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The carburization behavior of alloy 800HT in high temperature supercritical-CO_2

机译:高温超临界-CO_2合金800HT的渗碳行为

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The contribution of high temperature supercritical-CO2 (S-CO2) exposure (650 degrees C for 1000 h) on the carburization behavior of Alloy 800HT was studied. For comparison, Alloy 800HT specimens were also exposed to air and vacuum environments. The S-CO2 exposed specimens showed carbon-accumulated layer at the oxide-matrix interface. All specimens showed subsurface carbide precipitation but it was more pronounced for the S-CO2 exposed specimen, suggesting inward carbon diffusion from the carbon-accumulated layer at oxide-matrix interface. The pronounced subsurface carbide precipitation for the S-CO2 exposed specimens resulted in much increased hardening and reduction in ductility. Thus, we clearly identified that S-CO2 exposure caused the formation of the interfacial carbon-accumulated layer and more subsurface carbide precipitates, and resulting in additional hardening and reduction in ductility for Alloy 800HT. (C) 2021 Elsevier B.V. All rights reserved.
机译:研究了高温超临界-CO2(S-CO2)暴露(650℃的1000小时)对合金800Ht的碳碳行为的贡献。 为了比较,合金800HT样品也暴露在空气和真空环境中。 S-CO2暴露的样品在氧化物 - 基质界面处显示碳累积层。 所有标本显示地下碳化物沉淀,但对S-CO2暴露的样品更加明显,表明来自氧化物 - 基质界面的碳累积层的内向碳扩散。 S-CO2暴露标本的明显碳化物沉淀导致硬化和降低延展性大大增加。 因此,我们清楚地识别出S-CO2暴露导致形成界面碳累积层和更多地下碳化物沉淀物,并导致合金800ht的延展性的额外硬化和降低。 (c)2021 elestvier b.v.保留所有权利。

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