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Effect of Cooling Rate and Neodymium Addition on Beta Intermetallic Phase of Al–Fe–Si Ternary System

机译:冷却速度和钕添加对Al-Fe-Si三元系统β金属间相的影响

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摘要

Aluminium silicon alloys are widely used in automotive industry and other structural application. However, the presence of high content of iron element in Al–Si alloys lead to precipitation of beta intermetallic phase that has a detrimental effect on mechanical properties. Reducing the adverse effects of β-Al~(9)Fe~(2)Si~(2)precipitates can be achieved by altering their morphology by adding element modifier and increasing solidification cooling rate. In this present work, simultaneous thermal analysis was used to study the effect of cooling rate (5, 10 and 30?°C?min_(?1)) on beta phase formation in Al–7Si–1Fe alloy added with neodymium at 0.3, 0.6 and 1?wt%. The beta phase precipitates were then characterized using optical microscopy and scanning electron microscopy equipped with EDS. Image analysis results showed the reduction in size of beta intermetallic phase as a result of the rare earth addition. Further analysis also showed the refinement of eutectic silicon.
机译:硅硅合金广泛用于汽车工业和其他结构应用。 然而,在Al-Si合金中存在高含量的铁元素导致β金属间相的沉淀,其对机械性能有害作用。 降低β-Al〜(9)Fe〜(2)Si〜(2)沉淀物的不良反应可以通过加入元素改性剂改变它们的形态来实现沉淀物,并增加凝固冷却速率。 在本工作中,使用同时热分析来研究在Al-7Si-1Fe合金中的β相形成的冷却速度(5,10和30℃℃的影响,以0.3, 0.6和1?wt%。 然后使用光学显微镜和配备有EDS的扫描电子显微镜表征β相沉淀物。 图像分析结果表明,由于稀土添加,β金属间相位的尺寸减小。 进一步的分析还显示了共晶硅的细化。

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