Scale Effects and a Method for Similarity Evaluation in Micro Electrical Discharge Machining

被引:0
作者
LIU Qingyu [1 ]
ZHANG Qinhe [1 ]
WANG Kan [1 ]
ZHU Guang [1 ]
FU Xiuzhuo [1 ,2 ]
ZHANG Jianhua [1 ]
机构
[1] Key Laboratory of High Efficiency and Clean Mechanical Manufacture of Ministry of Education,School of Mechanical Engineering, Shandong University
[2] School of Mechanical and Automotive Engineering, Shandong Polytechnic University
关键词
Electrical Discharge Machining(EDM); micro EDM; Scale effect; Similarity theory; Similarity evaluating method;
D O I
暂无
中图分类号
TG661 [电加工机床及其加工];
学科分类号
080201 ;
摘要
Electrical discharge machining(EDM) is a promising non-traditional micro machining technology that offers a vast array of applications in the manufacturing industry. However, scale effects occur when machining at the micro-scale, which can make it difficult to predict and optimize the machining performances of micro EDM. A new concept of "scale effects" in micro EDM is proposed, the scale effects can reveal the difference in machining performances between micro EDM and conventional macro EDM. Similarity theory is presented to evaluate the scale effects in micro EDM. Single factor experiments are conducted and the experimental results are analyzed by discussing the similarity difference and similarity precision. The results show that the output results of scale effects in micro EDM do not change linearly with discharge parameters. The values of similarity precision of machining time significantly increase when scaling-down the capacitance or open-circuit voltage. It is indicated that the lower the scale of the discharge parameter, the greater the deviation of non-geometrical similarity degree over geometrical similarity degree, which means that the micro EDM system with lower discharge energy experiences more scale effects. The largest similarity difference is 5.34 while the largest similarity precision can be as high as 114.03. It is suggested that the similarity precision is more effective in reflecting the scale effects and their fluctuation than similarity difference. Consequently, similarity theory is suitable for evaluating the scale effects in micro EDM. This proposed research offers engineering values for optimizing the machining parameters and improving the machining performances of micro EDM.
引用
收藏
页码:1193 / 1199
页数:7
相关论文
共 33 条
[1]  
High-efficiency Approach for Fabricating MTE Rotor by Micro-EDM and Micro-extrusion[J]. GENG Xuesong,CHI Guanxin,WANG Yukui,WANG Zhenlong.Chinese Journal of Mechanical Engineering. 2014(04)
[2]  
Experimental Research on Effects of Process Parameters on Servo Scanning 3D Micro Electrical Discharge Machining[J]. TONG Hao,LI Yong,and HU Manhong State Key Laboratory of Tribology,Tsinghua University,Beijing 100084,China.Chinese Journal of Mechanical Engineering. 2012(01)
[3]  
Micro Electrical Discharge Machining Deposition in Air for Fabrication of Micro Spiral Structures[J]. PENG Zilong1,2,CHI Guanxin2,and WANG Zhenlong1,2,1 Key Laboratory of Micro-Systems and Micro-Structures Manufacturing of Ministry of Education,Harbin Institute of Technology,Harbin 150001,China 2 School of Mechatronics Engineering,Harbin Institute of Technology,Harbin 150001,China.Chinese Journal of Mechanical Engineering. 2010(02)
[4]   金属微成形过程中微尺度效应与相似评估 [J].
雷鹍 ;
张凯锋 .
机械工程学报, 2007, (07) :213-220
[6]  
Review of size effects in micro electrical discharge machining[J] . Qingyu Liu,Qinhe Zhang,Min Zhang,Jianhua Zhang.Precision Engineering . 2016
[7]  
Experimental Investigations into the Effects of Microelectric-Discharge Milling Process Parameters on Processing Ti–6Al–4V[J] . B. Kuriachen,J. Mathew.Materials and Manufacturing Processes . 2015 (8)
[8]   Effect of Crystallographic Anisotropy on Micro EDM Process [J].
Liu, Qingyu ;
Zhang, Qinhe ;
Zhang, Min ;
Zhang, Jianhua .
MATERIALS AND MANUFACTURING PROCESSES, 2015, 30 (08) :961-967
[9]   Experimental Investigation and Optimization of Micro-EDMing Process for Silicon Substrates [J].
Tangwarodomnukun, Viboon ;
Visonsaya, Panida ;
Buranajant, Nisarat ;
Opartpunyasarn, Monchai ;
Dumkum, Chaiya .
MATERIALS AND MANUFACTURING PROCESSES, 2015, 30 (08) :974-982
[10]  
A novel method of determining energy distribution and plasma diameter of EDM[J] . Yanzhen Zhang,Yonghong Liu,Yang Shen,Zhen Li,Renjie Ji,Baoping Cai.International Journal of Heat and Mass Transfer . 2014