By Yingxin Zhou; Jian Zhao
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Additional resources for Advances in rock dynamics and applications
E. : Application brief: a finite element slideline approach for calculating tunnel response in jointed rock. 529–540. T. : Hugoniot equation of state of the bukit timah granite. 705– 713. : Discontinuous Deformation Analysis, A New Numerical Model for the Statics and Dynamics of Block Systems. PhD thesis, Univ. of California, Berkeley, Berkeley, Calif, 1988. : Manifold method of material analysis. S. 57–76. T. : Fragmentation of rock under dynamic loads. 303–317. html, 2010. L. : Effect of rate of loading on strength and young’s modulus of elasticity of rock.
The effect of stress rate and temperature on the strength of basalt and granite. 501–510. S. : 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.
Tunnel Technology and Subsurface Use 4(3) (1984), pp 113–117. : Blasting Vibration Monitoring and Control. Prentice-Hall, NJ, USA, 1985. : Construction Vibrations. New Jersey, Prentice-Hall, 1996. Erzar, B. : An experimental method to determine the tensile strength of concrete at high rates of strain. 941–955. S. : Elastic Waves in Layered Media. McGraw-Hill, New York, 1957. T. : Review of experimental techniques for high rate deformation and shock studies. 725–775. , Forrestal, M. : A split Hopkinson pressure bar technique to determine compressive stress-strain data for rock materials.