基于云的流程设计在一个数字双生框架与集成和耦合技术模型的圆盘铣削

V. Rudel, Pascal Kienast, G. Vinogradov, P. Ganser, T. Bergs
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引用次数: 0

摘要

在本出版物中,通过cam集成和容器化技术模型的编排,提出了实现数字孪生(DT)框架的应用,对简化的叶片集成磁盘(blisk)演示器的精加工过程进行了fem耦合仿真。作为案例研究,介绍了沿价值链持续获取、处理和使用虚拟过程规划和仿真数据以及真实机器和传感器数据。用例展示了底层DT框架实现的成功应用,用于预测工件不断变化的动态行为,并在工艺规划阶段根据稳定的主轴速度进行预测,以及在实际制造阶段对其进行验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cloud-based process design in a digital twin framework with integrated and coupled technology models for blisk milling
In this publication, the application of an implemented Digital Twin (DT) framework is presented by orchestration of CAM-integrated and containerized technology models carrying out FEM-coupled simulations for the finishing process of a simplified blade integrated disk (blisk) demonstrator. As a case study, the continuous acquisition, processing and usage of virtual process planning and simulation data as well as real machine and sensor data along the value chain is presented. The use case demonstrates the successful application of the underlying DT framework implementation for the prediction of the continuously changing dynamic behavior of the workpiece and according stable spindle speeds in the process planning phase as well as their validation in the actual manufacturing phase.
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