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Detecting and imaging stress corrosion cracking in stainless steel, with application to inspecting storage canisters for spent nuclear fuel

机译:检测和成像不锈钢中的应力腐蚀裂纹,并将其应用于检查乏核燃料的储存罐

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摘要

One of the primary concerns with the long-term performance of storage systems for spent nuclear fuel (SNF) is the potential for corrosion due to deliquescence of salts deposited as aerosols on the surface of the canister, which is typically made of austentic stainless steel. In regions of high residual weld stresses, this may lead to localized stress-corrosion cracking (SCC). The ability to detect and image SCC at an early stage (long before the cracks are susceptible to propagate through the thickness of the canister wall and leaks of radioactive material may occur) is essential to the performance evaluation and licensing process of the storage systems. In this paper, we explore a number of nondestructive testing techniques to detect and image SCC in austenitic stainless steel. Our attention is focused on a small rectangular sample of 1 x 2 in(2) with two cracks of mm-scale sizes. The techniques explored in this paper include nonlinear resonant ultrasound spectroscopy (NRUS) for detection, Linear Elastodynamic Gradient Imaging Technique (LEGIT), ultrasonic C-scan, vibrothermography, and synchrotron X-ray diffraction for imaging. Results obtained from these techniques are compared. Cracks of mm-scale sizes can be detected and imaged with all the techniques explored in this study.
机译:与乏核燃料(SNF)的存储系统的长期性能有关的主要问题之一是由于以气雾形式沉积在罐表面上的盐的潮解性,该盐通常会由奥氏体不锈钢制成,因此可能导致腐蚀。在残余焊接应力较高的区域,这可能导致局部应力腐蚀裂纹(SCC)。在早期阶段(在裂缝易于通过罐壁的厚度传播并可能发生放射性物质泄漏之前)对SCC进行检测和成像的能力对于存储系统的性能评估和许可过程至关重要。在本文中,我们探索了多种无损检测技术来检测和成像奥氏体不锈钢中的SCC。我们的注意力集中在一个1 x 2 in(2)的小矩形样本上,该样本带有两个mm尺寸的裂纹。本文探讨的技术包括用于检测的非线性共振超声光谱(NRUS),线性弹性动力学梯度成像技术(LEGIT),超声C扫描,振动热成像和用于成像的同步加速器X射线衍射。比较了从这些技术获得的结果。可以使用本研究中探索的所有技术来检测毫米级尺寸的裂缝并将其成像。

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