The production and utility of recovered dislocation substructures

[1]  E. Starke,et al.  Application of subgrain control to aluminum wire products , 1977 .

[2]  M. J. Luton,et al.  Recovery and recrystallization of carbon steel between intervals of hot working , 1975 .

[3]  H. J. McQueen,et al.  The Deformation of Metals at High Temperatures , 1975 .

[4]  M. J. Luton,et al.  Stacking fault energy and its influence on high-temperature plastic flow in Zr--Sn alloys , 1974 .

[5]  L. GILLOTT,et al.  Properties of Metals , 1973, Nature.

[6]  G. Glover,et al.  Recovery and recrystallization during high temperature deformation of α-iron , 1973 .

[7]  D. Warrington,et al.  Sub-grain boundary migration in aluminium , 1972 .

[8]  J. Oblak,et al.  Thermomechanical strengthening of a γ′ precipitation-hardened nickel-base alloy , 1972 .

[9]  J. Jonas,et al.  Flow stress and substructural change during the transient deformation of Armco iron and silicon steel , 1971 .

[10]  A. Plumtree,et al.  Mechanical behaviour and substructure of strain-cycled iron , 1971 .

[11]  P. K. Jones THE TECHNICAL AND ECONOMIC ADVANTAGES OF POWDER-FORGED PRODUCTS* , 1970 .

[12]  W. M. Williams,et al.  The partial annealing of low-carbon steel strip , 1970 .

[13]  D. L. Holt,et al.  Dislocation Cell Formation in Metals , 1970 .

[14]  C. M. Sellars,et al.  Dynamic recrystallization in nickel and nickel-iron alloys during high temperature deformation , 1969 .

[15]  C. Rossard,et al.  Simulation du laminage contrôlé de divers aciers. Recristallisation pendant la déformation et conséquences pour l’efficacité du traitement thermo mécanique , 1968 .

[16]  F. J. Humphreys,et al.  The effect of dispersed phases upon the annealing behaviour of plastically deformed copper crystals , 1968 .

[17]  V. Lindroos,et al.  The structure and formation of dislocation networks in aluminium-magnesium alloys , 1967 .

[18]  W. A. Wong,et al.  DEFORMATION OF ALUMINIUM AT HIGH TEMPERATURES AND STRAIN RATES , 1967 .

[19]  C. Sellars,et al.  Recrystallization during creep of nickel , 1966 .

[20]  E. Laufer,et al.  Dislocations and persistent slip bands in fatigued copper , 1966 .

[21]  William D. Nix,et al.  A model for steady state creep based on the motion of jogged screw dislocations , 1965 .

[22]  D. McLean,et al.  The Mechanical Properties of Metals , 1963 .

[23]  M. G. Lozinskiĭ,et al.  Effect of rolling conditions on the recrystallization and strength of nickel under stress at high temperatures , 1963 .

[24]  M. L. Bernshtein,et al.  Polygonization in molybdenum and molybdenum alloys , 1963 .

[25]  J. Li,et al.  Energy of a Crossed Grid of Screw Dislocations , 1961 .

[26]  R. M. Broudy,et al.  Dislocations and Mechanical Properties of Crystals. , 1958 .

[27]  C. Rossard,et al.  Procédé de détermination graphique des phénomènes transitoires au cours de la déformation des aciers à chaud , 1958 .

[28]  R. Garrod,et al.  Recrystallization during creep of prestrained aluminium , 1957 .

[29]  C. J. Ball The flow stress of polycrystalline aluminium , 1957 .

[30]  J. Weertman,et al.  Steady‐State Creep through Dislocation Climb , 1957 .

[31]  A. Cottrell,et al.  Effects of temperature on the plastic properties of aluminium crystals , 1955, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.

[32]  D. McLean,et al.  influence de la polygonisation sur certaines propriétés de l'aluminium , 1951 .

[33]  John B. Ballance,et al.  The Hot deformation of austenite , 1977 .

[34]  C. M. Sellars,et al.  Grain-Size Effects during Dynamic Recrystallization of Nickel , 1974 .

[35]  J. Jonas,et al.  Substructure strengthening in zirconium and zirconium-tin alloys , 1972 .

[36]  M. J. Luton,et al.  SOLUTE STRENGTHENING AT HIGH TEMPERATURES IN ZIRCONIUM-TIN ALLOYS. , 1972 .

[37]  H. J. McQueen,et al.  Dynamic Recrystallization of Copper during Hot Torsion , 1972 .

[38]  J. Jonas,et al.  The Hall–Petch Relation and High-Temperature Subgrains , 1970 .

[39]  W. Tegart,et al.  Accelerated Spheroidization of Pearlite , 1968 .

[40]  L. K. Gordienko,et al.  New Ways of Increasing the Strength of Metals , 1968 .

[41]  V. Lindroos,et al.  Knitting of dislocation networks by means of stress-induced climb in an aluminium-magnesium alloy , 1968 .

[42]  P. Forsyth,et al.  Some observations on microstructural damage produced by fatigue of an aluminium-7.5% zinc-2.5% magnesium alloy at temperatures between room temperature and 250°c , 1966 .

[43]  Frank Garofalo,et al.  Fundamentals of creep and creep-rupture in metals , 1965 .

[44]  A. Kelly,et al.  X-ray studies of polycrystalline metals deformed by rolling. III. The physical interpretation of the experimental results , 1954 .