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首页> 外文期刊>Transactions of the Indian Institute of Metals >Development of Ductile Cast Iron for Spent Fuel Cask Applications Using Fracture Mechanics Principles
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Development of Ductile Cast Iron for Spent Fuel Cask Applications Using Fracture Mechanics Principles

机译:利用断裂力学原理开发用于废燃料罐的球墨铸铁

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The structure-property relations of ductile cast irons (DCIs) with varying Cu content and similar to 1 wt% Ni has been investigated with an emphasis on examining their fracture toughness property towards the development of suitable materials for large volume containers for transport of spent fuel. The detailed microstructural characteristics, hardness, tensile and fracture toughness properties of three DCIs were assessed in as-cast and annealed conditions. Fracture toughness values were determined using both ball indentation (K-BI) and J-integral (KJ(Ic)) tests. The obtained results assist to infer that: (1) the amount of pearlite and nodule count increases with increased amount of Cu, (2) the hardness and strength values increase whereas fracture toughness values marginally decrease with increased Cu content, and (3) the magnitudes of K-BI estimated using a proposed analysis are in good agreement with KJ(Ic) values for the as-cast materials.
机译:研究了Cu含量不同且Ni含量接近1 wt%的球墨铸铁(DCI)的结构-特性关系,重点是检查其断裂韧性,以开发适用于大容量容器的乏燃料运输材料。在铸造和退火条件下评估了三种DCI的详细的微观结构特征,硬度,拉伸强度和断裂韧性。使用球压痕(K-BI)和J积分(KJ(Ic))测试确定断裂韧性值。获得的结果有助于推断:(1)随着Cu含量的增加,珠光体的数量和结核的数量增加;(2)随着Cu含量的增加,硬度和强度值增加,而断裂韧性值则略有下降;以及(3)使用拟议的分析估算出的K-BI值与铸态材料的KJ(Ic)值非常吻合。

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