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    • 1. 发明申请
    • ISOLATED BEARING VISCOUS SPEED RETARDING DEVICE FOR ROTARY NOZZLES
    • 用于旋转喷嘴的隔离轴承VISCOUS速度延迟装置
    • WO2016010679A1
    • 2016-01-21
    • PCT/US2015/036889
    • 2015-06-22
    • STONEAGE, INC.
    • SCHNEIDER, Joseph A.
    • B08B3/02B05B1/02B05B1/14B05B15/00
    • B05B3/005B05B3/06F16D57/02
    • A speed retarding device for a rotary nozzle includes a hollow cylindrical housing and a rotatable tubular shaft rotatably carried by the housing. The shaft has an enlarged drag sleeve portion carried in the housing and a shaft end extending through at least one end of the housing to receive a rotary nozzle thereon. A pair of support bearings support the drag sleeve portion of the shaft in the housing. An annular inner seal between each of the support bearings and the drag sleeve portion defines a cavity within the housing receiving a viscous fluid confined within the cavity. The support bearings are separated from the cavity confining the viscous fluid and an outer annular seal on the shaft adjacent each support bearing prevents environmental contamination such as water and debris from entry into the support bearings.
    • 用于旋转喷嘴的减速装置包括中空圆柱形壳体和由壳体可旋转地承载的可旋转管状轴。 所述轴具有承载在所述壳体中的扩大的拖曳套筒部分和延伸穿过所述壳体的至少一端的轴端部,以在其上接收旋转喷嘴。 一对支撑轴承支撑壳体中轴的牵引套筒部分。 在每个支撑轴承和牵引套筒部分之间的环形内部密封件限定壳体内的空腔,该空腔容纳限定在空腔内的粘性流体。 支撑轴承与限制粘性流体的空腔分开,轴上的外环形密封件与每个支撑轴承相邻,防止水和碎屑等环境污染物进入支撑轴承。
    • 3. 发明申请
    • SPRINKLER APPARATUS AND RELATED METHODS
    • SPRINKLER装置及相关方法
    • WO2006039247A3
    • 2007-02-22
    • PCT/US2005034488
    • 2005-09-26
    • OLSON DONALD
    • OLSON DONALD
    • B05B1/32
    • B05B3/005B05B3/006B05B3/06Y10S239/11
    • The present invention is directed to a sprinkler apparatus (5) and related methods for the distribution of fluid. The invention preferably includes a nozzle (10) rotably driven by a pressurized flow of fluid along a fluid path (15). The invention preferably includes a housing (50) separating a magnetic drag coupling assembly (55) from the fluid path (15). The coupling assembly (55) preferably includes spaced apart magnets (60, 65) configured to exert an attractive force on each other to rotate one magnet (65) in response to the rotation of the other magnet (60), and a resistive/drag force (66) to oppose the continuous rotation of the nozzle (10). Pressure offsetting structures (120, 75) minimize or even neutralize the upward/downward forces that the flowing fluid otherwise would exert on the rotating shaft assembly (32).
    • 本发明涉及一种用于流体分配的喷洒装置(5)和相关方法。 本发明优选地包括可沿着流体路径(15)由加压流体流可旋转地驱动的喷嘴(10)。 本发明优选地包括将磁阻耦合组件(55)与流体路径(15)分离的壳体(50)。 耦合组件(55)优选地包括间隔开的磁体(60,65),其被配置为响应于另一个磁体(60)的旋转而相互施加吸引力以使一个磁体(65)旋转,并且阻力/阻力 力(66)反对喷嘴(10)的连续旋转。 压力偏移结构(120,75)最小化或甚至中和流动流体否则将施加在旋转轴组件(32)上的向上/向下的力。
    • 5. 发明申请
    • APPARATUS FOR RETARDING ROTARY NOZZLE SPEED
    • 用于延迟旋转喷嘴速度的装置
    • WO2015041811A1
    • 2015-03-26
    • PCT/US2014/052718
    • 2014-08-26
    • STONEAGE, INC.
    • ANDERSEN, Colton
    • B05B3/12B05B3/00
    • B05B3/005B05B3/06F16D57/007
    • An apparatus for retarding rotation of a nozzle includes a hollow housing, a rotary shaft within the housing, a rotatable rotor on the rotary shaft free to move axially along the shaft, and a cam assembly coupling the rotor and shaft together in the housing such that rotor rotation on the shaft causes the cam assembly to displace the rotor axially on the shaft in a first direction. A set of springs on the shaft biases the rotor in a second direction opposite the first direction on the shaft. Finally, a viscous fluid disposed between the rotor and the housing generates a drag on rotor rotation with the shaft. Relative rotation of the rotor with respect to the shaft in conjunction with a variable gap between the rotor and housing are used to slow and thus control rotary nozzle speed.
    • 用于延迟喷嘴旋转的装置包括中空壳体,壳体内的旋转轴,旋转轴上的可旋转转子,其可自由地沿着轴轴向移动;以及凸轮组件,其将转子和轴联接在壳体中,使得 轴上的转子旋转导致凸轮组件沿第一方向在轴上轴向移动转子。 轴上的一组弹簧沿与轴上的第一方向相反的第二方向偏转转子。 最后,设置在转子和壳体之间的粘性流体在轴上产生转子旋转的阻力。 结合转子和壳体之间的可变间隙,转子相对于轴的相对旋转用于减慢并因此控制旋转喷嘴速度。
    • 7. 发明申请
    • SPEED LIMITING FOR ROTARY DRIVEN SPRINKLER
    • 旋转搅拌器速度限制
    • WO2004071169A3
    • 2006-03-23
    • PCT/US2004003634
    • 2004-02-09
    • KAH CARL L C JR
    • KAH CARL L C JR
    • A01G20060101B05B3/00B05B3/04B05B15/10
    • B05B3/005B05B3/0422
    • A speed limiting mechanisms for turbine-driven fluid distribution apparatus usable with compressible fluid such as compressed air and incompressible fluid such as water. Dynamic viscous damping of the turbine output power train is used to control the rotational speed of the turbine. This prevents overspeeding when the turbine is air driven, and also when the turbine is water driven, under abnormal conditions such as blockage of a bypass area designed to control the turbine speed by limiting flow to the turbine. The same mechanism can be used to impose a lower rotational speed in the turbine during normal operation in conjunction with a turbine optimized for lower speed operation to reduce the required gear reduction in the power train.
    • 用于涡轮机驱动的流体分配装置的速度限制机构,可用于诸如压缩空气和不可压缩流体例如水的可压缩流体。 使用涡轮机输出动力传动系的动态粘性阻尼来控制涡轮机的转速。 这防止了当涡轮机是空气驱动时,以及当涡轮机是水驱动时,在异常条件下,例如通过限制流向涡轮机而设计成控制涡轮转速的旁路区域的堵塞,这可以防止超速。 可以使用相同的机构在正常操作期间在涡轮机中施加较低的旋转速度,结合具有优化用于较低速度操作的涡轮以减少动力传动系中所需的齿轮减速。
    • 8. 发明申请
    • ADJUSTABLE ARC, ADJUSTABLE FLOW RATE SPRINKLER
    • 可调弧度,可调节流量喷雾器
    • WO2003086643A1
    • 2003-10-23
    • PCT/US2003/010688
    • 2003-04-08
    • NELSON IRRIGATION CORPORATION
    • SESSER, George, L.PERKINS, Lee, A.MCCOON, Steven, T.
    • B05B3/02
    • B05B1/304B05B1/262B05B3/005B05B3/0486B05B15/70B05B15/74
    • A sprinkler head (10) includes a base (12) adapted to be secured to a component supplying water under pressure; an arc adjustment ring (22) rotatably mounted on the base (12); a nozzle (26) and a stream deflector (156) supported by an elongated stem (14) carried by the base (12), the nozzle (26) and the stream deflector (156) cooperating to define an (20) in the stem (14) and located downstream of the nozzle (26); the stem (14) and the nozzle (26) axially moveable relative to the base (12); and a drive train operative connected between the arc adjustment ring (22) and the nozzle (26) to rotate the nozzle (26) relative to the stream deflector (156) to thereby adjust the nozzle orifice between a pair of limit positions.
    • 喷头(10)包括适于固定在供给压力的水的部件上的基座(12) 可旋转地安装在基座(12)上的电弧调节环(22); 由基座(12)承载的细长杆(14)支撑的喷嘴(26)和流导流器(156),所述喷嘴(26)和所述流导流器(156)协作以在所述杆 (14)并且位于所述喷嘴(26)的下游; 所述杆(14)和所述喷嘴(26)相对于所述基座(12)可轴向移动; 以及连接在所述电弧调节环(22)和所述喷嘴(26)之间以相对于所述流动偏转器(156)旋转所述喷嘴(26)从而调节所述喷嘴孔口在一对极限位置之间的传动系。