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Micro-EDM drilling of tapered holes for industrial applications

机译:用于工业应用的锥形孔的微型EDM钻孔

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This papers details the development of a novel technique to produce reverse tapered micro-holes (EDM electrode exit diameter is larger than EDM electrode entry diameter) using EDM (electro-discharge machining), to a production standard that could be applied to real products in industry. Existing EDM systems are generally used to produce straight, parallel-walled holes. However there are certain application areas where tapered holes, especially reverse taper, can give an advantage. One such application area is where fluid is flowing through an orifice (entering at the large diameter and exiting at the small diameter). A reverse tapered hole increases the coefficient of discharge of the hole. Existing EDM systems generally produce poor quality reverse tapered holes and in most cases it is not possible. This paper reports the development of a new technique which enables reverse tapered holes to be produced. Tapered holes with 100 mum diameter at electrode entry and 160 mum diameter at electrode exit can be produced with this technique. The quality of the holes produced is examined using a novel 3D impression technique, as well as SEM, surface roughness, and 3D optical measurements.
机译:本文详细介绍了一种新技术的开发,该技术使用EDM(电火花加工)生产反向锥形微孔(EDM电极出口直径大于EDM电极入口直径),并达到了可应用于实际产品的生产标准。行业。现有的EDM系统通常用于生产直的,平行壁的孔。但是,在某些应用领域,锥形孔(特别是反向锥孔)可以发挥优势。一种这样的应用区域是流体流过孔的地方(以大直径进入而以小直径流出)。倒锥形孔会增加孔的排放系数。现有的EDM系统通常会产生质量较差的反向锥形孔,并且在大多数情况下是不可能的。本文报道了一种新技术的发展,该技术可以生产倒锥形孔。可以使用此技术生产在电极入口处直径为100毫米,在电极出口处直径为160毫米的锥形孔。使用新颖的3D压印技术以及SEM,表面粗糙度和3D光学测量来检查产生的孔的质量。

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