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首页> 外文期刊>Acta materialia >MEAN STRESS EFFECTS ON FLOW LOCALIZATION AND FAILURE IN A BULK METALLIC GLASS
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MEAN STRESS EFFECTS ON FLOW LOCALIZATION AND FAILURE IN A BULK METALLIC GLASS

机译:整体金属玻璃中流动定位和失效的平均应力影响

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摘要

The effect of stress state on Strain localization and subsequent failure of a bulk metallic glass alloy is examined. It is shown that failure is associated with a critical tensile mean stress of 0.95 GPa. This is in Contrast with previous work utilizing superimposed Compressive mean stresses, which found that failure resulted at a critical effective stress. Interestingly, the critical tensile mean stress measured in this study causes the same dilatation as a 274 K temperature increase, nearly to the glass transition temperature. The effect of mean stress on elastic variation of the average free volume is added to a strain localization model. This model describes the Compressive mean stress behavior very well, and predicts a strong sensitivity to tensile mean stresses.
机译:研究了应力状态对块体金属玻璃合金应变定位和后续失效的影响。结果表明,破坏与0.95 GPa的临界拉伸平均应力有关。这与以前使用叠加压缩平均应力的工作形成鲜明对比,后者发现破坏导致临界有效应力。有趣的是,本研究中测得的临界拉伸平均应力导致与274 K温度升高相同的膨胀,接近玻璃化转变温度。将平均应力对平均自由体积弹性变化的影响添加到应变定位模型中。该模型很好地描述了压缩平均应力行为,并预测了对拉伸平均应力的强烈敏感性。

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