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Development and implementation of a membrane-coupled conformable array transducer for use in the nuclear industry

机译:膜耦合适形阵列换能器在核工业中的开发和实现

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摘要

Rolls-Royce, in collaboration with Imperial College, London, has developed a membrane-coupled phased array device and full matrix capture (FMC) inspection capability. Together, these tools can be used to deliver improved ultrasonic inspections on components with irregular surface geometries. This paper will provide details of the membrane-coupled device design and its usage as part of an automated inspection capability. Details of the FMC data processing software are provided in another paper: 'Ultrasonic phased array inspection using full matrix capture'~([1]). The membrane-coupled device utilises inexpensive, off-the-shelf array technology. Ultrasonic energy from the array is coupled into the component under test via a water path, which is encapsulated in a low-loss polyurethane membrane. The membrane material is acoustically matched to water and is sufficiently robust and flexible for scanning welded components with undressed convex weld caps, typical of those found in the nuclear industry. The membrane-coupled device concept is very versatile; linear and twin-crystal devices have now been developed and are reported here. The performance of the membrane-coupled device's inspection capability is demonstrated through the detection of a range of challenging defects within a welded stainless steel component. The results demonstrate that all of the reported defects within the component are readily detected using the membrane-coupled device, but that the inspection performance using conventional ultrasonic techniques with the weld cap in place is severely degraded. The completion of phased array inspection utilising FMC data also provides significant improvements in inspection speed, versatility and accuracy that cannot be achieved using conventional techniques.
机译:罗尔斯·罗伊斯公司与伦敦帝国学院合作,开发了一种膜耦合相控阵设备和全矩阵捕获(FMC)检测功能。这些工具一起可以用于对表面几何形状不规则的组件进行改进的超声波检查。本文将提供膜耦合设备设计及其作为自动检查功能一部分的用法的详细信息。 FMC数据处理软件的详细信息在另一篇文章中提供:“使用全矩阵捕获的超声相控阵检查” [[1])。膜耦合设备利用廉价的现成阵列技术。来自阵列的超声波能量通过水路耦合到被测部件,水路被封装在低损耗聚氨酯膜中。膜材料在声学上与水匹配,并且足够坚固和灵活,可用于扫描具有裸露凸焊帽的焊接部件,这在核工业中很常见。膜耦合设备的概念非常通用。现在已经开发出线性和双晶器件,并在这里进行了报道。通过检测焊接的不锈钢部件中一系列具有挑战性的缺陷,证明了膜耦合设备的检查能力。结果表明,使用膜耦合装置可以很容易地检测出组件中所有已报告的缺陷,但是使用常规超声技术(在适当位置安装焊帽)会严重降低检查性能。利用FMC数据完成相控阵检查还大大提高了检查速度,多功能性和准确性,这是传统技术无法实现的。

著录项

  • 来源
    《Insight》 |2012年第7期|p.386-393|共8页
  • 作者单位

    Rolls-Royce Nuclear, Raynesway, Derby DE2I 7XX, UK;

    Rolls-Royce Nuclear, Raynesway, Derby DE21 7XX,UK;

    Department of Mechanical Engineering, Imperial College, London SW7 2AZ, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:36:42

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