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Dislocations and deformation microstructure in a B2-ordered Al$_{28}$Co$_{20}$Cr$_{11}$Fe$_{15}$Ni$_{26}$ high-entropy alloy

机译:B2有序Al $ _ {28} $ Co $ _ {20} $ Cr $ _ {11} $ Fe $ _ {15} $ Ni $ _ {26} $高熵合金的位错和形变微观结构

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摘要

High-entropy alloys are multicomponent metallic materials currently attracting high research interest. They display a unique combination of chemical disorder and crystalline long-range order, and due to their attractive properties are promising candidates for technological application. Many high-entropy alloys possess surprisingly high strength, occasionally in combination with high ductility and low density. The mechanisms effecting these attractive mechanical properties are not understood. This study addresses the deformation mechanism of a Al28Co20Cr11Fe15Ni26 high-entropy alloy, which is a two-phase material, consisting of a B2-ordered matrix and disordered body-centred inclusions. We quantitatively analyse the microstructure and dislocations in deformed samples by transmission-electron-microscopic methods including weak-beam imaging and convergent-beam electron diffraction. We find that the deformation process in the B2 phase is dominated by heterogeneous slip of screw dislocations gliding on planes. The dislocations are perfect superdislocations of the B2 lattice and show no dissociation. This indicates that the antiphase-boundary energy in the structure is very high, inhibiting spread of the dislocation core. Along with the observation of a widely extending strain field associated to the dislocations, our results provide a possible explanation for the high strength of this high-entropy alloy as a direct consequence of its dislocation structure.
机译:高熵合金是目前引起高度研究兴趣的多组分金属材料。它们显示出化学无序和晶体长程有序的独特组合,并且由于其吸引人的特性,它们有望成为技术应用的候选者。许多高熵合金具有惊人的高强度,有时还具有高延展性和低密度。影响这些吸引人的机械性能的机理尚不清楚。这项研究解决了Al28Co20Cr11Fe15Ni26高熵合金的变形机理,该合金是一种两相材料,由B2级基体和无序的以人体为中心的夹杂物组成。我们通过透射电子显微镜方法(包括弱束成像和会聚束电子衍射)定量分析了变形样品中的微观结构和位错。我们发现,在B2相中的变形过程主要由在平面上滑动的螺型位错的异质滑动所主导。位错是B2晶格的完全超位错,并且没有解离。这表明结构中的反相边界能非常高,抑制了位错核的扩散。随着观察到与位错相关的广泛扩展的应变场,我们的结果为这种高熵合金的高强度提供了可能的解释,这是其位错结构的直接结果。

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  • 作者

    Feuerbacher, Michael;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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