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三维微细电火花伺服扫描加工工艺
李勇 ; 佟浩 ; 郁鼎文 ; 王扬 ; LI Yong ; TONG Hao ; YU Ding-wen ; WANG Yang
2010-05-13 ; 2010-05-13
关键词微细电火花加工 电极损耗 放电间隙伺服控制 三维扫描加工 辅助激振 micro EDM electrode wear servo control of discharge gap 3D scanning machining vibration assisted TG661
其他题名Servo Scanning Process of 3D Micro EDM
中文摘要为提高三维微细电火花加工的加工效率,从而达到工业应用目的,采用放电间隙伺服控制实时补偿电极损耗的技术路线,提出了三维微细电火花伺服扫描加工方法.基础实验验证了伺服扫描加工每层加工深度的一致性,研究了横向扫描加工速度对加工深度的影响规律.在小于1,mm2加工区域内的三维结构加工实验结果显示,伺服扫描加工可以便捷地实现三维微小结构的加工成型.进一步在工件与电极之间附加激振,可大幅度地提高放电脉冲的有效利用率以及加工效率.采用φ100,μm的钨丝电极,在铜试件上加工深度300,μm的典型三维形状,加工时间小于50,min.; To improve the machining efficiency of three dimensional micro electrical discharge machine(EDM)and then promote it into industrial use,a servo scanning EDM method was proposed in which electrode wear is compensated on real time by servo control of discharge gap.The consistency of machining depth on each scanning layer and the influence of transverse scanning velocity on machining depth were studied and verified experimentally.Machining experimental resultsshow that 3D micro structures within the area of 1,mm2 can be shaped conveniently by use of the servo scanning EDM proc-ess.And the effective electrical discharge ratio and machining efficiency are greatly improved further when a vibration is assisted between electrode and workpiece.In the case of a typical 3D micro structure with 300,μm depth on copper plate,it can be machined within 50,min by using tungsten electrode of φ100,μm.
语种中文 ; 中文
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/31125]  
专题清华大学
推荐引用方式
GB/T 7714
李勇,佟浩,郁鼎文,等. 三维微细电火花伺服扫描加工工艺[J],2010, 2010.
APA 李勇.,佟浩.,郁鼎文.,王扬.,LI Yong.,...&WANG Yang.(2010).三维微细电火花伺服扫描加工工艺..
MLA 李勇,et al."三维微细电火花伺服扫描加工工艺".(2010).
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