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Precipitate Evolution in 22Cr25NiWCuCo(Nb) Austenitic Heat-Resistant Stainless Steel during Heat Treatment at 1200 °C

机译:在1200°C的热处理期间在22Cr25NiWcuco(Nb)奥氏体耐热不锈钢中沉淀出的进化

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摘要

In this study, 22Cr25NiWCuCo(Nb) heat-resistant steel specimens with high Cr and Ni contents were adopted to investigate the effect of Nb content on thermal and precipitation behavior. Differential scanning calorimetry profiles revealed that the melting point of the 22Cr25NiWCuCo(Nb) steel specimens decreased slightly with the Nb content. After heat treatment at 1200 °C for 2 h, the precipitates dissolved in a Nb-free steel matrix. In addition, the Z phase (CrNb(C, N)) and MX (Nb(C, N), (Cr, Fe)(C, N), and NbC) could be observed in the Nb-containing steel specimens. The amount and volume fraction of the precipitates increased with the Nb content, and the precipitates were distributed heterogeneously along the grain boundary and inside the grain. Even when the heat treatment duration was extended to 6 h, the austenitic grain size and precipitates became coarser; the volume fraction of the precipitates also increased at 1200 °C. The Z phase, rather than the MX phase, became the dominant precipitates at this temperature.
机译:在本研究中,采用22Cr25NiWcuco(Nb)具有高Cr和Ni含量的耐热钢样品来研究Nb含量对热和沉淀行为的影响。差分扫描量热法剖面显示,22Cr25NiWcuco(NB)钢样品的熔点随NB含量略微降低。在1200℃下热处理2小时后,沉淀物溶解在无Nb的钢基质中。另外,可以在含Nb的钢样本中观察到Z相(CRNB(C,N))和MX(Nb(C,N),(Cr,Fe)和NBC)。沉淀物的量和体积分数随Nb含量的增加,沉淀物沿晶界和晶粒内部分布异质地分布。即使热处理持续时间延伸到6小时,奥氏体晶粒尺寸和沉淀物也变得粗糙;沉淀物的体积分数在1200℃下也增加。 Z相,而不是MX相,成为该温度下的显性沉淀物。

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