Faculty of Mechanical Engineering, University of Maribor, Smetanova ulica 17, SI-2000 Maribor, Slovenia.
Microsc Microanal. 2013 Oct;19(5):1308-16. doi: 10.1017/S1431927613001852. Epub 2013 Jun 18.
This work studied the phases in the Al corner of the Al-Mn-Be phase diagram in the as-cast state and heat-treated conditions. Metallographic investigations, X-ray diffraction, scanning electron microscopy, and energy-dispersive spectroscopy were used for identifying the phases. The Be contents in the identified phases were precisely determined using Auger electron spectroscopy. The results indicated that Al₆Mn does not dissolve Be, whilst λ-Al₄Mn dissolves up to 7 at.% Be. The average composition of the T phase, which is normally designated as Al₁₅Mn₃Be₂, was 72 at.% Al, 19 at.% Mn, and 9 at.% Be. The phase with the nominal composition Be₄AlMn contained more Al than Mn. The atomic ratio Al:Mn was between 1.3:1 and 2:1. The hexagonal Be-rich phase did not dissolve any Al and Mn. The icosahedral quasicrystalline (IQC) phase contained up to 45 at.% Be. The compositions of T phase, λ-Al₄Mn, IQC, and Be₄AlMn may vary, however, the ratio (Al + Be):Mn remained constant, and was close either to four or six indicating substitution of Al atoms with Be atoms in these phases.
本工作研究了铸态和热处理条件下 Al-Mn-Be 相图 Al 角的各相。采用金相研究、X 射线衍射、扫描电子显微镜和能量色散光谱法来鉴定各相。用俄歇电子能谱法精确测定了所鉴定相中的 Be 含量。结果表明,Al₆Mn 不溶解 Be,而 λ-Al₄Mn 最多可溶解 7at.%Be。通常被指定为 Al₁₅Mn₃Be₂的 T 相的平均组成为 72at.%Al、19at.%Mn 和 9at.%Be。具有标称组成 Be₄AlMn 的相含有比 Mn 更多的 Al。Al:Mn 的原子比在 1.3:1 到 2:1 之间。具有六方富 Be 相不溶解任何 Al 和 Mn。二十面体准晶(IQC)相最多含有 45at.%Be。然而,T 相、λ-Al₄Mn、IQC 和 Be₄AlMn 的组成可能会有所变化,但(Al + Be):Mn 的比值保持不变,接近于四或六,表明这些相中 Al 原子被 Be 原子取代。