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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Taguchi-based Six Sigma approach to optimize plasma cutting process: an industrial case study
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Taguchi-based Six Sigma approach to optimize plasma cutting process: an industrial case study

机译:基于Taguchi的6 Sigma方法优化等离子切割工艺:工业案例研究

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摘要

This case study outlines the use of Taguchi parameter design to optimize the roundness of holes made by an aging plasma-cutting machine. An L9 array is used in a Taguchi experiment design consisting of four controllable factors, each with three levels. With two non-controllable factors included in the setting, we conduct 36 experiments, compared to the 81 parameter combinations (four factors, three levels or 34) required in a traditional DOE setting. Therefore, using the Taguchi method significantly reduces the time and costs of a quality improvement process. Conducted for two response variables—bevel magnitude and the smallest diameter deviation of the hole—the Taguchi experiments gave the optimal combination A1B2C1D3 (small for tip size, 93 in/min for feed rate, 100 V for voltage, and 63A for amperage), which is verified with a confirmation run of 30 work pieces. All 30 cuts meet the quality requirement for subsequent assembly. Furthermore, statistical analysis indicates that the mean value and standard deviation of the confirmation run data are smaller than those before Taguchi parameter design is conducted.
机译:本案例研究概述了使用Taguchi参数设计来优化老化的等离子切割机制造的孔的圆度。 Taguchi实验设计中使用L 9 数组,该数组由四个可控因子组成,每个因子具有三个级别。与传统DOE设置所需的81个参数组合(四个因子,三个级别或3 4 )相比,在设置中包含两个不可控制的因子的情况下,我们进行了36个实验。因此,使用田口方法大大减少了质量改进过程的时间和成本。 Taguchi实验针对两个斜率和孔的最小直径偏差这两个响应变量进行了优化组合A 1 B 2 C 1 D 3 (尖端尺寸小,进给速度93 in / min,电压100 V,电流强度63A),并通过确认30个工件进行验证。所有30个切口均满足后续组装的质量要求。此外,统计分析表明,确认运行数据的平均值和标准偏差小于田口参数设计之前的平均值和标准偏差。

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