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New Polypropylene-boron Oxide Composite with a High Tensile Strength: A Possible Method for the Conversion of Microcomposite to Nanocomposite

机译:具有高拉伸强度的新型聚丙烯 - 氧化硼复合材料:将微型复合材料转化为纳米复合材料的可能方法

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Industrially viable blends having microstructures that can be converted into a nanostructured material by post chemical treatments, potentially should have a commercially viable solution to the development of nanostructured materials for practical applications. In this regard a polypropylene-boron oxide (PPBO) blend provides a model study here. In this paper we wish to report the synthesis of PPBO blends with different concentrations of boron oxide by melt grafting and through reactive extrusion. The tensile strengths of the ideal blend has been found to be 62% higher than polypropylene (PP). By chemically treating the blends for a period of 24 hours to 72 hours the tensile strength of the blends increased by 152%. The blends have been characterized by Fourier transform infra red spectroscopy (FTIR) and scanning electron microscopy (SEM). An interesting characteristic of the PPBO blend has been the development of surface potential that changes upon visible light excitation. The increased tensile strength has been attributed to the conversion of micro structured blends to nanostructured blends. The improvement in thermal stability can be attributed to a good PP matrix-oxide interaction and also due to the thermal conductivity of the boron oxide. The good dispersion of the nanotubes in the polymer matrix allows the spreading of heat uniformly along the fiber.
机译:工业上可行的混合物具有通过化学处理后可以转化为纳米结构材料的微结构的微观结构,可能对实际应用的纳米结构材料的开发具有商业上可行的溶液。在这方面,聚丙烯 - 氮氧化物(PPBO)共混物在此提供模型研究。在本文中,我们希望通过熔接嫁接和通过反应性挤出来报告具有不同浓度的氧化硼的PPBO共混物的合成。已经发现理想共混物的拉伸强度比聚丙烯(PP)高62%。通过将共混物化学处理为24小时至72小时,共混物的拉伸强度增加了152%。共混物的特征在于傅里叶变换红外线红光谱(FTIR)和扫描电子显微镜(SEM)。 PPBO混合物的有趣特征是在可见光励磁上改变的表面势的发展。增加的拉伸强度归因于微结构化共混物转化为纳米结构的共混物。热稳定性的改善可以归因于良好的PP矩阵 - 氧化物相互作用,并且还归因于氧化硼的导热率。纳米管在聚合物基质中的良好分散允许沿着纤维均匀地均匀地膨胀。

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