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Analysis of the Light Transmission Ability of Reinforcing Glass Fibers Used in Polymer Composites

机译:聚合物复合材料用增强玻璃纤维的透光性能分析

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摘要

This goal of our research was to show that E-glass fiber bundles used for reinforcing composites can be enabled to transmit light in a common resin without any special preparation (without removing the sizing). The power of the transmitted light was measured and the attenuation coefficient, which characterizes the fiber bundle, was determined. Although the attenuation coefficient depends on temperature and the wavelength of the light, it is independent of the power of incident light, the quality of coupling, and the length of the specimen. The refractive index of commercially available transparent resins was measured and it was proved that a resin with a refractive index lower than that of the fiber can be used to make a composite whose fibers are capable of transmitting light. The effects of temperature, compression of the fibers, and the shape of fiber ends on the power of transmitted light were examined. The measurement of emitted light can provide information about the health of the fibers. This can be the basis of a simple health monitoring system in the case of general-purpose composite structures.
机译:我们研究的目的是表明,用于增强复合材料的E-玻璃纤维束无需特殊处理(无需去除胶料)就可以在普通树脂中透射光。测量透射光的功率并确定表征纤维束的衰减系数。尽管衰减系数取决于温度和光的波长,但它与入射光的功率,耦合的质量和样本的长度无关。测量了市售的透明树脂的折射率,并且证明了具有比纤维低的折射率的树脂可以用于制造其纤维能够透光的复合材料。研究了温度,纤维压缩和纤维末端形状对透射光功率的影响。发射光的测量可以提供有关纤维健康的信息。对于通用复合结构,这可以作为简单的健康监控系统的基础。

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