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Size effects on the compressive deformation behaviour of a brittleFe-based bulk metallic glass

机译:尺寸对脆性铁基块状金属玻璃压缩变形行为的影响

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The mechanical behaviour of brittle Fe-based bulk metallic glass (BMG) samples with different diameters and aspect ratios (ARs) has been investigated. For samples with an AR of 2, the fracture strength increases with a decrease in the sample diameter which can be well-explained by the Weibull analysis with a Weibull modulus of 34. For samples with a fixed diameter of 2 mm, a transition between three deformation modes, i.e. fragmentation, distensile cracking and confined shearing was observed as the AR was decreased. When the AR is below 0.19, large friction between the platen and specimen end suppresses the distensile cracking and prompts shear deformation, resulting in multiple shear bands and large compressive plasticity. Our analysis indicates that the deformation mode of brittle BMGs strongly depends on the applied stress conditions and can exhibit ductile characteristics under constraints. The present findings are important for engineering applications of brittle BMGs in which various geometries will be used.
机译:研究了具有不同直径和长宽比(AR)的脆性铁基大块金属玻璃(BMG)样品的机械性能。对于AR为2的样品,断裂强度会随着样品直径的减小而增加,这可以通过Weibull模量为34的Weibull分析很好地解释。对于固定直径为2 mm的样品,三个之间的过渡随着AR的降低,观察到了变形模式,即碎裂,扩展裂纹和有限剪切。当AR低于0.19时,压板与试样端部之间的大摩擦力会抑制拉伸裂纹并促使剪切变形,从而导致多个剪切带和较大的压缩塑性。我们的分析表明,脆性BMG的变形模式很大程度上取决于所施加的应力条件,并且在约束条件下可以表现出韧性。对于使用各种几何形状的脆性BMG的工程应用而言,当前发现是重要的。

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