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首页> 外文期刊>Tribologia >INFLUENCE OF ELECTROLYTIC-PLASMA SURFACE HARDENING ON THE SURFACE PROPERTIES OF BANDAGE STEEL
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INFLUENCE OF ELECTROLYTIC-PLASMA SURFACE HARDENING ON THE SURFACE PROPERTIES OF BANDAGE STEEL

机译:电解质等离子体表面硬化对绷带钢表面性质的影响

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This work is devoted to the research of the influence of the technological parameters of electrolytic-plasma surface hardening on the structure and tribological properties of the surface of samples of the retaining steel Mark 2. Electrolytic-plasma surface hardening was carried out in an electrolyte from an aqueous solution of 10% urea and 10% sodium carbonate. According to the result of metallographic and X-ray diffraction analysis, it was determined that the phase composition of steel Mark 2 after processing varies, and fine martensite with a small amount of troostite and iron oxide is formed on the surface of the samples. Tribological experiments of samples without lubrication were carried out. These experiments have shown that all the samples studied have an increased wear resistance, which may be associated with the formation of a fine-grained martensitic structure. It was shown that from the point of view of the complex of the properties obtained, and the most promising is electrolytic-plasma action with a treatment time of 4 s.
机译:这项工作致力于研究电解质等离子体表面硬化技术参数对保持钢标记的样品表面的结构和摩擦学特性的影响。电解质 - 等离子体表面硬化在电解质中进行10%尿素和10%碳酸钠的水溶液。根据金相和X射线衍射分析的结果,确定加工后的钢标记2的相组成变化,并且在样品的表面上形成具有少量大量的大氧化铁和氧化铁的微马氏体。进行了无润滑的样品的摩擦学实验。这些实验表明,所研究的所有样品具有增加的耐磨性,这可能与形成细菌马氏体结构的形成相关。结果表明,从获得的性质的复合物的角度来看,最有希望的是电解质 - 血浆作用,治疗时间为4 s。

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