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Callister - An introduction - 8th edition

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Clay, characteristics, 518–519<br />

Clay products, 503, 505<br />

drying and firing, 505, 521–523<br />

fabrication, 518–523<br />

particles, 501<br />

Cleavage (brittle fracture), 240<br />

Clinker, 508<br />

Close-packed ceramic structures,<br />

460–461<br />

Close-packed metal crystal<br />

structures, 69–71<br />

Coarse pearlite, 358, 359, 368, G2<br />

Coatings (polymer), 601–602<br />

Cobalt:<br />

atomic radius and crystal<br />

structure, 47<br />

Curie temperature, 813<br />

as ferromagnetic material, 807<br />

magnetization curves (single<br />

crystal), 819<br />

Coercivity (coercive force), 516, G2<br />

Cold work, percent, 215<br />

Cold working, see Strain hardening<br />

Collector, 750–751<br />

Color, G2<br />

metals, 846<br />

nonmetals, 853–854<br />

Colorants, 611, G2<br />

Compacted graphite iron, 401,<br />

405–406, G2<br />

Compliance, creep, 578<br />

Component, 283, 317, G2<br />

Composites:<br />

aramid fiber-reinforced polymer,<br />

649<br />

carbon-carbon, 656–657<br />

carbon fiber-reinforced polymer,<br />

648–649<br />

ceramic-matrix, 655–656<br />

classification scheme, 628, 629<br />

costs, A35<br />

definition, 10–11, 628<br />

dispersion-strengthened, 629, 634<br />

elastic behavior:<br />

longitudinal, 638–639<br />

transverse, 640–641<br />

fiber-reinforced, see Fiberreinforced<br />

composites<br />

glass fiber-reinforced polymer,<br />

647–648<br />

hybrid, 657, G6<br />

laminar, 629, 644, 660–661<br />

large-particle, 629, 630–634<br />

metal-matrix, 653–655<br />

particle-reinforced, 629–634<br />

production processes, 657–660<br />

properties, glass-, carbon-, aramidfiber<br />

reinforced, 650<br />

rule of mixtures expressions, 341,<br />

630, 638, 641, 642, 643, 652<br />

strength:<br />

longitudinal, 642<br />

transverse, 642<br />

stress-strain behavior, 636–637<br />

structural, 629, 660–662<br />

Composition, G2<br />

conversion equations, 96–97,<br />

119, 120<br />

specification of, 95–96<br />

Compression molding, plastics, 612<br />

Compression tests, 154–155<br />

Compressive deformation, 153, 173<br />

Computers, semiconductors in,<br />

752–753<br />

magnetic drives in, 800, 825<br />

Concentration, 95, G2. See also<br />

Composition<br />

Concentration cells, 694<br />

Concentration gradient, 126, G2<br />

Concentration polarization,<br />

686–687, G2<br />

Concentration profile, 126, G2<br />

Concrete, 632–634, G2<br />

electrical conductivity, 755<br />

plane strain fracture toughness, 246<br />

Condensation polymerization,<br />

609–610, G2<br />

Conducting polymers, 756–757<br />

Conduction:<br />

electronic, 722–725<br />

ionic, 722, 755–756<br />

Conduction band, 725, G2<br />

Conductivity, see Electrical<br />

conductivity; Thermal<br />

conductivity<br />

Configuration, molecular, 547–550<br />

Conformation, molecular, 544<br />

Congruent phase transformations,<br />

315, G2<br />

Constitutional diagrams, see Phase<br />

diagrams<br />

Continuous casting, 420<br />

Continuous cooling transformation<br />

diagrams, 367–370, G2<br />

4340 steel, 365<br />

1.13 wt% C steel, 388<br />

0.76 wt% C steel, 368<br />

for glass-ceramic, 504<br />

Continuous fibers, 636<br />

Conventional hard magnetic<br />

materials, 823–824<br />

Conversion factors, magnetic<br />

units, 804<br />

Cooling rate, of cylindrical<br />

rounds, 431<br />

Coordinates, point, 55–57<br />

Index • I3<br />

Coordination numbers, 48, 50,<br />

454–456, G2<br />

Copolymers, 540, 551–552, G2<br />

styrenic block, 606<br />

Copper:<br />

atomic radius and crystal<br />

structure, 47<br />

diffraction pattern, 89<br />

elastic and shear moduli, 157<br />

electrical conductivity, 728<br />

OFHC, 731<br />

Poisson’s ratio, 157<br />

recrystallization, 221, 355<br />

slip systems, 203<br />

thermal properties, 785<br />

yield and tensile strengths,<br />

ductility, 168<br />

Copper alloys, 406–408<br />

properties and applications of, 407<br />

Copper-aluminum phase diagram,<br />

439<br />

Copper-beryllium alloys, 407, 408<br />

phase diagram, 450<br />

Copper-nickel alloys:<br />

ductility vs. composition, 214, 298<br />

electrical conductivity, 729–730<br />

phase diagram, 287–288<br />

tensile strength vs. composition,<br />

214, 298<br />

yield strength vs. composition, 214<br />

Copper-silver phase diagram,<br />

298–299<br />

Coring, 297<br />

CorningWare (glass ceramic), 505<br />

Corrosion, G2<br />

of beverage cans, 872<br />

ceramic materials, 706–707<br />

electrochemistry of, 675–681<br />

environmental effects, 692<br />

environments, 700–701<br />

forms of, 692–700<br />

galvanic series, 681–682<br />

overview of, 674<br />

passivity, 690–692<br />

rates, 682–683<br />

prediction of, 683–690<br />

Corrosion fatigue, 264–265, G2<br />

Corrosion inhibitors, 701<br />

Corrosion penetration rate, 683, G2<br />

Corrosion prevention, 701–703<br />

Corundum, 507. See also Aluminum<br />

oxide<br />

crystal structure, 496<br />

Cost of various materials, A31–A36<br />

Coulombic force, 30, G2<br />

Covalency, degree of, 33<br />

Covalent bonding, 32–33, 453,<br />

534, G2

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