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Shape evolution and prediction of three dimensional workpieces in electrochemical machining 被引量:4

Shape evolution and prediction of three dimensional workpieces in electrochemical machining
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摘要 Based on the Faraday’s Law, the shape evolution model was calculated depending on a function of time, and the influence of the variable current efficiency which was brought by the passivating electrolyte was included. The final shape determination was obtained by solving the model of electric-field distribution by the finite element method, at the same time flow parameters influencing on the shaping process were also considered. The results show that the experimental results are in close agreement with the theoretical ones. Based on the Faraday’s Law, the shape evolution model was calculated depending on a function of time, and the influence of the variable current efficiency which was brought by the passivating electrolyte was included. The final shape determination was obtained by solving the model of electric-field distribution by the finite element method, at the same time flow parameters influencing on the shaping process were also considered. The results show that the experimental results are in close agreement with the theoretical ones.
作者 王蕾 朱荻
出处 《中国有色金属学会会刊:英文版》 CSCD 2005年第S3期241-246,共6页 Transactions of Nonferrous Metals Society of China
基金 Project(04H52055)supportedbytheAerialScientificFoundation
关键词 ELECTROCHEMICAL MACHINING SHAPING process ELECTRIC-FIELD distribution FLOW PARAMETER 3D electrochemical machining shaping process electric-field distribution flow parameter 3D
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