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Parametric optimization of CNC turning on glass-fibre-reinforced plastic (GFRP) pipes: A grey-fuzzy logic approach

机译:玻璃 - 纤维增强塑料(GFRP)管道上数控车削的参数优化:灰色模糊逻辑方法

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Glass-fibre-reinforced plastic (GFRP) is an advanced polymeric glass fibre reinforced composite material being widely used in various applications such as aircrafts,robots and machine tools.An attempt was made by the past researchers on optimizing the cutting parameters of CNC turning on these filament wounded GFRG pipes with coated carbide tool inserts (K20 grade) as cutting tool by desirability function analysis using Taguchi technique.Machining process parameters such as cutting velocity,feed rate and depth of cut are optimized,while response parameters considered are surface roughness,flank wear,crater wear and machining force respectively.In this paper,grey relational analysis (GRA) combined with fuzzy logic is applied to this multi-objective optimization problem and the derived parametric mix is compared to that obtained by the past researchers.The predicted results of the parametric mix obtained using the proposed approach shows a significant improvement of approximately 14 % in the quality of response parameters as compared to that of the past researchers.Lastly,ANOVA is applied so as to identify the significant factors which positively contribute to the cutting process.
机译:玻璃纤维增​​强塑料(GFRP)是一种先进的聚合物玻璃纤维增​​强复合材料,广泛应用于飞机,机器人和机床等各种应用中。过去的研究人员在优化CNC开启的切割参数上进行了尝试这些长丝的GFRG管用涂层碳化物工具插入物(K20级)作为切削型工具,通过使用Taguchi技术的可行性函数分析。优化了诸如切割速度,进料速率和切割深度的过程参数,而考虑的响应参数是表面粗糙度,侧翼磨损,火山口磨损和加工力。在本文中,与模糊逻辑相结合的灰色关系分析(GRA)应用于这种多目标优化问题,并将导出的参数混合物与过去的研究人员获得的比较。预测使用所提出的方法获得的参数混合物的结果显示出大约14%的显着提高与过去的研究人员相比,响应参数的质量.Lastly,应用ANOVA,以确定积极贡献切割过程的重要因素。

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