Principles of Electrochemical Machining |
Contents
Introduction | 1 |
Basic Fluid Dynamics | 11 |
Basic Electrochemistry | 44 |
Copyright | |
6 other sections not shown
Common terms and phrases
A/cm² alloy anions Anode potential anode shape anode surface assumed behaviour boundary conditions boundary layer bubbles calculated cathode cathode shape cathode tool cavitation cell Chapter coefficient concentration constant copper coth current density current efficiency decrease diffusion layer dissolved effect electrical electrochemical Electrochemical Machining electrode length electrode potential electrolyte conductivity electrolyte flow electrolyte flow-rate electrolyte velocity electropolishing equilibrium gap equivalent Faraday's feed-rate fluid Fourier g/cm³ gap width gradient hydrogen hydrogen gas increase initial inlet ions irregularities Joule heating kN/m² laminar flow Laplace's equation m³/s McGeough metal removal mild steel NaCl NaCl solution NaClO3 NaNO3 Ni++ nickel Nusselt obtained Ohm's law overpotential passivation polarisation curves polishing potential difference Pourbaix diagram pressure drop quantity reaction reduced region removal rates reversible potentials Reynolds number smoothing surface finish temperature thickness throwing power transpassive turbulent flow valency values variation viscosity voltage wavelength ди ду дх



