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首页> 外文期刊>International journal of engineering research in Africa >Multi-Objective Optimisation of Laser Deposition of Metal Matrix Composites for Surface Coating Using Principal Component Analysis
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Multi-Objective Optimisation of Laser Deposition of Metal Matrix Composites for Surface Coating Using Principal Component Analysis

机译:基于主成分分析的金属基复合材料表面涂层激光沉积多目标优化

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Laser deposition is an advanced manufacturing technology capable of enhancing service life of engineering components by hard-facing their functional surfaces. There are quite a number of parameters involved in the process and also desirable output characteristics. These output characteristics are often independently optimised and which may lead to poor outcome for other characteristics, hence the need for multi-objective optimisation of all the output characteristics. In this study, a laser deposition of Ti-6Al-4V wire and tungsten carbide powder was made on a Ti-6Al-4V substrate with a view to achieve a metallurgical bonded metal matrix composite on the substrate. Single clads were deposited with a desire to optimise the composite clad characteristics (height, width and reinforcement fraction) for the purpose of surface coating. Processing parameters (laser power, traverse speed, wire feed rate, powder feed rate) were varied, the experiment was planned using Taguchi method and output characteristics were analysed using principal component analysis approach. The results indicated that the parameters required for optimised clad height, width, and reinforcement fraction necessary for surface coating is laser power of 1800 W, traverse speed of 200 mm/min, wire feed rate 700 mm/min and powder feed rate of 30 g/min. The powder feed rate was found to most significantly contribute 43.99%, followed by traverse speed 39.77%, laser power 15.87% with wire feed rate having the least contribution towards the multi-objective optimisation. Confirmation results showed that clad width and reinforcement fraction were significantly improved by the optimised parameters. The multi-objective optimisation procedure is a useful tool necessary to identify the process factors required to enhance output characteristics in laser processing.
机译:激光沉积是一种先进的制造技术,能够通过对零件的功能表面进行硬化处理来延长其使用寿命。该过程涉及许多参数,并且还具有所需的输出特性。这些输出特性通常是独立优化的,这可能导致其他特性的结果不佳,因此需要对所有输出特性进行多目标优化。在这项研究中,在Ti-6Al-4V基板上进行了Ti-6Al-4V导线和碳化钨粉末的激光沉积,以期在基板上实现冶金结合的金属基复合材料。为了优化复合包层的特性(高度,宽度和增强率),单层包层被沉积以达到表面涂层的目的。改变加工参数(激光功率,横移速度,送丝速率,送粉速率),使用田口方法计划实验,并使用主成分分析方法分析输出特性。结果表明,优化包层的高度,宽度和表面涂层所需的补强率所需的参数是1800 W的激光功率,200 mm / min的移动速度,700 mm / min的送丝速度和30 g的粉末送入速度/分钟。发现粉末进给率贡献最大,为43.99%,其次是横移速度为39.77%,激光功率为15.87%,送丝速度对多目标优化的贡献最小。验证结果表明,优化参数可以显着提高包层宽度和增强率。多目标优化程序是确定增强激光加工中输出特性所需的工艺因素所必需的有用工具。

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