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Advanced rheological and mechanical properties of three-phase polymer nanocomposites through strong interfacial interaction of graphene and titania

机译:三相聚合物纳米复合材料的高级流变和力学性能通过石墨烯和二氧化钛的强界面相互作用

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摘要

This study focused on rheological and mechanical properties of poly(vinylidene fluoride) nanocomposites incorporated with functionalized graphene nanoplatelets and hydroxylated titanium dioxide. Mechanical properties of the ternary composites were improved with a slight reduction in damping coefficient compared to the pure polymer and graphene binary composites. The storage modulus of the ternary composites significantly increased from about 67.5 Pa for the pure polymer to 3.24 x 10(5) Pa and 3.49 x 10(5) Pa at 0.1 rad/s for 6.67 wt% graphene composites containing 10 wt% and 20 wt% titania respectively. All ternary composites showed higher tensile strength and Young modulus compared to the pure polymer. Strong bonding between the polymer and co-fillers with a reduction in interfacial slipping in the ternary composites resulted in their lower damping factor and higher strength compared to their counterparts. The composite samples were prepared by solution and melt mixing methods. The scanning electron microscope was used to examine the samples' morphology and dispersion of the co-fillers in the matrix. Such composites can find applications in automobile and aerospace industries where materials with good strength and noise or vibration absorption capability are required.
机译:这项研究的重点聚流变和机械性能(偏氟乙烯)的纳米复合材料与官能化石墨烯纳米片和羟基化的二氧化钛包含于此。三元复合材料的机械性能与阻尼系数相比纯聚合物和石墨烯的复合材料的二进制稍微减少了改进。该三元复合物从显著增加约67.5帕为纯聚合物到3.24×10(5)Pa和的储能模量3.49×10(5)帕在0.1rad / s的6.67%(重量)石墨烯复合物含10%(重量)和20重量%二氧化钛分别。所有三元复合材料表现出较高的拉伸强度和杨氏模量相比,纯聚合物。聚合物和辅助填料与界面滑移在三元复合物的减少之间的强接合,导致在它们的下部阻尼因子和较高的强度相比,他们的对应物。复合样品通过溶液制备和熔融混合的方法。电子显微镜扫描用于检查样品在基质中的辅助填料的形态和分散。这种复合材料可以在汽车和航空航天等行业应用中,需要具有良好的强度和噪音或振动吸收能力的材料。

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