High-Precision Small-Diameter Deep Hole Drilling Using Cooling and Step Feed in PEEK Resin

M. Nomura, Shogo Ito, T. Fujii, Tsunehisa Suzuki
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引用次数: 3

Abstract

The objective of this study is to achieve a high-precision and high-efficiency machining process for industrial components of the polyether ether ketone (PEEK) resin, such as the inspection socket of a connector or semiconductor packages. However, the drilling of holes in PEEK resin is challenging. Because PEEK resin is a thermoplastic resin, it can soften or melt owing to the heat generated during processing, which causes burrs and degrades the accuracy of the machined hole, thereby resulting in quality deterioration and hindering post-processing. Since the thermal conductivity of plastic materials including PEEK resin is lower than those of metals, the heat generated during processing does not dissipate to the outside of the workpiece, and the effect of the processing temperature on the processing accuracy is significant, particularly during drilling. Hence, a workpiece is cooled via a cold gas supply in this study. The effect of cold gas cooling on the machined hole accuracy and cutting state in the small-hole machining of PEEK resin is investigated. Results show that cooling the workpiece effectively decreases the cutting temperature and improves the machined hole accuracy. Under the experimental conditions, the combination of nonstep drilling and cooling enables high-precision drilling at approximately the same accuracy as step drilling.
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采用PEEK树脂冷却步进加工的高精度小直径深孔加工
本研究的目的是实现聚醚醚酮(PEEK)树脂工业部件的高精度、高效率加工工艺,如连接器或半导体封装的检测插座。然而,在PEEK树脂中钻孔是具有挑战性的。由于PEEK树脂是热塑性树脂,加工过程中产生的热量会使其软化或熔化,产生毛刺,使加工孔的精度降低,从而导致质量恶化,阻碍后处理。由于包括PEEK树脂在内的塑料材料的导热性低于金属材料,因此加工过程中产生的热量不会散发到工件外部,加工温度对加工精度的影响是显著的,特别是在钻孔过程中。因此,在本研究中,工件是通过冷气源冷却的。研究了PEEK树脂小孔加工中冷气冷却对加工孔精度和切削状态的影响。结果表明,冷却工件能有效降低切削温度,提高加工孔精度。在实验条件下,无阶跃钻进与冷却相结合可以实现与阶跃钻进精度大致相同的高精度钻进。
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