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High resistance to helium embrittlement in reduced activation martensitic steels

机译:还原活化马氏体钢具有很高的抗氦脆性

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Reduced activation martensitic steels (RAMSs) are the prime candidate structural material for the DEMO reactor and beyond where the material has been considered to suffer severe embrittlement caused by high-dose neutron irradiation and several thousands appm of transmutated helium. However, recent several works show high resistance to helium embrittlement of RAMS. Good performance of RAMS in the presence of rather high concentration of helium is considered to be due to high trapping capacity for helium atoms in the martensitic structure that consists of dislocations, lath boundaries, grain boundaries and carbide/matrix interfaces. To make clear the role of dislocations in trapping helium, thermal helium desorption spectra were measured for iron specimens annealed at different temperatures after cold work. A desorption peak, which increased its height with increasing dislocation density, was observed at around 550 degreesC, suggesting that dislocations trap helium atoms. A molecular dynamics simulation study for investigating the helium trapping behavior at helium-vacancy complexes suggests that helium is rather strongly bound to the complexes and increases the binding energy of vacancy to the complex, resulting in increasing stability of the complexes at elevated temperatures by reducing thermal emission of vacancies. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 25]
机译:还原活化马氏体钢(RAMS)是DEMO反应堆的主要候选结构材料,在此范围之外,材料被认为由于高剂量中子辐照和数千appm的he变氦而遭受严重的脆化。但是,最近的几项研究表明,RAMS具有很高的抗氦脆性。在高浓度氦气存在下,RAMS的良好性能被认为是由于对马氏体结构中由位错,板条边界,晶界和碳化物/基体界面组成的氦原子的高捕获能力所致。为了弄清楚位错在捕获氦气中的作用,对冷加工后在不同温度下退火的铁样品测量了热氦解吸光谱。在约550℃观察到解吸峰,其随着位错密度的增加而增加其高度,这表明位错俘获了氦原子。一项分子动力学模拟研究,研究了氦在空位配合物上的俘获行为,表明氦气与配合物的结合力很强,并增加了空位与配合物的结合能,从而通过降低热能提高了配合物在高温下的稳定性。职位空缺。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:25]

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