Elevated Temperature Properties of Austenitic Heat-resistant Ductile Irons

K. Choe, J. Seo, Su-Hwang Kim
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Abstract

A new form of austenitic heat-resistant ductile iron was developed and its microstructures and elevated temperature properties were compared to those of Ductile Ni-Resist D5S. According to JMatPro calculations, it was predicted that Mo-rich carbides would be crystallized before the eutectic reaction starts in the developed alloy. At the austenite cell boundaries of the developed alloy, both Mo-rich carbides and Cr-rich carbides were found. In addition, Ni-silicides were found adjacent to Cr-rich carbides in D5S spec-imen and were identified as Ni 2 Si. The developed alloy also had greater yield strength and lower tensile strength levels with less elongation due to the dissolution of Mo atoms into the austenite matrix and the precipitation of Mo-rich carbides. From the results of elevated temperature tensile tests and stress-rupture tests, it was found that the developed alloy had elevated temperature properties superior to those of D5S. This was due to the pinning effect of the dissolved Mo atoms in the austenite matrix.
奥氏体耐热球墨铸铁的高温性能
研制了一种新型奥氏体耐热球墨铸铁,并将其组织和高温性能与ni -resistant D5S球墨铸铁进行了比较。根据JMatPro的计算,预测在发育的合金中富mo碳化物会在共晶反应开始之前结晶。在发育合金的奥氏体胞界处,发现了富mo碳化物和富cr碳化物。此外,在D5S样品中,在富cr碳化物附近发现了Ni-硅化物,并确定为Ni- Si。由于Mo原子在奥氏体基体中的溶解和富Mo碳化物的析出,该合金具有较高的屈服强度和较低的拉伸强度,延伸率较低。高温拉伸试验和应力断裂试验结果表明,该合金的高温性能优于D5S。这是由于溶解的Mo原子在奥氏体基体中的钉住作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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