Electronic smoking article
US-10743585-B2 · Aug 18, 2020 · US
US11992059B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11992059-B2 |
| Application number | US-202318149436-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 3, 2023 |
| Priority date | Jul 24, 2013 |
| Publication date | May 28, 2024 |
| Grant date | May 28, 2024 |
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An electronic smoking article or electronic vaping article includes a reservoir containing a liquid material and having an outlet, a capillary having a capillary inlet and a capillary outlet, the capillary inlet of the capillary in communication with the outlet of the reservoir, a heater operable to heat the capillary to a temperature sufficient to at least initially volatilize liquid material contained within the capillary, and a shuttle valve between the outlet of the reservoir and the capillary inlet. The shuttle valve is operable to prevent release of liquid material from the reservoir when the shuttle valve is in a closed position and is operable to release liquid material from the reservoir when the shuttle valve is in an open position.
Opening claim text (preview).
The invention claimed is: 1. An electronic vaping article comprising: a reservoir; a capillary structure configured to receive and vaporize a liquid material from the reservoir; a shuttle valve including a valve housing, a plunger, and a cavity between a bottom portion of the valve housing and the plunger, the cavity being in fluid communication with the reservoir; and a sheath flow insert downstream from the capillary structure, the sheath flow insert including a plurality of vanes extending along an external surface of the sheath flow insert, the plurality of vanes defining a plurality of channels. 2. The electronic vaping article of claim 1 , wherein the sheath flow insert is configured to receive a first portion of incoming ambient air along the external surface of the sheath flow insert via the plurality of channels and configured to receive a second portion of the incoming ambient air through an interior of the sheath flow insert. 3. The electronic vaping article of claim 1 , wherein the sheath flow insert defines a mixing chamber and a constriction section therein. 4. The electronic vaping article of claim 3 , further comprising: an outer housing defining at least one air inlet upstream from and in fluidic communication with the mixing chamber of the sheath flow insert. 5. The electronic vaping article of claim 3 , further comprising: an outer housing defining at least one air inlet superimposed with the sheath flow insert, wherein the sheath flow insert further defines a plurality of air holes in fluidic communication with the at least one air inlet of the outer housing and the mixing chamber of the sheath flow insert. 6. The electronic vaping article of claim 3 , wherein about 80% to about 95% of incoming ambient air flows into the mixing chamber and about 5% to about 20% of the incoming ambient air flows through the plurality of channels. 7. The electronic vaping article of claim 3 , further comprising: a mouth-end insert downstream from the sheath flow insert, the mouth-end insert and the sheath flow insert defining a growth cavity therebetween. 8. The electronic vaping article of claim 1 , wherein the reservoir is configured to store the liquid material. 9. The electronic vaping article of claim 1 , wherein the shuttle valve is configured to: switch between a closed position and an open position, and release the liquid material from an annular space surrounding the plunger to the capillary structure when in the open position. 10. The electronic vaping article of claim 1 , wherein the capillary structure has an internal diameter of about 0.05 to 0.4 mm and a length of about 5 mm to about 72 mm. 11. The electronic vaping article of claim 1 , wherein the capillary structure includes a metallic tube. 12. The electronic vaping article of claim 1 , wherein the capillary structure includes a non-metallic tube with a heater in thermal contact with the non-metallic tube. 13. The electronic vaping article of claim 1 , further comprising: a power supply configured to apply a voltage to the capillary structure to vaporize the liquid material. 14. The electronic vaping article of claim 13 , wherein the power supply includes a battery. 15. The electronic vaping article of claim 14 , wherein the battery is connected to the capillary structure by two electrical leads. 16. The electronic vaping article of claim 13 , further comprising: control circuitry configured to control the voltage from the power supply to the capillary structure. 17. The electronic vaping article of claim 16 , wherein the control circuitry is configured to heat the capillary structure while the liquid material is being released from the reservoir. 18. An electronic vaping article comprising: a reservoir; a capillary structure configured to receive and vaporize a liquid material from the reservoir; a valve including a valve housing, a plunger, and a cavity between a bottom portion of the valve housing and the plunger, the cavity being in fluid communication with the reservoir; a sheath flow insert downstream from the capillary structure, the sheath flow insert including a plurality of vanes extending along an external surface of the sheath flow insert, the plurality of vanes defining a plurality of channels; and at least two spaced-apart seals between the valve housing and the plunger, the plunger configured to retract from the cavity to place the valve in a closed position and to protract into the cavity to place the valve in an open position. 19. The electronic vaping article of claim 18 , wherein the plunger is configured to fit within the cavity such that the liquid material can flow between the plunger and the valve housing when the valve is in the open position, and the at least two spaced-apart seals are configured to separate the liquid material from the capillary structure when the valve is in the closed position by securing the liquid material in an annular space surrounding the plunger. 20. The electronic vaping article of claim 18 , wherein the valve housing and the plunger define a draw-back chamber in fluidic communication with the capillary structure when the valve is in the closed position.
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