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首页> 外文期刊>Journal of Achievements in Materials and Manufacturing Engineering >Microstructure and properties of the hot work tool steel gradient surface layer obtained using laser alloying with tungsten carbide ceramic powder
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Microstructure and properties of the hot work tool steel gradient surface layer obtained using laser alloying with tungsten carbide ceramic powder

机译:用碳化钨陶瓷粉末激光合金化获得的热作工具钢梯度表面层的组织和性能

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摘要

Purpose: The aim of the paper is to present the innovatory investigation results of the impact of laser treatment consisting of multiple remelting and alloying using tungsten carbide ceramic powder on the microstructure and properties of hot work tool steel X40CrMoV5-1 surface layer.Design/methodology/approach: Laser heat treatment allows the production of gradient surface layer with a thickness reaching from of tenths of a millimetre even to few millimetres with specific functional properties, including high hardness and abrasion resistance, while maintaining the properties of the substrate material.Findings: Preliminary investigations of the effects of laser radiation on steel surface have showed, that in the surface layer there occur changes concerning the microstructure as well as in the chemical composition different from those occurring during conventional heat treatment.Research limitations/implications: There was determined the effect of laser power on the remelting depth, the depth of the heat affected zone and the width of the laser tray face. There was also measured and compared to the hardness and roughness of the steel processed by remelting with different process parameters.Practical implications: The current application areas for hot work tool steels are constantly growing, and the intensive development of techniques requires the use of new technologies, what leads to production of specific surface layer on materials, in order to meet the extremely difficult working conditions of modern tools.Originality/value: The effect of a HPDL laser melting on the hot work tool steel, especially on their structure and hardness has been studied.
机译:目的:本文的目的是介绍创新性的研究结果,包括采用碳化钨陶瓷粉末进行多次重熔和合金化处理的激光处理对热作工具钢X40CrMoV5-1表面层的组织和性能的影响。设计/方法学/方法:激光热处理允许生产厚度从十分之几毫米到几毫米不等的梯度表层,并具有特定的功能特性,包括高硬度和耐磨性,同时又保持了基材的特性。对激光辐射对钢表面的影响的初步研究表明,在表层中发生了与常规热处理不同的微观组织和化学成分变化。研究局限/意义:激光功率对重熔深度的影响热影响区的深度和激光托盘表面的宽度。还对通过不同工艺参数进行重熔而制得的钢的硬度和粗糙度进行了测量和比较。实际意义:当前热作工具钢的应用领域在不断增长,技术的深入发展要求使用新技术为了满足现代工具的极其困难的工作条件,需要在材料上产生特定的表面层。原始技术/价值:HPDL激光熔化对热作模具钢的影响,特别是对结构和硬度的影响经过研究。

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