Nutating sprinkler head
11213836 · 2022-01-04
Inventors
Cpc classification
B05B3/0422
PERFORMING OPERATIONS; TRANSPORTING
B05B3/008
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A sprinkler head for irrigation having a sprinkler body. The sprinkler body surrounds a fluid delivery tube. The sprinkler body includes an upper plate and a lower plate. A and exits out the fluid nozzle. A fluid distribution cage is positioned on the sprinkler body and around the fluid delivery tube. The fluid distribution cage has one or more arms connecting an upper plate and a lower plate. The lower plate is configured to direct fluid sprayed onto it from the fluid delivery tube. When fluid is sprayed on the lower plate the upper plate begins to nutate around the fluid delivery tube between the upper sprinkler body plate and lower sprinkler body plate. The upper and lower sprinkler body plates have races configured for receiving one or more resilient cushions positioned on the upper plate of the fluid distribution cage. The upper cage plate or the lower sprinkler body plate has one or more projections positioned such that the fluid distribution cage hangs at an angle to facilitate initiation of nutation of the fluid distribution cage.
Claims
1. A fluid distributing sprinkler head, comprising, a fluid delivery tube (218) with an attached fluid nozzle; a sprinkler body partially enclosing said fluid delivery tube and nozzle; a sprinkler body upper plate attached to an upper end of said fluid delivery tube; a sprinkler body lower plate attached to a lower end of said fluid delivery tube; a fluid distribution cage freely attached to said fluid delivery tube lower end, said fluid distribution cage with a lower cage plate with a first and second side, and an upper cage plate with a first and second side, with said cage plates held in a spaced apart relationship by one or more cage arms; wherein said upper cage plate defining a passage for said fluid delivery tube lower end, and also having at least one raised projection adjacent to said passage for said fluid directing tube, said upper cage plate comprising a first resilient cushion and a second resilient cushion; said lower cage plate first side having a generally peaked surface, said peaked surface incised by spirally radiating grooves with a peak on said lower plate first side centrally positioned and having a beveled top surface; wherein said fluid distribution cage is configured to hang freely from said at least one raised projection when said cage is without fluid and said sprinkler head is in a vertical position, with said bevel on said lower plate configured for deflection by an initial jet of fluid from said fluid directing tube, to initiate a nutating motion in said cage after said initial deflection with said nutating motion maintained by a force of fluid on said spirally radiating grooves causing said upper cage plate to nutate between said sprinkler body upper plate and said sprinkler body lower plate, wherein said first resilient cushion is configured to contact said sprinkler body upper plate at a sprinkler body upper plate race and said second resilient cushion is configured to contact said sprinkler body lower plate at a sprinkler body lower cage plate race when said upper cage plate is nutating between said sprinkler body upper plate and said sprinkler body lower plate.
2. The sprinkler head of claim 1, wherein said at least one raised projection comprises a pair of raised projections adjacent said passage for said fluid delivery tube, with said pair of raised projections positioned opposite each other on a second side of said upper cage plate.
3. The sprinkler head of claim 1, wherein said sprinkler body upper plate is configured for threaded attachment to the upper end of said fluid delivery tube, wherein said sprinkler body lower plate is configured for threaded attachment to the lower end of said fluid delivery tube.
4. The sprinkler head of claim 1, wherein said first resilient cushion is attached to the first side of said upper cage plate and said second resilient cushion is attached to the second side of said upper cage plate.
5. The sprinkler head of claim 1, wherein said fluid delivery tube comprises a groove in an outer circumference of an outer surface of said fluid delivery tube configured to provide relief from contacting said upper cage plate at said outer surface of said fluid delivery tube upon initiation of nutation of said fluid distribution cage.
Description
BRIEF DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
(17) While the presently disclosed inventive concept(s) is susceptible of various modifications and alternative constructions, certain illustrated embodiments thereof have been shown in the drawings and will be described below in detail. It should be understood, however, that there is no intention to limit the inventive concept(s) to the specific form disclosed, but, on the contrary, the presently disclosed and claimed inventive concept(s) is to cover all modifications, alternative constructions, and equivalents falling within the spirit and scope of the inventive concept(s) as defined in the claims.
(18) A first embodiment of the disclosed technology is shown
(19) Extending through the sprinkler body is a fluid delivery tube 15. Typically inserted in the fluid delivery tube is a fluid constriction nozzle 4, which is shaped like a funnel to force the fluid into a more narrow stream, for more velocity and force when it hits the strike plate, and for more distance that the fluid is thrown from the sprinkler head.
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(21) Fluid sprayed from the constricting nozzle through the fluid delivery tube hits the strike plate at the peak of the strike plate. The peak has a beveled top surface, which is positioned to cause the cage deflect to one side when first struck by a stream of fluid. The bevel is aligned perpendicular to the raised projections on the underside of the swash plate. The strike plate 17 includes a number of spirally radiating grooves that distribute fluid sprayed from the sprinkler body in an irrigation pattern. The strike plate has an upturned edge around the periphery of the plate that further serves to direct fluid being distributed. A stream of fluid sprayed on the peak from the fluid distribution tube causes the cage to begin nutating around the fluid distribution tube. As the fluid stream continues, the cage nutates around the fluid distribution tube altering the angle and location on the cage that the fluid stream hits, thus continuously altering the fluid pattern distributed from the sprinkler head.
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(23) A weight 7 is shown in the depicted embodiments. The optional weight is utilized to dampen the vibrations caused by the nutation and help prevent wind from blowing the sprinklers away from vertical when they are hung over the crop on hose. Alternatively the weight can be integral with the sprinkler body.
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(28) While certain exemplary embodiments are shown in the Figures and described in this disclosure, it is to be distinctly understood that the presently disclosed inventive concept(s) is not limited thereto but may be variously embodied to practice within the scope of this disclosure. From the foregoing description, it will be apparent that various changes may be made without departing from the spirit and scope of the disclosure as defined herein.