材料科学
合金
铪
三元运算
铝
微观结构
冶金
降水
同种类的
热力学
锆
计算机科学
物理
气象学
程序设计语言
作者
Håkon Hallem,Børge Forbord,Knut Marthinsen
标识
DOI:10.1016/j.msea.2003.10.375
摘要
To meet the demand for extruded aluminium alloys tolerant of temperatures up to 600 °C, highly stable microstructures with the ability to maintain strength at such temperatures are required. Such alloys are presently not available commercially, however, by adding elements that form a homogeneous and dense distribution of thermally stable dispersoids, this may be achieved. A relatively untried element in this respect is hafnium (Hf), which may lead to a significant increase in the recrystallisation resistance/structural stability. By subjecting the alloy to a carefully chosen homogenisation treatment, fully coherent Al3Hf-dispersoids may form. In the current investigation a binary Al–Hf alloy and a ternary Al–Hf–Si alloy have been investigated. It has been found that Si enhances the Al3Hf-precipitation in these alloys. However, the results indicate that the Si-content should be kept below 0.15 wt.% in order to avoid the formation of AlHfSi-phases.
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