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Effect of pulse current and its application direction on the size effect of nanocrystalline nickel foil
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作者 WANG Yi-yan LI Chao +2 位作者 CHEN Zi-shuai du jin-yang LI Feng 《Journal of Central South University》 2025年第7期2416-2431,共16页
In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ra... In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ratios(λ)were prepared using pulsed electrodeposition in this paper and unidirectional tensile experiments were carried out at room temperature with different currents and their applied directions.The experimental results show that the nanocrystalline Ni foil produces an obvious electroplasticity effect after applying the current field,and when 300<λ<1100,the current weakens the size effect of nanocrystalline Ni foils to a certain extent,and the angle between the current direction and the deformation direction also affects the mechanical response of nanocrystalline Ni foils,and when the angle between the current direction and the deformation direction is 0°,electroplasticity effect is the best,and the current has the most significant effect of abating the size effect of the material.The mechanism of unidirectional tensile deformation of nanocrystalline Ni foils under the effect of pulsed current was analyzed using TEM and TKD.It was found that the applied pulse current increased the activity of the nanocrystalline boundaries,promoted the movement of dislocations,and reduced the tendency of dislocation entanglement.The higher the peak current density and the smaller the angle between the direction of the current and the direction of deformation,the smaller the grain boundary orientation difference,the more dispersed the grain orientation,and the lower the density of geometrically necessary dislocations(GND)in the deformed nanocrystalline foil,the more significant the effect on material plasticity improvement. 展开更多
关键词 nanocrystalline Ni foil size effect electroplasticity effect current direction
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脉冲电流辅助作用下纳米晶Ni箔低应变速率变形行为及成形工艺
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作者 杜金洋 李超 +1 位作者 陈子帅 邹庆 《塑性工程学报》 CAS CSCD 北大核心 2023年第6期239-248,共10页
针对纳米晶金属箔材塑性成形性能低和成形困难的问题,以纳米晶Ni箔为研究对象,研究了脉冲电流辅助作用下其单向拉伸、低应变速率条件下的变形行为。采用SEM和TEM观察了拉伸试样的断口形貌及微观组织变化。结果表明,随着脉冲峰值电流密... 针对纳米晶金属箔材塑性成形性能低和成形困难的问题,以纳米晶Ni箔为研究对象,研究了脉冲电流辅助作用下其单向拉伸、低应变速率条件下的变形行为。采用SEM和TEM观察了拉伸试样的断口形貌及微观组织变化。结果表明,随着脉冲峰值电流密度的提高,纳米晶Ni箔的成形性能明显改善,在温度为350℃、应变速率为7×10^(-4)s^(-1),峰值电流密度为500 A·mm^(-2)时,添加了3%ZrO2的Ni箔的伸长率达到12.3%。显微组织及织构分析表明,脉冲电流的施加改变了材料的断裂类型,并在一定程度上影响了晶粒内部及晶界处的位错运动,进一步增强了纳米晶粒以箔材厚度方向为轴的转动性,从而提升了材料的变形性能。此外,根据材料的变形特点,改进或提出了几种脉冲电流辅助纳米晶金属箔材成形方法。 展开更多
关键词 纳米晶箔材 电致塑性效应 变形行为 微观组织
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