晶体孪晶
打滑(空气动力学)
材料科学
可塑性
临界切应力
剪切(地质)
数字图像相关
滑移线场
纯剪切
几何学
结晶学
单剪
复合材料
热力学
数学
物理
微观结构
化学
剪切速率
流变学
作者
Hüseyin Şehitoğlu,Y. Wu,S. Alkan,Elif Ertekin
标识
DOI:10.1080/09500839.2017.1316019
摘要
The work addresses two main questions that have baffled the shape memory research community. Firstly, the superb ductility of B2-NiTi cannot be solely attributed to slip on {0 1 1} planes, because there are not a sufficient number of independent slip systems under arbitrary deformations. We show unequivocally, upon diffraction measurements and local strain field traces, that deformation twinning on {1 1 4} planes that can provide additional systems to accommodate plastic flow is activated. Secondly, the slip direction on the {0 1 1} planes has not been established in NiTi with certainty. It is proved precisely to be in 0 0 1 direction based on crystallographic shear analysis producing the specific strain tensor components (measured at mesoscale with digital image correlation, DIC). Based on the single-crystal experiments, the CRSSs (critical resolved shear stress) are established as 250 and 330 MPa for slip and twinning, respectively. The results have implications in devising correct crystal plasticity formulations for shape memory alloys.
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