Corrosion and corrosion control: an introduction to corrosion science and engineering
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hoboken, NJ
Wiley
2008
|
Ausgabe: | 4. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Contributor biographical information Publisher description Table of contents only Inhaltsverzeichnis |
Beschreibung: | Literaturangaben Includes bibliographical references and index |
Beschreibung: | XX, 490 S. Ill., graph. Darst. |
ISBN: | 9780471732792 |
Internformat
MARC
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100 | 1 | |a Revie, Robert Winston |e Verfasser |4 aut | |
245 | 1 | 0 | |a Corrosion and corrosion control |b an introduction to corrosion science and engineering |c R. Winston Revie ; Herbert H. Uhlig |
250 | |a 4. ed. | ||
264 | 1 | |a Hoboken, NJ |b Wiley |c 2008 | |
300 | |a XX, 490 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
500 | |a Literaturangaben | ||
500 | |a Includes bibliographical references and index | ||
650 | 4 | |a Corrosion and anti-corrosives | |
650 | 0 | 7 | |a Eisen |0 (DE-588)4014002-7 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Schutzschicht |0 (DE-588)4180280-9 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Korrosion |0 (DE-588)4032518-0 |2 gnd |9 rswk-swf |
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650 | 0 | 7 | |a Korrosionsschutz |0 (DE-588)4032522-2 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Legierung |0 (DE-588)4035035-6 |2 gnd |9 rswk-swf |
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689 | 7 | |8 7\p |5 DE-604 | |
700 | 1 | |a Uhlig, Herbert Henry |e Verfasser |4 aut | |
856 | 4 | |u http://catdir.loc.gov/catdir/enhancements/fy0826/2007041578-t.html |3 Inhaltsverzeichnis | |
856 | 4 | |u http://www.loc.gov/catdir/enhancements/fy0826/2007041578-b.html |3 Contributor biographical information | |
856 | 4 | |u http://www.loc.gov/catdir/enhancements/fy0826/2007041578-d.html |3 Publisher description | |
856 | 4 | |u http://www.loc.gov/catdir/enhancements/fy0826/2007041578-t.html |3 Table of contents only | |
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Datensatz im Suchindex
_version_ | 1804137684166246401 |
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adam_text | ********** ********* * * * * * * * * * * * * * * * * * * * * * * * * * *
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* * * * * * * * * * * * * ****** * * * * * * * * * * * * * * * * * * * *
* * * * * * * * * * * * * * * * * * * * * * * * * * * **** * * * * * * *
* * * * * * * * * * * * * * * * * * * * * **** * * * * * * * * * * * * *
* * * * * * * **** * * * * * * * * * * * * * * * * * * * * * * * *
****** * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
****** * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
* * * * * 2 ELECTROCHEMICAL M E C H A N I S M S * 9 * 2.1 T H E
D R Y - C E L L A N A L O G Y A N D F A R A D A Y S L A W
* 9 * 2.2 D E F I N I T I O N O F A N O D E A N D C A
T H O D E * 11* 2.3 T Y P E S O F C E L L S * 13* 2.4 T Y P
E S O F C O R R O S I O N D A M A G E 15* R E F E R E N C E
S 18* G E N E R A L R E F E R E N C E S 19* P R O B L E M S
19* 3 T H E R M O D Y N A M I C S : CORROSION T E N D E N C Y A N
D * ELECTRODE POTENTIALS 21* 3.1 C H A N G E O F G I B B S F
R E E E N E R G Y * 21* 3.2 M E A S U R I N G T H E E M F
O F A C E L L * 22* 3.3 C A L C U L A T I N G T H E H A L
F - C E L L P O T E N T I A L - T H E N E R N S T E Q U A T I O
N 22* 3.4 T H E H Y D R O G E N E L E C T R O D E A N D T
H E S T A N D A R D H Y D R O G E N S C A L E 24* 3.5* C O N
V E N T I O N O F SIGNS A N D C A L C U L A T I O N O F E
M F 25* V * VI* CONTENTS 3.6 M E A S U R E M E N T O F P H *
28* 3.7 T H E O X Y G E N E L E C T R O D E A N D D I F F
E R E N T I A L A E R A T I O N C E L L 28* 3.8 T H E E M F
A N D G A L V A N I C S E R I E S * 30* 3.9 L I Q U I D J
U N C T I O N P O T E N T I A L S * 33* 3.10 R E F E R E N C E
E L E C T R O D E S * 34* 3.10.1* C A L O M E L R E F E R E N C E
E L E C T R O D E 35* 3.10.2* S I L V E R - S I L V E R C H L O
R I D E R E F E R E N C E E L E C T R O D E 36* 3.10.3* S A T U
R A T E D C O P P E R - C O P P E R S U L F A T E R E F E R E N
C E * E L E C T R O D E 36* R E F E R E N C E S 37* G E N E R A
L R E F E R E N C E S 38* P R O B L E M S 38* A N S W E R S
T O P R O B L E M S 40* 4 T H E R M O D Y N A M I C S : P O U R
B A I X D I A G R A M S * 43* 4.1 B A S I S O F P O U R B A
I X D I A G R A M S * 43* 4.2 P O U R B A I X D I A G R A M
F O R W A T E R * 44* 4.3 P O U R B A I X D I A G R A M F O
R I R O N * 45* 4.4 P O U R B A I X D I A G R A M F O R A
L U M I N U M * 47* 4.5 P O U R B A I X D I A G R A M F O R
M A G N E S I U M * 48* 4.6 L I M I T A T I O N S O F P O U R B
A I X D I A G R A M S 49* R E F E R E N C E S 50* G E N E R A L
R E F E R E N C E S 50* P R O B L E M S 50* A N S W E R S T
O P R O B L E M 51* 5 KINETICS : P O L A R I Z A T I O N A N D
CORROSION RATES* 53* 5.1 P O L A R I Z A T I O N * 53* 5.2 T H E
P O L A R I Z E D C E L L * 54* 5.3 H O W P O L A R I Z A T
I O N IS M E A S U R E D * 56* 5.3.1* C A L C U L A T I O N O F
IR D R O P IN A N E L E C T R O L Y T E 58* 5.4 C A U S E S
O F P O L A R I Z A T I O N * 58* 5.5 H Y D R O G E N O V E R P
O T E N T I A L * 63* 5.6 P O L A R I Z A T I O N D I A G R A M S
O F C O R R O D I N G M E T A L S * 66* 5.7 I N F L U E N C
E O F P O L A R I Z A T I O N O N C O R R O S I O N R A T
E * 68* 5.8 C A L C U L A T I O N O F C O R R O S I O N R A
T E S F R O M P O L A R I Z A T I O N D A T A 71* 5.9 A N O
D E - C A T H O D E A R E A R A T I O * 73* 5.10 E L E C T R O
C H E M I C A L I M P E D A N C E S P E C T R O S C O P Y * 75*
C O N T E N T S VII 5.11 T H E O R Y O F C A T H O D I C P R
O T E C T I O N 77* R E F E R E N C E S 7 9 * G E N E R A L
R E F E R E N C E S 8 0 * P R O B L E M S 80* A N S W E R S
T O P R O B L E M S 82* 6 PASSIVITY 8 3 * 6.1 D E F I N I T
I O N 83* 6.2 C H A R A C T E R I S T I C S OF P A S S I V A T I O
N A N D T H E F L A D E P O T E N T I A L 84* 6.3 B E H A
V I O R O F P A S S I V A T O R S 88* 6.3.1 P A S S I V A T I O
N O F L R O N BY H N 0 89* 1 * 6.4 A N O D I C P R O T
E C T I O N A N D T R A N S P A S S I V I T Y 90* 6.5 T H E O R
I E S O F P A S S I V I T Y 92* 6.5.1 M O R E S T A B L E
P A S S I V E F I L M S W I T H T I M E 95* 6.5.2 A C T I O
N O F C H L O R I D E I O N S A N D P A S S I V E - A C T
I V E C E L L S 96* 6.6 C R I T I C A L P I T T I N G P O T
E N T I A L 97* 6.7 C R I T I C A L P I T T I N G T E M P E R A
T U R E 99* 6.8 P A S S I V I T Y O F A L L O Y S 100* 6.8.1
N I C K E L - C O P P E R A L L O Y S 103* 6.8.2 O T H E R A L
L O Y S 108* 6.9 E F F E C T O F C A T H O D I C P O L A R I
Z A T I O N A N D C A T A L Y S I S 108* R E F E R E N C E S
109* G E N E R A L R E F E R E N C E S 111* P R O B L E M S
112* A N S W E R S T O P R O B L E M S 113* 7 IRON A N D
STEEL 1 1 5 * 7.1 I N T R O D U C T I O N 115* 7.2 A Q U E O U S
E N V I R O N M E N T S 116* 7.2.1 E F F E C T O F D I S S O
L V E D O X Y G E N 116* 7.2.2 E F F E C T O F T E M P E R A
T U R E 120* 7.2.3 E F F E C T O F P R 120* 7 . 2 . 4 E F
F E C T O F G A L V A N I C C O U P L I N G 127* 7.2.5 E F F
E C T O F V E L O C I T Y O N C O R R O S I O N IN N A T
U R A L W A T E R S 129* 7.2.6 E F F E C T O F D I S S O L V
E D S A L T S 131* 7.3 M E T A L L U R G I C A L F A C T O R S
138* 7.3.1 V A R I E T I E S O F L R O N A N D S T E E L
138* 7.3.2 E F F E C T S O F C O M P O S I T I O N 138*
VIII* C O N T E N T S 7.3.3* E F F E C T O F H E A T T R E A
T M E N T 142* 7.4 S T E E L R E I N F O R C E M E N T S I N
C O N C R E T E 143* R E F E R E N C E S 145* G E N E R A L R E
F E R E N C E S 147* P R O B L E M S 147* A N S W E R S T O
P R O B L E M S 148* 8 EFFECT OF STRESS* 1 4 9 * 8.1 C O L D
W O R K I N G * 149* 8.2 S T R E S S - C O R R O S I O N C R A C K
I N G * 150* 8.2.1* I R O N A N D S T E E L 151* 8.3* M E C
H A N I S M O F S T R E S S - C O R R O S I O N C R A C K I N G
O F S T E E L A N D * O T H E R M E T A L S 156*
8.3.1* E L E C T R O C H E M I C A L D I S S O L U T I O N 157*
8.3.2* F I L M - I N D U C E D C L E A V A G E 158* 8.3.3* A D S O
R P T I O N - I N D U C E D L O C A L I Z E D SLIP 158* 8.3.4* S T
R E S S S O R P T I O N 158* 8.3.5* I N I T I A T I O N O F
S T R E S S - C O R R O S I O N C R A C K I N G A N D * C R I T
I C A L P O T E N T I A L S 161* 8.3.6* R A T E O F C R A C
K G R O W T H ( F R A C T U R E M E C H A N I C S ) 162* 8.4
H Y D R O G E N D A M A G E * 166* 8.4.1* M E C H A N I S M O F
H Y D R O G E N D A M A G E 167* 8.4.2* E F F E C T O F M
E T A L F L A W S 170* 8.5 R A D I A T I O N D A M A G E *
172* 8.6 C O R R O S I O N F A T I G U E * 173* 8.6.1* C R I T I C
A L M I N I M U M C O R R O S I O N R A T E S 177* 8.6.2* R
E M E D I A L M E A S U R E S 178* 8.6.3* M E C H A N I S M O F
C O R R O S I O N F A T I G U E 179* 8.7 F R E T T I N G C O
R R O S I O N * 180* 8.7.1* M E C H A N I S M O F F R E T T I N
G C O R R O S I O N 182* 8.7.2 R E M E D I A L M E A S U R E S
184* R E F E R E N C E S 185* G E N E R A L R E F E R E N C E S
188* P R O B L E M S 190* A N S W E R S T O P R O B L E M S
190* 9 ATMOSPHERIC CORROSION 9.1 I N T R O D U C T I O N * 191*
9.2 T Y P E S O F A T M O S P H E R E S * 192* 191 C O N T E N
T S * IX 9.3* C O R R O S I O N - P R O D U C T F I L M S 192*
9.4* F A C T O R S I N F T U E N C I N G C O R R O S I V I T Y
O F T H E A T M O S P H E R E 195* 9.4.1 P A R T I C U L A T E
M A T T E R * 196* 9.4.2 G A S E S IN T H E A T M O S P H E
R E * 197* 9.4.3 M O I S T U R E ( C R I T I C A L H U M I D I
T Y ) * 199* 9.5 R E M E D I A L M E A S U R E S 201* R E F E R
E N C E S 202* G E N E R A L R E F E R E N C E S 203* P R O B L
E M S 204* 10 ( O R R O S I O N IN SOLLS* 2 0 5 * 10.1* I N T R
O D U C T I O N 205* 10.2* F A C T O R S A F F E C T I N G T H
E C O R R O S I V I T Y O F S O I L S 206* 10.3* B U R E A U
O F S T A N D A R D S T E S T S 207* 10.3.1 P I T T I N G
C H A R A C T E R I S T I C S * 208* 10.4* S T R E S S - C O R R O S
I O N C R A C K I N G 2 1 0 * 10.5 R E M E D I A L M E A S U
R E S 211* R E F E R E N C E S 212* G E N E R A L R E F E R E N
C E S 212* 11 O X I D A T I O N * 2 1 5 * 11.1* I N T R O D U C
T I O N 215* 11.2* I N I T I A L S T A G E S 216* 11.3* T H E R
M O D Y N A M I C S O F O X I D A T I O N : F R E E * E N E
R G Y - T E M P E R A T U R E D I A G R A M 218* 11.4* P R O T E C
T I V E A N D N O N P R O T E C T I V E S C A L E S 218*
11.4.1 T H R E E E Q U A T I O N S O F O X I D A T I O N *
220* 11.5 W A G N E R T H E O R Y O F O X I D A T I O N *
223* 11.6* O X I D E P R O P E R T I E S A N D O X I D A T I O
N 224* 11.7* G A L V A N I C E F F E C T S A N D E L E C T R
O L Y S I S O F O X I D E S 227* 11.8* H O T A S H C O R
R O S I O N 229* 11.9* H O T C O R R O S I O N 229* 11.10 O X I
D A T I O N O F C O P P E R * 230* 11.10.1 I N T E R N A L O
X I D A T I O N * 231* 11.10.2 R E A C T I O N W I T H H Y D R
O G E N ( H Y D R O G E N D I S E A S E ) 231* 11.11* O X I
D A T I O N O F I R O N A N D I R O N A L L O Y S 232*
11.12 L I F E T E S T F O R O X I D A T I O N - R E S I S T A N
T W I R E S * 233* 11.13 O X I D A T I O N - R E S I S T A N T
A L L O Y S * 234* 11.13.1 R E A C T I V E E L E M E N T E F F
E C T ( R E E ) * 234* X C O N T E N T S 11.13.2 C H R O M I U
M - I R O N A L L O Y S 235* 11.13.3 C H R O M I U M - A L U M I N
U M - L R O N A L L O Y S 236* 11.13.4 N I C K E L A N D N I
C K E L A L L O Y S 236* 11.13.5 F U R N A C E W I N D I N G S
237* R E F E R E N C E S 237* G E N E R A L R E F E R E N C E S
239* P R O B L E M S 239* A N S W E R S T O P R O B L E M S
240* 12 STRAY-CURRENT CORROSION 241* 12.1 I N T R O D U C T I O N
241* 12.2 S O U R C E S O F S T R A Y C U R R E N T S 242*
12.3 Q U A N T I T A T I V E D A M A G E B Y S T R A Y C U R
R E N T S 244* 12.4 D E T E C T I O N O F S T R A Y C U R R
E N T S 245* 12.5 S O I L - R E S I S T I V I T Y M E A S U R E M
E N T 246* 12.6 M E A N S F O R R E D U C I N G S T R A Y -
C U R R E N T C O R R O S I O N 246* R E F E R E N C E S 247* G
E N E R A L R E F E R E N C E S 247* P R O B L E M S 247* A N S
W E R S T O P R O B L E M S 249* 13 CATHODIC PROTECTION 251*
13.1 I N T R O D U C T I O N 251* 13.2 B R I E F H I S T O R Y
252* 13.3 H O W A P P L I E D 253* 13.3.1 S A C R I F I C I A L
A N O D E S 254* 13.4 C O M B I N E D U S E W I T H C O A T
I N G S 255* 13.5 M A G N I T U D E O F C U R R E N T R E Q
U I R E D 257* 13.6 A N O D E M A T E R I A L S A N D B A C
K F I L L 258* 13.6.1 O V E R P R O T E C T I O N 259* 13.7 C R I
T E R I A O F P R O T E C T I O N 260* 13.7.1 P O T E N T I A L
M E A S U R E M E N T S 260* 13.7.2 D O U B T F U L C R I T E R
I A 262* 13.7.3 P O S I T I O N O F R E F E R E N C E E L E
C T R O D E 262* 13.8 E C O N O M I C S O F C A T H O D I C
P R O T E C T I O N 263* 13.9 A N O D I C P R O T E C T I O N
263* R E F E R E N C E S 265* G E N E R A L R E F E R E N C E S
265* L CONTENTS* XI PROBLEMS 266* ANSWERS TO PROBLEMS 267* 14 METALLIC
COATINGS* 269* 14.1 METHODS OF APPLICATION* 269* 14.2 CLASSIFICATION OF
COATINGS* 271* 14.3 SPECIFIC METAL COATINGS* 272* 14.3.1* NICKEL
COATINGS 272* 14.3.2* LEAD COATINGS 274* 14.3.3* ZINC COATINGS 274*
14.3.4* CADMIUM COATINGS 276* 14.3.5* TIN COATINGS 277* 14.3.6*
CHROMIUM-PLATED STEEL FOR CONTAINERS 279* 14.3.7 ALUMINUM COATINGS 280*
REFERENCES 281* GENERAL REFERENCES 282* 15 INORGANIC COATINGS* 285* 15.1
VITREOUS ENAMELS* 285* 15.2 PORTLAND CEMENT COATINGS* 286* 15.3 CHEMICAL
CONVERSION COATINGS 286* REFERENCES 288* GENERAL REFERENCES 288* 16
ORGANIC COATINGS* 289* 16.1 LNTRODUCTION* 289* 16.2 PAINTS* 289* 16.3
REQUIREMENTS FOR CORROSION PROTECTION* 291* 16.4 METAL SURFACE
PREPARATION* 293* 16.4.1* CLEANING ALL DIRT, OILS, AND GREASES FROM* THE
SURFACE 293* 16.4.2* COMPLETE REMOVAL OF RUST AND MILL SCALE 294* 16.5
APPLYING PAINT COATINGS* 295* 16.5.1* WASH PRIMER 296* 16.5.2* PAINTING
OF ALUMINUM AND ZINC 296* 16.6 FILIFORM CORROSION* 296* 16.6.1* THEORY
OF FILIFORM CORROSION 298* 16.7 PLASTIC LININGS* 299* XII CONTENTS
REFERENCES 300* GENERAL REFERENCES 301* 17* INHIBITORS AND PASSIVATORS
303* 17.1 INTRODUCTION* 303* 17.2 PASSIVATORS* 304* 17.2.1* MECHANISM OI
PASSIVATION 304* 17.2.2* APPLICATIONS OI PASSIVATORS 308* 17.3 PICKLING
INHIBITORS* 310* 17.3.1* APPLICATIONS OF PICKLING INHIBITORS 312* 17.4
SLUSHING COMPOUNDS* 313* 17.5 VAPOR-PHASE INHIBITORS* 313* 17.5.1
INHIBITOR TO REDUCE TARNISHING OF COPPER 314* REFERENCES 315* GENERAL
REFERENCES 316* 18* TREATMENT OF WATER AND STEAM SYSTEMS 317* 18.1
DEAERATION AND DEACTIVATION* 317* 18.2 HOT- AND COLD-WATER TREATMENT*
321* 18.2.1* COOLING WATERS 322* 18.3 BOILER-WATER TREATMENT* 323*
18.3.1* BOILER CORROSION 323* 18.3.2* BOILER-WATER TREATMENT FOR
CORROSION CONTROL 326* 18.3.3 MECHANISMS 328* REIERENCES 330* GENERAL
REFERENCES 331* 19* ALLOYING FOR CORROSION RESISTANCE;* STAINLESS STEELS
333* 19.1 INTRODUCTION* 333* 19.2 STAINLESS STEELS* 335* 19.2.1* BRIEF
HISTORY 336* 19.2.2* CLASSES AND TYPES 337* 19.2.3* INTERGRANULAR
CORROSION 343* 19.2.4* PITTING AND CREVICE CORROSION 350* 19.2.5*
STRESS-CORROSION CRACKING AND HYDROGEN CRACKING 354* 19.2.6* CRACKING OI
SENSITIZED AUSTENITIC ALLOYS IN* POLYTHIONIC ACIDS 359* CONTENTS* XIII
19.2.7* GALVANIC COUPLING AND GENERAL CORROSION* RESISTANCE 361*
REFERENCES 362* GENERAL REFERENCES 365* 20 COPPER AND COPPER ALLOYS*
367* 20.1 COPPER* 367* 20.1.1* CORROSION IN NATURAL WATERS 369* 20.2
COPPER ALLOYS* 371* 20.2.1* COPPER-ZINC ALLOYS (BRASSES) 371* 20.2.2*
DEALLOYING/DEZINCIFICATION 372* 20.2.3* STRESS-CORROSION CRACKING
(SEASON CRACKING) 374* 20.2.4* CONDENSER TUBE ALLOYS INCLUDING*
COPPER-NICKEL ALLOYS 378* REFERENCES 379* GENERAL REFERENCES 381*
PROBLEMS 381* ANSWERS TO PROBLEMS 381* 21 ALUMINUM AND ALUMINUM ALLOYS*
383* 21.1 ALUMINUM* 383* 21.1.1* CLAD ALLOYS 384* 21.1.2* CORROSION IN
WATER AND STEAM 384* 21.1.3* EFFECT OF PH 387* 21.1.4* CORROSION
CHARACTERISTICS 388* 21.1.5* GALVANIC COUPLING 392* 21.2 ALUMINUM
ALLOYS* 393* 21.2.1 STRESS-CORROSION CRACKING 394* REFERENCES 396*
GENERAL REFERENCES 397* 22 MAGNESIUM AND MAGNESIUM ALLOYS* 399* 22.1
INTRODUCTION* 399* 22.2 MAGNESIUM* 399* 22.3 MAGNESIUM ALLOYS* 400*
22.3.1* STRESS-CORROSION CRACKING 402* 22.3.2* COATINGS 403* 22.4
SUMMARY* 404* XIV* CONTENTS REFERENCES* GENERAL REFERENCES* 23 NICKEL
AND NICKEL ALLOYS 23.1 INTRODUCTION 23.2 NICKEL 23.3 NICKEL ALLOYS
23.3.1* GENERAL BEHAVIOR 23.3.2* NI-CU SYSTEM: ALLOY 400-70% NI, 30% CU
23.3.3* NI-CR-FE SYSTEM: ALLOY 600-76% NI, 16% CR, 7% FE 23.3.4* NI-MO
SYSTEM: ALLOY B-60% NI, 30% MO, 5% FE 23.3.5* NI-CR-FE-MO-CU SYSTEM:
ALLOY G-NI, 22% CR, 20% FE, 6.5% MO, 2% CU 23.3.6* NI-CR-MO SYSTEM:
ALLOY C-54% NI, 15% CR, 16% MO, 4% W, 5% FE 23.3.7 NI-FE-CR SYSTEM:
ALLOY 825-NI, 31 % FE, 22% CR REFERENCES GENERAL REFERENCES 24 COBALT
AND COBALT ALLOYS 24.1 INTRODUCTION 24.2 COBALT ALLOYS* REFERENCES*
GENERAL REFERENCES* 25 TITANIUM 25.1 TITANIUM 25.2 TITANIUM ALLOYS 25.3
PITTING AND CREVICE CORROSION 25.4 INTERGRANULAR CORROSION AND
STRESS-CORROSION CRACKING REFERENCES GENERAL REFERENCES PROBLEM 26
ZLRCONIUM 26.1 INTRODUCTION 26.2 ZIRCONIUM ALLOYS 405* 405* 407* 407*
408* 411* 411* 414* 414* 415* 416* 416* 417* 417* 418* 419* 419* 420*
423* 423* 425* 425* 427* 429* 430* 432* 434* 434* 435* 435* 436* ,* 1
CONTENTS* XV 26.3 BEHAVIAR IN HOT WATER AND STEAM 437 REFERENCES 439
GENERAL REFERENCES 440 27 TANTALUM* 441 27.1* INTRODUCTION 441 27.2
CORROSION BEHAVIAR 441 REFERENCES 443 GENERAL REFERENCE 443 28 LEAD* 445
28.1* INTRODUCTION 445 28.2* CORROSION BEHAVIAR OF LEAD AND LEAD ALLOYS
446 28.2.1 LEAD-ACID BATTERY* 447 28.3 SUMMARY 448 REFERENCES 449
GENERAL REFERENCES 449 29 APPENDIX* 451 29.1* ACTIVITY AND ACTIVITY
COEFFICIENTS OF STRONG ELECTROLYTES 451 29.2* DERIVATION OF STERN-GEARY
EQUATION FAR CALCULATING CORROSION RATES FROM POLARIZATION DATA OBTAINED
AT LOW CURRENT DENSITIES 456 29.2.1 THE GENERAL EQUATION* 458 29.3*
DERIVATION OF EQUATION EXPRESSING THE SATURATION INDEX OF A NATURAL
WATER 461 29.4* DERIVATION OF POTENTIAL CHANGE ALONG A CATHODICALLY
PROTECTED PIPELINE 467 29.5* DERIVATION OF THE EQUATION FAR POTENTIAL
DROP ALONG THE SOIL SURFACE CREATED BY CURRENT ENTERING AR LEAVING A
BURIED PIPE 469 29.6* DERIVATION OF THE EQUATION FAR DETERMINING
RESISTIVITY OF SOIL BY FOUR-ELECTRODE METHOD 470 29.7* DERIVATION OF THE
EQUATION EXPRESSING WEIGHT LOSS BY FRETTING CORROSION 471 29.8*
CONVERSION FACTARS 474 29.8.1 ADDITIONAL CONVERSION FACTORS* 475 29.8.2
CURRENT DENSITY EQUIVALENT TO A CORROSION RATE CLL~D * 4~ XVI 479
CONTENTS 476* 29.9 STANDARD POTENTIALS 29.10* NOTATION AND ABBREVIATIONS
476* 478* REFERENCES INDEX
|
adam_txt |
********** ********* * * * * * * * * * * * * * * * * * * * * * * * * * *
* * * * * * * * *** *********** * * * **** * * * * * * * * * * * * * * *
* * * * * * * * * * * * * ****** * * * * * * * * * * * * * * * * * * * *
* * * * * * * * * * * * * * * * * * * * * * * * * * * **** * * * * * * *
* * * * * * * * * * * * * * * * * * * * * **** * * * * * * * * * * * * *
* * * * * * * **** * * * * * * * * * * * * * * * * * * * * * * * *
****** * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
****** * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
* * * * * 2 ELECTROCHEMICAL M E C H A N I S M S * 9 * 2.1 T H E
D R Y - C E L L A N A L O G Y A N D F A R A D A Y ' S L A W
* 9 * 2.2 D E F I N I T I O N O F A N O D E A N D C A
T H O D E * 11* 2.3 T Y P E S O F C E L L S * 13* 2.4 T Y P
E S O F C O R R O S I O N D A M A G E 15* R E F E R E N C E
S 18* G E N E R A L R E F E R E N C E S 19* P R O B L E M S
19* 3 T H E R M O D Y N A M I C S : CORROSION T E N D E N C Y A N
D * ELECTRODE POTENTIALS 21* 3.1 C H A N G E O F G I B B S F
R E E E N E R G Y * 21* 3.2 M E A S U R I N G T H E E M F
O F A C E L L * 22* 3.3 C A L C U L A T I N G T H E H A L
F - C E L L P O T E N T I A L - T H E N E R N S T E Q U A T I O
N 22* 3.4 T H E H Y D R O G E N E L E C T R O D E A N D T
H E S T A N D A R D H Y D R O G E N S C A L E 24* 3.5* C O N
V E N T I O N O F SIGNS A N D C A L C U L A T I O N O F E
M F 25* V * VI* CONTENTS 3.6 M E A S U R E M E N T O F P H *
28* 3.7 T H E O X Y G E N E L E C T R O D E A N D D I F F
E R E N T I A L A E R A T I O N C E L L 28* 3.8 T H E E M F
A N D G A L V A N I C S E R I E S * 30* 3.9 L I Q U I D J
U N C T I O N P O T E N T I A L S * 33* 3.10 R E F E R E N C E
E L E C T R O D E S * 34* 3.10.1* C A L O M E L R E F E R E N C E
E L E C T R O D E 35* 3.10.2* S I L V E R - S I L V E R C H L O
R I D E R E F E R E N C E E L E C T R O D E 36* 3.10.3* S A T U
R A T E D C O P P E R - C O P P E R S U L F A T E R E F E R E N
C E * E L E C T R O D E 36* R E F E R E N C E S 37* G E N E R A
L R E F E R E N C E S 38* P R O B L E M S 38* A N S W E R S
T O P R O B L E M S 40* 4 T H E R M O D Y N A M I C S : P O U R
B A I X D I A G R A M S * 43* 4.1 B A S I S O F P O U R B A
I X D I A G R A M S * 43* 4.2 P O U R B A I X D I A G R A M
F O R W A T E R * 44* 4.3 P O U R B A I X D I A G R A M F O
R I R O N * 45* 4.4 P O U R B A I X D I A G R A M F O R A
L U M I N U M * 47* 4.5 P O U R B A I X D I A G R A M F O R
M A G N E S I U M * 48* 4.6 L I M I T A T I O N S O F P O U R B
A I X D I A G R A M S 49* R E F E R E N C E S 50* G E N E R A L
R E F E R E N C E S 50* P R O B L E M S 50* A N S W E R S T
O P R O B L E M 51* 5 KINETICS : P O L A R I Z A T I O N A N D
CORROSION RATES* 53* 5.1 P O L A R I Z A T I O N * 53* 5.2 T H E
P O L A R I Z E D C E L L * 54* 5.3 H O W P O L A R I Z A T
I O N IS M E A S U R E D * 56* 5.3.1* C A L C U L A T I O N O F
IR D R O P IN A N E L E C T R O L Y T E 58* 5.4 C A U S E S
O F P O L A R I Z A T I O N * 58* 5.5 H Y D R O G E N O V E R P
O T E N T I A L * 63* 5.6 P O L A R I Z A T I O N D I A G R A M S
O F C O R R O D I N G M E T A L S * 66* 5.7 I N F L U E N C
E O F P O L A R I Z A T I O N O N C O R R O S I O N R A T
E * 68* 5.8 C A L C U L A T I O N O F C O R R O S I O N R A
T E S F R O M P O L A R I Z A T I O N D A T A 71* 5.9 A N O
D E - C A T H O D E A R E A R A T I O * 73* 5.10 E L E C T R O
C H E M I C A L I M P E D A N C E S P E C T R O S C O P Y * 75*
C O N T E N T S VII 5.11 T H E O R Y O F C A T H O D I C P R
O T E C T I O N 77* R E F E R E N C E S 7 9 * G E N E R A L
R E F E R E N C E S 8 0 * P R O B L E M S 80* A N S W E R S
T O P R O B L E M S 82* 6 PASSIVITY 8 3 * 6.1 D E F I N I T
I O N 83* 6.2 C H A R A C T E R I S T I C S OF P A S S I V A T I O
N A N D T H E F L A D E P O T E N T I A L 84* 6.3 B E H A
V I O R O F P A S S I V A T O R S 88* 6.3.1 P A S S I V A T I O
N O F L R O N BY H N 0 89* 1 * 6.4 A N O D I C P R O T
E C T I O N A N D T R A N S P A S S I V I T Y 90* 6.5 T H E O R
I E S O F P A S S I V I T Y 92* 6.5.1 M O R E S T A B L E
P A S S I V E F I L M S W I T H T I M E 95* 6.5.2 A C T I O
N O F C H L O R I D E I O N S A N D P A S S I V E - A C T
I V E C E L L S 96* 6.6 C R I T I C A L P I T T I N G P O T
E N T I A L 97* 6.7 C R I T I C A L P I T T I N G T E M P E R A
T U R E 99* 6.8 P A S S I V I T Y O F A L L O Y S 100* 6.8.1
N I C K E L - C O P P E R A L L O Y S 103* 6.8.2 O T H E R A L
L O Y S 108* 6.9 E F F E C T O F C A T H O D I C P O L A R I
Z A T I O N A N D C A T A L Y S I S 108* R E F E R E N C E S
109* G E N E R A L R E F E R E N C E S 111* P R O B L E M S
112* A N S W E R S T O P R O B L E M S 113* 7 IRON A N D
STEEL 1 1 5 * 7.1 I N T R O D U C T I O N 115* 7.2 A Q U E O U S
E N V I R O N M E N T S 116* 7.2.1 E F F E C T O F D I S S O
L V E D O X Y G E N 116* 7.2.2 E F F E C T O F T E M P E R A
T U R E 120* 7.2.3 E F F E C T O F P R 120* 7 . 2 . 4 E F
F E C T O F G A L V A N I C C O U P L I N G 127* 7.2.5 E F F
E C T O F V E L O C I T Y O N C O R R O S I O N IN N A T
U R A L W A T E R S 129* 7.2.6 E F F E C T O F D I S S O L V
E D S A L T S 131* 7.3 M E T A L L U R G I C A L F A C T O R S
138* 7.3.1 V A R I E T I E S O F L R O N A N D S T E E L
138* 7.3.2 E F F E C T S O F C O M P O S I T I O N 138*
VIII* C O N T E N T S 7.3.3* E F F E C T O F H E A T T R E A
T M E N T 142* 7.4 S T E E L R E I N F O R C E M E N T S I N
C O N C R E T E 143* R E F E R E N C E S 145* G E N E R A L R E
F E R E N C E S 147* P R O B L E M S 147* A N S W E R S T O
P R O B L E M S 148* 8 EFFECT OF STRESS* 1 4 9 * 8.1 C O L D
W O R K I N G * 149* 8.2 S T R E S S - C O R R O S I O N C R A C K
I N G * 150* 8.2.1* I R O N A N D S T E E L 151* 8.3* M E C
H A N I S M O F S T R E S S - C O R R O S I O N C R A C K I N G
O F S T E E L A N D * O T H E R M E T A L S 156*
8.3.1* E L E C T R O C H E M I C A L D I S S O L U T I O N 157*
8.3.2* F I L M - I N D U C E D C L E A V A G E 158* 8.3.3* A D S O
R P T I O N - I N D U C E D L O C A L I Z E D SLIP 158* 8.3.4* S T
R E S S S O R P T I O N 158* 8.3.5* I N I T I A T I O N O F
S T R E S S - C O R R O S I O N C R A C K I N G A N D * C R I T
I C A L P O T E N T I A L S 161* 8.3.6* R A T E O F C R A C
K G R O W T H ( F R A C T U R E M E C H A N I C S ) 162* 8.4
H Y D R O G E N D A M A G E * 166* 8.4.1* M E C H A N I S M O F
H Y D R O G E N D A M A G E 167* 8.4.2* E F F E C T O F M
E T A L F L A W S 170* 8.5 R A D I A T I O N D A M A G E *
172* 8.6 C O R R O S I O N F A T I G U E * 173* 8.6.1* C R I T I C
A L M I N I M U M C O R R O S I O N R A T E S 177* 8.6.2* R
E M E D I A L M E A S U R E S 178* 8.6.3* M E C H A N I S M O F
C O R R O S I O N F A T I G U E 179* 8.7 F R E T T I N G C O
R R O S I O N * 180* 8.7.1* M E C H A N I S M O F F R E T T I N
G C O R R O S I O N 182* 8.7.2 R E M E D I A L M E A S U R E S
184* R E F E R E N C E S 185* G E N E R A L R E F E R E N C E S
188* P R O B L E M S 190* A N S W E R S T O P R O B L E M S
190* 9 ATMOSPHERIC CORROSION 9.1 I N T R O D U C T I O N * 191*
9.2 T Y P E S O F A T M O S P H E R E S * 192* 191 C O N T E N
T S * IX 9.3* C O R R O S I O N - P R O D U C T F I L M S 192*
9.4* F A C T O R S I N F T U E N C I N G C O R R O S I V I T Y
O F T H E A T M O S P H E R E 195* 9.4.1 P A R T I C U L A T E
M A T T E R * 196* 9.4.2 G A S E S IN T H E A T M O S P H E
R E * 197* 9.4.3 M O I S T U R E ( C R I T I C A L H U M I D I
T Y ) * 199* 9.5 R E M E D I A L M E A S U R E S 201* R E F E R
E N C E S 202* G E N E R A L R E F E R E N C E S 203* P R O B L
E M S 204* 10 ( O R R O S I O N IN SOLLS* 2 0 5 * 10.1* I N T R
O D U C T I O N 205* 10.2* F A C T O R S A F F E C T I N G T H
E C O R R O S I V I T Y O F S O I L S 206* 10.3* B U R E A U
O F S T A N D A R D S T E S T S 207* 10.3.1 P I T T I N G
C H A R A C T E R I S T I C S * 208* 10.4* S T R E S S - C O R R O S
I O N C R A C K I N G 2 1 0 * 10.5 R E M E D I A L M E A S U
R E S 211* R E F E R E N C E S 212* G E N E R A L R E F E R E N
C E S 212* 11 O X I D A T I O N * 2 1 5 * 11.1* I N T R O D U C
T I O N 215* 11.2* I N I T I A L S T A G E S 216* 11.3* T H E R
M O D Y N A M I C S O F O X I D A T I O N : F R E E * E N E
R G Y - T E M P E R A T U R E D I A G R A M 218* 11.4* P R O T E C
T I V E A N D N O N P R O T E C T I V E S C A L E S 218*
11.4.1 T H R E E E Q U A T I O N S O F O X I D A T I O N *
220* 11.5 W A G N E R T H E O R Y O F O X I D A T I O N *
223* 11.6* O X I D E P R O P E R T I E S A N D O X I D A T I O
N 224* 11.7* G A L V A N I C E F F E C T S A N D E L E C T R
O L Y S I S O F O X I D E S 227* 11.8* H O T A S H C O R
R O S I O N 229* 11.9* H O T C O R R O S I O N 229* 11.10 O X I
D A T I O N O F C O P P E R * 230* 11.10.1 I N T E R N A L O
X I D A T I O N * 231* 11.10.2 R E A C T I O N W I T H H Y D R
O G E N ( " H Y D R O G E N D I S E A S E " ) 231* 11.11* O X I
D A T I O N O F I R O N A N D I R O N A L L O Y S 232*
11.12 L I F E T E S T F O R O X I D A T I O N - R E S I S T A N
T W I R E S * 233* 11.13 O X I D A T I O N - R E S I S T A N T
A L L O Y S * 234* 11.13.1 R E A C T I V E E L E M E N T E F F
E C T ( R E E ) * 234* X C O N T E N T S 11.13.2 C H R O M I U
M - I R O N A L L O Y S 235* 11.13.3 C H R O M I U M - A L U M I N
U M - L R O N A L L O Y S 236* 11.13.4 N I C K E L A N D N I
C K E L A L L O Y S 236* 11.13.5 F U R N A C E W I N D I N G S
237* R E F E R E N C E S 237* G E N E R A L R E F E R E N C E S
239* P R O B L E M S 239* A N S W E R S T O P R O B L E M S
240* 12 STRAY-CURRENT CORROSION 241* 12.1 I N T R O D U C T I O N
241* 12.2 S O U R C E S O F S T R A Y C U R R E N T S 242*
12.3 Q U A N T I T A T I V E D A M A G E B Y S T R A Y C U R
R E N T S 244* 12.4 D E T E C T I O N O F S T R A Y C U R R
E N T S 245* 12.5 S O I L - R E S I S T I V I T Y M E A S U R E M
E N T 246* 12.6 M E A N S F O R R E D U C I N G S T R A Y -
C U R R E N T C O R R O S I O N 246* R E F E R E N C E S 247* G
E N E R A L R E F E R E N C E S 247* P R O B L E M S 247* A N S
W E R S T O P R O B L E M S 249* 13 CATHODIC PROTECTION 251*
13.1 I N T R O D U C T I O N 251* 13.2 B R I E F H I S T O R Y
252* 13.3 H O W A P P L I E D 253* 13.3.1 S A C R I F I C I A L
A N O D E S 254* 13.4 C O M B I N E D U S E W I T H C O A T
I N G S 255* 13.5 M A G N I T U D E O F C U R R E N T R E Q
U I R E D 257* 13.6 A N O D E M A T E R I A L S A N D B A C
K F I L L 258* 13.6.1 O V E R P R O T E C T I O N 259* 13.7 C R I
T E R I A O F P R O T E C T I O N 260* 13.7.1 P O T E N T I A L
M E A S U R E M E N T S 260* 13.7.2 D O U B T F U L C R I T E R
I A 262* 13.7.3 P O S I T I O N O F R E F E R E N C E E L E
C T R O D E 262* 13.8 E C O N O M I C S O F C A T H O D I C
P R O T E C T I O N 263* 13.9 A N O D I C P R O T E C T I O N
263* R E F E R E N C E S 265* G E N E R A L R E F E R E N C E S
265* L CONTENTS* XI PROBLEMS 266* ANSWERS TO PROBLEMS 267* 14 METALLIC
COATINGS* 269* 14.1 METHODS OF APPLICATION* 269* 14.2 CLASSIFICATION OF
COATINGS* 271* 14.3 SPECIFIC METAL COATINGS* 272* 14.3.1* NICKEL
COATINGS 272* 14.3.2* LEAD COATINGS 274* 14.3.3* ZINC COATINGS 274*
14.3.4* CADMIUM COATINGS 276* 14.3.5* TIN COATINGS 277* 14.3.6*
CHROMIUM-PLATED STEEL FOR CONTAINERS 279* 14.3.7 ALUMINUM COATINGS 280*
REFERENCES 281* GENERAL REFERENCES 282* 15 INORGANIC COATINGS* 285* 15.1
VITREOUS ENAMELS* 285* 15.2 PORTLAND CEMENT COATINGS* 286* 15.3 CHEMICAL
CONVERSION COATINGS 286* REFERENCES 288* GENERAL REFERENCES 288* 16
ORGANIC COATINGS* 289* 16.1 LNTRODUCTION* 289* 16.2 PAINTS* 289* 16.3
REQUIREMENTS FOR CORROSION PROTECTION* 291* 16.4 METAL SURFACE
PREPARATION* 293* 16.4.1* CLEANING ALL DIRT, OILS, AND GREASES FROM* THE
SURFACE 293* 16.4.2* COMPLETE REMOVAL OF RUST AND MILL SCALE 294* 16.5
APPLYING PAINT COATINGS* 295* 16.5.1* WASH PRIMER 296* 16.5.2* PAINTING
OF ALUMINUM AND ZINC 296* 16.6 FILIFORM CORROSION* 296* 16.6.1* THEORY
OF FILIFORM CORROSION 298* 16.7 PLASTIC LININGS* 299* XII CONTENTS
REFERENCES 300* GENERAL REFERENCES 301* 17* INHIBITORS AND PASSIVATORS
303* 17.1 INTRODUCTION* 303* 17.2 PASSIVATORS* 304* 17.2.1* MECHANISM OI
PASSIVATION 304* 17.2.2* APPLICATIONS OI PASSIVATORS 308* 17.3 PICKLING
INHIBITORS* 310* 17.3.1* APPLICATIONS OF PICKLING INHIBITORS 312* 17.4
SLUSHING COMPOUNDS* 313* 17.5 VAPOR-PHASE INHIBITORS* 313* 17.5.1
INHIBITOR TO REDUCE TARNISHING OF COPPER 314* REFERENCES 315* GENERAL
REFERENCES 316* 18* TREATMENT OF WATER AND STEAM SYSTEMS 317* 18.1
DEAERATION AND DEACTIVATION* 317* 18.2 HOT- AND COLD-WATER TREATMENT*
321* 18.2.1* COOLING WATERS 322* 18.3 BOILER-WATER TREATMENT* 323*
18.3.1* BOILER CORROSION 323* 18.3.2* BOILER-WATER TREATMENT FOR
CORROSION CONTROL 326* 18.3.3 MECHANISMS 328* REIERENCES 330* GENERAL
REFERENCES 331* 19* ALLOYING FOR CORROSION RESISTANCE;* STAINLESS STEELS
333* 19.1 INTRODUCTION* 333* 19.2 STAINLESS STEELS* 335* 19.2.1* BRIEF
HISTORY 336* 19.2.2* CLASSES AND TYPES 337* 19.2.3* INTERGRANULAR
CORROSION 343* 19.2.4* PITTING AND CREVICE CORROSION 350* 19.2.5*
STRESS-CORROSION CRACKING AND HYDROGEN CRACKING 354* 19.2.6* CRACKING OI
SENSITIZED AUSTENITIC ALLOYS IN* POLYTHIONIC ACIDS 359* CONTENTS* XIII
19.2.7* GALVANIC COUPLING AND GENERAL CORROSION* RESISTANCE 361*
REFERENCES 362* GENERAL REFERENCES 365* 20 COPPER AND COPPER ALLOYS*
367* 20.1 COPPER* 367* 20.1.1* CORROSION IN NATURAL WATERS 369* 20.2
COPPER ALLOYS* 371* 20.2.1* COPPER-ZINC ALLOYS (BRASSES) 371* 20.2.2*
DEALLOYING/DEZINCIFICATION 372* 20.2.3* STRESS-CORROSION CRACKING
(SEASON CRACKING) 374* 20.2.4* CONDENSER TUBE ALLOYS INCLUDING*
COPPER-NICKEL ALLOYS 378* REFERENCES 379* GENERAL REFERENCES 381*
PROBLEMS 381* ANSWERS TO PROBLEMS 381* 21 ALUMINUM AND ALUMINUM ALLOYS*
383* 21.1 ALUMINUM* 383* 21.1.1* CLAD ALLOYS 384* 21.1.2* CORROSION IN
WATER AND STEAM 384* 21.1.3* EFFECT OF PH 387* 21.1.4* CORROSION
CHARACTERISTICS 388* 21.1.5* GALVANIC COUPLING 392* 21.2 ALUMINUM
ALLOYS* 393* 21.2.1 STRESS-CORROSION CRACKING 394* REFERENCES 396*
GENERAL REFERENCES 397* 22 MAGNESIUM AND MAGNESIUM ALLOYS* 399* 22.1
INTRODUCTION* 399* 22.2 MAGNESIUM* 399* 22.3 MAGNESIUM ALLOYS* 400*
22.3.1* STRESS-CORROSION CRACKING 402* 22.3.2* COATINGS 403* 22.4
SUMMARY* 404* XIV* CONTENTS REFERENCES* GENERAL REFERENCES* 23 NICKEL
AND NICKEL ALLOYS 23.1 INTRODUCTION 23.2 NICKEL 23.3 NICKEL ALLOYS
23.3.1* GENERAL BEHAVIOR 23.3.2* NI-CU SYSTEM: ALLOY 400-70% NI, 30% CU
23.3.3* NI-CR-FE SYSTEM: ALLOY 600-76% NI, 16% CR, 7% FE 23.3.4* NI-MO
SYSTEM: ALLOY B-60% NI, 30% MO, 5% FE 23.3.5* NI-CR-FE-MO-CU SYSTEM:
ALLOY G-NI, 22% CR, 20% FE, 6.5% MO, 2% CU 23.3.6* NI-CR-MO SYSTEM:
ALLOY C-54% NI, 15% CR, 16% MO, 4% W, 5% FE 23.3.7 NI-FE-CR SYSTEM:
ALLOY 825-NI, 31 % FE, 22% CR REFERENCES GENERAL REFERENCES 24 COBALT
AND COBALT ALLOYS 24.1 INTRODUCTION 24.2 COBALT ALLOYS* REFERENCES*
GENERAL REFERENCES* 25 TITANIUM 25.1 TITANIUM 25.2 TITANIUM ALLOYS 25.3
PITTING AND CREVICE CORROSION 25.4 INTERGRANULAR CORROSION AND
STRESS-CORROSION CRACKING REFERENCES GENERAL REFERENCES PROBLEM 26
ZLRCONIUM 26.1 INTRODUCTION 26.2 ZIRCONIUM ALLOYS 405* 405* 407* 407*
408* 411* 411* 414* 414* 415* 416* 416* 417* 417* 418* 419* 419* 420*
423* 423* 425* 425* 427* 429* 430* 432* 434* 434* 435* 435* 436* ,* 1
CONTENTS* XV 26.3 BEHAVIAR IN HOT WATER AND STEAM 437 REFERENCES 439
GENERAL REFERENCES 440 27 TANTALUM* 441 27.1* INTRODUCTION 441 27.2
CORROSION BEHAVIAR 441 REFERENCES 443 GENERAL REFERENCE 443 28 LEAD* 445
28.1* INTRODUCTION 445 28.2* CORROSION BEHAVIAR OF LEAD AND LEAD ALLOYS
446 28.2.1 LEAD-ACID BATTERY* 447 28.3 SUMMARY 448 REFERENCES 449
GENERAL REFERENCES 449 29 APPENDIX* 451 29.1* ACTIVITY AND ACTIVITY
COEFFICIENTS OF STRONG ELECTROLYTES 451 29.2* DERIVATION OF STERN-GEARY
EQUATION FAR CALCULATING CORROSION RATES FROM POLARIZATION DATA OBTAINED
AT LOW CURRENT DENSITIES 456 29.2.1 THE GENERAL EQUATION* 458 29.3*
DERIVATION OF EQUATION EXPRESSING THE SATURATION INDEX OF A NATURAL
WATER 461 29.4* DERIVATION OF POTENTIAL CHANGE ALONG A CATHODICALLY
PROTECTED PIPELINE 467 29.5* DERIVATION OF THE EQUATION FAR POTENTIAL
DROP ALONG THE SOIL SURFACE CREATED BY CURRENT ENTERING AR LEAVING A
BURIED PIPE 469 29.6* DERIVATION OF THE EQUATION FAR DETERMINING
RESISTIVITY OF SOIL BY FOUR-ELECTRODE METHOD 470 29.7* DERIVATION OF THE
EQUATION EXPRESSING WEIGHT LOSS BY FRETTING CORROSION 471 29.8*
CONVERSION FACTARS 474 29.8.1 ADDITIONAL CONVERSION FACTORS* 475 29.8.2
CURRENT DENSITY EQUIVALENT TO A CORROSION RATE CLL~D * 4~ XVI 479
CONTENTS 476* 29.9 STANDARD POTENTIALS 29.10* NOTATION AND ABBREVIATIONS
476* 478* REFERENCES INDEX |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Revie, Robert Winston Uhlig, Herbert Henry |
author_facet | Revie, Robert Winston Uhlig, Herbert Henry |
author_role | aut aut |
author_sort | Revie, Robert Winston |
author_variant | r w r rw rwr h h u hh hhu |
building | Verbundindex |
bvnumber | BV023333203 |
callnumber-first | T - Technology |
callnumber-label | TA462 |
callnumber-raw | TA462 |
callnumber-search | TA462 |
callnumber-sort | TA 3462 |
callnumber-subject | TA - General and Civil Engineering |
classification_rvk | UQ 7500 ZM 7500 |
ctrlnum | (OCoLC)173809122 (DE-599)BVBBV023333203 |
dewey-full | 620.1/1223 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.1/1223 |
dewey-search | 620.1/1223 |
dewey-sort | 3620.1 41223 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik Werkstoffwissenschaften / Fertigungstechnik |
discipline_str_mv | Physik Werkstoffwissenschaften / Fertigungstechnik |
edition | 4. ed. |
format | Book |
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id | DE-604.BV023333203 |
illustrated | Illustrated |
index_date | 2024-07-02T20:58:27Z |
indexdate | 2024-07-09T21:16:06Z |
institution | BVB |
isbn | 9780471732792 |
language | English |
lccn | 2007041578 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016517102 |
oclc_num | 173809122 |
open_access_boolean | |
owner | DE-703 DE-29T DE-634 DE-573 |
owner_facet | DE-703 DE-29T DE-634 DE-573 |
physical | XX, 490 S. Ill., graph. Darst. |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Wiley |
record_format | marc |
spelling | Revie, Robert Winston Verfasser aut Corrosion and corrosion control an introduction to corrosion science and engineering R. Winston Revie ; Herbert H. Uhlig 4. ed. Hoboken, NJ Wiley 2008 XX, 490 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Includes bibliographical references and index Corrosion and anti-corrosives Eisen (DE-588)4014002-7 gnd rswk-swf Schutzschicht (DE-588)4180280-9 gnd rswk-swf Korrosion (DE-588)4032518-0 gnd rswk-swf Stahl (DE-588)4056834-9 gnd rswk-swf Korrosionsschutz (DE-588)4032522-2 gnd rswk-swf Legierung (DE-588)4035035-6 gnd rswk-swf Polarisation (DE-588)4046482-9 gnd rswk-swf Elektrochemie (DE-588)4014241-3 gnd rswk-swf Metall (DE-588)4038860-8 gnd rswk-swf Korrosion (DE-588)4032518-0 s Korrosionsschutz (DE-588)4032522-2 s DE-604 Stahl (DE-588)4056834-9 s 1\p DE-604 Legierung (DE-588)4035035-6 s 2\p DE-604 Polarisation (DE-588)4046482-9 s 3\p DE-604 Metall (DE-588)4038860-8 s 4\p DE-604 Elektrochemie (DE-588)4014241-3 s 5\p DE-604 Schutzschicht (DE-588)4180280-9 s 6\p DE-604 Eisen (DE-588)4014002-7 s 7\p DE-604 Uhlig, Herbert Henry Verfasser aut http://catdir.loc.gov/catdir/enhancements/fy0826/2007041578-t.html Inhaltsverzeichnis http://www.loc.gov/catdir/enhancements/fy0826/2007041578-b.html Contributor biographical information http://www.loc.gov/catdir/enhancements/fy0826/2007041578-d.html Publisher description http://www.loc.gov/catdir/enhancements/fy0826/2007041578-t.html Table of contents only OEBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016517102&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 4\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 5\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 6\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 7\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Revie, Robert Winston Uhlig, Herbert Henry Corrosion and corrosion control an introduction to corrosion science and engineering Corrosion and anti-corrosives Eisen (DE-588)4014002-7 gnd Schutzschicht (DE-588)4180280-9 gnd Korrosion (DE-588)4032518-0 gnd Stahl (DE-588)4056834-9 gnd Korrosionsschutz (DE-588)4032522-2 gnd Legierung (DE-588)4035035-6 gnd Polarisation (DE-588)4046482-9 gnd Elektrochemie (DE-588)4014241-3 gnd Metall (DE-588)4038860-8 gnd |
subject_GND | (DE-588)4014002-7 (DE-588)4180280-9 (DE-588)4032518-0 (DE-588)4056834-9 (DE-588)4032522-2 (DE-588)4035035-6 (DE-588)4046482-9 (DE-588)4014241-3 (DE-588)4038860-8 |
title | Corrosion and corrosion control an introduction to corrosion science and engineering |
title_auth | Corrosion and corrosion control an introduction to corrosion science and engineering |
title_exact_search | Corrosion and corrosion control an introduction to corrosion science and engineering |
title_exact_search_txtP | Corrosion and corrosion control an introduction to corrosion science and engineering |
title_full | Corrosion and corrosion control an introduction to corrosion science and engineering R. Winston Revie ; Herbert H. Uhlig |
title_fullStr | Corrosion and corrosion control an introduction to corrosion science and engineering R. Winston Revie ; Herbert H. Uhlig |
title_full_unstemmed | Corrosion and corrosion control an introduction to corrosion science and engineering R. Winston Revie ; Herbert H. Uhlig |
title_short | Corrosion and corrosion control |
title_sort | corrosion and corrosion control an introduction to corrosion science and engineering |
title_sub | an introduction to corrosion science and engineering |
topic | Corrosion and anti-corrosives Eisen (DE-588)4014002-7 gnd Schutzschicht (DE-588)4180280-9 gnd Korrosion (DE-588)4032518-0 gnd Stahl (DE-588)4056834-9 gnd Korrosionsschutz (DE-588)4032522-2 gnd Legierung (DE-588)4035035-6 gnd Polarisation (DE-588)4046482-9 gnd Elektrochemie (DE-588)4014241-3 gnd Metall (DE-588)4038860-8 gnd |
topic_facet | Corrosion and anti-corrosives Eisen Schutzschicht Korrosion Stahl Korrosionsschutz Legierung Polarisation Elektrochemie Metall |
url | http://catdir.loc.gov/catdir/enhancements/fy0826/2007041578-t.html http://www.loc.gov/catdir/enhancements/fy0826/2007041578-b.html http://www.loc.gov/catdir/enhancements/fy0826/2007041578-d.html http://www.loc.gov/catdir/enhancements/fy0826/2007041578-t.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016517102&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT revierobertwinston corrosionandcorrosioncontrolanintroductiontocorrosionscienceandengineering AT uhligherberthenry corrosionandcorrosioncontrolanintroductiontocorrosionscienceandengineering |
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