首页> 外文会议>International Conference on Textures of Materials(ICOTOM 14) pt.1; 20050711-15; Leuven(BE) >Uniformity of grain coarsening in a submicron grained Al-Sc alloy containing local variations in texture
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Uniformity of grain coarsening in a submicron grained Al-Sc alloy containing local variations in texture

机译:亚微米晶粒Al-Sc合金晶粒粗化的均匀性

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摘要

The effect of fine particles on the uniformity of grain coarsening in a submicron grained Al-Sc alloy containing significant local variations in texture has been investigated using high resolution EBSD. The alloy was processed by severe plastic deformation and low temperature ageing to generate a fine-grained (0.8 μm diameter) microstructure containing either a dispersion of nanosized Al_3Sc particles or a particle-free matrix. The initial processing generated a uniform grain size distribution, but the distribution of grain orientations was inhomogeneous with the microstructure containing colonies of grains consisting predominantly of either HAGBs or LAGBs with the latter possessing orientation gradients of up to 10 °/μm. Despite the marked differences in boundary character between these regions, the alloy undergoes slow and uniform grain coarsening during annealing at temperatures up to 500℃ with no marked change in the grain size distribution, boundary distribution and texture. A model of grain coarsening that takes into account the influence of fine particles on the kinetics of grain growth within an orientation gradient is outlined. The model predicts that a large volume fraction of fine particles (large f/r-value) tends to homogenize the overall rate of grain coarsening despite the presence of orientation gradients in the microstructure.
机译:使用高分辨率EBSD,已经研究了细颗粒对亚微米晶粒Al-Sc合金中晶粒粗大均匀性的影响,该Al-Sc合金中含有明显的局部局部织构变化。通过严重的塑性变形和低温时效处理该合金,以生成包含纳米级Al_3Sc颗粒分散体或无颗粒基质的细晶粒(直径为0.8μm)微结构。最初的加工产生了均匀的晶粒尺寸分布,但是晶粒取向的分布与包含主要由HAGBs或LAGBs组成的晶粒集落的微观结构不均匀,后者的取向梯度最高为10°/μm。尽管这些区域之间的边界特征存在显着差异,但合金在最高500℃的温度下退火过程中晶粒缓慢且均匀地粗化,晶粒尺寸分布,边界分布和织构没有明显变化。概述了晶粒粗化模型,该模型考虑了细颗粒对取向梯度内晶粒生长动力学的影响。该模型预测,尽管在微观结构中存在取向梯度,但较大体积分数的细颗粒(较大的f / r值)倾向于使晶粒粗化的总体速率均匀化。

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