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Effect of Nanofillers on Abrasion Resistance of Carbon Fiber Reinforced Phenolic Friction Composites

机译:纳米填料对碳纤维增强酚醛摩擦复合材料耐磨性的影响

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The present study focuses on the development of polymeric friction composites with short carbon fiber, micron and nano-sized fillers, additives with varying weight% in phenol formaldehyde (PF) matrix using hot compression moulding process. The composites prepared with fillers viz. Molybdenum disulfide or Molykote (MK) and multi walled carbon nanotubes (MWCNTs) in carbon fiber reinforced PF matrix is designated as Set-I composites. Inclusion of graphite and nano-clay in carbon fiber reinforced PF matrix is designated as Set-II composites. The prepared composites are tested in Dry sand rubber wheel abrasion wear test rig, following ASTM standards for evaluating the abrasive wear behaviour. From the routine experiments, it was observed that the presence of combined micro and nanofillers i.e. 11.5 wt% MK + 0.5 wt% MWCNTs of Set-I, has shown superior abrasion resistance among the study group. The test results of the Set-I and Set-II composites are analyzed using Taguchi experimental design followed by analysis of variance (ANOVA) to understand the contributions of wear control factors affecting the abrasive wear characteristics. Further, worn surface of selected samples is analyzed using scanning electron micrographs.
机译:本研究的重点是通过热压成型工艺开发具有短碳纤维,微米和纳米级填料以及在酚醛(PF)基质中具有不同重量%的添加剂的聚合物摩擦复合材料。用填料制备的复合材料即。碳纤维增强的PF基质中的二硫化钼或Molykote(MK)和多壁碳纳米管(MWCNT)被指定为Set-I复合材料。碳纤维增强PF基体中包含石墨和纳米粘土被称为Set-II复合材料。按照ASTM评估磨料磨损性能的标准,在干砂橡胶轮磨耗试验机中对制备的复合材料进行测试。从常规实验中,观察到存在组合的微米和纳米填料。在研究组中,Set I的11.5 wt%MK + 0.5 wt%MWCNT已显示出优异的耐磨性。使用Taguchi实验设计分析了Set-I和Set-II复合材料的测试结果,然后分析了方差分析(ANOVA),以了解磨损控制因素对磨料磨损特性的影响。此外,使用扫描电子显微照片分析所选样品的磨损表面。

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