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模糊控制建模以优化在不同表面粗糙度的不锈钢基体上激光熔覆铁基金属玻璃单道熔覆层的硬度和几何形状。

Fuzzy Control Modeling to Optimize the Hardness and Geometry of Laser Cladded Fe-Based MG Single Track on Stainless Steel Substrate Prepared at Different Surface Roughness.

作者信息

Lashin Maha M A, Ibrahim Mahmoud Z, Khan Muhammad Ijaz, Guedri Kamel, Saxena Kuldeep K, Eldin Sayed M

机构信息

College of Engineering, Princess Nourah Bint Abdulrahaman University, Riyadh 11564, Saudi Arabia.

Department of Design and Production Engineering, Faculty of Engineering, Ain Shams University, Cairo 11517, Egypt.

出版信息

Micromachines (Basel). 2022 Dec 10;13(12):2191. doi: 10.3390/mi13122191.

Abstract

Metallic glass (MG) is a promising coating material developed to enhance the surface hardness of metallic substrates, with laser cladding having become popular to develop such coatings. MGs properties are affected by the laser cladding variables (laser power, scanning speed, spot size). Meanwhile, the substrate surface roughness significantly affects the geometry and hardness of the laser-cladded MG. In this research, Fe-based MG was laser-cladded on substrates with different surface roughness. For this purpose, the surfaces of the substrate were prepared for cladding using two methods: sandpaper polishing (SP) and sandblasting (SB), with two levels of grit size used for each method (SP150, SP240, SB40, SB100). The experiment showed that substrate surface roughness affected the geometry and hardness of laser-cladded Fe-based MG. To predict and optimize the geometry and hardness of laser-cladded Fe-based MG single tracks at different substrate surface roughness, a fuzzy logic control system (FLCS) was developed. The FLCS results indicate that it is an efficient tool to select the proper preparation technique of the substrate surface for higher clad hardness and maximum geometry to minimize the number of cladding tracks for full surface cladding.

摘要

金属玻璃(MG)是一种用于提高金属基体表面硬度的新型涂层材料,激光熔覆技术是制备这种涂层的常用方法。MG的性能受到激光熔覆参数(激光功率、扫描速度、光斑尺寸)的影响。同时,基体表面粗糙度显著影响激光熔覆MG涂层的几何形状和硬度。在本研究中,将铁基金属玻璃激光熔覆在具有不同表面粗糙度的基体上。为此,采用两种方法对基体表面进行熔覆预处理:砂纸打磨(SP)和喷砂处理(SB),每种方法使用两种粒度等级(SP150、SP240、SB40、SB100)。实验表明,基体表面粗糙度影响激光熔覆铁基金属玻璃的几何形状和硬度。为了预测和优化不同基体表面粗糙度下激光熔覆铁基金属玻璃单道熔覆层的几何形状和硬度,开发了一种模糊逻辑控制系统(FLCS)。FLCS结果表明,它是一种有效的工具,可选择合适基体表面预处理技术,以获得更高的熔覆硬度和最大的几何形状,减少全表面熔覆所需的熔覆道数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3ed/9788448/4fb1b5f68f36/micromachines-13-02191-g001.jpg

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