Corrosion Resistance of Steels, Nickel Alloys, and Zinc in Aqueous Media Waste Water, Seawater, Drinking Water, High-Purity Water
Auteurs : Schütze Michael, Roche Marcel, Bender Roman
Preface IX
How to use the Handbook XI
Warranty disclaimer 1
High Purity Water 3
Introduction 3
Physical and chemical properties 4
Unalloyed and low alloyed steels/Cast steel 6
Non-alloyed cast iron 21
High-alloyed cast iron 22
Ferritic chromium steels with < 13% Cr 22
Ferritic chromium steels with ‡ 13% Cr 24
High-alloyed multiphase steels 26
Austenitic CrNi steels 27
Austenitic CrNiMo(N)steels 52
Nickel 56
Nickel-chromium alloys 56
Nickel-chromium-iron alloys (without Mo) 56
Nickel-chromium-molybdenum alloys 67
Nickel-copper alloys 67
Nickel-molybdenum alloys 68
Zinc 68
Bibliography 69
Drinking Water 81
Introduction 82
Unalloyed steels and cast steel 87
Unalloyed cast iron 102
Structural steels with up to 12% chromium 104
Ferritic chromium steels with more than 12% chromium 104
Ferritic-austenitic steels with more than 12% chromium 104
Austenitic chromium-nickel steels 104
Austenitic chromium-nickel-molybdenum steels 104
Austenitic chromium-nickel steels with special alloying additions 104
Zinc 112
Bibliography 147
Seawater 155
Introduction 155
Unalloyed and low-alloyed steels/cast steel 193
Unalloyed cast iron and low-alloy cast iron 224
High-alloy cast iron 226
Ferritic chromium steels with < 13% Cr 228
Ferritic chromium steels with ‡13% Cr 229
High-alloy multiphase steels 235
Ferritic/pearlitic-martensitic steels 235
Ferritic-austenitic steels/duplex steels 235
Austenitic CrNi steels 237
Austenitic CrNiMo(N) steels 239
Austenitic CrNiMoCu(N) steels 244
Nickel 260
Nickel-chromium alloys 262
Nickel-chromium-iron alloys (without Mo) 262
Nickel-chromium-molybdenum alloys 262
Nickel-copper alloys 263
Nickel-molybdenum alloys 270
Other nickel alloys 270
Zinc 270
Bibliography 273
Waste Water (Municipal) 289
Introduction 290
Unalloyed steels and cast steel 292
Unalloyed cast iron 294
Ferritic chromium steels with more than 12% chromium 299
Ferritic austenitic steels with more than 12% chromium 299
Austenitic CrNi steels 299
Austenitic CrNiMo(N) steels 299
Austenitic CrNiMoCu(N)-steels 299
Zinc 305
Bibliography 307
Waste Water (Industrial) 311
Introduction 311
Unalloyed steels and low-alloy steels/cast steel 312
Unalloyed cast iron and low-alloy cast iron 316
High-alloy cast iron 316
Silicon cast iron 316
Ferritic chromium steels with < 13 % Cr 320
Ferritic chromium steels with ‡ 13 % Cr 320
High-alloy multiphase steels 320
Ferritic/pearlitic-martensitic steels 320
Ferritic-austenitic steels/duplex steels 320
Austenitic CrNi steels 323
Austenitic CrNiMo(N) steels 323
Austenitic CrNiMoCu(N) steels 323
Nickel-chromium alloys 339
Nickel-chromium-iron alloys (without Mo) 339
Nickel-chromium-molybdenum alloys 339
Nickel-copper alloys 339
Zinc 343
Bibliography 344
Key to materials compositions 351
Index of materials 391
Subject index 401
Marcel Roche, born in 1945, received his diplomas in Chemical Engineering from the Institut National des Sciences Appliquées of Lyon in 1967 and in Refining and Chemical Engineering from the Ecole Nationale Supérieure du Pétrole et des Moteurs in 1968. He worked as a corrosion engineer for the Institut Français de Pétrole and Technip Engineering from 1970 to 1979, when he moved to the Corrosion Department of Elf Aquitaine. He spent the remainder of his career in the field of Corrosion, Inspection and Materials in this Group which became TotalFinaElf and finally Total. He retired in June 2008 and became a corrosion consultant. Since July 2011, he is President of CEFRACOR, the French Corrosion Society, and of its department Conseil Français de la Protection Cathodique. He is a member of the Scientific and Technical Advisory Committee of the European Federation
Date de parution : 01-2016
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Mots-clés :
corrosion; atmospheric; aqueous; moisture; corrosive; environment; steel; structures; containers