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Effect of Cooling Rates on the Microstructure Evolution and Eutectic Formation of As-cast Mg-Al-Ca Alloys

机译:冷却速率对铸造Mg-Al-Ca合金微观结构演化和共晶形成的影响

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A Mg-5.0wt.%Al-2.0wt.%Ca alloy (AC52) was cast at different cooling rates varying from 0.5 to 65°C/s. The dendrites was characterized by determining the secondary dendrite arm spacing (SDAS) and the volume fraction of secondary eutectic phases with the linear intercept and point counting methods, respectively. The SDAS decreases significantly with increasing cooling rates, while the volume fraction of the eutectic phase increases from 10.8 ± 1.44 vol.% at 0.5°C/s to 20.4 ± 1.52 vol.% at 20°C/s. However, a further increase in cooling rate beyond 20°C/s has limited influence on the volume fraction of eutectic phases. A large number of dispersed eutectic phases were observed in the primary α-Mg of the alloys cast at low cooling rates. Although, at the microscale, there were no dispersed eutectic phases in alloys cast at a high cooling rate of 30°C/s, nanoscale eutectic phases were found by TEM observation. The dimensions and morphology of the Al_8Mn_5 phase were also dependent on the cooling rates. When cooling rates were high, the size of Al_8Mn_5 particles was relatively small compared to that observed at low cooling rates. The majority of Al_8Mn_5 particles were found to be attached to the eutectic phases, which implies the possible nucleation of the eutectic phase on the Al_8Mn_5 particles present in the melt.
机译:加入Mg-5.0重量%的Al-2.0重量%Ca合金(AC52)以不同的冷却速率变化从0.5至65℃流延/秒。树突的特点是判定二次枝晶臂间距(SDAS)和次级共晶相的与线性截距和点计数法的体积分数,分别。所述SDAS显著随冷却速率降低,而在20℃/秒从10.8±1.44%(体积)以0.5℃的共晶相的体积分数增加/ s至20.4±1.52%(体积)。然而,进一步增加冷却速度超过20℃/秒,对共晶相的体积分数的影响有限。在低冷却速率铸造合金的初生α-Mg系中观察到的大量分散的共晶相。虽然,在微尺度下,没有在合金铸造在30℃的高冷却速度分散共晶相/ s时,纳米级的共晶相,通过TEM观察发现。所述Al_8Mn_5相的尺寸和形态也依赖于冷却速度。当冷却速率很高,相比,在低冷却速率观察Al_8Mn_5颗粒的尺寸相对较小。大多数Al_8Mn_5颗粒被发现附着到共晶相,这意味着上Al_8Mn_5颗粒存在于熔体中的共晶相的可能成核。

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