首页> 外文会议>Annual Symposium of the Pattern Recognition Association of South Africa >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:可重构组装系统几何整体柔性末端执行器分析:对目标适应性抓握机制的几何结构

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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:向网络实体系统的生产前进的进步是第四次工业革命的前景。机器人装配方法的研究对于高效生产系统的开发至关重要。研究了相对于成功的末端效应夹持和生物启发夹持阑尾掺入的复合物和集成的装配过程。阑尾专门设计用于掌握在装配线中的拾取和放置程序内使用的掌握性的多功能性。目的是基于鳍射线效应研究和研究抓握附件的抓握性能。鳍射线效应是一种基于鱼翅片的动作的天然存在的现象,该鳍片内的特定花键/肋结构。通过应力和位移模拟,已经模拟了条件以说明脊柱结构的偏转。另外,应力模拟确定可以潜在地实现的各种符合性。结构壁的偏转表示抓握过程中的符合性的值。从夹持器的相互作用以及抓握物体所需的力因子来调查几何形状符合性的显着解释。根据样品质量保持载荷开发和测试不同的肋骨结构。

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