Malfense Fierro Gian Piero, Meo Michele
University of Bath, Materials Research, Department of Mechanical Engineering, Claverton Down, Bath, UK.
University of Bath, Materials Research, Department of Mechanical Engineering, Claverton Down, Bath, UK.
Ultrasonics. 2019 Mar;93:43-62. doi: 10.1016/j.ultras.2018.10.011. Epub 2018 Oct 25.
Discovery and evaluation concerns of barely visible impact damage in composite materials is a well-known issue in industries using these materials. This work proposes a frequency sweep method where damage assessment is conducted with respect to the time domain. Firstly, a combined linear and nonlinear ultrasound imaging technique is proposed, which focuses on the excitation of damage/defect regions using a frequency sweep methodology from multiple transducer locations. Secondly, the method deconstructs time domain signals, which allows for the visualisation of linear and nonlinear ultrasound components independently. While, a filtering and frequency band separation method was used to exploit defect responses over different frequency ranges and provide time domain visualisation at the damage region. Finally, image segmentation was employed to automate the damage sizing procedure, while a binary imaging method was used to remove false positive damage regions produced by material vibration mode excitation (fundamental frequency responses) by using the nonlinear responses as a baseline-free tool. The results showed that the combined linear and nonlinear results provided more accurate results than a purely linear or nonlinear approach, furthermore the results were shown to be equivalent to those of a standard phased array system. The ability of the method to visualise nonlinear outputs in time can improve the understanding of nonlinear ultrasound mechanisms while provides a clear argument that a complete approach, incorporating both linear and nonlinear methods should be regarded as the future of NDT/E systems.
在使用复合材料的行业中,发现和评估复合材料中难以察觉的冲击损伤是一个众所周知的问题。这项工作提出了一种扫频方法,其中损伤评估是在时域中进行的。首先,提出了一种线性和非线性超声成像技术相结合的方法,该方法通过从多个换能器位置使用扫频方法来聚焦损伤/缺陷区域的激励。其次,该方法对时域信号进行解构,从而能够独立可视化线性和非线性超声分量。同时,使用了一种滤波和频带分离方法来利用不同频率范围内的缺陷响应,并在损伤区域提供时域可视化。最后,采用图像分割来自动化损伤尺寸测量过程,同时使用二值成像方法,以非线性响应作为无基线工具,去除由材料振动模式激励(基频响应)产生的误报损伤区域。结果表明,线性和非线性相结合的结果比纯线性或非线性方法提供了更准确的结果,此外,结果显示与标准相控阵系统的结果相当。该方法在时域中可视化非线性输出的能力可以增进对非线性超声机制的理解,同时提供了一个明确的论据,即结合线性和非线性方法的完整方法应被视为无损检测/评估系统的未来发展方向。