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Ultrasonic and structural characterization of anisotropic austenitic stainless steel welds: Towards a higher reliability in ultrasonic non-destructive testing

机译:各向异性奥氏体不锈钢焊缝的超声和结构表征:在超声无损检测中具有更高的可靠性

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摘要

The non-destructive testing of austenitic stainless steel welds of the primary coolant piping system is a significant problem for the nuclear industry. Ultrasonic techniques would be very helpful to detect, locate and size potential defects. Unfortunately, austenitic welds are coarse-grained, heterogeneous and anisotropic. This leads to aberration and scattering of the ultrasonic waves. In this paper, we present several experimental results of ultrasonic testing of two austenitic welds exhibiting high anisotropy. In order to explain the observed display of wave propagation phenomena such as beam deviation, we use finite element modeling. The modeling is associated with a complete characterization of the inspected welds. Two essential characteristics of the welds are determined: the average elastic constants of the weld and the grain orientations. The capability of the model is illustrated in different testing configurations. This work associating structural characterization and modeling shows that a better understanding of the phenomena of ultrasonic propagation should allow the interpretation and reliability of the industrial inspections of heterogeneous anisotropic welds to be improved.
机译:一次冷却剂管道系统的奥氏体不锈钢焊缝的无损检测是核工业的一个重要问题。超声波技术将对检测,定位和确定潜在缺陷的大小非常有帮助。不幸的是,奥氏体焊缝是粗大的,异质的和各向异性的。这导致超声波的像差和散射。在本文中,我们介绍了超声测试两个具有高各向异性的奥氏体焊缝的一些实验结果。为了解释观察到的波传播现象(如光束偏差)的显示,我们使用有限元建模。建模与检查焊缝的完整特征相关。确定了焊缝的两个基本特征:焊缝的平均弹性常数和晶粒取向。在不同的测试配置中说明了模型的功能。结合结构表征和建模的这项工作表明,对超声传播现象的更好理解应该可以改进异质各向异性焊缝的工业检查的解释和可靠性。

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