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Morphology, thermal and mechanical performances of SR composites containing sepiolite and HGMs as binary fillers

机译:含有海泡石和HGMs作为二元填料的SR复合材料的形貌,热性能和机械性能

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摘要

Binary fillers-filled silicone rubber (SR) matrix composites are prepared to improve the thermal and mechanical properties of SR as a lightweight thermal insulating material. Sepiolite and hollow glass microspheres (HGMs) can be evenly dispersed in SR matrix to obtain SR/sepiolite/HGM composites with superior performances at amounts of around 7.5 parts per hundreds of rubber (phr) and 20 phr, respectively, as observed from scanning electron microscopy (SEM). The density of the composites increases slightly with the addition of sepiolite in a linear trend, while the addition of HGMs results in the abrupt reduction in density lower than 0.7 g/cm(3). Sepiolite exhibits a strengthening effect in the SR matrix; however, the addition of HGMs in this matrix slightly enhances the stress of the composite; its maximum elongation at break can increase up to 300%. The addition of sepiolite and HGMs improves the initial decomposition temperatures of SR composites a little; the excellent thermal insulating effect provided by HGMs is further verified by their significant decrease in thermal conductivity at 200 degrees C, providing the facts that these SR/sepiolite/HGM composites can be used as lightweight materials for thermal insulating purposes.
机译:制备二元填料填充的硅橡胶(SR)基复合材料可改善SR作为轻质隔热材料的热和机械性能。海泡石和中空玻璃微球(HGM)可以均匀地分散在SR基质中,从而获得具有优异性能的SR /海泡石/ HGM复合材料,从扫描电子观察到,其性能分别约为每百份橡胶7.5份和200份显微镜(SEM)。复合材料的密度随海泡石的添加呈线性趋势而略有增加,而HGMs的添加导致密度突然降低,低于0.7 g / cm(3)。海泡石在SR基质中显示出增强作用。但是,在该基质中添加HGMs会稍微增加复合材料的应力。其最大断裂伸长率可增加高达300%。海泡石和HGM的添加可以稍微改善SR复合材料的初始分解温度。 HGM在200摄氏度时的热导率显着降低进一步证明了HGM提供的出色的隔热效果,条件是这些SR /海泡石/ HGM复合材料可用作轻质材料进行隔热。

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