PSI - Issue 37
Pedro J. Sousa et al. / Procedia Structural Integrity 37 (2022) 826–832 Sousa et. al. / Structural Integrity Procedia 00 (2019) 000 – 000
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Acknowledgements This work is supported by Fundação para a Ciência e a Tecnologia (FCT) under project NANOPOL – reference JICAM/0002/2017. References Adorna, M., Zlámal, P., Fíla, T., Falta, J., Felten, M., Fries, M., Jung, A., 2018. Testing of hybrid nickel-polyurethane foams at high strain-rates using Hopkinson bar and digital image correlation. 16th Youth Symp. Exp. Solid Mech. YSESM 2018 72 – 76. Dave, M.J., Pandya, T.S., Stoddard, D., Street, J., 2018. Dynamic characterization of biocomposites under high strain rate compression loading with split Hopkinson pressure bar and digital image correlation technique. Int. Wood Prod. J. 9, 115 – 121. Gong, F.Q., Si, X.F., Li, X.B., Wang, S.Y., 2019. Dynamic triaxial compression tests on sandstone at high strain rates and low confining pressures with split Hopkinson pressure bar. Int. J. Rock Mech. Min. Sci. 113, 211 – 219. Gray, G.T. (Rusty), 2012. High-Strain-Rate Testing of Materials: The Split-Hopkinson Pressure Bar. Charact. Mater. Kuhn, H., Medlin, D., 2000. Mechanical Testing and Evaluation, 10th ed, ASM Handbook. ASM International. Shamchi, S.P., Queirós de Melo, F.J.M., Tavares, P.J., Moreira, P.M.G.P., 2019. Thermomechanical characterization of Alclad AA2024-T3 aluminum alloy using split Hopkinson tension bar. Mech. Mater. 139, 103198. Shamchi, S.P., Singh, A., Sguazzo, C., Zhao, Z., Yi, X., Tavares, P.J., Moreira, P.M.G.P., 2020. Strain-rate sensitivity of electrically modified carbon/epoxy composites under dynamic compressive loading. Procedia Struct. Integr. 28, 1664 – 1672. Smerd, R., Winkler, S., Salisbury, C., Worswick, M., Lloyd, D., Finn, M., 2005. High strain rate tensile testing of automotive aluminum alloy sheet. Int. J. Impact Eng. 32, 541 – 560. Zwiessler, R., Kenkmann, T., Poelchau, M.H., Nau, S., Hess, S., 2017. On the use of a split Hopkinson pressure bar in structural geology: High strain rate deformation of Seeberger sandstone and Carrara marble under uniaxial compression. J. Struct. Geol. 97, 225 – 236.
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