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Stochastic elastic wave analysis of angled beams

机译:斜梁的随机弹性波分析

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The stochastic finite element method is employed to obtain a stochastic dynamic model of angled beams subjected to impact loads when uncertain material properties are described by random fields. Using the perturbation technique in conjunction with a precise time integration method, a random analysis approach is developed for efficient analysis of random elastic waves. Formulas for the mean, variance and covariance of displacement, strain and stress are introduced. Statistics of displacement and stress waves is analyzed and effects of bend angle and material stochasticity on wave propagation are studied. It is found that the elastic wave correlation in the angled section is the most significant. The mean, variance and covariance of the stress wave amplitude decrease with an increase in bend angle. The standard deviation of the beam material density plays an important role in longitudinal displacement wave covariance.
机译:当随机场描述了不确定的材料性能时,采用随机有限元方法获得了具有冲击载荷的斜梁的随机动力学模型。使用摄动技术结合精确的时间积分方法,开发了一种随机分析方法来有效地分析随机弹性波。介绍了位移,应变和应力的均值,方差和协方差的公式。分析了位移波和应力波的统计数据,研究了弯曲角度和材料随机性对波传播的影响。可以发现,在成角度的截面中弹性波的相关性是最显着的。应力波幅度的均值,方差和协方差随弯曲角度的增加而减小。梁材料密度的标准偏差在纵向位移波协方差中起重要作用。

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