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Influence of irradiation with a high-intensity pulsed electron beam on mechanical properties and structural states of coatings formed by plasma spraying

机译:高强度脉冲电子束辐照对等离子喷涂形成的涂层力学性能和结构状态的影响

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The purpose of the present studies is to establish the formation patterns of the structure and properties of the surface layer of 060A35 steel modified using a combined method that includes plasma spraying of a powder coating and the subsequent irradiation with an intense pulsed electron beam. Plasma spraying on the surface of a steel powder of the system Ni-Cr-B-Si (PGSR-4 with a fraction of 80-100 μm) was performed on the original installation equipped with two plasma generators. The irradiation of the modified steel layer was carried out with an intense pulsed electron beam on the installation SOLO. The investigation of the phase and elemental composition, the state of the defective substructure were carried out using methods of X-ray phase analysis, optical and scanning electron microscopy. The mechanical properties of the irradiated surface were characterized by microhardness. It is shown that plasma spraying of a powder coating leads to formation of a high-relief surface containing micro- and macropores. The subsequent treatment of the modified surface with an intense pulsed electron beam of a submillisecond duration in the melting mode of the surface layer is accompanied by smoothing of the coating surface, saturation of the crystalline lattice of the surface layer with Ni, Cr, B and Si atoms, formation of dendritic crystallization cells of submicron sizes, release of nanoscale particles of the second phase, formation of a quenching structure. Together, this has allowed to increase the microhardness of the modified layer in 4.6-6.5 times.
机译:本研究的目的是建立使用组合方法改性的060A35钢表面层的结构和性能的形成模式,该组合方法包括等离子喷涂粉末涂层以及随后用强脉冲电子束辐照。在配备有两个等离子体发生器的原始设备上,对系统Ni-Cr-B-Si(分数为80-100μm的PGSR-4)的钢粉表面进行等离子体喷涂。用强脉冲电子束在设备SOLO上进行改性钢层的辐照。使用X射线相分析,光学和扫描电子显微镜的方法进行了相和元素组成,缺陷子结构的状态的研究。辐照表面的机械性能以显微硬度为特征。结果表明,粉末喷涂的等离子喷涂导致形成包含微孔和大孔的高浮雕表面。随后在表面层的熔化模式下用亚毫秒级的强脉冲电子束对改性后的表面进行处理,伴随着涂层表面的光滑化,Ni,Cr,B和N饱和表面层的晶格。硅原子,形成亚微米尺寸的树枝状结晶晶胞,释放出第二相的纳米级颗粒,形成淬灭结构。在一起,这使得改性层的显微硬度提高了4.6-6.5倍。

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