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High-Load Titanium Drilling Using an Accurate Robotic Machining System

机译:使用精确的机器人加工系统进行高负荷钛钻孔

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Robotic drilling systems have been used in the manufacture of large aerospace components for a number of years. Systems have been developed by several systems integrators in order to accurately drill materials from CFRP to Titanium. These systems, however, have been unable to achieve large diameter holes in Titanium due to reduced structural stiffness and end effector capabilities. Typically, large holes are either drilled using large cartesian CNC-controlled machines or drilled using automated drilling units (ADU). However, there is a pull from aerospace OEMS to move away from large monolithic machines, in favour of flexible robotic system. Flexible robotic systems provide a number of benefits for large structure assembly. The following report primarily outlines drilling trials conducted on the Accurate Robotic Machining System, during which holes from 25 mm to 32 mm ID were drilled in titanium implementing an empirical test schedule. Additionally, a discussion on the benefits of drilling large diameter holes using flexible robotic platforms.
机译:机器人钻井系统已用于制造大型航空航天组分的多年。已经由多个系统集成商开发了系统,以便将材料从CFRP精确钻取到钛。然而,这些系统由于结构刚度和末端效应器能力降低而无法在钛中获得大直径孔。通常,使用大笛卡尔CNC控制机器或使用自动钻孔装置(ADU)钻孔来钻孔。然而,有来自航空航天OEM的拉力,远离大型整体机器,有利于柔性机器人系统。灵活的机器人系统为大型结构组件提供了许多益处。以下报告主要概述了在精确的机器人加工系统上进行的钻井试验,在此期间,在实施经验测试时间表的钛中钻出25mm至32mm ID的孔。另外,讨论柔性机器人平台钻出大直径孔的益处。

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