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首页> 外文期刊>Journal of Applied Polymer Science >Lauric Acid Coated Fly Ash as a Reinforcement in Recycled Polymer Matrix Composites
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Lauric Acid Coated Fly Ash as a Reinforcement in Recycled Polymer Matrix Composites

机译:月桂酸涂层粉煤灰作为再生聚合物基复合材料的增强材料

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Sustainable composites were developed from fly ash (FA) and recycled polypropylene (R) with lauric acid (LA) as the coupling agent. The FA particles were surface-coated with 1, 2, 3, and 5 wt % LA, and the coating on the FA particles was verified by transmission electron microscopy and Fourier transform infrared spectroscopy. R and LA-coated FA particles were melt-mixed in a 1:1 weight ratio to achieve a high-filler-loaded composite. The flexural, impact, nanoindentation, and fracture surface analyses were carried out to examine the properties of the composites. The flexural strength and modulus values increased in the 2 wt % LA-coated FA/R composites by 6 and 50%, respectively, compared to the values of the uncoated FA/R composites, whereas the impact strength increased considerably by 119% in the 1 wt % LA-coated composites. Nanoindentation tests also showed an increase in the mechanical properties in the case of the 1 and 2 wt % LA-coated composites in comparison to the uncoated ones. Fracture surface studies done by scanning electron microscopy revealed improved interfacial interactions between the filler and matrix in the presence of the LA coupling agent. X-ray diffraction (XRD) studies indicated reorientations of the polymer chains in the presence of different concentrations of the LA coupling agent; this resulted into different crystallinities and crystallite sizes. Differential scanning calorimetry showed a significant difference in the crystalline peaks of the composites, and this corroborated well with the XRD observations. LA, thus, significantly influenced the structural properties of the composites, and this, in turn, influenced their mechanical and thermal properties. (C) 2014 Wiley Periodicals, Inc.
机译:可持续的复合材料是由粉煤灰(FA)和再生聚丙烯(R)与月桂酸(LA)作为偶联剂开发而成的。用1、2、3和5wt%的LA对FA颗粒进行表面涂覆,并且通过透射电子显微镜和傅立叶变换红外光谱法验证FA颗粒上的涂层。将R和LA涂层的FA颗粒以1:1的重量比进行熔融混合,以获得高填料含量的复合材料。进行弯曲,冲击,纳米压痕和断裂表面分析以检查复合材料的性能。与未涂覆的FA / R复合材料的值相比,在2 wt%的LA涂覆的FA / R复合材料中,弯曲强度和模量值分别增加了6%和50%,而在未涂覆的FA / R复合材料中,冲击强度显着提高了119%。 1重量%的LA涂覆的复合材料。纳米压痕测试还显示,与未涂覆的复合材料相比,在1和2 wt%的LA涂覆的复合材料的情况下,机械性能有所提高。通过扫描电子显微镜进行的断裂表面研究表明,在存在LA偶联剂的情况下,填料与基体之间的界面相互作用得到改善。 X射线衍射(XRD)研究表明,在存在不同浓度的LA偶联剂的情况下,聚合物链会发生重新取向。这导致了不同的结晶度和微晶尺寸。差示扫描量热法显示复合材料的结晶峰存在显着差异,这与XRD观察得到很好的证实。因此,LA显着影响了复合材料的结构性能,进而影响了它们的机械和热性能。 (C)2014威利期刊公司

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