Introduction to materials science and engineering : a design-led approach / Michael F. Ashb, Hugh Shercliff and David Cebon.

By: Ashby, Michael F [author.]
Contributor(s): Shercliff, Hugh [author.] | Cebon, David [author.]
Language: English Publisher: Oxford, United Kingdom : Butterworth-Heinemann, an imprint of Elsevier. [2024]Copyright date: ©2024Description: xiv, 462 pages : illustrations (chiefly color) ; 24 cmContent type: text Media type: unmediated Carrier type: volumeISBN: 9780081023990Subject(s): Materials scienceDDC classification: 620.11
Contents:
Introduction: materials history, classification, and properties Materials, processes, and design Material properties and microstructure overview and atom-scale fundamentals Elastic stiffness and stiffness-limited applications Plasticity, yelding and ductility, and strength-limited applications Fracture, fatigue, and fracture-limited applications Materials and heat: thermal properties Materials at high temperatures: diffusion and creep Surfaces: friction, wear, oxidation, corrosion Functional properties: electrical, magnetic, optical Manufacturing processes and microstructure evolution Materials, environment, and sustainability Guided learning units 1: Simple ideas of crystallography Guided learning unit 2: Material selection in design Guided learning unit 3: Process selection in design Guided learning unit 4: Phase diagrams and phase transformations.
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Item type Current location Home library Call number Status Date due Barcode Item holds
BOOK BOOK COLLEGE LIBRARY
COLLEGE LIBRARY
SUBJECT REFERENCE
620.11 As34 2024 (Browse shelf) Available CITU-CL-54723
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Includes index.

Introduction: materials
history, classification, and properties
Materials, processes, and design
Material properties and microstructure
overview and atom-scale fundamentals
Elastic stiffness and stiffness-limited applications
Plasticity, yelding and ductility, and strength-limited applications
Fracture, fatigue, and fracture-limited applications
Materials and heat: thermal properties
Materials at high temperatures: diffusion and creep
Surfaces: friction, wear, oxidation, corrosion
Functional properties: electrical, magnetic, optical
Manufacturing processes and microstructure evolution
Materials, environment, and sustainability
Guided learning units 1: Simple ideas of crystallography
Guided learning unit 2: Material selection in design
Guided learning unit 3: Process selection in design
Guided learning unit 4: Phase diagrams and phase transformations.

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