Features of Increasing the Wear Resistance of Machine Parts by Treatment with a Concentrated Heat Flow

Iuliia Sokolan, O. Romanishina, K. Sokolan, P. Maidan, V. Karazey
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引用次数: 0

Abstract

The article discusses the possibility of using surface treatment of parts with a concentrated heat flow to increase the wear resistance of parts. This method provides conditions for the rapid crystallization of the metal structure after zonal surface melting of the sample surface with electric arc plasma. It has been found that the wear resistance of steel increases significantly with increasing scanning speed and decreasing current strength. The near-surface layers on the cross-sectional grinds of the melting areas were studied in comparison with the initial (without melting) state on the basis of diagrams of the method of continuous indenter immersion. The values of a number of micromechanical parameters characterizing the resistance to microplastic deformation and elastic-viscous properties of steel after strengthening heat treatment were obtained. It should be noted that with a fourfold increase in hardness, the wear resistance of the steel increased almost 10 times. This indicates that the wear resistance of metals under friction is determined not only by macroscopic strength and hardness, but also by the ability to relax local peak stresses under dynamic contact interaction
集中热流处理提高机械零件耐磨性的特点
本文讨论了对具有集中热流的零件进行表面处理以提高零件耐磨性的可能性。该方法为在用电弧等离子体对样品表面进行区域性表面熔化之后金属结构的快速结晶提供了条件。研究发现,随着扫描速度的增加和电流强度的降低,钢的耐磨性显著提高。基于连续压头浸入法的图表,研究了熔化区横截面研磨物上的近表面层与初始(未熔化)状态的比较。获得了表征钢在强化热处理后抗微塑性变形和弹粘性能的一些微观力学参数的值。应该注意的是,随着硬度增加四倍,钢的耐磨性几乎增加了10倍。这表明,金属在摩擦下的耐磨性不仅取决于宏观强度和硬度,还取决于在动态接触相互作用下放松局部峰值应力的能力
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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28
审稿时长
10 weeks
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