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The effect of clay and mixing conditions to fire resistant and mechanical property of unsaturated polyester - glass fiber composites by a vacuum bagging method

机译:真空袋制袋法粘土和混合条件对不饱和聚酯 - 玻璃纤维复合材料的耐火和力学性能

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Glass fiber reinforced polymer (GFRP) composites have a weakness in fire resistant property.The addition of clay can improve the fire resistant property of GFRP.However, a good mixing is needed to disperse the clay.This research aims to observe the effect of clay and mixing conditions on fire resistance and impact strength of GFRP/clay composites.Unsaturated polyester (UP), glass fiber and 3-Aminopropyltriethoxysilanewere used as a matrix, a reinforcement and a compatibilizer, respectively to build the composites.Unsaturated polyester-clay-silane were mixed using a magnetic stirrer with a variation of rotation speed and mixing duration.The composites were fabricated using a vacuum bagging method.The composition of clay was varied from 1, 2, and 3 wt%.The rotation speed and mixing time were varied at 100, 150, 200 rpm and 60, 90, and 120 minutes, respectively.UP-glass fiber was used as a comparison material.The results showed that composites with 1 wt% clay content was not burned with the burning rate value of 0 mm/min.There were no significant effects of variables on impact strength in between the boundaries that attributed to different mechanisms such as shear and diffusion that worked together to disperse the clay.The shear action should work at high speed rotation and short mixing time, while diffusion at low speed rotation and long mixing time.
机译:玻璃纤维增​​强聚合物(GFRP)复合材料在耐火性中具有弱点。添加粘土可以改善GFRP的耐火性。然而,需要良好的混合来分散粘土。本研究旨在观察粘土的效果与GFRP /粘土复合材料的耐火性和冲击强度的混合条件。饱和聚酯(上),玻璃纤维和3-氨基丙基三乙氧基氧基硅酸盐分别用作基质,增强剂和增容剂,以构建复合材料。饱和聚酯 - 粘土 - 硅烷。使用磁力搅拌器混合,该磁力搅拌器具有旋转速度和混合持续时间的变化。使用真空装袋方法制造复合材料。粘土的组成在1,2和3wt%中变化。转速和混合时间变化在100,150,200rpm和60,90和120分钟,使用玻璃纤维作为比较材料。结果表明,具有1wt%粘土含量的复合材料不会用t燃烧他燃烧率值0 mm / min。变量对归因于剪切和扩散等不同机制的边界之间的抗冲突力没有显着影响,这些剪切和扩散在一起地分散粘土。剪切动作应该高速工作旋转和短混合时间,而扩散在低速旋转和长混合时间。

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