Abstract

Two-dimensional stress waves in a transverse isotropic cylinder are analyzed numerically, when an axisyrnmetric impulsive load is applied to the end surface. For the numerical analysis of the dynamic behavior of the transverse isotropy, the extended finite difference method based on integration along bicharacteristics is proposed. For stainless steel-aluminum Composites, the effect of the transverse isotropy on the propagation of stress waves is demonstrated.

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