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首页> 外文期刊>Journal of Composite Materials >Effect of hybrid phenolic hollow microsphere and silica-filled vinyl ester composites
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Effect of hybrid phenolic hollow microsphere and silica-filled vinyl ester composites

机译:混合酚醛空心微球与二氧化硅填充乙烯基酯复合材料的影响

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Study on phenolic hollow microspheres (PHMS)-filled vinyl ester (VE) composites has been carried out. Effect of adding PHMS fillers at different filler loading on flexural, impact, and thermal properties were studied. The impact strength increased with the addition of PHMS fillers but at the expense of flexural strength, flexural modulus, and thermal stability of the composites. The second stage of this article aims to study the effect of adding silica as second filler in PHMS-filled VE composite system, and the influence of silane treatment on the mechanical properties of silica/PHMS/VE hybrid composites. PHMS/VE composites filled with silane-treated silica were found to show an increase in flexural modulus with increasing filler content. On contrary, the untreated silica fillers were observed to provide reinforcing effect in PHMS/VE composites at rather low filler concentration. The flexural strengths of silica/PHMS/VE hybrid composites were found to decrease with addition of silica content in the composites, and further decreased with increasing in silica content for both untreated and treated silica/PHMS-filled VE composites. Addition of silane-treated silica in the composites also provided an increase in the impact resistance of the PHMS/VE composites. Interestingly, the addition of silica and PHMS fillers in VE matrix has resulting in low density composites with improved flexural modulus and impact resistance.
机译:已经进行了酚醛中空微球(PHMS)填充的乙烯基酯(VE)复合材料的研究。研究了在不同填料量下添加PHMS填料对弯曲,冲击和热性能的影响。冲击强度随PHMS填料的添加而增加,但以复合材料的弯曲强度,弯曲模量和热稳定性为代价。本文的第二阶段旨在研究在PHMS填充的VE复合体系中添加二氧化硅作为第二填充剂的效果,以及硅烷处理对二氧化硅/ PHMS / VE杂化复合材料力学性能的影响。发现填充有硅烷处理的二氧化硅的PHMS / VE复合材料显示出随填料含量增加而提高的挠曲模量。相反,观察到未经处理的二氧化硅填料在相当低的填料浓度下可在PHMS / VE复合材料中提供增强作用。发现二氧化硅/ PHMS / VE杂化复合材料的弯曲强度随着复合材料中二氧化硅含量的增加而降低,并且对于未处理和处理的填充二氧化硅/ PHMS的VE复合材料两者,弯曲强度随着二氧化硅含量的增加而进一步降低。在复合材料中添加硅烷处理的二氧化硅还提高了PHMS / VE复合材料的抗冲击性。有趣的是,在VE基体中添加二氧化硅和PHMS填料已导致具有改进的弯曲模量和抗冲击性的低密度复合材料。

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