首页> 外文期刊>Journal of Materials Science >Kinetic model study of moisture sorption-desorption-resorption in triangular-shaped vinyl ester filler/epoxy composites
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Kinetic model study of moisture sorption-desorption-resorption in triangular-shaped vinyl ester filler/epoxy composites

机译:三角形乙烯基酯填料/环氧树脂复合材料吸湿-脱附-吸附的动力学模型研究

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A phenomenological diffusion model was used to study and describe moisture sorption-desorption-resorption kinetics in triangular-shaped vinyl ester filler/epoxy composites at 80 ℃. The model was derived to predict the experimental anomalous weight gain behaviors of epoxy composites during moisture sorption and resorption, and estimate the degree of material degradation and loss observed as negative weight change during desorption. To verify the applicability of the model, acid anhydride-cured epoxy composites were prepared at varied alignment (parallel or staggered), spacing (1 or 5 mm), and orientation (pointed or flat) of triangular-shaped vinyl ester fillers. Moisture sorption-desorption-resorption experiment was performed by immersion of specimens in deionized water for 1200 h, followed by vacuum drying for 300 h, and water reimmersion for 300 h. The parameters of the model were calculated from nonlinear regression of percent weight change versus time experimental data. The model was found to be in good agreement with the weight change kinetic curves of all specimens. Results of three-way analysis of variance of model parameters showed the degree of material degradation and moisture diffusion coefficients during sorption, desorption, and resorption to be significantly affected by triangular-shaped filler alignment, spacing, and orientation. Using staggered over parallel alignment and 5-mm over 1-mm spacing decreased material degradation and moisture transport rate during desorption in composites. Increasing the spacing from 1 to 5 mm decreased moisture diffusion during sorption. Orienting the fillers from pointed to flat decreased moisture diffusion during resorption. Effect of interaction of filler spacing and orientation was also found to be statistically significant on the diffusion rate during sorption.
机译:采用现象扩散模型研究和描述了80℃三角型乙烯基酯填料/环氧树脂复合材料的水分吸附-解吸-再吸收动力学。导出该模型是为了预测环氧复合材料在水分吸收和吸收过程中的实验异常增重行为,并估计在脱附过程中观察到的材料降解和损失程度(负重量变化)。为了验证该模型的适用性,在三角形乙烯基酯填料的不同排列(平行或交错),间距(1或5 mm)和取向(点或平)下制备了酸酐固化的环氧复合材料。将标本浸入去离子水中1200h,然后真空干燥300h,再浸水300h,进行水分吸附-解吸-再吸附实验。该模型的参数是根据重量变化百分比与时间的实验数据的非线性回归计算得出的。发现该模型与所有样品的重量变化动力学曲线高度吻合。对模型参数进行三向分析的结果表明,在吸附,解吸和再吸收过程中,材料的降解程度和水分扩散系数受三角形填料排列,间距和方向的影响很大。在交错排列中使用交错交错排列和在1毫米间距中使用5毫米间距可减少复合材料解吸过程中的材料降解和水分传输速率。将间距从1 mm增加到5 mm会减少吸附过程中的水分扩散。将填料从尖锐的方向定向到平坦的方向,可减少吸收过程中的水分扩散。还发现填料间距和取向的相互作用对吸附过程中的扩散速率具有统计学意义。

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