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Mechanical, Tribological Properties and Surface Characteristics of Developed Polymeric Materials Reinforced by CNTs

机译:CNTs加固开发的聚合物材料的机械,摩擦学性质和表面特性

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The aim of this research is to assess and develop a polymeric material consisting of a mixture of high-density polyethylene (HDPE) and ultra- high- molecular- weight polyethylene (UHMWPE) reinforced by carbon-nanotube (CNT) by optimizing the mixing concentration of the three constituents. This optimized mixture is accomplished by using a melt extruder-mixing process. An experimental evaluation for accurate assessment of the developed nanocomposite material characteristics is achieved by using a universal tensile test machine and a plint-tribometer pin-on-disc machine. Moreover, the hardness of the material surface and its surface topography are assessed by a hardness tester machine and SEM technique, respectively. Developed samples for testing are classified into two groups of nanocomposites. The first group is created through mixing two pure polymeric UHMWPE and HDPE with different mass ratios of each. While, the other group is created through mixing three components UHMWPE, HDPE and CNTs with constant 50 wt.% of UHMWPE. Thereafter, CNTs with rations of 0.5, 1.0, 2.0, 3.0 and 4.0 wt.% to 49.5, 49.0, 48.0, 47.0 and 46.0 wt.% of HDPE to create different nanocomposite materials. The mechanical and tribological properties of this new developed material are obtained through testing of the two groups' samples to measure the tensile strength, friction coefficient, wear rate and surface hardness. Then, the best developed nanocomposite material is selected based on its mechanical and tribological properties. To ensure that the obtained nanomaterial has proper surface morphology, the SEM technique as a surface metrology tool is used to characterize the selected sample and to predict the CNTs dispersion homogeneity. The results show that the developed nanomaterial has achieved mechanical and tribological properties which outperform currently available materials with reasonable surface homogeneity.
机译:该研究的目的是通过优化混合浓度来评估和开发由高密度聚乙烯(HDPE)和超高分子重量聚乙烯(UHMWPE)的混合物组成的聚合物材料,其由碳 - 纳米管(CNT)加强三个成分。通过使用熔融挤出机混合方法完成该优化的混合物。通过使用通用拉伸试验机和褶皱摩擦计引脚机机实现了对开发的纳米复合材料特性进行准确评估的实验评价。此外,通过硬度测试机和SEM技术分别评估材料表面及其表面形貌的硬度。开发的测试样品分为两组纳米复合材料。通过将两种纯聚合物UHMWPE和HDPE混合,具有不同的质量比,产生第一组。虽然,通过将三个组件UHMWPE,HDPE和CNT混合,使用恒定的50重量为50重量来创建其他组。占UHMWPE的%。此后,具有0.5,1.0,2.0,3.0和4.0重量%的下式的CNT。%至49.5,49.0,48.0,47.0和46.0重量%的HDPE以产生不同的纳米复合材料。通过测试两组样品来测量拉伸强度,摩擦系数,磨损率和表面硬度来获得这种新的发发材料的机械和摩擦学特性。然后,基于其机械和摩擦学特性选择最佳开发的纳米复合材料。为了确保所获得的纳米材料具有适当的表面形态,SEM技术用作表面计量工具来表征所选样品并预测CNT分散均匀性。结果表明,开发的纳米材料已经实现了机械和摩擦学特性,这些特性具有具有合理的表面均匀性的目前可用的材料。

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