船舶及海洋工业直线焊接机器人自动化的嵌入式系统

Luciane B. Soares, Débora Debiaze de Paula, Patrick Baldez, Lucas Caetano, R. Nagel, D. Espíndola, Paulo L. J. Drews-Jr, S. Botelho
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引用次数: 1

摘要

海军和近海工业的持续增长要求过程稳定可靠,迫使工业跟上并处理最现代的发展方法。在这些工艺中,焊接是最常见的一种,在石油平台的建设中应用广泛。这种焊接在许多领域都有应用,除了海军以外,它对焊工来说是危险的,因为周围的环境含有烟雾和辐射。一旦焊接是一种常见的程序,工作空间的周围环境可能对人体健康有害,为焊接过程带来更多的自动化可以提高生产率水平,使人类操作员远离危险。然而,在海军工业中,这些项目是个性化的,这使得机器人细胞的实施过程变得困难。使用模块化机器人可以使焊接更加可靠,但这并不是最佳解决方案,因为它仍然需要在过程附近的操作人员来更改机器人的参数并检测可能的错误。因此,本工作提出了一种将这些机器人转变为自主系统的架构,能够检测待焊坡口的特征,在最少的人为干扰或没有人为干扰的情况下进行焊接,并检查最终产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Embedded System for Automation of Linear Welding Robot for Naval and Offshore Industry
The continuous growth of the naval and offshore industries require that the processes be steady and reliable, forcing the industries to keep up and dealing with the most modern methods of development. Among these processes, the welding is one of the most commons that has been used widely in the construction of oil platforms. The welding is used in many areas, beyond the naval, it being dangerous for the welder because the surroundings contain fumes and radiation. Once the welding is an usual procedure and the surroundings of the work space can be harmful to human's health, bring more automation for the welding process can improve the productivity levels and move human operators away from danger. However in the naval industry the projects are individualized, making the process of implementation of robotic cells difficult. Using modular robots turn the weld more reliable but are not a optimal solution due it still need a human operator near the process to change the robot's parameters and detect possible errors. So, this work proposes a architecture to turn these robots into autonomous systems, being able to detect the features of the groove to be weld, perform the welding with minimum of human interference or none and inspect the final product.
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