中国机械工程
中國機械工程
중국궤계공정
CHINA MECHANICAl ENGINEERING
2012年
6期
725-728
,共4页
刘志东%曹银风%邱明波%田宗军%黄因慧
劉誌東%曹銀風%邱明波%田宗軍%黃因慧
류지동%조은풍%구명파%전종군%황인혜
电火花%高阻硅%进电方式%电阻%随动进电
電火花%高阻硅%進電方式%電阻%隨動進電
전화화%고조규%진전방식%전조%수동진전
electrical discharge machining(EDM) ance%follow-- up conduction%high resistivity silicon%conduction mode%resist
进行了高阻半导体硅的放电铣削加工实验,通过检测脉冲放电电压和电流波形,对固定、旋转、随动三种进电方式下的加工情况进行了对比。结果表明:固定进电方式下,由于进电点会逐步生成不导电的钝化膜,接触电阻不断增大,回路中的总电阻不断增大,放电峰值电流逐步减小,最终导致无法加工;旋转进电方式下,由于进电电极与加工区域距离增大,导致放电回路中的体电阻不断增大,放电峰值电流也会逐步减小;随动进电方式下,放电回路中进电电极会不断刮除产生的钝化膜且极间距离维持不变,因此接触电阻和体电阻能保持始终稳定,放电加工稳定性较好。
進行瞭高阻半導體硅的放電鐉削加工實驗,通過檢測脈遲放電電壓和電流波形,對固定、鏇轉、隨動三種進電方式下的加工情況進行瞭對比。結果錶明:固定進電方式下,由于進電點會逐步生成不導電的鈍化膜,接觸電阻不斷增大,迴路中的總電阻不斷增大,放電峰值電流逐步減小,最終導緻無法加工;鏇轉進電方式下,由于進電電極與加工區域距離增大,導緻放電迴路中的體電阻不斷增大,放電峰值電流也會逐步減小;隨動進電方式下,放電迴路中進電電極會不斷颳除產生的鈍化膜且極間距離維持不變,因此接觸電阻和體電阻能保持始終穩定,放電加工穩定性較好。
진행료고조반도체규적방전선삭가공실험,통과검측맥충방전전압화전류파형,대고정、선전、수동삼충진전방식하적가공정황진행료대비。결과표명:고정진전방식하,유우진전점회축보생성불도전적둔화막,접촉전조불단증대,회로중적총전조불단증대,방전봉치전류축보감소,최종도치무법가공;선전진전방식하,유우진전전겁여가공구역거리증대,도치방전회로중적체전조불단증대,방전봉치전류야회축보감소;수동진전방식하,방전회로중진전전겁회불단괄제산생적둔화막차겁간거리유지불변,인차접촉전조화체전조능보지시종은정,방전가공은정성교호。
Electrical discharge milling experiments on high resistivity semiconductor silicon were conducted,and processing conditions under three kinds of conduction modes as fixed, rotating, and follow--up were compared. Results show:in fixed conduction mode,as the non--conductive passive film is gradually formed on the electrical conduction spot, contact resistance increases, total resistance in the circuit continues to rise, discharge peak current decreases,and as a result, the machining process is unable to continue; in rotating conduction mode, as the distance between the inlet--electrode and machining area getting long, bulk resistance in the discharge circuit increases, and consequently dis- charge peak current gradually decreases; in follow--up moving conduction mode, the inlet--electrode in discharge circuit will continuously clear off the generated passive films and maintain the distance between electrodes, therefore, contact resistance stability of condition in discharge machining. and bulk resistance remain steady, leading to the good