Vaporisable Material Plug And Capsule
20200337364 ยท 2020-10-29
Assignee
Inventors
Cpc classification
A61M15/0028
HUMAN NECESSITIES
A24B3/14
HUMAN NECESSITIES
A61M15/06
HUMAN NECESSITIES
A24B15/186
HUMAN NECESSITIES
International classification
A24B3/14
HUMAN NECESSITIES
A24B15/18
HUMAN NECESSITIES
Abstract
A plug of vaporisable material for a vapour generating device which generates a vapour by heating at least the base of the plug includes vaporisable material shaped such that it defines a cavity within the vaporisable material, wherein the cavity is frusto-conical in shape, with the apex adjacent to the base of the plug.
Claims
1. (canceled)
2. A method of generating a vapour, the method comprising: inserting a plug into a heating chamber of a vapour generating device, the plug comprising vaporisable material preformed such that the vaporisable material defines a cavity within the vaporisable material, wherein the cavity is frusto-conical in shape, with an apex adjacent to a base of the plug; and generating vapour by heating at least the base of the plug.
3. The method of generating a vapour of claim 2, wherein the step of generating the vapour includes generating vapour from an exposed inclined side of the cavity of the vaporisable material.
4. The method of generating a vapour of claim 3, wherein an angle of inclination of the inclined side of the cavity is in the range of 10 to 15 degrees with respect to a line perpendicular to the base of the plug.
5. The method of generating a vapour of claim 4, wherein the angle of inclination of the inclined side of the cavity is around 12 degrees with respect to the line perpendicular to the base of the plug.
6. The method of generating a vapour of claim 2, wherein the vaporisable material comprises tobacco.
7. The method of generating a vapour of claim 2, wherein the step of inserting the plug includes inserting a capsule containing the plug into the heating chamber.
8. The method of generating a vapour of claim 7, further comprising piercing a foil with the vapour generating device, the foil sealing an opening of an outer body of the capsule.
9. The method of generating a vapour of claim 8, wherein an entire surface of the cavity of the vaporisable material is uncovered and separated from the foil.
10. The method of generating a vapour of claim 7, further comprising piercing a seal with the device, the seal sealing an opening of an outer body of the capsule.
11. The method of generating a vapour of claim 7, further comprising removing the capsule from a user-removable wrapper prior to the step of inserting.
12. The method of generating a vapour of claim 2, further comprising supplying a plurality of the plugs in a dispenser, wherein the step of inserting includes using the dispenser and is carried out without the plug being contacted by a user.
13. The method of generating a vapour of claim 2, wherein the step of generating the vapour includes heating at least the base of the plug to at least 180 C.
14. The method of generating a vapour of claim 2, wherein the apex is a flat surface.
15. The method of generating a vapour of claim 2, wherein the cavity is positioned such that there is a predetermined thickness of the vaporisable material between the apex of the cavity and the base of the plug.
16. The method of generating a vapour of claim 2, wherein the predetermined thickness of the vaporisable material is 1.5 mm+/0.5 mm.
17. The method of generating a vapour of claim 2, wherein a ratio of overall plug depth to the predetermined thickness of the vaporisable material between the apex of the cavity and the base of the plug is in the range of thirteen to one and four to one.
18. The method of generating a vapour of claim 2, wherein the cavity is shaped such that a cross-sectional area of the cavity substantially parallel to the base increases as the distance within the cavity to the base increases.
19. The method of generating a vapour of claim 18, wherein the increase in the cross-sectional area in the cavity is non-linear in relation to the distance to the base.
20. The method of generating a vapour of claim 2, wherein the cavity is initially unfilled such that it is exposed to air.
21. The method of generating a vapour of claim 2, wherein the outer body is comprised of aluminium.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] One example of the present invention will now be described with reference to the accompanying drawings in which:
[0014]
[0015]
DETAILED DESCRIPTION
[0016] Referring to
[0017] In use a capsule 20 is inserted into the heating chamber 13, and the heater 12 supplied with fuel from the fuel tank 14 to heat the heating chamber 13, under the control of a user. The contents of the capsule 20 are heated by the heater 12 to create an aerosol vapour based on the contents of the container, that aerosol then being inhaled by the user via the mouthpiece 10.
[0018] Referring to
[0019] The capsule 20 comprises an outer body 21 with a base 22 and opening 23. Preferably the capsule body is made of a metal, crystalline or noncrystalline inorganic ceramic or plastic material capable of upholding temperatures of at least 180 C. A preferred material for the capsule according to the invention may be aluminium.
[0020] The opening 23 is sealed with a foil 24 to retain the plug of material 25 within the capsule 20 during transport and insertion into the device of
[0021] It will be noted that the plug of material 25 within the capsule 20 is shaped and positioned within the capsule 20 such that it defines a central cavity 26 within the capsule 20 even when it is filled. It will be noted that the cavity 26 is generally frusto-conical in shape, with the apex 27 of the cavity being at the end closest the base 22 of the body 21 of the capsule 20 when in position. The cavity is formed by compressing the plug material with an appropriately shaped tool. If the plug is to be supplied in the capsule 20 this may be done either before or after the insertion of the plug 25 into the capsule 20 and before the foil seal 24 is applied. By providing such a cavity it is possible to control with accuracy and consistency the thickness d between the cavity 26 and the base 22 of the capsule 20.
[0022] The provision of a frusto-conical shape has further advantages in that it is possible to control, again with accuracy and consistency, the amount of plug material at any particular distance from the base of the plug.
[0023] What the applicant has appreciated is that by controlling the distribution of the contents of the plug of vaporisable material 25 with respect to their distance from the base of the plug it is possible to predetermine the heat profile of the contents with respect to time when the plug 25 is heated in use. This in turn ensures that the delivery of vapour, and hence flavour, to a user can also be predetermined with a significant degree of consistency and accuracy. By determining the thickness d of material at the base of the plug (which is where heat is applied), it is possible to predetermine the amount of vapour released on initial heating to control the amount of flavour released to a user. It has been determined that a thickness d in the range of 1.5 mm plus or minus 0.5 mm is particularly beneficial in ensuring speedy vapour generation after the start of heating. That is in the example shown in
[0024] By controlling the angle of inclination of the frusto-conical cavity it is also possible to control the release of vapour as the capsule heats up over time from the base upwards thereby controlling the profile of vapour delivery over the total heating lifetime of the plug 25 to accurately predetermine the overall time of delivery of the entire contents of the plug in vapour form. This provides a user with a reliable and consistent experience in using the device. In this respect an angle of inclination for the inclined side of the frusto-conical shape in the range of 10 to 15 degrees from a line perpendicular to the base 22 of the capsule 20 has been found to be beneficial and an angle of 12 degrees from such a line is particularly beneficial.
[0025] As will be appreciated providing a cavity of frusto-conical shape it is possible to provide a relatively linear heat profile for the plug material with respect to time, which in turn provides a linear vapour delivery. It should also be noted that the plug of vaporisable material could be inserted straight into an oven of a device without being first introduced in a capsule. Having the plug introduced in a capsule helps the users to remove a used plug in a hygienic manner and avoids contamination of a clean plug by residues left in the oven by a prior plug.