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Machining characteristics of nickel-based alloy with positive polarity blasting erosion arc machining

机译:正极喷砂腐蚀电弧加工镍基合金的加工特性

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A nickel-based high-temperature alloy widely used in aerospace engines is a typical difficult-to-cut material by conventional machining processes due to its high-temperature mechanical strength and toughness. Blasting erosion arc machining (BEAM), a new type of electrical discharge machining (EDM) method, is capable of removing such materials with a very high material removal rate and a low tool wear ratio. This paper presents experimental investigations in machining characteristics and machined surface integrity of the nickel-based alloy GH4169 (similar to Inconel718) by positive polarity blasting erosion arc machining (positive BEAM). The test results imply a possibility to improve the surface integrity with positive BEAM compared with a regular negative one. In this work, a three-factor, three-level machining performance experiment was carried out to examine the effects of the machining parameters such as discharge peak current, flushing inlet pressure, and pulse duration on the machining performances of material removal rate, tool wear ratio, and surface roughness. The experimental results show that positive BEAM is capable of greatly improving the machined surface integrity. The surface roughness decreased from 274 mu m (under negative polarity BEAM) down to 31 mu m (under positive polarity BEAM). Additionally, fewer micro-cracks and a thinner heat-affected zone on the workpiece surface can be observed. It also reveals that by optimizing the combination of the negative and the positive BEAM, favorable machining performances of high material removal rate and finer surface roughness are possible. By utilizing the polarity effects, the machining allowance for the subsequent semi-finishing processes such as cutting can be further reduced.
机译:航空航天发动机中广泛使用的镍基高温合金由于其高温机械强度和韧性而成为常规机加工工艺中典型的难切削材料。喷砂电弧加工(BEAM)是一种新型的放电加工(EDM)方法,能够以很高的材料去除率和较低的刀具磨损率去除此类材料。本文介绍了通过正极喷砂腐蚀电弧加工(正BEAM)对镍基合金GH4169(类似于Inconel718)的加工特性和加工表面完整性进行的实验研究。测试结果表明,与常规的负离子束相比,正离子束可以改善表面完整性。在这项工作中,进行了三因素,三级加工性能实验,以检验加工参数(如放电峰值电流,冲洗入口压力和脉冲持续时间)对材料去除率,刀具磨损的加工性能的影响。比例和表面粗糙度。实验结果表明,正的BEAM能够大大改善加工表面的完整性。表面粗糙度从274μm(在负极性BEAM下)降低到31μm(在正极性BEAM下)。另外,在工件表面上可以观察到更少的微裂纹和更薄的热影响区。这也表明,通过优化正负BEAM的组合,可以实现高材料去除率和更精细的表面粗糙度的良好加工性能。通过利用极性效应,可以进一步减少用于随后的半成品加工(例如切削)的加工余量。

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