This invention relates to a portable, handheld aerosol generator device which may be used to deliver aerosol to the mouth of a consumer, for example aerosol containing nicotine.
A nicotine dispensing aerosol device is disclosed in U.S. Pat. No. 4,945,929, which simulates a smoking article such as a cigarette, without having to burn tobacco.
The invention provides an improved device that can be operated manually by a consumer to generate aerosol.
An embodiment of the invention provides an aerosol generator device comprising an elongate body having a proximal mouth end, a distal end and a passageway extending longitudinally to the mouth end. A coupling is provided for releasably coupling a fluid containing pressurised canister to the body, the canister having an axial discharge tube depressible inwardly to open a valve therein to release an aerosol through the discharge tube, the canister and the passageway having a common longitudinal axis. A trigger is rotatably mounted on the body about a trigger axis spaced from and extending transversely of the longitudinal axis, the trigger having a manually depressible surface portion facing outwardly of the body, and a camming surface portion to cause the discharge tube to be pressed inwardly of the canister on depression of the surface portion inwardly of the body, to operate the valve and release the fluid from the canister through the discharge tube and through the body to the mouth end.
The trigger axis may be disposed within the body beneath its major exterior surface. The body may include a generally tubular sidewall, with the interior passageway extending from the distal end to the mouth end, and a trigger chamber extending outwardly from the interior passageway into the sidewall. The trigger can be pivotally mounted in the trigger chamber with the depressible surface portion of the trigger disposed adjacent the exterior surface of the body member.
An opening may be provided through the major exterior surface of the body into the trigger chamber, and a flexible cover may sealingly overlay the opening to be pressed inwardly to actuate the manually depressible surface portion of the trigger.
The coupling for the canister may comprise a collar arrangement to engage the canister and a collar seat on the distal end of the body, the collar arrangement being configured to sit on the collar seat and couple the canister to the distal end of the body.
The collar arrangement may include an inner collar to receive an end of the canister and be seated in the collar seat, and an outer collar to fit around the cylindrical body of the canister and over the inner collar and releasably engage with the body.
The inner collar can include interior flanges to engage crimping on the cylindrical surface of the canister to prevent axial rotation of the canister relative to the inner collar.
The inner collar may include at least one exterior lug to engage the body to prevent axial rotation of the inner collar relative to the body.
A bayonet mounting may be provided on the collar arrangement and the body, to releasably engage canister with the body.
In order that the invention may be more fully understood, embodiments thereof will now be described by way of illustrative example with reference to the accompanying drawings in which:
a is a cross sectional view of the device with its trigger up;
b is a sectional view of the device with the trigger down, depressed in the direction of arrow C;
c is an enlarged view of the trigger in the configuration of
a is a perspective view of the inner collar from one end;
b is a perspective view of the inner collar from the other end;
c is a sectional view of the inner collar;
a illustrates the initial fitting of the canister and collar arrangement to the body member;
b illustrates the collar arrangement and canister when fitted to the body;
a is a broken away view of the body illustrating the trigger in more detail;
b illustrates the trigger and body as shown in
a is a perspective view of the nozzle member;
b is a sectional view of the nozzle member;
c is a sectional view of the nozzle member shown fitted to the discharge tube of the canister;
a is a sectional view of the device illustrated in
b corresponds to
As shown in
The device has a proximal, mouth end 4 and a distal end 5 to which the canister 2 is attached. An interior passageway 6 extends from the distal end 5 to the mouth end 4 longitudinally of the body 1, and the cylindrical canister 2 when attached to the body 1 is located generally coaxially of the interior passageway.
The body 1 contains a trigger mechanism to be described in detail hereinafter, that enables a consumer to dispense a metered dose of an aerosol of the pressurised contents in the canister 2 by depressing a flexible cover 7 on the exterior surface 8 of the body 1, when gripping the body between their fingers as illustrated in
Referring to
The interior structure of the canister 2 is shown in the sectional views of
The bayonet mounting that releasably holds the canister 2 on the body will now be described. Referring to
The inner collar 18 is shown in more detail in
The outer collar 19 is fitted onto inner collar 18 by push-fitting it over the canister in the direction of arrow B shown in
Referring to
The trigger chamber 36 contains includes an interior region 38 that receives a trigger 39 in the form of a generally L-shaped lever mounted for rotation about a knurled metal pin 40 that is journalled in upstanding lugs 41a, 41b in the main body member 32 to define a trigger axis spaced from and extending transversely of the longitudinal axis X-X′, within the body 1. The trigger 39 has a manually depressible surface portion 42 facing outwardly of the body, and first and second depending camming surface portions 43 to be moved longitudinally toward the canister 2 on depression of the outer facing surface portion 42 inwardly of the body in the direction of arrow C shown in
The camming surface portions 43 of the trigger 39 engage a tubular nozzle member 44 that is reciprocally mounted within a bore 45 in the main body member 32. As shown in more detail in
As shown in
In use, a consumer places the mouth end 4 in their mouth and squeezes the cover 38 with their hand as illustrated in
As the contents discharge from the canister 2, they pass through nozzle 48 and form an aerosol, which is discharged into the interior passageway 6 as illustrated in
The contents of the canister 2 may comprise a nicotine-containing liquid with or without additional flavourants, so as to simulate a smoking article such as a cigarette although it will be appreciated that other compositions may be provided within the canister 2.
From the foregoing, it will be appreciated that the canister 2 can readily be replaced when all of its contents are used up. The canister may be removed by twisting in the opposite sense to that shown in
When fitting a canister, it is desirable to arrange its supply pipe 16 so that its curved end is directed generally downwardly in use to ensure that substantially all of the liquid contents can be consumed. To this end, the canister may be provided with a mark on its exterior surface that can be aligned with a corresponding mark (not shown) on the inner collar 18 disposed so that when the bayonet fitting is operated, the curved end 17 of the canister 2 is facing generally downwardly for use i.e. in the configuration illustrated in
Another embodiment of the device according to the invention as illustrated in
Many modifications and variations fall within the scope of the invention. For example, the trigger may comprise a lever disposed exteriorly of the main body rather than under an integral cover as described hereinbefore.
Also whilst the described examples of generator device are generally cylindrical with a circular cross section, other cross sectional shapes can be used, such as rectangular or triangular.
Furthermore, although the canister is described as an interchangeable element to allow the supply of liquid to be replenished, an integral pressurised supply vessel may be provided in the device, so that the device can be used multiple times and then discarded once the liquid supply has been exhausted from the vessel. In a modification, an inlet valve may be provided to allow the supply to be replenished from an exterior, pressurised source.
The valve 14 described herein is configured to deliver a metered dose on actuation but instead, a continuous flow valve could be used such that the consumer can maintain a flow of aerosol by continuously depressing the trigger.
The mouth end can be configured differently from that shown in the Figures. For example the mouth end could be a tapered cylindrical shape with flat piece for easy positioning and orientation cue in the mouth. Also, textured or rough finishes can be applied to the exterior surface of the mouthpiece to stimulate sensation in the lips.
The supply tube of the pressurised canister may be of flexible construction and provided with a weighted end as to always assume the lowest position in the canister orientation and allow for complete consumption of the canister contents.
Inventive variations and aspects of the disclosure may include other non-limiting embodiments. For example, in one embodiment, an aerosol generator device may comprise an elongate body having a proximal mouth end, a distal end and an interior passageway extending longitudinally to the mouth end, a coupling for releasably coupling to the body, a fluid containing pressurised canister having an axial discharge tube depressible inwardly to open a valve therein to release the fluid through the discharge tube, with the canister and the passageway having a common longitudinal axis, and a trigger rotatably mounted on the body about a trigger axis spaced from and extending transversely of the longitudinal axis, the trigger having a manually depressible surface portion facing outwardly of the body, and a camming surface portion to cause the discharge tube to be pressed inwardly of the canister on depression of the surface portion inwardly of the body, to operate the valve and release the fluid from the canister through the discharge tube and through the body to the mouth end.
In one implementation, the aerosol generator device may include a tubular nozzle member slidably mounted in the body, the nozzle member having an end to abut the tube of the canister and a trigger engaging end that engages the camming surface portion of the trigger so that said inward depression of the trigger drives the nozzle member towards the distal end of the body member to drive the tube inwardly of the canister to operate the valve and release the fluid through the tube and the nozzle to provide an aerosol.
In one implementation, the body may have a major exterior surface and the trigger axis may be disposed within the body beneath said major exterior surface. In one implementation, the body may include a generally tubular sidewall, the interior passageway extending from the distal end to the mouth end, and a trigger chamber extending outwardly from the interior passageway into the sidewall, the trigger being pivotally mounted in the trigger chamber with the depressible surface portion of the trigger disposed adjacent the exterior surface of the body member. In one implementation, the aerosol generator device may include an opening through the major exterior surface of the body into the trigger chamber, and a flexible cover overlying the opening that can be pressed inwardly with the manually depressible surface portion of the trigger. In one implementation, the cover may be sealed to the body around the opening.
In one implementation, the coupling may comprise a collar arrangement to engage the canister and a collar seat on the distal end of the body, the collar arrangement being configured to sit on the collar seat and couple the canister to the distal end of the body. In one implementation, the collar arrangement may comprise an inner collar to receive an end of the canister and be seated in the collar seat, and an outer collar to fit around the cylindrical body of the canister and over the inner collar and releasably engage with the body. In one implementation, the inner collar may include interior flanges to engage crimping on the cylindrical surface of the canister to prevent axial rotation of the canister relative to the inner collar. In one implementation, the inner collar may include at least one exterior flange to engage the body to prevent axial rotation of the inner collar relative to the body. In one implementation, the aerosol generator device may include a bayonet mounting on the collar arrangement and the body, to releasably engage the canister with the body. In one implementation, the inner collar may have teeth to engage crimping on the canister.
In one implementation, the aerosol generator device may include the canister. In one implementation, the canister may be generally cylindrical and may have a valve therein configured to release a metered dose of fluid therein. In one implementation, the canister may contain a formulation including nicotine and HFA134a. In one implementation, the contents of the canister may be kept under uniform pressure by a propellant gas.
In another embodiment, an aerosol generator may comprise an elongate body having a proximal mouth end, a distal end and an interior passageway extending longitudinally to the mouth end, a coupling for releasably coupling to the body, a fluid containing pressurised canister having an axial discharge tube depressible inwardly to open a valve therein to release the fluid through the discharge tube, with the canister and the passageway having a common longitudinal axis, the collar arrangement comprising an inner collar to receive an end of the canister and be seated in the collar seat, and an outer collar to fit around the cylindrical body of the canister and over the inner collar and releasably engage with the body, and a trigger having a manually depressible surface portion facing outwardly of the body, and a camming surface portion to cause the discharge tube to be pressed inwardly of the canister on depression of the surface portion inwardly of the body, to operate the valve and release the fluid from the canister through the discharge tube and through the body to the mouth end.
In another embodiment, an aerosol generator may comprise an elongate body having a proximal mouth end, a distal end and an interior passageway extending longitudinally to the mouth end, a fluid containing pressurised gas supply vessel having a valve and a discharge tube depressible inwardly to open the valve to release fluid through the discharge tube, with the vessel and the passageway having a common longitudinal axis, and a trigger rotatably mounted on the body about a trigger axis spaced from and extending transversely of the longitudinal axis, the trigger having a manually depressible surface portion facing outwardly of the body, and a camming surface portion to cause the discharge tube to be pressed inwardly of the vessel on depression of the surface portion inwardly of the body, to operate the valve and release the fluid from the vessel through the discharge tube and through the body to the mouth end.
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