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Multi-objective optimisation of CNC milling process using Grey-Taguchi method in machining of GFRP composites

机译:GFRP复合材料加工中使用Grey-Taguchi方法的CNC铣削过程的多目标优化

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Purpose - In milling process the surface roughness and delamination are the most important performance characteristics, which are influenced by many factors like fibre orientation angle, helix angle, feed rate and spindle speed. The selection of these parameters at optimum level plays a vital role in getting minimum surface roughness and delamination factor. The purpose of this paper is to present multi-objective optimisation of Computer Numerical Control milling parameters using Grey-Taguchi method to get minimum surface roughness and delamination factor in machining of glass fibre reinforced plastics (GFRP) composites used in automotive, aircraft and manufacture of space ships. Design/methodology/approach - The experiments are designed and conducted based on Taguchi's L_(27) orthogonal array by taking fibre orientation angle, helix angle, feed rate and spindle speed at three levels and responses are surface roughness and delamination factor. Taguchi's signal-to-noise (S/N) ratio are determined based on their performance characteristics. A Grey relation grade is obtained by using S/N ratio. Based on Grey relational grade value, optimum levels of parameters have been identified by using response table and response graph. Findings - Optimum levels of parameters for GFRP composites have been identified by using response table and response graph and the significant contributions of controlling parameters are estimated using analysis of variance. Originality/value - The combined effect of fibre orientation angle and helix angle during milling of GFRP composites using Grey relational analysis has not been previously attempted for analysis.
机译:目的-在铣削过程中,表面粗糙度和分层是最重要的性能特征,受许多因素的影响,例如纤维取向角,螺旋角,进给速度和主轴转速。这些参数的最佳选择对于获得最小的表面粗糙度和分层因子起着至关重要的作用。本文的目的是介绍使用Grey-Taguchi方法进行的计算机数控铣削参数的多目标优化,以在加工用于汽车,飞机和玻璃纤维增​​强塑料(GFRP)的复合材料时获得最小的表面粗糙度和分层系数。太空飞船。设计/方法/方法-在Taguchi的L_(27)正交阵列的基础上,通过将纤维取向角,螺旋角,进给速度和锭子速度分为三个级别进行设计和进行实验,响应是表面粗糙度和分层因子。田口的信噪比(S / N)是根据其性能特征确定的。通过使用信噪比获得灰度关系等级。基于灰色关联度值,使用响应表和响应图确定了最佳参数水平。发现-通过使用响应表和响应图确定了GFRP复合材料的最佳参数水平,并且使用方差分析估算了控制参数的显着贡献。独创性/价值-以前尚未尝试使用Gray关联分析对GFRP复合材料进行铣削时纤维取向角和螺旋角的综合影响。

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