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Functionalisation of polypropylene by solid phase graft polymerisation and its effect on mechanical properties of silica nanocomposites

机译:固相接枝聚合聚丙烯功能化及其对二氧化硅纳米复合材料力学性能的影响

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摘要

To prepare macromolecular compatibiliser for grafted nano-SiO2 /polypropylene (PP) composites, solid phase graft copolymers of PP with styrene and ethyl acrylate were synthesised, respectively. It was found that both per cent grafting and grafting efficiency can be adjusted by changing initiator concentration, reaction temperature and reaction time. As a result of partial chain scission and deterioration of ordered structure of PP during the graft polymerisation, the grafted PP exhibits poorer thermal stability and crystallisability than the unmodified PP. Mechanical tests of grafted nano-SiO2 /PP composites indicated that the addition of PP copolymer with the same species of grafting polymer as that on the nanoparticles further improves the ductility of the composites. Molecular rigidity of the grafting polymers, presence of the homopolymer produced during the graft polymerisation, and strain rate of the load applied have an important influence on the toughening effect of the functionalised PP.
机译:为了制备接枝纳米SiO 2 /聚丙烯(PP)复合材料的大分子相容剂,分别合成了PP与苯乙烯和丙烯酸乙酯的固相接枝共聚物。发现通过改变引发剂浓度,反应温度和反应时间可以调节接枝率和接枝效率。由于接枝聚合过程中部分链断裂和PP有序结构的恶化,接枝的PP与未改性的PP相比,显示出较差的热稳定性和结晶性。接枝的纳米SiO 2 / PP复合材料的力学性能测试表明,与纳米颗粒上接枝相同种类的接枝聚合物的PP共聚物的加入进一步提高了复合材料的延展性。接枝聚合物的分子刚度,在接枝聚合过程中产生的均聚物的存在以及所施加载荷的应变速率对官能化PP的增韧效果具有重要影响。

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