schematic structural view of an aerosol-generating article provided in example 5;
figure 4 shows a schematic structural view of an aerosol-generating article provided in example 6;
figure 5 shows a schematic diagram of the structure of an aerosol-generating article provided in example 7;
figure 6 shows a schematic structural view of an aerosol-generating article provided in example 8;
figure 7 shows a schematic structural view of an aerosol-generating article provided in example 9;
figure 8 shows a schematic diagram of the structure of an aerosol-generating article provided in example 10;
figure 9 shows a schematic structural view of an aerosol-generating article provided in example 11;
figure 10 shows a schematic diagram of the structure of an aerosol-generating article provided in example 13.
Description of the main element symbols:
1-an aerosol-generating article; 2-an outer wrap portion; 3-a filtration section; 4-aerosol circulation part; 41-cooling section; 42-a support section; 5-an aerosol-generating substrate; 51-a first base segment; 52-a second base segment; 53-third base section; 54-a first proximal lip segment; 55-a first distal lip segment; 56-a second proximal lip segment; 57-the second distal lip segment.
Detailed Description
Reference will now be made in detail to embodiments of the present application, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary only for the purpose of explaining the present application and are not to be construed as limiting the present application.
In the description of the present application, it is to be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like are used in the orientations and positional relationships indicated in the drawings for convenience in describing the present application and for simplicity in description, and are not intended to indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and are therefore not to be considered limiting of the present application.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present application, "a plurality" means two or more unless specifically limited otherwise.
In this application, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and can include, for example, fixed connections, removable connections, or integral parts; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art as appropriate.
In this application, unless expressly stated or limited otherwise, the first feature "on" or "under" the second feature may be directly contacting the first and second features or indirectly contacting the first and second features through intervening media. Also, a first feature "on," "over," and "above" a second feature may be directly or diagonally above the second feature, or may simply indicate that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature may be directly under or obliquely under the first feature, or may simply mean that the first feature is at a lesser elevation than the second feature.
Example 1
The aerosol-generating article 1 comprises three portions distributed in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol generating substrate 5 comprises three sections which are coaxially arranged and distributed according to a composite structure: the first base body segment 51, the second base body segment 52, and the third base body segment 53, the first base body segment 51 being an elongated ordered sheet, the second base body segment 52 being a particulate tobacco material, and the third base body segment 53 being an elongated ordered sheet.
According to the attached figure 1, an aerosol generation product sample 1 is manufactured, wherein a conventional cigarette paper is used as an external wrapping part 2, a conventional acetate fiber rod is used as a filtering part 3, the length of the conventional acetate fiber rod is 10mm, the length of the conventional hollow acetate fiber rod is 20mm as an aerosol circulation part 4, and the length of the composite aerosol generation substrate is 12mm in a mode of combining particles and non-particle type heating materials. Wherein, the length ratio of the first base body segment 51, the second base body segment 52 and the third base body segment 53 is 1: 2: 1(3mm +6mm +3 mm).
Comparative example 1
The tobacco material sheet in a pure strip shape order is used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 1 adopt the same specification and the same material to prepare a comparison sample 1.
Wherein, the granules and the sheets are respectively prepared from tobacco powder raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
The results of the comparative smoking evaluation of the sample 1 and the control 1 by heating the incombustible smoking set with IQOS are shown in table 1:
TABLE 1 comparison of sample 1 with control 1
Figure BDA0002218813730000091
Example 2
The aerosol-generating article 1 comprises three portions distributed in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol generating substrate 5 comprises three sections which are coaxially arranged and distributed according to a composite structure: the first base body segment 51, the second base body segment 52, and the third base body segment 53, the first base body segment 51 being an elongated ordered sheet, the second base body segment 52 being a particulate tobacco material, and the third base body segment 53 being an elongated ordered sheet.
According to the attached figure 1, an aerosol-generating product sample 2 is prepared, wherein a conventional cigarette paper is used as an external wrapping part 2, a conventional acetate fiber rod is used as a filtering part 3 and has the length of 10mm, a conventional hollow acetate fiber rod is used as an aerosol circulating part 4 and has the length of 20mm, and a composite aerosol-generating substrate 5 adopts the combination of a particle heating material and a non-particle heating material and has the length of 12 mm. Wherein, the length ratio of the aerosol generating substrate 5 three sections is 1: 1: 1(4mm +4mm +4 mm).
Comparative example 2
The tobacco material slice with the strip shape order is used as the aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 2 adopt the same specification and the same material to prepare a comparison sample 2.
Wherein, the particles and the sheets are respectively prepared by taking tobacco powder as raw materials, and the cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
The sample 2 and the control sample 2 are heated by IQOS without burning smoking set for comparison and smoking evaluation, and the results are shown in the table 2:
TABLE 2 comparison of sample 2 with control 2
Figure BDA0002218813730000101
Example 3
The aerosol-generating article 1 comprises three portions distributed in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol generating substrate 5 comprises three sections which are coaxially arranged and distributed according to a composite structure: the first base body segment 51, the second base body segment 52, and the third base body segment 53, the first base body segment 51 being an elongated ordered sheet, the second base body segment 52 being a particulate tobacco material, and the third base body segment 53 being an elongated ordered sheet.
According to the attached figure 1, a sample 3 of an aerosol-generating product is prepared, wherein the sample adopts conventional cigarette paper as an external wrapping part 2, a conventional acetate fiber rod as a filtering part 3 and has the length of 10mm, a conventional hollow acetate fiber rod as an aerosol circulating part 4 and has the length of 20mm, and a composite aerosol-generating substrate 5 adopts the combination of a particle heating material and a non-particle heating material and has the length of 12 mm. Wherein, the length ratio of the aerosol generating substrate 5 three sections is 1: 2: 1(3mm +6mm +3mm), the first section and the third section are both strip-shaped ordered non-tobacco material sheets, and the middle second section is non-tobacco material particles.
Comparative example 3
The strip-shaped non-tobacco material sheets which are orderly arranged are used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 3 adopt the same specification and the same material to prepare a comparison sample 3.
Wherein the granule and slice are prepared from tea stalk powder, and have flue-cured tobacco taste, and pericarpium Citri Tangerinae taste, wine flavor and lignum Aquilariae Resinatum taste added with characteristic spice.
The results of comparing and smoking the sample 3 and the control 3 by heating the incombustible smoking set with IQOS are shown in table 3:
TABLE 3 comparison of sample 3 with control 3
Figure BDA0002218813730000111
Example 4
The aerosol-generating article 1 comprises three portions distributed in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol generating substrate 5 comprises two sections which are coaxially arranged and distributed according to a composite structure: wherein the material of the first proximal lip section 54 is granular and the first distal lip section 55 is an elongated, ordered sheet, wherein the first proximal lip section 54 is adjacent to the aerosol passage portion 4.
According to the attached figure 2, a sample 4 of the aerosol-generating product is prepared, wherein the sample adopts conventional cigarette paper as an external wrapping part 2, a conventional acetate fiber rod as a filtering part 3 and has the length of 10mm, a conventional hollow acetate fiber rod as an aerosol circulating part 4 and has the length of 20mm, and a composite aerosol-generating substrate 5 adopts the combination form of granular or non-granular heating materials and has the length of 12 mm. Wherein the ratio of the lengths of the first proximal lip segment 54 and the first distal lip segment 55 is 1: 1(6mm +6 mm).
Comparative example 4
The tobacco material sheets which are orderly arranged in a pure strip shape are used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 4 adopt the same specification and the same material to prepare a comparison sample 4.
Wherein, the granules and the sheets are respectively prepared from tobacco powder raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
Example 5
The aerosol-generating article 1 comprises three portions distributed in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol generating substrate 5 comprises two sections which are coaxially arranged and distributed according to a composite structure: the second proximal lip segment 56 is an elongated, ordered sheet of material and the second distal lip segment 57 is a particulate material, wherein the second proximal lip segment 56 is adjacent the aerosol passage portion 4.
According to the attached figure 3, a sample 5 of the aerosol-generating product is prepared, wherein the sample adopts conventional cigarette paper as an external wrapping part 2, a conventional acetate fiber rod as a filtering part 3 and has the length of 10mm, a conventional hollow acetate fiber rod as an aerosol circulating part 4 and has the length of 20mm, and a composite aerosol-generating substrate 5 adopts a mode of combining granular or non-granular heating materials and has the length of 12 mm. Wherein the length ratio of the second proximal lip segment 56 to the second distal lip segment 57 is 1: 1(6mm +6 mm).
Comparative example 5
Comparative example 5 was the same as comparative example 4 to give comparative example 5.
Samples 4, 5 were compared with controls 4 and 5 using IQOS heating with non-burning smoking set for smoking, and the results are shown in table 4:
TABLE 4 comparison of samples 4, 5 with controls 4, 5
Figure BDA0002218813730000121
Figure BDA0002218813730000131
Example 6
The aerosol-generating article 1 comprises three portions distributed in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol-generating substrate 5 is entirely of a pure particulate material.
According to the attached figure 4, an aerosol-generating product sample 6 is prepared, wherein a conventional cigarette paper is used as an external wrapping part 2, a conventional acetate fiber rod is used as a filtering part 3 and has the length of 10mm, a conventional hollow acetate fiber rod is used as an aerosol circulating part 4 and has the length of 20mm, and an aerosol generating substrate 5 has the length of 12mm, and is completely prepared from a particle heating material.
Comparative example 6
The tobacco material sheet in a pure strip shape order is used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 6 adopt the same specification and the same material to prepare a comparison sample 6.
Wherein, the granules and the sheets are respectively prepared from tobacco powder raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
The results of comparing the sample 6 with the control 6 by heating the non-burning smoking set with IQOS are shown in table 5:
TABLE 5 comparison of sample 6 with control 6
Figure BDA0002218813730000141
Example 7
The aerosol-generating article 1 comprises three portions distributed in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol-generating substrate 5 is a long and ordered sheet.
Referring to figure 5, an aerosol-generating article sample 7 was prepared using conventional cigarette paper as the outer wrapping portion 2; a conventional acetate fiber rod is used as a filtering part 3, and the length of the conventional acetate fiber rod is 10 mm; the conventional hollow acetate fiber rod is used as an aerosol circulation part 4, and the length is 20 mm; the aerosol-generating substrate 5 had a length of 12mm and was entirely made of a non-granular, long, ordered sheet heating material. The long strip-shaped ordered sheet material is prepared from tobacco raw materials and is used for manufacturing the aerosol generating product with the original taste of tobacco.
Comparative example 7
IQOS cartridges (Heets, original flavor) were used as control 7.
The results of comparing the sample 7 with the control 7 by heating the non-burning smoking set with IQOS are shown in table 6:
TABLE 6 comparison of sample 7 with control 7
Figure BDA0002218813730000142
Figure BDA0002218813730000151
Example 8
Referring to figure 6, the aerosol-generating article 1 comprises three portions arranged in a coaxial arrangement: the aerosol generating device comprises a filtering part 3, an aerosol circulation part 4 and an aerosol generating substrate 5, and also comprises an external wrapping part 2 which circumferentially wraps the filtering part 3, the aerosol circulation part 4 and the aerosol generating substrate 5. The aerosol circulation part 4 comprises a cooling section 41 and a supporting section 42 which are coaxially arranged, the cooling section 41 is a hollow tubular firmware, the supporting section 42 is a conventional hollow acetate fiber rod, and the aerosol generating substrate 5 comprises three sections which are coaxially arranged and distributed according to a composite structure: the first base body segment 51 is an elongated, ordered sheet, the second base body segment 52 is a granular tobacco material, and the third base body segment 53 is an elongated, ordered sheet.
Referring to figure 6, an aerosol-generating article, sample 8, was prepared using conventional cigarette paper as the outer wrapping portion 2, a conventional cellulose acetate fiber rod as the filtering portion 3, and a length of 7mm, and a hollow tubular fastener having a length of 15mm and a length of 8mm in combination with the conventional hollow cellulose acetate fiber rod as the aerosol circulation portion 4, and a composite aerosol-generating substrate 5 using a combination of particulate and non-particulate heating materials having a length of 12 mm. Wherein, the length ratio of the aerosol generating substrate three sections is 1: 2: 1(3mm +6mm +3 mm).
Comparative example 8
The tobacco material sheet in a pure strip shape order is used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 8 adopt the same specification and the same material to prepare a comparison sample 8.
Wherein, the granules and the sheets are respectively prepared from tobacco powder raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
The results of the comparative smoking evaluation of the sample 8 and the control sample 8 by heating the non-burning smoking set with IQOS are shown in table 7:
TABLE 7 comparison of sample 8 with control 8
Figure BDA0002218813730000161
Example 9
Referring to figure 7, the aerosol-generating article 1 comprises three portions arranged in a coaxial arrangement: a filter portion 3, an aerosol circulation portion 4 and an aerosol-generating substrate 5, and also an outer wrapping portion 2. The aerosol circulation part 4 comprises a cooling section 41 and a supporting section 42 which are coaxially arranged, the cooling section 41 is a hollow tubular firmware, the supporting section 42 is a conventional hollow acetate fiber rod, and the aerosol generation substrate 5 comprises two sections which are coaxially arranged and distributed according to a composite structure: wherein the material of the first proximal lip section 54 is granular and the first distal lip section 55 is an elongated, ordered sheet, wherein the first proximal lip section 54 is adjacent to the aerosol passage portion 4.
Referring to FIG. 7, an aerosol-generating article sample 9 was prepared using conventional cigarette paper as the outer wrapping portion 2; a conventional acetate fiber rod is used as a filtering part 3, and the length is 7 mm; the hollow tubular firmware and the conventional hollow acetate fiber rod are combined to form an aerosol circulation part 4, the length of the hollow tubular firmware is 15mm, the length of the conventional hollow acetate fiber rod is 8mm, and the conventional hollow acetate fiber rod is adjacent to the aerosol generation substrate 5; the compound aerosol generating substrate 5 adopts the combination of particle and non-particle heating materials, and has the length of 12mm, wherein the length ratio of the two sections of the aerosol generating substrate is 1: 1(6mm +6 mm).
Comparative example 9
The tobacco material sheet in pure silk-like order is used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 9 adopt the same specification and the same material to prepare a comparison sample 9.
Wherein, the granules and the sheets are respectively prepared from tobacco raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
Example 10
Referring to figure 8, the aerosol-generating article 1 comprises three portions arranged in a coaxial arrangement: a filter portion 3, an aerosol circulation portion 4 and an aerosol-generating substrate 5, and also an outer wrapping portion 2. The aerosol circulation part 4 comprises a cooling section 41 and a supporting section 42 which are coaxially arranged, the cooling section 41 is a hollow tubular firmware, the supporting section 42 is a conventional hollow acetate fiber rod, and the aerosol generation substrate 5 comprises two sections which are coaxially arranged and distributed according to a composite structure: the second proximal lip segment 56 is an elongated, ordered sheet of material and the second distal lip segment 57 is a particulate material, wherein the second proximal lip segment 56 is adjacent the aerosol passage portion 4.
Referring to FIG. 8, an aerosol-generating article sample 10 was prepared using conventional cigarette paper as the outer wrapping portion 2; a conventional acetate fiber rod is used as a filtering part 3, and the length is 7 mm; the hollow tubular firmware and the conventional hollow acetate fiber rod are combined to form an aerosol circulation part 4, the length of the hollow tubular firmware is 15mm, the length of the conventional hollow acetate fiber rod is 8mm, and the conventional hollow acetate fiber rod is adjacent to the aerosol generation substrate 5; the compound aerosol generating substrate 5 adopts the combination of particle and non-particle heating materials, and has the length of 12mm, wherein the length ratio of the two sections of the aerosol generating substrate is 1: 1(6mm +6 mm).
Comparative example 10
Comparative example 10 the control 10 obtained was identical to control 9.
Samples 9 and 10 were compared to controls 9 and 10 using IQOS heating with non-burning smoking set for smoking, and the results are shown in table 8:
TABLE 8 results of comparing samples 9 and 10 with control samples 9 and 10
Figure BDA0002218813730000171
Figure BDA0002218813730000181
Example 11
Referring to figure 9, the aerosol-generating article 1 comprises three portions arranged in a coaxial arrangement: a filter portion 3, an aerosol circulation portion 4 and an aerosol-generating substrate 5, and also an outer wrapping portion 2. The aerosol-flow-through portion 4 comprises a cooling section 41 and a support section 42 arranged coaxially, the aerosol-generating substrate 5 being a pure particulate tobacco material.
Referring to FIG. 9, an aerosol-generating article sample 11 was prepared using conventional cigarette paper as the outer wrapping portion 2; a conventional acetate fiber rod is used as a filtering part 3, and the length is 7 mm; the hollow tubular firmware and the conventional hollow acetate fiber rod are combined to form an aerosol circulation part 4, the length of the hollow tubular firmware is 15mm, the length of the conventional hollow acetate fiber rod is 8mm, and the conventional hollow acetate fiber rod is adjacent to the aerosol generation substrate 5; the aerosol-generating substrate 5 was 12mm in length and was all made of a particulate heating material.
Comparative example 11
The tobacco material sheet in a pure strip shape order is used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 11 adopt the same specification and the same material to prepare a comparison sample 11.
Wherein, the granules and the sheets are respectively prepared from tobacco raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
The results of comparative smoking evaluation of sample 11 and control 11 with IQOS heated non-burning smoking set are shown in table 9:
TABLE 9 comparison of sample 11 with control 11
Figure BDA0002218813730000191
Example 12
Referring to fig. 1, an aerosol-generating article sample 12 was made using conventional cigarette paper as the outer wrapping portion 2; a conventional acetate fiber rod is used as a filtering part 3, and the length of the conventional acetate fiber rod is 10 mm; the hollow paper tube rod is used as an aerosol circulation part 4, and the length is 20 mm; the compound aerosol generating substrate 5 adopts the combination of particle and non-particle heating materials, and has the length of 12mm, wherein the length ratio of three sections of the aerosol generating substrate is 1: 2: 1(3mm +6mm +3mm), the first and third substrate segments 51, 53 are each a sheet of filamentary ordered tobacco material, and the second substrate segment 52 is a particle of tobacco material.
Comparative example 12
The tobacco material sheet in pure silk-like order is used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 12 adopt the same specification and the same material to prepare a comparison sample.
Wherein, the granules and the sheets are respectively prepared from tobacco raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
The results of comparative smoking of sample 12 and control 12 with IQOS heated non-burning smoking set are shown in table 10:
TABLE 10 comparison of sample 12 with control 12
Figure BDA0002218813730000201
Example 13
Referring to figure 10, the aerosol-generating article 1 comprises three portions arranged in a coaxial arrangement: a filter portion 3, an aerosol passage portion 4 and an aerosol-generating substrate 5. Wherein the filtering part 3 is a countersunk head acetate fiber rod, the aerial fog circulation part 4 is a hollow rod, and the aerial fog generating substrate 5 comprises three sections which are coaxially arranged and distributed according to a composite structure: the material of the first base body segment 51 is an elongated, ordered sheet, the material of the second base body segment 52 is granular, and the material of the third base body segment 53 is an elongated, ordered sheet.
Referring to figure 10, an aerosol-generating article sample 13 was prepared using conventional cigarette paper as the outer wrapping portion 2; the countersunk head acetate fiber rod is used as a filtering part 3, and the length is 15 mm; the hollow paper tube rod is used as an aerosol circulation part 4, and the length is 15 mm; the compound aerosol generating substrate 5 adopts the combination of particle and non-particle heating materials, and has the length of 12mm, wherein the length ratio of three sections of the aerosol generating substrate is 1: 2: 1(3mm +6mm +3 mm).
Comparative example 13
The tobacco material sheet in pure silk-like order is used as an aerosol generating substrate, and the aerosol circulation part, the filtering part and the external wrapping part and the aerosol generating product sample 13 adopt the same specification and the same material to prepare a comparison sample 13.
Wherein, the granules and the sheets are respectively prepared from tobacco raw materials, and the flue-cured tobacco flavor, the dried orange peel flavor added with characteristic spices, the wine flavor and the agilawood flavor are prepared.
The results of comparative smoking of the test sample 13 and the control sample 13 with IQOS heating and without burning smoking set are shown in table 11:
TABLE 11 comparison of sample 13 with control 13
Figure BDA0002218813730000211
From the comparative smoking evaluation results of the examples 1 to 13 and the comparative examples 1 to 13, the aerosol-generating product prepared by the aerosol-generating substrate with the composite structure has advantages in the amount of the aerosol, the strength, the number of the suction openings and the taste compared with the aerosol-generating product prepared by pure sheet materials, the smoking feeling is closer to that of the traditional cigarette, and the smoking quality is greatly improved. Meanwhile, the composite aerosol generating substrate is more obvious in characteristic aroma performance of characteristic taste, can represent the characteristic aroma more clearly, and can meet the requirement of multiple tastes of people conveniently.
In the description herein, reference to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the application. In this specification, the schematic representations of the terms used above are not necessarily intended to refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, various embodiments or examples and features of different embodiments or examples described in this specification can be combined and combined by one skilled in the art without contradiction.
Although embodiments of the present application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present application, and that variations, modifications, substitutions and alterations may be made to the above embodiments by those of ordinary skill in the art within the scope of the present application.

Claims (22)

1. An aerosol-generating article, comprising: the outer wrapping part, and the aerosol generating substrate, the aerosol circulating part and the filtering part which are adjacent in sequence;
the outer wrapping portion collectively wraps the aerosol-generating substrate, the aerosol circulation portion, and the filter portion together;
the aerosol-generating substrate comprises one or more segments;
the aerosol circulation part is a hollow tubular structure, and the hollow tubular structure comprises one or more of a hollow paper tube, a hollow tubular fixing piece and a hollow acetate fiber tube.
2. The aerosol-generating article of claim 1, wherein the material used in the aerosol-generating substrate comprises a particulate material and/or a non-particulate material.
3. The aerosol-generating article of claim 2, wherein the aerosol-generating substrate comprises a non-particulate material that is disposed in an ordered and/or disordered state within the aerosol-generating substrate.
4. An aerosol-generating article according to claim 2 in which the non-particulate material is in the form of a plurality of elongate strips of sheet material arranged regularly parallel to the axial direction of the article;
alternatively, the non-particulate material is in the form of short filaments and does not collect regularly within the aerosol-generating substrate.
5. The aerosol-generating article of claim 1, wherein the aerosol-generating substrate comprises a first substrate segment, a second substrate segment, and a third substrate segment that are sequentially adjacent to each other, and wherein the adjacent substrate segments are made of materials having different shapes and/or different arrangements.
6. The aerosol generating article of claim 5, wherein the material used in the first and third substrate segments is particulate and the material used in the second substrate segment is non-particulate.
7. The aerosol generating article of claim 6, wherein the second substrate segment is formed from an ordered arrangement of materials.
8. The aerosol generating article of claim 5, wherein the first and third substrate segments are formed from an ordered array of non-particulate materials and the second substrate segment is formed from a particulate material.
9. The aerosol-generating article of claim 8, wherein the non-particulate material comprises one or more of regular elongate tobacco, regular filamentary tobacco and regular lamina homogenised tobacco, the non-particulate material being ordered with its length direction parallel to the axial direction of the aerosol-generating article.
10. An aerosol-generating article according to claim 5, wherein the first, second and third substrate segments have a length ratio of (1-3): (1-3): (1-3).
11. The aerosol-generating article of claim 1, wherein the aerosol-generating substrate comprises two segments, one segment comprising the particulate material and the other segment comprising the non-particulate material.
12. The aerosol-generating article of claim 11, wherein the non-particulate material is arranged in an ordered arrangement within the aerosol-generating substrate.
13. An aerosol-generating article according to claim 11, wherein the two segments of the aerosol-generating substrate have a length ratio of (1-3): (1-3).
14. The aerosol-generating article of claim 1, wherein the aerosol-generating substrate is a one-piece structure and the material used for the aerosol-generating substrate comprises a particulate material and/or a non-particulate material.
15. An aerosol-generating article according to claim 14 in which the aerosol-generating substrate is of an ordered or disordered arrangement of materials.
16. The aerosol-generating article of claim 1, wherein the aerosol circulation portion comprises a support segment and a cooling segment that abut one another, the support segment abutting the aerosol-generating substrate, and the cooling segment abutting the filter portion.
17. The aerosol generating article of claim 16, wherein the support segment is a hollow acetate tube and the cooling segment is a porous hollow tubular fastener.
18. The aerosol generating article of claim 1, wherein the filter portion comprises one or more of a conventional acetate rod, a capsule-containing acetate rod, a countersunk acetate rod, and a granular acetate rod.
19. An aerosol-generating article according to any one of claims 1 to 18, wherein the outer wrap portion comprises one or more of a conventional cigarette paper, a coated cigarette paper and a tipping paper.
20. An aerosol-generating article comprising an aerosol-generating substrate, the aerosol-generating substrate comprising a plurality of segments, the material of each segment comprising a particulate material and/or a non-particulate material.
21. An aerosol-generating article according to claim 20, wherein the aerosol-generating substrate comprises two segments, a segment distal to the proximal lip end comprising the ordered arrangement of non-particulate material and a segment proximal to the proximal lip end comprising the ordered arrangement of particulate material.
22. The aerosol generating article of claim 20, wherein the aerosol generating substrate comprises a first substrate segment, a second substrate segment, and a third substrate segment disposed in series, the first substrate segment being proximate the proximal lip end, the first substrate segment and the third substrate segment each being comprised of an ordered array of non-particulate materials, the second substrate segment being comprised of a disordered array of particulate materials.
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