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Microstructure evolution in metals induced by high density electric current pulses

机译:高密度电流脉冲在金属中引起的显微组织演变

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摘要

In this paper, microstructure evolution in metals induced by high density electric current pulses (ECPs) treatment, such as grain refinement, formation of oriented microstructure and redistribution of inclusions, is carefully reviewed. The mechanism for these microstructure evolutions is discussed. It is suggested that there are usually several factors working during ECP: Joule heating (including temperature rise, the heating rate and the cooling rate), stress (including thermal compressive stress, skin effect, electron wind force) and free energy change caused by the current. The Joule heat and the stress usually affect the dynamics, enhance the microstructure evolutions rate, while the free energy change affects the thermodynamics and lowers the barrier of the phase transformation or recrystallisation. The experimental results indicate that high current density ECP provides an effective approach to refine the microstructure of polycrystalline materials and to improve the mechanical properties of the materials.
机译:本文对由高密度电流脉冲(ECP)处理引起的金属微观结构演变(例如晶粒细化,定向微观结构的形成和夹杂物的重新分布)进行了仔细的综述。讨论了这些微观结构演变的机理。建议在ECP期间通常有几个因素起作用:焦耳热(包括温度升高,加热速率和冷却速率),应力(包括热压应力,集肤效应,电子风力)和由碳纳米管引起的自由能变化当前。焦耳热和应力通常会影响动力学,提高微观结构的演化速率,而自由能的变化会影响热力学,并降低相变或重结晶的障碍。实验结果表明,高电流密度ECP提供了一种有效的方法来细化多晶材料的微观结构并改善材料的机械性能。

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