首页> 外文会议>International Conference on Frontiers in Automobile and Mechanical Engineering >Optimization of Drilling Parameters for Reducing the Burr Height in Machining the Silicon Carbide Particle (SiCp) Coated with Multi Wall Carbon Nano Tubes (MWCNT) Reinforced in Aluminum Alloy (A 356) Using Meta Modeling Approach
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Optimization of Drilling Parameters for Reducing the Burr Height in Machining the Silicon Carbide Particle (SiCp) Coated with Multi Wall Carbon Nano Tubes (MWCNT) Reinforced in Aluminum Alloy (A 356) Using Meta Modeling Approach

机译:用META建模方法在加工铝合金(A 356)中加工涂有多壁碳纳米管(MWCNT)的碳化硅颗粒(MWCNT)加工碳化硅粒子(SICP)的钻孔高度的优化

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This paper explains the optimization of drilling parameters using meta modeling approach to reduce the burr height while machining Silicon Carbide Particle (SiCp) coated with Multi Wall Carbon Nano Tubes (MWCNT) and reinforced in aluminum alloy (A 356). The specimen is prepared by the combination of sonication and stir casting processes. The volume fraction of MWCNT used is 1.5% and the volume fraction of SiCp is 10%. The combination of input parameters for drilling the holes is designed using Taguchi experimental design technique. The input parameters chosen for drilling operations are spindle speed, feed rate and drill diameter. The ranges of input parameters are listed in Table 1. The tools used for drilling operation are made up of solid carbide drill bit. Meta model is a mathematical and statistical model whose second-order model can be fitted by factorial design. The optimization model can be improved significantly by the second-order model compared to the first-order model. Twenty - seven holes are drilled using vertical machining center in the prepared specimen (A 356/MWCNT coated SiCp). Desirability function shows the optimized values of input parameters to obtain minimum burr height. Meta modeling approach is used to design a model using input parameters and output response burr height. The residuals plot shows the predicted values are closer to the measured values. This plot explains that the Meta model is adequately used to predict the burr height. The optimized values of input parameters for obtaining minimum burr height are the combination of high speed, low feed and low drill diameter. The minimum value of burr height observed in this experiment is 0.002mm and it is obtained in the optimized combination of N3, f1 and d1.
机译:本文解释了使用元建模方法的钻孔参数优化,以减少毛刺高度,同时加工涂有多壁碳纳米管(MWCNT)并加强铝合金(A 356)的碳化硅颗粒(SICP)。样品通过超声处理和搅拌铸造方法的组合制备。使用的MWCNT的体积分数为1.5%,SICP的体积分数为10%。使用Taguchi实验设计技术设计了用于钻孔的输入参数的组合。选择用于钻孔操作的输入参数是主轴速度,进料速率和钻头直径。输入参数的范围列于表1中。用于钻孔操作的工具由耐碳化物钻头组成。元模型是一种数学和统计模型,其二阶模型可以通过因子设计装配。与一阶模型相比,二阶模型可以显着提高优化模型。在制备的样品中使用垂直加工中心钻出二十七孔(A 356 / MWCNT涂层SICP)。期望函数显示输入参数的优化值,以获得最小毛刺高度。元建模方法用于使用输入参数和输出响应毛刺高度来设计模型。残差曲线显示预测值更接近测量值。该曲线说明了元模型充分用于预测毛刺高度。获得最小毛刺高度的输入参数的优化值是高速,低进料和低钻头直径的组合。在该实验中观察到的Burr高度的最小值为0.002mm,并且在N3,F1和D​​1的优化组合中获得。

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