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Robotic additive manufacturing system featuring wire deposition by electric arc for high-value manufacturing

机译:机器人增材制造系统,具有通过电弧沉积的导线,可实现高价值制造

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Increasing demand from the high-value manufacturing industries of quality, productivity, efficiency and security aligns with the ambition and driving need for novel automated robotic systems. This paper describes the motivation, design and implementation phases of the SERFOW project (Smart Enabling Robotics driving Free Form Welding). SERFOW is an automated additive manufacturing arc and wire tungsten inert gas (TIG) welding prototype to support industrial manufacturing requirements of the nuclear, aerospace and automotive industry sectors. Key innovations are found in the integration of a 3D vision system with a robotic manipulator to perform automatic free-form fusion welding for the multiple layer additive material build-up required to expand Additive Manufacturing (AM) with minimum human intervention. Welding trials were performed on samples made of Super Duplex stainless steel alloy. Metallographic observations were performed to analyze the porosity distribution and penetration on the material after welding. Also, temperature, feritescope and tensile measurements were performed. The results showed that the welding and AM process performed with the SERFOW cell are within an acceptable quality tolerance range according to the ISO 5817 and the ASME A789 welding standards.
机译:高价值制造业对质量,生产率,效率和安全性的需求不断增长,这与对新型自动化机器人系统的雄心和不断增长的需求相吻合。本文介绍了SERFOW项目(智能驱动机器人驱动自由形式焊接)的动机,设计和实施阶段。 SERFOW是自动增材制造电弧焊和钨极惰性气体保护(TIG)焊接原型,可满足核工业,航空航天和汽车工业领域的工业制造要求。在将3D视觉系统与机器人操纵器集成在一起以实现自动自由形式的熔焊的过程中,发现了关键的创新,从而实现了以最少的人工干预即可扩展增材制造(AM)所需的多层增材积层。对超级双相不锈钢合金制成的样品进行了焊接试验。进行金相观察以分析焊接后材料上的孔隙率分布和熔深。另外,进行了温度,铁素体测量和拉伸测量。结果表明,根据ISO 5817和ASME A789焊接标准,使用SERFOW电池进行的焊接和AM工艺在可接受的质量公差范围内。

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