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Application of Leak-Before-Break concept in 316LN austenitic steel pipes welded using 316L

机译:先漏后断概念在用316L焊接的316LN奥氏体钢管中的应用

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The paper presents a study of the application of Leak-Before- Break (LBB) concept in a relatively small-diameter high energy reactor coolant line, where it is proposed type AISI 316LN to be used as base material welded with type AISI 316L coated electrode considering a pipe with diameter of 273 mm. The pipe material was characterized in terms of tensile test with Ramberg-Osgood analyses and fracture toughness tests with J-Resistance curve determination, considering base material, weld joint and heat affected zones. For the mechanical properties found in tensile tests and using the PICEP software, were determined the leak rate curves versus crack sizes, to determine the size of a detectable leakage crack, and the critical crack sizes, considering failure by plastic collapse. For the critical crack sizes found in weld, which presented the lowest toughness, J-Integral analysis was performed considering failure by tearing instability. Results show a well-defined mechanical behavior where base material has a high toughness, weld has a low toughness, and HAZ showed intermediate properties. For the load limit analysis, the lowest critical crack size was found for base material presenting circumferential cracks. For J- Integral analysis, it was demonstrated that failure by tearing instability will not occur.
机译:本文介绍了泄漏前断裂(LBB)概念在相对较小直径的高能反应堆冷却剂管线中的应用研究,其中建议将AISI 316LN型用作与AISI 316L涂层电极焊接的基础材料考虑直径273毫米的管道。考虑到基础材料,焊缝和热影响区,通过Ramberg-Osgood分析进行拉伸测试,并通过J电阻曲线确定进行断裂韧性测试来表征管道材料。对于在拉伸试验中使用PICEP软件发现的机械性能,确定了泄漏率曲线与裂纹尺寸的关系,以确定可检测到的泄漏裂纹的尺寸以及考虑到塑料塌陷而导致的临界裂纹尺寸。对于呈现最低韧性的焊缝中临界裂纹尺寸,考虑到由于撕裂不稳定性而导致的失效,进行了J积分分析。结果显示出良好的机械性能,其中基材具有高韧性,焊缝具有低韧性,而HAZ具有中等性能。对于载荷极限分析,发现出现圆周裂纹的基材的最低临界裂纹尺寸。对于J积分分析,证明不会发生因撕裂不稳定性而导致的故障。

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