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Transformation Kinetics in Controlled-Power and Controlled-Temperature Cycle Experiments

机译:功率控制和温度循环实验中的转变动力学

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On-heating transformation kinetics were investigated for several steels by using a Gleeble capable of programmable power input as well as programmable temperature cycling. Transformation kinetics determined in both modes are reported. The temperature cycles are significantly different between the two modes due to the latent heat associated with the phase transformations. Both diffusion rates and transformation driving force increase with temperature above the eutectoid temperature, therefore the latent heat can potentially have a significant impact on the transformation kinetics. Experiments with plain carbon steels illustrate that the latent heat of austenite formation causes an appreciable temperature arrest during transformation, and the dilatation response is similarly altered. A kinetic transformation model, based on the decomposition of pearlite and the diffusional growth of austenite, reproduced the transient dilatation data obtained from both control modes reasonably well using the same kinetic parameter values.
机译:通过使用具有可编程功率输入和可编程温度循环功能的Gleeble,研究了几种钢的加热转变动力学。报告了在两种模式下确定的转化动力学。由于与相变有关的潜热,两种模式之间的温度循环明显不同。扩散速率和转变驱动力均随温度高于共析温度而增加,因此潜热可能对转变动力学产生重大影响。用普通碳素钢进行的实验表明,奥氏体形成的潜热在相变过程中会引起明显的温度停滞,并且类似地改变膨胀响应。基于珠光体分解和奥氏体扩散生长的动力学转换模型,使用相同的动力学参数值合理地再现了从两种控制模式获得的瞬态膨胀数据。

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