Materials Science And Technology Phase Transformations In Materials


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Materials Science and Technology, Phase Transformations in Materials


Materials Science and Technology, Phase Transformations in Materials

Author: Peter Haasen

language: en

Publisher: Wiley-VCH

Release Date: 1996-12-16


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Materials Science and Technology A Comprehensive Treatment Edited by R.W. Cahn, P. Haasen, E.J. Kramer The 18-volume series ‘Materials Science and Technology’ is the first in-depth, topic-oriented reference work devoted to this growing interdisciplinary field. A compendium of current, state-of-the-art information, it covers the most important classes of materials: metals, ceramics, glasses, polymers, semiconductors, and composites. Each volume deals with properties, processing, applications, or general phenomena associated with these materials. Edited by internationally renowned figures in material science, this series is sure to establish itself as a seminal work. Volume 5: This volume covers phase transformations, a general phenomenon central to understanding the behavior of materials and to creating high-performance materials. Topics included are: • thermodynamics and phase diagrams of materials • diffusion in crystalline solids • statistical theories of phase transitions • homogeneous second phase precipitation • transformations involving interfacial diffusion • diffusionless transformations • spinodal decomposition • high pressure phase transformations • atomic ordering • solidification.

Handbook of Thermal Process Modeling Steels


Handbook of Thermal Process Modeling Steels

Author: Cemil Hakan Gur

language: en

Publisher: CRC Press

Release Date: 2008-12-22


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An Emerging Tool for Pioneering Engineers Co-published by the International Federation of Heat Treatment and Surface Engineering. Thermal processing is a highly precise science that does not easily lend itself to improvements through modeling, as the computations required to attain an accurate prediction of the microstructure and properties of work pieces is sophisticated beyond the capacity of human calculation.. Over the years, any developments in thermal processes relied largely on empiricism and traditional practice, but advancements in computer technology are beginning to change this. Enhances the quest for process optimization Comprehensive and authoritative, the Handbook of Thermal Process Modeling of Steels provides practicing engineers with the first complete resource that meets the needs of both those new to modeling and those hoping to profit from advances in the field. Written by those with practical experience, it demonstrates what is involved in predicting material response under industrial rather than laboratory conditions, and consequently, gives heightened insight into the physical origins of various aspects of materials behavior. Encourages both the understanding and the use of real time process control Before the advent of sophisticated computers, the errors inherent in computational predictions made modeling an ineffective gamble rather than a cost saving tool. Today, modeling shows great promise in both materials performance improvements and process cost reduction. The basic mathematical models for thermal processing simulation gradually introduced to date have yielded enormous advantages for some engineering applications; however, much research needs to e accomplished as existing models remain highly simplified by comparison with real commercial thermal processes. Yet, this is quickly changing. Ultimately, those engineers who can move this tool of improvement out of the lab and onto the factory floor will discover vast opportunities to gain a competitive edge.

Materials Science and Technology


Materials Science and Technology

Author: Peter Haasen

language: en

Publisher:

Release Date: 1991


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