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ROBOTIC HANDLING OF JET ENGINE TURBINE BLADE USING COLLABORATIVE ROBOT

机译:喷气发动机涡轮叶片的机器人处理使用协作机器人

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The work discussed in this paper is a part of the project to build an automated robotic cell for removing two tabs from a Jet Engine Turbine Blade using a 3-axis CNC milling machine and for laser marking several lines of part information onto the blade body. The two tabs are extensions of the Turbine Blade, in which the necessary part information is ingrained. The part information is used as the identification of the Turbine Blade throughout its entire manufacturing process. The two tabs also serve as anchors during the milling of the body of the Turbine Blade in a 5-axis CNC machine. Once the milling of the blade body is done, the two tabs will be removed from the blade body. Removing tabs is currently being done in the same 5-axis CNC milling machine. It is expensive and wastes 5-axis machine time. Therefore, using a 3-axis CNC milling machine to remove tabs is proposed with a robot to tend machines to be cost-effective. Due to the complexity of the Turbine Blade having 3-D wavy geometry, it adds challenges in undertaking any operations on the blade with automation. As automation is becoming relevant in many industries including the Aerospace, the method discussed in this paper can be used as a general guideline for carrying out material handling tasks with a thin part of wavy geometry by using a collaborative robot.
机译:本文讨论的工作是该项目的一部分,用于构建自动机器人电池,用于使用3轴CNC铣床从喷气发动机涡轮刀片移除两个标签,并用于将几个部分信息标记到刀片体上。两个突片是涡轮叶片的延伸部,其中必要的部分信息被加入。部分信息用作整个制造过程中涡轮机叶片的识别。两个突片也用作在5轴CNC机器中铣削涡轮机叶片的主体期间的锚。一旦铣刀机身的铣削,将从叶片主体中除去两个突片。删除选项卡目前在相同的5轴CNC铣床中进行。它昂贵并浪费了5轴机器时间。因此,使用3轴CNC铣床以拆下突片,用机器人提出倾向于经济效益的机器人。由于具有3-D波浪几何形状的涡轮叶片的复杂性,它会在自动化中承诺在刀片上进行任何操作来增加挑战。由于自动化在包括航空航天的许多行业中变得相关,本文讨论的方法可以用作通过使用协作机器人进行具有波浪几何形状的薄部分的材料处理任务的一般指导。

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