首页> 外文会议>ASME Pressure Vessels and Piping conference >SCC ASSESSMENT BASED ON PROBABILITY FRACTURE MECHANICS CONSIDERING SCC INITIATION AND PROPAGATION UNDER RESIDUAL STRESS FIELDS GENERATED BY MACHINING AND WELDING PROCESS OF PIPES
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SCC ASSESSMENT BASED ON PROBABILITY FRACTURE MECHANICS CONSIDERING SCC INITIATION AND PROPAGATION UNDER RESIDUAL STRESS FIELDS GENERATED BY MACHINING AND WELDING PROCESS OF PIPES

机译:基于概率断裂力学的应力腐蚀应力评估,涉及管道加工和焊接过程中产生的残余应力场下的应力腐蚀开裂和传播

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Stress corrosion cracking (SCC) has been observed near the welded zones of pipes made of austenitic stainless steel type 316L. Residual stress is an important factor for SCC. In the joining processes of pipes, butt welding is conducted after surface machining. Residual stress is generated by both processes, and the residual stress distribution by surface machining is varied by the subsequent butt-welding process. In this study, numerical analysis of the residual stress distribution by butt welding after surface machining was performed by the finite element method. The SCC initiation time was estimated by the residual stress obtained at the inner surface. SCC growth analyses based on probability fracture mechanics were performed by using the SCC initiation time and the residual stress distribution. As a result, the residual stress distribution in the axial direction due to butt welding after surface machining has high tensile stress exceeding 1000 MPa at the inner surface. The effect of SCC initiation on leakage probability is not as significant as the effect of plastic strain on the crack growth rate. However, to perform crack growth analyses considering SCC initiation, evaluation of the residual stress due to surface machining and welding is important.
机译:在由316L型奥氏体不锈钢制成的管道的焊接区域附近,观察到应力腐蚀开裂(SCC)。残余应力是SCC的重要因素。在管道的连接过程中,在表面加工后进行对接焊接。这两个过程都会产生残余应力,而表面加工的残余应力分布会在随后的对接焊接过程中发生变化。在这项研究中,通过有限元方法对表面加工后对接焊的残余应力分布进行了数值分析。通过在内表面获得的残余应力来估计SCC起始时间。通过使用SCC起始时间和残余应力分布,进行了基于概率断裂力学的SCC生长分析。结果,由于表面加工后的对接焊接而在轴向上残留的应力分布在内表面具有超过1000MPa的高拉伸应力。 SCC引发对泄漏概率的影响不如塑性应变对裂纹扩展速率的影响大。但是,要进行考虑SCC引发的裂纹扩展分析,评估由于表面加工和焊接引起的残余应力非常重要。

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