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Effects of test environment on high temperature fatigue properties of reduced activation ferritic/martensitic steel, F82H

机译:测试环境对还原活化铁素体/马氏体钢F82H高温疲劳性能的影响

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Reduced activation ferritic/martensitic (RAFM) steels are assumed as structural material of blanket design activities. Determining the design limit is essential for the RAFM steels to qualify their use in fusion blankets. This work investigates fatigue properties of a RAFM steel, F82H at elevated temperature up to 823 K in the air and a vacuum condition. The tests were carried out with axial strain controlled condition using cylindrical specimen, and the results were summarized using the Manson’s modified universal slope method, which can describe fatigue lifetime as a function of tensile properties. Manson’s modified universal slope method gives good estimation for lifetime of F82H at temperature below 823 K. However, F82H-IEA demonstrated shorter lifetime than the estimation. The lifetime at vacuum condition was successfully described using universal slope method. On the other hand, the lifetime in the air was 1/3 or shorter than that in vacuum condition. It is notable that a heat of F82H prepared for IEA round robin tests demonstrated 1/5 of shorter lifetime than the latest F82H.
机译:假定还原活化的铁素体/马氏体(RAFM)钢是橡皮布设计活动的结构材料。确定设计极限对于使RAFM钢有资格在融合毯中使用是至关重要的。这项工作研究了RAFM钢F82H在空气和真空条件下在高达823 K的高温下的疲劳性能。测试是使用圆柱形试样在轴向应变控制条件下进行的,结果使用曼森(Manson)改进的通用斜率方法进行了总结,该方法可以将疲劳寿命描述为拉伸性能的函数。曼森改进的通用斜率方法可以很好地估算F82H在823 K以下的温度下的寿命,但是F82H-IEA的寿命比估算​​的寿命短。使用通用斜率法成功地描述了在真空条件下的寿命。另一方面,空气中的寿命是真空条件下的1/3或更短。值得注意的是,为IEA循环试验制备的F82H热比最新F82H寿命短1/5。

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