粉煤灰和石墨填充GFRP复合材料摩擦学性能研究

A. Parida, A. Nayak, S. K. Pattnaik, R. Bhuyan
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引用次数: 1

摘要

本文研究了以石墨和粉煤灰为填料,采用手工铺层法制备的GFRP复合材料的比磨损率。这里玻璃纤维的wt%保持在50%不变,基质和填料是不同的。填充材料分别添加48wt%、46wt%和44wt%的环氧树脂,分别为2wt%、4wt%和6wt%三种不同重量百分比。采用无润滑销盘磨损试验研究了GFRP复合材料的磨损性能。考虑的测试参数是填充材料的wt%(%),施加的载荷(N)和滑动距离(S)。比磨损率是根据样品的重量损失计算的。采用正交试验和方差分析方法研究了工艺参数对复合材料滑动磨损性能的影响。结果表明,石墨的加入提高了环氧基复合材料的抗滑动磨损能力。从载荷和滑动距离的范围来看,载荷对比磨损率的影响大于填料wt%和滑动距离。在填料质量分数和滑动距离一定的情况下,复合材料的失重随载荷的增加而增加。
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Study of Tribological Behavior of GFRP Hybrid Composite Using Fly-Ash and Graphite as Filler Material
In this paper, an attempt has been made to investigate the specific wear rate of the GFRP composite filled with graphite and fly-ash as filler material fabricated by hand lay-up process. Here the wt% of glass fiber is kept constant with 50% and matrix and filler are varied. Three different weight percentages such as 2wt%, 4wt% and 6wt% of filler materials added with 48wt%, 46wt% and 44wt% of epoxy resin respectively. The unlubricated pin-on-disc wear tests are conducted to examine the wear behavior of the GFRP composites. The testing parameters considered are wt% of filler material (%), applied load (N) and sliding distance (S). Specific wear rate is calculated in terms of weight loss of the sample. An orthogonal array and analysis of variance (ANOVA) are applied to investigate the influence of process parameters on the sliding wear behavior of the composites. The result shows that addition of graphite in the epoxy based hybrid composite enhances the capability of material to withstand against sliding wear. It is observed from the range of load and sliding distance in the study that the load has stronger effect on the specific wear rate than wt% of filler material and sliding distance. The weight loss of developed composite increases with an increase in normal applied load keeping the wt% of filler and sliding distance as constant.
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