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The Essence Of Materials For Engineers

The Essence Of Materials For Engineers

ISBN 9780763778330
Edition 1
Publication Date
Publisher Cengage
Author(s)
Overview
Part One: Structure Chapter 1: Materials: Building Blocks for Engineers Chapter 2: The Periodic Table of Elements: The Key to Understanding Atomic Bonding and Types of Materials Chapter 3: Aggregation of Atoms: The Basis for Solid Materials Chapter 4: Imperfections in Solid Crystalline Materials: Nature's Better Alternative Than Perfection Chapter 5: Amorphous and Semi-crystalline Materials Part Two: Properties Chapter 6: Material Properties: The Response of a Solid Material's Structure to a Stimulus Chapter 7: Mechanical Properties of Solids: A Material's Response to Loads or Forces Chapter 8: Deformation Versus Fracture: Different Mechanical Responses to Stresses Chapter 9: Electrical Properties of Solids: A Material's Response to an Electromagnetic Field Chapter 10: Thermal Properties of Solids: A Material's Response to Heat Part Three: Processing Chapter 11: Using Processing to Improve the Mechanical Properties of Solids: Strengthening and Toughening Materials Chapter 12: Alloy Phase Diagrams: Maps of Structure as Functions of Composition and Temperature Chapter 13: Heat-Induced Transformations in Materials: Improving Properties by Controlled Solidification, Diffusion, or Heat Treatment Chapter 14: Strain-Induced Transformations in Materials: Improving Properties by Controlled Deformation Chapter 15: Composite Materials: Another Level of the Structure-Property-Process-Performance Relationship Part Four: Performance Chapter 16: Environmental Degradation of Materials: A Cost to Society Chapter 17: The Evolution of Materials: Solving Problems and Embarking on New Frontiers
Overview
Part One: Structure Chapter 1: Materials: Building Blocks for Engineers Chapter 2: The Periodic Table of Elements: The Key to Understanding Atomic Bonding and Types of Materials Chapter 3: Aggregation of Atoms: The Basis for Solid Materials Chapter 4: Imperfections in Solid Crystalline Materials: Nature's Better Alternative Than Perfection Chapter 5: Amorphous and Semi-crystalline Materials Part Two: Properties Chapter 6: Material Properties: The Response of a Solid Material's Structure to a Stimulus Chapter 7: Mechanical Properties of Solids: A Material's Response to Loads or Forces Chapter 8: Deformation Versus Fracture: Different Mechanical Responses to Stresses Chapter 9: Electrical Properties of Solids: A Material's Response to an Electromagnetic Field Chapter 10: Thermal Properties of Solids: A Material's Response to Heat Part Three: Processing Chapter 11: Using Processing to Improve the Mechanical Properties of Solids: Strengthening and Toughening Materials Chapter 12: Alloy Phase Diagrams: Maps of Structure as Functions of Composition and Temperature Chapter 13: Heat-Induced Transformations in Materials: Improving Properties by Controlled Solidification, Diffusion, or Heat Treatment Chapter 14: Strain-Induced Transformations in Materials: Improving Properties by Controlled Deformation Chapter 15: Composite Materials: Another Level of the Structure-Property-Process-Performance Relationship Part Four: Performance Chapter 16: Environmental Degradation of Materials: A Cost to Society Chapter 17: The Evolution of Materials: Solving Problems and Embarking on New Frontiers

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