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Evaluation of sub-surface residual stress by ultrasonic method and finite-element analysis of welding process in a Monel pressure vessel

机译:蒙乃尔压力容器中超声方法对表面残余应力的评估以及焊接过程的有限元分析

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摘要

Welding of nickel-based alloys is increasingly used in the industry to manufacture various important structures in the marine industries, chemical processing, etc. This study investigates evaluation of sub-surface residual stresses, which are produced by the welding process in a pressure vessel made from Monel 400 alloy. The residual stresses are experimentally measured by ultrasonic method in which longitudinal critically refracted (LCR) waves are propagated inside the specimen to evaluate the effect of stress on the wave velocity. Any difference in the wave velocity could be transformed to the material stress by using acoustoelasticity relations. A nondestructive hydro-test process is used to measure the acoustoelastic constant, which is an important material property needed to be embedded in the acoustoelasticity relations. By using a different frequency range than the ultrasonic transducers, the LCR wave penetrates in different depths of the specimen to measure the sub-surface stresses. The welding processes are also numerically analyzed by a 3D thermo-mechanical finite-element (FE) model, which is validated by hole-drilling stressmeasurement method. The residual stresses calculated by FE simulation are then compared with those obtained from the ultrasonic stress measurement and an acceptable agreement is achieved. It is demonstrated that the sub-surface residual stresses of the Monel pressure vessel could be accurately evaluated by combination of the FE simulation and stress measurement implemented by the LCR waves.
机译:镍基合金的焊接在工业中越来越多地用于制造海洋工业,化学加工等领域的各种重要结构。本研究调查了在焊接的压力容器中通过焊接过程产生的亚表面残余应力的评估。由Monel 400合金制成。残余应力通过超声方法进行实验测量,其中纵向临界折射(LCR)波在样品内部传播,以评估应力对波速的影响。通过使用声弹性关系,波速的任何差异都可以转换为材料应力。使用非破坏性的水压测试过程来测量声弹性常数,这是需要嵌入声弹性关系中的重要材料属性。通过使用与超声换能器不同的频率范围,LCR波会穿透样品的不同深度以测量表面下的应力。焊接过程还通过3D热机械有限元(FE)模型进行了数值分析,该模型已通过钻孔应力测量方法进行了验证。然后将通过有限元模拟计算出的残余应力与通过超声应力测量获得的残余应力进行比较,并获得可接受的一致性。结果表明,通过有限元模拟和LCR波实现的应力测量相结合,可以准确地评估蒙乃尔压力容器的表面残余应力。

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