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首页> 外文期刊>Journal of Applied Polymer Science >Rice hull biocomposites. I. Preparation of a linseed-oil-based resin reinforced with rice hulls
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Rice hull biocomposites. I. Preparation of a linseed-oil-based resin reinforced with rice hulls

机译:稻壳生物复合材料。一,用稻壳增强亚麻籽油基树脂的制备

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摘要

Biocomposites consisting of a conjugated linseed-oil (CLO)-based thermoset reinforced with rice hulls were prepared by free-radical polymerization initiated by t-butyl peroxide. The resin composition was kept constant at 50 wt % CLO, 35 wt % n-butyl methacrylate, and 15 wt % divinylbenzene. Tensile tests, dynamic mechanical analysis, thermogravimetric analysis, Soxhlet extraction, and differential scanning calorimetry were used to establish the ideal cure sequence. The pressure during cure, filler load, and the drying and grinding of the filler were varied, and their effects on the final properties of the composites were assessed. Optimal conditions were established for the preparation of rice hull biocomposites. Scanning electron microscopy showed a weak filler-resin interaction and X-ray mapping suggested the presence of silica in the rice hulls; this have accounted for the high thermal and mechanical properties obtained for these composites.
机译:通过用叔丁基过氧化物引发的自由基聚合反应制备由稻壳增强的基于共轭亚麻籽油(CLO)的热固性生物复合材料。树脂组合物在50重量%的CLO,35重量%的甲基丙烯酸正丁酯和15重量%的二乙烯基苯下保持恒定。拉伸测试,动态力学分析,热重分析,索氏提取和差示扫描量热法被用来建立理想的固化顺序。改变固化过程中的压力,填料负载以及填料的干燥和研磨,并评估它们对复合材料最终性能的影响。建立了稻壳生物复合材料制备的最佳条件。扫描电子显微镜显示填料与树脂之间的相互作用较弱,X射线图表明稻壳中存在二氧化硅。这说明了这些复合材料具有很高的热和机械性能。

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