首页> 外文期刊>Surface Engineering and Applied Electrochemistry >On Application of Carbon-Containing Electrode Materials in Technology of Electrospark Alloying: Part 1. Peculiarities of Coating Formation Using Electrospark Treatment of Titanium Alloy OT4-1
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On Application of Carbon-Containing Electrode Materials in Technology of Electrospark Alloying: Part 1. Peculiarities of Coating Formation Using Electrospark Treatment of Titanium Alloy OT4-1

机译:施加碳电极材料在静电术术中的应用:第1部分使用钛合金钛合金涂层形成的涂层形成特征

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Electrospark treatment of OT4-1 titanium alloy was performed sequentially with a STIM-20N hard-alloy electrode (TiC–20% Ni) and carbon-containing material (graphite and carbon-based composite materials). Kinetics of the mass transfer of the hard-alloy electrode was studied. The cathode mass loss during the first minute of the treatment was established. The kinetics results were processed using the methods of mathematical statistics. The erosion resistance of the applied carbon-containing materials was determined. Phase composition and relief of the coatings formed were analyzed. It was found that the application of the carbon-containing material increases the content of refractory phases in the coatings. Increase in the time of the treatment using the carbon-containing materials decreases the roughness of the coatings.
机译:用Stim-20N硬合金电极(TiC-20%Ni)和含碳材料(石墨和碳基复合材料)顺序进行OT4-1钛合金的静电术治疗。 研究了硬合金电极的传质的动力学。 在治疗的第一分钟期间的阴极质量损失成立。 使用数学统计方法处理动力学结果。 测定所施加的含碳材料的耐腐蚀性。 分析形成的涂层的相组成和浮雕。 发现含碳材料的施加增加了涂层中耐火相的含量。 使用含碳材料的处理时间增加降低了涂层的粗糙度。

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