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Solidification paths for an icosahedral quasicrystalline phase in cast Al62Cu25.5Fe12.5 and Al55Cu25.5Fe12.5Be7 alloys

机译:铸造Al62Cu25.5Fe12.5和Al55Cu25.5Fe12.5Be7合金中二十面体准晶相的凝固路径

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摘要

The solidification behavior of the icosahedral (i) phase in (Al6(2-x)Be(x)) Cu25.5Fe12.5 (x = 0, 7) alloys has been irivestigated using a conventional casting technique. It was observed that the addition of beryllium (Be) modified the i-phase formation mechanism from peritectic reaction to primary solidification compared to as-cast Al62Cu25.5Fe12.5 alloy. The establishment of the new solidification path is attributed to the narrowing of the freezing range resulting from the beryllium addition. However, the resolidification at a slow cooling rate could result in the formation of the i-phase by peritectic reaction. The conversion of the initial solidification path to the peritectic solidification was attributed to a cooling rate effect resulting from the elaboration process. A new decomposition process of the bulk single i-phase in the Be-containing alloy is also proposed in the present paper. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 23]
机译:已经使用常规铸造技术研究了(Al6(2-x)Be(x))Cu25.5Fe12.5(x = 0,7)合金中二十面体(i)相的凝固行为。观察到,与铸态Al62Cu25.5Fe12.5合金相比,添加铍(Be)改变了从包晶反应到初次凝固的i相形成机理。新固化路径的建立归因于由于添加铍而导致的冻结范围变窄。然而,在缓慢的冷却速率下的重新凝固可能导致包晶反应形成i相。初始凝固路径向包晶凝固的转化归因于精细加工过程产生的冷却速率效应。本文还提出了一种新的含Be合金单相i相分解过程。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:23]

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