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Single-Phase Concentrated Solid-Solution Alloys: Bridging Intrinsic Transport Properties and Irradiation Resistance

机译:单相浓缩固溶体合金:桥接本征传输特性和抗辐照性

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Single-phase concentrated solid-solution alloys (SP-CSAs), including high entropy alloys, are compositionally complex but structurally simple, and provide a playground of tailoring material properties through modifying their compositional complexity. The recent progress in understanding the compositional effects on the energy and mass transport properties in a series of face-centered-cubic SP-CSAs is the focus of this review. Relatively low electronic and thermal conductivities, as well as small separations between the interstitial and vacancy migration barriers have been generally observed, but largely depend on the alloying constituents. We further discuss the impact of such intrinsic transport properties on their irradiation response; the linkage to the delayed damage accumulation, slow defect aggregation, and suppressed radiation induced swelling and segregation has been presented. We emphasize that the number of alloying elements may not be a critical factor on both transport properties and the defect behaviors under ion irradiations. The recent findings have stimulated novel concepts in the design of new radiation-tolerant materials, but further studies are demanded to enable predictive models that can quantitatively bridge the transport properties to the radiation damage.
机译:包括高熵合金在内的单相浓固溶体合金(SP-CSA)成分复杂但结构简单,并通过修改其成分复杂性提供了定制材料属性的场所。在理解一系列以面心立方的SP-CSA中对能量和质量传输性质的组成影响方面的最新进展是本综述的重点。通常观察到相对较低的电子和热导率,以及在间隙和空位迁移势垒之间的小间距,但是很大程度上取决于合金成分。我们进一步讨论了这种内在传输特性对其辐照响应的影响。已经提出了与延迟损伤积累,缓慢的缺陷聚集和抑制的辐射诱发的溶胀和偏析的联系。我们强调,合金元素的数量可能不是传输性能和离子辐照下缺陷行为的关键因素。最近的发现激发了新的耐辐射材料设计中的新颖概念,但是需要进一步的研究来建立能够定量地将传输特性与辐射损伤联系起来的预测模型。

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