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Relationship between Microstructure and Impact Strength of Ferritic Ductile Cast Iron for Cask Use

机译:铁素质延性铸铁微观结构与冲击强度的关系

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Ferritic cast iron with spheroidal graphite for cask was in this study. The material was separated into five parts along the radius direction of the vessel, and the relation between microstructure and Charpy impact behavior was investigated. The results obtained are summarized as follows;(1) The size of graphite and the distance between graphite nodules increased near the center in the section of the vessel, and the number of graphite nodules inversely decreased. (2) Fast Fourier Transforming treatment used to analyse the absorbed energy was effective on the estimation of impact characteristics of cast irons. (3) The difference in impact energy of the materials collected from different parts of the vessel along the radius direction was not recognized. It was found that the dectile-brittle transition temperature was about 270K. (4) Above the transition temperature, the absorbed energy was dependent on the ferrite grain size, section area rate of the ferrite phase and the ductility of it. Below the transition temperature, graphite nodules were found to arrest the brittle crack propagation.
机译:本研究中,带有球形石墨的铁素体铸铁是在本研究中。沿着容器的半径方向将该材料分成五个部分,并研究了微观结构和夏比冲击行为之间的关系。获得的结果总结如下;(1)石墨的尺寸和石墨结节之间的距离在容器部分的中心附近增加,并且石墨结节的数量截然不同。 (2)用于分析吸收能量的快速傅里叶变换处理对铸铁的冲击特性的估计有效。 (3)未识别从船舶的不同部件收集的材料的差异差异。发现Dectile-脆化转变温度为约270k。 (4)高于过渡温度,吸收能量取决于铁氧体粒径,铁氧体相的截面面积率和其延展性。低于过渡温度,发现石墨结节抑制脆性裂纹繁殖。

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