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Quantitative comparison of optical transmission scanning with conventional techniques for NDE of impact damage in GFRP composites

机译:光学透射扫描与常规技术对GFRP复合材料冲击破坏的NDE的定量比较

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摘要

Robust and quantitative non-destructive evaluation (NDE) is essential for damage characterization in advanced materials, such as glass fiber reinforced polymer (GFRP) composites. Previous work demonstrated the capabilities of an optical transmission scanning (OTS) system, including an advanced image processing algorithm, for rapid and non-contact NDE of healthy and impacted GFRP samples. The number of delaminations and their contours in the test samples were accurately identified. In this paper, damage was introduced in GFRP samples by low velocity impacts of different energies, and OTS was validated by comparing the inspection results with conventional NDE techniques, including pulse-echo ultrasonic testing (UT) and UV dye penetrant testing (UV DPT). In addition, quantitative comparisons of damage severity were made for OT scans and UT C-scans by converting images to a normalized damage metric. Experimental results demonstrated that the estimated extent of impact damage agreed very well for all used techniques. Thus, OTS combines the cost-effectiveness and rapidity of qualitative techniques (e.g., UV DPT) with the more robust and comprehensive data analysis provided by quantitative methods (e.g., UT). (C) 2017 Elsevier Ltd. All rights reserved.
机译:鲁棒且定量的无损评估(NDE)对于先进材料(例如玻璃纤维增​​强聚合物(GFRP)复合材料)的损伤表征至关重要。先前的工作展示了光传输扫描(OTS)系统的功能,其中包括先进的图像处理算法,可以对健康和受影响的GFRP样品进行快速和非接触NDE。可以准确识别测试样品中的分层数量及其轮廓。本文通过不同能量的低速冲击将损伤引入到GFRP样品中,并通过将检查结果与常规NDE技术(包括脉冲回波超声测试(UT)和紫外染料渗透测试(UV DPT))进行比较来验证OTS的有效性。 。此外,通过将图像转换为标准化的损坏指标,对OT扫描和UT C扫描的损坏严重程度进行了定量比较。实验结果表明,对于所有使用的技术,冲击损伤的估计程度非常吻合。因此,OTS将定性技术(例如UV DPT)的成本效益和快速性与定量方法(例如UT)提供的更强大,更全面的数据分析相结合。 (C)2017 Elsevier Ltd.保留所有权利。

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