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首页> 外文期刊>Journal of Nondestructive Evaluation >Quantitative Characterization of Multiple Delaminations in Laminated Composites Using the Compton Backscatter Technique
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Quantitative Characterization of Multiple Delaminations in Laminated Composites Using the Compton Backscatter Technique

机译:康普顿反向散射技术的层压复合材料中多分层的定量表征

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摘要

A Compton X-ray backscatter technique was used to supplement ultrasonic pulse-echo C-scan imaging to quantitatively assess the impact damage in quasi-isotropic laminated composites which were impacted by a drop-weight tester. A Compton backscatter imaging system with a silt-type camera was developed to obtain a cross-sectional profile of impact-damaged laminated composites from the density variation of the cross-section. A nonlinear reconstruction model is introduced to overcome distortion of the Compton backscatter image due to attenuation effects, beam hardening, and irregular distributions of the fibers and the matrix in composites. An adaptive filter is used to reduce noise from many sources including quantum noise, especially when the SNR (signal-to-noise ratio) of the image is relatively low. Delaminations masked or distorted by the first few delaminations in an ultrasonic C-scan image are detected and characterized by the Compton backscatter technique, both in width and location.
机译:康普顿X射线反向散射技术用于补充超声波脉冲回波C扫描成像,以定量评估由滴重测试仪影响的准各向同性层压复合材料中的冲击损伤。开发了具有淤泥型相机的康普顿反向散射成像系统,以从横截面的密度变化获得冲击损坏的层压复合材料的横截面轮廓。引入非线性重建模型以克服康普顿反向散射图像的变形,因为纤维在复合材料中的纤维和矩阵的不规则分布。自适应滤波器用于降低包括量子噪声的许多源的噪声,特别是当图像的SNR(信噪比)相对较低时。通过宽度和位置的康普顿反向散射技术检测和特征在于超声C扫描图像中的前几个分层掩蔽或扭曲的分层。

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