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A new cyber-physical adaptive control system for drilling of hybrid stacks

机译:用于钻孔混合堆栈的一种新的网络物理自适应控制系统

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A new cyber-physical adaptive control system (CPACS) is presented for drilling hybrid stacks. A generalized approach for features recognition, and learning, of spindle power signals was developed for real-time detection of tool wear level. Subsequently, a high fidelity model predicts the drilling forces and the damage at the layers and interfaces of the stacked panel. The CPACS uses these predictions to maximize the feedrate while maintaining the damage-free force limit at each layer. The system communicates with the CNC machine controller to continuously update the drilling conditions. Validation test showed improved productivity and extended tool life while preserving part quality. Crown Copyright (C) 2020 Published by Elsevier Ltd on behalf of CIRP. All rights reserved.
机译:展示了一种新的网络物理自适应控制系统(CPAC)用于钻孔混合叠层。 为实时检测刀具磨损水平的实时检测,开发了一种识别特征识别和学习的广义方法。 随后,高保真模型预测钻孔力和堆叠面板的层和界面处的损伤。 CPACS使用这些预测来最大化进给率,同时保持每层的无损力限制。 系统与CNC机器控制器通信以连续更新钻孔条件。 验证测试显示提高生产率和延长刀具寿命,同时保持部分质量。 Crown版权(c)2020由elsevier有限公司发布代表CIRP。 版权所有。

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