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Complementary Thermal Analysis Protocols for the Investigation of the Tempering Reactions of a Carbide-Free Bainitic Steel

机译:互补的热分析方案,用于研究无碳纤面钢的回火反应

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Austenite corresponds to a major constituent of carbide-free bainitic steels required to obtain enhanced deformability assisted by transformation-induced plasticity. It is, therefore, of foremost importance to retain sufficient amounts during processing and heat treatment. In order to analyze and describe the tempering reactions occurring during heating a material consisting of bainitic ferrite and C-enriched austenite, a complementary thermal analysis protocol has been applied using dilatometry and differential scanning calorimetry. Thereby, kinetic parameters were determined and interpreted in the view of literature and supporting calculations. Austenite decomposition was observed using both methods in the temperature regime of about 500 degrees C. The reaction's signature was revealed by calculation of the transformation enthalpy. Dilatometry suggests that decomposition of highly C-enriched austenite predominates at lower temperatures and, on further heating, regions with lower C concentrations follow. Additionally, dilatometry revealed C redistribution in bainitic ferrite already occurring at temperatures between 230 degrees C and 330 degrees C.
机译:奥氏体对应于获得通过转化诱导的可塑性辅助的增强的可易变形性所需的无碳化物壳体钢的主要组成部分。因此,在加工和热处理期间保持足够量的重要性是最重要的。为了分析和描述在加热伯氏体铁氧体和C富含C型奥氏体组成的材料期间发生的回火反应,使用稀释测定和差示扫描量热法施加互补的热分析方案。由此,在文献和支持计算的视图中确定和解释动力学参数。使用两种方法在约500℃的温度范围内观察奥氏体分解。通过计算转化焓来揭示反应的签名。抗扩张法表明,在较低温度下,高度C富集的奥氏体的分解在较低的温度下,并且在进一步加热时,遵循含量下部的C浓度的区域。另外,膨胀测定显示在230℃和330摄氏度之间的温度下已经发生的贝氏体铁氧体中的C再分配。

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