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Formation of gradient surface layers on high speed steel by laser surface alloying process

机译:通过激光表面合金化工艺在高速钢上形成梯度表面层

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Purpose: The purpose of this research paper is focused on the high speed steel HS6-5-3-8 surface layers improvement properties using HPDL laser. The paper present laser surface technologies, investigation of structure and properties of the high speed steel alloying with the WC, VC, TiC, SiC, Si3N4and Al2O3particles using high power diode laser HPDL.Design/methodology/approach: Investigation indicate the influence of the alloying elements on the structure and properties of the surface layer of investigated steel depending on the kind of alloying carbides, oxides, nitrides and power implemented laser (HPDL).Findings: Laser alloying of surface layer of investigated steel without introducing alloying additions into liquid molten metal pool, in the whole range of used laser power, causes size reduction of dendritic microstructure with the direction of crystallization consistent with the direction of heat carrying away from the zone of impact of laser beam. In the effect of laser alloying with powder of the WC, VC, TiC, SiC, Si3N4and Al2O3particles occurs size reduction of microstructure as well as dispersion hardening through fused in but partially dissolved particles and consolidation through enrichment of surface layer in alloying additions coming from dissolving elements. Introduced particles of carbides, oxides, nitrides and in part remain undissolved, creating conglomerates being a result of fusion of undissolved powder grains into molten metal base. In effect of convection movements of material in the liquid state, conglomerates of carbides arrange themselves in the characteristic of swirl. Practical implications: Laser surface modification has the important cognitive significance and gives grounds to the practical employment of these technologies for forming the surfaces of new tools and regeneration of the used ones.Originality/value: The structural mechanism was determined of surface layers development, effect was studied of alloying parameters, gas protection method, and method of applied onto the steel surface on structure refinement and influence of these factors on the mechanical properties of surface layer, and especially on its hardness and microhardness
机译:目的:本研究的目的集中在使用HPDL激光改善高速钢HS6-5-3-8表面层的性能上。本文介绍了激光表面技术,研究了使用高功率二极管激光器HPDL与WC,VC,TiC,SiC,Si3N4和Al2O3颗粒高速钢合金化的结构和性能。设计/方法/方法:研究表明了合金化的影响根据合金化碳化物,氧化物,氮化物和功率执行激光(HPDL)的种类,对被调查钢的表面层的结构和性能中的元素进行研究。发现:对被调查钢的表面层进行激光合金化,而无需在液态熔融金属中引入合金添加剂在所使用的激光功率的整个范围内,熔池引起树枝状微结构的尺寸减小,其结晶方向与热量从激光束撞击区域带走的方向一致。在用WC,VC,TiC,SiC,Si3N4和Al2O3粉末对合金进行激光合金化的过程中,会发生微观结构尺寸减小以及由于熔融但部分溶解的颗粒而引起的分散硬化,以及由于溶解而产生的合金添加物中表面层的富集而固结元素。引入的碳化物,氧化物,氮化物和部分未溶解的颗粒,由于未溶解的粉末颗粒融合到熔融金属基料中而形成团块。在液态的材料对流运动的影响下,碳化物的团聚体使其自身具有涡旋特性。实际意义:激光表面改性具有重要的认知意义,并为这些技术的实际应用奠定了基础,以形成新工具的表面并再生使用过的工具。研究了合金化参数,气体保护方法以及在钢表面进行组织细化的方法,以及这些因素对表层机械性能(尤其是其硬度和显微硬度)的影响

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