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Effects of glass fibers on light transmittance and color of fiber-reinforced composite

机译:玻璃纤维对纤维增强复合材料的透光率和颜色的影响

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Objectives. The main objectives were: (1) To find out the light transmittance characteristics of fiber-reinforced composites. (2) Determination of color differences between non-fiber-reinforced composites and fiber-reinforced composites. (3) Investigation of relationship between light transmittance and color. Methods. A commercial microhybrid composite was reinforced with S-type braided glass fibers. The samples were divided into three groups-one was used as the control group, with no reinforcements; the second group was reinforced with a single layer of glass fibers; the third was reinforced with double layers of fibers. Transmittance was measured from 400 nm to 700 nm for all samples. Color values were also measured for all samples and color differences were determined amongst the three groups, based on the CIE L~* a~* b~* color system. The differences in transmittance, color values and color differences were determined by applying one-way analysis of variance (ANOVA) along with Tukey's HSD. Correlation coefficients were calculated between transmittance at different wavelengths and color values. Results. There were significant differences in transmittance between the control group and the experimental groups. Color changes were also significant amongst the three groups. The control group appeared lighter than both the experimental groups. Addition of fibers shifted the color of the composite samples towards the +a~* (red) and +b~* (yellow) regions i.e. towards the longer wavelength regions. Statistically significant correlations were found between wavelength of transmitted beam and color values, especially at longer wavelengths. Significance. Within the scope of this study, it was found that inclusion of glass fibers reduced the amount of light transmitted through the composite structure. Color was also altered with an increase in chroma component and reduction in lightness.
机译:目标。主要目的是:(1)找出纤维增强复合材料的透光特性。 (2)确定非纤维增强复合材料与纤维增强复合材料之间的色差。 (3)研究透光率和颜色之间的关系。方法。商业微混合复合材料用S型编织玻璃纤维增​​强。将样品分为三组,一组作为对照组,不进行增强。第二组用单层玻璃纤维增​​强。第三个是用双层纤维增强的。对于所有样品,从400nm至700nm测量透射率。还测量了所有样品的色值,并基于CIE L〜a〜* b〜*颜色系统确定了三组之间的色差。通过应用方差单向分析(ANOVA)和Tukey的HSD来确定透射率,色值和色差的差异。计算不同波长下的透射率与色值之间的相关系数。结果。对照组和实验组之间的透射率存在显着差异。三组之间的颜色变化也很明显。对照组显得比两个实验组都要轻。纤维的添加使复合样品的颜色向+ a〜*(红色)和+ b〜*(黄色)区域,即向更长的波长区域移动。发现透射光束的波长和色值之间存在统计学上的显着相关性,尤其是在较长波长下。意义。在这项研究的范围内,发现包含玻璃纤维减少了通过复合结构传输的光量。颜色也随着色度分量的增加和亮度的降低而改变。

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