首页> 外文会议>Modeling of Casting, Welding and Advanced Solidification Processes XI vol.1 >PRIMARY ARM SPACINGS IN UNIDIRECTIONALLY SOLIDIFIED LOW ALLOY STEELS
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PRIMARY ARM SPACINGS IN UNIDIRECTIONALLY SOLIDIFIED LOW ALLOY STEELS

机译:单向凝固低合金钢的主臂间距

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Primary arm spacings and their morphologies in the ternary Fe - 1.6 % Mn - 0.1 to 0.75 % C alloys were investigated in quenched unidirectionally solidified specimens. The primary arms grew mainly in the so-called "close packed" arrangement and their spacing did not change with time. By increasing the growth rate and the temperature gradient in the liquid a decrease in primary arm spacings was seen. The results were compared with current primary arm models. It is seen that predictions of the Hunt and Hunt-Lu equations underestimate the experimental values whereas the Kurz-Fisher equation, Laxmanan's minimum undercooling and stability equations, Trivedi equation and Ma-Sahm equation overestimate them. Ma-Sahm's equation is modified and it is shown that this modified model can predict very closely experimental measurements and also many available experimental data in literature (122 data in thirteen different steels).
机译:在淬火的单向凝固试样中研究了Fe-1.6%Mn-0.1至0.75%C三元合金中的主臂间距及其形态。主臂主要以所谓的“密装”排列增长,并且它们的间距不会随时间变化。通过增加液体中的生长速率和温度梯度,可以看到主臂间距的减小。将结果与当前的主手臂模型进行比较。可以看出,对Hunt和Hunt-Lu方程的预测低估了实验值,而Kurz-Fisher方程,Laxmanan的最小过冷和稳定性方程,Trivedi方程和Ma-Sahm方程则高估了实验值。对Ma-Sahm方程进行了修改,结果表明,该修改后的模型可以非常精确地预测实验测量结果,并且可以预测文献中的许多可用实验数据(13种不同钢中的122个数据)。

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