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MICRO ELECTRO DISCHARGE MILLING OF FREEFORM MICRO-FEATURES WITH HIGH ASPECT RATIO

机译:高纵横比的自由形态微特征的微放电铣削

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摘要

Micro Electrical Discharge Machining (μEDM) technology is widely used to process conductive materials, regardless to their hardness and strength, and realize micro-sized feature components for industrial application. μEDM proves to be a very competitive fabrication technology since micro-sized features within 1 urn of accuracy and with high surface quality (<0.1 urn Ra) can be attained. When High Aspect Ratio (HAR) micro-features are machined via uEDM milling, the main problem is to identify the technological parameters and settings mainly affecting the process performance. In the present study the influence of the adjustment factor and flushing conditions are investigated and discussed for the machining of HAR cavities with different Fill Factor (FF). Material Removal Rate (MRR) and Tool Wear Ratio (TWR) are evaluated when deep cavities having variable square sections are machined on Ni-Cr-Mo steel workpiece. All tests are performed using a state of the art micro-EDM milling machine, with a Tungsten Carbide electrode tool and a dielectric oil for flushing. The experimental results presented here highlight different trends in the machining performance in dependence of AR and FF. In particular, MRR exhibits a decreasing trend where the curve slopes are strictly related to the FF and the initial adjustment factor. On the contrary,TWR, for higher FF, displays two distinct trends characterized by opposite slopes in each curve. Finally a nozzle for micro-injection with varying Aspect Ratio and Fill Factor is machined and presented as demonstrator.
机译:微放电加工(μEDM)技术被广泛用于处理导电材料,无论其硬度和强度如何,并实现用于工业应用的微型特征部件。 μEDM被证明是一种极具竞争力的制造技术,因为可以获得尺寸精度在1 um内且具有较高表面质量(<0.1 um Ra)的微尺寸特征。通过uEDM铣削加工高长宽比(HAR)微特征时,主要问题是确定主要影响工艺性能的工艺参数和设置。在本研究中,研究和讨论了调整因子和冲洗条件对具有不同填充因子(FF)的HAR腔体加工的影响。在Ni-Cr-Mo钢工件上加工具有可变方形截面的深型腔时,将评估材料去除率(MRR)和工具磨损率(TWR)。所有测试均使用先进的微型EDM铣床,碳化钨电极工具和用于冲洗的介电油进行。此处给出的实验结果强调了取决于AR和FF的加工性能的不同趋势。特别是,MRR呈现下降趋势,其中曲线斜率与FF和初始调整因子严格相关。相反,对于较高的FF,TWR显示两个不同的趋势,每个曲线的斜率都相反。最后,加工出具有不同长宽比和填充系数的微注射喷嘴,并作为演示器展示。

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