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[Book] Materials : Engineering, Science, Processing and Design

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상품상세정보
ISBN 9780750683913(0750683910)
쪽수 514쪽
언어 English
크기 191(W) X 254(H) X 25(T) (mm)
제본형태 양장(HardCover)-Hardcover
Textual Format Textbooks, Lower level
리딩지수 Level Scholarly/Graduate

책소개

이 책이 속한 분야

The ultimate materials engineering text and resource: world class authors; design led-approach, broader scope than other texts; to a level of detail that is appropriate for undergraduate courses; innovative visually lead presentation without any loss of academic rigor or detail; fully linked with the leading materials software package, as used in over 500 engineering departments. It is written for students taking undergraduate level courses in engineering materials, MS&E, manufacturing and design, and related mechanical engineering courses with a materials science and processing elective or required course, including aeronautical and automotive engineering, product and industrial design. It is also perfect for use by chemical engineers and civil engineers taking introductory materials science and engineering technology courses. * A complete introductory materials science and engineering text: full coverage of materials properties with a true design and processing emphasis as required by most courses * Unbeatable author team: Professor Mike Ashby, the worlds leading materials selection innovator and author of four other best-selling materials engineering texts; Dr David Cebon, MD of Granta Design, the leading material properties software house; and Dr Hugh Shercliff, head of materials science teaching at the University of Cambridge, UK. * Printed in full color throughout, extensive end of chapter examples, fully worked instructors manual, complete set of lecture slides based on the images in the book, links to materials selection software used in over 500 university departments.

원서번역서 내용 엿보기

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이 책은 기계공학, 재료공학, 도시공학, 제조공학 및 설계공학을 공부하는 대학생들을 위한 재료과학 및 공학의 기초 교재이다.

이 책의 원서번역서

목차


Preface ix
Acknowledgements xi
Resources that accompany this book xii
Introduction: materials---history and character 1(12)
Materials, processes and choice 2(2)
Material properties 4(5)
Design-limiting properties 9(1)
Summary and conclusions 10(1)
Further reading 10(1)
Exercises 10(3)
Family trees: organizing materials and processes 13(16)
Introduction and synopsis 14(1)
Getting materials organized: the materials tree 14(4)
Organizing processes: the process tree 18(3)
Process-property interaction 21(1)
Material property charts 22(2)
Computer-aided information management for materials and processes 24(1)
Summary and conclusions 25(1)
Further reading 26(1)
Exercises 26(2)
Exploring design using CES 28(1)
Exploring the science with CES Elements 28(1)
Strategic thinking: matching material to design 29(18)
Introduction and synopsis 30(1)
The design process 30(4)
Material and process information for design 34(2)
The strategy: translation, screening, ranking and documentation 36(3)
Examples of translation 39(4)
Summary and conclusions 43(1)
Further reading 43(1)
Exercises 44(2)
Exploring design using CES 46(1)
Stiffness and weight: density and elastic moduli 47(34)
Introduction and synopsis 48(1)
Density, stress, strain and moduli 48(8)
The big picture: material property charts 56(2)
The science: what determines density and stiffness? 58(11)
Manipulating the modulus and density 69(4)
Summary and conclusions 73(1)
Further reading 74(1)
Exercises 74(3)
Exploring design with CES 77(1)
Exploring the science with CES Elements 78(3)
Flex, sag and wobble: stiffness-limited design 81(30)
Introduction and synopsis 82(1)
Standard solutions to elastic problems 82(7)
Material indices for elastic design 89(6)
Plotting limits and indices on charts 95(4)
Case studies 99(7)
Summary and conclusions 106(1)
Further reading 107(1)
Exercises 107(2)
Exploring design with CES 109(1)
Exploring the science with CES Elements 109(2)
Beyond elasticity: plasticity, yielding and ductility 111(30)
Introduction and synopsis 112(1)
Strength, plastic work and ductility: definition and measurement 112(4)
The big picture: charts for yield strength 116(2)
Drilling down: the origins of strength and ductility 118(9)
Manipulating strength 127(8)
Summary and conclusions 135(1)
Further reading 136(1)
Exercises 137(1)
Exploring design with CES 138(1)
Exploring the science with CES Elements 138(3)
Bend and crush: strength--limited design 141(22)
Introduction and synopsis 142(1)
Standard solutions to plastic problems 142(7)
Material indices for yield-limited design 149(5)
Case studies 154(4)
Summary and conclusions 158(1)
Further reading 159(1)
Exercises 159(2)
Exploring design with CES 161(2)
Fracture and fracture toughness 163(22)
Introduction and synopsis 164(1)
Strength and toughness 164(2)
The mechanics of fracture 166(6)
Material property charts for toughness 172(2)
Drilling down: the origins of toughness 174(4)
Manipulating properties: the strength--toughness trade-off 178(3)
Summary and conclusions 181(1)
Further reading 181(1)
Exercises 182(1)
Exploring design with CES 183(1)
Exploring the science with CES Elements 183(2)
Shake, rattle and roll: cyclic loading, damage and failure 185(18)
Introduction and synopsis 186(1)
Vibration and resonance: the damping coefficient 186(1)
Fatigue 187(7)
Charts for endurance limit 194(1)
Drilling down: the origins of damping and fatigue 195(1)
Manipulating resistance to fatigue 196(2)
Summary and conclusions 198(1)
Further reading 199(1)
Exercises 199(3)
Exploring design with CES 202(1)
Keeping it all together: fracture-limited design 203(24)
Introduction and synopsis 204(1)
Standard solutions to fracture problems 204(1)
Material indices for fracture-safe design 205(4)
Case studies 209(11)
Summary and conclusions 220(1)
Further reading 221(1)
Exercises 221(3)
Exploring design with CES 224(3)
Rub, slither and seize: friction and wear 227(18)
Introduction and synopsis 228(1)
Tribological properties 228(1)
Charting friction and wear 229(1)
The physics of friction and wear3 229(6)
Design and selection: materials to manage friction and wear 235(5)
Summary and conclusions 240(1)
Further reading 241(1)
Exercises 241(2)
Exploring design with CES 243(2)
Agitated atoms: materials and heat 245(30)
Introduction and synopsis 246(1)
Thermal properties: definition and measurement 246(3)
The big picture: thermal property charts 249(2)
Drilling down: the physics of thermal properties 251(6)
Manipulating thermal properties 257(1)
Design to exploit thermal properties 258(10)
Summary and conclusions 268(1)
Further reading 269(1)
Exercises 270(1)
Exploring design with CES 271(1)
Exploring the science with CES Elements 272(3)
Running hot: using materials at high temperatures 275(36)
Introduction and synopsis 276(1)
The temperature dependence of material properties 276(5)
Charts for creep behavior 281(3)
The science: diffusion and creep 284(9)
Materials to resist creep 293(3)
Design to cope with creep 296(8)
Summary and conclusions 304(1)
Further reading 305(1)
Exercises 305(3)
Exploring design with CES 308(1)
Exploring the science with CES Elements 308(3)
Conductors, insulators and dielectrics 311(34)
Introduction and synopsis 312(1)
Conductors, insulators and dielectrics 313(4)
Charts for electrical properties 317(3)
Drilling down: the origins and manipulation of electrical properties 320(11)
Design: using the electrical properties of materials 331(7)
Summary and conclusions 338(1)
Further reading 338(1)
Exercises 339(2)
Exploring design with CES 341(2)
Exploring the science with CES Elements 343(2)
Magnetic materials 345(22)
Introduction and synopsis 346(1)
Magnetic properties: definition and measurement 346(5)
Charts for magnetic properties 351(2)
Drilling down: the physics and manipulation of magnetic properties 353(5)
Materials selection for magnetic design 358(5)
Summary and conclusions 363(1)
Further reading 363(1)
Exercises 364(1)
Exploring design with CES 365(1)
Exploring the science with CES Elements 366(1)
Materials for optical devices 367(20)
Introduction and synopsis 368(1)
The interaction of materials and radiation 368(5)
Charts for optical properties 373(2)
Drilling down: the physics and manipulation of optical properties 375(6)
Optical design 381(1)
Summary and conclusions 382(1)
Further reading 383(1)
Exercises 383(1)
Exploring design with CES 384(1)
Exploring the science with CES Elements 385(2)
Durability: oxidation, corrosion and degradation 387(22)
Introduction and synopsis 388(1)
Oxidation, flammability and photo-degradation 388(2)
Oxidation mechanisms 390(2)
Making materials that resist oxidation 392(3)
Corrosion: acids, alkalis, water and organic solvents 395(1)
Drilling down: mechanisms of corrosion 396(5)
Fighting corrosion 401(3)
Summary and conclusions 404(1)
Further reading 405(1)
Exercises 405(1)
Exploring design with CES 406(1)
Exploring the science with CES Elements 407(2)
Heat, beat, stick and polish: manufacturing processes 409(40)
Introduction and synopsis 410(1)
Process selection in design 410(3)
Process attributes: material compatibility 413(1)
Shaping processes: attributes and origins 414(9)
Joining processes: attributes and origins 423(3)
Surface treatment (finishing) processes: attributes and origins 426(1)
Estimating cost for shaping processes 427(5)
Computer-aided process selection 432(2)
Case studies 434(9)
Summary and conclusions 443(1)
Further reading 444(1)
Exercises 445(1)
Exploring design with CES 446(1)
Exploring the science with CES Elements 447(2)
Follow the recipe: processing and properties 449(30)
Introduction and synopsis 450(1)
Microstructure of materials 450(4)
Microstructure evolution in processing 454(8)
Processing for properties 462(2)
Case studies 464(8)
Making hybrid materials 472(2)
Summary and conclusions 474(1)
Further reading 475(1)
Exercises 476(1)
Exploring design with CES 477(2)
Materials, processes and the environment 479(24)
Introduction and synopsis 480(1)
Material consumption and its growth 480(3)
The material life cycle and criteria for assessment 483(1)
Definitions and measurement: embodied energy, process energy and end of life potential 484(6)
Charts for embodied energy 490(3)
Design: selecting materials for eco-design 493(4)
Summary and conclusions 497(1)
Appendix: some useful quantities 498(1)
Further reading 498(1)
Exercises 499(2)
Exploring design with CES 501(2)
Index 503

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