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Binary and ternary nanocomposites based on PVDF, PMMA, and PVDF/PMMA blends: polymorphism, thermal, and rheological properties

机译:基于PVDF,PMMA和PVDF / PMMA混合物的二元和三元纳米复合材料:多态性,热学和流变学性质

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Binary and ternary nanocomposites based on poly(vinylidene fluoride) (PVDF), poly(methyl methacrylate) (PMMA), and PVDF/PMMA blends were successfully prepared through a melt-mixing process, using a commercial organoclay (15A) as the nanofiller. The 15A was more finely dispersed (intercalated/partially exfoliated) within the PVDF matrix compared with the PMMA matrix. A higher PVDF content in the ternary composite essentially led to a superior degree of 15A dispersion. The 15A addition induced the polar β-form PVDF crystals, whereas the presence of PMMA in ternary composites reduced the efficiency in promoting β-form formation by 15A. Adding 15A also enhanced the nucleation of PVDF, but the enhancement was inferior while PMMAwas present. Conversely, the crystal growth of PVDF was retarded with the existence of 15A, and the PVDF/15A binary composite exhibited the greatest retardation. The equilibrium melting temperature (T_m°) of PVDF in the neat state and in the blends increased after 15A addition. The PVDF/15A binary composite possessed an evidently higher β-form T_m° than the α-form T_m° of neat PVDF (~20.1 °C rise). Similar effects on the individual components, 15A declined the thermal stability of PVDF but increased that of PMMA in the ternary composites. Rheological property measurements revealed that the ternary composites performed inbetween that of individual PVDF/15A and PMMA/15A binary composites. A percolation of 15A (pseudo)network structure was developed in the composites, and a more elastic behavior was observed with increasing PVDF content in the composites.
机译:以聚偏二氟乙烯(PVDF),聚甲基丙烯酸甲酯(PMMA)和PVDF / PMMA共混物为基础的二元和三元纳米复合材料是通过熔融混合工艺成功制备的,使用的是商用有机粘土(15A)作为纳米填料。与PMMA基质相比,15A在PVDF基质中的分散程度更高(嵌入/部分剥离)。三元复合物中较高的PVDF含量实质上导致了15A的优异分散度。 15A的添加诱导了极性β形PVDF晶体,而三元复合物中PMMA的存在降低了15A促进β形形成的效率。添加15A也会增强PVDF的成核作用,但是当存在PMMA时,增强作用较差。相反,存在15A时,PVDF的晶体生长受到阻碍,而PVDF / 15A二元复合材料表现出最大的延迟。加入15A后,纯净状态和共混物中PVDF的平衡熔融温度(T_m°)升高。 PVDF / 15A二元复合材料的β-形式T_m°明显高于纯PVDF的α-形式T_m°(约20.1°C升高)。 15A对三元复合材料的单个组分具有相似的作用,降低了PVDF的热稳定性,但增加了PMMA的热稳定性。流变性能测量表明,三元复合材料的性能介于单个PVDF / 15A和PMMA / 15A二元复合材料之间。在复合材料中形成了15A(伪)网络结构的渗滤,并且随着复合材料中PVDF含量的增加,观察到了更多的弹性行为。

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