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Numerical Study on the Fatigue Limit of Metallic Glasses under Cyclic Tension-Compression Loading

机译:循环拉伸压缩载荷下金属玻璃疲劳极限的数值研究

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摘要

Numerical study was performed to determine the fatigue limit of metallic glass under tension-compression cyclic loading. A revised free-volume theory which considers the hydrostatic stress was utilized to make the predictions. Systematical simulations showed that a higher strain amplitude is prone to making the sample completely damaged earlier. However, lower strain fluctuations could result in a longer fatigue life. Shear banding evolution history described by free-volume localization could reasonably explain the mechanical responses of different samples. In addition, compressive loading could give rise to a higher stress than that under tensile loading because of hydrostatic stress contribution. In the end, a correlation between fatigue life and applied strain amplitude was plotted which could supply a guidance for designing the engineering application of metallic glass under periodic loading.
机译:通过数值研究确定了金属玻璃在拉压循环载荷下的疲劳极限。修改后的考虑体积静压力的自由体积理论被用来进行预测。系统仿真表明,较高的应变幅度易于使样品更早地完全损坏。但是,较低的应变波动可导致更长的疲劳寿命。自由体积定位描述的剪切带演化历史可以合理地解释不同样品的力学响应。另外,由于静水应力的作用,与在拉伸载荷下相比,压缩载荷会产生更高的应力。最后,绘制了疲劳寿命与施加的应变幅度之间的相关性,可以为设计金属玻璃在周期性载荷下的工程应用提供指导。

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