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首页> 外文期刊>Polymer Composites >Rheological, Mechanical, and Thermal Properties of Polylactide/Cellulose Nanofiber Biocomposites
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Rheological, Mechanical, and Thermal Properties of Polylactide/Cellulose Nanofiber Biocomposites

机译:聚酰胺/纤维素纳米纤维生物复合材料的流变,机械和热性能

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摘要

Biocomposites based on polylactide (PLA) and cellulose nanofibers (CNFs) were prepared via a solution method. The effects of CNFs on rheological, mechanical, thermal, and optical properties of PLA were investigated. Scanning electron microscopy showed that the CNFs were fairly dispersed/distributed in the PLA. Significant increases in the rheological properties of PLA/CNF composites and a remarkable shear-thinning behavior were observed. Also, apparent yield stress and a transition from liquid-to solid-like behavior indicated a strong 3D network of CNFs. At room temperature, the storage and Young moduli were increased by 50% for the composite containing 5 wt% CNFs as compared to the neat PLA, whereas the tensile strength was increased up to 31%. The Krenchel model was shown to predict well the Young modulus for lower concentrations of CNFs. Moreover, relative to the neat PLA the storage modulus in flexion at 70 degrees C increased by 264% for PLA containing 5 wt% CNFs. Increased crystalline content and a positive shift of the crystallization temperature by incorporating the CNFs in PLA were observed. Also, good light transparency was retained for these PLA/CNF biocomposites. These results show that the preparation method employed in this work leads to PLA/CNF composites with considerably enhanced properties. (C) 2016 Society of Plastics Engineers
机译:通过溶液方法制备基于聚丙环(PLA)和纤维素纳米纤维(CNFS)的生物复合材料。研究了CNFS对PLA的流变,机械,热和光学性质的影响。扫描电子显微镜显示CNFS在PLA中相当分散/分布。观察到PLA / CNF复合材料的流变性能和显着的剪切稀疏行为的显着增加。此外,表观屈服应力和从液体至固体等行为的过渡表明了CNFS的强3D网络。在室温下,与纯PLA相比,含有5wt%CNFS的复合材料的储存和杨氏模量增加了50%,而拉伸强度增加至31%。显示Krenchel模型被证明是较低浓度的CNFS的幼年模量。此外,相对于纯PLA含有50℃的屈曲模量,PLA含有5wt%CNF的PLA增加了264%。观察到通过掺入PLA中的CNF来增加结晶含量和结晶温度的正偏移。此外,这些PLA / CNF生物复合材料保留了良好的光透明度。这些结果表明,该工作中使用的制备方法导致PLA / CNF复合材料,具有显着增强的性质。 (c)2016年塑料工程师协会

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  • 来源
    《Polymer Composites》 |2018年第5期|共11页
  • 作者单位

    Polytech Montreal Chem Engn Dept Res Ctr High Performance Polymer &

    Composite Syst Stn Ctr Ville Montreal PQ H3C 3A7 Canada;

    Polytech Montreal Chem Engn Dept Res Ctr High Performance Polymer &

    Composite Syst Stn Ctr Ville Montreal PQ H3C 3A7 Canada;

    Polytech Montreal Chem Engn Dept Res Ctr High Performance Polymer &

    Composite Syst Stn Ctr Ville Montreal PQ H3C 3A7 Canada;

    Polytech Montreal Chem Engn Dept Res Ctr High Performance Polymer &

    Composite Syst Stn Ctr Ville Montreal PQ H3C 3A7 Canada;

    McGill Univ Chem Engn Dept CREPEC Montreal PQ H3A 2B2 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 增强塑料、填充塑料;
  • 关键词

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