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首页> 外文期刊>Transactions of the Indian Institute of Metals >GRAIN GROWTH IN 18 Ni Co-FREE MARAGING STEEL
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GRAIN GROWTH IN 18 Ni Co-FREE MARAGING STEEL

机译:18 Ni无马氏体时效钢的晶粒长大

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摘要

The grain growth behaviour in a l8Ni-Co-free (T-250) vis-a-vis 18Ni-8Co-5Mo (M-250) type maraging steels have been investigated. The study has indicated that these steels follow classical growth model #DELTA#D = Kt~n, where #DELTA#D is the increase in grain size. A 'time lag' has been observed in both the steel for grain growth to start at lower annealing temperatures. This has been explained on the basis of unique shear type #alpha# -> #gamma# transformation in these steels. The activation energy for growth has been found to be in the range of 316-339 kJ.mole~(-1) which indicates that the overall growth process is controlled by self diffusion in #gamma#-iron.A comparison of the grain growth behaviour in the two steels show that although these steels have, in general, identical growth pattern, they differ in actual 'lag time' for growth to start and increase in grain size in identical heat treatment condition. The 'time lag' in case of 18Ni-8Co-5Mo maraging steel is 0.38 h against 0.17 h in 18Ni-Co-free steel, at 1173 K. Also, the grain size of M-250 steel at a particular time and temperature of annealing is always finer than T-250 steel. This increased resistance of grain growth in M-250 steel has been attributed to the presence of cobalt in the steel.
机译:相对于18Ni-8Co-5Mo(M-250)型马氏体时效钢,研究了无18Ni-Co(T-250)的晶粒生长行为。研究表明,这些钢遵循经典的生长模型#DELTA#D = Kt〜n,其中#DELTA#D是晶粒尺寸的增加。在两种钢中都观察到“时滞”,以使晶粒生长从较低的退火温度开始。这是根据这些钢中独特的剪切类型#alpha#->#gamma#转变进行解释的。已发现生长的活化能在316-339 kJ.mole〜(-1)的范围内,这表明整个生长过程受#γ#-铁中自扩散的控制。两种钢的行为表明,尽管通常这些钢具有相同的生长方式,但是在相同的热处理条件下,它们开始生长的实际“滞后时间”和晶粒尺寸的增加是不同的。 18Ni-8Co-5Mo马氏体时效钢的“时间滞后”为0.38 h,而无镍18Ni-Co钢在1173 K时为0.17 h。此外,M-250钢在特定时间和温度下的晶粒尺寸退火总是比T-250钢更好。 M-250钢中这种晶粒生长阻力的增加归因于钢中钴的存在。

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