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Transient dynamic response of delaminated composite rotating shallow shells subjected to impact

机译:分层复合材料旋转浅壳在冲击作用下的瞬态动力响应

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摘要

In this paper a transient dynamic finite element analysis is presented to study the response of delaminated composite pretwisted rotating shallow shells subjected to low velocity normal impact. Lagrange's equation of motion is used to derive the dynamic equilibrium equation and moderate rotational speeds are considered wherein the Coriolis effect is negligible. An eight noded isoparametric plate bending element is employed in the finite element formulation incorporating rotary inertia and effects of transverse shear deformation based on Mindlin's theory. To satisfy the compatibility of deformation and equilibrium of resultant forces and moments at the delamination crack front a multipoint constraint algorithm is incorporated which leads to unsymmetric stiffness matrices. The modified Hertzian contact law which accounts for permanent indentation is utilized to compute the contact force, and the time dependent equations are solved by Newmark's time integration algorithm. Parametric studies are performed in respect of location of delamination, angle of twist and rotational speed for centrally impacted graphite-epoxy composite cylindrical shells.
机译:本文提出了一种瞬态动力有限元分析方法,以研究层状复合材料预扭旋转浅壳在低速法向冲击下的响应。拉格朗日运动方程式用于导出动态平衡方程式,并且考虑了适度的转速,其中科里奥利效应可忽略不计。根据Mindlin的理论,在包含旋转惯性和横向剪切变形影响的有限元公式中,采用了八节点等参板弯曲单元。为了满足变形的合力以及在分层裂纹前沿处的合力和力矩的平衡,引入了多点约束算法,该算法导致不对称刚度矩阵。利用修正的赫兹接触定律解决永久压痕,计算接触力,并通过Newmark的时间积分算法求解时间相关方程。针对中心撞击的石墨-环氧树脂复合圆柱壳的分层位置,扭转角和转速进行了参数研究。

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