Kinetics of precipitation for graphite particle in high nickel ductile iron

Yong Wan, Xiao Ling, Chuansheng Tang, Xue-jun Zhang, Yong-Ge Wen, D. Ma, Shan Gao, Q. Chen
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Abstract

In order to prevent premature failure of high nickel ductile iron used for engine exhaust manifold due to thermal fatigue, the precipitation morphology, nucleation and growth mechanism of graphite particles in high-nickel ductile iron were systematically studied by optical and SEM microscopy and the growth kinetic equation of graphite particles was derived. The results show that the precipitation density and average size of graphite particles within the austenite grain of high-nickel ductile iron are 44.1 particles/mm2 and 2.2 µm, respectively, and the precipitation density and average size of graphite particles on the austenite grain boundaries are increased to 76.6 particles/mm2 and 17 µm, respectively. The main nucleation mechanism of graphite particles in high nickel austenitic ductile iron is grain boundary nucleation. The maximum nucleation rate temperature of graphite particles nucleated on grain boundary is 650–850 °C, the fastest precipitation temperature is close to 680 °C, and the time from the beginning to the end of the growth of graphite particles nucleated by grain boundary is about 3400 s. The average size of graphite particles precipitated by grain boundary nucleation can grow to grade 7 (15–30 µm) under the high temperature of 715–805 °C for a long time (over 3400 s), which is beneficial to the thermal fatigue property of high nickel ductile iron. The local temperature at manifold should not be higher than 800 °C under long times.
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高镍球墨铸铁中石墨颗粒析出动力学
为了防止发动机排气歧管用高镍球墨铸铁因热疲劳而过早失效,采用光学显微镜和扫描电镜对高镍球墨铸铁中石墨颗粒的析出形貌、成核和生长机理进行了系统研究,并推导了石墨颗粒的生长动力学方程。结果表明:高镍球墨铸铁奥氏体晶界内石墨颗粒的析出密度和平均尺寸分别为44.1和2.2µm,奥氏体晶界上石墨颗粒的析出密度和平均尺寸分别为76.6和17µm;高镍奥氏体球墨铸铁中石墨颗粒的主要成核机制是晶界成核。晶界成核石墨颗粒的最高成核速率温度为650 ~ 850℃,最快析出温度接近680℃,晶界成核石墨颗粒从开始到结束生长的时间约为3400 s。在715 ~ 805℃高温下(3400 s以上),晶界形核析出的石墨颗粒平均尺寸可长至7级(15 ~ 30µm),有利于提高高镍球墨铸铁的热疲劳性能。长时间使用时,歧管局部温度不应高于800℃。
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