A novelty optimization approach for drilling of CFRP nanocomposite laminates

被引:1
作者
Halil Burak Kaybal
Ali Ünüvar
Murat Koyunbakan
Ahmet Avcı
机构
[1] Amasya University,Department of Mechanical Engineering
[2] Selcuk University,Department of Mechanical Engineering
[3] Dumlupinar University,Department of Manufacturing Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2019年 / 100卷
关键词
CFRP; Nanocomposite; RSM; Taguchi methods; Drilling; Thrust force; Optimization; Machinability;
D O I
暂无
中图分类号
学科分类号
摘要
Numerous problems are encountered in drilling of carbon fiber-reinforced polymer composite materials (CFRP) such as delamination, tool wear etc. Delamination has been recognized as a major damage encountered when drilling composite laminates. In the present study, machinability and the effects of cutting speed and feed rate upon thrust force and delamination formation in carbon nano tube (CNT)-added carbon fiber-reinforced plastics (CFRP) and CFRP were investigated. With this purpose, the experiments were planned. The response surface analysis has been carried out to study the main and the interaction effects of the machining parameters. By using the Taguchi method, cutting parameters’ degrees of influence were determined. A new multi-objective optimization for the appropriate drilling process of these composite materials was proposed and an analytical optimization technique was applied. Appropriate cutting parameters of thrust force and delamination factor were found and the optimization results showed that the combination of low feed rate with high cutting speed is necessary to minimize delamination in drilling of CFRP.The machinability refers to the relative ease or difficulty under certain cutting conditions. So, it is very important to understand the factors that affect the machinability and to evaluate their effects. Machinability of Epoxy/CF and CNT-Epoxy/CF was investigated. It was aimed to evaluate the machinability of these materials. A new machinability index has been developed in current study. It was found out that machinability of Epoxy/CF is better than CNT-Epoxy/CF.
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页码:2995 / 3012
页数:17
相关论文
共 125 条
[1]  
Wang XM(2003)An experimental investigation into the orthogonal cutting of unidirectional fibre reinforced plastics Int J Mach Tool Manu 43 1015-1022
[2]  
Zhang LC(2003)Drilling carbon fiber reinforced plastics manufactured by autoclave - experimental and statistical study Mater Des 24 315-324
[3]  
Davim JP(2017)Carbon fiber-reinforced polymer composite drilling via aluminum chromium nitride-coated tools: hole quality and tool wear assessment J Reinf Plast Compos 36 1403-1420
[4]  
Reis P(1999)Machinability study of carbon fiber reinforced composite J Mater Process Technol 89 292-297
[5]  
Harris M(2017)3D characterization of cubic boron nitride (CBN) composites used as tool material for high precision abrasive machining processes Ceram Int 43 14693-14700
[6]  
Qureshi MAM(2013)Drilling in carbon/epoxy composites: experimental investigations and finite element implementation Compos A: Appl Sci Manuf 47 41-51
[7]  
Saleem MQ(1996)Drilling carbon fiber-reinforced composite material at high speed Wear 194 156-162
[8]  
Khan SA(2000)Experimental analysis of drilling damage in thin carbon/epoxy plate using special drills Compos A: Appl Sci Manuf 31 1107-1115
[9]  
Bhutta MMA(2008)Analysis of parametric influence on delamination in high-speed drilling of carbon fiber reinforced plastic composites J Mater Process Technol 203 431-438
[10]  
Rahman M(2017)Machinability analysis of dry drilling of carbon/epoxy composites: cases of exit delamination and cylindricity error Int J Adv Manuf Technol 88 2557-2571