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Effect of filler functionalization on thermo-mechanical properties of polyamide-12/carbon nanofibers composites: a study of filler-matrix molecular interactions

机译:填料功能化对聚酰胺12 /碳纳米纤维复合材料热机械性能的影响:填料-基体分子相互作用的研究

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摘要

The effect of carbon nanofiber (CNF) functionalization on the thermo-mechanical properties of polyamide-12/CNF nanocomposites was investigated. Three main different surface treatments were performed to obtain CNF-OH (OH rich), CNF-Silane (C6H5Si-O-), and CNF-peroxide. CNF modified with poly-(tert-butyl acrylate) chains grown from the surface via ATRP (atom transfer radical polymerization) were also prepared and tested. The modified CNFs and neat CNFs were used as fillers in polyamide-12 nanocomposites and the properties of the ensuing materials were characterized and compared. Universal tensile tests demonstrated a substantial increase (up to 20 %) of the yield strength, without reduction of the final elongation, for all functionalized samples tested within 1 wt% filler content. Further evidences of mechanical properties improvement were given by dynamic mechanical thermal analyses. CNFs functionalized with poly-(tert-butyl acrylate) and silane exhibited the best performance with stiffening and strengthening at low (B1 wt%) filler loadings, via a partial decrease of the intensity of b-transitions attributed to favorable interactions between the functional groups on the surface of functionalized CNFs and polyamide-12. CNFs treated with peroxide proved to be the most simple preparation technique and the ensuing nanocomposites exhibited the highest storage modulus at high (5 wt%) filler content. Theoretical simulations using the micro-mechanics model were used to predict the Young modulus of the composites and compare them with experimental data. The results obtained suggest a synergistic effect between the matrix and the filler enhanced by surface functionalization.
机译:研究了碳纳米纤维(CNF)功能化对聚酰胺12 / CNF纳米复合材料热机械性能的影响。进行了三种主要的不同表面处理,以获得CNF-OH(富含OH),CNF-硅烷(C6H5Si-O-)和CNF-过氧化物。还制备并测试了通过ATRP(原子转移自由基聚合)从表面生长的聚(丙烯酸叔丁酯)链改性的CNF。改性的CNF和纯CNF用作聚酰胺12纳米复合材料的填料,并表征和比较了后续材料的性能。万能拉伸试验表明,对于填充物含量在1 wt%以内的所有功能化样品,其屈服强度均会大幅提高(最高20%),而最终伸长率不会降低。通过动态机械热分析给出了机械性能改善的进一步证据。聚(丙烯酸叔丁酯)和硅烷官能化的CNF在低(B1 wt%)填充量下表现出最佳的硬化和强化性能,这归因于b-跃迁强度的部分降低,这归因于官能团之间的良好相互作用在功能化CNF和聚酰胺12的表面上。事实证明,用过氧化物处理的CNF是最简单的制备技术,随后的纳米复合材料在高含量(5 wt%)的填料下显示出最高的储能模量。使用微力学模型的理论模拟被用来预测复合材料的杨氏模量,并将其与实验数据进行比较。获得的结果表明,通过表面官能化增强了基质和填料之间的协同效应。

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