Description

Book Synopsis

This reference describes advanced computer modeling and simulation procedures to predict material properties and component design including mechanical properties, microstructural evolution, and materials behavior and performance. The book illustrates the most effective modeling and simulation technologies relating to surface-engineered compounds, fastener design, quenching and tempering during heat treatment, and residual stresses and distortion during forging, casting, and heat treatment. Written by internationally recognized experts in the field, it enables researchers to enhance engineering processes and reduce production costs in materials and component development.



Table of Contents
Preface, Contributors, 1. A Mathematical Model for Predicting Microstructural Evolution and Mechanical Properties of Hot-Rolled Steels, 2. Design Simulation of Kinetics of Multicomponent Grain Boundary Segregations in the Engineering Steels Under Quenching and Tempering, 3. Designing for Control of Residual Stress and Distortion, 4. Modeling and Simulation of Mechanical Behvior, 5. Tribology and the Design of Surface-Engineered Materials for Cutting Tool Applications, 6. Designing Fastening Systems, Index

Modeling and Simulation for Material Selection

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A Hardback by George E. Totten, Lin Xie, Kiyoshi Funatani

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    View other formats and editions of Modeling and Simulation for Material Selection by George E. Totten

    Publisher: Taylor & Francis Inc
    Publication Date: 02/12/2003
    ISBN13: 9780824747466, 978-0824747466
    ISBN10: 0824747461

    Description

    Book Synopsis

    This reference describes advanced computer modeling and simulation procedures to predict material properties and component design including mechanical properties, microstructural evolution, and materials behavior and performance. The book illustrates the most effective modeling and simulation technologies relating to surface-engineered compounds, fastener design, quenching and tempering during heat treatment, and residual stresses and distortion during forging, casting, and heat treatment. Written by internationally recognized experts in the field, it enables researchers to enhance engineering processes and reduce production costs in materials and component development.



    Table of Contents
    Preface, Contributors, 1. A Mathematical Model for Predicting Microstructural Evolution and Mechanical Properties of Hot-Rolled Steels, 2. Design Simulation of Kinetics of Multicomponent Grain Boundary Segregations in the Engineering Steels Under Quenching and Tempering, 3. Designing for Control of Residual Stress and Distortion, 4. Modeling and Simulation of Mechanical Behvior, 5. Tribology and the Design of Surface-Engineered Materials for Cutting Tool Applications, 6. Designing Fastening Systems, Index

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