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首页> 外文期刊>Scripta materialia >Observation of a refractory metal matrix containing Zr-Ti-rich precipitates in a Mo0.5NbTa0.5TiZr high entropy alloy
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Observation of a refractory metal matrix containing Zr-Ti-rich precipitates in a Mo0.5NbTa0.5TiZr high entropy alloy

机译:在MO0.5NBTA0.5TIZR高熵合金中观察含有富含富含富富抗血液沉淀物的难熔金属基质

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Refractory metal high entropy superalloys (RMHES) offer potentially superior strength at elevated temperatures and lower densities than Ni-based superalloys. However, concerns exist over their ductility as their microstructures comprise fine distributions of refractory metal solid solution precipitates within a Zr- and Ti-rich ordered matrix. Consequently, identifying methodologies to invert this arrangement is critical. Here, we show that removal of Al from the AlMo0.5NbTa0.5TiZr RMHES, enables a microstructure to be obtained comprising Zr-Ti-rich disordered precipitates within a refractory metal matrix. This observation represents a significant development for the field and may help guide future alloy design. (C) 2020 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:耐火金属高熵超合金(rshes)在升高的温度和低密度下提供潜在的优异强度,而不是Ni基超合金。 然而,在延展性上存在令人疑问,因为它们的微观结构包括难熔金属固溶物的细分布沉淀在富含Zr和Ti的有序基质中。 因此,识别颠倒这种布置的方法是至关重要的。 在这里,我们表明,从Almo0.5nbta0.5tizr rmhes中除去Al,使得能够在难熔金属基质中包含富含富含富含的无序沉淀的微观结构。 该观察是该领域的显着发展,可帮助指导未来合金设计。 (c)2020 Acta Materialia Inc. eSeryvier有限公司发布所有权利。

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