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Characterising the effects of strain rate, crystallographic texture and direction of loading on the mechanical behaviour of Ti-6Al-4V

机译:表征应变速率,晶体结构和负载方向对Ti-6al-4V力学行为的影响

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摘要

A cross-rolled plate of the industrially important titanium alloy, Ti-6Al-4V, has been microstructurally and mechanically characterised using a range of different experimental techniques. The microstructure of the material has been studied using backscatter electron (BSE) microscopy and electron backscatter diffraction (EBSD), with the crystallographic orientation data from the EBSD used to reconstruct the orientation distribution function of the dominant α phase. The mechanical behaviour of the material has been investigated at quasi-static and high strain rates in the three orthogonal material orientations in both tension and compression. A novel in situ optical measurement technique has been used to measure the geometry of the specimens during both quasi-static and high strain rate mechanical testing, improving the accuracy of the mechanical testing results and providing unprecedented information about the evolving geometries of the specimens. The macroscopic stress–strain response and the evolution of specimen cross-sectional profiles have been qualitatively linked to the macroscopic crystallographic texture in the plate.
机译:工业上重要的钛合金Ti-6Al-4V的交叉轧制板已通过一系列不同的实验技术进行了微观结构和机械表征。已经使用背散射电子(BSE)显微镜和电子背散射衍射(EBSD)对材料的微观结构进行了研究,并将来自EBSD的晶体取向数据用于重构主要α相的取向分布函数。在准静态和高应变速率下,在拉伸和压缩的三个正交材料方向上研究了材料的机械性能。一种新颖的原位光学测量技术已被用于在准静态和高应变率机械测试中测量样品的几何形状,从而提高了机械测试结果的准确性,并提供了有关样品不断演变的几何形状的空前信息。宏观应力-应变响应和样品横截面轮廓的演变已定性地与板中的宏观晶体学纹理有关。

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