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首页> 外文期刊>Machining Science and Technology >ELECTRIC DISCHARGE MILLING AND MECHANICAL GRINDING COMPOUND MACHINING OF SILICON CARBIDE CERAMIC
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ELECTRIC DISCHARGE MILLING AND MECHANICAL GRINDING COMPOUND MACHINING OF SILICON CARBIDE CERAMIC

机译:碳化硅陶瓷的电火花铣削和机械磨削复合加工

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摘要

Silicon carbide (SiC) ceramics have been widely used in modern industry. However, the manufacture of SiC ceramics is not an efficient process. This paper proposes a new technology of machining SiC ceramics with electrical discharge milling and mechanical grinding compound method. The compound process employs the pulse generator used in electrical discharge machining, and uses a water-based emulsion as the machining fluid. It is able to effectively machine a large surface area on SiC ceramics with a good surface quality. In this paper, the effects of pulse duration, pulse interval, peak voltage, peak current and feed rate of the workpiece on the process performance parameters, such as material removal rate, relative electrode wear ratio and surface roughness, have been investigated. A L_(25) orthogonal array based on Taguchi method is adopted, and the experimental data are statistically evaluated by analysis of variance and stepwise regression. The significant machining parameters, the optimal combination levels of machining parameters, and the mathematical models associated with the process performance are obtained. In addition, the workpiece surface microstructure is examined with a scanning electron microscope and an energy dispersive spectrometer.
机译:碳化硅(SiC)陶瓷已被广泛用于现代工业中。然而,SiC陶瓷的制造不是有效的过程。本文提出了一种采用电火花铣削和机械研磨复合方法加工SiC陶瓷的新技术。复合工艺使用放电加工中使用的脉冲发生器,并使用水基乳液作为加工液。它能够以良好的表面质量有效地加工SiC陶瓷上的大表面积。在本文中,研究了脉冲持续时间,脉冲间隔,峰值电压,峰值电流和工件的进给速率对工艺性能参数(如材料去除率,相对电极磨损率和表面粗糙度)的影响。采用基于Taguchi方法的L_(25)正交阵列,并通过方差分析和逐步回归对实验数据进行统计评估。获得了重要的加工参数,加工参数的最佳组合水平以及与过程性能相关的数学模型。另外,用扫描电子显微镜和能量分散光谱仪检查工件表面的微观结构。

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