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Plastic Deformation of BCC Metals by Prof J
Low Temperatures by P Kubin and B Jouffrey Service
6 other sections not shown
Acta activation energy activation volume alloys annealing applied stress Arsenault athermal bcc metals behavior Burgers vector calculated compression concentration configurations constant corresponding creep cross slip cyclic hardening decrease determined dislocation density dislocation velocity edge dislocations effective stress elastic electron equation flow stress glide grain boundary increase interaction internal stress iron lattice load drop loops low temperatures measured modulus molybdenum niobium observed obstacles obtained orientation oxygen parameter Peierls Phil Phys plastic deformation plastic strain plotted polycrystals prestrained prismatic slip pure resolved shear stress room temperature screw dislocations Scripta segregation shown in Fig shows single crystals slip lines slip plane slip systems solid solution solute atoms specimens stacking fault stacking fault energy strain rate strength stress amplitudes stress relaxation stress-strain curve structure superconducting surface tantalum temperature dependence tensile tension tests theory thermally activated tion titanium Trans transition twinning variation work-hardening yield stress