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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Free Vibration Analysis of Delaminated Composite Pretwisted Rotating Shells — A Finite Element Approach
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Free Vibration Analysis of Delaminated Composite Pretwisted Rotating Shells — A Finite Element Approach

机译:分层复合材料预绕旋转壳体的自由振动分析-有限元方法

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摘要

In this paper a finite element method is presented to study the effects of delamination on free vibration characteristics of graphite-epoxy composite pretwisted rotating shells. La-grange'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 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 unsym-metric stiffness matrices. Parametric studies are performed in respect of location of delamination, fibre orientation, rotational speed and twist angle on natural frequencies of cylindrical shallow shells. Numerical results obtained for symmetric and unsymmetric laminates are the first known non-dimensional frequencies for the analyses carried out here.
机译:本文提出了一种有限元方法来研究分层对石墨-环氧树脂复合材料预绕旋转壳体自由振动特性的影响。拉格兰奇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,引入了一种多点约束算法,该算法导致非对称刚度矩阵。对分层的位置,纤维取向,旋转速度和扭转角在圆柱状浅壳固有频率上进行了参数研究。对于对称和不对称层压板获得的数值结果是此处进行分析的第一个已知的无量纲频率。

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