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Effect of Carbon Content on Microstructure and Mechanical Properties of 9 to 12 pct Cr Ferritic/Martensitic Heat-Resistant Steels

机译:碳含量对9至12 pct Cr铁素体/马氏体耐热钢的显微组织和力学性能的影响

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摘要

Two heats of 9 to 12 pct Cr ferritic/martensitic heat-resistant steels were prepared. One has an ultralow carbon content of 0.01 wt pct, whereas another heat has a normal carbon content of 0.09 wt pct. The effect of carbon content on microstructure and mechanical properties of 9 to 12 pct Cr ferritic/martensitic heat-resistant steels was studied. The results show that the ultra-low-carbon steel contains bimodal, nanosized MX precipitates with high density in the matrix but few M_(23)C_6 carbide particles in the normalized-and-tempered state. The smaller nanosized MX precipitates have two kinds of typical morphology: One is cubic and another is rectangular. The cubic MX precipitate contains Nb, Ti, and V, whereas the rectangular one only contains Nb and V. The normal carbon steel has abundant M_(23)C_6 carbide particles along the grain and lath boundaries and much less density of nanosized MX precipitates after the same heat treatments. After long-term aging at 923 K (650 °C) for 10,000 hours, the stress rupture properties of the ultralow carbon content steel degrades more significantly. The strength degradation mechanism of the 9 to 12 pct Cr ferritic/martensitic heat-resistant steels is discussed in this article.
机译:制备了两种热量为9至12 pct的铬铁素体/马氏体耐热钢。一种具有0.01wt%的超低碳含量,而另一种热量具有0.09wt%的正常碳含量。研究了碳含量对9至12 pct Cr铁素体/马氏体耐热钢的显微组织和力学性能的影响。结果表明,超低碳钢在基体中含有高密度的双峰纳米MX析出物,但归一化和回火状态的M_(23)C_6碳化物颗粒很少。较小的纳米MX沉淀物具有两种典型的形态:一种是立方的,另一种是矩形的。立方MX析出物中含有Nb,Ti和V,而矩形MX析出物中仅含有Nb和V。普通碳钢沿晶界和板条边界具有丰富的M_(23)C_6碳化物颗粒,纳米MX析出后的密度低得多相同的热处理。在923 K(650°C)下长期老化10,000小时后,超低碳含量钢的应力断裂性能明显下降。本文讨论了9至12 pct Cr铁素体/马氏体耐热钢的强度退化机理。

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