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Performance evaluation of mechanical micro-drilling, electrical discharge machining and laser beam machining on Nimonic 80A alloy

机译:Nimonic 80A合金的机械微钻,放电加工和激光束加工性能评估

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Micromachining techniques such as mechanical micro-drilling, electrical discharge machining (EDM) and laser beam machining (LBM) play an important role in the manufacturing of micro-devices used in mechanical, electronics, aerospace and medical applications. In this paper, an effort has been made to compare the performance of these micromachining techniques with regard to tool wear, burr formation and surface integrity. This is done by producing 20 micro-holes of approximately 800 μm diameter on a rectangular block (90×30×3 mmsup3/sup) of Nimonic 80A superalloy. TiAlN coated WC micro-drills, Cu electrodes and COsub2/sub laser beam are used to produce these holes in conventional micro-drilling, EDM and LBM, respectively. The quality of the drilled hole (diameter, surface roughness and micro-burr formation), tool diameter analysis, taper angle and material removal rate (MRR) are compared and reported. A comprehensive analysis is also carried out on overcut, which leads to hole inaccuracy. Results show that mechanical micro-drilling produces better results in the above mentioned characteristics in comparison to LBM and EDM techniques. The relatively better performance of mechanical micro-drilling is attributed to the usage of TiAlN coating on WC tool.
机译:机械加工,机械加工,电火花加工(EDM)和激光束加工(LBM)等微加工技术在制造用于机械,电子,航空航天和医疗应用的微设备中起着重要作用。在本文中,已经做出努力来比较这些微加工技术在刀具磨损,毛刺形成和表面完整性方面的性能。这是通过在Nimonic 80A高温合金的矩形块(90×30×3 mm 3 )上产生20个直径约为800μm的微孔来完成的。用TiAlN涂层的WC微钻,Cu电极和CO 2 激光束分别在常规微钻,EDM和LBM中产生这些孔。比较并报告了钻孔质量(直径,表面粗糙度和微毛刺形成),刀具直径分析,锥角和材料去除率(MRR)。还对过切进行了全面分析,这会导致孔不准确。结果表明,与LBM和EDM技术相比,机械微钻孔在上述特性方面产生了更好的结果。机械微钻的相对更好的性能归因于在WC工具上使用了TiAlN涂层。

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