A Novel Specimen Design for Multiaxial Loading Experiments at High Strain Rates

Author:

Xu Yuan,Gour Govind,Reed Julian,Pellegrino Antonio

Publisher

Springer Nature Switzerland

Reference13 articles.

1. Chen, H., Li, F., Zhou, S., Li, J., Zhao, C., Wan, Q.: Experimental study on pure titanium subjected to different combined tension and torsion deformation processes. Mater. Sci. Eng. A. 680, 278–290 (2017)

2. Faleskog, J., Barsoum, I.: Tension-torsion fracture experiments – part I: experiments and a procedure to evaluate the equivalent plastic strain. Int. J. Solids Struct. 50(25–26), 4241–4257 (2013)

3. Papasidero, J., Doquet, V., Mohr, D.: Determination of the effect of stress state on the onset of ductile fracture through tension-torsion experiments. Exp. Mech. 54, 137–151 (2014)

4. Xu, Y., Farbaniec, L., Siviour, C., Eakins, D., Pellegrino, A.: The development of split Hopkinson tension-torsion bar for the understanding of complex stress states at high rate. In: Lamberson, L., Mates, S., Eliasson, V. (eds.) Dynamic Behavior of Materials, vol. 1, pp. 89–93. Conference Proceedings of the Society for Experimental Mechanics Series. Springer, Cham (2021)

5. Standard Methods of Tension Testing of Metallic Materials. E 8, ASTM

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