Corrosion Reviews, Volume 7Scientific Publications Division, Freund Publishing House, 1987 |
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Page 371
Corrosion Data for Alloys Evaluated in the Outlet Ducting Zone F in Runs 1 to 4 TABLE 6 : Corrosion Rate ( mpy ) 50- 40- SS304 30- 20-. Maximum Bold Surface Corrosion Rate ( mpy Pit Depth ( mils ) Alloy Run 1 SS304 22 < 1 SS316 1 < 1 ...
Corrosion Data for Alloys Evaluated in the Outlet Ducting Zone F in Runs 1 to 4 TABLE 6 : Corrosion Rate ( mpy ) 50- 40- SS304 30- 20-. Maximum Bold Surface Corrosion Rate ( mpy Pit Depth ( mils ) Alloy Run 1 SS304 22 < 1 SS316 1 < 1 ...
Page 375
... Corrosion rates for Runs 6 and 7 were not calculated . Crevice Pit Depth , respectively , plotted versus Environmental Fluoride. Corrosion Rate Maximum Bold Surface ( mpy ) * Pit Depth ( mils ) Maximum Crevice Pit Depth ( mils ) SS304 2 ...
... Corrosion rates for Runs 6 and 7 were not calculated . Crevice Pit Depth , respectively , plotted versus Environmental Fluoride. Corrosion Rate Maximum Bold Surface ( mpy ) * Pit Depth ( mils ) Maximum Crevice Pit Depth ( mils ) SS304 2 ...
Page 396
... corrosion potential in HNO3 and explains partly why zirconium has a wide range of corrosion potentials in 90 % HNO3 / 9 / . 7. STRAIN RATE r d d ' d The occurence of SCC requires some critical balance between tensile stress and corrosion ...
... corrosion potential in HNO3 and explains partly why zirconium has a wide range of corrosion potentials in 90 % HNO3 / 9 / . 7. STRAIN RATE r d d ' d The occurence of SCC requires some critical balance between tensile stress and corrosion ...
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