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Analyzing the woodturning process using Taguchi methodology for dynamic systems

机译:使用Taguchi方法分析动力系统的木材车削过程

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This paper presents a study of the woodturning performance and efficiency using the Taguchi methodology for dynamic systems. According to this methodology, the woodturning process was characterized by two generic functions: for the first one, the specific cutting energy is related linearly to the cutting power, in the second with the amount of cut. These parameters were measured depending on two control factors namely the depth of cut and the rotational speed which were varied following a design of experiment. The variability, involved during woodturning, was considered by a single variable with two levels for which signal to noise ratios and sensitivities were calculated for each combination of the design. To improve productivity of woodturning, the work efficiency analysis was based on a larger signal to noise ratio with a maximized sensitivity; to improve machining quality, the performance analysis was based on a larger signal to noise ratio but a smaller sensitivity. The optimal conditions of woodturning were obtained corresponding to cutting performance and work efficiency with reduced variability.
机译:本文介绍了使用Taguchi动态系统的木工性能和效率的研究。根据这种方法,木材车削过程具有两个通用功能:第一个功能是特定的切割能量与切割能力成线性关系,第二个功能则与切割量成线性关系。这些参数是根据两个控制因素(即切割深度和旋转速度)测量的,这些控制因素是根据实验设计而变化的。木材车削过程中涉及的可变性由具有两个级别的单个变量来考虑,针对该变量针对设计的每种组合计算信噪比和灵敏度。为了提高木工的生产率,工作效率分析是基于较大的信噪比和最大的灵敏度。为了提高加工质量,性能分析基于较大的信噪比但较小的灵敏度。获得了最佳的木工车削条件,与切削性能和工作效率相对应,并减少了变化。

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