Materials science for dentistry

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1. Verfasser: Darvell, Brian W. (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Boca Raton, Fla. [u.a.] CRC Press [u.a.] 2009
Oxford [u.a.] Woodhead Publishing
Ausgabe:9. ed.
Schriftenreihe:Woodhead publishing in materials
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adam_text Contents Preface xv Preface to the 5th Edition xvii Introduction xix How To Use This Book xxi Conventions xxiii A Note on References xxiii Greek Alphabet xxiii 1 Mechanical Testing 1 1. Initial Ideas 2 tension, compression, shear, need to define properties 2. The Equations of Deformation 4 Hooke s Law, stress, strain, proportional limit, Young s modulus, elastic limit, Poisson ratio, shear modulus, bulk modulus 3. Plastic Deformation 11 yield point, necking, strength testing 4. Work of Deformation 14 toughness, resilience, flexibility 5. Modelling 16 mechanical analogues, strain hardening, physical modelling, friction 6. Strength Testing 19 direct tensile, indirect tensile, compression, flexure 7. Griffith s Law 21 critical stress, surface energy, size effect, structure scale 8. Hardness 25 Brinell ball, Vickers indenter, Knoop indenter 9. Dynamic Behaviour 28 timescale, time constant, relaxation time 10. Impact 29 Charpy, Izod, notch sensitivity, impact strength 11. Creep 31 flow, atomic diffusion, activation energy 12. Fatigue 32 load cycling, endurance limit 13. Elastic Moduli 33 initial, tangent, secant, average, non-Hookean behaviour 14. Comparative Properties 34 relative values of different classes of material 15. Ideality 35 limitations, development 2 Gypsum Materials 37 1. Basic Reactions 38 plaster, dehydration, setting 2. Mixing Liquid 39 bulk density, volume fraction, gauging volume, dilatancy, mixing volume, wetting 3. Dental Products 42 plaster, stone, minimum mixing volume 4. Mixing Proportions 43 mass fraction, excess water 5. Setting Dimensional Change 44 crystal growth effects, density change, spherulites, hygroscopic expansion vi ___ ________Contents 6. Setting Reaction 47 induction period, nucleation, thermal expansion 7. Modifiers 49 syngenite, crystal habit, anti-expansion solution 8. Porosity 52 excess water, critical porosity, bubbles 9. Wet or Dry? 55 strength, slurry water 10. Storage 56 deterioration, humidity, setting time, strength 11. Setting Time 57 Gillmore needle, setting rate, working time 3 Polymers 60 1. Basic Structure 61 addition and condensation polymerisation, monomer, copolymerisation 2. Configuration and Conformation 62 stereoisomerism, tacticity, bond rotation, energy variation, geometry 3. Viscosity 66 molecular basis, activation energy 4. Glass Transition 69 crystallinity, free volume, side chains, drawing, orientation, strain hardening 5. Time-Temperature Equivalence 76 failure envelope, test behaviour 6. Plasticizers and Cross-linking 78 water, temperature equivalence, branching and cross-linking 4 Rheology 82 1. First Thoughts 83 rate of deformation, reversible vs. permanent change, relaxation time 2. Elasticity 83 Hookean model 3. Newtonian Flow 84 boundary layer, shear gradient, coefficient of viscosity, pure flow 4. The Maxwell Body 87 elastic-plastic behaviour 5. The Kelvin- Voigt Body 88 retardation time, time constant, damped flow, reversibility 6. Viscoelasticity 89 summation of effects, continuum of behaviour 7. Classification of Flow Behaviour 92 Newtonian, plastic, pseudoplastic, shear thinning, dilatant, thixotropic 8. The Compression Set Test 99 interpretation 9. Fillers 101 purposes, mechanism, effects, settling 10. Stokes Law 104 application to wax viscosity determination 11. Poiseuille s Law 105 flow development in tubes, practical implications 5 Acrylic 108 1. Polymerization Reactions 109 chain initiation, propagation, termination, transfer, tacticity 2. Heat-cured Acrylic 1 11 benzoyl peroxide, resin manufacture, shrinkage, exotherm, residual monomer need for initiator, Trommsdorff effect, equilibria 3. Cold-cured Resins j ţg activator, tertiary amines 4. Inhibitors J20 need, mechanism Contents___________ vii 5. Cracks & Crazes 121 glass transition, viscoelasticity, crazing 6. Modifications 125 water absorption, plasticizers, cross-linking 6 Resin Restorative Materials 128 1. Direct Acrylic Resin Restorative Materials 129 setting, discolouration, compromises, shrinkage, temperature effects, structure 2. The Effects of Fillers 132 thermal expansion, matrix constraint, internal stresses, stress freezing, importance of bonding, isostrain and isostress models, modulus, coupling agents, crack growth 3. Filler Loading 144 differential wear, filler selection, volume fraction, product variations 4. Resin Chemistry 147 bis-phenol A, bis-GMA, mechanical properties during setting 5. Light-Cured Materials 151 photolytic initiation, photosensitizer, fluorescence, phosphorescence, hazards, visible light, camphoroquinone, amines, curing lamps, depth of cure 6. Oxygen Inhibition 161 free radicals, barriers, bleaching agents 7 Flexible Impression Materials 163 1. Basic Requirements 164 purpose, compromises 2. Deformation 164 effective chain segments, non-Hookean behaviour, failure, cause of elasticity, affine deformation 3. Effects of Fillers 169 strain, Mullins effect, modulus, importance of bonding 4. Polysulphide 173 chemistry, setting, stress relaxation 5. Polyether 176 chemistry, setting, water sorption 6. Silicones 177 chemistry, setting, condensation, addition 7. Polysaccharides 181 basic structure, importance of hydrogen bonds 8. Agar . 182 chemistry, structure of water, structure of gels, tempering 9. Alginates 185 chemistry, setting, gel structure 10. Water Gain and Loss 188 sensitivity of gels, synaeresis 11. Stress Set 190 bond-exchange, stress-aided reaction, chain effects 12. Other Accuracy Issues 192 molecular processes, physical effects, practical matters 13. Mould Seal 195 sodium alginate solution 8 Composition and Phase Diagrams 197 1. Plotting Composition 198 mixture line, 3 components, multiple components 2. States and Phases 201 definitions, pressure-temperature diagram, phase field, stoichiometric phases 3. The Phase Rule 204 chemical potential, equilibrium, degrees of freedom, isothermal tie-lines, lever rule 4. Critical Points 211 two liquids, phase separation, ternary liquid system, plait point viii Contents 9 Cements and Liners 214 1. General Principles 215 types, applicability 2. Zinc Oxide - Eugenol 216 chemistry, setting, alternatives 3. Background Chemistry 219 zinc oxide, oxide selection, acidity 4. Cements as Composite Materials 221 general principles, effect of porosity 5. Zinc Phosphate 222 chemistry, setting, explanation of clinical handling, etching 6. Zinc Polycarboxylate 233 chelation, network structure, adhesion 7. Ion-leachable Glasses 234 general chemistry, role of aluminium, fluoride, silicates 8. Glass Ionomer Cement 238 chemistry, glass and acid design, setting reactions, cermet, water status, fluoride, other fillers 9. Film Thickness 246 fit of crowns, geometry, force of seating 10. Calcium Hydroxide Liners 248 purpose, chemistry 11. Cavity Varnish 249 purpose, fluoride 12. MTA 250 manufacture, setting reactions 10 Surfaces 253 1. Wetting 254 contact angle, surface tension, surface energy, crack formation, work of adhesion, effect of roughness 2. Capillarity 260 meniscus, capillary rise and depression, bubble pressure, penetration coefficient, porous bodies 3. Aspects of Chemical Bonding 268 van der Waals, dipoles, force vs. distance, origin of strength 4. The Hydrogen Bond 271 chemical nature, consequences 5. Dental Adhesives 272 types, deficiencies 6. Enamel & Dentine Etching and Bonding 273 differential etching, cyanoacrylate, urethane 7. Fluoride 276 types of preparation, chemistry, surface energy 8. Surfactants 277 detergents, wetting agents 11 Metals I : Structure 280 1. What is a Metal? 281 metallic bonding, delocalized electrons, graphite 2. Freezing 282 cooling curves, supercooling, critical radius, nucleation 3. Crystal Structure 289 space lattice, unit cell, face-centred, body-centred, hexagonal close-packed, atom counting, stacking layers, solid solution, radius ratio limit 4. Grain Structure 295 grain boundary, grain growth, energy, Hall-Petch relation 5. Slip 297 homogeneous, preferred directions, ductility, malleability, energy 6. Dislocations 299 defects, inhomogeneous slip, pile-up, strain hardening, cold work, annealing, recrystallization, strength Contents___ ix 12 Metals II : Constitution 306 1. Segregation 307 continuous solid solution, liquidus, solidus, freezing and melting partition, equilibria, annealing, quenching, cooling curves 2. Metallography 312 use of polished sections, etching 3. Eutectics 314 Ag-Cu system, cooling curves, cored structure, solvus, supercooling, eutectoid 4. Phase Diagram Conventions and Layout 319 arbitrariness, electron compounds, structure types, phase labelling convention 5. The Cu-Sn System 322 reading reactions from a phase diagram, eutectoids, peritectoids 13 Corrosion 325 1. Basic Considerations 326 oxidation, reduction, anode and cathode, corrosion cell, galvanic couple, equilibrium, plating cell 2. Polarization 329 cause, back e.m.f., depolarization 3. Cathode Processes 330 electron sinks, oxygen, pH effects 4. Corrosion Protection 330 protective plating, sacrificial plating, paint, oxygen concentration cell, pitting and crevice corrosion, inhibitors 5. Passive Metals 335 passivation process, Al, Cr, Ti, risks 6. Other Factors 337 stress corrosion, electrode potential, rough surfaces, effect of polishing, tarnish 7. Deliberate Corrosion 340 electropolishing, etching, mechanical key, plating 14 Silver Amalgam 342 1. Basic Setting Reactions 343 Ag-Sn, Ag-Hg, Hg-Sn, effect of Cu, strength, Ag-Cu-Hg-Sn constitution 2. Alloy Powder Manufacture 348 turning, milling, atomization 3. Cooling Rate and Constitution 350 presence of eutectic, coring, effects on setting, homogenization, pre-amalgamation 4. Mixing Proportions 355 gauging and dilatancy, mercury requirements 5. Constitution of Set Amalgam 357 metallography, effect of heat 6. Dimensional Changes 360 causes, effects, factors affecting, Zn, creep 7. Mechanical Properties 364 creep, temperature effects 8. Porosity 365 causes, strength 9. Corrosion 367 multiphase, gamma-2, Cu, alloy tarnish 10. Quality of Work 369 dependence of performance on care taken 15 Mixing 371 1. Amalgamation 372 history, trituration, machine mixing 2. Amalgam Mixer Analysis 373 energy required, coherence, power rating, length:amplitude ratio, need for pestle 3. Other Capsule Products 379 viscosity, proportion accuracy 4. Alginate Proportioning 379 powder and water, propagation of errors Contents 5. Tubes 382 impression materials, settling 6. Other Powder-Liquid Products 383 proportioning, mixing 7. Theory 385 turbulence, shearing, Baker s transformation, diffusion, effect on properties 8. Spatulas 388 mechanical and chemical considerations 16 Waxes 390 1. Chemistry 391 chemistry, melting, general description 2. Properties 393 thermal expansion, modulus of elasticity, residue 3. Flow 396 measuring, temperature sensitivity, residual stress 4. Burn out 398 purpose, requirements 5. Impression Compound 399 description 6. Other Applications 400 sticky wax, articulating paper, floss 17 Casting Investments 401 1. Requirements 402 refractory, expansion 2. Chemistry of Silica 404 bonding, polymorphs, displacive and reconstructive transformations, density, dimensional changes 3. Gypsum-bonded Investments 410 silica proportion, expansion, particle size effect, undesirable reactions, limitations 4. Phosphate-bonded Investments 413 reactions, slag 5. Silica-bonded Investments 416 setting, properties 6. Ring Liner 417 purpose, use, expansion 7. Porosity 418 need for, obtaining, limitations 18 Casting 420 1. Models and Investments 421 requirements, shear-thinning, vacuum 2. Metal Casting 422 wetting, surface tension, viscosity, oxidation 3. Physics of Casting 424 centrifugal machines, casting pressure, surface detail, air pressure, vacuum 4. Dimensional Considerations and Defects 429 sources of change, patterns of cooling, causes of defects 5. Flame 433 diffusion and premixed types, soot, reducing and oxidising zones, hazards 19 Casting Alloys 435 1. Gold Alloys 436 pure gold, Ag-Cu, ordered phases, superlattice, coherency strain, colour, precipitation hardening, ageing, grain refining, related alloys 2. Chromium Alloys 445 Cr-systems, properties, dissolved carbon, carbides, thermal history, sigma phase Contents xi 20 Cutting, Abrasion and Polishing 450 1. Background 451 complications of conditions and substrates 2. Bonded Abrasives 451 process of abrasion, temperature effects with polymers, hardness, lubricants 3. Cutting Tools 457 terminology, comparison with bonded abrasives, relative hardness, rubbing wear 4. Erosion 461 differential erosion, grit blasting, energy, ductile and brittle substrates, liquid honing 5. Electrolytic Polishing 465 current-voltage plot, depth of plastic strain 6. Roughness 465 definition, waviness, measures, centre-line average 7. Heating 468 friction, effect on pulp and materials 8. Diamond 470 characteristics and use 21 Steel and Cermet 471 1. Carbon Steel 472 structure, carbon solubility, С -Fe, martensitic transformation, strength, toughness, steel grades, uses 2. Stainless Steel 476 basis, properties, structures, heat-affected zone, weld decay, pitting 3. Cermet 479 cutting device requirements, WC-Co, sintering, formation reactions, assembly 22 Soldering and Welding 485 1. Definitions and Conditions 486 soldering, welding, spot welding, energy input, melting point restrictions 2. Fluxes 487 purpose, formulation, reactions, use of fluoride 3. Solder Design and Selection 489 properties, limitations, thermal effects, brazing 4. Amalgamation 493 comparison and contrasts with soldering 23 Mechanics 494 1. Work and Moment 495 basic equations, sign conventions 2. Simple Beams 496 cantilever, shearing force and moment diagrams, additivity, equations, 3- and 4-point bend, neutral axis, neutral surface, stress distribution, pre-stress 3. The Second Moment of Inertia 504 definition, shape factor, flexural rigidity, additivity, use in design, tubes 4. Deflections of Loaded Beams 507 example of method, cantilever, 3- and 4-point beams 5. The Finger-Spring Analysed 510 stepwise treatment, interpretation of result, work hardening 6. Coils & Braiding 512 benefits to flexibility 7. Hand Instruments 513 design, instability 24 Light and Colour 515 1. The Sensation of Colour 516 psychophysical sensation, matching, colour gamut, the spectrum 2. The Chromatický Diagram 519 geometry, spectral locus, chromaticity coordinates, purple line 3. Colour Specification 522 hue, saturation, grey scale, photometric intensity, reflectance, other colour systems, meaning of white xii Contents 4. Colour Matching in Practice 526 principles, persistence of matches, dependence on illuminant, daylight, tungsten and fluorescent lamps, phosphors, metamerism, shade guides 5. Physics of Light 534 reflection, refractive index, specular transmission, diffusion, scattering 6. Chemistry of Colour 540 energy absorption processes, delocalized electrons, conjugated systems, metal complexes, spectrochemical series, fluorescence, hydroxyapatite, dyes and pigments 25 Porcelain 546 1. Structure 547 silicates, glass, alumina-potash-silica 2. Firing Reactions 550 potash feldspar, leucite, kaolin, high-, medium- and low fusing porcelain 3. Alumina Strengthening 553 energy of crack growth, importance of bonding, expansion matching 4. The Firing Process 554 sintering, trapped air, densification, vacuum, bubble shrinkage 5. Strengthening Treatments 559 overglazing, pre-stress, ion-exchange, crack diagnosis, thermal shock 6. Metal - Ceramics 562 thermal stress, bonding, mechanical key 7. Colouring 563 metal oxides 8. Boric Oxide 564 devitrification, hydrolysis 9. Other Approaches 565 castable and machinable ceramics, infiltration 10. Etching 567 hydrogen fluoride reactions, problems 26 Radiography 568 1. Atomic Structure 569 Aufbau and Pauli Exclusion principles, characteristic X-rays 2. X-ray Generation 570 electron volt, wavelength minimum, x-ray tube, emission spectra, Moseley s Law 3. Lambert s Law . 573 linear absorption coefficient, mass absorption coefficient, calculation, filtration, rectification 4. Absorption and Scattering 577 absorption edge, true absorption, fluorescence, Compton Effect, coherent scattering, ionization 5. Radiographic Film Density 581 optical density vs. exposure, fog, base density, working range, sensitivity, contrast 6. Experimental Attenuation Coefficient 586 effective mass attenuation coefficient 7. Screens 537 fluorescence, intensification, limitations 8. Image Properties 5gg projection, thickness distortion, inverse square law, exposure correction, parallelism, blurring, heel effect, target ageing 9. Alternative Imaging techniques 592 zeroradiography, photo-stimulable phosphor, CCD, TFT 10. Digital Images 59g control, grey scale, digital representation, calculation Contents xiii 27 More Polymers 600 1. Polyisoprene 601 rubber, gutta percha, properties, degradation, vulcanization, oxidation, chicle 2. Polysaccharides 604 cellulose, wet strength, absorbent points, bibs, starch, carboxymethylcellulose, impression plaster, regenerated cellulose, acetate, nitrate, chition, chitosan 3. Polypeptides 608 gut sutures, collagen properties, proteins, structure, Ramachandran plot, silk, yarns 4. Polyesters 613 polyiglycolic acid), Terylene, Dacron, Mylar 28 More Metals 614 1. Titanium 615 commercially-pure, twinning, casting, corrosion 2. Nickel-Titanium 619 transformations, shape-memory, pseudoelasticity, corrosion, applications 3. Metal Forming 625 press-forming, hydraulic, explosive, superplastic, electroforming, wire 4. Pure Gold 629 use, forms, properties 5. Mirrors 630 requirements, design 6. Mercury 631 properties, spillage, clean-up, storage, copper amalgam, sensitivity 7. Beryllium 636 problems, safety 8. Other Alloys 636 Elgiloy, lead-tin 9. Silver 638 use, composition, corrosion 29 More Mechanical Testing 640 1. Shear 641 equivalence, Mohr s circle, meaning of strength 2. Plastic-Brittle Transition 646 behavioural scale factor 3. Bend Strength 647 generalized equation, derivation of formulae, limitation Index 649 Materials Science for Dentistry has established itself as a standard reference for undergraduate and postgraduate courses in dentistry. It provides a fundamental understanding of the materials on which dentistry depends, covering those aspects of structure and chemistry which govern the behaviour and performance of materials in use. Particular materials discussed include gypsum, polymers, acrylic, cements, waxes, porcelain and metals. Other chapters review topics such as surfaces, corrosion, mixing, casting, cutting and bonding as well as mechanical testing. This edition, which adds a chapter on further aspects of mechanical testing, has been extensively revised with, for example, new material on condensation silicone and phosphate-bonded investment chemistries, mixing, MTA and alternative radiographie imaging techniques. Now in its ninth edition, Materials Science for Dentistry continues its reputation as the most authoritative available reference for students of dentistry. It will also be a valuable resource for academics and practitioners in the field. Dr Brian W. Darvell DSc CChem CSci FRSC FIM FSS FADM is former Reader in Dental Materials Science at The University of Hong Kong, China.
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title Materials science for dentistry
title_auth Materials science for dentistry
title_exact_search Materials science for dentistry
title_full Materials science for dentistry B. W. Darvell
title_fullStr Materials science for dentistry B. W. Darvell
title_full_unstemmed Materials science for dentistry B. W. Darvell
title_short Materials science for dentistry
title_sort materials science for dentistry
topic Dental materials
Dentalwerkstoff (DE-588)4133661-6 gnd
Werkstoffkunde (DE-588)4079184-1 gnd
topic_facet Dental materials
Dentalwerkstoff
Werkstoffkunde
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018007042&sequence=000005&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018007042&sequence=000006&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA
work_keys_str_mv AT darvellbrianw materialssciencefordentistry