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Transient wave propagation and early short time transient responses of laminated composite cylindrical shells

机译:层合复合圆柱壳的瞬态波传播和早期短时瞬态响应

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摘要

The generalized ray method (GRM) and the method of reverberation ray matrix (MRRM) have been successfully used to study the transient elastic wave transmission in the beams, planar trusses, space frames and infinite layered media. In this paper, the GRM and MRRM are extended to investigate the early short time transient responses of laminated composite cylindrical shells with finite size under impact load. Using the Laplace transformation, the ray groups transmitting in the laminated cylindrical shells under the shock load are yielded by means of the boundary conditions. The reverberation-ray matrix representing the multi-reflected and scattered waves in the laminated cylindrical shells with finite structural size is deduced. Using FFT algorithm, the transient response corresponding to each ray group can be derived. Through the numerical simulations, it is seen that the early short time transient accelerations of the laminated composite cylindrical shells under impact loads are very large, but the early short time transient shear strain and displacement are very small. Furthermore, the effects of the stacking sequence, thickness of the composite cylindrical shells and different shock loads on the early short time transient responses of the laminated composite cylindrical shells with finite size are also analyzed.
机译:广义射线法(GRM)和混响射线矩阵法(MRRM)已成功用于研究梁,平面桁架,空间框架和无限分层介质中的瞬态弹性波传输。本文扩展了GRM和MRRM,以研究在冲击载荷下具有有限尺寸的层合复合圆柱壳的早期短时瞬态响应。利用拉普拉斯变换,借助边界条件产生了在冲击载荷下在叠层圆柱壳中透射的射线群。推导了代表有限结构尺寸的叠层圆柱壳中的多反射波和散射波的混响射线矩阵。使用FFT算法,可以得出与每个射线组相对应的瞬态响应。通过数值模拟可以看出,层合复合材料圆柱壳在冲击载荷作用下的早期短时瞬变加速度很大,而早期短时瞬变剪切应变和位移很小。此外,还分析了堆叠顺序,复合圆柱壳的厚度以及不同的冲击载荷对有限尺寸层压复合圆柱壳的早期短时瞬态响应的影响。

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