...
首页> 外文期刊>SAE International Journal of Aerospace >Enhanced Robotic Automated Fiber Placement with Accurate Robot Technology and Modular Fiber Placement Head
【24h】

Enhanced Robotic Automated Fiber Placement with Accurate Robot Technology and Modular Fiber Placement Head

机译:具有精确机器人技术和模块化光纤铺放头的增强型机器人自动光纤铺放

获取原文
获取原文并翻译 | 示例
           

摘要

The process of robotic automated fiber placement has been enhanced by combining the technologies of an accurate articulated robotic system with a modular Automated Fiber Placement (AFP) head. The accurate robotic system is comprised of an off-the-shelf 6-axis KUKA Titan KR1000L750 riding on a linear axis with an option for an additional part rotator axis. Each of the robot axes is enhanced with secondary position encoders. The modular fiber placement head features a robotic tool changer which allows quick-change of the process heads and an onboard creel. The quick-change fiber placement head and simplified tow path yields terrific process reliability and flexibility while allowing head preparations to occur offline. The system is controlled by a Siemens 840Dsl CNC which handles all process functions, robot motion, and executes software technologies developed by Electroimpact for superior positional accuracy including enhanced kinematics utilizing a high-order kinematic model. Part programming and simulation are performed offline using CGTech VERICUT Composite Programming and VERICUT Composite Simulation. This combination of technologies results in a system that has high path accuracy and process flexibility at a lower cost than traditional fiber placement machines.
机译:通过将精确的铰接式机器人系统的技术与模块化的自动纤维铺放(AFP)头相结合,可以增强自动纤维铺放的过程。精确的机器人系统由现成的6轴KUKA Titan KR1000L750骑在线性轴上组成,还可以选择附加的零件旋转器轴。每个机器人轴都通过辅助位置编码器进行了增强。模块化纤维铺放头具有自动换刀装置,可快速更换加工头和机载纱架。快速更换的光纤铺放头和简化的拖丝路径可实现出色的工艺可靠性和灵活性,同时允许脱模头准备工作离线进行。该系统由西门子840Dsl CNC控制,该系统可处理所有过程功能,机器人运动,并执行Electroimpact开发的软件技术,以提供卓越的位置精度,包括利用高阶运动学模型进行增强的运动学。使用CGTech VERICUT复合编程和VERICUT复合模拟可离线进行零件编程和模拟。与传统的光纤铺放机相比,这种技术的结合使系统具有更高的路径精度和工艺灵活性,并且成本更低。

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