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ROBOT-TO-ROBOT COLLABORATION FOR FIXTURELESS ASSEMBLY:CHALLENGES AND OPPORTUNITIES IN THE AUTOMOTIVE INDUSTRY

机译:无限制集会的机器人到机器人协作:汽车行业的挑战和机遇

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This paper summarizes the latest developments in robot-to-robot collaboration for fixtureless assembly. In addition, some of the technology challenges and potential applications in the automotive industry are described. Fixtureless assembly systems have been developed to increase the flexibility of body shop systems. These systems eliminate the need for using dedicated fixtures to set the geometry of body assemblies. A key technology enabler for a fixtureless assembly process is robot-to-robot collaboration based on perception and advanced control solutions. In a fixtureless assembly process, robots move and hold parts together in the geometry setting pose for assembly instead of using fixtures. In this paper the technology requirements and performance results of a production-relevant demonstration cell are presented. Moreover, the technology and performance requirements to use the fixtureless approach in other automotive assembly applications are reviewed. Results show that dimensional performance from the newly developed fixtureless process was acceptable and within the tolerance range. Initial cost estimate show that a fixtureless process offers a significant cost benefit over a conventional assembly process, especially for a multi-style production line or when new styles are frequently introduced.
机译:本文总结了无限制地组装机器人到机器人协作的最新发展。此外,还描述了汽车行业中的一些技术挑战和潜在应用。已经开发了可固定装置组装系统以提高车身店系统的灵活性。这些系统消除了使用专用夹具来设置身体组件的几何形状。无固定组装过程的关键技术推动器是基于感知和高级控制解决方案的机器人到机器人协作。在固定装置组装过程中,机器人在几何图中移动和保持部件,用于组装而不是使用固定装置。在本文中,提出了生产相关演示单元的技术要求和性能结果。此外,综述了在其他汽车组装应用中使用无限性方法的技术和性能要求。结果表明,来自新开发的无限性过程的尺寸性能是可接受的,在公差范围内。初始成本估算表明,无限性的过程在传统的装配过程中提供了显着的成本效益,特别是对于多种式生产线或经常引入新风格时。

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