首页> 外文会议>2017 Pattern Recognition Association of South Africa and Robotics and Mechatronics >Analysis of flexible end-effector for geometric conformity in reconfigurable assembly systems: Testing geometric structure of grasping mechanism for object adaptibility
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Analysis of flexible end-effector for geometric conformity in reconfigurable assembly systems: Testing geometric structure of grasping mechanism for object adaptibility

机译:可重构装配系统中柔性末端执行器的几何一致性分析:测试抓取机构的几何结构以实现对象适应性

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Advancements in production heading towards cyber-physical systems has entertained the prospects of the fourth industrial revolution. Research in robotic assembly methods was essential in the development of efficient production systems. Complex and integrated assembly processes with respect to successful end-effector gripping and biologically inspired gripper appendage incorporation were investigated. Appendages were designed specifically for the versatility of grasping used within pickup and placement procedures in assembly lines. The aim was to research and investigate gripping properties of gripping appendages based on the Fin Ray Effect®. The Fin Ray Effect®is a naturally occurring phenomenon based on the movement of fish fins concerning the specific spline/rib structure within the fin itself. Through stress and displacement simulations, conditions have been simulated to illustrate the deflection of the spine structures. In addition, the stress simulation determined various degrees of conformity that can be potentially achieved. The deflection of the wall of the structure represents the value of conformity within a gripping procedure. Significant interpretations were made from the investigation of geometric shape compliance from the interaction of the gripper and the force factors required for gripping an object. Varying rib structures were developed and tested according to a sample mass holding load.
机译:朝着网络物理系统发展的进步已经实现了第四次工业革命的前景。机器人组装方法的研究对于开发高效的生产系统至关重要。对于成功的末端执行器抓取和受生物启发的抓取器附件的结合,研究了复杂的集成过程。附件是专门为装配线的拾取和放置过程中使用的抓握多功能性而设计的。目的是研究和研究基于Fin Ray效果的夹持附件的夹持特性\ n ®\n。 Fin Ray效果\ n ® \ nis是一种基于鱼鳍运动的自然现象,涉及鱼鳍本身内特定的花键/肋结构。通过应力和位移模拟,模拟了条件以说明脊柱结构的变形。另外,应力模拟确定了可以潜在实现的各种一致性程度。结构壁的挠度表示抓取过程中的合格值。从对抓取器的相互作用和抓取物体所需的力因数的几何形状顺应性的研究中得出了重要的解释。根据样品的质量保持载荷,开发并测试了多种肋结构。

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