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Piezoelectric ultrasonic servo control feed drive renovate electro-discharge machining system industrial applications and transfer the technology into a new era

机译:压电超声波伺服控制进给驱动器革新了放电加工系统的工业应用并将技术转移到新时代

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摘要

This paper presents the state of art of the latest development in Electro-Discharge Machining (EDM) system technology. It covers the current and recent development using the electromagentic and piezoelectric ultrasonic servo control feed drive technology. The paper also demonstrates how the ultrasonic technology renovates the system and transfers its industrial applications into a new era. EDM process is one of the most common processes in automotive and aerospace industry. It is mainly used to machine and process alloys and very hard materials for key manufacturing components, such as film cooling holes for Turbine Blades, engine strip sheets, steel sheets for automotive industry, outer vehicle body, … etc. The EDM system that uses electromagnetic servo control feed drive has a number of teething issues and this indicated the necessity to employ a new technology that could overcome these issues and enhance the system level of precision, dynamic time response, machining stability, arcing phenomena and product surface profile. The research undertaken to evaluate both systems showed that the system recently developed using ultrasonic servo control feed drive has a clear improvement in system dynamic time response, stability, a notable reduction in arcing and short-circuiting teething phenomena. This has been verified through the inter-electrode gap voltage variation. The electron microscopic examinations into the machined samples using the ultrasonic system have also indicated a clear improvement in the surface profile of the machined samples.
机译:本文介绍了电火花加工(EDM)系统技术的最新进展。它涵盖了使用电动和压电超声伺服控制进给驱动技术的当前和最近的发展。本文还演示了超声技术如何改造系统并将其工业应用转移到新时代。 EDM工艺是汽车和航空航天工业中最常见的工艺之一。它主要用于加工和加工关键制造部件的合金和非常硬的材料,例如涡轮叶片的薄膜冷却孔,发动机板,汽车行业的钢板,车身外部等。使用电磁的EDM系统。伺服控制进给驱动器有很多问题,这表明必须采用一种可以克服这些问题并提高系统精度,动态时间响应,加工稳定性,电弧现象和产品表面轮廓的新技术。评估这两个系统的研究表明,最近使用超声伺服控制进给驱动器开发的系统在系统动态时间响应,稳定性,显着减少的电弧放电和短路磨牙现象方面有明显的改善。这已经通过电极间间隙电压变化得到了验证。使用超声系统对加工样品进行的电子显微镜检查还表明,加工样品的表面轮廓明显改善。

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  • 作者

    Shafik Mahmoud;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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