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Experimental investigation and optimization of machining parameters in drilling of fly ash-filled carbon fiber reinforced composites

机译:粉煤灰填充碳纤维增强复合材料钻孔加工参数的实验研究及优化

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摘要

Particle-filled polymer composites have become attractive because of their wide applications and low cost.Carbon fiber reinforced polymer(CFRP) is well known as a difficult-to-cut material,which has very strong physical and mechanical characteristics.Machining of carbon fiber reinforced composites is essential to have functional upshots,out of which drilling is the key operation needed for fabrication.In this paper Taguchi L_(27) experimental design is coupled with grey relational analysis(GRA) to optimize the multiple performance characteristics in the drilling of fly ash-filled carbon fiber reinforced composites.Experiments were conducted on a vertical machining center,and Taguchi L_(27) experimental design was chosen for the experiments.The drilling parameters,namely spindle speed,feed rate,drill diameter and wt% of fly ash,have been optimized based on the multiple performance characteristics including thrust force,surface roughness,and delamination.The GRA with multiple performance characteristics indicates that the wt% of fly ash and drill diameter are the most significant factors that affect the performance.Experimental results have shown that the performance in the drilling process can be improved effectively by using this approach.
机译:颗粒填充的聚合物复合材料由于其宽的应用而变得有吸引力,并且低成本。碳纤维增强聚合物(CFRP)是众所周知的难以切割的材料,其具有非常强大的物理和机械特性。碳纤维增强的碳纤维的机械。复合材料是必不可少的,钻孔是制造的钻孔的关键操作。本文Taguchi L_(27)实验设计与灰色关系分析(GRA)相结合,以优化飞行钻井中的多种性能特征粉碎的碳纤维增强复合材料。在垂直加工中心进行了实验,并选择了实验设计的实验设计。钻孔参数,即翼射速,钻孔直径和粉煤灰的WT% ,基于包括推力,表面粗糙度和分层的多种性能特征进行了优化。GRA具有多种性能特征表明,粉煤灰和钻头直径的WT%是影响性能的最重要因素。实验结果表明,通过使用这种方法可以有效地提高钻井过程中的性能。

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