首页> 外文会议>International Conference on Advanced Robotics and Mechatronics >Process monitoring and industrial informatics for online optimization of Welding Procedure Specifications (WPS) in Gas Tungsten Arc Welding (GTAW) – Industry 4.0 for robotic additive remanufacturing of aeroengine components
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Process monitoring and industrial informatics for online optimization of Welding Procedure Specifications (WPS) in Gas Tungsten Arc Welding (GTAW) – Industry 4.0 for robotic additive remanufacturing of aeroengine components

机译:用于在线优化焊接程序规范(WPS)的过程监测和工业信息学燃气钨弧焊(GTAW) - 工业4.0用于机器人添加剂的空疗成分的再制造

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Industry 4.0, the scheme that drives the fourth industrial revolution, has been, since its conception, reshaping the manufacturing industry. To advance current industrial chains into the smart factories of the future, cyber-physical systems are monitored and communicate with each other to ensure transparent interoperability, giving birth to the emerging field of industrial informatics. To enable the repair and recycling of high value jet engine compressor blades, additive manufacturing is utilized. The complex geometries and asymmetrical wear of the blades require robotic welding systems to be trained by experienced human welding engineers in order to be able to adapt to differing components. Demonstrated in this paper, process monitoring and industrial informatics are introduced to the adaption of Welding Procedure Specifications (WPS) utilized by a developing robotic system for the additive remanufacturing of aeroengine components. Using a novel variant of Gas Tungsten Arc Welding (GTAW), the robotic welding system under development is a product of an industry-academia collaboration between the Enabling Sciences for Intelligent Manufacturing Group (ESIM) of the University of Sheffield and VBC Instrument Engineering Ltd.
机译:行业4.0,推动第四届工业革命的计划,自于其概念以来,重塑了制造业。为了推进当前的工业链进入未来的智能工厂,网络物理系统被监控并互相沟通,以确保透明的互操作性,从而生下工业信息学的新兴领域。为了使高价值喷射发动机压缩机叶片的修复和回收,利用添加剂制造。刀片的复杂几何形状和不对称磨损需要由经验丰富的人焊接工程师训练的机器人焊接系统,以便能够适应不同的部件。本文证明了工艺监测和工业信息学被引入由开发机器人系统利用的焊接程序规范(WPS)的适应,以进行Aeroengine组分的添加剂再制造。利用新型气体钨弧焊(GTAW),开发的机器人焊接系统是谢菲尔德大学智能制造集团(ESIM)与VBC仪器工程有限公司的智能制造集团(ESIM)的支持科学之间的产业合作产品。

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