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首页> 外文期刊>Surface Engineering and Applied Electrochemistry >Effects of Electrolyte Composition on Heat Exchange in Anode Plasma Electrolyte Treatment of Commercial Titanium
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Effects of Electrolyte Composition on Heat Exchange in Anode Plasma Electrolyte Treatment of Commercial Titanium

机译:电解质组成对商业钛阳极等离子体电解质处理中热交换的影响

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摘要

The study considers heat exchange in a three-phase system: electrolyte solution—vapour-gas envelope (VGE)—a titanium workpiece. The temperature of a workpiece, current intensity, heat fluxes from the envelope to the electrolyte and the workpiece were measured in an aqueous solution of ammonium chloride with addition of ammonia and glycerol. Addition of ammonia and glycerol proved to decrease current intensity, heating temperature, total energy liberation and heat fluxes to the solution and the sample. Furthermore, it was found that heat shares passing to the electrolyte and the workpiece are not affected by ammonia and glycerol concentrations. The addition of ammonia and glycerol affect heat exchange, increasing the VGE thickness due to intense evaporation of these elements.
机译:该研究考虑了三相系统中的热交换:电解质溶液 - 蒸气 - 气体包络(VGE)-A钛工件。 在氯化铵水溶液中加入氨和甘油,测量工件,电流强度,从外壳的热通量,从氯化铵水溶液中测量的温度,从氯化铵水溶液中测量。 氨和甘油的加入证明是降低电流强度,加热温度,总能量释放和热通量的溶液和样品。 此外,发现通过电解质和工件的热股不受氨和甘油浓度的影响。 加入氨和甘油影响热交换,增加由于这些元素强烈蒸发引起的VGE厚度。

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