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RECOVERY AND RECRYSTALLIZATION
EQUILIBRIUM IN ALLOYS
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alloy alloying elements aluminum annealing atoms austenite bainite carbide carbon Chap chemical potential close-packed close-packed plane coherent composition consider cooling copper crystal curvature curve decrease deformation dendrites diameter discussed distance edge dislocations electrons equation equilibrium eutectic eutectoid example ferrite figure flux formation fraction free energy free-energy change give given glide plane GP zones grain boundaries grain growth grow hardening heat high temperature homogeneous increases indicates interface interstitial lattice layer liquid loop lower martensite matrix mechanism microstructure move Note nucleation nuclei occurs orientation oxide oxygen particles pearlite perature percent phase diagram plates plot point defects precipitate quenched radius reaction recovery recrystallization region relative result room temperature roughly Schematic screw dislocation shear stress shown in Fig shows slip solid solidification solubility solute specimen steel strain structure supercooled surface tion Trans transformation transition phase twinning undercooling unit volume vacancies variation velocity Widmanstatten