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Matrix tacticity controlled tuning of microstructure, constitutive behavior and rheological percolation effect of melt-mixed amino-functionalized MWCNT/PP nanocomposites

机译:熔融混合氨基官能化MWCNT / PP纳米复合材料的微观结构,组成型行为,组成型行为和流变渗透效应的基质术。

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摘要

Amino-functionalized multi walled nanotube (MWCNT-NH2) filled isotactic PP and isotactic-syndiotactic (70:30) mixed PP based melt-mixed nanocomposites have been comparatively evaluated with regard to morphological, rheological and thermo-mechanical properties. The ratio of mean free space lengths (L-f) to infiltrated mean free space lengths (L-inf) between nanotubes in isotactic-syndiotactic (70:30) blended matrix based nanocomposites increased relatively indicating a dispersed-morphology. The rheological percolation threshold increased up to a higher extent of MWCNT-NH2 loading (from O-c approximate to 2.3 x 10(-4) in isotactic to O-c approximate to 11 x 10(-4) in iso-syndio blend) accompanied with the formation of a mechanically responsive network structure. van-GurpPalmen plot showed a transition in the rheological response as a consequence of network morphology getting shifted to higher concentration of MWCNT-NH2 in the isotactic-syndiotactic mixed PP based nanocomposites than in the isotactic based one. Constitutive modeling of complex viscosity response of the nanocomposites led to functional correlation between the percolation and relaxation dynamics of polymer chains. POLYM. ENG. SCI., 58:1115-1126, 2018. (c) 2017 Society of Plastics Engineers
机译:氨基官能化的多壁纳米管(MWCNT-NH2)填充的全同立构PP和全同立方体(70:30)混合的PP基熔融纳米复合材料在形态学,流变和热机械性能方面已经相对评价。平均自由空间长度(L-F)与全同立方体(70:30)混合基基基质的纳米管之间的纳米管之间的平均自由空间长度(L-INF)的比例相对表明分散形态的纳米烷基。流变渗透阈值高达MWCNT-NH2负载的程度增加(来自OC近似为2.3×10(-4),在ISO-Syndio混合物中的11×10(-4)中伴有形成机械响应网络结构。 Van-Gurppalmen Plot显示出流变响应的过渡,随着网络形态的基于等立方体混合PP的纳米复合材料中的较高浓度的MWCNT-NH2而言,其转变为流变响应。纳米复合材料复合物复合粘度响应的组成型建模导致聚合物链渗透与松弛动力学的功能相关性。聚合物。 eng。 SCI。,58:1115-1126,2018。(c)2017塑料工程师协会

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