首页> 外文会议>SAE AeroTech Congress Exhibition >Advanced Automated Milling, Drilling and Fastening Utilizing Parallel Kinematic Machines
【24h】

Advanced Automated Milling, Drilling and Fastening Utilizing Parallel Kinematic Machines

机译:采用平行运动机器的先进自动铣削,钻孔和紧固

获取原文

摘要

The improvements in Parallel Kinematic Machines (PKM) coupled with new innovative technologies, allow for Advanced Automated Milling, Drilling and Fastening in the Aerospace industry. Providing economical alternatives to processes that currently utilize highly customized machine tools, sacrificing flexibility and dynamics, or complex robotic cells sacrificing system capabilities with the rigidity and accuracy limitations of serial robots. The latest in PKM technology eliminates the ball joints that were mandatory in all previous PKM machines, as well as the heavy platforms or structures supporting the actuators. This allows for the strength and rigidity common to machine tools, but with the flexibility and high dynamics associated with standard serial robots. The new use of Auto-Calibration and cross lasers allow for highly accurate positioning, adaptation to a material surface, edge, datum, hole, etc. or to reference the machine to the adjacent work zone. Specific advanced automated applications will demonstrate the applications of drilling, milling, orbital drilling and fastening. Implementation of Multifunction End Effectors, using the rigidity, flexibility and accuracy of the PKM to position the Multifunction End Effector while providing the forces required, as well as high speed spindles. These advanced automated applications will include; drilling & fastening for wing assemblies, milling and trimming of wing panels, milling/drilling for wing root ends and stringers. These systems provide for flexible solutions that, in the past, have been difficult (if not impossible) for serial robotic systems, and very expensive and slow for dedicated custom machine tools to achieve. As the aerospace industry demands greater flexibility, and cost reduction, the implementation of parallel kinematics will be key in bridging the gap between serial robots.
机译:并联运动机器(PKM)的改进与新的创新技术相结合,允许在航空航天工业中进行先进的自动化铣削,钻井和紧固。提供目前利用高度定制的机床的经济替代品,牺牲灵活性和动力学,或牺牲系统能力的复杂机器人能力,具有串行机器人的刚性和精度限制。最新的PKM技术消除了所有先前PKM机器中强制性的球形接头,以及支撑致动器的重型平台或结构。这允许机床的强度和刚度,但具有与标准串行机器人相关的灵活性和高动态。自动校准和交叉激光器的新使用允许高度准确的定位,适应材料表面,边缘,基准,孔等或将机器参考相邻的工作区。具体的先进自动化应用程序将展示钻孔,铣削,轨道钻井和紧固的应用。使用PKM的刚性,灵活性和精度来实现多功能终端效应器,以在提供所需的力的同时定位多功能末端执行器,以及高速锭子。这些先进的自动化应用程序将包括;翼组件钻孔和紧固,翼面板铣削和修剪,磨削/钻孔机翼根末端和桁条。这些系统提供了灵活的解决方案,即过去的串行机器人系统难以(如果不是不可能),并且对于专用的定制机床实现非常昂贵和慢速。随着航空航天行业要求更大的灵活性和降低成本,并行运动学的实施将是桥接串行机器人之间的差距的关键。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号