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Influence of interfacial interactions on the mechanical behavior of hybrid composites of polypropylene / short glass fibers / hollow glass beads

机译:界面相互作用对聚丙烯/短玻璃纤维/中空玻璃珠杂交复合材料力学性能的影响

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摘要

Ternary composites of Polypropylene (PP)/Short Glass fibers (GF)/Hollow Glass Beads (HGB), with varying total and relative GF/HGB contents and using untreated and aminosilane-treated HGB compatibilized with maleated-PP, were prepared by direct injection molding of pre-extrusion compounded GF and HGB concentrates. The mechanical strength properties (tensile, flexural and Izod impact) were correlated with theoretical model predictions for hybrid composites, which identified synergistic gains over the rule of hybrid mixtures, depending upon the degree of interfacial interactions between the components of the hybrid composite. SEM analysis of cryofractured composites surfaces revealed that the presence of untreated HGB particles induces fiber-polymer interfacial decoupling under mechanical loading of the hybrid composites at much lower stress levels than in the presence of treated HGB particles. Higher storage modulus (E') and lower mechanical damping (tan delta) from DMTA established the importance of strong polymer-hybrid reinforcement interfacial interactions in the development of lightweight/high strength PP syntactic foams.
机译:通过直接注射制备具有不同总和和HGB含量的聚丙烯(PP)/短玻璃纤维(GF)/中空玻璃珠(HGB)的三元复合材料,并采用未处理的和氨基硅烷处理的HGB,通过直接喷射制备预挤出复合GF和HGB浓缩物的模塑。机械强度性质(拉伸,弯曲和Izod碰撞)与混合复合材料的理论模型预测相关,其鉴定了杂化混合物规则的协同阶段,这取决于杂化复合材料的组分之间的界面相互作用程度。对冷冻裂缝复合材料表面的SEM分析显示未经处理的HGB颗粒的存在在混合复合材料的机械负载下诱导纤维 - 聚合物界面去耦,其应力水平远低于处理的HGB颗粒。来自DMTA的较高储存模量(E')和较低的机械阻尼(TAN DELTA)建立了强聚合物 - 混合增强界面相互作用在轻质/高强度PP句法泡沫的开发中的重要性。

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