A study on optimal parameter combinations for austempered ductile iron

H. Oktadinata, Dewin Purnama, Rizal Nurdian Hamzah, Agung Slamet Apriyan
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Abstract

Nodular cast iron possesses a spherical graphite shape and exhibits mechanical properties closely resembling those of steel after heat treatment. The austempering method provides a means of enhancing the mechanical properties of nodular cast iron. This study aimed to investigate the optimal parameter combinations for Austempered Ductile Iron (ADI). The experiments involved varying the austenitization temperature and austempering time. Multiple tests were conducted to analyze the effects of austenitization temperature and tempering time on the microstructure, hardness, and impact toughness. The experimental samples were obtained from Y-block nodular cast iron austenitized at 850, 900, and 950°C for 90 min in an electric furnace. Subsequently, they were quenched in a salt bath at a temperature of 350°C and held for 60, 90, and 120 minutes before being cooled to room temperature. Mechanical tests and microstructure observations were performed on both the as-cast sample and after austempering. The microstructure was observed using an optical microscope before and after the etching. The research findings indicated that austempering increases the hardness and impact toughness of nodular cast iron. The highest hardness (46.8 HRC) was achieved from a parameter combination of an austenitization temperature of 850°C and an austempering time of 90 minutes. This particular sample also exhibited a relatively higher impact energy (3.8 J) compared to the others. The results of this study suggest that the austenitization temperature and tempering time exert an influence on the mechanical properties.
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奥氏体回火球墨铸铁最佳参数组合研究
球墨铸铁具有球形石墨形状,热处理后的机械性能与钢非常相似。奥氏体回火法是提高球墨铸铁机械性能的一种方法。本研究旨在探讨奥氏体回火球墨铸铁(ADI)的最佳参数组合。实验包括改变奥氏体化温度和奥氏体化时间。通过多次试验分析奥氏体化温度和回火时间对微观结构、硬度和冲击韧性的影响。实验样品取自在电炉中分别在 850、900 和 950°C 下奥氏体化 90 分钟的 Y 型球墨铸铁。随后,在 350°C 的盐浴中淬火,分别保持 60、90 和 120 分钟后冷却至室温。对铸造时和奥氏体回火后的样品进行了机械测试和微观结构观察。使用光学显微镜观察了蚀刻前后的微观结构。研究结果表明,奥氏体回火提高了球墨铸铁的硬度和冲击韧性。奥氏体化温度为 850°C、奥氏体回火时间为 90 分钟的参数组合达到了最高硬度(46.8 HRC)。与其他试样相比,该试样的冲击能量(3.8 J)也相对较高。研究结果表明,奥氏体化温度和回火时间对机械性能有影响。
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