高电流密度下铁碳薄膜的各向异性晶粒生长

Thomas Brede, R. Kirchheim, C. Volkert
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引用次数: 1

摘要

摘要研究了直流电(DC)对100 nm厚、碳浓度为0.7 ~ 4.4的铁碳薄膜晶粒生长的影响。在550℃退火过程中施加直流电流,证实了碳在电流方向上的预期输运,以及在富碳区域沿电流方向意外地形成了细长的、异常大的碳化物和铁素体晶粒。伸长晶粒的形成可以用碳化物析出引起的电迁移引起的碳通量发散来解释。这为利用直流电流控制铁的微观结构演变提供了一种可能的方案。交流电(AC)脉冲的变化以前已经被观察到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anisotropic Grain Growth in Iron-Carbon Films at High Electric Current Densities
Abstract We investigate the effect of direct electric current (DC) on grain growth in 100 nm thick iron-carbon films with carbon concentrations between 0.7 to 4.4 at%. The application of DC-current during annealing at 550 °C confirms the expected transport of carbon in the direction of the electric current and the unexpected formation of elongated, abnormally large carbide and ferrite grains along the current direction in the carbon-rich regions. The formation of elongated grains is explained by electromigration-induced carbon flux divergences that result from the carbide precipitates. This presents a possible scenario for controlling microstructure evolution in iron by using DC electric currents. Changes for alternating current (AC) pulses had been observed before.
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