哈尔滨工业大学机电工程学院,哈尔滨,150001
纸质出版:2021
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候少杰,白基成,刘晓萌,刘欢. 电火花加工放电状态特性试验研究[J]. 航空制造技术, 2021, 64(10): 80-85.
HOU Shaojie, BAI Jicheng, LIU Xiaomeng, LIU Huan. Experimental Investigation on Discharge States Characteristics of EDM. 航空制造技术, 2021, 64(10): 80-85.
候少杰,白基成,刘晓萌,刘欢. 电火花加工放电状态特性试验研究[J]. 航空制造技术, 2021, 64(10): 80-85. DOI: 10.16080/j.issn1671-833x.2021.10.080.
HOU Shaojie, BAI Jicheng, LIU Xiaomeng, LIU Huan. Experimental Investigation on Discharge States Characteristics of EDM. 航空制造技术, 2021, 64(10): 80-85. DOI: 10.16080/j.issn1671-833x.2021.10.080.
电火花加工间隙放电状态对加工质量有重要影响,为了避免电弧等不正常放电,放电状态检测系统需要根据不同的放电特性对放电状态进行鉴别。针对此问题,采用单脉冲放电法进行试验,探究火花放电和电弧放电的不同特性。在不同试验条件下,分别对两种放电电压波形进行快速傅里叶变换,发现在较低频段内,火花放电的频率幅值与电弧放电存在明显差异,因此以 0~5MHz 频段的平均频率幅值作为研究对象,研究不同变量对它的影响规律。试验结果表明,开路电压和脉宽对两种放电状态的平均频率幅值影响较小,而电极材料和工件材料对其影响较大,火花放电状态的平均频率幅值高于电弧放电,–30dB 能够作为鉴别火花放电与电弧放电的阈值。
The machining quality is influenced significantly by the gap discharge states in electrical discharge machining (EDM). In order to avoid abnormal discharges such as arc
the discharge states needed to be identified by the discharge state detection system according to different discharge characteristics. In order to solve this problem
the single pulse discharge method was used to explore the different characteristics of spark discharge and arc discharge. Under different experimental conditions
the two kinds of discharge voltage waveforms were respectively transformed by fast fourier transformation (FFT). It is found that the frequency amplitude of spark discharge is significantly different from that of arc discharge in the lower frequency range. Therefore
the average frequency amplitude of 0–5MHz frequency range was taken as the research object to study the influence of different variables on it. The experimental results show that the open-circuit voltage and pulse duration have little effect on the average frequency amplitude of the two discharge states
while the electrode materials and workpiece materials have great influence on them. The average frequency amplitude of the spark discharge state is higher than that of the arc discharge
–30dB can be used as the threshold to distinguish the spark discharge and the arc discharge.
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