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Characterisation of Fatigue Crack Growth and Fracture Behaviour of SS 316L(N) Base and Weld Materials

机译:SS 316L(n)碱和焊接​​材料疲劳裂纹生长和断裂行为的表征

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This paper summarizes the results of the studies on fracture mechanics characterisation of SS 316L(N) and its welds. The results presented include the fracture toughness and FCG properties of the base and weld materials at different temperatures. Influence of nitrogen content on the base material properties is discussed. Further, the effects of long-term ageing at different temperatures on the fracture and FCG behaviour of the welds are presented and discussed. The weld metal has been subjected to extended thermal ageing, and a detailed study has been undertaken to characterize the (i) FCG properties and (ii) quasistatic J-R curves for the indigenously developed SS 316(N) weld material at both ambient and service temperatures. The ageing conditions covered include the "advanced" ageing according to the RCC-MR design code, i.e, > 4000 h at 923 K and the low temperature ageing, i.e., 643-823 K – the operating range for the SS 316L(N) components in PFBR. The results are discussed in detail in the light of microstructural changes taking place in the weld metal and their influence on the operating micromechanisms.
机译:本文总结了SS 316L(N)及其焊缝的裂缝力学研究的研究结果。提出的结果包括碱基和焊接材料的断裂韧性和FCG性质在不同的温度下。讨论了氮含量对基材性质的影响。此外,提出和讨论了呈现了在不同温度下的长期老化对焊缝裂缝和FCG行为的影响。焊接金属已经进行了延长的热老化,并进行了详细的研究,以表征(i)Fcg性质和(ii)在环境和服务温度下的本发明开发的SS 316(N)焊接材料的Quasistatic JR曲线。覆盖的老化条件包括根据RCC-MR设计代码的“先进”老化,即在923K处> 4000小时,低温老化,即643-823 k - SS 316L(N)的操作范围PFBR中的组件。鉴于焊接金属中的微观结构变化及其对操作微机械的影响,详细讨论了结果。

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