Theobald P D, Esward T J, Dowson S P, Preston R C
National Physical Laboratory, Queens Road, Teddington, Middlesex TW11 0LW, UK.
Ultrasonics. 2005 Mar;43(5):343-50. doi: 10.1016/j.ultras.2004.07.007.
Acoustic emission (AE) is a widely used technique that has been employed for the integrity testing of a range of vessels and structures for many years. The last decade has seen advances in signal processing, such that the reliability of AE technology is now being recognised by a wider range of industries. Furthermore, the need for quality control at the manufacturing stage, and requirements of in-service testing, is encouraging the issue of traceable measurements to be addressed. Currently, no independent calibration service for acoustic emission transducers is available within Europe. The UKs National Physical Laboratory (NPL) is undertaking work to develop a measurement facility for the traceable calibration of AE sensors. Such calibrations can contribute to greater acceptance of AE techniques in general, by meeting quality system and other traceability requirements. In this paper the key issues surrounding the development of such a facility are reviewed, including the need to establish repeatable AE sources, select suitable test blocks and to understand the limitations imposed by AE sensors themselves. To provide an absolute measurement of the displacement on the surface of a test block, laser interferometry is employed. In this way the output voltage of an AE sensor can be directly related to the displacement detected at the block surface. A possible calibration methodology is discussed and preliminary calibration results are presented for a commercially available AE sensor, showing its response to longitudinal wave modes.
声发射(AE)是一种广泛应用的技术,多年来一直用于一系列容器和结构的完整性测试。过去十年中信号处理取得了进展,使得声发射技术的可靠性现在得到了更广泛行业的认可。此外,制造阶段的质量控制需求以及在役测试的要求,促使可溯源测量问题得到解决。目前,欧洲范围内没有针对声发射换能器的独立校准服务。英国国家物理实验室(NPL)正在开展工作,以开发用于声发射传感器可溯源校准的测量设施。通过满足质量体系和其他可溯源性要求,此类校准总体上有助于声发射技术获得更高的认可度。本文回顾了围绕此类设施开发的关键问题,包括建立可重复声发射源的必要性、选择合适的测试块以及了解声发射传感器自身所带来的局限性。为了对测试块表面的位移进行绝对测量,采用了激光干涉测量法。通过这种方式,声发射传感器的输出电压可以直接与在块表面检测到的位移相关联。讨论了一种可能的校准方法,并给出了一种商用声发射传感器的初步校准结果,展示了其对纵波模式的响应。