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用非晶态硼对蒙乃尔400进行激光合金化以获得硬质涂层。

Laser Alloying Monel 400 with Amorphous Boron to Obtain Hard Coatings.

作者信息

Kuklinski Mateusz, Bartkowska Aneta, Przestacki Damian

机构信息

Faculty of Mechanical Engineering and Management, Institute of Mechanical Technology Poznan, University of Technology, Piotrowo 3, 60-965 Poznań, Poland.

Faculty of Mechanical Engineering and Management, Institute of Material Science and Engineering, Poznan University of Technology, Jana Pawła II 24, 60-965 Poznań, Poland.

出版信息

Materials (Basel). 2019 Oct 25;12(21):3494. doi: 10.3390/ma12213494.

Abstract

In this study, Monel 400 is laser heat treated and laser alloyed with boron using diode laser to obtain adequate remelting and to improve the microhardness Single laser tracks were produced on the surface with three different laser beam scanning velocities: 5, 25, and 75 m/min. In order to enrich Monel 400 with boron surfaces were covered with initial layers of two different thicknesses before the process: 100 μm and 200 μm. In all experiments, laser beam power density was equal to 178 kW/cm. Produced laser tracks were investigated in areas of microstructure, depth of remelting and microhardness. It was found that remelted zones are mainly composed of dendrites and the more boron is present in the laser track, the dendritic structure more fragmented is. Depth of remelting and microhardness depend not only on the laser beam scanning velocity but also on thickness of the initial boron layer. While microhardness of Monel 400 is equal to approximately 160 HV0.1, microhardness up to 980 HV0.1 was obtained in areas laser alloyed with boron.

摘要

在本研究中,使用二极管激光器对蒙乃尔400进行激光热处理并与硼进行激光合金化,以实现充分的重熔并提高显微硬度。采用三种不同的激光束扫描速度(5、25和75米/分钟)在表面制备单条激光熔覆道。为了使蒙乃尔400富含硼,在处理前用两种不同厚度(100微米和200微米)的初始层覆盖表面。在所有实验中,激光束功率密度均等于178千瓦/平方厘米。对制备的激光熔覆道进行了微观结构、重熔深度和显微硬度方面的研究。结果发现,重熔区主要由枝晶组成,激光熔覆道中硼含量越高,枝晶结构越破碎。重熔深度和显微硬度不仅取决于激光束扫描速度,还取决于初始硼层的厚度。蒙乃尔400的显微硬度约为160 HV0.1,而在与硼进行激光合金化的区域,显微硬度可达980 HV0.1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55dd/6862451/692b9180f1c4/materials-12-03494-g001.jpg

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