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Optimization of cutting conditions of YG15 on rough and finish cutting in WEDM based on statistical analyses

机译:基于统计分析的YDM15粗加工和精加工中切削条件的优化

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In this paper, the effects and the optimization of cutting parameters on surface roughness (Ra) and material removal rate (MRR) in the wire electrical discharge machining (WEDM) of high hardness tool steel YG15 are analyzed. In the WEDM process, the key process parameters, such as pulse-on time, pulse-off time, power, cutting feed rate, wire tension, wire speed, and water pressure, are optimized. Experimental data were initially collected based on the Taguchi method of experimental design, which are L_(18) (2~1 × 3~5) and L_(18) (2~1 × 3~4) Taguchi standard orthogonal array on rough and finish cutting experiments, respectively. The level of importance of the cutting parameters on the Ra and MRR was determined on both finish and rough cutting by using statistical analyses; average gap voltage is discussed in order to balance cutting efficiency and stability on both finish and rough cutting. In addition, comparative analysis of finish and rough cutting is drawn to analyze the difference between rough cutting and finish cutting. Then, regression models and signal-to-noise ratio are used to obtain the optimum cutting parameter combination. Finally, the results present the optimized MRR and Ra of the rough and finish process, respectively, and confirm the efficiency and abilities of the model.
机译:本文分析了切削参数对高硬度工具钢YG15的电火花加工(WEDM)中表面粗糙度(Ra)和材料去除率(MRR)的影响和优化。在WEDM工艺中,优化了关键工艺参数,例如脉冲接通时间,脉冲断开时间,功率,切削进给速率,线张力,线速度和水压。最初是根据Taguchi实验设计方法收集的实验数据,分别是L_(18)(2〜1×3〜5)和L_(18)(2〜1×3〜4)Taguchi标准正交阵列。分别完成切割实验。通过统计分析确定了精加工和粗加工时切削参数对Ra和MRR的重要性。为了平衡切削效率和精加工和粗加工的稳定性,讨论了平均间隙电压。此外,还进行了精加工和粗加工的比较分析,以分析粗加工和精加工之间的差异。然后,使用回归模型和信噪比获得最佳切削参数组合。最后,结果分别给出了粗加工和精加工的优化的MRR和Ra,并证实了模型的效率和能力。

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