FULL CIRCUMFERENCE SPRAY NOZZLE INSERT, ASSEMBLY, AND METHOD
A fluidic oscillator insert is designed to project a full circumference spray pattern from a single outlet that is characterized by slightly convex or outwardly curving radius and a combination of full and partial protrusions immediately in front of the outlet, in combination with curved walls defining the throat of the outlet (and even outer surfaces of the housing), surprisingly produces full circumference, oscillating spray pattern. Further aspects of the invention include a system and a double exit insert, both of which also produce full circumference oscillating spray patterns.
1 . A fluidic oscillator insert comprising:
a body having a fluidic geometry embedded on at least a top facing of the body, the fluidic geometry including an interaction chamber with a throat feeding fluid into an outlet;
wherein the outlet is aligned along a longitudinal axis of the body and defined on each side by first and second sidewalls extending from opposing edges of the throat to a convex protruding ledge, with the ledge conforming to a radial curve centered about the throat;
wherein a splitter is positioned about the longitudinal axis and in between the first and second sidewalls; and
wherein a pair of protrusions extend upwardly from the top facing at a height that is less than a corresponding height of the splitter, each of the protrusions is positioned on opposing sides of the longitudinal axis.
2 . The insert of claim 1 wherein the first and second sidewalls are symmetrical.
3 . The insert of claim 1 wherein the first and second sidewalls curve outwardly.
4 . The insert of claim 1 wherein the splitter has a triangular shape.
5 . The insert of claim 1 wherein the protrusions are identically shaped and spaced apart from the ledge.
6 . The insert of claim 1 wherein the protrusions are circular and extend upwardly away from the top facing at a height that is less than one half of a corresponding height for the splitter.
7 . The insert of claim 1 wherein the insert includes two mirror-image fluidic geometries positioned around a middle line extending orthogonally from the longitudinal axis, each of the mirror image fluidic geometries having outlets on opposing edges the body and corresponding convex ledges, splitters, and protrusions.
8 . The insert of claim 1 wherein the longitudinal axis bisects the body so as to divide it into equally sized transverse half sections.
9 . The insert of claim 8 wherein the transverse half sections are mirror-images relative to the longitudinal axis.
10 . A full circumference, oscillating spray dispensing system comprising:
a connector carrying a fluid delivery tube;
a housing coupled to the connector with a slot; and
the fluidic oscillator insert of claim 1 positioned within the slot so as to establish fluid communication between the fluid delivery tube, the interaction chamber, and the outlet.
11 . The system of claim 10 wherein the sidewalls of the outlet in the insert curve outwardly in a manner that extends along onto corresponding curved outer surfaces of the housing on opposing edges of the slot
12 . The system of claim 11 wherein the corresponding curved outer surfaces on the body define bulbous edges so that fluid is guided along the bulbous edge to project a full circumference spray pattern
13 . A compact, full circumference oscillating spray dispensing system comprising:
a connector carrying a fluid delivery tube;
a housing coupled to the connector with an aperture extending orthogonal to the fluid delivery tube through opposing facings of the housing; and
the fluidic oscillator insert of claim 7 positioned within the slot so as to establish fluid communication between the fluid delivery tube, the interaction chamber, and each of the mirror image outlets at the opposing facings of the housing.