Comments on the Effect of Radial Inertia in the Kolsky Bar Test for an Incompressible Material
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[1] K. T. Ramesh,et al. A rigorous assessment of the benefits of miniaturization in the Kolsky bar system , 2004 .
[2] M. J. Forrestal,et al. The effect of radial inertia on brittle samples during the split Hopkinson pressure bar test , 2007 .
[3] Tusit Weerasooriya,et al. Radial Inertia Effects in Kolsky Bar Testing of Extra-soft Specimens , 2007 .
[4] Duane S. Cronin,et al. Mechanical Properties of Ballistic Gelatin at High Deformation Rates , 2009 .
[5] L. E. Malvern. Introduction to the mechanics of a continuous medium , 1969 .
[6] C. K. H. Dharan,et al. Determination of stress-strain characteristics at very high strain rates , 1970 .
[7] M. J. Forrestal,et al. A split Hopkinson pressure bar technique to determine compressive stress-strain data for rock materials , 2001 .
[8] H. Kolsky. An Investigation of the Mechanical Properties of Materials at very High Rates of Loading , 1949 .
[9] Weinong Chen,et al. Dynamic Tensile Testing of Soft Materials , 2009 .
[10] M. J. Forrestal,et al. Pulse shaping techniques for testing elastic-plastic materials with a split Hopkinson pressure bar , 2005 .
[11] L. Freund,et al. The dynamics of multiple neck formation and fragmentation in high rate extension of ductile materials , 2002 .
[12] W.-Y. Lu,et al. A Long Split Hopkinson Pressure Bar (LSHPB) for Intermediate-rate Characterization of Soft Materials , 2008 .