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Application of MODELLING for ENHANCED ULTRASONIC INSPECTION of stainless steel welds

机译:建模在不锈钢焊缝超声检查中的应用

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The ultrasonic inspection of the primary coolant piping of Pressurized Water Reactors (PWR) is a major concern for the nuclear industry. Numerous studies have been undertaken over some years by EDF R&D in collaboration with the French Atomic Energy Commission (CEA) to improve the non-destructive testing (NDT) process for these applications and to help towards their qualification. More particularly, a great deal of work was carried out on the inspection of austenitic stainless steel welds. Indeed, the anisotropic, heterogeneous and coarse granular structures of these welds lead to important disturbances of the ultrasonic propagation: beam skewing and splitting, attenuation, backscattering and ghost echoes. This paper presents the methodology developed for modelling the ultrasonic inspection of austenitic welds, which is based on an accurate characterization of the material. Two numerical approaches are presented: a finite elements code, ATHENA, developed by EDF, and a semi-analytical code that is a part of the CIVA simulation platform developed by the CEA. These codes simulate the propagation of the ultrasonic beam in the weld and calculate the defect-beam interaction. Ultrasonic beam disturbances are illustrated from experimental and numerical results for different applications. In particular, the influence of variations in the weld structure on NDT performance is discussed. This comparison between experiment and modelling shows the modelling methodology to be valid.
机译:压水堆(PWR)的主冷却剂管道的超声检查是核工业的主要关注点。 EDF R&D与法国原子能委员会(CEA)合作进行了数年的研究,以改善这些应用的无损检测(NDT)流程并帮助其进行认证。更具体地说,在检查奥氏体不锈钢焊缝方面进行了大量工作。的确,这些焊缝的各向异性,异质和粗大的颗粒结构会导致超声传播的重要干扰:波束偏斜和分裂,衰减,反向散射和幻影回波。本文介绍了一种基于奥氏体焊缝的超声波检测方法而开发的方法,该方法基于材料的精确表征。提出了两种数值方法:EDF开发的有限元代码ATHENA,以及CEA开发的CIVA仿真平台的一部分的半分析代码。这些代码模拟了超声波束在焊缝中的传播,并计算了缺陷束相互作用。从不同应用的实验和数值结果说明了超声波束干扰。特别是,讨论了焊接结构变化对无损检测性能的影响。实验与建模之间的比较表明,建模方法是有效的。

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