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Optimizing the economic efficiency by micro-drill life improvement during deep-hole drilling in the 212-Valve manufacturing process

机译:通过在212阀门制造过程中的深孔钻削期间的微钻寿命改进来优化经济效率

摘要

The micro-drilling process by robodrills in the production of valves at Waters Corporation is the bottleneck caused by the short drill life. This thesis analyzed the chip formation and removal during the process to improve the tool life. The effects of the tool materials, geometry and peck drilling procedures were investigated. Based on these studies, a new micro drill bit, TYl 30, was selected from the commercial market and the test results for drilling 0.2794 mm holes in the workpiece made of 316-stainless steel showed that it lasted for 120 holes, 5 times longer than the currently used drill bit. An experimental study on various peck drilling procedures demonstrated the advantage of the quadratic pecking procedure, further increasing the tool life by 2 times. Upon the implementation of the new drill bit and the quadratic pecking procedure, the 212-Valve production lead time is estimated to be reduced by 11% and the EDM process will not be starved since the bottleneck process has been improved.
机译:沃特世公司的阀门生产中,抢劫钻的微钻工艺是钻探寿命短造成的瓶颈。本文分析了切屑的形成和去除过程中,以提高刀具寿命。研究了工具材料,几何形状和啄钻程序的影响。基于这些研究,从市场上选择了新型微型钻头TYl 30,在由316不锈钢制成的工件上钻0.2794毫米孔的测试结果表明,该钻头可持续120孔,是钻头的5倍。当前使用的钻头。对各种啄钻程序的实验研究证明了二次啄程序的优势,使刀具寿命进一步延长了2倍。在实施新的钻头和二次啄形程序后,估计212气门的生产提前期将减少11%,并且由于瓶颈工艺得到了改善,因此EDM工艺将不会饿死。

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