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Fracture toughness of a directionally solidified Al-Nb-Ni ternary eutectic

机译:定向凝固Al-Nb-Ni三元共晶的断裂韧性

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摘要

Fracture toughness (K,c), an important property of brittle materials, can be determined by indentation cracking tests. This paper reports on an investigation of the fracture toughness of a directionally solidified Al3Nb-Nb2Al-AlNbNi ternary eutectic, based on the Vickers indentation test applied to longitudinal and transverse sections of its microstructure. The measurements were taken using indentation loads varying from 2.45 to 24.5 N. Correlations between the resulting crack parameters and indentation load were eval uated using Palmqvist and half-penny cracks models. In the range of indentation loads studied, the results suggested that the Palmqvist model provided a better fit to the experimental data. Fracture tough ness was calculated using equations developed for Palmqvist crack mode. The indentation fracture toughness values for longitudinal and transverse sections are in the range of 2.82-3.05 MPa m1'2 and 2.98-3.59 MPa m1'2, respectively. It was found that the addition of Ni and incorporation of a third phase to the Al3Nb-Nb2Al eutectic improved fracture toughness of this in situ composite material.
机译:断裂韧性(K,c)是脆性材料的重要性能,可以通过压痕裂纹测试来确定。本文对定向凝固的Al3Nb-Nb2Al-AlNbNi三元共晶体的断裂韧性进行了研究,该研究基于对其组织的纵向和横向截面进行的维氏压痕试验。使用从2.45到24.5 N的压痕载荷进行测量。使用Palmqvist和Half-penny裂纹模型评估了所得裂纹参数与压痕载荷之间的相关性。在所研究的压痕载荷范围内,结果表明Palmqvist模型可以更好地拟合实验数据。使用针对Palmqvist裂纹模式开发的方程式计算断裂韧性。纵向和横向截面的压痕断裂韧性值分别在2.82-3.05 MPa m1'2和2.98-3.59 MPa m1'2的范围内。发现添加Ni和将第三相掺入到Al3Nb-Nb2Al共晶中可以改善这种原位复合材料的断裂韧性。

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  • 来源
    《Materials & design》 |2012年第1期|p.563-568|共6页
  • 作者单位

    Federal University ofMato Crosso, Rondonopolis, MT 78735-910, Brazil;

    University of Campinas, Rua Mendeleyev, 200, Campinas, SP 13083-860, Brazil;

    University of Campinas, Rua Mendeleyev, 200, Campinas, SP 13083-860, Brazil;

    University of Campinas, Rua Mendeleyev, 200, Campinas, SP 13083-860, Brazil;

    Federal University ofMato Crosso, Rondonopolis, MT 78735-910, Brazil;

    University of Campinas, Rua Mendeleyev, 200, Campinas, SP 13083-860, Brazil;

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

    A. Metal matrix composites; E. Fracture; F. Microstructure;

    机译:A.金属基复合材料;E.骨折;F.微观结构;

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