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An integrated framework of statistical process control and design of experiments for optimizing wire electrochemical turning process

机译:统计过程控制和优化线材电化学车削过程实验设计的集成框架

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摘要

Design of experiments (DOE) and statistical process control (SPC) have been separately used in many traditional and non-traditional machining processes, but recently these two approaches are being combined and reevaluated for more effective use and accurate conclusions. DOE and SPC are very efficient tools to maintain the process on target and within boundaries of natural variations and to achieve the maximum accuracy and effectiveness of an experimental program. This paper proposes an integrated framework of SPC and DOE to execute the experimental procedures and to investigate a reliable mathematical model for optimizing the wire electrochemical turning process (WECT). WECT is a non-traditional machining process which has tremendous applications in modern industries especially in the aerospace and military industries. Response surface methodology is used to determine the sufficient number of experiments and also the recommended values of the input parameters. Univariate and multivariate control charts are used to assess the statistical control of the output parameters. Multi-objective optimization is conducted for determining the optimum values of the input parameters.
机译:实验设计(DOE)和统计过程控制(SPC)已分别在许多传统和非传统加工过程中使用,但是最近将这两种方法结合并重新评估,以更有效地使用和得出准确的结论。 DOE和SPC是非常有效的工具,可将过程维持在目标范围内以及自然变化范围之内,并实现实验程序的最大准确性和有效性。本文提出了SPC和DOE的集成框架,以执行实验程序并研究用于优化线材电化学车削工艺(WECT)的可靠数学模型。 WECT是一种非传统的机械加工工艺,在现代工业中,尤其是在航空航天和军事工业中有着巨大的应用。响应面方法用于确定足够数量的实验以及输入参数的推荐值。单变量和多变量控制图用于评估输出参数的统计控制。进行多目标优化以确定输入参数的最佳值。

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