Introduction to Engineering MaterialsA text which deals with the basic principles of materials science and technology in a simple, yet thorough manner. This edition includes more worked examples and more detailed information on certain aspects of materials science. |
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Page ii
... Mechanics of Machines G. H. Ryder and M. D. Bennett Engineering Heat Transfer J. R. Simonson Essential Solid Mechanics - Theory , worked examples and problems B. W. Young INTRODUCTION TO ENGINEERING MATERIALS V. B. JOHN M.Sc. , C.
... Mechanics of Machines G. H. Ryder and M. D. Bennett Engineering Heat Transfer J. R. Simonson Essential Solid Mechanics - Theory , worked examples and problems B. W. Young INTRODUCTION TO ENGINEERING MATERIALS V. B. JOHN M.Sc. , C.
Page x
... examples within the text , ( 2 ) an increase in the sections dealing with dislocations and plastic deformation within metals , ( 3 ) a substantial enlargement of the chapter on material - forming processes , ( 4 ) a major increase in ...
... examples within the text , ( 2 ) an increase in the sections dealing with dislocations and plastic deformation within metals , ( 3 ) a substantial enlargement of the chapter on material - forming processes , ( 4 ) a major increase in ...
Page 5
... example in a gas discharge tube or in an electric arc , radiation is emitted and this may be analysed with the aid of a spectroscope . Each element emits its own characteristic spectrum , but the spectra are line spectra rather than of ...
... example in a gas discharge tube or in an electric arc , radiation is emitted and this may be analysed with the aid of a spectroscope . Each element emits its own characteristic spectrum , but the spectra are line spectra rather than of ...
Page 7
... the electron and a quantum of energy will be emitted . For example , if there is a jump from level 3 to level 1 the energy change will be 1 1 SE = 2.185 × 10-18 = 1.94 x 10-18 J 32 n = ∞ n = 4 n = 3 -16-10 ATOMIC STRUCTURE 7.
... the electron and a quantum of energy will be emitted . For example , if there is a jump from level 3 to level 1 the energy change will be 1 1 SE = 2.185 × 10-18 = 1.94 x 10-18 J 32 n = ∞ n = 4 n = 3 -16-10 ATOMIC STRUCTURE 7.
Page 9
... example , for hydrogen in its ground state , the one electron would be defined as n = 1,1 = 0 , m1 = 0 , m1 = + or - 1.7 The Pauli exclusion principle n = In the case of an atom possessing more than one electron , the ' ground state ...
... example , for hydrogen in its ground state , the one electron would be defined as n = 1,1 = 0 , m1 = 0 , m1 = + or - 1.7 The Pauli exclusion principle n = In the case of an atom possessing more than one electron , the ' ground state ...
Contents
3 | |
7 | |
20 | |
29 | |
The crystalline state | 54 |
Elastic and plastic behaviour | 73 |
Thermosetting materials | 231 |
Ceramics | 258 |
The behaviour of materials in service | 273 |
Testing of materials | 300 |
Metaljoining processes | 321 |
Appendix A Macroscopical and microscopical examination of metals | 345 |
Cost data | 352 |
A note on materials selection | 355 |
101 | 370 |
Composite materials | 266 |
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Common terms and phrases
alloys aluminium annealing anode applied austenite body centred cubic brittle carbide carbon steel casting cathode cent ceramics chemical chromium combustion component composition compounds compression containing cooling copper corrosion covalent bond crack creep crystal crystalline curve defects density diagram dislocation ductile elastic electrical electrolyte electrons elements energy example face centred cubic fatigue ferrite fibre Figure filler fracture furnace galvanic cell gauge length give grain hard hardening heat treatment hydrogen increase ingot ions iron kg/m³ lattice layer liquid metal load machining martensite material melting point mild steel MN/m² modulus molecules mould nickel nitride occur oxide oxygen particles pearlite phase planes plastic deformation polymer polymerisation possess powder produced properties radiation reaction resin resistance rolling Section shape shell silica silicon slag solder solid solution strain stress structure surface Table tensile strength termed test-piece thermoplastic Thorium unit cell valency welding work-piece Young's modulus zinc