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Influence of Si and cooling rate on microstructure and mechanical properties of Al-Si-Mg cast alloys

机译:Si和冷却速率对Al-Si-Mg铸造合金组织和力学性能的影响

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摘要

This paper aims to investigate the effect of Si-content and microstructure on mechanical properties of Al-Si-Mg alloys with the purpose of to develop high-strength cast aluminum alloys that are anodizable. The Si-content was 2.5, 3.5 and 5.5 wt% Si, and both Sr-modified and unmodified conditions were used. The samples were produced using the gradient solidification furnace to generate a well-controlled microstructure. The resulting secondary dendrite arm spacing was 10 and 20 mu m. The microstructural features were evaluated by employing SEM/EDS and optical microscopy. Furthermore, computed tomography (CT) scan technology was used to provide a 3D view of high-density phases in the microstructure. The mechanical properties of these alloys were studied by means of tensile and hardness testing where the latter was performed on the macrolevel and microlevel. The results demonstrate clearly how the Si growth in the microstructure is restricted by increased cooling rate and modification and its role in strength development in Al-Si alloys. Additionally, the CT scan visualized the morphology of intermetallics and supported in identifying the oxide layer growth as a result of the anodizing process. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:本文旨在研究Si含量和显微组织对Al-Si-Mg合金力学性能的影响,以开发可阳极氧化的高强度铸造铝合金。 Si含量为2.5、3.5和5.5wt%的Si,并且使用了Sr改性和未改性的条件。使用梯度凝固炉生产样品,以产生可控的微观结构。所得的第二枝晶臂间距为10和20μm。通过使用SEM / EDS和光学显微镜评价了微观结构特征。此外,计算机断层扫描(CT)扫描技术用于提供微观结构中高密度相的3D视图。通过拉伸和硬度测试研究了这些合金的机械性能,其中在宏观和微观层面进行了测试。结果清楚地说明了如何通过提高冷却速率和改性来限制硅在微观结构中的生长及其在Al-Si合金强度发展中的作用。此外,CT扫描可视化了金属间化合物的形貌,并有助于确定由于阳极氧化工艺而产生的氧化层生长。版权所有(C)2015 John Wiley&Sons,Ltd.

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