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    • 2. 发明授权
    • Constant velocity elastomeric joint
    • 恒速弹性接头
    • US5215502A
    • 1993-06-01
    • US91833
    • 1987-09-01
    • William D. NeatheryWillem BroekhuizenErnst C. Schellhase
    • William D. NeatheryWillem BroekhuizenErnst C. Schellhase
    • F16D3/48B64C27/35B64C27/41F16D3/78
    • B64C27/41B64C27/35F16D3/78Y10S464/904
    • A constant velocity joint (10) is provided specifically for connecting a yoke (14) to a mast (12) in a helicopter and more generally (200) for interconnecting a first shaft (202) to a second shaft (204) for bidirectional drive. The constant velocity joint employs a carrier (40, 218) which is formed with a series of apertures for receiving elastomeric bearing assemblies (42, 80, 220). The elastomeric bearing assemblies are provided with a spherical elastomeric bearing (60) and a cylindrical elastomeric bearing (48). Certain of the elastomeric bearing assemblies connect the carrier to one of the rotating members while the remaining elastomeric bearing assemblies connect the other rotating member to the carrier. The axis of symmetry (67) of the carrier always bisects the angle of misalignment between the two rotating shafts or members to assure that a constant velocity joint is achieved.
    • 一个等速万向节(10)专门用于将一个轭(14)连接到直升机中的一个桅杆(12)上,更一般地,(200)用于将第一轴(202)与第二轴(204)相互连接,用于双向驱动 。 等速万向节采用一个载体(40,218),该载体形成有一系列孔,用于接收弹性轴承组件(42,48,220)。 弹性体轴承组件设置有球形弹性轴承(60)和圆柱形弹性轴承(48)。 某些弹性轴承组件将载体连接到其中一个旋转构件,而其余弹性体轴承组件将另一个旋转构件连接到载体。 载体的对称轴(67)总是将两个旋转轴或构件之间的未对准角平分,以确保实现等速度接头。
    • 5. 发明授权
    • Compound hub spring system for helicopters
    • 复合式直升机弹簧系统
    • US4333728A
    • 1982-06-08
    • US70877
    • 1979-08-29
    • Jan M. DreesLarry W. DooleyWilliam D. Neathery
    • Jan M. DreesLarry W. DooleyWilliam D. Neathery
    • B64C27/35B64C27/43B64C27/52
    • B64C27/43B64C27/35
    • A system for opposing helicopter blade flapping applies restraining forces at a low spring rate at low flap angles and at a high spring rate at flap angles greater than a predetermined angle. More particularly, bearings rotatably support the blade yoke on rotor hub trunnions which form a flapping axis. A resilient mechanical coupling between the blade yokes and the hub trunnion applies a restraining force having a characteristic linear with flapping angle. A second restraint mounted to rotate about the flapping axis with the rotor, applies a nonlinear restraining force which preferably rapidly increases beginning at a predetermined flap angle, and over the range short of hard flapping contact between the rotor and the rotor mast.
    • 用于相对的直升机叶片拍动的系统以低弹簧角度以低弹簧速率施加约束力,并且在大于预定角度的折翼角处以高弹簧速率施加。 更具体地,轴承可旋转地将叶片轭支撑在形成拍动轴线的转子轮毂耳轴上。 叶片轭和轮毂耳轴之间的弹性机械联接施加具有与扑动角度线性特性的约束力。 安装成用转子围绕摇摆轴线旋转的第二限制器施加非线性约束力,其优选地从预定翼片角度开始快速增加,并且在不足于转子和转子桅杆之间的硬摇摆接触的范围内。
    • 7. 发明授权
    • Constant velocity elastomeric bearing joint
    • 恒速弹性轴承接头
    • US4729753A
    • 1988-03-08
    • US794800
    • 1985-11-04
    • William D. NeatheryWillem BroekhuizenErnst C. Schellhase
    • William D. NeatheryWillem BroekhuizenErnst C. Schellhase
    • F16D3/48B64C27/35B64C27/41F16D3/78F16D3/28F16D3/30
    • B64C27/41B64C27/35F16D3/78Y10S464/904
    • A constant velocity joint (10) is provided specifically for connecting a yoke (14) to a mast (12) in a helicopter and more generally (200) for interconnecting a first shaft (202) to a second shaft (204) for bidirectional drive. The constant velocity joint employs a carrier (40, 218) which is formed with a series of apertures for receiving elastomeric bearing assemblies (42, 80, 220). The elastomeric bearing assemblies are provided with a spherical elastomeric bearing (60) and a cylindrical elastomeric bearing (48). Certain of the elastomeric bearing assemblies connect the carrier to one of the rotating members while the remaining elastomeric bearing assemblies connect the other rotating member to the carrier. The axis of symmetry (67) of the carrier always bisects the angle of misalignment between the two rotating shafts or members to assure that a constant velocity joint is achieved.
    • 一个等速万向节(10)专门用于将一个轭(14)连接到直升机中的一个桅杆(12)上,更一般地,(200)用于将第一轴(202)与第二轴(204)相互连接,用于双向驱动 。 等速万向节采用一个载体(40,218),该载体形成有一系列孔,用于接收弹性轴承组件(42,48,220)。 弹性体轴承组件设置有球形弹性轴承(60)和圆柱形弹性轴承(48)。 某些弹性轴承组件将载体连接到其中一个旋转构件,而其余弹性体轴承组件将另一个旋转构件连接到载体。 载体的对称轴(67)总是将两个旋转轴或构件之间的未对准角平分,以确保实现等速度接头。