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Key Engineering Materials
Volumes
Edited by:
I. Kovacs
Online since: January 1990
Description: Iron and silicon are the main impurites in aluminium: they are always present in alloys made from commercially pure base materials. Both impurities form various intermetallic compounds. These particles can cause basic changes in the macroscopic properties of the aluminium alloys and are thus of special technological interest.
Edited by:
Dr. David J. Fisher
Online since: January 1990
Description: Key Engineering Materials Vols. 42-43
Edited by:
P. Duhaj, P. Mrafko and P. Svec
Online since: January 1990
Description: Key Engineering Materials Vols. 40-41
Edited by:
O.N. Mohanty and C.S. Sivaramakrishnan
Online since: January 1990
Description: Rapid Solidification Processing represents one of the key breakthroughs in the development of high performance materials. The present book reviews recent advances and discusses new insights in this fast developing area of materials research.
Edited by:
E.A. Armanios
Online since: January 1989
Description: I. INTERLAMINAR FRACTURE MODELING & ANALYSIS . II. EXPERIMENTAL EVALUATION & CHARACTERIZATION . III. INFLUENCE OF MATRIX MATERIAL AND ENVIRONMENTAL EFFECTS . IV. DELAMINATION BUCKLING . V. DELAMINATION RESISTANCE CONCEPTS .
Edited by:
Prof. Erian A. Armanios
Online since: January 1989
Description: These two volumes present approximately 500 contributions from 33 countries, the majority coming from Western Europe, USA, Japan, China and India.
Edited by:
Dr. David J. Fisher
Online since: January 1988
Description: Key Engineering Materials Vol. 34
Edited by:
R. Solecki
Online since: January 1989
Description: A complete analysis of our present knowledge of this important field.
Edited by:
E.M. Cashell and L. McDonnell
Online since: January 1989
Description: Key Engineering Materials Vol. 32
Edited by:
P. Ramakrishnan
Online since: January 1988
Description: The proceedings present approximately 60 papers, including a number of invited review papers, on the topics of Powder Preparation and Characterization, Powder Consolidation Methods and Mechanisms, Sintering Theories, Novel Consolidation Processes, Rapid Solidification, Carbides and Wear Resistant Materials, Structural Materials, Nuclear Materials, Structure and Property Evaluation, Special Ceramics, and Computer Applications.