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Through-Transmission Laser Welding of glass fibre composite: experimental light scattering identification

机译:玻璃纤维复合材料的透过传动激光焊接:实验光散射识别

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The purpose of this paper is to develop a cost-effective, efficient and quick to implement experimental optical method in order to predict the optical properties (extinction coefficient) of semi-transparent polymer composites. The extinction coefficient takes into account the effects due to the absorption and the scattering phenomena in a semi-transparent component during the laser processes, i.e. TTLW (through-transmission laser welding). The present method used a laser as light source and a reflex camera equipped with a macro lens as a measurement device and is based on the light transmission measurement through different thickness samples. The interaction between the incident laser beam and the semi-transparent composite is exanimated. The results are presented for the case of a semi-transparent composite reinforced with the unidirectional glass fiber (UD). A numerical method, ray tracing, is used to validate the experimental results. The ray tracing method is appropriate to characterize the light-scattering phenomenon in semi-transparent materials.
机译:本文的目的是开发成本效益,高效且快速地实施实验光学方法,以预测半透明聚合物复合材料的光学性质(消光系数)。消光系数考虑了由于在激光过程中的半透明部件中的吸收和散射现象而引起的效果,即TTLW(通过传输激光焊接)。本方法使用激光器作为光源和配备有宏透镜作为测量装置的反射相机,并且基于通过不同厚度样本的光传输测量。事件激光束与半透明复合材料之间的相互作用浓缩。用单向玻璃纤维(UD)加固的半透明复合材料的情况提出了结果。使用数值方法射线跟踪,用于验证实验结果。光线跟踪方法适用于在半透明材料中表征光散射现象。

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