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Nonlinear imaging (NIM) of barely visible impact damage (BVID) in composite panels using a semi and full air-coupled linear and nonlinear ultrasound technique

机译:使用半和全气相线性和非线性超声技术复合板块在复合板中几乎可见的冲击损伤(BVID)的非线性成像(BVID)

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Two non-contact methods were evaluated to address the reliability and reproducibility concerns affecting industry adoption of nonlinear ultrasound techniques for non-destructive testing and evaluation (NDT/E) purposes. A semi and a fully air-coupled linear and nonlinear ultrasound method was evaluated by testing for barely visible impact damage (BVID) in composite materials. Air coupled systems provide various advantages over contact driven systems; such as: ease of inspection, no contact and lubrication issues and a great potential for non-uniform geometry evaluation. The semi air-coupled setup used a suction attached piezoelectric transducer to excite the sample and an array of low-cost microphones to capture the signal over the inspection area, while the second method focused on a purely air-coupled setup, using an air-coupled transducer to excite the structure and capture the signal. One of the issues facing nonlinear and any air-coupled systems is transferring enough energy to stimulate wave propagation and in the case of nonlinear ultrasound; damage regions. Results for both methods provided nonlinear imaging (NIM) of damage regions using a sweep excitation methodology, with the semi air-coupled system providing clearer results.
机译:评估了两种非接触方法,以解决影响行业采用非线性超声技术的可靠性和再现性问题,用于非破坏性测试和评估(NDT / E)目的。通过在复合材料中的几乎可见的冲击损伤(BVID)测试中,评估半和全耦合线性和非线性超声波方法。空气耦合系统通过接触驱动系统提供各种优点;如:易于检查,无接触和润滑问题以及非均匀几何评价的巨大潜力。半空气耦合设置使用抽吸附加的压电传感器来激发样品和低成本麦克风阵列以在检查区域上捕获信号,而第二种方法集中在纯粹的空气耦合设置上,使用空气 - 耦合换能器激发结构并捕获信号。面临非线性和任何空气耦合系统的问题之一是转移足够的能量以刺激波传播,并且在非线性超声的情况下;损害地区。两种方法的结果提供了使用扫描激励方法的损伤区域的非线性成像(NIM),并采用SEMI耦合系统提供更清晰的结果。

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