首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >A comparative study of clock rolling and unidirectional rolling on deformation/recrystallization microstructure and texture of high purity tantalum plates
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A comparative study of clock rolling and unidirectional rolling on deformation/recrystallization microstructure and texture of high purity tantalum plates

机译:时钟轧制和单向轧制对高纯钽板变形/再结晶组织和织构的比较研究

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摘要

Clock rolling, which rotates a sample 135° with respect to the previous rolling direction, was used to study the effect of strain path change on deformation and recrystallization microstructure and texture in high purity tantalum plates in the present work. High purity tantalum plates were unidirectional and clock rolled to 87% reduction then annealed at various temperatures. The texture and microstructure in the surface layer of the rolled and annealed plates were characterized using X-ray diffraction (XRD), light microscopy (LM), electron backscatter diffracting (EBSD) and electron channeling contrast imaging (ECCI).The hardness values of the annealed plates were measured using Vickers hardness testing. The results show that the unidirectional-and clock-rolled materials exhibit different textures. The unidirectional rolled plate recrystallized more quickly than that of the clock rolled plate. After annealing at 1200℃, pronounced γ-fiber in the unidirectional rolled plate while strong cube texture mixed with less strong γ-fiber in the clock rolled plate was found. The annealed clock rolled plate had smaller grain size and less variation than that of the annealed unidirectional rolled plate. The change of strain path plays an important role in the recrystallization kinetics and microstructure of high purity tantalum plates.
机译:时钟滚动使样品相对于先前的滚动方向旋转135°,用于研究应变路径变化对高纯度钽板中变形和再结晶微结构和织构的影响。高纯度钽板是单向的,并经时钟轧制至还原率达87%,然后在各种温度下退火。使用X射线衍射(XRD),光学显微镜(LM),电子背散射衍射(EBSD)和电子通道对比成像(ECCI)表征轧制和退火板表面层的织构和微观结构。使用维氏硬度测试法测量退火板。结果表明,单向和时钟轧制材料表现出不同的织构。单向轧制板的重结晶速度比时钟轧制板快。 1200℃退火后,在单向轧制板中发现了明显的γ-纤维,而在时钟轧制板中发现了强烈的立方织构和较弱的γ-纤维混合。与退火的单向轧制板相比,退火的时钟轧制板具有较小的晶粒尺寸和较小的变化。应变路径的变化在高纯钽板的再结晶动力学和微观结构中起着重要作用。

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