EP1426112B1

Rotating stream sprinkler with speed control brake

Abstract

This record has no abstract on file.

EP1426112B1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Expired 29 April 2023, 3.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

14 claims: 4 independent, 10 dependent

  1. 1
    A rotating stream sprinkler, comprising a rotatable deflector (14) defining an array of spiral vanes, at least one nozzle (24) for directing at least one water jet into driving engagement with said vanes (20) for rotatably driving said deflector (14), said at least one water jet being subdivided by said vanes (20) into a plurality of relatively small water streams distributed generally radially outwardly therefrom and swept over a surrounding terrain area by rotation of said deflector (14), and a speed control brake (12) coupled to said deflector (14) for resisting rotation of said deflector (14) variably in response to fluctuations in water supply pressure and flow rate to maintain deflector rotational speed substantially constant throughout a normal operating range of water pressures and flow rates, the speed control brake comprising a friction plate (76), having a first friction surface (77), carried by said deflector (14) for rotation therewith, a non-rotational brake disk (94) having a second friction surface (95), and a resilient brake pad (92) interposed between said first and second friction surfaces (77,95), the resilient brake pad (92) having a first contact face (104) for frictional engagement with the first friction surface (77) and a second contact face (106) for frictional engagement with the second friction surface (95), wherein the first and second contact faces (104,106) are shaped in relation to the first and second friction surfaces (77,95), respectively, for variably adjusting the surface contact radius therebetween in response to fluctuations in water pressure and/or flow rate.
  2. 6
    The rotating stream sprinkler of any preceding claim, further including a shaft (32) having said deflector (14) rotatably carried thereon, said brake disk (94) being mounted on and constrained against rotation relative to said shaft (32), said brake pad (95) comprising a generally annular disk carried on said shaft (32) and defining a pair of axially opposed and generally annular faces for friction bearing engagement respectively with said friction surfaces on said friction plate (76) and said brake disk (94).
  3. 8
    The rotating stream sprinkler of any preceding claim, further including a substantially closed chamber having said speed control brake (12) mounted therein.
  4. 14
    A rotating stream sprinkler comprising a rotatable deflector (14) defining an array of spiral vanes, at least one nozzle (24) for directing at least one water jet into driving engagement with said vanes (20) for rotatably driving said deflector (14), said at least one water jet being subdivided by said vanes (20) into a plurality of relatively small water streams distributed generally radially outwardly therefrom and swept over a surrounding terrain area by rotation of said deflector (14), and a speed control brake (12) coupled to said deflector (14) for resisting rotation of said deflector (14) variably in response to fluctuations in water supply pressure and flow rate to maintain deflector rotational speed substantially constant throughout a normal operating range of water pressures and flow rates, the speed control brake comprising a friction plate (76), having a first friction surface (77), carried by said deflector (14) for rotation therewith, a non-rotational brake disk (94) having a second friction surface (95), and a resilient brake pad (92) interposed between said first and second friction surfaces (77,95), the resilient brake pad (92) having a first contact face (104) for frictional engagement with the first friction surface (77) and a second contact face (106) for frictional engagement with the second friction surface (95), wherein at least one of said friction surfaces (77,95) or said brake pad contact faces (104,106) is tapered for variably adjusting the surface constant radius therebetween in response to fluctuations in water pressure and/or flow rate.