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1)  electric discharge machining technique
电火花加工工艺
2)  EDM
电火花加工
1.
The Status Detect of EDM Based on Labivew Software;
基于Labview软件的电火花加工放电状态检测
2.
Electroforming of the Tool Electrode in EDM of the Integral Impeller;
整体叶轮电火花加工电极的成形电铸
3.
A New Design Conception to High-efficiency and Energy-saving EDM Pulse Power Supply;
一种新型高效节能电火花加工脉冲电源的研究
3)  electrical discharge machining(EDM)
电火花加工
1.
The dimensional accuracy of electrical discharge machining(EDM) is greatly influenced by the overcut resulting from the discharge gap and electrode wear.
电火花加工工件的尺寸精度受过切量影响,而过切量的大小主要取决于放电间隙和电机损耗。
2.
A novel micro electrical discharge machining(EDM) method is described.
论述了一种新的微细电火花加工方法。
3.
To research mechanism in electrical discharge machining(EDM) of insulating materials,the experimental researches were done in EDM of insulating ceramics Si3N4 by using assisting electrode method.
采用辅助电极法,对绝缘性陶瓷材料Si3N4的电火花加工进行了实验研究。
4)  Electrical discharge machining
电火花加工
1.
Determination of the optimal machining conditions in electrical discharge machining;
电火花加工中最优加工条件的确定
2.
A theoretical model of temperature for Al2O3 ceramics during electrical discharge machining(EDM) was established.
建立了Al2O3陶瓷电火花加工过程中温度场的数学模型,并基于有限元理论,利用工程数值模拟软件ANSYS对Al2O3陶瓷电火花加工的温度场分布进行了模拟,对加工后放电坑的深度和宽度进行了预测。
3.
The chief machining methods of PCD material which is being studied or have been used is presented,which is grinding,lapping,electrical discharge machining,laser processing,chemical processing,ultrasonic machining and combined machining.
介绍了国内外正在研究和已经应用的聚晶金刚石的主要加工方法,即磨削加工、研磨加工、电火花加工、激光加工、化学加工、超声加工和复合加工,并对这些加工方法的特点、机理及影响因素、适用范围进行了分析。
5)  Electric discharge machining
电火花加工
1.
An intelligent control algorithm for electric discharge machining;
电火花加工智能控制算法研究
2.
Disturbance factors analysis of electric discharge machining;
影响电火花加工进程的因素分析
3.
Study on method of processing Solid turbine with electric discharge machining;
整体涡轮电火花加工方法的研究
6)  Electrical Discharge Machining (EDM)
电火花加工
1.
After Lissajous figures were introduced, we presented a driven technique of elliptical motion, on which inverse piezoelectric effect of piezoelectric crystals was based, for Electrical Discharge Machining (EDM).
为了提高电火花加工的稳定性,提出了椭圆运动微驱动技术。
2.
Comparative measurements of percentage of silicon on the surface of workpiece by powder-mixed electrical discharge machining (EDM) were carried out.
对不同加工条件下混粉电火花加工后工件表面的硅含量进行了对比测量。
3.
In order to understand the influences of polarity effect on powder-mixed electrical discharge machining (EDM), several experiments had been conducted in both kerosene with silicon powder mixed and pure kerosene.
为研究极性效应对混粉电火花加工的影响规律 ,采用钢对钢加工、铜对钢加工两种电极组合在添加硅粉的煤油工作液及普通煤油工作液中进行实验 ,并更换不同的极性 ,考察了两极材料的去除率和表面粗糙度 ,结果表明负极总能得到更高的材料去除率 ,而正极总能得到更低的表面粗糙度值。
补充资料:电火花
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性质:电极间击穿放电时的强烈流柱。大量电火花汇集成电弧。电火花的温度高达摄氏数千度,不仅能直接引起可燃物燃烧,还能使金属熔化、飞溅,构成二次火源。产生电火花的处所和操作过程有(1)刀开关、断路器、接触器等电气设备操作过程中。(2)直流电动机的电刷与换向器的滑动接触处、绕线式异步电动机的电刷与滑环的滑动接触处。(3)电气设备或电气线路的绝缘发生过电压击穿、发生短路、故障接地、导线断开或接头松动时。(4)熔断器的熔体断开。(5)雷电放电、静电放电、电磁感应放电等。

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