镁
可塑性
材料科学
冶金
结晶学
复合材料
化学
作者
Boyu Liu,Fei Liu,Nan Yang,Xiaobo Zhai,Lei Zhang,Yang Yang,Bin Li,Ju Li,E. Ma,Jian‐Feng Nie,Zhiwei Shan
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2019-07-04
卷期号:365 (6448): 73-75
被引量:336
标识
DOI:10.1126/science.aaw2843
摘要
Lightweight magnesium alloys are attractive as structural materials for improving energy efficiency in applications such as weight reduction of transportation vehicles. One major obstacle for widespread applications is the limited ductility of magnesium, which has been attributed to [Formula: see text] dislocations failing to accommodate plastic strain. We demonstrate, using in situ transmission electron microscope mechanical testing, that [Formula: see text] dislocations of various characters can accommodate considerable plasticity through gliding on pyramidal planes. We found that submicrometer-size magnesium samples exhibit high plasticity that is far greater than for their bulk counterparts. Small crystal size usually brings high stress, which in turn activates more [Formula: see text] dislocations in magnesium to accommodate plasticity, leading to both high strength and good plasticity.
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