The effect of crystal orientation on the indentation response of commercially pure titanium: experiments and simulations by T. B. Britton, H. Liang, F.

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The effect of crystal orientation on the indentation response of commercially pure titanium: experiments and simulations by T. B. Britton, H. Liang, F. P. E. Dunne, and A. J. Wilkinson Proceedings A Volume 466(2115): March 8, 2010 ©2010 by The Royal Society

Finite element mesh composed of noded reduced integration three-dimensional elements, used to model the single-crystal pure titanium sample. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Variations in the unloading modulus and hardness with declination angle. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Reference axes, slip systems and orientations of indented crystals investigated by high resolution EBSD: (a) c-axis near parallel to loading direction; (b) c-axis near perpendicular to loading direction. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Polar plots of elastic strain fields around indents. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Lattice rotation fields measured by high resolution EBSD around indents. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

HCP deconstructions of the total GND density around indents. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Topographical AFM maps of indents of similar orientation to indents a and b: (left) into the basal plane; (right) into the prism plane. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Load–displacement curves obtained from experiments and simulations of indent a, basal, and indent b, prismatic. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Simulated material pile-up patterns around indents. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Predicted lattice rotation fields on the X1X2 plane around indent a. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Predicted lattice rotation fields on the X1X2 plane around indent b. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society

Predicted GND density fields on the X1X2 plane around indents. T. B. Britton et al. Proc. R. Soc. A 2010;466: ©2010 by The Royal Society