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Fatigue Damage Spectrum calculation in a Mission Synthesis procedure for Sine-on-Random excitations

机译:疲劳损伤频谱计算在任务合成程序中,以便正弦兴奋

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In many real-life environments, certain mechanical and electronic components may be subjected to Sine-on-Random vibrations, i.e. excitations composed of random vibrations superimposed on deterministic (sinusoidal) contributions, in particular sine tones due to some rotating parts of the system (e.g. helicopters, engine-mounted components, ...). These components must be designed to withstand the fatigue damage induced by the "composed" vibration environment, and qualification tests are advisable for the most critical ones. In the case of an accelerated qualification test, a proper test tailoring which starts from the real environment (measured vibration signals) and which preserves not only the accumulated fatigue damage but also the "nature" of the excitation (i.e. sinusoidal components plus random process) is important to obtain reliable results. In this paper, the classic time domain approach is taken as a reference for the comparison of different methods for the Fatigue Damage Spectrum (FDS) calculation in case of Sine-on-Random vibration environments. Then, a methodology to compute a Sine-on-Random specification based on a mission FDS is proposed.
机译:在许多现实生活环境中,某些机械和电子元件可以经受正弦的随机振动,即由叠加在确定性(正弦值)贡献的随机振动组成的激励,特别是由于系统的一些旋转部件,特别是正弦音调(例如直升机,发动机安装的部件,......)。必须设计这些组件以承受“组成”振动环境引起的疲劳损坏,并且建议对最关键的验证测试。在加速资格测试的情况下,从真实环境(测量的振动信号)开始的适当测试剪裁,并且不仅保留了累积的疲劳损坏,而且保留了激发的“自然”(即正弦组件加随机过程)获得可靠的结果是很重要的。在本文中,将经典时域方法作为参考,用于比较不同的疲劳损伤频谱(FDS)计算的方法,在正弦振动环境中的情况下。然后,提出了一种基于任务FD计算正弦随机规范的方法。

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