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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Parametric study and multi-objective optimization in single-point incremental forming of extra deep drawing steel sheets
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Parametric study and multi-objective optimization in single-point incremental forming of extra deep drawing steel sheets

机译:超深冲钢板单点渐进成形的参数研究与多目标优化

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摘要

Single-point incremental forming is the most economical process to make the sheet metal prototypes and low volume production without any dedicated dies and simple tooling. The surface finish of the parts produced in this process gets affected by various process parameters. To get the proper quality of parts for functional applications, it is important to understand the effect of various process parameters on part quality. Another drawback with this process is long processing time, which also gets affected by different process parameters. Thus, the first objective of this article is to study the effect of various process parameters on surface roughness and manufacturing time. Second objective is to carry out the multi-objective optimization to get optimum process parameters. For this, detailed experiments are conducted using Box-Behnken design. The effects of step depth, tool diameter, wall angle, feed rate and lubricant type on surface roughness and processing time have been investigated. Based on experimental data, mathematical models have been developed for both the response variables, namely, surface roughness and manufacturing time. Since the response variables are mutually exclusive in nature, multi-objective optimization algorithm (non-dominated sorting genetic algorithm-II) has been used to get optimum process parameters. The Pareto front obtained from this algorithm helps the manufacturing engineer to select optimum process parameters in single-point incremental forming process.
机译:单点渐进成形是最经济的过程,无需任何专用模具和简单工具即可完成钣金原型和小批量生产。在此过程中生产的零件的表面光洁度会受到各种过程参数的影响。为了获得适用于功能性应用的零件质量,重要的是要了解各种工艺参数对零件质量的影响。该工艺的另一个缺点是处理时间长,这也受到不同工艺参数的影响。因此,本文的首要目标是研究各种工艺参数对表面粗糙度和制造时间的影响。第二个目标是进行多目标优化以获得最佳工艺参数。为此,使用Box-Behnken设计进行了详细的实验。研究了台阶深度,刀具直径,壁角,进给速度和润滑剂类型对表面粗糙度和加工时间的影响。基于实验数据,已经针对响应变量(即表面粗糙度和制造时间)开发了数学模型。由于响应变量本质上是互斥的,因此已使用多目标优化算法(非支配排序遗传算法-II)来获得最佳过程参数。从该算法获得的帕累托前沿可帮助制造工程师在单点增量成型工艺中选择最佳工艺参数。

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