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首页> 外文期刊>Iranian polymer journal >Static and dynamic mechanical properties of nanosilica and multiwalled carbon nanotube reinforced acrylonitrile butadiene styrene composites: theoretical mechanism of nanofiller reinforcement
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Static and dynamic mechanical properties of nanosilica and multiwalled carbon nanotube reinforced acrylonitrile butadiene styrene composites: theoretical mechanism of nanofiller reinforcement

机译:纳米硅和多壁碳纳米管增强丙烯腈丁二烯苯乙烯复合材料的静态和动态力学性能:纳米填充加固的理论机理

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摘要

Experimental and theoretical approaches were employed to analyze the static and dynamic mechanical properties of acrylonitrile butadiene styrene (ABS) nanocomposites reinforced with multiwalled carbon nanotube (MWCNT) and nanosilica. Enhanced stiffness and tensile strength were observed for composites with 5% (wt) CNT and 3% (wt) nanosilica. Micromechanical models were highly promising to predict the experimental Young's modulus by 2% (wt) of nanofiller content, beyond which it deviated due to the nanofiller population and the reduction in interparticle distance. At the optimum content of 5% (wt) MWCNTs in the ABS matrix, enhanced storage and loss moduli and lowered damping peak were observed, which was attributed to the immobilization of the segmental polymer chains. From the DMA parameters, the dynamics of the polymer chain were investigated and the fraction of constrained regions and entanglement density were quantified. These findings demonstrated that composite with higher constrained regions and entanglements exhibited superior mechanical performance. Amongst all composites, 5% (wt) MWCNT-reinforced ABS composite showed an increment in reinforcing efficiency, entanglement density, and constrained regions by 195.6%, 115% and 55.5%, respectively, with regard to 3% (wt) nanosilica-reinforced ABS composite. The effectiveness of dispersion and interfacial adhesion of CNTs with ABS was improved by carboxyl treatment and functionalization with ABS-g-MaH compatibilizer with regard to silane-treated nanosilica/ABS composites. Combined analysis of microstructure, tensile properties and dynamic mechanical parameters such as entanglement density, effectiveness of filler, constrained volume of polymer chains and adhesion factor demonstrated the effectiveness of high aspect ratio carboxyl-treated MWCNTs as a better reinforcing agent in comparison with nanosilica in ABS matrix.
机译:采用实验和理论方法来分析丙烯腈丁二烯苯乙烯(ABS)纳米复合材料的静态和动态力学性能,其用多壁碳纳米管(MWCNT)和纳米型纳米氧化物增强。对于具有5%(wt)CNT和3%(WT)纳米硅藻的复合材料,观察到增强的刚度和拉伸强度。微机械模型具有高度有希望预测实验杨氏模量2%(WT)的纳米填充物含量,超出其由于纳米填充物群和颗粒间距离的减少而偏离。在ABS矩阵中的5%(WT)MWCNT的最佳含量下,观察到增强的储存和损失和降低的阻尼峰,其归因于分段聚合物链的固定。从DMA参数中,研究了聚合物链的动态,量化了约束区域的分数和缠结密度。这些研究结果证明,具有较高受限区域和缠结的复合材料表现出优越的机械性能。在所有复合材料中,5%(WT)MWCNT加强ABS复合材料在增强效率,缠结密度和约束区域分别表示增强195.6%,115%和55.5%,关于3%(重量)纳米碱增强ABS复合。通过羧基处理和具有ABS-G-MAH Compatibiliger的羧基处理和官能化的分散和界面粘附的有效性和ABS-Mah Compatibiliger关于硅烷处理的纳米硅藻/ ABS复合材料。组合分析微观结构,拉伸性能和动态机械参数,如缠结密度,填料的有效性,聚合物链的约束体积和粘合因子证明了高纵横比羧基处理的MWCNT的有效性与ABS中的纳米硅相比是更好的增强剂矩阵。

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  • 来源
    《Iranian polymer journal 》 |2021年第11期| 1211-1225| 共15页
  • 作者单位

    Amrita Vishwa Vidyapeetham Amrita Sch Engn Dept Chem Engn & Mat Sci Coimbatore Tamil Nadu India|Amrita Vishwa Vidyapeetham Amrita Sch Engn Ctr Excellence Adv Mat & Green Technol CoE AMGT Coimbatore Tamil Nadu India;

    Amrita Vishwa Vidyapeetham Amrita Sch Engn Dept Chem Engn & Mat Sci Coimbatore Tamil Nadu India|Amrita Vishwa Vidyapeetham Amrita Sch Engn Ctr Excellence Adv Mat & Green Technol CoE AMGT Coimbatore Tamil Nadu India;

    Amrita Vishwa Vidyapeetham Ammachi Labs Amritapuri 690525 Kollam India;

    Ecole Polytech Fed Lausanne EPFL Composite Construct Lab CCLab Lausanne Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acrylonitrile butadienestyrene; MWCNT; Nanosilica; DMA; Entanglement density; Adhesion factor;

    机译:丙烯腈丁二烯酸丁烯;MWCNT;纳米硅;DMA;缠结密度;粘附因子;

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