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Strain Characterization and Microstructure Evolution Under Deformation in 2060 Alloy

机译:2060合金变形下的应变特征和微观结构演化

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A new method of DIC combined with EBSD is developed for the characterization of strain and microstructure evolution during bending. The traditional microhardness point and DIC methods are used to study the microstructure evolution in 2060 alloy during bending; the interested area suffers under tensile stress, the microstructure evolution is collected by SEM, EBSD, digital image correlation (DIC) method during bending. The results shows that the DIC method can both realize the strain tensor characterization of the interested area, and can also express the local strain tensor in the micro-area even more. The degree of grain division in the process of deformation is related to the strain in this region; the grains have larger strain of small angle grain boundary (SLGBs), which results in a new micro-organizational structure. The misorientation is smaller with larger strain degree while the misorientation is larger with smaller strain.
机译:开发了一种新的DIC方法,用于表征弯曲过程中应变和微观结构演化的表征。传统的微硬度点和DIC方法用于研究弯曲过程中2060合金的微观结构演化;感兴趣的面积遭受拉伸应力,通过SEM,EBSD,数字图像相关(DIC)方法在弯曲期间收集微观结构演变。结果表明,DIC方法可以实现感兴趣的面积的应变张量表征,并且还可以在微面积中表达局部应变张量。变形过程中的晶粒分裂程度与该区域的菌株有关;晶粒具有较大的小角度晶界(SLGBS),这导致新的微型组织结构。无论较大的应变程度都较小,菌株较小,菌株较大。

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