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首页> 外文期刊>Bulletin of the Russian Academy of Sciences. Physics >Electron-beam modification of a surface layer deposited on low-carbon steel by means of arc spraying
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Electron-beam modification of a surface layer deposited on low-carbon steel by means of arc spraying

机译:通过电弧喷涂沉积在低碳钢上的表面层的电子束改性

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AbstractState-of-the-art means of physical materials science are used to study the structure, phase composition, defect substructure, and tribological properties of a coating formed on low-carbon Hardox 450 martensite steel via the electrocontact deposition of an Fe–C–Ni–B wire and modified through subsequent irradiation with high-intensity pulsed electron beams. It is shown that electron-beam treatment results in the formation of a modified 50-μm thick surface layer, the main phases of which are the α-phase, iron boride FeB, and boron carbide B4C. In the layer modified by electron-beam treatment, the transverse size of batch martensite crystals is reduced by a factor of 3, relative to the initial Hardox 450 steel, and ranges from 50 to 70 nm. It is established that the wear resistance of the deposited layer after electron-beam treatment grows by more than 20 times with respect to the wear resistance of Hardox 450 steel, and the friction coefficient is reduced by a factor of 3.5. The microhardness of a deposited layer ~7 mm thick is more than double that of the base metal.]]>
机译:<![cdata [ <标题>抽象 ara>最先进的物理材料科学方法用于研究结构,相位组成通过电冷沉积Fe-C-Ni-B导线在低碳硬回零450马氏体钢上形成的涂层的缺陷亚结构和摩擦学特性,并通过随后用高强度脉冲电子束进行修饰。结果表明,电子束处理导致改性的50μm厚表面层的形成,其主要相是α相,铁硼化铁2月和硼碳化物B <下标> 4 C. 。在通过电子束处理改性的层中,相对于初始高硬币450钢,批量马氏体晶体的横向尺寸减小了3倍,并且范围为50至70nm。建立电子束处理后沉积层的耐磨性相对于硬毒450钢的耐磨性而增大了20多次,并且摩擦系数减少了3.5系数。沉积层〜7mm厚的微硬度大于贱金属的两倍多。 ]]>

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