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首页> 外文期刊>Journal of Materials Science >Characteristics of α-dendritic and eutectic structures in Sr-treated Al—Si casting alloys
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Characteristics of α-dendritic and eutectic structures in Sr-treated Al—Si casting alloys

机译:Sr处理的Al-Si铸造合金中的α枝晶和共晶组织的特征

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摘要

The present study was carried out to determine the effect of alloy composition and solidification conditions on changes in the dendritic and eutectic structures in Al—Si alloys containing strontium. A series of experimental and industrial alloys viz., Al-7% Si, Al-12% Si, 319 and 356 were selected, to cover a variety of alloy freezing ranges. The techniques of thermal analysis, optical microscopy, and SEM/EDX and EPMA analyses were employed to obtain the results presented here. Depression in the eutectic Si temperature in Al-7% Si alloys occurs on addition of alloying elements such as Mg and Cu. Introduction of Sr to these alloys further depresses the eutectic temperature, with a corresponding increase in the volume fraction of the α-Al phase. The primary dendrite solidification pattern changes from parallel rows to a branched form, producing an equiaxed type of structure and hence shorter primary dendrite lengths. This is expected to enhance the interdendritic feedability. The lengths of the secondary dendrite arms are controlled by the rejection of solute atoms in front of the growing dendrites during solidification. The higher the alloying content in the alloy (i.e., 319), the smaller the dendrite cell size. The longer solidification time in the 319 alloy also appears to have a considerable influence on the amount of porosity formed in the alloy, in addition to that of Sr.
机译:本研究旨在确定合金组成和凝固条件对含锶Al-Si合金中树枝状和共晶组织变化的影响。选择了一系列实验和工业合金,即Al-7%Si,Al-12%Si,319和356,以涵盖各种合金冻结范围。使用热分析,光学显微镜以及SEM / EDX和EPMA分析技术来获得此处介绍的结果。 Al-7%Si合金的共晶Si温度降低是由于添加了合金元素(例如Mg和Cu)而引起的。向这些合金中引入Sr进一步降低了共晶温度,相应地增加了α-Al相的体积分数。初级枝晶凝固模式从平行行变为分支形式,产生等轴结构类型,因此初级枝晶长度较短。预期这将增强树突间可喂料性。二次枝晶臂的长度由凝固过程中生长的树枝状晶体前面溶质原子的排斥控制。合金中的合金含量越高(即319),枝晶孔尺寸越小。除Sr之外,在319合金中更长的凝固时间似乎还对合金中形成的孔隙率有相当大的影响。

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  • 来源
    《Journal of Materials Science》 |2004年第1期|215-224|共10页
  • 作者单位

    Département des Sciences appliquées Université du Québec à;

    Département des Sciences appliquées Université du Québec à;

    Département des Sciences appliquées Université du Québec à;

    Materials Engineering GM Powertrain Group Metal Casting Technology Inc.;

    Research and Development Corporativo Nemak S.A. de C.V.;

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