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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Multi-Objective Six-Sigma Approach for Robust Optimization of Multi-Point Dieless Forming Process
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Multi-Objective Six-Sigma Approach for Robust Optimization of Multi-Point Dieless Forming Process

机译:多点无无点形成过程鲁棒优化的多目标六秒形方法

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The significance of the stochastic nature of a multi-point dieless forming (MDF) process for final product accuracy has been extensively recognized. It is an under-research area in terms of effective techniques and computational tools for easy industrial applications and implementation. It is also recognized that wrinkling and dimpling are the most MDF product defects. Deterministic optimization using the finite element (FE) analysis have been used to improve the formability of the MDF process; however, not considering the noises of the system could affect the variation of the final product quality. In this study, the uncertainty parameters are considered to avoid the random variation of the final product accuracy while using the same control process parameters. In addition, to avoiding computationally expensive FE analysis, the approximation model has been used for both product defects. A six-sigma robust optimization is applied to obtain both reliable and robust MDF products. Finally a numerical simulation with one experimental result of a given target shape shows that the wrinkling and dimpling defect is controlled using the obtained optimal process parameter setup.
机译:多点无无点成型(MDF)过程的随机性的意义已被广泛认识到最终产品精度。在有效的技术和计算工具方面,它是一种研究领域,便于工业应用和实施。还认识到,皱纹和凹陷是最MDF的产品缺陷。使用有限元(Fe)分析的确定性优化已被用于改善MDF过程的可成形性;但是,不考虑系统的噪音可能会影响最终产品质量的变化。在这项研究中,认为不确定性参数被认为是避免使用相同的控制过程参数时最终产品精度随机变化。此外,为了避免计算昂贵的FE分析,近似模型已用于产品缺陷。应用了六西格米的鲁棒优化,以获得可靠且坚固的MDF产品。最后,具有给定目标形状的一个实验结果的数值模拟表明,使用所获得的最佳过程参数设置来控制皱纹和凹陷缺陷。

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