首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >FINAL PROPOSAL OF ENVIRONMENTAL FATIGUE LIFE CORRECTION FACTOR (Fen) FOR STRUCTURAL MATERIALS IN LWR WATER ENVIRONMENT
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FINAL PROPOSAL OF ENVIRONMENTAL FATIGUE LIFE CORRECTION FACTOR (Fen) FOR STRUCTURAL MATERIALS IN LWR WATER ENVIRONMENT

机译:LWR水环境中结构材料的环境疲劳寿命校正因子(Fen)的最终提案

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Low cycle fatigue life of structural materials diminishes remarkably as functions of various parameters in high temperature water simulating LWR coolant. Such reduction was estimated by the fatigue life reduction factor (Fen) and the equations to calculate Fen were developed and have undergone revision over the past ten years. The authors have endeavored to establish the method assessing fatigue damage at LWR power plants for the past 13 years in the Japanese EFT (Environmental Fatigue Tests) project under the financial support from the JNES (Japan Nuclear Safety Organization). The project terminated at the end of March in 2007. Final proposals of Fen equations were established for carbon, low-alloy, and austenitic stainless steels and nickel base alloys based on all the data obtained in the project. As the results, a small change in saturated strain rate for carbon and low-alloy steels in highly dissolved oxygen water and newly revised equations including slight change in saturated strain rate for stainless steels in BWR water as well as those for nickel base alloys were proposed. The difference between revised and previous model is essentially not large.
机译:在模拟LWR冷却水的高温水中,结构材料的低周疲劳寿命会随着各种参数的变化而显着缩短。这种减少是通过疲劳寿命减少因子(Fen)估算的,并且开发了计算Fen的方程式,并在过去十年中进行了修订。作者在JNES(日本核安全组织)的资助下,努力在日本EFT(环境疲劳试验)项目中建立了过去13年中评估轻水堆电厂疲劳损伤的方法。该项目于2007年3月底终止。根据该项目获得的所有数据,为碳,低合金和奥氏体不锈钢以及镍基合金建立了Fen方程的最终建议。结果,提出了碳和低合金钢在高度溶解的氧气水中的饱和应变率的微小变化,以及新修订的方程式,包括不锈钢在BWR水中以及镍基合金中的饱和应变率的微小变化。 。修改后的模型与以前的模型之间的差异实际上并不大。

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