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BCC-Fe中螺位错与[010]间隙位错环相互作用分子动力学模拟
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作者 王瑾 贺新福 +3 位作者 曹晗 王东杰 豆艳坤 杨文 《原子能科学技术》 EI CAS CSCD 北大核心 2021年第7期1210-1218,共9页
本文利用分子动力学方法对BCC-Fe中螺位错与[010]间隙位错环的相互作用机制进行了模拟,研究结果表明,螺位错在不同温度下滑移靠近不同尺寸位错环时,它们之间的相互作用机制不同。当位错环尺寸为1.5 nm时,位错环在2 K下稳定存在,螺位错... 本文利用分子动力学方法对BCC-Fe中螺位错与[010]间隙位错环的相互作用机制进行了模拟,研究结果表明,螺位错在不同温度下滑移靠近不同尺寸位错环时,它们之间的相互作用机制不同。当位错环尺寸为1.5 nm时,位错环在2 K下稳定存在,螺位错在剪切应力作用下滑移通过它,并与之位错反应生成[111]位错环,临界剪切应力明显增加;随温度升高到300 K和600 K,[010]位错环因稳定性降低会转变为[111]位错环,该位错环与螺位错反应可生成[010]位错片段,对螺位错阻碍作用逐渐变弱,临界剪切应力增量逐渐降低;随温度进一步升高到823 K,螺位错易交滑移,其与位错环始终无接触,因此无阻碍作用。当位错环尺寸增大到4 nm时,[010]位错环稳定性增加,300~823 K下位错环对螺位错滑移阻碍作用也明显增加。 展开更多
关键词 BCC-Fe 位错 温度 位错环尺寸 分子动力学
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Correlated necklace dislocations in highly oriented nanotwinned metals
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作者 Haofei ZHOU Pan-pan ZHU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第4期294-303,共10页
In this paper, we review recent progress in the understanding of a novel dislocation mechanism, named correlated necklace dislocations(CNDs), activated in highly oriented nanotwinned(NT) metals under monotonic and cyc... In this paper, we review recent progress in the understanding of a novel dislocation mechanism, named correlated necklace dislocations(CNDs), activated in highly oriented nanotwinned(NT) metals under monotonic and cyclic loading applied parallel to the twin boundaries(TBs). This mechanism was initially revealed to be responsible for the continuous strengthening behavior of NT metals when the TB spacing(λ) is reduced to around 1 nm. It was later found that the presence of a crack-like defect could trigger the operation of CNDs at much larger TB spacings. Most recently, atomistic modeling and experiments demonstrated a history-independent and stable cyclic response of highly oriented NT metals governed by CNDs formed in the NT structure under cyclic loading. CNDs move along the twin planes without directional lattice slip resistance, thus contributing to a symmetric cyclic response of the NT structure regardless of pre-strains imposed on the sample before cyclic loading. We conclude with potential research directions in the investigation of this unique deformation mechanism in highly oriented NT metals. 展开更多
关键词 Nanotwinned(NT) metals Correlated necklace dislocation(CND) Twin boundary(TB) Size effect Cyclic response
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