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Extra-electron induced covalent strengthening and generalization of intrinsic ductile-to-brittle criterion

机译:电子外共价增强和固有延性-脆性准则的推广

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Traditional strengthening ways, such as strain, precipitation, and solid-solution, come into effect by pinning the motion of dislocation. Here, through first-principles calculations we report on an extra-electron induced covalent strengthening mechanism, which alters chemical bonding upon the introduction of extra-valence electrons in the matrix of parent materials. It is responsible for the brittle and high-strength properties of Al12W-type compounds featured by the typical fivefold icosahedral cages, which are common for quasicrystals and bulk metallic glasses (BMGs). In combination with this mechanism, we generalize ductile-to-brittle criterion in a universal hyperbolic form by integrating the classical Pettifor's Cauchy pressure with Pugh's modulus ratio for a wide variety of materials with cubic lattices. This study provides compelling evidence to correlate Pugh's modulus ratio with hardness of materials and may have implication for understanding the intrinsic brittleness of quasicrystals and BMGs.. ? 2012 Macmillan Publishers Limited. All rights reserved
机译:传统的加固方法,例如应变,沉淀和固溶,是通过固定位错运动来实现的。在这里,通过第一性原理计算,我们报告了一种电子外诱导的共价增强机制,该机制会在母体材料的基质中引入超价电子时改变化学键。它负责以典型的五面体二十面体笼为特征的Al 12 W型化合物的脆性和高强度特性,这对于准晶体和块状金属玻璃(BMG)来说是常见的。结合这种机制,我们通过将经典的Pettifor's Cauchy压力与Pugh模量比相结合,针对各种具有立方晶格的材料,以通用双曲线形式概括了韧性至脆性准则。这项研究提供了令人信服的证据,可以将Pugh的模量比与材料的硬度相关联,并可能有助于理解准晶体和BMG的固有脆性。 2012 Macmillan Publishers Limited。版权所有

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