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A virtual machine concept for real-time simulation of machine tool dynamics

机译:用于机床动力学实时仿真的虚拟机概念

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摘要

When designing CNC machine tools it is important to consider the dynamics of the control, the electrical components and the mechanical structure of the machine simultaneously. This paper describes the structure and implementation of a concept for real-time simulation of such machine tools using a water jet cutting machine as an application. The concept includes a real control system, simulation models of the dynamics of the machine and a virtual reality model for visualisation. The real-time capability of the concept, including the simulation of electrical and rather detailed mechanical component models is proofed. The validation process indicates good agreement between simulation and measurement, but suggests further studies on servo motor, connection and flexibility modelling. However, already from the initial simulation results presented in this paper it can be concluded that the influence of structural flexibility on manufacturing accuracy is of importance at desired feeding rates and accelerations. The fully automated implementation developed in this work is a promising base for dealing with this trade-off between productivity and accuracy of the manufacturing process through multidisciplinary optimisation.
机译:在设计CNC机床时,重要的是要同时考虑控制的动力学,电机的电气部件和机械结构。本文介绍了使用喷水切割机作为应用程序对此类机床进行实时仿真的概念的结构和实现。该概念包括一个实际的控制系统,机器动力学的仿真模型以及用于可视化的虚拟现实模型。该概念的实时能力得到了证明,包括电气和相当详细的机械组件模型的仿真。验证过程表明仿真和测量之间具有良好的一致性,但建议对伺服电机,连接和灵活性建模进行进一步研究。但是,从本文介绍的初始仿真结果已经可以得出结论,在所需的进给速度和加速度下,结构柔性对制造精度的影响非常重要。通过多学科优化,这项工作中开发的全自动化实施方案为解决生产率和制造过程的准确性之间的折衷提供了有希望的基础。

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