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STEEL 45 SURFACE MODIFICATION BY A COMBINED ELECTRON-ION-PLASMA METHOD

机译:电子-离子-等离子体复合法对45钢表面的改性

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摘要

The results of investigation of the phase and elemental composition, defect substructure, mechanical and tribological properties of steel 45, subjected to combined treatment, including plasma alloying (formed by means of electric explosion of aluminum foil) and subsequent pulsed electron-beam treatment are presented. The formation of a high-speed cell crystallization structure in the steel surface layer (cell size 300-500 nm) has been found. The formation of iron aluminides Al_5Fe_2 along the cell borders has also been revealed. It is shown that combined treatment, including electroexplosive alloying by aluminum and subsequent high-intensity electron-beam treatment, leads to a 2.1-fold increase in the steel microhardness and a 4-fold increase in the steel wear resistance compared to the initial material (steel 45 ferrite-pearlite state).
机译:给出了对钢45进行相处理,包括等离子合金化(通过铝箔的电爆炸形成)和随后的脉冲电子束处理的组合处理后的相和元素组成,缺陷子结构,力学和摩擦学性能的研究结果。 。已经发现在钢表层(晶胞尺寸为300-500nm)中形成了高速晶胞结晶结构。还已经揭示了沿细胞边界形成铝化铁Al_5Fe_2。结果表明,与初始材料相比,联合处理(包括铝的电爆炸合金化和随后的高强度电子束处理)导致钢的显微硬度增加2.1倍,钢的耐磨性增加4倍(钢45铁素体-珠光体状态)。

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