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Fracture behaviors under pure shear loading in bulk metallic glasses

机译:大块金属玻璃在纯剪切载荷下的断裂行为

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摘要

Pure shear fracture test, as a special mechanical means, had been carried out extensively to obtain the critical information for traditional metallic crystalline materials and rocks, such as the intrinsic deformation behavior and fracture mechanism. However, for bulk metallic glasses (BMGs), the pure shear fracture behaviors have not been investigated systematically due to the lack of a suitable test method. Here, we specially introduce a unique antisymmetrical four-point bend shear test method to realize a uniform pure shear stress field and study the pure shear fracture behaviors of two kinds of BMGs, Zr-based and La-based BMGs. All kinds of fracture behaviors, the pure shear fracture strength, fracture angle and fracture surface morphology, are systematically analyzed and compared with those of the conventional compressive and tensile fracture. Our results indicate that both the Zr-based and La-based BMGs follow the same fracture mechanism under pure shear loading, which is significantly different from the situation of some previous research results. Our results might offer new enlightenment on the intrinsic deformation and fracture mechanism of BMGs and other amorphous materials.
机译:作为一种特殊的机械手段,已经进行了纯剪切断裂试验,以获取传统金属晶体材料和岩石的关键信息,例如固有变形行为和断裂机理。但是,对于块状金属玻璃(BMG),由于缺乏合适的测试方法,因此尚未对纯剪切断裂行为进行系统研究。在此,我们专门介绍一种独特的抗对称四点弯曲剪切试验方法,以实现均匀的纯剪切应力场,并研究Zr基和La基BMG这两种BMG的纯剪切断裂行为。系统分析了各种断裂行为,包括纯剪切断裂强度,断裂角度和断裂表面形态,并将其与常规压缩断裂和拉伸断裂进行了比较。我们的结果表明,Zr基和La基BMG在纯剪切载荷下遵循相同的断裂机理,这与之前的一些研究结果存在显着差异。我们的研究结果可能对BMG和其他非晶材料的固有变形和断裂机理提供新的启示。

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