1 |
Numerical and experimental analysis of high-aspect-ratio micro-tool electrode fabrication using controlled electrochemical machining Patro SK, Mishra DK, Arab J, Dixit P Journal of Applied Electrochemistry, 50(2), 169, 2020 |
2 |
Electrochemical dissolution behavior of S-04 high-strength stainless steel in NaNO3 aqueous solution Wang ML, Qu NS Journal of Applied Electrochemistry, 50(11), 1149, 2020 |
3 |
Distinction in anodic dissolution behavior on different planes of laser solid formed Ti-6Al-4V alloy Li JQ, Lin X, Zheng M, Wang J, Guo PF, Qin T, Zhu MH, Huang WD, Yang H Electrochimica Acta, 283, 1482, 2018 |
4 |
Effect of Anodic Behavior on Electrochemical Machining of TB6 Titanium Alloy Liu WD, Ao SS, Li Y, Liu ZM, Zhang H, Manladan SM, Luo Z, Wang ZP Electrochimica Acta, 233, 190, 2017 |
5 |
Electrochemical Dissolution Behavior of the Nickel-Based Cast Superalloy K423A in NaNO3 Solution Ge YC, Zhu ZW, Wang DY Electrochimica Acta, 253, 379, 2017 |
6 |
Modeling and numerical simulation of electrochemical micromachining Volgin VM, Lyubimov VV, Davydov AD Chemical Engineering Science, 140, 252, 2016 |
7 |
Electrochemical Machining-mechanisms of anodic dissolution Lohrengel MM, Rataj KP, Munninghoff T Electrochimica Acta, 201, 348, 2016 |
8 |
Investigation of the electrochemical dissolution behavior of Inconel 718 and 304 stainless steel at low current density in NaNO3 solution Wang DY, Zhu ZW, Wang NF, Zhu D, Wang HR Electrochimica Acta, 156, 301, 2015 |
9 |
Model Predictive Control in Pulsed Electrochemical Machining Boxhammer M, Altmannshofer S Journal of Process Control, 24(1), 296, 2014 |
10 |
Anodic dissolution behaviour and surface texture development of cobalt under electrochemical machining conditions Schneider M, Schubert N, Hohn S, Michaelis A Electrochimica Acta, 106, 279, 2013 |