IP Library › Granted Patent US 11,641,872
Granted Patent B2
US 11,641,872 · App. 16/735,903 · Granted May 9, 2023

Aerosol-forming substrate and aerosol-delivery system

Inventors: Oleg Mironov (Neuchatel, CH); Ihar Nikolaevich Zinovik (Peseux, CH)
Assignee: PHILIP MORRIS PRODUCTS S.A.
A24B15/12A24B15/16A24D1/20A24F40/465H05B6/105A24F40/20H05B2206/023
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Quick Facts
Patent No.
US 11,641,872
App. No.
16/735,903
Granted
May 9, 2023
Kind
B2
Abstract

There is described an aerosol-forming substrate for use in combination with an inductive heating device. The aerosol-forming substrate comprises a solid material capable of releasing volatile compounds that can form an aerosol upon heating of the aerosol-forming substrate, and at least a first susceptor material for heating of the aerosol-forming substrate. The first susceptor material has a first Curie-temperature and is arranged in thermal proximity of the solid material. The aerosol-forming substrate comprises at least a second susceptor material having a second Curie-temperature which is arranged in thermal proximity of the solid material. The first and second susceptor materials have specific absorption rate (SAR) outputs which are distinct from each other. Alternatively or in addition thereto the first Curie-temperature of the first susceptor material is lower than the second Curie-temperature of the second susceptor material, and the second Curie-temperature of the second susceptor material defines a maximum heating temperature of the first and second susceptor materials. There is also described an aerosol-delivery system.

Claims (23)

1. An aerosol-forming substrate for use in combination with an inductive heating device, the aerosol-forming substrate comprising:

a solid material configured to release volatile compounds that can form an aerosol upon heating of the aerosol-forming substrate,

at least a first ferromagnetic susceptor material configured to heat the aerosol-forming substrate, the first ferromagnetic susceptor material having a first Curie-temperature and being arranged in thermal proximity of the solid material,

at least a second ferromagnetic susceptor material having a second Curie-temperature and being arranged in thermal proximity of the solid material, the first and second ferromagnetic susceptor materials being of particulate configuration and having specific absorption rate (SAR) outputs which are distinct from each other and the first Curie-temperature of the first ferromagnetic susceptor material being lower than the second Curie-temperature of the second ferromagnetic susceptor material, and the second Curie-temperature of the second ferromagnetic susceptor material defining a maximum heating temperature of the first and second ferromagnetic susceptor materials,

wherein the first Curie-temperature is a temperature at which the magnetic properties of the first susceptor material changes from a ferromagnetic phase to a paramagnetic phase, and

wherein the second Curie-temperature is a temperature at which the magnetic properties of the second susceptor material changes from a ferromagnetic phase to a paramagnetic phase.

2. The aerosol-forming substrate according to claim 1 , wherein the first and second Curie-temperatures of the first and second ferromagnetic susceptor materials are selected such, that upon being inductively heated an overall average temperature of the aerosol-forming substrate does not exceed 240° C.

3. The aerosol-forming substrate according to claim 2 , wherein the second Curie-temperature of the second ferromagnetic susceptor material does not exceed 370° C.

4. The aerosol-forming substrate according to claim 1 , wherein the second Curie-temperature of the second ferromagnetic susceptor material does not exceed 370° C.

5. The aerosol-forming substrate according to claim 1 , wherein at least one of the first and second ferromagnetic susceptor materials has an equivalent diameter of 10 μm-100 μm and is distributed within the aerosol-forming substrate.

6. The aerosol-forming substrate according to claim 5 , wherein the first and the second ferromagnetic susceptor materials are generally homogenously distributed within the aerosol-forming substrate.

7. The aerosol-forming substrate according to claim 5 , wherein the first and second ferromagnetic susceptor materials are arranged in heaped formation at different locations within the aerosol-forming substrate, the first ferromagnetic susceptor material being arranged in a central region of the aerosol-forming substrate, preferably along an axial extension thereof, and the second ferromagnetic susceptor material being arranged in peripheral regions of the aerosol-forming substrate.

8. The aerosol-forming substrate according to claim 1 , wherein the first and the second ferromagnetic susceptor materials are generally homogenously distributed within the aerosol-forming substrate.

9. The aerosol-forming substrate according to claim 1 , wherein the first and second ferromagnetic susceptor materials are arranged in heaped formation at different locations within the aerosol-forming substrate, the first ferromagnetic susceptor material being arranged in a central region of the aerosol-forming substrate, preferably along an axial extension thereof, and the second ferromagnetic susceptor material being arranged in peripheral regions of the aerosol-forming substrate.

10. The aerosol-forming substrate according to claim 1 , wherein the aerosol-forming substrate is attached to a mouthpiece, which comprises a filter plug.

11. An aerosol-delivery system comprising an inductive heating device and an aerosol forming substrate according to claim 1 .

12. An aerosol-delivery system according to claim 11 , wherein the inductive heating device is provided with an electronic control circuit, which is adapted for a successive or alternating heating of the first and second ferromagnetic susceptor materials of the aerosol-forming substrate.

13. The aerosol-forming substrate according to claim 1 , wherein the first ferromagnetic susceptor material is configured to respond to a different frequency than the second ferromagnetic susceptor material.

14. The aerosol-forming substrate according to claim 1 , wherein the aerosol-forming substrate comprises tobacco material.

15. The aerosol-forming substrate according to claim 1 , wherein the aerosol-forming substrate has a cylindrical shape.

16. The aerosol-forming substrate according to claim 1 , wherein the first and second ferromagnetic susceptor materials are arranged in heaped formation at different locations within the aerosol-forming substrate, the second ferromagnetic susceptor material being arranged in a central region of the aerosol-forming substrate, and the first ferromagnetic susceptor material being arranged in peripheral regions of the aerosol-forming substrate.

17. The aerosol-forming substrate according to claim 16 , wherein the second ferromagnetic susceptor material is arranged along an axial extension of the aerosol-forming substrate.

18. The aerosol-forming substrate according to claim 1 , wherein the first and the second ferromagnetic susceptor material of particulate configuration are of different geometrical configuration.

Priority Claims (1)
WO 14169193 · May 21, 2014 · international
Continuity (2)
Continuation 14899742
Related Publication 20200138098A1 · May 7, 2020