Microstructure and selected properties of boronized layers produced on C45 and CT90 steels after modification by diode laser

A. Bartkowska, D. Bartkowski, D. Przestacki, M. Talarczyk
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引用次数: 1

Abstract

Abstract The paper presents the study results of macro- and microstructure, microhardness and corrosion resistance of C45 medium carbon steel and CT90 high carbon steel after diffusion boriding and laser modification by diode laser. It was found that the increase of carbon content reduced the thickness of boronized layer and caused change in their morphology. Diffusion boronized layers were composed of FeB and Fe2B iron borides. As a result of laser surface modification of these layers, the microstructure composed of three areas: remelted zone, heat affected zone (HAZ) and the substrate was obtained. Microhardness of laser remelting boronized layer in comparison with diffusion boronized layer was lower. The presence of HAZ was advantageous, because mild microhardness gradient between the layer and the substrate was assured. The specimens with laser boronized layers were characterized by better corrosion resistance than specimens without modified layer.
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二极管激光改性C45和CT90钢渗硼层的组织和性能
摘要本文介绍了C45中碳钢和CT90高碳钢经扩散渗硼和激光改性后的宏观组织、显微硬度和耐蚀性的研究结果。结果表明,碳含量的增加使渗硼层厚度减小,渗硼层形貌发生变化。扩散渗硼层由FeB和Fe2B铁硼化物组成。通过激光表面改性,获得了由重熔区、热影响区和基体三个区域组成的微观结构。激光重熔渗硼层的显微硬度较扩散渗硼层低。热影响区的存在是有利的,因为层和衬底之间的微硬度梯度较小。经过激光渗硼处理的试样的耐蚀性优于未经过渗硼处理的试样。
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