先漏后破概念在316L焊接316LN奥氏体钢管中的应用

G. Cunto, A. Andrade, W. Monteiro
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摘要

本文研究了先漏后破(LBB)概念在一个相对小直径的高能反应堆冷却剂生产线上的应用,以直径273 mm的管道为例,提出采用AISI 316LN型作为基材与AISI 316L型涂层电极焊接。考虑母材、焊缝和热影响区,采用Ramberg-Osgood拉伸试验和J-Resistance曲线测定断裂韧性试验对管道材料进行了表征。对于拉伸试验中发现的力学性能,使用PICEP软件确定泄漏率与裂纹尺寸的曲线,以确定可检测泄漏裂纹的尺寸,以及考虑塑性坍塌破坏的临界裂纹尺寸。对于焊缝中韧性最低的临界裂纹尺寸,考虑撕裂不稳定性破坏进行j积分分析。结果表明,基体具有高韧性,焊缝具有低韧性,热影响区表现出中等的力学性能。在载荷极限分析中,发现母材出现周向裂纹时,临界裂纹尺寸最小。通过J积分分析,证明了不会发生撕裂失稳破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Leak-Before-Break concept in 316LN austenitic steel pipes welded using 316L
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.
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