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Preparation, Properties and Wear Performance Evaluation of Epoxy-Palmyra Fiber Composites

机译:环氧树脂 - 棕榈纤维复合材料的制备,性能和磨损性能评价

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This article presents a parametric analysis of dry sliding wear process undergone by a new class of composite material consisting of epoxy and short palmyra fibers (SPF). It is an attempt to explore the possibility of improving the dry sliding wear resistance of neat epoxy by reinforcing it SPF. Palmyra fiber is an inexpensive, strong, and naturally available fiber derived from the stalks of palmyra leaf. In the present investigation, epoxy-based composites with different weight proportions of SPF (0, 4, 8, and 12 wt%) are fabricated although the simple hand-lay-up route. The tensile, flexural, and micro-hardness properties of the samples are found out which is followed by a FTIR spectroscopy of the samples. The composite samples are then subjected to wear trials using a pin-on-disc test rig as per ASTM G 99-05 test standards under different operating conditions. The effects of various operational variables on the dry sliding wear behavior of these epoxy composites with and without SPF reinforcement are studied. The design of experiments approach using Taguchi's L16 orthogonal array is used for parametric analysis of the wear process. Significant parameters affecting the wear rate of epoxy are identified. This study revealed that while the fiber content and the sliding velocities have significant influence on the wear arte of the composites, the effects of sliding distance and normal load are ignorable. An optimal parameter setting for minimum specific wear rate is obtained. The morphologies of the worn surfaces are examined by scanning electron microscopy and possible wear mechanisms are identified. (C) 2016 Society of Plastics Engineers
机译:本文介绍了由环氧树脂和短棕榈纤维(SPF)组成的新类复合材料的干滑动磨损过程的参数分析。它试图通过加强IT SPF来探讨通过改善整个环氧树脂的干式滑动耐磨性的可能性。 Palmyra纤维是一种廉价,强烈的,天生的纤维,源自棕榈叶叶的茎。在本研究中,虽然简单的手动铺设路线,但是在本研究中,具有不同重量比例的SPF(0,4,8和12wt%)的环氧基复合材料。发现样品的拉伸,弯曲和微硬度特性,其次是样品的FTIR光谱。然后在不同的操作条件下,根据ASTM G 99-05测试标准,使用销盘试验装置进行复合样品的试验。研究了各种操作变量对这些环氧复合材料的干滑动磨损行为的影响,包括和不含SPF加固。使用Taguchi的L16正交阵列的实验方法设计用于磨损过程的参数分析。鉴定了影响环氧树脂磨损率的重要参数。该研究表明,虽然纤维含量和滑动速度对复合材料的磨损艺术产生显着影响,但是滑动距离和正常负载的影响是无知的。获得最小特定磨损率的最佳参数设置。通过扫描电子显微镜检查磨损表面的形态,并且鉴定了可能的磨损机构。 (c)2016年塑料工程师协会

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