Bartkowska Aneta, Bartkowski Dariusz, Popławski Mikołaj, Piasecki Adam, Przestacki Damian, Miklaszewski Andrzej
Institute of Materials Science and Engineering, Faculty of Materials Engineering and Technical Physics, Poznan University of Technology, ul. Jana Pawła II 24, 61-138 Poznan, Poland.
Institute of Materials Technology, Faculty of Mechanical Engineering, Poznan University of Technology, ul. Piotrowo 3, 61-138 Poznan, Poland.
Materials (Basel). 2020 Jul 22;13(15):3249. doi: 10.3390/ma13153249.
The paper presents study results of laser alloying of CT90 tool steel with an applied pre-coat of boron, molybdenum or a mixture of these elements. Pre-coats were applied on steel substrates in the form of a paste. The aim of the study was to investigate the microstructure, chemical and phase composition, microhardness and corrosion resistance of these newly-formed coatings. The laser alloying process was carried out using a diode laser with a nominal power of 3 kW. In this study a laser beam power of 900 W and a scanning speed of 48 mm/s were used. As a result of the laser beam action, the presence of three areas was observed in cross-sections of specimens: a remelted zone, a heat affected zone and the substrate. The properties of coatings enriched with both molybdenum and boron were better than those of the steel substrate, but only the use of a Mo-B mixture resulted in a significant improvement in microhardness and corrosion resistance.
本文介绍了对CT90工具钢进行激光合金化处理的研究结果,其中施加了硼、钼或这些元素的混合物的预涂层。预涂层以膏状形式施加在钢基材上。该研究的目的是研究这些新形成涂层的微观结构、化学和相组成、显微硬度和耐腐蚀性。激光合金化过程使用标称功率为3kW的二极管激光器进行。在本研究中,使用了900W的激光束功率和48mm/s的扫描速度。由于激光束的作用,在试样的横截面中观察到三个区域:重熔区、热影响区和基材。富含钼和硼的涂层性能优于钢基材,但只有使用Mo-B混合物才能显著提高显微硬度和耐腐蚀性。