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Method of Electrolyte-Plasma Surface Hardening of 65G and 20GL Low-Alloy Steels Samples

机译:电解质 - 等离子体表面硬化的方法65g和20gl低合金钢样品

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This work is devoted to formation of modified surface layers in 65G and 20GL steels which using for the manufacture of railway transport parts, as well as the study of influence of the parametersof electrolyte-plasma surface hardening methodon the changes in structural-phase states, improving of wear-resistance. The process of electrolyte-plasma surface hardening of 65G and 20GL steels samples conducted in the electrolyte from water solution of 20% sodium carbonate, in the mode ~850°C - 2 seconds, ~1200°C - 3 seconds. It is established that in the initial state 20GL steel has ferrite-pearlite structure, and the 60G steel consists of pearlite and cement structure. After application of electrolyte-plasma surface hardening is observed the formation of carbides particles and martensite phase components in the structure of 20GL and 60G steels. It is determined that after electrolyte-plasma surface hardening with heating time - 2 seconds, the abrasive wear-resistance of 65G and 20GL steels increased to 1.3 times and 1.2 times, respectively, and the microhardness is increased to 1.6 times and 1.3 times, respectively.
机译:这项工作致力于在65克和20GL钢中形成改进的表面层,用于制造铁路运输部件,以及电解质 - 等离子体表面硬化方法的影响的影响的研究结构相位状态的变化,改善耐磨性。电解质 - 等离子体表面硬化的方法65g和20g1钢样品在电解质中,从水溶液的20%碳酸钠水溶液中进行,在模式〜850℃-2秒,〜1200℃-3秒。建立在初始状态20gL钢中具有铁氧体 - 珠光体结构,60g钢由珠光体和水泥结构组成。在施加电解质 - 等离子体表面硬化之后,观察到在20GL和60g钢的结构中形成碳化物颗粒和马氏体相组分。确定在电解质 - 等离子体表面与加热时间 - 2秒硬化后,65g和20gl钢的磨料耐磨性分别增加到1.3倍和1.2倍,微硬度分别增加到1.6倍和1.3倍。 。

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