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Effect of Initial Grain Size on the Static Recrystallization Kinetics of Nb Microalloyed Steels

机译:初始晶粒尺寸对Nb微合金钢静态再结晶动力学的影响

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The static recrystallization kinetics of a 0.08%C-0.055%Nb steel were investigated at 950℃ by means of interrupted hot compression tests; the results obtained in this way were analyzed using three different methods for assessing the fractional softening. In particular, the effect was studied of varying the initial grain size from 12 to 83 μm. The exponent relating initial grain size to the time for 50% recrystallization was found to be about 1.7. This is somewhat less than the exponent of 2.0 conventionally employed for plain C-Mn steels, and which is often quoted in the literature as applicable to Nb grades. In addition, by means of comparison with previous work on grades with lower levels of Nb and Mn, it is shown that higher levels of Mn make significant contributions to the retardation of static recrystallization in Nb steels.
机译:通过间断热压缩试验研究了0.08%C-0.055%Nb钢在950℃下的静态再结晶动力学。使用三种不同的方法评估以这种方式获得的结果,以评估分数软化率。特别地,研究了将初始晶粒尺寸从12μm改变为83μm的效果。发现初始晶粒尺寸与50%重结晶时间相关的指数为约1.7。这比常规的普通C-Mn钢的2.0指数要小一些,并且在文献中经常引用适用于Nb级的指数。另外,通过与先前对较低含量的Nb和Mn的牌号进行的比较,可以看出较高含量的Mn对Nb钢中静态再结晶的延迟起了重要作用。

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