材料科学
剪切(地质)
晶体孪晶
可塑性
开裂
纳米晶
延展性(地球科学)
剪切带
复合材料
变形(气象学)
纳米技术
地质学
微观结构
蠕动
构造学
古生物学
作者
Qi Zhu,Lingyi Kong,Haiming Lu,Qishan Huang,Yingbin Chen,Yue Liu,Wei Yang,Ze Zhang,Frédéric Sansoz,Haofei Zhou,Jiangwei Wang
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2021-09-03
卷期号:7 (36)
被引量:61
标识
DOI:10.1126/sciadv.abe4758
摘要
Metals containing abundant coherent twin boundaries (TBs) are able to sustain substantial plastic deformation without fracture due to shear-induced TB migration and sliding. Retaining ductility in these metals, however, has proven difficult because detwinning rapidly exhausts TB migration mechanisms at large deformation, whereas TB sliding was only evidenced for loading on very specific crystallographic orientations. Here, we reveal the intrinsic shear deformability of twins in nanocrystals using in situ nanomechanical testing and multiscale simulations and report extreme shear deformability through TB sliding up to 364%. Sliding-induced plasticity is manifested for orientations that are generally predicted to favor detwinning and shown to depend critically on geometric inhomogeneities. Normal and shear coupling are further examined to delineate a TB orientation-dependent transition from TB sliding to TB cracking. These dynamic observations reveal unprecedented mechanical properties in nanocrystals, which hold implications for improving metal processing by severe plastic deformation.
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