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Superplastic power-law creep of Sn–40%Pb–2.5%Sb peritectic alloy

机译:Sn–40%Pb–2.5%Sb包晶合金的超塑性幂律蠕变

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摘要

The power law-creep behavior of superplastic Sn–40Pb–2.5Sb alloys with different grain sizes has been investigated at room temperature. Stress exponent values for these alloys have been determined by indentation creep, conventional creep and uniaxial tension tests in order to evaluate the correspondence of indentation creep results with conventional tests. In all cases, the indentation results were in good agreement with each other and with those of the tensile and conventional creep tests. The average stress exponent values of about 2.6 and 3.0 corresponding to the strain rate sensitivity (SRS) indices of 0.33–0.39, depending on the grain size of the materials, indicate that the grain boundary sliding is the possible mechanism during creep deformation of Sn–Pb–Sb alloys. Within limits, the indentation tests are thus considered useful to acquire information on the creep behavior of small specimens of these soft tin–lead–antimony alloys at room temperature. It is also demonstrated that the indentation creep test provides a convenient method to measure SRS and thereby to assess the ability of a material to undergo superplastic deformation.
机译:在室温下研究了具有不同晶粒尺寸的超塑性Sn-40Pb-2.5Sb合金的幂律蠕变行为。这些合金的应力指数值已通过压痕蠕变,常规蠕变和单轴拉伸试验确定,以便评估压痕蠕变结果与常规试验的对应关系。在所有情况下,压痕结果彼此之间以及与拉伸和常规蠕变测试的结果均吻合良好。根据材料的晶粒尺寸,平均应力指数值分别约为2.6和3.0,对应的应变速率敏感度(SRS)指数为0.33-0.39,表明晶界滑动是Sn-蠕变变形过程中的可能机制。铅-锑合金。因此,在一定范围内,压痕试验被认为有助于获得有关这些软锡铅锑合金小样品在室温下的蠕变行为的信息。还证明了压痕蠕变测试提供了一种方便的方法来测量SRS,从而评估材料进行超塑性变形的能力。

著录项

  • 来源
    《Journal of Materials Science》 |2007年第11期|4051-4059|共9页
  • 作者

    R. Mahmudi; A. Rezaee-Bazzaz;

  • 作者单位

    Department of Metallurgical and Materials Engineering Faculty of Engineering University of Tehran P.O. Box 11365-4563 Tehran Iran;

    Department of Metallurgical and Materials Engineering Faculty of Engineering University of Tehran P.O. Box 11365-4563 Tehran Iran;

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