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首页> 外文期刊>Nuclear Materials and Energy >Effects of helium production, displacement damage on mechanical properties and surface acoustic wave in austenitic stainless steels and martensitic steel
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Effects of helium production, displacement damage on mechanical properties and surface acoustic wave in austenitic stainless steels and martensitic steel

机译:产氦,位移损伤对奥氏体不锈钢和马氏体钢的力学性能和表面声波的影响

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摘要

The effects of helium production, displacement damage on mechanical properties and microstructures were investigated in some specimens such as austenitic stainless steels of SUS304 and SUS316 and a high chromium martensitic steel of HCM12A steels irradiated in a high fluence irradiation facility (HIT) of the University of Tokyo. The simultaneous dual ion (nickel plus helium ions) irradiations were adopted to simulate nuclear irradiation environments such as fast reactor and fusion reactor at HIT to 1 or 10 dpa and to 0, 1, 10, and 100 appm-He at 500, 550, and 600?°C. Thin foils for a transmission electron microscopy (TEM) were prepared with a focused ion beam (FIB) micro-sampling system. After the irradiation, the microstructures were observed by a transmission electron microscope and the irradiation hardening was measured by nano-indentation technique. In this study, the efficient of non-destructive measurement method of surface acoustic wave (SAW) excited by laser beam on the detection of radiation hardening behavior was also examined. Irradiation hardening was observed and the increment was tended to increase with dpa and He/dpa, which was especially effective in the condition of 100 appmHe/dpa even at 550?°C. Non-linear effect on amplitude of the excited SAW was also observed on the ion irradiated materials, and the propagation velocity of SAW was tended to be increased with irradiation dose. It was found that the behaviors of SAWs results were correlated with the changes of mechanical properties.
机译:在某些标本中研究了氦的产生,位移损伤对力学性能和显微组织的影响,例如在University of University的高通量辐照设施(HIT)下辐照的奥氏体不锈钢SUS304和SUS316和高铬马氏体钢。东京。采用同时双离子(镍离子和氦离子)辐照来模拟核辐射环境,例如HIT的快速反应堆和聚变反应堆在1、10 dpa以及在500、550,和600°C。用聚焦离子束(FIB)显微采样系统制备了用于透射电子显微镜(TEM)的薄箔。照射后,通过透射电子显微镜观察其微观结构,并通过纳米压痕技术测量照射硬化。在这项研究中,还检验了激光束激发的声表面波(SAW)的无损测量方法在辐射硬化行为检测中的有效性。观察到辐照硬化,并且随着dpa和He / dpa的增加趋于增加,这甚至在550℃下在100appmHe / dpa的条件下也特别有效。在离子辐照材料上还观察到了对激发的SAW幅度的非线性影响,并且SAW的传播速度倾向于随辐照剂量而增加。发现表面声波结果的行为与力学性能的变化有关。

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