Substructure of type 316 stainless steel deformed in slow tension at temperatures between 21° and 816°C
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[1] A. Howie,et al. Electron Microscopy of Thin Crystals , 1977, Nature.
[2] D. L. Holt,et al. The Dislocation Cell IZE AND Dislocation Density in Copper Deformed at Temperatures between 25 and 700 Degrees C. , 1972 .
[3] R. Reed-hill,et al. The significance of dynamic strain aging in titanium , 1972 .
[4] J. Moteff,et al. A correlation between strain hardening parameters and dislocation substructure in austenitic stainless steels , 1972 .
[5] Eric Ogilvie Hall,et al. Yield Point Phenomena in Metals and Alloys , 1970 .
[6] D. L. Holt,et al. Dislocation Cell Formation in Metals , 1970 .
[7] L. Cuddy. Internal stresses and structures developed during creep , 1970 .
[8] C. Laird,et al. Cyclic stress-strain response of F.C.C. metals and alloys—II Dislocation structures and mechanisms , 1967 .
[9] J. Pratt. Dislocation substructure in strain-cycled copper as influenced by temperature , 1967 .
[10] R. Schoone,et al. Automatic Unit for Thinning Transmission Electron Microscopy Specimens of Metals , 1966 .
[11] D. Griffiths,et al. Dislocation arrangements in deformed polycrystalline 3% silicon-iron , 1966 .
[12] D. B. Holt,et al. The plasticity of pure single crystals , 1964 .
[13] J. Venables. Dislocation distributions and densities in F.C.C. copper alloys , 1962 .
[14] M. Hordon. Dislocation density and flow stress of copper , 1962 .
[15] J. Livingston. The density and distribution of dislocations in deformed copper crystals , 1962 .
[16] J. F. W. Young. On the Yield Stress of Copper Crystals , 1962 .
[17] R. Ham. The determination of dislocation densities in thin films , 1961 .
[18] J. E. Bailey,et al. The dislocation distribution, flow stress, and stored energy in cold-worked polycrystalline silver , 1960 .
[19] N. Mott. CXVII. A theory of work-hardening of metal crystals , 1952 .
[20] J. Moteff,et al. Characterization of the deformation substructure of AISI 316 stainless steel after high strain fatigue at elevated temperatures , 1972 .
[21] J. Jonas,et al. The Hall–Petch Relation and High-Temperature Subgrains , 1970 .
[22] R. Lagneborg. Dislocation Density and Dislocation Arrangement during Creep of 20% Cr–35% Ni Stainless Steels , 1969 .