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Challenges and developments of micro drill bit for printed circuit board: a review

机译:印刷电路板微型钻头的挑战和发展:回顾

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Purpose - The purpose of this paper is to present a clear picture of the challenges of micro drill bit and the developments of novel micro-drill bits for flexible circuit boards, environmental-friendly printed circuit boards (PCBs), high aspect ratio drill bit and ultra-small micro drill bit, as well as the developments of geometry design of micro drill bit. Design/methodology/approach - The paper details the developments trend and challenges of micro drill and PCBs first. Then the current research status of novel micro drill bits for flexible circuit boards, environmental-friendly PCBs, high aspect ratio drill bit, ultra-small micro drill bit are described. Finally, the developments of geometry design and drilling process are reviewed. Findings - To achieve excellent performance for drilling flexible PCB, a large helical angle, large flute/land ratio and small web thickness that guarantee the sharp evacuation capability, are adopted in drill bit design. A small helix angle and an appropriate primary face angle are employed for drill bit to process environmental-friendly printed circuit boards. It is beneficial to implement big helix angle, small primary face angles and small point angles in the design of ultra-small micro drill bit. An optimum web thickness and step feed should be taken into consideration in high aspect ratio drill bits design. Originality/value - The paper reviews different solutions of micro drill bits for the state-of-the-art PCB and the developments of geometry design of drill bit for printed circuit boards.
机译:目的-本文的目的是清晰展示微型钻头的挑战以及用于柔性电路板,环保印刷电路板(PCB),高长宽比钻头和微型钻头的新型微型钻头的发展。超小型微型钻头,以及微型钻头几何设计的发展。设计/方法/方法-本文首先详细介绍了微钻和PCB的发展趋势和挑战。然后介绍了用于柔性电路板的新型微型钻头,环保PCB,高长宽比钻头,超小型微型钻头的研究现状。最后,回顾了几何设计和钻孔工艺的发展。研究结果-为了获得出色的柔性PCB钻孔性能,在钻头设计中采用了大螺旋角,大凹槽/槽脊比和较小的腹板厚度,以确保强大的排气能力。钻头采用小螺旋角和适当的主端面角,以加工环保印刷电路板。在超小型微型钻头的设计中有利于实现大的螺旋角,小的主端面角和小的点角。在高纵横比钻头设计中,应考虑最佳的腹板厚度和阶梯进给。原创性/价值-本文回顾了最新PCB的微型钻头解决方案以及印刷电路板钻头几何设计的发展。

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