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首页> 外文期刊>Journal of Materials Science >Effect of selective distribution of MWCNTs on the solid-state rheological and dielectric properties of blends of PMMA and LDPE
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Effect of selective distribution of MWCNTs on the solid-state rheological and dielectric properties of blends of PMMA and LDPE

机译:MWCNTs选择性分布对PMMA和LDPE共混物的固态流变介质性能的影响

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The effects of adding multi-walled carbon nanotubes (MWCNTs) on the solid-state rheological and dielectric properties of blends of poly(methyl methacrylate) (PMMA) and low-density polyethylene (LDPE) were studied as a function of varying polymer ratio. Dynamic mechanical thermal analysis (DMTA) was performed in torsion mode, on the blends and their composites with MWCNTs. For a PMMA/LDPE blend with a ratio of 80:20, the evolution of the loss tangent with temperature showed a single thermal event, associated with the glass transition (T-g) of PMMA, confirming that co-continuity has not been achieved. Upon loading with 2 wt.% MWCNTs, a decrease in the magnitude of this peak is observed. Even though the MWCNTs preferentially locate in the polymer phase first to melt, i.e., LDPE, selective solvent extraction on this sample demonstrated that some of the MWCNTs are trapped in the major phase, PMMA. Moreover, DMTA measurements also revealed the formation of a "rheological" percolated network at similar to 3.5 wt.% MWCNTs in PMMA/LDPE blends with polymer ratios of 50:50 and 20:80, but not in 80:20. In contrast, for the same MWCNT concentration, a 80:20 blend displayed a well-developed AC conductivity plateau at low frequencies and highly enhanced dielectric properties, as a consequence of the high concentration of micro-capacitors formed by polymer films sandwiched by nanotubes within the LDPE phase, as proven from atomic force microscopy observations.
机译:研究了多壁碳纳米管(MWCNT)对聚(甲基丙烯酸甲酯)(PMMA)和低密度聚乙烯(LDPE)共混物的固态流变和介电性能的影响,作为不同的聚合物比的函数。动态机械热分析(DMTA)在扭转模式下,在混合物及其具有MWCNT的复合材料上进行。对于具有80:20的比率的PMMA / LDPE混合物,温度变形的变化显示出与PMMA的玻璃化转变(T-G)相关的单个热敏事件,证实尚未实现共同连续性。装载2重量%的MWCNT时,观察到该峰值的幅度降低。尽管首先优先定位在聚合物相中的MWCNT,即LDPE,在该样品上的选择性溶剂萃取表明,一些MWCNT被困在PMMA的主要相中。此外,DMTA测量还揭示了类似于3.5重量%的“流变学”渗透网络的形成。在PMMA / LDPE中的%MWCNTS与50:50和20:80的聚合物比例混合,但不在80:20。相反,对于相同的MWCNT浓度,80:20混合在低频和高度增强的电介质特性下显示出良好开发的交流电导率平台,并且由于通过在内部夹紧的聚合物膜形成的高分子体膜形成的高浓度微电容器从原子力显微镜观察中证明的LDPE阶段。

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