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Improving the US Army Rotor Smoothing Algorithm and Coefficient Development Process

机译:改进美国陆军转子平滑算法和系数开发过程

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Aircraft Rotor Smoothing (aka rotor track and balance) is a complicated process that can be very challenging for even the most experienced maintainers. Rotor smoothing is required to reduce a helicopter's l/revolution vibration levels. This improves crew comfort and reduces crew fatigue. Maintainers make mechanical adjustments to a rotor system that experiences various dynamic and aerodynamic forces. The typical rotor smoothing event involves balance weight adjustments, pitch link adjustments for changes in blade angle of attack, and blade trailing edge tab adjustments that affect a blade's pitching moment and thus its lift. The rotor smoothing equipment used to determine these adjustments incorporate imbedded empirically developed algorithms and coefficients. It is imperative that these algorithms and coefficients are properly developed. Open lines of communication with aircraft manufacturers are essential due to the differences in aircraft and rotor systems design. The differences in aircraft design may require rotor smoothing methods that are unique to its airframe in order to guarantee successful rotor smoothing events.
机译:飞机转子的平滑处理(又名转子跟踪和平衡)是一个复杂的过程,即使对于最有经验的维护人员而言,也可能是非常困难的。需要旋翼平滑以降低直升机的升/转振动水平。这改善了机组人员的舒适度并减轻了机组人员的疲劳感。维护人员对承受各种动态和空气动力的转子系统进行机械调整。典型的转子平滑事件包括平衡重调整,用于改变叶片迎角变化的变桨连杆调整以及影响叶片俯仰力矩并进而影响其升力的叶片后缘翼片调整。用于确定这些调整的转子平滑设备结合了根据经验开发的嵌入式算法和系数。必须正确开发这些算法和系数。由于飞机和旋翼系统设计的差异,与飞机制造商的开放式通信至关重要。飞机设计上的差异可能需要其机体特有的旋翼平滑方法,以确保成功进行旋翼平滑事件。

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