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首页> 外文期刊>Journal of Materials Science >Polypropylene/SiO(2) nanocomposites filled with different nanosilicas: thermal and mechanical properties, morphology and interphase characterization
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Polypropylene/SiO(2) nanocomposites filled with different nanosilicas: thermal and mechanical properties, morphology and interphase characterization

机译:聚丙烯/ SiO(2)纳米复合材料填充不同的纳米二氧化硅:热和机械性能,形态和相间表征

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摘要

Untreated and surface-treated SiO(2) nanoparticles with different alkyl chain length (described as C0, 3C1, C8 and C16 according to the number of carbon atoms) on particle surface were used as fillers for isotactic polypropylene (iPP). The iPP/SiO(2) composites containing 2.3 vol% of nanoparticles were prepared by melt blending and injection moulding. The dispersion quality of nanoparticles in matrix was examined using scanning electron microscopy (SEM). The crystallization behaviour of iPP was examined using differential scanning calorimetry (DSC). The mechanical properties of all samples were characterized by tensile test, compact tension (CT) test and dynamic mechanical thermal analysis (DMTA). The particle-matrix interphase behaviour was also examined and discussed. SEM images show that different silicas show different dispersion quality in matrix due to different hydrophobicity. The crystallinity and spherulite size of matrix are overall decreased in composites. The tensile properties of iPP/SiO(2) composites show clear relationship with alkyl chain length on particle surface, i.e. increasing alkyl chain length leads to decreased tensile modulus but increased tensile yield strength and strain, indicating increased interfacial interactions with increased alkyl chain length. The 3C1-composite shows the highest fracture toughness with an improvement by 9% compared to neat iPP, whereas the other composites show decreased values of fracture toughness.
机译:具有不同烷基链长度(根据碳原子数分别描述为C0、3C1,C8和C16)的未经处理和经表面处理的SiO(2)纳米颗粒用作等规聚丙烯(iPP)的填料。通过熔融共混和注塑成型制备了包含2.3%(体积)纳米颗粒的iPP / SiO(2)复合材料。使用扫描电子显微镜(SEM)检查纳米颗粒在基质中的分散质量。使用差示扫描量热法(DSC)检查了iPP的结晶行为。所有样品的机械性能均通过拉伸试验,紧密拉伸(CT)试验和动态机械热分析(DMTA)进行表征。还研究和讨论了颗粒-基质相间行为。 SEM图像表明,由于疏水性不同,不同的二氧化硅在基质中的分散质量也不同。复合材料中基体的结晶度和球晶尺寸整体降低。 iPP / SiO(2)复合材料的拉伸性能显示出与颗粒表面上烷基链长度的明确关系,即增加烷基链长度会导致拉伸模量降低,但拉伸屈服强度和应变会增加,表明界面相互作用与烷基链长度的增加有关。 3C1复合材料显示出最高的断裂韧性,与纯iPP相比提高了9%,而其他复合材料则显示出降低的断裂韧性值。

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