Dispenser for can with fixed valve stem housing
US-2019308798-A1 · Oct 10, 2019 · US
US9862536B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9862536-B2 |
| Application number | US-201415039862-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 25, 2014 |
| Priority date | Dec 9, 2013 |
| Publication date | Jan 9, 2018 |
| Grant date | Jan 9, 2018 |
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A dispenser head for an aerosol can and a method of assembly of the same, the dispenser head comprising a chassis attached to the associated aerosol can and a spray-through cap attached thereto, the chassis comprising a platform capable of axial movement and a flexible spray channel centrally located thereon.
Opening claim text (preview).
The invention of claimed is: 1. An aerosol dispenser head comprising a chassis and a spray-through cap, the chassis comprising an annular ring capable of attachment to an associated aerosol container; a platform attached to the annular ring by struts allowing the platform to rise and fall relative to the annular ring; a flexible spray channel rising vertically from the centre of the platform, the flexible spray channel having a lower end at which the flexible spray channel is attached to a valve stem of an associated aerosol can, and an outer end capable of allowing egress of the contents of the associated aerosol container; and the spray-through cap comprising means for attachment to the chassis or the associated aerosol can; an actuator button, pressure upon which causes downward pressure on the platform of the chassis and consequential downward pressure upon the valve stem attached to the lower end of the associated spray channel; and an aperture positioned to surround the outer end of the spray channel; the chassis further comprising means for holding the flexible spray channel at a pre-selected angle of bend; wherein the dispenser head is actuated by downward pressure upon the actuator button. 2. An aerosol dispenser head according to claim 1 , wherein the spray-through cap comprises means for attachment to the chassis. 3. An aerosol dispenser head according to claim 1 , further comprising a locking collar that interacts with the chassis platform to allow or prevent depression thereof dependent upon its rotational positioning relative thereto. 4. An aerosol dispenser head according to claim 3 , wherein the annular ring of the chassis comprises an upstanding annular wall, a portion of which projects through a partial annular gap in the locking collar. 5. An aerosol dispenser head according to claim 1 , wherein the actuator button comprises a keel protruding downwards from its inner surface for transferring pressure on the actuator button into downward pressure upon the platform of the chassis. 6. An aerosol dispenser head according to claim 5 , wherein transfer of pressure from the keel onto the platform of the chassis is aided by one or more walls protruding upwards from the platform of the chassis. 7. An aerosol dispenser head according to claim 1 , wherein the pre-selected angle of bend for the flexible spray channel is greater than 90° and less than 170°. 8. A method of assembly of an aerosol dispenser comprising the steps of: 1. providing a spray-through cap-chassis assembly by attaching a spray-through cap comprising an aperture to a chassis comprising an annular ring surrounding and attached to a platform capable of axial movement by means of struts between the annular ring and the platform, the chassis comprising a flexible spray channel rising vertically from the centre of the platform and being held at a pre-selected angle of bend by a retaining feature of the chassis wherein the flexible spray channel includes a terminal end and a lower end, 2. attaching the spray-through cap-chassis assembly to an aerosol can comprising a depressible release valve such that the flexible spray channel is attached at its lower end to a valve stem of the depressible valve of the aerosol can, wherein the angle of bend of the spray channel is selected such that the aperture in the spray-through cap surrounds the terminal end of the spray channel, and wherein the spray-through cap-chassis assembly further comprises an actuator button, downward pressure upon which actuates the aerosol dispenser. 9. A method according to claim 8 , comprising a preliminary step wherein the flexible spray channel is moulded in a straight vertical orientation and is subsequently bent to an angle of less than 180° and secured at such angle by the retaining feature for the spray channel present on the chassis. 10. A method according to claim 8 , wherein the spray-through cap-chassis assembly further comprises a locking collar and wherein a portion of the annular ring of the chassis is pushed upwards through a partial annular gap in the locking collar before the assembly is attached to the aerosol can. 11. A method according to claim 10 , wherein the spray-through cap-chassis assembly further comprises a locking collar and wherein a portion of the annular ring of the chassis is pushed upwards through the partial annular gap in the locking collar before the spray-through cap is attached to the chassis. 12. An aerosol dispenser head comprising a chassis, a locking collar, and a spray-through cap, the chassis comprising an annular ring capable of attachment to an associated aerosol container; a platform attached to the annular ring by struts allowing the platform to rise and fall relative to the annular ring; a flexible spray channel rising vertically from the centre of the platform , the flexible spray channel having a lower end at which the flexible spray channel is attached to a valve stem of an associated aerosol can, and an outer end capable of allowing egress of the contents of the associated aerosol container; and the spray-through cap comprising means for attachment to the chassis or the associated aerosol can; an actuator button, pressure upon which causes downward pressure on the platform of the chassis and consequential downward pressure upon the valve stem attached to the lower end of the associated spray channel; and an aperture positioned to surround the outer end of the spray channel; the chassis further comprising means for holding the flexible spray channel at a pre-selected angle of bend; wherein the locking collar locking collar interacts with the chassis platform to allow or prevent depression thereof dependent upon its rotational positioning relative thereto.
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