Optimization of electrodischarge machining parameters on ZrO2 ceramic using the Taguchi method

被引:43
作者
Chen, Y-F [2 ]
Lin, Y-J [2 ]
Lin, Y-C [1 ]
Chen, S-L [3 ]
Hsu, L-R [4 ]
机构
[1] Nankai Univ Technol, Grad Sch Vehicle & Mechatron Ind, Caotun Town 54243, Nantou, Taiwan
[2] Nankai Univ Technol, Dept Mech Engn, Caotun Town 54243, Nantou, Taiwan
[3] Natl Kaohsiung Univ Appl Sci, Dept Mech Engn, Kaohsiung 807, Taiwan
[4] Chungchou Inst Technol, Grad Inst Engn Technol, Changhau, Taiwan
关键词
electrodischarge machining; Taguchi method; material removal rate; electrode wear rate; surface roughness; non-conductive ceramics; MATERIAL REMOVAL; EDM; STRENGTH;
D O I
10.1243/09544054JEM1437
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The purpose of the present investigation was to optimize the electrodischarge machining (EDM) parameters for machining ZrO2 ceramic. During the EDM process, the surface of the electrically non-conductive ceramic was covered with adhesive conductive copper and aluminium foils to attain the threshold of electrical conductivity for the EDM process. The machining characteristics associated with the EDM process such as material removal rate (MRR), electrode wear rate (EWR), and surface roughness (SR) were explored through the experimental study according to all L18 orthogonal array based oil the Taguchi experimental design method. Analysis of variance was conducted to examine the significant machining parameters affecting the machining characteristics. The experimental results Show that peak current and pulse duration significantly affected MRR and SR, and the adhesive conductive material was the significant parameter correlated with EWR. In addition, the optimal combination levels of machining parameters were also determined from the response graph of signal-to-noise ratios for each level of machining parameters. The aim of the study was to establish a feasible process and optimize the parameter levels for processing electrically non-conductive ceramics through EDM. A practical and convenient process for shaping electrically non-conductive ceramics was developed in the present work with the features of high efficiency, high precision, and excellent surface integrity.
引用
收藏
页码:195 / 205
页数:11
相关论文
共 26 条
[1]  
FUKUZAWA Y, 1995, J CERAM SOC JAP INT, V103, P987
[2]   EDM machining of carbon-carbon composite - a Taguchi approach [J].
George, PM ;
Raghunath, BK ;
Manocha, LM ;
Warrier, AM .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2004, 145 (01) :66-71
[3]   Preliminary study of material removal in electrical-discharge machining of SiC/Al [J].
Hocheng, H ;
Lei, WT ;
Hsu, HS .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 1997, 63 (1-3) :813-818
[4]   Influence of process parameters on electric discharge machining of WC/30%Co composites [J].
Kanagarajan, D. ;
Karthikeyan, R. ;
Palanikumar, K. ;
Sivaraj, P. .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART B-JOURNAL OF ENGINEERING MANUFACTURE, 2008, 222 (07) :807-815
[5]   Examination of machining parameters on surface roughness in EDM of tool steel [J].
Kiyak, M. ;
Cakir, O. .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2007, 191 (1-3) :141-144
[6]   Development of technology and strategies for the machining of ceramic components by sinking and milling EDM [J].
Lauwers, B. ;
Kruth, J.-P. ;
Brans, K. .
CIRP ANNALS-MANUFACTURING TECHNOLOGY, 2007, 56 (01) :225-228
[7]   A study on the machining-parameters optimization of wire electrical discharge machining [J].
Liao, YS ;
Huang, JT ;
Su, HC .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 1997, 71 (03) :487-493
[8]   Effects of electrical discharge energy on machining performance and bending strength of cemented tungsten carbides [J].
Lin, Yan-Cherng ;
Hwang, Lih-Ren ;
Cheng, Chao-Hsu ;
Su, Pao-Lin .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2008, 206 (1-3) :491-499
[9]   Surface improvement using a combination of electrical discharge machining with ball burnish machining based on the Taguchi method [J].
Lin, YC ;
Yan, BH ;
Huang, FY .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2001, 18 (09) :673-682
[10]  
Lin YC, 2001, J MATER PROCESS TECH, V115, P359