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DEVELOPMENT OF 2012 EDITION OF JSME CODE FOR DESIGN AND CONSTRUCTION OF FAST REACTORS (5) CREEP-FATIGUE EVALUATION METHOD FOR 316FR STAINLESS STEEL

机译:2012年JSME快速反应堆设计与施工规范的制定(5)316FR不锈钢的蠕变疲劳评估方法

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The most important failure mode to be prevented in the design is creep-fatigue at elevated temperatures in fast reactors. 316FR stainless steel is a candidate material for the reactor vessel and internal structures. Development of the procedure for evaluating creep-fatigue life is essential. The method for evaluating creep-fatigue life implemented in the Japan Society Mechanical Engineers code is based on the time fraction rule for austenitic stainless steel such as SUS304. Necessary equations such as fatigue curve and creep rupture curve for calculation of creep-fatigue life are evaluated, and the predicted creep-fatigue life by using the time fraction rule in 316FR stainless steel is compared with experimental data. The longest time to failure is about 100,000 h for evaluating creep-fatigue life. Fatigue curve, creep rupture curve, stress-strain curve and creep strain curve are provided for calculating creep-fatigue life. The creep-fatigue life is predicted within a factor of 2 even the test condition of the longest time to failure. Furthermore, comparison with the ductility exhaustion method was done to investigate the conservatism of the proposed method. Finally, the procedure based on the time fraction rule for evaluation of creep-fatigue life is proposed in 316FR stainless steel.
机译:设计中要防止的最重要的失效模式是快速反应堆中高温下的蠕变疲劳。 316FR不锈钢是反应堆容器和内部结构的候选材料。必须开发评估蠕变疲劳寿命的程序。日本协会机械工程师法典中实施的评估蠕变疲劳寿命的方法是基于奥氏体不锈钢(例如SUS304)的时间分数规则。评估了计算蠕变疲劳寿命所需的方程式,例如疲劳曲线和蠕变断裂曲线,并将使用时间分数法在316FR不锈钢中预测的蠕变疲劳寿命与实验数据进行了比较。评估蠕变疲劳寿命的最长失效时间约为100,000小时。提供了疲劳曲线,蠕变断裂曲线,应力-应变曲线和蠕变应变曲线,以计算蠕变疲劳寿命。即使是最长失效时间的测试条件,蠕变疲劳寿命也可以预测为2倍之内。此外,与延性衰竭方法进行了比较,以研究该方法的保守性。最后,提出了基于时间分数规则的316FR不锈钢蠕变疲劳寿命评估程序。

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