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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Modern nanostructured ferritic alloys: A compelling and viable choice for sodium fast reactor fuel cladding applications
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Modern nanostructured ferritic alloys: A compelling and viable choice for sodium fast reactor fuel cladding applications

机译:现代纳米结构铁素体合金:对快速反应器燃料包层应用的令人信服和可行的选择

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摘要

Sodium fast reactor cores present a truly challenging environment for the fuel cladding and core structural materials that limit achievable fuel burnup in these systems. Modern nanostructured ferritic alloys have the potential to deliver the desired high performance characteristics where historic austenitic and ferritic/martensitic alloys fall short. In this paper, a new nanostructured ferritic alloy, OFRAC (Oak Ridge Fast Reactor Advanced Fuel Cladding), is developed and demonstrated in cladding geometry with a length > 1 m. The alloy composition and microstructure are tailored to deliver dramatically improved strength and creep resistance. At 600 degrees C the ultimate tensile strength is similar to 600 MPa and the stress to induce a steady state strain rate of 10(-6) s(-1) is 500 MPa vs. 200 MPa for traditional ferritic/martensitic alloys. A very high defect sink density was engineered in these alloys that is expected to further enhance the traditional good swelling and irradiation creep resistance of ferritic/martensitic steels. These significant improvements along with the demonstrated viability for seamless cladding production indicate that this alloy is a compelling and viable choice for sodium fast reactor fuel cladding applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:Sodium Fast Reactor Cores为燃料包覆和核心结构材料提供真正挑战的环境,这些环境限制了这些系统中可实现的燃料燃烧。现代纳米结构铁素体合金具有潜在的历史奥氏体和铁素体/马氏体合金落下的所需高性能特征。本文采用了一种新的纳米结构铁素体合金,OFRAC(橡木岭快速反应器高级燃料包层)开发,并在熔覆几何形状中进行了长度> 1米。合金组合物和微观结构定制以显着提高强度和抗蠕变性。在600摄氏度,最终拉伸强度类似于600MPa,并且应力诱导10(-6)S(-1)的稳态应变率为500MPa,用于传统铁素体/马氏体合金的200MPa。在这些合金中设计了非常高的缺陷沉积物密度,该合金预期进一步增强铁素体/马氏体钢的传统良好溶胀和辐射抗蠕变性。这些显着的改进以及用于无缝包层的证据的可行性表明,这种合金是对快速反应器燃料包层应用的令人兴奋和可行的选择。 (c)2019 Elsevier B.v.保留所有权利。

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