首页> 外文期刊>Metallurgical and Materials Transactions A >Yield criteria and strain-rate behavior of Zr57.4Cu16.4Ni8.2Ta8Al10 metallic-glass-matrix composites
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Yield criteria and strain-rate behavior of Zr57.4Cu16.4Ni8.2Ta8Al10 metallic-glass-matrix composites

机译:Zr57.4 Cu16.4 Ni8.2 Ta8 Al10 金属玻璃基复合材料的屈服准则和应变速率行为

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摘要

We have examined the yielding and fracture behavior of Zr57.4Cu16.4Ni8.2Ta8Al10 metallic-glass-matrix composites with a small volume fraction (∼4 pct) of ductile crystalline particles under quasi-static uniaxial tension and compression and dynamic uniaxial compression. The yield stress of the composite is the same for quasi-static tension and compression, consistent with a von Mises yield criterion. The measured average angle between the shear bands and the loading axis in quasi-static compression is 47±2 deg, significantly larger than the value of ∼42 deg typically reported for single-phase metallic glasses. Finite element modeling (FEM) shows that the measured value is consistent with both the von Mises criterion (48±4 deg) and the Mohr-Coulomb criterion (46±5 deg). The fracture surface angles, however, are 41±1 deg (compression) and 54±2 deg (tension), in good agreement with observations of single-phase metallic glasses. At low strain rates (<10−1 s−1), the yield stress is independent of strain rate, while at higher strain rates (>100 s−1), the failure stress decreases with increasing strain rate, which again is similar to the behavior of single-phase glasses. These results indicate that while the presence of the particles has a significant effect on the yield behavior of the composites, the fracture behavior is largely governed by the properties and behavior of the amorphous matrix.
机译:我们研究了小体积Zr57.4 Cu16.4 Ni8.2 Ta8 Al10 金属玻璃基复合材料的屈服和断裂行为准静态单轴拉伸和压缩以及动态单轴压缩下的延性晶体颗粒的分数(〜4 pct)。复合材料的屈服应力对于准静态拉伸和压缩是相同的,符合von Mises屈服准则。在准静态压缩中测得的剪切带和加载轴之间的平均角度为47±2度,大大大于单相金属玻璃通常报告的〜42度的值。有限元建模(FEM)显示,测量值与von Mises准则(48±4度)和Mohr-Coulomb准则(46±5度)均一致。但是,断裂表面角度为41±1度(压缩)和54±2度(张力),与单相金属玻璃的观察结果非常吻合。在低应变速率下(<10-1 s-1 ),屈服应力与应变速率无关,而在较高应变速率下(> 100 s-1 ),失效应力随着应变率的增加而减小,这再次类似于单相玻璃的行为。这些结果表明,尽管颗粒的存在对复合材料的屈服行为有显着影响,但断裂行为在很大程度上受非晶态基质的性能和行为支配。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第11期|3251-3258|共8页
  • 作者单位

    School of Engineering University of Vermont 05405 Burlington VT;

    Division of Engineering Brown University 02912 Providence RI;

    Department of Mechanical Engineering Johns Hopkins University USA;

    Department of Mechanical Engineering Johns Hopkins University USA;

    Department of Mechanical Engineering Johns Hopkins University USA;

    Department of Materials Science and Engineering Johns Hopkins University USA;

    Department of Materials Science and Engineering University of Tennessee 37996 Knoxville TN;

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