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Mechanism of the Peritectic Phase Transition in Fe–C and Fe–Ni Alloys under Conditions Close to Chemical and Thermal Equilibrium

机译:Fe-C和Fe-Ni合金在接近化学平衡和热平衡的条件下发生包晶相变的机理

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In-situ studies of the peritectic phase transition were performed under conditions close to chemical and thermal equilibrium in order to investigate the governing mechanism of both the peritectic reaction and the subsequent peritectic transformation using high-temperature laser-scanning microscopy in combination with the concentric solidification technique. Experiments have been conducted in the Fe–C and Fe–Ni systems in order to determine the role of solute diffusion on the observed reaction and transformation kinetics. The peritectic reaction as such as well as the subsequent peritectic transformation can be explained by diffusion-controlled mechanisms. Observations of the triple point L /γ /δ revealed that the peritectic reaction can be described as the solidification of γ along the L /δ interface, and new insights have been gained on the localized re-melting of δ during the peritectic reaction.
机译:[i]在接近化学和热平衡的条件下进行了包晶相变的原位研究,以研究包晶反应和随后的包晶转变的控制机理,采用高温激光扫描显微镜结合同心凝固技术。为了确定溶质扩散对观察到的反应和转化动力学的作用,已经在Fe–C和Fe–Ni系统中进行了实验。这样的包晶反应以及随后的包晶转变可以通过扩散控制机制来解释。对三点 L / γ/ δ的观察表明,包晶反应可以描述为沿着 L / δ界面的γ凝固,并且是新的。在包晶反应期间δi的局部重熔方面已经获得了一些见识。

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