Parametric Optimization of Machining Criteria for Al 6068 Aluminum Alloy using in Manufacturing Process of Aircraft

Ömer Seçgin, M. Sogut
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引用次数: 1

Abstract

In the aviation industry, it is essential to use parts that are lightweight but durable, and aluminum alloys generally provides effective solutions. In manufacturing processes, automation-based production techniques and robotic and efficient processing processes such as Computer Numeric Technique (CNC) are used, and it is important to define optimum production parameters. In this study, parametric optimization values of machining criteria were developed for the milling operation of AL 6068 aluminum alloy. For this purpose, Response Surface Method (RSM) was used for optimal solutions of parametric values and evaluation of relationships. According this, optimum processing parameters were determined to be 1521 rpm revolution speed, 0.4 mm depth of cut, and 197 mm/min federate. These manufacturing parameters were evaluated. A quadratic regression equation giving the surface roughness was created for this operation. At the end of the study, some suggestions were made regarding the improvement of production efficiency based on the parameters defined.
飞机用al6068铝合金加工工艺参数优化
在航空工业中,使用轻质但耐用的部件是必不可少的,铝合金通常提供了有效的解决方案。在制造过程中,使用了基于自动化的生产技术和机器人和高效的加工过程,如计算机数字技术(CNC),确定最佳生产参数非常重要。针对AL 6068铝合金的铣削加工工艺,建立了加工准则的参数优化值。为此,采用响应面法(Response Surface Method, RSM)进行参数值的最优解和关系的评价。在此基础上,确定了最佳加工参数为转速1521转/分、切深0.4 mm、转速197 mm/min。对这些制造参数进行了评价。为该操作创建了一个二次回归方程,给出了表面粗糙度。在研究的最后,根据所确定的参数,提出了提高生产效率的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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