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Microstructure, indentation creep and mechanical properties of Sn-Sb rapidly solidified alloys

机译:Sn-Sb快速凝固合金的组织,压痕蠕变和力学性能

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摘要

Sn-Sb alloys; Stress exponent; Elastic modulus; Internal friction%Microstructure, creep behavior, elastic modulus and internal friction of Sn_(100-x)-Sb_x (X=2.2, 10 and 50 wt.%) rapidly solidified alloys have been investigated. Creep behavior of Sn- Sb alloys was studied by long time Vickers indentation testing at room temperature. Stress exponent value of Sn- Sb alloys were determined using Mulheam-Tabor method. Exponents values of Sn- Sb alloys in the range of 5.48-12.57 which in good agreement with the values of Sn based alloys reported in the literature. Elastic modulus of Sn_(100-x)-Sb_x (X=2.2, 10 and 50 wt.%) rapidly solidified bearing solder alloys increased but internal friction decreased with Sb content increased.
机译:锡锑合金;压力指数;弹性模量内部摩擦%研究了Sn_(100-x)-Sb_x(X = 2.2、10和50 wt。%)快速凝固合金的微观结构,蠕变行为,弹性模量和内部摩擦。通过长时间在室温下进行维氏压痕测试,研究了Sn-Sb合金的蠕变行为。 Sn-Sb合金的应力指数值使用Mulheam-Tabor方法确定。 Sn-Sb合金的指数值在5.48-12.57的范围内,与文献中报道的Sn基合金的值非常吻合。快速凝固的轴承焊料合金的Sn_(100-x)-Sb_x(X = 2.2、10和50 wt。%)的弹性模量增加,但是随着Sb含量的增加,内摩擦减小。

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  • 来源
    《Materials science》 |2013年第2期|73-77|共5页
  • 作者

    A.El-Bediwi; K.M.Ismail; M.kamal;

  • 作者单位

    Metal Physics Lab., Physics Department, Faculty of Science, Mansoura University, (EGYPT);

    Metal Physics Lab., Physics Department, Faculty of Science, Mansoura University, (EGYPT);

    Metal Physics Lab., Physics Department, Faculty of Science, Mansoura University, (EGYPT);

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