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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Particle redistribution and matrix microstructure evolution during hot extrusion of cast SiCp reinforced aluminium alloy matrix composites
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Particle redistribution and matrix microstructure evolution during hot extrusion of cast SiCp reinforced aluminium alloy matrix composites

机译:铸造SiCp增强铝合金基复合材料热挤压过程中的颗粒再分布和基体组织演变。

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摘要

The aim of the present investigation is to understand particle redistribution and matrix microstructure development during hot extrusion of aluminium matrix composites and the influence of process parameters on these two key microstructuralfeatures. Cast composite billets have been partially extruded to study the sequence of microstructure development. Strain and strain rate distribution in the partial extrudates have been measured using a 'visioplasticity' technique. Results indicate thatstrain and strain rate distribution are more homogeneous in the composites than in the unreinforced alloy. Extrudate microstructures reveal the presence of particle bands and deformation bands aligned in the extrusion direction. It is noted that shearingof SiC particle clusters leads to particle banding, and an increase in extrusion ratio and/or a decrease in particle size enhances particle band formation. This phenomenon is attributed to increasing strain partitioning between the cluster and the matrixwith increasing strain and/or decreasing particle size. The formation of deformation bands is attributed to a grain splitting phenomenon which is found to be more extensive in composites compared with the unreinforced alloys.
机译:本研究的目的是了解铝基复合材料热挤压过程中颗粒的重新分布和基体微观结构的发展,以及工艺参数对这两个关键微结构特征的影响。铸造复合材料坯料已部分挤出,以研究微观组织发展的顺序。已经使用“粘塑性”技术测量了部分挤出物中的应变和应变速率分布。结果表明,与未增强合金相比,复合材料的应变和应变速率分布更均匀。挤出物的微结构揭示了在挤出方向上排列的颗粒带和形变带的存在。注意,SiC颗粒簇的剪切导致颗粒带化,并且挤出比的增加和/或颗粒尺寸的减小促进了颗粒带的形成。该现象归因于随着应变增加和/或粒度减小,簇和基质之间的应变分配增加。变形带的形成归因于晶粒分裂现象,与未增强合金相比,该现象在复合材料中更为广泛。

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