METALLURGICAL AND MATERIALS TRANSACTIONS A | |
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Volume 26A, No. 1, January 1995 This Month Featuring: Alloy Phases; Transformations; Transport Phenomena; Mechanical Behavior; Physical Chemistry; Environment; Welding and Joining; Solidification.
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Computer Simulation of Local Lattice Distortion in Cu-Au Solid Solution [pp. 11-19]
Toshiaki Horiuchi, Satoshi Takizawa, Tomoo Suzuki, and Tetsuo Mohri
Microstructure and Texture Evolution of Al during Hot and Cold Rolling [pp. 31-40]
Baolute Ren and James G. Morris
Layer-Growth Kinetics on Gaseous Nitriding of Pure Iron: Evaluation of Diffusion Coefficients for Nitrogen in Iron Nitrides [pp. 57-74]
Marcel A.J. Somers and Eric J. Mittemeijer
Mass Transport in the Crack Solution as the Rate-Determining Step in the Crack Growth Mechanism during the Corrosion Fatigue of Steel in Saltwater Solutions [pp. 75-84]
C.J. van der Wekken
Simulation of the Hot Rolling and Accelerated Cooling of a C-Mn Ferrite-Bainite Strip Steel [pp. 99-111]
B. Debray, P. Teracher, and J.J. Jonas
Deformation and Microstructure in L10 Type Ti-Al-V Alloys [pp. 113-131]
Yoo Dong Hahn and Sung H. Whang
Debinding Variables Affecting the Residual Carbon Content of Injection-Molded Fe-2 Pct Ni Steels [pp. 133-142]
Y.L. Ho and S.T. Lin
Microstructural Evolution and Mechanical Properties of AC8A/Al2O3 Short-Fiber Composites after Thermal Exposure at 150°C to 350°C [pp. 143-158]
C.S. Liauo, H. Chang, J.C. Huang, and P.-W. Kao
Enhanced Fatigue Crack Growth Resistance at Elevated Temperature in TiC/Ti-6Al-4V Composite: Microcrack-Induced Crack Closure [pp. 159-180]
G. Liu, D. Zhu, and J.K. Shang
Simulation of Curvature-Driven Grain Growth by Using a Modified Monte Carlo Algorithm [pp. 181-196]
B. Radhakrishnan and T. Zacharia
Effect of Alloying Elements on Metadynamic Recrystallization in HSLA Steels
C. Roucoules, S. Yue, and J.J. Jonas
Embrittlement of Amorphous Fe40Ni38Mo4B18 Alloy by Electrolytic Hydrogen [pp. 197-201]
J.-J. Lin and T.-P. Perng
Communication: Relationship between Flow Direction and Dendritic Growth Rate in NH4Cl-H2O [pp. 227-229]
M.H. McCay, J.A. Hopkins, and T.D. McCay
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