Simulation of Electrochemical Processes
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Section 1: Cathodic protection systems; Computer simulation of the interference between a ship's and a dock's cathodic protection systems; Zonal ICCP system control interactions; Optimum design of cathodic protection using the Boundary Element Method; Experimental vs. computational system analysis; Numerical 3D BEM simulation of a CP system for a buried tank influenced by a steel reinforced concrete foundation; Section 2: Modelling methodologies; Galvanic corrosion modeling in flowing systems; Polarization characteristics of geometrically confined spaces; Calculation of temperature fields with DC and pulsed ECM; Durable building technology benefiting electrochemical methods; as a preventive; Modelling the localized corrosion effects experienced by zinc-4.5wt. per cent aluminium steel coatings in 5 per cent NaCl solution; Numerical simulation of metal corrosion with cluster formation; Temperature and heat transfer profiles of a fluid film squeezed between two permeable isothermal discs rotating within a magnetic field; Section 3: Electrodeposition and Electroforming; Time-dependent simulation of electrochemical machining under non-ideal conditions; Simulation of electrocodeposition; Modeling the electrodeposition process: from the macroscopic to the mesoscopic, from continuous mathematics to discrete algorithms; Heat transfer analysis of the EDM process on silicon carbide; Section 4: Modelling of coatings; Numerical 3D BEM simulation of the chromium layer thickness distribution on parts in a rack plating configuration; BEM analysis of protective mechanism of patinas against atmospheric corrosion; Electrochemical evaluation of a high solid coating in acid media; Simulation of the formation mechanism of a viscous layer for the electropolishing process; Section 5: Modelling stress corrosion cracking and corrosion fatigue; The roles of microstructure and mechanics in intergranular stress corrosion cracking; Stress-corrosion of cold drawn prestressing steels; The effect of chromate on stress corrosion cracking of type 316 austenitic stainless steel in hydrochloric acid solution and the transgranular SCC mechanism

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