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Design and modeling of integrated Hall-effect sensor based on-line thickness measurement device for incremental sheet forming processes

机译:基于线线厚度测量装置的集成霍尔效应传感器的设计与建模

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The use of Numerical Control and computers in manufacturing has enabled the development of new sheet forming processes. One of these flexible processes is called Incremental Sheet Forming (ISF) in which deformation is localized by the movement of a spherical or flat forming tool. ISF is carried out regularly by a CNC machine tool or by a Robot, which follows a tool-path generated by CAM programs, without the need for costly dies. Despite research progresses in understanding the deformation mechanism in ISF the process still needs a further optimization to guarantee the reliability required for industrial applications. This paper deals with the design of a new smart forming tool, applying FEM modeling and simulation, which is able to measure one of the key process parameters: the sheet thickness during the forming process. The authors analyze the possibility to use a Hall-effect sensor integrated into the forming tool for more precise on-line thickness measurement than what can be found in the literature and first results are reported.
机译:在制造中使用数值控制和计算机使得能够开发新的片材形成过程。这些灵活的过程中的一个称为增量片形成(ISF),其中变形是由球形或平坦成形工具的运动定位的。 ISF由CNC机床或机器人定期进行,该机器人遵循由CAM程序产生的工具路径,而无需昂贵的模具。尽管研究进展了解ISF中的变形机制,但该过程仍需要进一步优化,以保证工业应用所需的可靠性。本文涉及新的智能成型工具的设计,应用有限元建模和仿真,能够测量一个关键过程参数:在成型过程中的纸张厚度。作者分析了使用集成到成形工具中的霍尔效应传感器的可能性,以获得比在文献中的更精确的在线厚度测量和第一个结果。

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