Aerosol can spray nozzle extension tube adapter
Abstract
Provided is an adapter configured for use with an aerosol can spray nozzle and an extension tube. The adapter is configured to fit onto the spray nozzle and to receive the extension tube to provide a more rigid and fluidly secure connection between the spray nozzle and the extension tube. The adapter includes a spray nozzle portion and an extension tube portion. The spray nozzle portion includes an opening sized and configured to allow the spray nozzle to be insertable therein to create frictional engagement therebetween. The extension tube portion includes an inner channel extending therethrough, and is sized and configured to allow the extension tube to be insertable therein to create friction-tight engagement between the extension tube and the adapter.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An adapter configured for use with a aerosol can spray nozzle and an extension tube to securely and fluidly connect the extension tube to a nozzle orifice formed within the spray nozzle, the adapter comprising: an adapter body having a first surface, a second surface, and a side surface extending between the first and second surfaces, the adapter body defining: a spray nozzle portion having an opening extending from the first surface to the second surface, the opening being sized and configured to allow the spray nozzle to be insertable therein; and a extension tube portion having an inner channel extending from the opening to the sidewall, the inner channel being sized and configured to allow the extension tube to be insertable therein to create friction-tight engagement between the extension tube and the adapter body, the inner channel being alignable with the nozzle orifice when the spray nozzle is inserted within the opening.
2 . The adapter recited in claim 1 , wherein the adapter body is formed from a rubber material.
3 . The adapter recited in claim 1 , wherein the adapter body is formed from a resilient material.
4 . The adapter recited in claim 1 , wherein the adapter body is configured to expand to increase the size of the opening when the spray nozzle is inserted into the opening.
5 . The adapter recited in claim 1 , wherein the inner channel is configured to allow the extension tube to be inserted therein by a first force and to allow the extension tube to be removed by a second force equal to or greater than the first force.
6 . The adapter recited in claim 1 , wherein the adapter body includes a plurality of projections extending into the inner channel to facilitate the friction-tight engagement between the adapter body and the extension tube.
7 . The adapter recited in claim 1 , wherein the adapter body includes a plurality of annular protrusions extending into the inner channel to facilitate the friction-tight engagement between the adapter body and the extension tube.
8 . The adapter recited in claim 1 , wherein the adapter body includes a helical protrusion extending into the inner channel to facilitate friction-tight engagement between the adapter body and the extension tube.
9 . The adapter recited in claim 1 , therein the adapter body includes an open slot formed within the spray nozzle portion and extending in a first direction from the opening to the side surface and in a second direction from the first surface to the second surface, the open slot allowing the size of the opening to increase when the nozzle is inserted into the opening.
10 . The adapter recited in claim 1 , wherein the adapter body is formed from a metallic material.
11 . An adapter configured to securely and fluidly connect a aerosol can spray nozzle having a nozzle orifice to an extension tube, the adapter comprising: an adapter body having:
an engagement surface defining an opening sized to receive the nozzle, the engagement surface being circumferentially engageable with the nozzle; and an inner channel extending from the opening to an external surface of the adapter body, the inner channel being alignable with the nozzle orifice when the nozzle is received within the opening and configured to facilitate frictiontight engagement with the extension tube.
12 . The adapter recited in claim 11 , wherein the adapter body is formed from a resilient material.
13 . The adapter recited in claim 11 , wherein the adapter body is configured to expand to increase the size of the opening when the nozzle is inserted into the opening.
14 . The adapter recited in claim 11 , wherein the inner channel is configured to allow the extension tube to be inserted therein by a first force and to allow the extension tube to be removed by a second force equal to or greater than the first force.
15 . The adapter recited in claim 11 , wherein the adapter body includes a plurality of projections extending into the inner channel to facilitate the friction-tight engagement between the adapter body and the extension tube.
16 . The adapter recited in claim 11 , wherein the adapter body includes a plurality of annular protrusions extending into the inner channel to facilitate the friction-tight engagement between the adapter body and the extension tube.
17 . The adapter recited in claim 11 , wherein the adapter body includes a helical protrusion extending into the inner channel to facilitate friction-tight engagement between the adapter body and the extension tube.
18 . The adapter recited in claim 11 , therein the adapter body includes a open slot formed within the spray nozzle portion and extending in a first direction from the opening to the side surface and in a second direction from the first surface to the second surface, the open slot allowing the size of the opening to increase when the nozzle is inserted into the opening.
19 . An adapter kit configured for use with an aerosol can having a spray nozzle including a nozzle orifice, the adapter kit comprising: an extension tube; and an adapter body having a first surface, a second surface, and a side surface extending between the first and second surfaces, the adapter body defining: a spray nozzle portion having an opening extending from the first surface to the second surface, the opening being sized and configured to allow the spray nozzle to be insertable therein to allow the spray nozzle portion to circumferentially engage the spray nozzle; and an extension tube portion having an inner channel extending from the opening to the sidewall, the inner channel being sized and configured to allow the extension tube to be insertable therein to facilitate friction-tight engagement between the extension tube and the adapter body, the inner channel being alignable with the nozzle orifice when the spray nozzle is inserted within the opening.
20 . The adapter kit recited in claim 19 , further comprising an annular dampener configured to be engageable with the aerosol can and the spray nozzle and to apply a resistive dampening force on the spray nozzle as the spray nozzle is actuated.Join the waitlist — get patent alerts
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