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A quantitative approach to retrieve delamination extension from thermal images recorded during impact tests

机译:一种从冲击测试期间记录的热图像中检索分层扩展的定量方法

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摘要

This work is concerned with the evaluation of the impact damage extension in composites from thermal images recorded during inline monitoring of impact tests. A new method is developed which derives from the previously conceived Noise Correction Reference (NCR) approach and includes the thermal diffusion time, leading to a new NCRD method. Starting from the correspondence between warm area and delamination, the NCR basically consists in a comparison between an average ΔTimage taken after impact with one taken before and involves a given set of images, acquired in temporal sequence during impact tests. A critical aspect of this method resides in the choice of the post impact images to be involved in the average because of the many parameters such as type of material, geometry and impact energy, which may affect the related thermal effects. Until now, this choice has been dictated by empirical considerations about the heat diffusion time of a given material. The aim of this work is to revise and improve the previous criterion. As a main novelty, the heat diffusion time is introduced which enhances the accuracy of the warm area estimation to be used for impact delamination evaluation; the suggested method is named NCRD.
机译:这项工作涉及从在线监测冲击试验期间记录的热图像评估复合材料的冲击损伤扩展。开发了一种新方法,该方法从先前构想的噪声校正参考(NCR)方法派生并包括热扩散时间,从而导致了一种新的NCRD方法。从温暖区域和分层之间的对应关系开始,NCR基本上是将冲击后拍摄的平均ΔTimage与之前拍摄的平均ΔTimage进行比较,并涉及在冲击测试期间按时间顺序获取的一组给定图像。该方法的一个关键方面在于,由于许多参数(例如材料类型,几何形状和冲击能量)可能会影响相关的热效应,因此要选择平均值后涉及的冲击后图像。到目前为止,这种选择是由有关给定材料的热扩散时间的经验考虑决定的。这项工作的目的是修改和改进以前的标准。作为主要的新颖性,引入了热扩散时间,从而提高了用于冲击分层评估的温暖区域估计的准确性;建议的方法称为NCRD。

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