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Modification of Cast Al-Mg2Si Metal Matrix Composite by Li

机译:锂对铸造Al-Mg2 Si金属基复合材料的改性

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摘要

The effects of both Li modification and cooling rate on the microstructure and tensile properties of an in-situ prepared Al-15 pct Mg2Si composite were investigated. Adding 0.3 pct Li reduced the average size of Mg2Si primary particles from ~30 to ~6 μm. The effect of cooling rate was investigated by the use of a mold with different section thicknesses from 3 to 9 mm. The results show a refinement of primary particle size as a result of both Li additions and cooling rate increases, and their effects are additive. Similarly, both effects increased ultimate tensile stress (UTS) and elongation values. The thin sections show somewhat unexpectedly low and scattered tensile results attributed to the casting defects observed in fracture surfaces. The Li-modified alloy displays serrated yielding behavior that is not fully explained here. The refinement by Li and enhanced cooling rate is explained in terms of an analogy with the effect of Sr and cooling rate in Al-Si alloys, and is ultimately attributed to the effect of the alkali and alkaline earth metals deactivating oxide double films (bifilms) suspended in Al melts as favored substrates for intermetallics.
机译:研究了Li的改性和冷却速率对原位制备的Al-15 pct Mg2 Si复合材料的组织和拉伸性能的影响。添加0.3 pct的Li可以将Mg2 Si初级颗粒的平均尺寸从约30微米降低到约6微米。通过使用具有3至9 mm的不同截面厚度的模具来研究冷却速率的影响。结果表明,通过添加锂和增加冷却速度,可以细化一次粒径,并且它们的作用是累加的。同样,这两种作用都会增加极限拉伸应力(UTS)和伸长率值。薄截面显示出一些出乎意料的低和分散的拉伸结果,这归因于在断裂表面观察到的铸造缺陷。 Li改性合金显示出锯齿状的屈服行为,此处未完全说明。 Li的精炼和提高的冷却速率可以通过与Al-Si合金中Sr和冷却速率的影响进行类比来解释,最终归因于碱金属和碱土金属使氧化物双层(双膜)失活悬浮在铝熔体中作为金属间化合物的首选基质。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2009年第6期|822-832|共11页
  • 作者

    R. Hadian; M. Emamy; J. Campbell;

  • 作者单位

    McMaster University Hamilton L8S 4L8 Canada;

    School of Metallurgy and Materials University of Tehran Tehran Iran;

    Department of Metallurgy and Materials University of Birmingham Birmingham B15 2TT United Kingdom;

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  • 正文语种 eng
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