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Sunflower oil-based MCC surface modification to achieve improved thermomechanical properties of a polypropylene composite

机译:葵花籽油基MCC表面改性,实现了聚丙烯复合材料的改进的热机械性能

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摘要

A biobased approach was taken to endow microcrystalline cellulose (MCC) with surface hydrophobicity using sunflower oil biodiesel (sunflower oil fatty acid ethyl esters, SFEEs) and thereby improve the compatibility with a hydrophobic polypropylene (PP) matrix. This environmentally friendly green chemistry approach introduces a monomolecular long-chain fatty acid layer on the MCC surface, making the surface hydrophobic. However, as per the X-ray Diffraction results, this surface modification process had no effect on the crystal structure of MCC. The inclusion of surface-modified MCC in the PP matrix significantly improves the thermomechanical properties of the composite. The tensile, impact and hardness properties of the surface-treated fiber reinforcements were improved by 11%, 71%, and 23%, respectively, compared to those of nonreinforced PP. The thermal stability also was improved considerably by the incorporation of modified MCC into PP.
机译:使用向日葵油生物柴油(向日葵油脂肪酸乙酯,SFEES),采取生物化方法以赋予微晶纤维素(MCC)与表面疏水性(向日葵油脂酸乙酯),从而提高与疏水聚丙烯(PP)基质的相容性。 这种环保的绿色化学方法在MCC表面上引入单分子的长链脂肪酸层,使表面疏水。 然而,根据X射线衍射结果,该表面改性过程对MCC的晶体结构没有影响。 在PP基质中包含表面改性的MCC显着改善了复合材料的热机械性能。 与非重新加注的PP相比,表面处理的纤维增强剂的拉伸,冲击和硬度特性分别提高了11%,71%和23%。 通过将改性的MCC掺入PP,可以显着提高热稳定性。

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