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Quality prediction and compensation in multi-station machining processes using sensor-based fixtures

机译:使用基于传感器的夹具在多工位加工过程中进行质量预测和补偿

摘要

New fixture technologies, such as sensor-based fixtures, will significantly improve part quality through cutting-tool path compensations in multi-station machining processes (MMPs). Successful application of sensor-based fixtures depends on the development of new variation reduction methodologies to predict part quality in MMPs and detect the critical machining stations whose critical manufacturing variations can be estimated by installing a suitable sensor-based fixture. In this paper, a methodology is proposed to facilitate the implementation of sensor-based fixtures in MMPs. This methodology involves three key steps: (1) an identification of station-induced variations; (2) a sensor placement optimization method for designing sensor-based fixtures; and (3) a compensability analysis. A case study is conducted to demonstrate the effectiveness of the methodology.
机译:新的夹具技术,例如基于传感器的夹具,将通过多工位加工过程(MMP)中的刀具路径补偿来显着提高零件质量。基于传感器的固定装置的成功应用取决于新的减少变化的方法的开发,以预测MMP中的零件质量并检测关键的加工工位,这些关键的加工工位可通过安装合适的基于传感器的固定装置来估算其关键的制造偏差。在本文中,提出了一种方法来促进MMP中基于传感器的固定装置的实现。该方法涉及三个关键步骤:(1)识别台站引起的变化; (2)一种用于设计基于传感器的固定装置的传感器放置优化方法; (3)可补偿性分析。进行了案例研究以证明该方法的有效性。

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