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Structural response of cylindrically curved Iaminated composite shells subjected to blast loading

机译:爆炸载荷作用下圆柱形弯曲复合胺壳的结构响应

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This paper is concerned with the theoretical analysis and correlation with the numerical results of the displacement time histories of the cylindrically curved laminated composite shells exposed to normal blast shock waves. The laminated composite shell is clamped at its all edges. The dynamic equation of the cylindrical shell used in this study is valid under the assumptions made in Loves's theory of thin elastic shells. The constitutive equations of laminated composite shells are given in the frame of effective modulus theory. The governing equation of the cylindrical shell is solved by the Runge-Kutta method. In addition, a finite element modeling and analysis are presented and compared with the theoretical results. The peak deflections and response frequencies obtained from theoretical and numerical analyses are in agreement. The effects of material properties and geometrical properties are examined on the dynamic behaviour.
机译:本文研究了正弦冲击波作用下圆柱弯曲叠层复合壳的位移时间历程的理论分析及其与数值结果的相关性。层压复合材料外壳的所有边缘都被夹紧。本研究中使用的圆柱壳动力学方程在Loves的薄弹性壳理论中所作的假设下是有效的。在有效模量理论的框架内,给出了层合复合壳的本构方程。圆柱壳的控制方程通过Runge-Kutta方法求解。此外,提出了有限元建模和分析方法,并将其与理论结果进行了比较。从理论和数值分析获得的峰值挠度和响应频率是一致的。研究了材料特性和几何特性对动态行为的影响。

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