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Callister - An introduction - 8th edition

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I10 • Index<br />

Iron, see also Ferrous alloys; Steels<br />

atomic radius and crystal<br />

structure, 47<br />

bonding energy and melting<br />

temperature, 31<br />

Curie temperature, 813<br />

diffraction pattern, 78<br />

electrical conductivity, 728<br />

ferrite (), 319, 320, 325, G4<br />

as ferromagnetic material, 807<br />

magnetic properties, 822<br />

magnetization curves (single<br />

crystal), 818<br />

polymorphism, 52<br />

recrystallization temperature,<br />

222<br />

rolling texture, 821<br />

slip systems, 203<br />

stress-strain behavior (at three<br />

temperatures), 168<br />

thermal properties, 785<br />

yield and tensile strengths,<br />

ductility, 168<br />

Iron age, 2<br />

Iron-carbon alloys, see Ferrous<br />

alloys<br />

Iron-iron carbide alloys, 319–322<br />

Iron-silicon alloys, magnetic<br />

properties, 822<br />

Material of Importance (use in<br />

transformer cores), 821<br />

Isobutane, 535<br />

Isobutylene, 553<br />

Isomerism, 534, G6<br />

geometrical, 549, 550<br />

stereoisomerism, 548, 550<br />

Isomorphous systems, 289, G6<br />

binary, see Binary isomorphous<br />

alloys<br />

Isoprene, 549<br />

ISO standards, 878<br />

Isostatic powder pressing, 523<br />

Isostrain, in fiber-reinforced<br />

composites, 638<br />

Isostress, in fiber-reinforced<br />

composites, 640<br />

Isotactic configuration, 548,<br />

550, G6<br />

Isothermal, G6<br />

Isothermal transformation diagrams,<br />

356–367, 504, G6<br />

4340 alloy steel, 365<br />

0.76 wt% C steel, 364<br />

0.45 wt% C steel, 387<br />

glass-ceramic, 504<br />

Isotopes, 20, 41, G6<br />

Isotropic materials, 73, 645, G6<br />

Izod impact test, 251, 252, G6<br />

J<br />

Jominy end-quench test,<br />

425–426, G7<br />

Junction depth, diffusion, 139<br />

Junction transistors, 750–751, G7<br />

K<br />

Kaolinite clay, 466, 467, 519<br />

Kevlar, see Aramid<br />

Kinetics, 354–355, G7<br />

crystallization of polymers,<br />

590–591<br />

oxidation, 705–706<br />

phase transformations, 344–355<br />

Knoop hardness, 175, 177, 490<br />

Kovar:<br />

as low-expansion alloy, 788<br />

thermal properties, 785<br />

L<br />

Ladder polymer, 710<br />

Lamellae (polymers), 557<br />

Laminar composites, 660–661, G7<br />

Large-particle composites,<br />

630–633, G7<br />

Larson-Miller parameter, 268<br />

Lasers, 858–862, G7<br />

semiconductor, 860–862<br />

types, characteristics, and<br />

applications, 862<br />

Laser beam welding, 421<br />

Latent heat of fusion, 347<br />

Latex, 602<br />

Lattice parameters, 52, 54, G7<br />

Lattices, 47, G7<br />

Lattice strains, 201–202, 214–215,<br />

441, G7<br />

Lattice waves, 783<br />

Laue photograph, 44, 78<br />

Layered silicates, 466–467<br />

Lay-up, in prepreg processing, 659<br />

Lead, 415<br />

atomic radius and crystal<br />

structure, 47<br />

recrystallization temperature, 222<br />

superconducting critical<br />

temperature, 831<br />

Lead-free solders, 304<br />

Lead-tin phase diagram, 300,<br />

305–311<br />

Lead titanate, 512<br />

Lead zirconate, 766<br />

Lead-zirconate-titanate, 512, 766<br />

Leak-before-break design, 248<br />

Leathery region, polymers, 576<br />

LEDs, see Light-emitting diodes<br />

Lever rule, 290, 291, G7<br />

Life cycle analysis/assessment, 877<br />

Light:<br />

absorption, 849–852<br />

reflection, 848<br />

refraction, 846–848<br />

scattering, 854<br />

transmission, 852<br />

Light-emitting diodes:<br />

organic, 857<br />

polymer, 857<br />

semiconductor, 856<br />

Lime, 508<br />

Linear atomic density, 68–69<br />

Linear coefficient of thermal<br />

expansion, 264, 785–788, 792,<br />

793, 799, G13<br />

values for selected materials, 732,<br />

785, 856, A17–A20<br />

Linear defects, 99–102<br />

Linear polymers, 545, 546, G7<br />

Liquid crystal polymers, 604–605, G7<br />

Liquidus line, 288, 289, 298, 299, G7<br />

Liquidus temperatures, Cu-Au<br />

system, 304, 336<br />

Lodestone (magnetite), 801, 809<br />

Longitudinal direction, 637, G7<br />

Longitudinal loading, composites,<br />

636–640, 641–642<br />

Lost foam casting, 417, 420<br />

Lost-wax casting, 419<br />

Low-angle grain boundaries, see<br />

Small-angle grain boundaries<br />

Low carbon steels, 394–395<br />

Low-cycle fatigue, 259<br />

Lower critical temperature (ferrous<br />

alloys), 423, G7<br />

Lower yield point, 163<br />

Low-expansion alloys, 788<br />

Luminescence, 855, G7<br />

M<br />

Macromolecules, 535, G7<br />

Magnesia, see Magnesium oxide<br />

Magnesium:<br />

automobile wheel, 44<br />

diffraction pattern, 44<br />

elastic and shear moduli, 157<br />

Poisson’s ratio, 157<br />

single crystal, cleaved, 44<br />

slip systems, 203<br />

Magnesium alloys, 410–411<br />

Magnesium fluoride, optical<br />

properties, 848<br />

Magnesium-lead phase diagram, 313<br />

Magnesium oxide:<br />

bonding energy and melting<br />

temperature, 31<br />

flexural strength, 486<br />

index of refraction, 848

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