Filter having a shaped rim structure and a flavor capsule
US-12144371-B2 · Nov 19, 2024 · US
US9516895B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9516895-B2 |
| Application number | US-201214116985-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 11, 2012 |
| Priority date | May 13, 2011 |
| Publication date | Dec 13, 2016 |
| Grant date | Dec 13, 2016 |
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A deformable additive release component ( 1 ) for a smoking article is disclosed, comprising an aperture ( 8 ) through which additive may be released, an outer wall section ( 2 ), an inner wall section ( 3 ) that defines a chamber ( 10 ) within which the additive is held and at least one channel ( 5 ) between the inner and outer wall sections to allow airflow through the component, wherein the component is configured to transmit a compressive force applied to the outer wall section to the inner wall section and to open the aperture. A filter ( 25 ) for a smoking article that comprises said additive release component, and a smoking article ( 21 ) that comprises said additive release component or said filter, are also described. Methods of manufacturing the additive release components is also disclosed.
Opening claim text (preview).
The invention claimed is: 1. An additive release component for a smoking article, wherein the additive release component is deformable and configured to provide: an additive release aperture through which additive may be released; an outer wall section; an inner wall section that defines an additive holding chamber within which additive is held; and at least one channel between the inner and outer wall sections to allow airflow through the component; wherein the component is configured to transmit a compressive force applied to the outer wall section to the inner wall section and to open the additive release aperture, wherein the aperture is sealed to prevent the release of additive through said aperture prior to a first application of compressive force to the outer wall section, and wherein the first application of compressive force to the outer wall section opens the aperture to allow release of additive through said aperture; and wherein the aperture closes once the compressive force is no longer applied, so that substantially no additive is released until a compressive force is applied once more. 2. The additive release component according to claim 1 , wherein the additive release component is resiliently deformable. 3. The additive release component according to claim 1 , wherein at least one of an at least one bridge and an at least one vane connects the outer wall section to the inner wall section. 4. The additive release component according to claim 1 , wherein the component is configured to release a plurality of discrete deliveries of additive. 5. The additive release component according to claim 1 , wherein the additive release aperture is a slit valve. 6. The additive release component according to claim 1 , wherein the additive release aperture is sealed by a plug comprising a rupturable material. 7. The additive release component according to claim 1 , wherein the additive holding chamber comprises two compartments, and wherein the first compartment contains a first additive and the second compartment contains a second additive, the second additive being different from the first additive. 8. The additive release component according to claim 1 , wherein at least part of the component comprises at least one of injection moulded polyvinyl alcohol and injection moulded polyethylene. 9. A method of manufacturing the additive release component according to claim 1 , comprising: forming the inner wall section that defines the additive holding chamber; forming the outer wall section; introducing additive into the additive holding chamber; and adding a sealing structure to seal the additive holding chamber. 10. A filter for a smoking article comprising an additive release component, wherein the additive release component is deformable and configured to provide: an additive release aperture through which additive may be released; an outer wall section; an inner wall section that defines an additive holding chamber within which additive is held; and at least one channel between the inner and outer wall sections to allow airflow through the component; wherein the component is configured to transmit a compressive force applied to the outer wall section to the inner wall section and to open the additive release aperture; wherein the aperture is sealed to prevent the release of additive through said aperture prior to a first application of compressive force to the outer wall section, and wherein the first application of compressive force to the outer wall section opens the aperture to allow release of additive through said aperture; and wherein the aperture closes once the compressive force is no longer applied, so that substantially no additive is released until a compressive force is applied once more. 11. The filter according to claim 10 , further comprising a window to enable the user to see the additive release component, wherein the window is at least one of transparent and translucent. 12. The filter according to claim 10 , further comprising a wicking element. 13. The filter according to claim 10 , wherein the additive release component is substantially aligned with the longitudinal axis of the filter. 14. A smoking article comprising an additive release component, wherein the additive release component is deformable and configured to provide: an additive release aperture through which additive may be released; an outer wall section; an inner wall section that defines an additive holding chamber within which the additive is held; and at least one channel between the inner and outer wall sections to allow airflow through the component; wherein the component is configured to transmit a compressive force applied to the outer wall section to the inner wall section and to open the additive release aperture; wherein the aperture is sealed to prevent the release of additive through said aperture prior to a first application of compressive force to the outer wall section, and wherein the first application of compressive force to the outer wall section opens the aperture to allow release of additive through said aperture; and wherein the aperture closes once the compressive force is no longer applied, so that substantially no additive is released until a compressive force is applied once more.
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