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On Adaptive Control for Electrical Discharge Machining Using Vibroacoustic Emission

机译:基于振动声发射的放电加工自适应控制研究

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The article is related to the research of the parameters of vibroacoustic emission for development of the monitoring and adaptive control system for electrical discharge machining. The classical control system based on a response of electrical parameters does not give an adequate data in the cases of a new class of materials processing as conductive ceramics reinforced by conductive nano additives and carbon nanotubes and whiskers. The idle pulses, which are working on the destruction of the erosion products in the gap, count as working pulses. The application of the monitoring and control tools based on vibroacoustic emission gives adequate data about conditions in the working zone. The developed system is available to count only impulses involved in working on the destruction of the workpiece. The experiments were conducted on the samples of materials with a low melting point as austenitic steel and aluminum alloy, and hard alloys. The records of vibroacoustic signals were analyzed for detection of the monitoring and adaptive control criteria.
机译:本文旨在研究电声发射参数,以开发用于放电加工的监控和自适应控制系统。传统的基于电参数响应的控制系统在新型材料加工中没有提供足够的数据,这些材料是由导电纳米添加剂,碳纳米管和晶须增强的导电陶瓷。用于破坏间隙中腐蚀产物的空闲脉冲被视为工作脉冲。基于振动声发射的监视和控制工具的应用可提供有关工作区域条件的足够数据。开发的系统仅可用于计算与破坏工件有关的脉冲。实验是在低熔点材料(例如奥氏体钢和铝合金以及硬质合金)上进行的。分析了振动声记录,以检测监测和适应性控制标准。

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