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Characterisation of strain-induced precipitation behaviour in microalloyed steels during thermomechanical controlled processing

机译:热机械控制加工过程中微合金钢应变诱导析出行为的表征

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摘要

The temperature at which thermomechanical controlled processing is undertaken strongly influences strain-induced precipitation (SIP) in microalloyed steels. In this study, the recrystallisation-precipitation-time-temperature curve was simulated to determine the full recrystallisation temperature, recrystallisation-stop temperature and the temperature where precipitation would occur at the shortest time. The calculated temperatures were verified by experimental testing for rolling between 1100 °C and 850 °C. On the basis of this a finishing deformation of 850 °C was chosen in order to maximise the precipitate number density formed in a fully unrecrystallised austenite. The orientation relationship between the SIP in austenite, and subsequent transformation to ferrite was identified by calculation from the coordinate transformation matrix, and by electron diffraction in the transmission electron microscope. The NbC formed as coherent/semi-coherent precipitates in the austenite, and remained coherent/semi-coherent in the ferrite, indicating a Kurdjumov-Sachs orientation relationship between the austenite and ferrite on transformation.
机译:进行热机械控制处理的温度强烈影响微合金钢中的应变诱发析出(SIP)。在这项研究中,模拟了重结晶-沉淀-时间-温度曲线,以确定完全重结晶温度,重结晶停止温度和最短时间内发生沉淀的温度。通过在1100°C和850°C之间滚动的实验测试验证了计算出的温度。基于此,选择了850°C的最终变形,以使在完全未结晶的奥氏体中形成的析出物数量密度最大化。通过坐标转换矩阵的计算以及透射电子显微镜中的电子衍射,可以确定奥氏体中SIP与随后转变为铁素体之间的取向关系。 NbC在奥氏体中以相干/半相干析出物的形式形成,并在铁素体中保持相干/半相干,表明奥氏体和铁素体在转变时的Kurdjumov-Sachs取向关系。

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