The thermo-optical behavior of turbid composite laminates under highly energetic laser irradiations

V. Allheily, L. Merlat, Fabrice Lacroix, A. Eichhorn, G. L’hostis
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Abstract

From their prior emergence in the military domain but also nowadays in the civilian area, unmanned air vehicles constitute a growing threat to the todays civilization. In this respect, novel laser weapons are considered to eradicate this menace and the vulnerability of typical aeronautic materials under 1.07μm-wavelength irradiations is also investigated. In this paper, Kubelka-Munk optical parameters of laminated glass fiber-reinforced plastic composites are first assessed to build up a basic analytical interaction model involving internal refraction and reflection as well as the scattering effect due to the presence of glass fibers. Moreover, a thermo-gravimetric analysis is carried out and the kinetic parameters of the decomposition reaction extracted from this test with the Friedman method are verified trough a comparison with experimental measurements.
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混浊复合材料层合板在高能激光照射下的热光学行为
从最初出现在军事领域到现在出现在民用领域,无人驾驶飞行器对当今文明构成了越来越大的威胁。在这方面,考虑了新型激光武器来消除这一威胁,并研究了典型航空材料在1.07μm波长照射下的脆弱性。本文首先评估了夹层玻璃纤维-增强塑料复合材料的Kubelka-Munk光学参数,建立了一个基本的分析相互作用模型,包括内部折射和反射以及由于玻璃纤维的存在而产生的散射效应。此外,还进行了热重分析,并用Friedman方法提取了分解反应的动力学参数,并与实验测量值进行了对比验证。
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