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The vibration signature of chordal cracks in a rotor system including uncertainties

机译:转子系统中弦裂纹的振动特征包括不确定性

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The aim of this paper is to investigate the effects of the presence of a transverse crack in a rotating shaft under uncertain physical parameters in order to obtain some indications that might be useful in detecting the presence of a crack in rotating system. The random dynamic response of the cracked rotor is evaluated by expanding the changing stiffness of the crack (i.e. the breathing mechanism) as a random truncated Fourier series. To avoid the use of the Monte Carlo simulations (MCS), an alternative procedure that is based on a combination of the Harmonic Balance Method and the Stochastic Finite Element Method (SFEM) using the Polynomial Chaos Expansion (PCE) is proposed. So the response of the Fourier components of the cracked rotor is expanded in the polynomial chaoses. The random dynamic response obtained by applying this procedure is compared with that evaluated through numerical integration based on the Harmonic Balance Method and the Monte Carlo simulations.
机译:本文的目的是研究在不确定的物理参数下旋转轴中存在横向裂纹的影响,以便获得一些可能对检测旋转系统中裂纹的存在有用的指示。通过扩展裂纹的变化刚度(即呼吸机制)来评估裂纹转子的随机动态响应,并将其作为随机截断的傅立叶级数。为了避免使用蒙特卡洛模拟(MCS),提出了一种替代方法,该方法基于使用多项式混沌扩展(PCE)的谐波平衡方法和随机有限元方法(SFEM)的组合。因此,裂纹多项式的裂隙转子的傅立叶分量的响应得到了扩展。将通过应用此过程获得的随机动态响应与通过基于谐波平衡法和蒙特卡洛模拟的数值积分所评估的响应进行比较。

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