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  1. Review of Manganese Processing for Production of TRIP/TWIP Steels, Part 1: Current Practice and Processing Fundamentals
    2018/02/23 by R. Elliott, Kenneth S. Coley, K. Coley +4 · 1 citation
    Engineering · #Advanced materials and composites #Context (archaeology) #Creep #Crystal twinning #Ductility (Earth science) #Economics #Engineering #Geology #Manganese #Materials science #Mechanical engineering #Metallurgical Processes and Thermodynamics #Metallurgy #Microstructure #Microstructure and Mechanical Properties of Steels #Production (economics) #Twip #Work (physics)
  2. Revealing the strain-hardening behavior of twinning-induced plasticity steels: Theory, simulations, experiments
    2012/11/01 by David R. Steinmetz, David Steinmetz, Tom Jäpel +9 · 1 citation
    Engineering · Materials Science · #Composite material #Constitutive equation #Crystal twinning #Dislocation #Dissipative system #Finite element method #Hardening (computing) #High Temperature Alloys and Creep #Materials science #Metallurgy #Microstructure #Microstructure and Mechanical Properties of Steels #Microstructure and mechanical properties #Physics #Plasticity #Strain hardening exponent #Strain rate #Thermodynamics #Twip #Volume fraction
  3. Twinning and the ductility of magnesium alloys
    2006/12/18 by M.R. Barnett, Matthew Barnett · 2 citations
    Engineering · Materials Science · #Aluminum Alloy Microstructure Properties #Composite material #Creep #Crystal twinning #Deformation (meteorology) #Deformation mechanism #Ductility (Earth science) #Elongation #Magnesium #Magnesium Alloys: Properties and Applications #Magnesium alloy #Materials science #Metallurgy #Microstructure #Microstructure and mechanical properties #Plasticity #Tensile testing #Twip #Ultimate tensile strength