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Influence of the Addition of Ce on Microstructural Variation and SCC Behavior of Alloy 600

机译:Ce的添加对600合金组织和SCC行为的影响

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摘要

High purity model alloys with major composition Ni-15Cr-9Fe-0.03C (600CEO) and Ni-15Cr-9Fe-0.03C-0.04Ce (600CE4) were produced. Using these model alloys the effect of alloying element Ce on the SCC behavior of Alloy 600 was evaluated in a caustic solution. To obtain carbides precipitated on grain boundaries, the thermal treatment was performed on both the solution annealed model alloys. Microstractural examinations using SEM and TEM EDX showed that the same structural carbides, Cr_7C_3, were precipitated on both the alloys and no significant difference in the amount of Cr depletion along grain boundaries was observed between the two model alloys. However, it was shown that the coverage of grain boundary carbides was higher in the Ce-bearing alloy (600CE4). The SCC susceptibility of the alloys was investigated in 40 percent NaOH solution at 315 deg C. Being evaluated in terms of the maximum crack depth, the SCC susceptibility of the alloy turned out to be reduced by the addition of Ce. The increased resistance to the SCC in the alloy 600CE4 was considered to be attributable to the increased coverage of grain boundary carbides.
机译:生产了主要成分为Ni-15Cr-9Fe-0.03C(600CEO)和Ni-15Cr-9Fe-0.03C-0.04Ce(600CE4)的高纯度模型合金。使用这些模型合金,在苛性溶液中评估了合金元素Ce对600合金SCC行为的影响。为了获得沉淀在晶界的碳化物,对两种固溶退火的模型合金都进行了热处理。使用SEM和TEM EDX进行的显微结构检查表明,两种合金中都沉积了相同的结构碳化物Cr_7C_3,并且在两种模型合金之间未观察到沿晶界的Cr消耗量的显着差异。但是,表明含铈合金(600CE4)中晶界碳化物的覆盖率更高。在315℃的40%NaOH溶液中研究了合金的SCC敏感性。根据最大裂纹深度进行评估,结果表明,添加Ce可以降低合金的SCC敏感性。 600CE4合金对SCC的抵抗力增加被认为是由于晶界碳化物的覆盖率增加所致。

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