An overcap assembly includes an actuator having a first slot, a tab, and a spray passageway. A nozzle is in fluid communication with the spray passageway. A housing is also included having a notch to receive the tab during a non-actuation state and a first projection to be received by the first slot
An overcap assembly includes an actuator having a first slot, a tab, and a spray passageway. A nozzle is in fluid communication with the spray passageway. A housing is also included having a notch to receive the tab during a non-actuation state and a first projection to be received by the first slot during an actuation state.
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1. An overcap assembly, comprising: an actuator including: a first slot;a tab;a spray passageway; andan outlet in fluid communication with the spray passageway; anda housing having: a sidewall;an inner wall spaced apart from the sidewall; anda top wall adjoining the sidewall and the inner wall,where
1. An overcap assembly, comprising: an actuator including: a first slot;a tab;a spray passageway; andan outlet in fluid communication with the spray passageway; anda housing having: a sidewall;an inner wall spaced apart from the sidewall; anda top wall adjoining the sidewall and the inner wall,wherein a notch is provided within the inner wall to receive the tab during a non-actuation state, and a first projection extends from the inner wall to be received by the first slot during an actuation state. 2. The overcap assembly of claim 1, wherein the notch is provided on a front side or a rear side of the housing. 3. The overcap assembly of claim 1, wherein the inner wall includes a hole for receipt of a portion of the actuator during the non-actuation state. 4. The overcap assembly of claim 1, wherein the housing includes a second projection and the actuator includes a second slot, wherein the second projection is received by the second slot during the actuation state. 5. The overcap assembly of claim 4, wherein the first projection is provided on a side of the housing and the second projection is provided on an opposing side of the housing. 6. The overcap assembly of claim 5, wherein the projection includes a first top face and the second projection includes a second top face, and the first slot includes a first stop face that receives the first top face and the second projection includes a second stop face that receives the second top face. 7. The overcap assembly of claim 1, wherein the housing includes an inner wall and an outer wall, the inner wall including a hole to receive a nozzle insert and the outer wall including a racetrack shaped aperture. 8. The overcap assembly of claim 1, wherein a nozzle insert is disposed within a discharge conduit of the actuator. 9. The overcap assembly of claim 8, wherein the spray passageway further includes a valve stem inlet for receipt of a valve stem of a container. 10. An overcap assembly, comprising: a housing having an inner wall and a sidewall spaced apart from the inner wall, wherein a top wall is connected to the inner wall and the sidewall;a dispensing orifice provided within the sidewall;a first projection extending from a first flange of the inner wall;a first notch provided within the inner wall;an actuator having a first slot to receive the first projection during an actuation state; anda tab to be received by the notch during a non-actuation state. 11. The overcap assembly of claim 10, wherein the actuator further includes a discharge conduit. 12. The overcap assembly of claim 11 further including a nozzle insert disposed within the discharge conduit. 13. The overcap assembly of claim 10 further including a second projection extending from a second flange of the inner wall, wherein the actuator further includes a second slot to receive the second projection during the actuation state. 14. The overcap assembly of claim 13, wherein the first projection and the second projection protrude inwardly toward a center of the overcap assembly. 15. The overcap assembly of claim 14, wherein the first projection and the second projection include angled surfaces that allow the actuator to be slidingly engaged with the housing during assembly. 16. The overcap assembly of claim 10, wherein the tab extends radially outward from a center of the overcap assembly. 17. A method of seating an overcap assembly on a container, comprising the steps of: providing a housing having a sidewall, an inner wall spaced apart from the sidewall, and a top wall connected to the sidewall and the inner wall, wherein a notch is provided within the inner wall, and wherein first and second flanges of the inner wall have first and second projections extending therefrom, respectively;providing an actuator, which includes a conduit with an outlet orifice and a valve seat, wherein first and second slots are disposed on opposite sides of the actuator, and wherein a tab is disposed on the actuator;positioning the first and second projections within the first and second slots, respectively, so that first and second flat faces of each projection are engageable with first and second stop faces of each slot to assist in inhibiting substantial vertical translation; andpositioning the tab within the notch so that the tab is engageable with a lower wall edge that partially defines the notch. 18. The method of claim 17 further comprising the step of: placing the outlet orifice of the conduit in substantial alignment with the dispensing orifice of the overcap. 19. The method of claim 18 further comprising the step of: mating the overcap to a container, whereby a valve stem is seated within the valve seat of the conduit.
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