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A review of refractory metal alloys and mechanically alloyed-oxide dispersion strengthened steels for space nuclear power systems

机译:航天核动力系统用难熔金属合金和机械合金氧化物弥散强化钢的综述

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摘要

Mechanical and thermo-physical properties of refractory metal alloys and mechanically alloyed (MA)-oxide dispersion strengthened (ODS) steels are reviewed and their potential for use in space nuclear reactors is examined. Preferable refractory alloys for use in liquid metal and gas-cooled space reactors include Nb-1 %Zr, PWG-11, Mo-TZM, Mo-xRe where x varies from 7 % to 44.5 %, T-111 and ASTAR-811C. These alloys are heavy, difficult to fabricate, and are not readily available. The advantages of the MA-ODS alloys are: (a) their strength at high temperatures (> 1000 K), which decreases slower with temperature than those of niobium and molybdenum alloys; (b) relatively lightweight and less expensive; (c) low swelling and no embrittlement with exposure to high-energy neutrons (> 0.1 MeV) up to 10(27) n/m(2); and (d) high resistance to oxidation and nitration. The few data available on compatibility of MA-ODS alloys with alkali liquid metals up to 1100 K are encouraging, however, additional tests at typical temperatures (1000-1400 K) in space nuclear reactors are needed. The anisotropy of MA-ODS alloys when cold worked, and particularly rolled into tubes, should not hinder their use in space nuclear power systems, in which operation pressure is either near atmospheric or as high as 2 MPa, but joints weldability is an issue. (c) 2004 Elsevier B.V. All rights reserved.
机译:审查了难熔金属合金和机械合金化(MA)-氧化物弥散强化(ODS)钢的机械和热物理性质,并研究了其在空间核反应堆中的应用潜力。用于液态金属和气冷空间反应堆的优选耐火合金包括Nb-1%Zr,PWG-11,Mo-TZM,Mo-xRe,其中x的变化范围为7%至44.5%,T-111和ASTAR-811C。这些合金很重,难以制造,并且不易获得。 MA-ODS合金的优点是:(a)在高温(> 1000 K)下的强度,随温度的下降比铌和钼合金的下降慢; (b)相对较轻且较便宜; (c)溶胀低,在暴露于高达10(27)n / m(2)的高能中子(> 0.1 MeV)中不会脆化; (d)高抗氧化和硝化作用。关于MA-ODS合金与高达1100 K的碱金属的相容性的少量数据令人鼓舞,但是,在太空核反应堆中,需要在典型温度(1000-1400 K)下进行额外的测试。 MA-ODS合金在冷加工(特别是轧制成管)时的各向异性不应妨碍其在空间核动力系统中的使用,在该系统中,工作压力接近大气压或高达2 MPa,但接头的可焊接性是一个问题。 (c)2004 Elsevier B.V.保留所有权利。

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