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首页> 外文期刊>Materials Science and Engineering >Effect of eutectic Si particles on the defect susceptibility of tensile properties to microporosity variation in Al-xSi binary alloys
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Effect of eutectic Si particles on the defect susceptibility of tensile properties to microporosity variation in Al-xSi binary alloys

机译:共晶硅颗粒对Al-xSi二元合金拉伸性能的缺陷敏感性对微孔变化的影响

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摘要

The variability in the defect susceptibility of tensile properties to microporosity variation in as-cast Al-xSi binary alloys was investigated in terms of the effective void area fraction, which includes the area fraction and size distribution of micro-voids and eutectic Si particles. The test samples were prepared in the form of Al-xSi (x=2,5,8,11) alloys with 0.02 wt%Sr modification using gravity-casting process. The tensile properties of Al-xSi alloys fundamentally depend on microstructural changes, with a remarkable deviation caused by microporosity variation. The defect susceptibility of the ultimate tensile strength and elongation is practically varied with the nominal area fraction of eutectic Si colonies, rather than the real fraction of eutectic Si particles. The damage evolution of Si particles practically influences the tensile properties of Al-xSi alloys, together with the variation of the area fraction of pre-existing micro-voids. Additionally, the relative contributions of microporosity and eutectic Si colonies to the variability in the defect susceptibility of tensile properties to an effective void area fraction can be definitively described by considering the incoherency parameter and the plastic constraint factor of both micro-components and by using a modified constitutive model. The tensile properties of Al-xSi alloy in the high fraction of eutectic Si colonies are practically degraded by the increase of microporosity, even though the tensile properties in the low fraction of eutectic Si colonies are insensitive to the microporosity variation.
机译:研究了铸态Al-xSi二元合金中拉伸性能对微孔变化的敏感性的变异性,其中包括有效孔隙面积分数,其中包括微空隙和共晶Si颗粒的面积分数和尺寸分布。使用重力铸造法将测试样品制备为具有0.02 wt%Sr改性的Al-xSi(x = 2,5,8,11)合金形式。 Al-xSi合金的拉伸性能从根本上取决于微结构的变化,微孔变化会引起明显的偏差。极限抗拉强度和伸长率的缺陷敏感性实际上随共晶硅菌落的标称面积分数而不是共晶硅颗粒的真实分数而变化。 Si颗粒的损伤演变实际上会影响Al-xSi合金的拉伸性能,以及预先存在的微孔的面积分数的变化。此外,通过考虑两种微组分的不相干性参数和塑性约束因子,并通过使用两种材料,可以确定地描述微孔和共晶硅菌落对拉伸性能对有效空隙面积分数的敏感性的变化的相对贡献。修改后的本构模型。尽管低共晶硅菌落中的拉伸性能对微孔变化不敏感,但高共晶硅菌落中的Al-xSi合金的拉伸性能实际上会由于微孔率的增加而降低。

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  • 来源
    《Materials Science and Engineering》 |2016年第10期|227-234|共8页
  • 作者单位

    Department of Metallurgical and Materials Engineering, Inha Technical College, Incheon, Republic of Korea;

    School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Republic of Korea;

    School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Republic of Korea;

    School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Republic of Korea;

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

    Tensile property; Aluminium alloy; Microporosity; Defect susceptibility;

    机译:拉伸性能;铝合金;微孔;缺陷敏感性;

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