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Rheology, Crystallization Behavior under Shear, and Resultant Morphology of PVDF/Multiwalled Carbon Nanotube Composites

机译:PVDF /多壁碳纳米管复合材料的流变,剪切下的结晶行为以及最终的形态

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Poly(vinylidene fluoride) (PVDF) composites containing multiwalled carbon nanotubes (MWNTs) in the range from 0.1 to 5 wt% were prepared at 220 °C using a melt-mixer. The storage modulus (G') of the PVDF/MWNT composites increased with increasing MWNT content. In particular, there was a significant increase in G' between 1 and 3 wt%. In the Cole-Cole plot, the PVDF composites with up to 1 wt% MWNTs exhibited a single master curve with a slope of 1.25, but the composites containing 3 and 5 wt% MWNTs showed a decreased slope of 1.13 and 1.03, respectively. From the addition of 3 wt% MWNTs, the yield of the PVDF composites was observed in complex viscosity versus complex modulus plot with little dependence on the loss tangent (tan δ) on the frequency was shown. Both the induction time and crystallization time obtained from the G' versus time plot decreased with increasing MWNT content. The promoting effect of the MWNTs on the overall crystallization behavior was more profound at higher crystallization temperatures. Pure PVDF and PVDF with 0.1 wt% MWNTs showed only α phase crystals, but the PVDF composites with high concentrations of MWNTs (1-5 wt%) appeared to contain a mixture of β and γ phases in addition to the α phase.
机译:使用熔融混合器在220℃下制备包含多壁碳纳米管(MWNT)在0.1至5重量%范围内的聚偏二氟乙烯(PVDF)复合材料。 PVDF / MWNT复合材料的储能模量(G')随着MWNT含量的增加而增加。特别地,G'在1-3wt%之间显着增加。在Cole-Cole图中,MWNTs最高为1 wt%的PVDF复合材料显示出一条主曲线,其斜率为1.25,而MWNTs含量为3和5 wt%的PVDF复合材料的斜率分别为1.13和1.03。通过添加3重量%的MWNT,在复数粘度对复数模量图上观察到PVDF复合材料的产率,而对频率的损耗角正切(tanδ)的依赖性很小。从G'对时间图获得的诱导时间和结晶时间都随MWNT含量的增加而减少。在较高的结晶温度下,MWNT对整体结晶行为的促进作用更加明显。具有0.1 wt%MWNT的纯PVDF和PVDF仅显示α相晶体,但是具有高浓度MWNT(1-5 wt%)的PVDF复合材料似乎除了α相之外还包含β和γ相的混合物。

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