Cartridge assembly for an aerosol-generating system having leakage prevention
A cartridge for an aerosol-generating system is provided, including a cartridge main body including a cartridge air outlet; a storage container within the body and containing a supply of liquid aerosol-forming substrate; a heating element disposed at a first end of the body and in fluid communication with the container; and a cartridge cap including a cartridge air inlet, a top portion to cover the first end of the body and the heating element, and a side portion extending from the top portion and over a part of a side portion of the body and including an engagement portion to releaseably engage with a corresponding portion of the body, and, when the engagement portion is disengaged from the body, the cartridge cap is configured to move relative to the body between a first position, which blocks air from flowing, and a second position, in which an airflow path exists.
1 . A cartridge for an aerosol-generating system, the cartridge comprising:
a cartridge main body comprising at least one cartridge air outlet;
a storage container within the cartridge main body, the storage container containing a supply of liquid aerosol-forming substrate;
a heating element disposed at a first end of the cartridge main body, the heating element being in fluid communication with the storage container; and
a cartridge cap comprising:
at least one cartridge air inlet,
a top portion configured to cover the first end of the cartridge main body and the heating element, and
a side portion extending from the top portion of the cartridge cap and over a part of a side portion of the cartridge main body,
wherein the cartridge cap side portion comprises an engagement portion comprising a deflectable member configured to releaseably engage with a corresponding protrusion on a side wall of the cartridge main body, wherein the deflectable member extends directly from the top portion of the cartridge cap, and
wherein, when the engagement portion is disengaged from the cartridge main body, the cartridge cap is configured to move relative to the cartridge main body between:
a first position, in which one or both of the cartridge cap and the cartridge main body block air from flowing from the cartridge air inlet to the cartridge air outlet, via the heating element, and
a second position, in which an airflow path exists from the cartridge air inlet to the cartridge air outlet, via the heating element.
2 . The cartridge according to claim 1 , wherein the deflectable member comprises a distal end, which extends towards a second end of the cartridge main body, and a proximal end directly attached to the top portion of the cartridge cap, the second end of the cartridge main body being opposed to the first end of the cartridge main body.
3 . The cartridge according to claim 1 , wherein the deflectable member comprises a hole or notch into which the corresponding protrusion extends when the cartridge cap is in the first position.
4 . The cartridge according to claim 1 , wherein the top portion of the cartridge cap comprises a pair of apertures arranged to overlie the heating element.
5 . The cartridge according to claim 1 ,
wherein the heating element forms part of a heater assembly of the cartridge, the heater assembly comprising:
a heater assembly base supporting the heating element, and
a heater assembly cover overlying the heater assembly base and the heating element, and
wherein the heater assembly cover underlies the cartridge cap.
6 . The cartridge according to claim 5 , wherein the heater assembly cover comprises one or more of:
a first aperture overlying a central portion of the heating element,
a pair of second apertures, each overlying an end portion of the heating element, and
a third aperture positioned in a peripheral region of the heater assembly cover and not overlying the heating element.
7 . The cartridge according to claim 5 , wherein the cartridge main body further comprises two parts: a first part defining the storage container, and a second part configured to connect to the first part, so that the first and the second parts of the cartridge main body collectively define at least a portion of the airflow path in the cartridge.
8 . The cartridge according to claim 7 , wherein the second part of the cartridge main body comprises a side cover portion arranged to extend along a side of the first part of the cartridge main body to define a side airflow channel, the side airflow channel being defined between an inner surface of the side cover portion and an outer surface of the first part of the cartridge main body, the side airflow channel forming part of the airflow path in the cartridge.
9 . The cartridge according to claim 8 , wherein the second part of the cartridge main body further comprises a nozzle portion attached to one end of the side cover portion, the nozzle portion defining the cartridge air outlet.
10 . The cartridge according to claim 8 ,
wherein the heater assembly cover comprises one or more of:
a first aperture overlying a central portion of the heating element,
a pair of second apertures, each overlying an end portion of the heating element, and
a third aperture positioned in a peripheral region of the heater assembly cover and not overlying the heating element, and
wherein the third aperture of the heater assembly cover is disposed at one end of the side airflow channel.
11 . A cartridge assembly for an aerosol-generating system, the cartridge assembly comprising:
a cartridge according to claim 1 ; and
a housing having a mouth end and an opposed device end configured to connect to an aerosol-generating device, wherein at least one housing air outlet is provided at the mouth end of the housing, and at least one housing air inlet is provided upstream of the housing air outlet,
wherein, when the cartridge is disposed within the housing, the cartridge cap is configured to move relative to the cartridge main body between:
a first position, in which one or both of the cartridge cap and the cartridge main body block air from flowing from the cartridge air inlet to the cartridge air outlet, via the heating element, and
a second position, in which an airflow path exists from the housing air inlet to the housing air outlet, via the cartridge air inlet, the heating element, and the cartridge air outlet.
12 . The cartridge assembly according to claim 11 , wherein when the cartridge is received in the housing, the cartridge and the housing are arranged to engage with one another such that rotational movement of the cartridge with respect to the housing causes longitudinal movement of the cartridge cap with respect to the cartridge main body, with the longitudinal movement corresponding to movement of the cartridge cap relative to the cartridge main body between the first position and the second position.
13 . The cartridge assembly according to claim 12 ,
wherein the cartridge main body further comprises at least one guide protrusion, and
wherein the housing defines a guide track for the at least one guide protrusion.
14 . The cartridge assembly according to claim 13 , wherein movement of the guide protrusion along the guide track of the housing is configured to cause movement of the cartridge cap with respect to the cartridge main body between a first attached position and a second partially attached position.
15 . The cartridge assembly according to claim 11 ,
wherein the housing further comprises a rim disposed within the housing, the rim being configured to engage with the deflectable member of the cartridge main body as the cartridge is rotated within the housing, and
wherein, when the rim engages with the deflectable member, the deflectable member disengages from an engagement protrusion of the cartridge main body.