Propagation behavior of the stress wave in a hollow hopkinson transmission bar

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Abstract

In order to investigate the stress wave propagation behavior through a hollow elastic bar that is used in a Hopkinson-bar-loaded fracture testing system, three-point bending fracture experiments were performed in such a system. The effects of sample span and diameter and wall thickness of the hollow elastic bar on the stress wave propagation behavior were studied numerically using the software of ANSYS/LS-DYNA. The experimental results demonstrated that the incident, reflected, and transmitted pulses calculated by the finite element method are coincident with those obtained from the Hopkinson-bar-loaded fracture tests. Compared to the solid transmission bar, the amplitude of the transmitted pulse is relatively larger in the hollow transmission bar under the same loading conditions and decreases with increasing wall thickness. On the other hand, when the inside diameter is fixed, the effect of the wall thickness on the stress wave characteristics is more obvious.

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Zou, G., Shen, X., Guo, C., Vecchio, K. S., & Jiang, F. (2018). Propagation behavior of the stress wave in a hollow hopkinson transmission bar. Shock Waves, 28(2), 163–173. https://doi.org/10.1007/s00193-017-0728-6

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