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Evaluation of the low corrosion resistant phase formed during the sigma phase precipitation in duplex stainless steels

机译:评估双相不锈钢在σ相析出期间形成的低耐蚀相

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The duplex stainless steels, having a volumetric fraction of 50% ferrite and 50% austenite, conciliate high corrosion resistance with good mechanical properties. But, in many circumstances different phase transformations may occur, such as that responsible for sigma phase precipitation, which make the steel susceptible to localized corrosion. During the sigma phase precipitation a new austenitic phase is formed with a very low corrosion resistance. In the present research the composition of this new austenitic phase was evaluated in four duplex stainless steels, with different Mo, N and Cu contents. After the solution anneal at 1050 °C, samples of these steels were aged at 850 °C during 1 h and 5 h for sigma phase precipitation. Using the ferritoscope and an image analyzer it was possible to determine the volumetric fractions of ferrite and sigma phase, respectively, while those of austenite and the new austenitic phase were determined by difference to 100% volume. Finally, by using mass balance it was possible to determine theoretically the composition of the new austenitic phase. This phase is poor in Cr and Mo free, which explains its poor corrosion resistance.
机译:体积分数为50%的铁素体和50%的奥氏体的双相不锈钢具有良好的机械性能,可兼顾高耐腐蚀性。但是,在许多情况下,可能会发生不同的相变,例如导致sigma相沉淀的相变,这会使钢易于发生局部腐蚀。在σ相析出期间,会形成新的奥氏体相,且其耐蚀性极低。在本研究中,在具有不同Mo,N和Cu含量的四种双相不锈钢中评估了该新奥氏体相的成分。在1050°C下进行固溶退火后,这些钢的样品在850°C下老化1小时和5小时,以进行σ相析出。使用铁素体镜和图像分析仪可以分别确定铁素体相和西格玛相的体积分数,而奥氏体相和新奥氏体相的体积分数则通过相差100%来确定。最后,通过使用质量平衡,理论上可以确定新奥氏体相的组成。该相不含Cr和Mo,说明其耐腐蚀性差。

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