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MACHINING OF EXTERNAL CYLINDRICAL SURFACES ON A RAM ELECTRICAL DISCHARGE MACHINE

机译:在RAM放电机上加工外部圆柱表面

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As other nonconventional machining methods, the electrical discharge machining is applied when the workpieces materials are difficult to be machined by classical machining methods or the surfaces could not be obtained in efficient conditions by classical machining methods. Such a situation could appear, for example, when test pieces must be separated from materials whose machining by classical methods is difficult. Taking into consideration the necessity to detach a cylindrical test piece from a workpiece made of a high resistance metallic alloy, the problem of using the electrical discharge machining was formulated. An initial experimental test by using the common work motion of the tool electrode from up to down highlighted high shape errors, due to the accumulation in the work zone of the particles detached from the workpiece and from the tool electrode, as a consequence of electrical discharge machining process. A second set of experiments were developed, placing the test piece over the electrode tool and ensuring a work motion of workpiece from up to down; in this situation, a diminishing of the shape error was noticed. The second set of experiments highlighted a relatively reduced conicalness of the machined surface and a low decrease of the machining speed. as the penetration depth of the tool electrode in the workpiece increases, too.
机译:与其他非常规加工方法一样,当工件材料难以通过传统加工方法进行加工或者无法在有效条件下通过传统加工方法获得表面时,可以采用放电加工。例如,当必须将试件与难以通过传统方法进行机加工的材料分离时,就会出现这种情况。考虑到有必要从由高电阻金属合金制成的工件上拆下圆柱形试件,提出了使用放电加工的问题。通过使用工具电极从上到下的共同工作运动进行的初始实验测试突出显示了高形状误差,这是由于放电导致从工件和工具电极分离出的颗粒在工作区域中的积聚加工过程。进行了第二组实验,将试件放在电极工具上,并确保工件从上到下的运动。在这种情况下,注意到形状误差减小。第二组实验强调了加工表面的圆锥度相对降低,加工速度的降低程度较低。随着工具电极在工件中的穿透深度也增加。

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