By Yingxin Zhou; Jian Zhao
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Additional info for Advances in rock dynamics and applications
Quantification of dynamic tensile parameters of rocks using a modified kolsky tension bar apparatus. 162–168. , Subhash, G. : A dynamic damage growth model for uniaxial compressive response of rock aggregates. 267–277. : Wave speeds and attenuation of elastic waves in material containing cracks. 133–150. R. : Transmission properties of a plane fault. 559–566. com/, 2010. : A review of techniques, advances and outstanding issues in numerical modelling for rock mechanics and rock engineering. 283–353.
Forrestal, M. : A split Hopkinson pressure bar technique to determine compressive stress-strain data for rock materials. 40–46. : Development of a dynamic triaxial kolsky bar. 105704. © 2011 Taylor & Francis Group, London, UK An overview of some recent progress in rock dynamics research 27 Fuenkajorn, K. : Influence of loading rate on deformability and compressive strength of three thai sandstones. 707–715. , Okubo, S. : Some aspects of loading-rate dependency of sanjome andesite strengths. 1215–1219.
The effect of strain rate on rock strength. 99–109. E. : Strain rate effects on dynamic fracture and strength. 985–998. R. : Weighing earthquake waves. 13–17. : The role of tensile microfracture in the strain rate dependence of compressive strength of fine-grained limestone-analogy with strong ceramics. 173–175. , Ortner, C. : Existence of solutions to a regularized model of dynamic fracture. 1021–1048. : A Distinct Element Model for Dynamic Analysis of Jointed Rock with Application to Dam Foundation and Fault Motion.
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