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Microscopic strain localisation in Ti-6Al-4V during uniaxial tensile loading

机译:在单轴拉伸载荷下Ti-6al-4V中的微观应变局部化

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摘要

The titanium alloy Ti-6Al-4V is investigated in terms of the effect of macrozones within the microstructure through cross correlation of local strain measurements and microstructure, using digital image correlation (DIC) and electron backscatter diffraction (EBSD) techniques. Three different product forms of Ti-6Al-4V including strong-, intermediate- and a no-macrozone condition with a weak texture have been investigated focusing on the impact of the primary macrozone orientation, macrozone dimensions and loading direction. Strain localisation was characterised at the microscale using optical microscopy during in-situ uniaxial tensile loading and analysing the recorded images using digital image correlation. The no-macrozone material and the strong-macrozone condition loaded parallel to the macrozones exhibited homogeneous strain behaviour in both the elastic and plastic strain regions. The strong (soft-orientated) macrozone condition loaded at 45 and 90 both exhibited heterogeneous strain behaviour in grains with their c-axis oriented perpendicular to the loading direction, while the intermediate (hard-oriented) macrozone material exhibited heterogeneous strain behaviour when the majority of grains had their c-axis parallel to the loading direction. The strong-macrozone material showed a direct correlation between macrozones with their grains favourably oriented for prismatic slip and high strain regions when loaded at 45 to the elongation direction. Correlating a region of high strain localisation with Schmid factor maps for basal and prismatic slip, suggests a likelihood of basal slip when loading at 90.
机译:使用数字图像相关(DIC)和电子背散射衍射(EBSD)技术,通过局部应变测量和微观结构的互相关,研究了钛合金Ti-6Al-4V在微观结构中的大区影响。研究了Ti-6Al-4V的三种不同产品形式,包括质地较弱的强,中等和无宏观区,重点放在主要大区取向,大区尺寸和装载方向的影响上。在原位单轴拉伸载荷过程中,使用光学显微镜在微观尺度上表征了应变定位,并使用数字图像相关性分析了记录的图像。平行于大区域加载的无宏观区材料和强宏观区条件在弹性应变区和塑性应变区均表现出均一的应变行为。在45和90加载的强(软取向)大区条件在晶粒的c轴垂直于加载方向时均表现出非均质应变行为,而中等(硬取向)大区材料在晶化时表现出非均质应变行为。大多数谷物的c轴平行于加载方向。这种强宏微区材料在以伸长率45°加载时,大相区之间具有直接相关性,其大区晶粒有利于棱柱滑动和高应变区。将高应变局部区域与基础和棱柱滑动的施密特因子图相关联,表明在90°荷载时基底滑动的可能性。

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