首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >DETERMINING THE TOOL LIFE OF A CEMENTED CARBIDE DRILL USING OPTIMIZED PROCESS, DELIVERY SYSTEM, AND DRILL DESIGN PARAMETERS IN DEEP HOLE DRILLING USING ENVIRONMENT FRIENDLY MACHINING METHOD
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DETERMINING THE TOOL LIFE OF A CEMENTED CARBIDE DRILL USING OPTIMIZED PROCESS, DELIVERY SYSTEM, AND DRILL DESIGN PARAMETERS IN DEEP HOLE DRILLING USING ENVIRONMENT FRIENDLY MACHINING METHOD

机译:使用环境友好的加工方法,使用优化的工艺,输送系统和深孔钻探钻探设计参数确定碳水化合物钻探的刀具寿命

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摘要

Near dry machining or Minimum Quantity Lubrication (MQL) methodology appears to be a valid solution to meet environmental challenges of metal removal processes. However, in order to implement environmentally friendly machining into high production manufacturing environments, it is imperative to invent a robust solution for a wide variety of machined features. In previous work by the authors, capabilities of the MQL process, calibrated for machining extremely deep holes with length to diameter (L/D) ratio of up to 15, were proven. An optimal machining solution was developed using the Box and Behnken experimental design approach, and it was demonstrated that cemented carbide drills with proper cutting geometry and MQL settings can be used for deep hole drilling of aluminum. This work, focused on developing a production ready application, proved that MQL technology is also robust enough to achieve adequate tool life for high volume manufacturing requirements. It actually exhibited that such approach may even exceed tool life requirements currently enforced for conventional processes using gun drills or G-drills. In addition, machining time was significantly reduced with this innovative technology achieving productivity approximately 7 times higher than in traditional drilling operations. Considering these achievements, MQL has been demonstrated to be the drilling technology of future that will help reducing capital investments into production machinery and minimize landfill discharges of high production manufacturing facilities.
机译:近干加工或最小数量润滑(MQL)方法似乎是一个有效的解决方案,以满足金属去除过程的环境挑战。然而,为了实现对高生产制造环境的环保加工,必须为各种机加工特征发明一种强大的解决方案。在以前的作者的工作中,已证明用于加工长度(L / D)的极端深孔的MQL工艺的能力,验证了最多15的非常深孔。使用盒子和Behnken实验设计方法开发了最佳加工解决方案,并证明了具有适当切割几何形状和MQL设置的硬质合金钻头可用于铝的深孔钻孔。这项工作,专注于开发生产准备应用,证明MQL技术也足够强大,以实现高批量生产要求的适当工具寿命。它实际上表明,这种方法甚至可能超过目前使用枪钻头或G钻的传统过程强制执行的工具寿命要求。此外,随着这项创新技术实现了大约比传统钻井作业高约7倍的创新技术,加工时间明显减少。考虑到这些成就,MQL已被证明是未来的钻探技术,将有助于将资本投资降低到生产机械中,并尽量减少高生产制造设施的垃圾填埋场排放。

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