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The Effect of Material Property on the Critical Velocity of Randomly Excited Nonlinear Axially Travelling Functionally Graded Plates

机译:材料特性对随机激励的非线性轴向行进的功能梯度板的临界速度的影响

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Abstract In this paper, the critical axial speeds of three types of sigmoid, power law and exponential law functionally graded plates for both isotropic and orthotropic cases are obtained via a completely analytic method. The plates are subjected to lateral white noise excitation and show evidence of large deformations. Due to randomness, the conventional deterministic methods fail and a statistical approach must be selected. Here, the probability density function is evaluated analytically for prescribed plates and used to investigate the critical axial velocity of them. Specifically the effect of in-plane forces, mean value of lateral load and the material property on the critical axial speed are studied and discussed for both isotropic and orthotropic functionally graded plates. Since the governing equation is transformed to a non dimensional format, the results can be used for a wide range of plate dimensions. It is shown that the material heterogeneity palys an essential and significant role in increasing or decreasing the critical speed of both isotropic and orthotropic functionally graded plates.
机译:摘要通过完全解析的方法,获得了各向同性和正交各向异性情况下三种S形,幂律和指数律功能梯度板的临界轴向速度。这些板受到横向白噪声激励,并显示出较大变形的迹象。由于随机性,常规确定性方法失败,必须选择统计方法。在这里,概率密度函数是针对指定板块进行分析评估的,并用于研究其临界轴向速度。分别研究了各向同性和正交各向异性功能梯度板的面内力,横向载荷平均值和材料性能对临界轴向速度的影响。由于控制方程被转换为无量纲格式,因此该结果可用于各种板尺寸。结果表明,材料异质性在增加或减少各向同性和正交异性功能梯度板的临界速度方面起着至关重要的作用。

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