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Workshop on New Cross-cutting Technologies for Nuclear Power Plants

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Workshop on New Cross-cutting Technologies for Nuclear Power Plants ( workshop-new-cross-cutting-technologies-nuclear-power-plants )

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M Alloys Oxide Number Density overall corrosion rate Comments Haynes 282 Elongated Nb-Ti rich oxide cluster (50um) Low (~1um- 2um)/year@750C Excellent corrosion resistnace/ good strength at temp Cr rich oxide (<1um) High IN740 Elongated Nb-Ti rich oxide cluster (50um) Low (~1um- 2um)/year@750C Excellent corrosion resistnace/ good strength at temp Cr rich oxide (<1um) High Haynes230 Elongated W rich oxide cluster (30um) Medium 450C - <1um/year 550C - <1um/year 650C - 5um/year Good corrosion resistance. Needs to be looked at for higher temps. Cr rich oxide (<1um) High IN800H Ti oxide cluster (20um) Low 450C - 1-2um/year 550C- 5 um/year 650C - 30 um/year Performed similar to 347 but cost is considerable higher Cr-Mn rich oxide (<1um) High Octahedral Fe oxide cluster (30um) Medium 347SS Nb oxide (<1um) Medium 450C - 5um/year 550C- 5um/year 650C - 35um/year Alloy performed pretty well at most temps - started to fall off at 650 not suitable for higher temps Needle Cr-Mn rich oxide scale Whole surface with some spallation Octahedral Fe oxide cluster (20um) High 316L Octahedral Fe oxide scale 70% of surface 450 C - 10um/year 550 C - 30-50um/year 650 C- 100 um/year Ok for lower temperatures 347 performed much better Octahedral Cr-Mn rich oxide scale 30% of surface AFA-OC6 Nb oxide (<10um) High 450C - 1-2um/year 550C- 5-10um/year 650C - 200um/year Ok for low temperatures/ alloy somewhat unstable Cr-Mn rich oxide (<1um) Very high Fe oxide (<10um) Low P91/T122 Magnetite and spinel layers 100% coverage high corrosion rate >1000mu/year not suitable for 450+ There is currently also work looking at impurities and coatings 18

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