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Short-range correlations control the G/K and Poisson ratios of amorphous solids and metallic glasses

机译:短程相关控制非晶态固体和金属玻璃的G / K和泊松比

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摘要

The bulk modulus of many amorphous materials, such as metallic glasses, behaves nearly in agreement with the assumption of affine deformation, namely that the atoms are displaced just by the amount prescribed by the applied strain. In contrast, the shear modulus behaves as for nonaffine deformations, with additional displacements due to the structural disorder which induce a marked material softening to shear. The consequence is an anomalously large ratio of the bulk modulus to the shear modulus for disordered materials characterized by dense atomic packing, but not for random networks with point atoms. We explain this phenomenon with a microscopic derivation of the elastic moduli of amorphous solids accounting for the interplay of nonaffinity and short-range particle correlations due to excluded volume. Short-range order is responsible for a reduction of the nonaffinity which is much stronger under compression, where the geometric coupling between nonaffinity and the deformation field is strong, whilst under shear this coupling is weak. Predictions of the Poisson ratio based on this model allow us to rationalize the trends as a function of coordination and atomic packing observed with many amorphous materials.
机译:许多无定形材料(例如金属玻璃)的体积模量的行为与仿射变形的假设几乎一致,也就是说,原子刚好位移了所施加的应变所指定的量。相比之下,剪切模量的表现与非仿射变形相同,由于结构紊乱会产生额外的位移,从而引起明显的材料软化为剪切。结果是,对于以致密原子堆积为特征的无序材料,其体积模量与剪切模量之比异常大,但对于具有点原子的无规网络则不然。我们用无定形固体的弹性模量的微观推导来解释这种现象,这是由于排除体积导致的非亲和力和短程粒子相关性之间的相互作用。短程有序导致非亲和力的减小,这在压缩下要强得多,在非亲和力和形变场之间的几何耦合很强,而在剪切力下,这种耦合很弱。基于此模型的泊松比的预测使我们能够合理化趋势,作为对许多非晶态材料观察到的配位和原子堆积的函数。

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  • 来源
    《Journal of Applied Physics》 |2014年第3期|033510.1-033510.6|共6页
  • 作者单位

    Cavendish Laboratory, University of Cambridge, JJ Thomson Avenue, Cambridge CB3 0HE, United Kingdom;

    Cavendish Laboratory, University of Cambridge, JJ Thomson Avenue, Cambridge CB3 0HE, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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