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This book was first published in 1980. A great number of metallic materials in practical use owe their strength to the presence in their microstructure of particles of a hard precipitated phase. The text emphasises the importance of scientific rather than empirical methods in attempting to develop particle-hardened alloys. The author progresses from an elementary knowledge of metallurgy to theories relating to the deformation and fracture of alloys of this type. He also discusses the use of such theories to describe observations on both model materials and practical metals. After a discussion of the microstructures of these alloys, how they form and how to describe them quantitatively, their deformation and fracture behaviour at both low and elevated temperatures are examined.
Preface; 1. The structure of particle-hardened alloys; 2. Yield and work-hardening in the absence of recovery; 3. Mechanisms of fracture in two-phase materials; 4. Micromechanisms at elevated temperatures; References; Index.
J. W. Martin, R. D. Doherty, B. Cantor, J. W. (University of Oxford) Martin, Philadelphia) Doherty, R. D. (Drexel University, B. (University of Oxford) Cantor, Martin
T. G. Nieh, J. Wadsworth, O. D. Sherby, California) Nieh, T. G. (Lawrence Livermore National Laboratory, California) Wadsworth, J. (Lawrence Livermore National Laboratory, California) Sherby, O. D. (Stanford University
F. J. Baltá Calleja, S. Fakirov, F. J. Baltá Calleja, Madrid) Balta Calleja, F. J. (Institute for the Structure of Matter, Bulgaria) Fakirov, S. (Sofia University, Francisco J. Balta Calleja, F. J. Balta Calleja
J. W. Martin, R. D. Doherty, B. Cantor, J. W. (University of Oxford) Martin, Philadelphia) Doherty, R. D. (Drexel University, B. (University of Oxford) Cantor, Martin
F. J. Baltá Calleja, S. Fakirov, F. J. Baltá Calleja, Madrid) Balta Calleja, F. J. (Institute for the Structure of Matter, Bulgaria) Fakirov, S. (Sofia University, Francisco J. Balta Calleja, Francisco Jose Balta Calleja, Stoyko Fakirov