EDM pulse control: a design approach

S. Kher, A. Dua
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引用次数: 3

Abstract

The electro discharge machining operation has become relatively simple with the advent of CNC machines where the operator skills have been taken over by the skills built into the CNC. This is not so in the case of manual machines, where the operator skill is very critical to getting the final product finish; this being very true for a country like India, where most of the EDM users continue to use manual machines due to the prohibitive costs involved with CNC. An attempt has been made here to provide CNC like features in a manual ram type spark erosion machine at a fraction of the cost of a CNC, so that it is available to most of the users. One of the large hurdles in the EDM field is to ensure high material removal rates with better and predictable finishes and not getting the workpiece and tool damaged due to arcing or short-circuiting etc. This involves special waveforms to be produced for the eroding current, special h/w to take protective/corrective actions in case of a fault or an imminent fault and the presence of a good servo system. For this design, it is assumed that a good servo system is available and only the other two points are taken care of here. The scheme depicted involves the generation and alteration of the eroding current waveforms and the incorporation of special controls to take care of the fault conditions.
电火花加工脉冲控制:一种设计方法
随着数控机床的出现,电火花加工操作变得相对简单,操作员的技能已经被内置在数控系统中的技能所取代。在手动机器的情况下就不是这样了,在手动机器中,操作员的技能对最终产品的完成非常关键;对于像印度这样的国家来说,这是非常正确的,由于CNC涉及的成本过高,大多数EDM用户继续使用手动机器。一个尝试已经在这里,以CNC的成本的一小部分,在手动冲压式火花侵蚀机提供CNC类似的功能,使它是提供给大多数用户。电火花加工领域最大的障碍之一是确保高材料去除率和更好的可预测的光洁度,并且不会因电弧或短路等而损坏工件和工具。这包括为腐蚀电流产生的特殊波形,在发生故障或即将发生故障时采取保护/纠正措施的特殊h/w,以及良好的伺服系统的存在。对于本设计,假设有一个良好的伺服系统,这里只考虑其他两点。所描述的方案涉及腐蚀电流波形的产生和改变,并结合特殊控制来照顾故障条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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