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Development of IFAC-1 SS: An Advanced Austenitic Stainless Steel for Cladding and Wrapper Tube Applications in Sodium-cooled Fast Reactors

机译:IFAC-1 SS的开发:用于钠冷却的快速反应器中的用于包层和包装管应用的先进的奥氏体不锈钢

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Fuel cycle cost of sodium cooled fast reactors (SFRs) is strongly dependent on the in-reactor performance of core structural materials, i.e., cladding and wrapper tube materials of the fuel subassembly, which are subjected to intense neutron irradiation during service, leading to unique materials problems like void swelling, irradiation creep and helium embrittlement. In order to increase the burnup of the fuel and thereby reduce the fuel cycle cost, it is necessary to employ materials which have high resistance to void swelling as well as better high temperature mechanical properties. The Indian fast reactor program began with the commissioning of the 40 MW_t Fast Breeder Test Reactor (FBTR). The core structural material of FBTR is 20% cold worked 316 austenitic stainless steel (SS). For the 5000 Me_t Prototype Fast Breeder Reactor (PFBR) which is in an advanced stage of construction at Kalpakkam, 20% cold-worked alloy D9 (14Cr-15Ni-Ti SS) has been selected as the cladding and wrapper tube material for the initial core. The target burnup of the fuel is 100 GWd/t. Advanced austenitic stainless steel and oxide dispersion strengthened steels are being developed for achieving fuel burnup higher than 100 GWd/t. An advanced alloy D9 containing controlled amounts of titanium, silicon and phosphorous has been developed. This alloy named as IFAC-1 (Indian Fast Reactor advanced Clad-1) SS is aimed at thermal creep properties comparable to that of alloy D9, and superior void swelling resistance upto a target burn-up of about 150 GWd/t. The nominal chemical composition of IFAC-1 SS is 14Cr-15Ni-.25Ti-.75Si-.04P. The chemical composition has been optimized after extensive evaluation of the tensile, creep and microstructural stability of fifteen laboratory heats with different amounts of titanium, silicon and phosphorous. Void swelling behavior was studied using ion irradiation. IFAC-1 SS contains higher levels of low melting eutectic phase-forming elements such as phosphorous, and so is susceptible to solidification cracking. Extensive pulsed TIG welding trials have been carried out on IFAC-1 SS/316LN SS weld joints with varied weld parameters to find out the feasibility of obtaining solidification crack-free welds and the optimum welding parameters have been established. This paper gives an overview of the development of this advanced core structural material for SFRs.
机译:冷却的快速反应器(SFR)的燃料循环成本强烈取决于核心结构材料的反应器型性能,即燃料子组件的包层和包装管材料,在服务期间受到强烈的中子辐照,导致独特材料存在像空隙膨胀,照射蠕变和氦气脆化等问题。为了增加燃料的燃烧,从而降低燃料循环成本,需要采用具有高抗空隙溶胀的材料以及更好的高温机械性能。印度快速反应堆计划始于40 MW_T快速育种测试反应堆(FBTR)的调试。 FBTR的核心结构材料是20%冷加工316奥氏体不锈钢(SS)。对于在Kalpakkam的高级施工中的5000 Me_t原型快速饲养反应器(PFBR),选择了20%的冷加工合金D9(14Cr-15ni-Ti SS)作为初始的包层和包装管材料核。燃料的目标燃烧为100 gwd / t。高级奥氏体不锈钢和氧化物分散体强化钢正在开发用于实现高于100 GWD / T的燃料燃烧。已经开发出含有受控量的钛,硅和磷的先进合金D9。这种名为IFAC-1(印度快速反应器高级ClAD-1)SS的合金旨在与合金D9的热蠕变性能相当,以及优异的空隙溶胀抗性,其目标燃烧约为150 gwd / t。 IFAC-1 SS的标称化学成分为14CR-15NI-.25TI-.75SI-.04P。在广泛评估了十五实验室热量的广泛评估之后优化了化学成分,其具有不同量的钛,硅和磷。硅和磷的拉伸蠕变和微观结构稳定性。使用离子辐射研究了空隙溶胀行为。 IFAC-1SS含有较高水平的低熔点共晶相形成元件,例如磷,因此易于凝固裂化。广泛的脉冲TIG焊接试验已经在IFAC-1 SS / 316LN SS焊接接头上进行,具有各种焊接参数,以找出获得无裂缝焊缝的可行性,并且已经建立了最佳的焊接参数。本文概述了SFR的这种先进的核心结构材料的开发。

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