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Formation and stabilization of reverted austenite in supermartensitic stainless steel

机译:超淀粉不锈钢恢复奥氏体的形成与稳定

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The formation and stabilization of reverted austenite upon inter-critical annealing was investigated in a X4CrNiMo16-5-1 (EN 1.4418) supermartensitic stainless steel by means of scanning electron microscopy, electron backscatter-diffraction, transmission electron microscopy, energy-dispersive X-ray spectroscopy and dilatometry. The results were supported by thermodynamics and kinetics models, and hardness measurements. Isothermal annealing for 2 h in the temperature range of 475 to 650 degrees C led to gradual softening of the material which was related to tempering of martensite and the steady increase of the reverted austenite phase fraction. Annealing at higher temperatures led to a gradual increase in hardness which was caused by formation of fresh martensite from reverted austenite. It was demonstrated that stabilization of reverted austenite is primarily based on chemical stabilization by partitioning, consistent with modeling results.
机译:通过扫描电子显微镜,电子反向散射 - 衍射,透射电子显微镜,能量分散X射线,研究了在X4crnimo16-5-1(EN 1.4418)超淀粉不锈钢中进行了急性退火对临界间退火的形成和稳定化 光谱学和抗扩张测量。 结果由热力学和动力学模型支持,以及硬度测量。 在475至650摄氏度的温度范围内2小时的等温退火导致与马氏体回火的材料逐渐软化,恢复奥氏体相级分的稳定增加。 在较高温度下退火导致硬度逐渐增加,该硬度是由再生奥氏体的新马氏体引起的。 结果表明,恢复奥氏体的稳定主要基于通过分区的化学稳定性,与建模结果一致。

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