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Effect of Chromium, Aluminum and Nickel on Microstructure and Reverse-S Type Creep Rupture Strength of High Cr Ferritic Heat Resistant Steels

机译:铬,铝和镍对高Cr铁素体耐热钢组织和反S型蠕变断裂强度的影响

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Microstructure and creep strength of two high-Cr ferritic heat resistant steels –11Cr and 9Cr - were investigated at a temperature of 650°C. 11Cr steel containing relatively higher carbon, aluminum and nickel than 9Cr steel showed a significant drop in creep strength after 1000 h, while 9Cr showed a recovery in creep strength after a slight drop. 11Cr steel contained M_(23)(CB)_(6), Z phase and a relatively coarsened Laves phase as precipitates after 7000 h at a temperature of 650°C, while the 9Cr steel contained fine MX, ultrafine M_(6)C, as well as M_(23)(CB)_(6) and Laves phase. Z phase was not found and the growth of Laves phase was retarded in the 9Cr steel. Hence, it was concluded that the drop in creep strength of 11Cr steel was attributed to the coarsened Laves and Z phases, and the recovery of creep strength in the 9Cr steel to the fine MX and M_(6)C precipitates. The experimental results on the effect of steel composition on the stability of precipitates in steels were thermodynamically consistent with the Thermo-Calc calculation results, which used an existing database. We concluded that chromium and aluminum increased the kinetics of the formation and coarsening of the precipitates.
机译:在650°C的温度下研究了两种高铬铁素体耐热钢– 11Cr和9Cr-的组织和蠕变强度。碳,铝和镍含量比9Cr钢高的11Cr钢在1000 h后蠕变强度显着下降,而9Cr在轻度下降后蠕变强度恢复。 11Cr钢在650°C的温度下7000 h后含有M_(23)(CB)_(6),Z相和相对粗大的Laves相作为析出物,而9Cr钢则包含细MX,超细M_(6)C ,以及M_(23)(CB)_(6)和Laves相。在9Cr钢中未发现Z相,并且Laves相的生长受到阻碍。因此,可以得出结论,11Cr钢的蠕变强度下降归因于拉夫斯和Z相的粗化,而9Cr钢的蠕变强度恢复为细小的MX和M_(6)C沉淀。关于钢成分对钢中析出物稳定性影响的实验结果与使用现有数据库的Thermo-Calc计算结果在热力学上是一致的。我们得出结论,铬和铝增加了沉淀物形成和粗化的动力学。

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