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Ultrasonic Assisted Electrical Discharge Machining of Ti-6Al-4V Alloy

机译:Ti-6Al-4V合金的超声辅助放电加工

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摘要

In this research, an attempt was made to investigate the influence of copper tool vibration with ultrasonic frequency on output parameters in the electrical discharge machining of Ti-6Al-4V. The selected input parameters for the experiment comprise of ultrasonic vibrations of tool, current and pulse duration and the outputs are tool wear ratio (TWR), material removal rate (MRR), and stability of machining process and surface integrity of a workpiece, including surface roughness, thickness of recast layer, and formation of micro cracks. Scanning electron microscope and X-Ray diffraction were employed to examine the surface integrity of the workpiece. The results revealed that tool vibration with ultrasonic frequency enhances MRR via increasing normal discharges and decreasing arc discharges and open circuit pulses. Also, by using ultrasonic vibrations in finishing regimes, the density of cracks and TWR decrease while in roughing regimes, the thickness of recast layer, density of cracks, and TWR increase.
机译:在这项研究中,试图研究铜工具的超声波频率对Ti-6Al-4V放电加工中输出参数的影响。实验选择的输入参数包括工具的超声振动,电流和脉冲持续时间,输出为工具磨损率(TWR),材料去除率(MRR),加工过程的稳定性以及工件(包括表面)的表面完整性粗糙度,重铸层的厚度以及微裂纹的形成。扫描电子显微镜和X射线衍射被用来检查工件的表面完整性。结果表明,超声频率的工具振动通过增加正常放电,减少电弧放电和开路脉冲来增强MRR。而且,通过在精加工状态下使用超声振动,裂纹和TWR的密度降低,而在粗加工状态下,重铸层的厚度,裂纹密度和TWR增大。

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