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Structure and Properties of Electro-Explosive TiC-Ni-Mo Coatings of Die Steel after Electron-Beam Treatment

机译:电子束处理后模钢电炸药TIC-NI-MO涂层的结构与性能

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In this paper, we studied the phase and elemental composition of the surface layer of die steel 5KhNM subjected to electro-explosive sputtering deposited composite TiC-Ni-Mo coating and subsequent pulsed irradiation with a high-intensity submillisecond electron beam. The modes of electron-beam processing providing the formation of a dense, with a mirror gloss, surface layer with a submicrocrystalline structure based on titanium carbide and intermetallic compounds based on Mo, Ni, and Ti are determined. The electron-beam processing of an electro-explosive coating in the melting mode is shown to lead to the formation of a structurally uniform and concentration-uniform surface layer. TiC-Ni-Mo coatings have a 1.26 times higher wear resistance compared to die steel 5KhNM used as a substrate. The microhardness of the formed coatings is 450-2400 HV, the nanohardness is 25.5 GPa, and the modulus of elasticity is E = 398 GPa.
机译:在本文中,我们研究了模具钢5​​khnm表面层的相位和元素组成,经受电爆炸溅射的复合复合TiC-Ni-Mo涂层的脉冲溅射和随后用高强度亚粒子束的脉冲照射。确定具有晶体光泽的形成的电子束处理的模式,确定基于碳化钛和基于Mo,Ni和Ti的碳化钛和金属间化合物的亚微晶结构的表面层。显示熔融模式中电炸涂层的电子束加工,显示出形成结构均匀和浓度均匀的表面层。与用作基材的模具5kHnM相比,TiC-Ni-Mo涂层具有1.26倍较高的耐磨性。所形成的涂层的显微硬度为450-2400HV,纳米腔室是25.5GPa,弹性模量是E = 398GPa。

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