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首页> 外文期刊>Journal of Applied Polymer Science >Toughening polylactide by direct blending of cellulose nanocrystals and epoxidized soybean oil
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Toughening polylactide by direct blending of cellulose nanocrystals and epoxidized soybean oil

机译:通过直接混合纤维素纳米晶体和环氧化大豆油来增韧聚丙烯

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摘要

Polylactide (PLA) is a bio-based polymeric material which is earth abundant in nature. It also possesses abundant strength and stiffness making it a promising material for industrial applications. However, its brittle behavior is currently limiting research work on them. As such, an eco-friendly blending approach is developed in this study in order to fabricate a ductile and toughen PLA composites using renewable bio-based materials as a precursor. Specifically, PLA, epoxidized soybean oil (ESO), and frangible powder form of cellulose nanocrystals (CNCs) are melt blended to prepare the ternary composite system (PLA/CNC/ESO). During the composite routing, it is found out that the ESO successfully attached to the surface of CNC which in turn results in CNC/ESO mixtures in the PLA matrix. This intrinsic combination induces cavitation which consumes the energy produced under the stretching and impacting, resulting in the turning of the PLA's brittle phenomenon. In fact, a reasonable increase in the ductility is observed. The elongation and notched impact strength of the ternary nanocomposite are found to be similar to 32% and similar to 4.8 kJ m(-2), respectively, which are comparatively higher than that of neat PLA or PLA/CNC composites. Differential scanning calorimetry analyses show that the ESO layer on CNC affects the thermal characteristics of PLA in the ternary composite while thermogravimetric analysis shows that there is an increase in the char yield of the composite. Furthermore, scanning electron microscopy analysis shows that the synthesis approach adopted here enables a mechanistically turning of the PLA's brittle phenomenon to ductile. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 48221.
机译:聚丙交酯(PLA)是基于生物的聚合物材料,其是在大地性质丰富。它还具有丰富的强度和刚度,使其成为工业应用的有前途的材料。然而,它的脆性行为正在限制对它们的研究工作。因此,生态友好的混合方法在本研究开发以制造韧性和使用可再生生物基材料为先导,增韧PLA树脂复合材料。具体而言,PLA,环氧化大豆油(ESO),和纤维素纳米晶体的易碎粉末形式(CNC控制器)熔融共混来制备三元复合体系(PLA / CNC / ESO)。复合布线期间,可以发现该ESO成功连接以数控的表面,其在在PLA基质CNC / ESO混合物又导致。这种内在的组合诱导气蚀消耗下的拉伸和冲击,导致解放军的脆现象转动产生的能量。事实上,在延展性合理增加观察到。伸长率和三元纳米复合材料的缺口冲击强度被发现是类似于32%和相似4.8千焦米(-2),分别,这是比纯PLA或PLA / CNC复合材料的相对较高。差示扫描量热分析表明,在CNC侧ESO层影响在三元复合PLA的热特性而热重分析表明,存在该复合物的残炭率的增加。此外,扫描电子显微镜分析表明,该合成方法通过这里实现了机械地转动的解放军脆现象韧性。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019年,136,48221。

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  • 来源
    《Journal of Applied Polymer Science 》 |2019年第46期| 共13页
  • 作者单位

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化合物工业(高聚物工业) ;
  • 关键词

    cellulose nanocrystals; epoxidized soybean oil; green composites; plant oil plasticizer; toughen poly(lactic acid);

    机译:纤维素纳米晶体;环氧化大豆油;绿色复合材料;植物油增塑剂;强化聚(乳酸);

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