首页> 外文学位 >Role of inclusions in the nucleation of alpha-aluminum and iron intermetallics in the aluminum-rich corner of the aluminum-silicon-iron ternary system .
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Role of inclusions in the nucleation of alpha-aluminum and iron intermetallics in the aluminum-rich corner of the aluminum-silicon-iron ternary system .

机译:夹杂物在铝-硅-铁三元系富铝角中α-铝和铁金属间化合物成核中的作用。

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摘要

The aim of this work has been to study the nucleation of iron intermetallics and the alpha-Al phase on inclusions introduced into dilute liquid Al-Si-Fe alloys. Systematic experiments were designed to study the effect of (i) the alloy composition (Fe and Si), (ii) cooling rate (from 0.2°C/s to 15°C/s, similar to those encountered in most commercial casting processes), and (iii) inclusion type (where a variety of inclusions covering the most common oxides, carbides, and borides were used).; Six experimental alloys representative of the Al-rich corner of the Al-Si-Fe system were used in the present study. Gas injection experiments for the addition of a variety of inclusions (alpha- and gamma-Al2O3, MgO, CaO, TiC, SiC, Al4C3 and TiB2) to the alloy melts were carried out using a gas injection technique that successfully introduced the different oxides, carbides and borides into the liquid aluminum alloys.; The results showed that the volume fraction of iron intermetallics obtained increased with the increase in the amount of Fe and Si added, as well as with the decrease in cooling rate. A low cooling rate produces larger-sized intermetallics, whereas a high cooling rate results in a higher density of intermetallics. Iron addition alone is more effective than either Si or Fe+Si additions in producing intermetallics.; The systematic inoculation experiments carried out to study the influence of various inclusions on the nucleation of the alpha-Al phase in Al-Si-Fe alloys at different cooling rates showed that in the dilute alloys (containing less than 1.5 pct Si+Fe), almost all the inclusion types have high percentages of occurrence within the alpha-Al phase, indicating that nucleation is promoted on the surface of such inclusions.; Nucleation of Fe-intermetallic phases (i.e. binary Al-Fe, alpha-Al8Fe2Si, beta-Al5FeSi, delta-Al 4FeSi2 and q1-AlFeSi phases) on the surface of different inclusions in the six experimental Al-Si-Fe alloys was studied. It was found that nucleation of each of the Fe-intermetallic phases was generally observed to be promoted on the surface of several inclusions under the same conditions of alloy composition and cooling rate. However, some inclusions exhibited high potency for the nucleation of particular Fe-intermetallic phases under certain conditions and poor potency under other conditions. (Abstract shortened by UMI.)
机译:这项工作的目的是研究在稀液态Al-Si-Fe合金中引入的夹杂物上的铁金属互化物和α-Al相的形核。设计了系统实验来研究(i)合金成分(Fe和Si),(ii)冷却速率(从0.2°C / s到15°C / s,与大多数商业铸造过程中遇到的相似)的影响;和(iii)夹杂物类型(其中使用了涵盖最常见的氧化物,碳化物和硼化物的各种夹杂物)。本研究中使用了六种代表Al-Si-Fe系统富铝角的实验合金。使用气体注入技术成功进行了气体注入实验,该实验将多种夹杂物(α-和γ-Al2O3,MgO,CaO,TiC,SiC,Al4C3和TiB2)添加到合金熔体中,碳化物和硼化物进入液态铝合金。结果表明,所获得的金属间铁的体积分数随着Fe和Si的添加量的增加以及冷却速率的降低而增加。低冷却速率产生较大尺寸的金属间化合物,而高冷却速率导致较高的金属间化合物密度。在生产金属间化合物时,单独添加铁比添加Si或Fe + Si更为有效。通过系统接种实验研究了不同夹杂物对不同冷却速率下Al-Si-Fe合金中各种夹杂物对α-Al相成核的影响,结果表明,在稀合金中(Si + Fe含量小于1.5%),几乎所有的夹杂物类型都在α-Al相中出现的百分比很高,表明这种夹杂物的表面促进了成核作用。研究了六种实验Al-Si-Fe合金中不同夹杂物的表面上的Fe-金属间相(即二元Al-Fe,α-Al8Fe2Si,β-Al5FeSi,δ-Al4FeSi2和q1-AlFeSi相)的形核。发现在相同的合金组成和冷却速率条件下,通常观察到每个铁-金属间相的成核作用在几种夹杂物的表面上得到促进。但是,某些夹杂物在某些条件下显示出特定的铁金属间相成核的高效能,而在其他条件下则显示出较差的效能。 (摘要由UMI缩短。)

著录项

  • 作者

    Khalifa, Waleed.;

  • 作者单位

    Universite du Quebec a Chicoutimi (Canada).;

  • 授予单位 Universite du Quebec a Chicoutimi (Canada).;
  • 学科 Engineering Metallurgy.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 340 p.
  • 总页数 340
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
  • 关键词

  • 入库时间 2022-08-17 11:43:28

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