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Glass Fiber Reinforced Unsaturated Polyester: Effect of Nanoclay and Mixing Time on Tensile Modulus, Flammability, and Wear Resistance

机译:玻璃纤维增​​强不饱和聚酯:纳米粘土和混合时间对拉伸模量,可燃性和耐磨性的影响

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Glass fiber reinforced unsaturated polyesters were prepared by hand lay-up technique. Effect of clay conditions and loading, as well as mixing time on tensile modulus, flammability, and wear resistance were evaluated. In general, the results showed that there might be two possible structures, dispersed and agglomerated, in the composite samples. The modulus results showed that the effect of clay drying, as well as higher filler loading increase the property. In contrast, the mixing time resulted in negative effect on modulus. The improvement on modulus and flammability might be influenced by clay dispersion due to shear and viscosity change, while the decrease on modulus and wear resistance might be caused by agglomerated structures due to lubrication effect of moisture content, and less crosslink point caused by styrene evaporation.
机译:玻璃纤维增​​强的不饱和聚酯是通过手糊技术制备的。评估了粘土条件和载荷以及混合时间对拉伸模量,可燃性和耐磨性的影响。通常,结果表明,复合样品中可能存在两种可能的结构,即分散的和团聚的。模量结果表明,粘土干燥的效果以及较高的填料含量提高了性能。相反,混合时间对模量产生负面影响。模量和可燃性的改善可能受剪切和粘度变化引起的粘土分散的影响,而模量和耐磨性的下降可能归因于水分含量的润滑作用而结块的结构引起的,而苯乙烯蒸发引起的交联点较少。

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