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Controlled normal/shear loading and shear fracture in bulk metallic glasses

机译:大块金属玻璃中可控制的法向/剪切载荷和剪切断裂

摘要

Limited plasticity inhibits the engineering applications of bulk metallic glasses (BMGs), which often deform by the formation of localized shear bands. Overcoming the brittleness of BMGs necessitates advances in our understanding of the mechanisms of shear band initiation and propagation. Up to now, a major hurdle has been the ability to control the generation of shear bands and the associated fracture (e.g., by conventional uniaxial loading). Here we demonstrate a unique loading fixture that allows one not only to control the locations of shear band formation and shear fracture but also to alter the ratio of the normal to shear stress on the fracture plane. The capability of altering the stress ratio allows one to systematically examine how the normal stress affects shear fracture of BMGs. While some preliminary results with limited data have been presented in a prior publication, a comprehensive description of the unique test fixture is described here.
机译:有限的可塑性限制了大块金属玻璃(BMG)的工程应用,大块金属玻璃通常会因局部剪切带的形成而变形。要克服BMG的脆性,就必须进一步了解剪切带的萌生和传播机理。迄今为止,主要的障碍是控制剪切带的产生和相关的断裂的能力(例如,通过常规的单轴载荷)。在这里,我们展示了一种独特的加载夹具,该夹具不仅可以控制剪切带形成和剪切断裂的位置,而且可以改变断裂面上法向应力与剪切应力的比率。改变应力比的能力使人们能够系统地检查法向应力如何影响BMG的剪切断裂。虽然在先前的出版物中已经提供了一些有限数据的初步结果,但此处还是对独特的测试夹具进行了全面描述。

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