
000 | 00000cam u2200205 a 4500 | |
001 | 000045775138 | |
005 | 20171211141746 | |
008 | 131115s2012 ne a b 001 0 eng | |
010 | ▼a 2012359120 | |
020 | ▼a 9780080966656 | |
035 | ▼a (KERIS)REF000016703176 | |
040 | ▼a DLC ▼c DLC ▼d DLC ▼d 211009 | |
050 | 0 0 | ▼a TA403 ▼b .A69 2012 |
082 | 0 0 | ▼a 620.11 ▼2 23 |
084 | ▼a 620.11 ▼2 DDCK | |
090 | ▼a 620.11 ▼b A823e4 ▼c 1 | |
100 | 1 | ▼a Ashby, M. F. |
245 | 1 0 | ▼a Engineering materials. ▼n 1, ▼p An introduction to properties, applications, and design / ▼c Michael F. Ashby, David R.H. Jones. |
246 | 3 | ▼a Engineering materials one |
250 | ▼a 4th ed. | |
260 | ▼a Amsterdam ; ▼a Boston : ▼b Butterworth-Heinemann, ▼c c2012. | |
300 | ▼a xviii, 472 p. : ▼b ill. ; ▼c 24 cm. | |
504 | ▼a Includes bibliographical references (p. 465-466) and index. | |
650 | 0 | ▼a Materials ▼v Textbooks. |
700 | 1 | ▼a Jones, David R. H. ▼q (David Rayner Hunkin), ▼d 1945-. |
945 | ▼a KLPA |
Holdings Information
No. | Location | Call Number | Accession No. | Availability | Due Date | Make a Reservation | Service |
---|---|---|---|---|---|---|---|
No. 1 | Location Science & Engineering Library/Sci-Info(Stacks2)/ | Call Number 620.11 A823e4 1 | Accession No. 121227345 | Availability Available | Due Date | Make a Reservation | Service |
No. 2 | Location Science & Engineering Library/Sci-Info(Stacks2)/ | Call Number 620.11 A823e4 1 | Accession No. 121242643 | Availability Missing | Due Date | Make a Reservation | Service |
Contents information
Table of Contents
Engineering materials and their properties Price and availability of materials Elastic moduli Bonding between atoms Packing of atoms in solids Physical basis of Young''s modulus Case studies in modulus-limited design Yield strength, tensile strength and ductility Dislocations and yielding in crystals Strengthening methods and plasticity of polycrystals Continuum aspects of plastic flow Case studies in yield-limited design Fast fracture and toughness Micromechanisms of fast fracture Case studies in fast fracture Probalistic fracture of brittle materials Fatigue failure Fatigue design Case studies in fatigue failure Creep and creep fracture Kinetic theory of diffusion Mechanisms of creep and creep-resistant materials The turbine blade - case studies in creep-limited design Oxidation and corrosion Oxidation of materials Case studies in dry oxidation Wet corrosion of materials Case studies in wet corrosion Friction and wear Case studies in friction and wear Design with materials Final case study - materials and energy in car design Appendices - Symbols and Formulae References Index Complete solutions manual