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Peculiarities of Heat Transfer at Anodic Plasma Electrolytic Treatment of Cylindrical Pieces

机译:阳极等离子体电解处理圆柱件的传热特性

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摘要

Heat transfer in a three-phase electrochemical system consisting of a metal cylindrical anode (a workpiece), a vapor-gas envelope, and an electrolyte solution is considered. The purpose of the study is to determine the effect of the length of the sample part contacting with the electrolyte on the distribution of the heating characteristics on its surface. It is established that the increase of the length of the part of the anode submerged into the electrolyte causes a decrease in the average current density, reduction in the vertical current density gradient, and a decrease in the density of the heat flux from the envelope to the sample. A model is proposed to calculate the stationary cylindrical anode temperature and the current in the system with the evaluation of the convective heat flux from the anode portion protruding above the electrolyte into the atmosphere. The influence of the electrolyte flow along the sample on its temperature and the average current density in the system is determined and attributed to the variation of the vapor-gas envelope thickness.
机译:考虑了在三相电化学系统中的热传递,该三相电化学系统由金属圆柱形阳极(工件),蒸气-气体包壳和电解质溶液组成。研究的目的是确定与电解质接触的样品部分的长度对其表面加热特性分布的影响。可以确定的是,浸入电解质中的阳极部分的长度增加会导致平均电流密度降低,垂直电流密度梯度降低以及从外壳到外壳的热通量密度降低。样品。提出了一个模型,用于计算固定圆柱状阳极温度和系统中的电流,并评估从阳极上方突出到电解质上方的阳极到大气中的对流热通量。确定沿着样品的电解质流对其温度和系统中平均电流密度的影响,并将其归因于蒸气-气体包膜厚度的变化。

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