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首页> 外文期刊>Composites >Quantitative study of local heat sources by Ultrasonic Infrared Thermography: An approach for estimating total energy released by low energy impact damage in C/C composite
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Quantitative study of local heat sources by Ultrasonic Infrared Thermography: An approach for estimating total energy released by low energy impact damage in C/C composite

机译:超声红外热成像技术对局部热源的定量研究:一种估算低能量冲击破坏C / C复合材料释放的总能量的方法

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摘要

An approach intended for the evaluation of total energy released in multi-component defects subjected to ultrasonic stimulation is described. Experimental research was conducted on carbon/carbon composite containing a 25 J impact damage defect. The test sample was ultrasonically stimulated at the frequency of 22 kHz by using a magnetostrictive device. The impact damage was modelled as a pyramid-like set of six single delaminations, and each of them represented an independent heat source. The calculated temperature response was matched to the experimental temperature profile by shape and amplitude thus allowing the evaluation of energy release within the defect.
机译:描述了一种旨在评估经受超声波刺激的多组分缺陷中释放的总能量的方法。对包含25 J冲击损伤缺陷的碳/碳复合材料进行了实验研究。使用磁致伸缩装置以22kHz的频率超声刺激测试样品。冲击破坏被建模为六个单独分层的金字塔状集合,并且每个分层代表一个独立的热源。计算出的温度响应通过形状和幅度与实验温度曲线相匹配,从而可以评估缺陷内的能量释放。

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