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首页> 外文期刊>Materials Science and Engineering >Tensile properties and related microstructural aspects of hypereutectic Al-Si alloys directionally solidified under different melt superheats and transient heat flow conditions
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Tensile properties and related microstructural aspects of hypereutectic Al-Si alloys directionally solidified under different melt superheats and transient heat flow conditions

机译:在不同熔体过热度和瞬态热流条件下定向凝固的过共晶Al-Si合金的拉伸性能和相关的显微组织

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摘要

The present investigation deals with directional solidification (DS) of Al-15 wt% and 18 wt% Si alloys under transient heat flow conditions and further characterization of the related microstructures. Emphasis is given on the eutectic growth being affected not only by solidification kinetics but also by melt superheat, which is varied in two degrees for each alloy, i.e., 6% and 2396 above the liquidus temperature. The dependences of interphase spacing (X) on both solidification kinetics (fast, intermediate and slow cooling conditions) and on melt superheat during solidification of hypereutectic alloys are reported for the first time. Furthermore, functional experimental interrelations of tensile mechanical properties and interphase spacing between eutectic Si particles of both alloys evaluated are proposed. It is shown by these correlations that the tensile properties increase with the decrease in these spacings. More significant variations in properties are associated with a certain range of spacings (1.0 μm < λ < 2.3 μm) in the case of the Al-15 wt%Si alloy. Tensile strength and elongation-to-fracture decrease with increasing alloy silicon content. The applicability of the eutectic growth expression λ=f (V~(-1/2)) has been verified for the present tested alloys and experimental conditions.
机译:本研究涉及在瞬态热流条件下Al-15 wt%和18 wt%Si合金的定向凝固(DS)和相关组织的进一步表征。需要强调的是,共晶生长不仅受凝固动力学的影响,而且还受熔体过热的影响,每种合金的熔体过热度均发生两个变化,即比液相线温度高6%和2396。首次报道了相间距(X)对凝固动力学(快速,中速和慢速冷却条件)以及过共晶合金凝固过程中熔体过热的依赖性。此外,提出了两种合金的拉伸力学性能和共晶硅颗粒之间的相间距的功能性实验关系。这些相关性表明,拉伸性能随着这些间距的减小而增加。在Al-15 wt%Si合金的情况下,性能的更大变化与一定范围的间距(1.0μm<λ<2.3μm)相关。拉伸强度和断裂伸长率随合金硅含量的增加而降低。共晶生长表达式λ= f(V〜(-1/2))在当前测试的合金和实验条件下的适用性已得到验证。

著录项

  • 来源
    《Materials Science and Engineering》 |2017年第8期|235-243|共9页
  • 作者单位

    Department of Materials Engineering, Federal University of Sao Carlos - UFSCar, 13565-905 Sao Carlos, SP, Brazil;

    Department of Materials Engineering, Federal University of Sao Carlos - UFSCar, 13565-905 Sao Carlos, SP, Brazil;

    Department of Manufacturing and Materials Engineering, University of Campinas, UNICAMP, 13083-860 Campinas, SP, Brazil;

    Department of Manufacturing and Materials Engineering, University of Campinas, UNICAMP, 13083-860 Campinas, SP, Brazil;

    Department of Manufacturing and Materials Engineering, University of Campinas, UNICAMP, 13083-860 Campinas, SP, Brazil;

    Department of Manufacturing and Materials Engineering, University of Campinas, UNICAMP, 13083-860 Campinas, SP, Brazil;

    Department of Materials Engineering, Federal University of Sao Carlos - UFSCar, 13565-905 Sao Carlos, SP, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Al-Si alloys; Solidification; Microstructure; Mechanical properties;

    机译:铝硅合金;凝固;微观结构机械性能;

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