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首页> 外文期刊>International journal of automation technology >Improvement of Chip Evacuation in Drilling of Lead-Free Brass Using Micro Drill
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Improvement of Chip Evacuation in Drilling of Lead-Free Brass Using Micro Drill

机译:使用微钻改善无铅黄铜钻孔中的排屑

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摘要

As the miniaturization of integrated circuits has progressed, the penetration holes of bonding jigs have become smaller. However, micro drills have a tendency to break when drilling small holes with high aspect ratios. Moreover, to reduce the impact on the environment, there has been a recent trend towards the use of lead-free brass as jig materials, but these are very difficult to drill. In the present study, small holes are drilled in lead-free brass using a micro drill, and the effects of web thinning, the helix angle, and the nick geometry on chip evacuation are investigated. The results indicate that drills with a helix angle of 15° have the longest tool life. The formation of a nick on the cutting edge is found to help decrease the thrust force during deep drilling. A drill with a relatively shallow nick perpendicular to the cutting edge have excellent chip discharge performance, and its cutting force is stable. Nick treatment effectively decreases the thrust force at a deep drilling position.
机译:随着集成电路的小型化的发展,接合夹具的通孔变得越来越小。但是,微型钻头在钻出具有高深宽比的小孔时有断裂的趋势。此外,为了减少对环境的影响,近来有使用无铅黄铜作为夹具材料的趋势,但是这些很难钻孔。在本研究中,使用微型钻在无铅黄铜上钻了小孔,并研究了薄带,螺旋角和切槽几何形状对切屑排出的影响。结果表明,螺旋角为15°的钻头具有最长的刀具寿命。发现在切削刃上形成刻痕有助于减少深钻期间的推力。垂直于切削刃的切口相对较浅的钻头具有出色的排屑性能,并且切削力稳定。尼克处理有效地减小了深钻位置的推力。

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