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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Application of advanced master curve approaches on WWER-440 reactor pressure vessel steels
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Application of advanced master curve approaches on WWER-440 reactor pressure vessel steels

机译:先进的主曲线法在WWER-440反应堆压力容器钢上的应用

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摘要

The master curve (MC) approach used to measure the transition temperature, T_0, was standarised in the ASTM Standard Test Method E 1921 in 1997. The basic MC approach for analysis of fracture test results is intended for macroscopically homogeneous steels with a body centred cubic (ferritic) structure only. In reality, due to the manufacturing process, the steels in question are seldom fully macroscopically homogeneous. The fracture toughness values measured on Charpy size SE(B) specimens of base metal from the Greifswald Unit 8 rector pressure vessel (RPV) show large scatter. The basic MC evaluation following ASTM E1921 supplies a MC with many fracture toughness values which lie below the 5 percent fracture probability line. It is therefore suspected that this material is macroscopically inhomogeneous. In this paper, two recent extensions of the MC for inhomogeneous materials are applied to these fracture toughness data.
机译:用于测量转变温度T_0的主曲线(MC)方法于1997年在ASTM标准测试方法E 1921中进行了标准化。用于分析断裂测试结果的基本MC方法旨在用于具有体心立方的宏观均质钢(铁素体)结构。实际上,由于制造过程的原因,所讨论的钢很少在宏观上是完全均匀的。用格赖夫斯瓦尔德装置8整流器压力容器(RPV)在贱金属的夏比尺寸SE(B)样品上测得的断裂韧性值显示出较大的分散性。遵循ASTM E1921的基本MC评估为MC提供了许多断裂韧性值,这些断裂韧性值低于5%断裂概率线。因此,怀疑该材料在宏观上是不均匀的。在本文中,针对不均匀材料的MC的两个最新扩展被应用于这些断裂韧性数据。

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