(Paperback, 6th Edition, International Adaptation)
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Fundamentals of Materials Science and Engineering provides a comprehensive coverage of the three primary types of materials (metals, ceramics, and polymers) and composites. Adopting an integrated approach to the sequence of topics, the book focuses on the relationships that exist between the structural elements of materials and their properties. This presentation permits the early introduction of non-metals and supports the engineer's role in choosing materials based upon their characteristics. Using clear, concise terminology that is familiar to students, the book presents material at an appropriate level for student comprehension.
This International Adaptation has been thoroughly updated to use SI units. This edition enhances the coverage of failure mechanism by adding new sections on Griffith theory of brittle fracture, Goodman diagram, and fatigue crack propagation rate. It further strengthens the coverage by including new sections on peritectoid and monotectic reactions, spinodal decomposition, and various hardening processes such as surface, and vacuum and plasma hardening. In addition, all h
Fundamentals of Materials Science and Engineering provides a comprehensive coverage of the three primary types of materials (metals, ceramics, and polymers) and composites. Adopting an integrated approach to the sequence of topics, the book focuses on the relationships that exist between the structural elements of materials and their properties. This presentation permits the early introduction of non-metals and supports the engineer's role in choosing materials based upon their characteristics. Using clear, concise terminology that is familiar to students, the book presents material at an appropriate level for student comprehension.This International Adaptation has been thoroughly updated to use SI units. This edition enhances the coverage of failure mechanism by adding new sections on Griffith theory of brittle fracture, Goodman diagram, and fatigue crack propagation rate. It further strengthens the coverage by including new sections on peritectoid and monotectic reactions, spinodal decomposition, and various hardening processes such as surface, and vacuum and plasma hardening. In addition, all homework problems requiring computations have been refreshed.
[저자] William D. Callister, JR
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최근작
[저자] David G. Rethwisch
1. Introduction2. Atomic Structure and Interatomic Bonding3. Structures of Metals and Ceramics4. Polymer Structures5. Composites6. Imperfections in Solids7. Diffusion8. Mechanical Properties9. Dislocation, Deformation, and Strengthening Mechanisms10. Failure11. Phase Diagrams12. Phase Transformations13. Electrical Properties of Materials14. Types and Applications of Materials15. Processing of Engineering Materials16. Corrosion and Degradation17. Thermal Properties18. Magnetic Properties19. Optical Properties20. Economic, Environmental and Societal Issues in Materials Science and Engineering
Appendix A: The International System of Units (SI)Appendix B: Properties of Selected Engineering MaterialsAppendix C Costs and Relative Costs for Selected Engineering MaterialsAppendix D Repeat Unit Structures for Common PolymersAppendix E Glass Transition and Melting Temperatures for Common Polymeric MaterialsAppendix F Characteristics of Selected ElementsAppendix G Values of Selected Physical ConstantsAppendix H Periodic Table of the ElementsMechanical Engineering Online ModuleLibrary of Case StudiesCase Study CS1-Materials Selection for a Torsionally Stressed Cylindrical ShaftCase Study CS2-Automobile Valve SpringCase Study CS3-Failure of an Automobile Rear AxleCase Study CS4-Artificial Total Hip ReplacementCase Study CS5-Intraocular Lens ImplantsCase Study CS6-Chemical Protective Clothing
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