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首页> 外文期刊>Journal of Composite Materials >Non-destructive inspection of composites using step heating thermography
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Non-destructive inspection of composites using step heating thermography

机译:使用步进加热热成像技术对复合材料进行无损检测

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摘要

The article explores the use of step heating thermography for defect identification in glass fiber reinforced composites. Step heating methods have potential for increasing the maximum detectable defect depth as compared with pulse heating methods. Inspection of thick fiberglass composites containing flat-bottom holes and resistive embedded defects using step heating thermography is investigated using 1-D analytical models, axisymmetric finite element modes, and experimental methods. 1-D heat transfer models of embedded defects under step heating are developed based on results from previous research of pulse heating thermography. Finite element models are used to explore the range of validity of defect identification techniques based on correlation with 1-D analytical methods, and it is found that accurate results are obtained for a defect radius to thickness ratio greater than two. Experimental results demonstrate the validity of the 1-D models for high defect resistance cases. For low resistance defects, detection is more difficult due to reduction of signal strength. A simple procedure is proposed to simultaneously determine defect depth and thermal resistance from the early time surface temperature profile based a two-point correlation with one-dimensional resistive defect solutions.
机译:本文探讨了逐步加热热成像技术在玻璃纤维增​​强复合材料中缺陷识别中的应用。与脉冲加热方法相比,步进加热方法具有增加最大可检测缺陷深度的潜力。使用一维分析模型,轴对称有限元模式和实验方法,研究了使用步进加热热成像法检查包含平底孔和电阻性嵌入缺陷的厚玻璃纤维复合材料的方法。基于脉冲加热热成像的先前研究结果,开发了步进加热条件下嵌入缺陷的一维传热模型。基于有限元模型,基于与一维分析方法的相关性,探索了缺陷识别技术的有效性范围,发现缺陷半径与厚度之比大于2可获得准确的结果。实验结果证明了一维模型在高缺陷抵抗情况下的有效性。对于低电阻缺陷,由于信号强度降低,因此检测更加困难。提出了一种简单的方法,可基于与一维电阻缺陷解决方案的两点相关性,从早期表面温度曲线同时确定缺陷深度和热阻。

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