Page 114 - Challenges in Corrosion Costs Causes Consequences and Control(2015)
P. 114
92 INTRODUCTION AND FORMS OF CORROSION
57. ASM Corrosion, Vol. 13A, 2003, Little, pp. 478–486; Stott, pp. 644–649.
58. Battelle Columbus Laboratories, Effects of Metallic Corrosion in USA, 1978, 1995.
59. R Schubert, ASME, Journal of Lubrication Technology 93:216–223 (1971).
60. B Bhushan, Introduction to Tribology, Wiley, pp. 331–420, 2002.
61. IM Hutchings, Tribology: Friction and Wear Engineering, CRC Press, Boca Raton, FL,
pp. 171–197, 1992.
62. TE Fisher, MP Anderson, S Jahanmir, R Sather, Wear 124:133–148 (1988).
63. B Bhushan, RE Davis, Thin Solid Film 108:135–156 (1983).
64. M VanDyke, An Album of Fluid Motion, Parabolic Press, p. 107, 1982.
65. JF Douglas, JM Gasiorek, JA Swaffield, Fluid Mechanics, Pitman, p. 648, 1979.
66. M Gopal, WP Jepson, Corrosion and Environmental Degradation, M Schutze (ed.), Vol.
1, Wiley, pp. 265–284, 2000.
67. PL Hurries, Wear 15:389–409 (1970).
68. RB Waterhouse, Proceedings of International Conference on Wear, ASME, NY, pp.
1–22, 1981.
69. HH Uhlig, Corrosion et Protection, Dunod, Paris, France, pp. 98–108, 136–143, CF pp.
148–157, 1970.
nd
70. JM Dorlot, JP Baillon, Des matériaux, 2 ed., pp. 201–239, 1986.
71. G Wranglen, An Introduction to Corrosion and Protection of Metals, Chapman and Hall,
London, England, pp. 118–119, 1984.
72. JO Almen, Corrosion Handbook, HH Uhlig (ed.), Wiley, pp. 590–597, 1998.
73. T Magnin, P Combrade, Materials Science & Technology, Corrosion and Environmental
Degradation,Vol. 1, M Schutz (ed.), Wiley, pp. 207–263, 216–318, 2000.
74. W Bamford, Institute of Mechanical Engineers Conference Publication 4:51 (1977).
nd
75. J Atkinson, D Tice, PM Scott, Proceedings of 2 IAEA Specialists’ Meeting on Subcrit-
ical Crack Growth, Sendai, WH Cullen (ed.), Vol. 2, p. 201, 1985.
76. P Combrade, M Foucault, G Siama, ibid. Vol. 2, pp. 201, 1985.
th
77. WA Van Der Sluys, Proceedings of 4 Intl. Symposium on Environmental Degradation
of Materials in Nuclear Power Systems, Travers City, MI, p. 277, 1988.
th
78. LM Young, PL Andersen, Proceedings of 7 Intl. Symp. On Environmental Degradation
in Nuclear Power Systems, Water Reactors, NACE, Vol. 2, pp. 1193, 1995.
79. YZ Wang, Corrosion Fatigue in Uhlig’s Corrosion Handbook, RW Revie (ed.), pp.
195–202, 2000.
80. Suresh , Fatigue of Materials, Cambridge Solid State Science Series, Cambridge Univer-
sity Press, pp. 363–368, 1991.
81. DJ Duquette, Environment-Induced Cracking of Metals, RP Gangloff, MB Ives (eds.)
NACE 10, Houston, TX, pp. 45, 1990.
82. AJ McEvily, RP Wei, Fracture Mechanics and Corrosion Fatigue, NACE, Houston, TX,
pp. 381–395, 1973.
83. O Vosikovski, Transactions of the ASME, 97(4):298 (1975).
84. DJ Duquette, HH Uhlig, Transactions of the ASME, 61:449 (1968).
85. M Elboujdaini, MT Shehata, E Ghali, Microstructural Science, DE Alman, JA Hawk, JW
Simmons (eds.), IMS and ASM International, Ohio, Vol. 25, pp. 41–49, 1997.
86. SA Shipilov, Technology, Law and Insurance, 1(3):131–142 (1996).