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首页> 外文期刊>American Journal of Nanotechnology >A Drives and Control Integrated Time-Domain Dynamic Analysis and Modeling Approach Applied To Ultra-Precision Machine Tools | Science Publications
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A Drives and Control Integrated Time-Domain Dynamic Analysis and Modeling Approach Applied To Ultra-Precision Machine Tools | Science Publications

机译:驱动和控制集成时域动态分析和建模方法,应用于超精密机床科学出版物

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> Problem statement: Machines dynamic performance depends not only upon the mechanical structure and components but also the drives and control system. However, the design of the machines is still at the nascent stage by working on an individual machine basis, hence lacks generic scientific approach and design guideline. Approach: Using computer models integrated drives and control system to predict the dynamic performance of ultra-precision machine tools can help manufacturers substantially reduce the lead time and cost of developing new machine. This study proposed a holistic integrated dynamic design and modeling approach, which supports analysis and optimization of the overall machine dynamic performance at the early design stage. The modeling and simulation process on an ultra-precision lathe machine tool is presented using the proposed approach. Results: Model of an ultra precision machine tool is established and used to predict the overall machine performance of the configuration. Deformations of base and fixed sideways in motion are calculated to demonstrate the valid of the method. Conclusion: Excellent accuracy on motion deformation is achieved. The designed and implemented integrated time-domain dynamic analysis and modeling system can predict the static and dynamic performance of ultra-precision machine tools, which can reduce the lead time and the cost of developing new machine.
机译: > 问题陈述:机器的动态性能不仅取决于机械结构和组件,还取决于驱动器和控制系统。但是,通过在单个机器上进行工作,机器的设计仍处于新生阶段,因此缺乏通用的科学方法和设计指南。 方法:使用集成了驱动器和控制系统的计算机模型来预测超精密机床的动态性能,可以帮助制造商大幅减少开发新机床的前置时间和成本。这项研究提出了一种整体的集成动态设计和建模方法,该方法支持在设计初期对整体机器动态性能进行分析和优化。利用所提出的方法,介绍了超精密车床的建模和仿真过程。 结果:建立了超精密机床的模型,并将其用于预测配置的整体机床性能。计算了运动基础和侧向固定的变形,证明了该方法的有效性。结论:在运动变形方面具有极好的精度。设计和实现的集成时域动态分析建模系统可以预测超精密机床的静态和动态性能,从而可以减少交货时间和开发新机床的成本。

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