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Volumn 69, Issue , 2012, Pages 120-127
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A temperature dependent multi-ion model for time accurate numerical simulation of the electrochemical machining process. Part II: Numerical simulation
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Author keywords
Concentration; Current efficiency; Steel; Thermal properties; Water depletion
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Indexed keywords
CURRENT EFFICIENCY;
EFFECTS OF TEMPERATURE;
ELECTRICAL CONDUCTION;
ELECTROCHEMICAL MACHINING;
ELECTROCHEMICAL REACTIONS;
ELECTRODE-ELECTROLYTE INTERFACES;
ELECTROLYTE FLOWS;
ELECTROLYTE SOLUTIONS;
ELECTRONEUTRALITY;
INTERNAL ENERGIES;
ION DIFFUSION COEFFICIENT;
ION TRANSPORTS;
LOCAL TEMPERATURE;
PHYSICAL PROCESS;
POTENTIAL MODEL;
REACTION MODEL;
SHAPE EVOLUTION;
TEMPERATURE DEPENDENT;
TEMPERATURE-DEPENDENT EXPRESSIONS;
THERMAL CONDUCTION;
TIME-ACCURATE;
WATER DEPLETION;
WATER DEPLETIONS;
COMPUTER SIMULATION;
CONCENTRATION (PROCESS);
ELECTRIC DISCHARGE MACHINING;
ELECTROCHEMICAL CUTTING;
ELECTROLYTES;
IONS;
NAVIER STOKES EQUATIONS;
STEEL;
THERMODYNAMIC PROPERTIES;
VISCOUS FLOW;
TEMPERATURE;
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EID: 84859586796
PISSN: 00134686
EISSN: None
Source Type: Journal
DOI: 10.1016/j.electacta.2012.02.079 Document Type: Article |
Times cited : (77)
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References (23)
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