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首页> 外文期刊>International Journal of Fatigue >Infrared thermographic techniques for non-destructive damage characterization of carbon fibre reinforced polymers during tensile fatigue testing
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Infrared thermographic techniques for non-destructive damage characterization of carbon fibre reinforced polymers during tensile fatigue testing

机译:红外热成像技术在拉伸疲劳测试过程中无损表征碳纤维增强聚合物

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摘要

A non-destructive fatigue damage characterization technique is needed in the scope of the development of new processing techniques for carbon fibre reinforced polymer (CFRP) composites. This study investigates two thermographic testing techniques with the aim of providing an in situ characterization technique of damage during fatigue testing of the mentioned CFRP specimens. A passive thermographic approach is used by measuring the temperature increase of the specimen due to hysteretic heating during fatigue testing. A concept for the determination of the mechanical loss factor (damping) from the temperature increase is presented. This loss factor serves a measure for the damage of the material. The second technique is an active approach where pulse thermography with photothermal heating is used for the characterization of damage via the heat conductivity in the thickness direction. Finally, a comparison with C-scan results is presented. It can be concluded that the infrared thermographic techniques show potential for the damage characterization in CFRPs during fatigue testing and they will be further investigated.
机译:在开发碳纤维增强聚合物(CFRP)复合材料的新加工技术的范围内,需要一种非破坏性的疲劳损伤表征技术。这项研究调查了两种热成像测试技术,目的是提供一种在提及的CFRP试样疲劳测试过程中损伤的原位表征技术。被动热成像方法用于测量疲劳测试过程中由于滞后加热而导致的样品温度升高。提出了一种根据温度升高确定机械损耗因子(阻尼)的概念。该损耗因数用于衡量材料的损坏程度。第二种技术是一种主动方法,其中将具有光热加热的脉冲热成像技术用于通过厚度方向的热导率表征损伤。最后,与C扫描结果进行了比较。可以得出结论,红外热成像技术在疲劳测试过程中显示出CFRP损伤特征的潜力,并将进一步研究它们。

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