The present invention relates to a filter component for an aerosol-generating article such as cigarettes, heat-not-burn articles, and vaping products in general. More specifically, it relates to a filter component that provides a more pleasant vaping experience.
Use of e-cigarettes or heat-not-burn vaping devices is becoming popular these days. These products deliver a flavored or non-flavored inhalable aerosol to a user. Typically, an aerosol-generating source, such as a liquid or a solid heatable substrate containing an aerosol generating substance is heated or vaporized to generate aerosol without combustion. Similar to conventional cigarettes, these devices, and in particular heat-not-burn articles, may include one or more filter elements in the air channel to filter certain compounds and particles in the aerosol before it is delivered it to the user for inhalation.
Meanwhile, the use of conventional cigarettes remains widespread. Therefore, there is a constant need for improving filtration of mainstream smoke generated during use of such articles as well as to provide consumers with different taste experiences.
Currently, known existing filters for such vaping products mostly mimic filters used in conventional cigarettes. Regular users have however reported a need for cooler aerosol upon inhalation as they often feel the aerosol and/or mouthpiece of the articles through which they are inhaling to be too hot in use, and certainly hotter than the mouthpiece of a conventional cigarette. This is mostly due to the shorter distance travelled by the aerosol in a vaping article from the heating point of the aerosol-generating material where the aerosol is generated to the mouthpiece compared to conventional cigarettes for example, at least for the major part of the consumption thereof.
There have been attempts to reduce heat of aerosols through increased filter ventilation or alternative filter material compositions, for example. However, these solutions tend to undesirably alter the taste of the aerosol.
An aim of the invention is to provide a new filter for aerosol-generating articles such as smoking articles, e-cigarettes, and heat-not-burn products, and the like, which allows sufficient cooling of the aerosol generated by such articles as well as provide a more enjoyable vaping experience to the users.
According to an aspect of the invention, there is provided a filter component for an aerosol-generating article comprising a core comprising filtration material wrapped around by a first wrapper, wherein the first wrapper is air impermeable and comprises a plurality of corrugations of sinusoidal waveform extending longitudinally along a sinuous air flow path from and/or to a longitudinal end of the filter component at least.
Advantageously, such filter component inhibits mixing of the aerosol and the outside air thereby enhancing the user experience. Also, the corrugations along a sinuous air flow path create a cooling effect.
Preferably, the filter component further comprises a second wrapper configured to wrap around the first wrapper such that the corrugations define channels between the first wrapper and the second wrapper.
Preferably, the second wrapper comprises perforations in fluid communication with the channels to create an air flow through the channels by drawing on the filter component.
Advantageously, the channels between the first and the second wrapper provide ventilation and cools down the aerosol passing thorough the filter component.
Preferably, the wave length of the sinusoidal waveform is in the range of 1 mm to 3 mm.
Preferably, the amplitude of the sinusoidal waveform is in the range of 0.5 mm to 2 mm.
Preferably, the first wrapper comprises plastic material, and preferably polylactic acid.
Advantageously, the wrapper formed of such material is air impermeable and is strong enough to not bend or tear during manufacturing. Also, it is suitable for forming corrugations of desired shape and size.
Preferably, the first wrapper has Modulus of Elasticity in the range of 1.09 to 2.28 GPa.
Preferably, the first wrapper has Elongation at Break in the range of 2.5 to 24%.
According to another aspect of the invention, there is provided a filter for an aerosol-generating article comprising at least a first filter component having features described above.
Preferably, the filter includes at least one second filter component, different from the first filter component, coaxially arranged longitudinally at an end of the first filter component and maintained therewith with an outer wrapper wrapped around both the first and second filter components.
Advantageously, an extra layer of filtration can be provided using the second filter component and the filter components can be held together with the help of the outer wrapper.
Preferably, the second filter component is at least partially hollow along a longitudinal axis of the second filter component.
Advantageously, this can provide extra cooling effect for the aerosol.
According to another aspect of the invention, there is provided an aerosol-generating article comprising a charge of aerosol-generating substrate and a filter as described above attached at an end thereof such that the first filter component is abutting against said charge of the aerosol-generating substrate.
According to yet another aspect of the invention, there is provided a method of forming a filter component for an aerosol-generating article, the method comprising: forming a plurality of corrugations of sinusoidal waveform extending longitudinally at least partly along a sinuous air flow path on a non-air permeable first wrapper from an end thereof; providing a core of filtration material; and wrapping the first wrapper around the core.
Preferably, the corrugations are formed by pressing and heating the inner wrapper between two embossing rollers.
Preferably, a second wrapper is wrapped around the first wrapper such that the corrugations define air channels between the first wrapper and the second wrapper.
The present invention will now be illustrated by way of example with reference to the accompanying drawings, in which:
Next, various embodiments of the invention will be described in relation to an aerosol-generating article 100 in the form of a heat-not-burn stick as represented in
As shown in
It is to be understood that the article 100 may be of any suitable shape and size and may include other components not shown in the figure.
The inner wrapper 201 is wrapped around by an outer wrapper 203 which is preferably made of air-permeable material. The outer wrapper 203 has non-corrugated surface such that when it is wrapped around the inner wrapper 201 with sinusoidal waveform pattern, air channels 204 are formed between them.
In use, a user draws air at the mouthpiece end 103a while the aerosol generating source 104 is heated. Heat generated aerosol is sucked from the aerosol generating section 102 through an intermediate channel formed by the paper tube 105 and enters into the core 202 as it passes through the filter component 106. The aerosol is filtered by being in contact with the filtration material present in the core 202. In this example, because the outer wrapper 203 is air permeable, cooling air is drawn from outside into the channels 204. Aerosol passing through the core 202 of the inner wrapper 201 is however not mixed with the cooling air as the inner wrapper 201 is air impermeable. The cooling air in the channels 204 however enters the user's mouth where it is mixed with the aerosol and cools it down. The user is therefore provided with the aerosol at a comfortable temperature for inhalation. Moreover, as the aerosol is not mixed with the outside air due to the presence of the inner wrapper 201, the intensity of the flavor or the substance in the aerosol is not reduced which further enhances the user experience.
As shown in
The outer wrapper 203 is wrapped around the inner wrapper 201 to provide rigidity and as well as comfort to the user. The outer wrapper 203 may be made of paper or air-permeable material which allows the outside air to penetrate inside the channels 204 formed between the inner wrapper 201 and the outer wrapper 203. The outer wrapper 203 may also be perforated to allow proper air intake into the air channels 204. The channels 204 are formed by the virtue of sinusoidal waveform pattern in the inner wrapper 201 and aid in cooling the aerosol passing through the filter component 106. As described above, the air in the channels cannot penetrate through the inner wrapper 201 and therefore the aerosol is not mixed with the outside air in the filter component 106.
It is to be noted that the channels 204 are formed circumferentially at one or both ends of the filter component 106 and longitudinally along sinusoidal corrugations formed at least partially along the length of the filter component 106. The channels 204 formed in this way in the inner wrapper 201 provide enhanced cooling effect as compared to the existing filters.
In both examples of
In the device shown in
In the device shown in
It is to be understood that the tube-shaped filter component 401, the paper tube 105, and the filter component 106 are preferably wrapped together using a plug wrap (not shown). Moreover, the paper tube 105 and the tube-shaped filter component 401 are optional components and one or both of them may be omitted.
The amplitude, b, of the waveform in pattern 502 is preferably also in the region of 0.5 to 2 mm.
After the inner wrapper 201 is embossed, it is optionally filled with filtration material and wrapped around by the outer wrapper 203 in the rod formation unit 603. In this way, the filter component 106 is produced for use in the device 100.
According to the invention described above, it is possible to provide an aerosol-generating device including a filter component that provides a pleasant user experience by cooling down the aerosol to a comfortable temperature without mixing it directly with the outside air. Moreover, as the inner wrapper 201 is made of a more rigid material, it is less susceptible to bend or tear during the manufacturing process. Furthermore, forming a desired pattern on such inner wrapper is easier.
It is to be understood that the shape, size, and design of the filter component 106 can be modified according to other components of the device 100. Moreover, the positioning of the filter component in the device 100 can also be adjusted based on the requirements. The choice of material for forming the filter component, the outer wrapper, the paper tube, the filtration material, etc. is also not limited by the examples presented above.
Furthermore, additional components may be present in the device. For example, a flavor capsule including a flavor may also be provided in the filter component 106 or in one of the other parts of the device. With this configuration, the user may also be able to crush the flavor capsule, to increase the intensity of flavor contained in it.
Although, the invention is described primarily with respect to heat-not-burn type e-cigarettes, the filter component 106 is also applicable for use in other types of e-cigarettes or conventional cigarettes.
The foregoing description of illustrative embodiments has been presented for purposes of illustration and of description. It is not intended to be exhaustive or limiting with respect to the precise form disclosed, and modifications and variations are possible in light of the above teachings or may be acquired from practice of the disclosed embodiments.
Number | Date | Country | Kind |
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19205584.6 | Oct 2019 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2020/080172 | 10/27/2020 | WO |