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Study on Numerical Simulation of Electrochemical Machining Ring Narrow Groove

机译:电化学加工环窄槽数值模拟研究

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摘要

For annular narrow slot structure of electrochemical machining process test cycle is long, type face the problem of difficult to predict, establish mask electrochemical machining process of the electric field, flow field and temperature field coupling mathematical model, using COMSOL Multiphysics to numerical simulation of multiple physical fields, get the machining gap in electrolyte, current density, velocity and pressure distribution. The results show that the multi-physical field coupling simulation technology can correctly budget the electrochemical machining process, provide a theoretical basis for the actual machining process parameters, and is of great significance to improve the quality and efficiency of electrochemical machining with narrow groove structure.
机译:对于电化学加工过程测试循环的环形窄槽结构长,型面对难以预测的问题,建立电场电化学加工过程的电场,流场和温度场耦合数学模型,使用COMSOL Multiphysics对多个的数值模拟物理领域,获得电解质,电流密度,速度和压力分布的加工间隙。结果表明,多物理场耦合仿真技术可以正确预算电化学加工过程,为实际加工工艺参数提供理论依据,具有重要的意义,可以提高具有窄槽结构的电化学加工的质量和效率。

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