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Development of a Dynamic Substructuring Framework to Facilitate in Situ Machining Solutions Using Mobile Machine Tools

机译:开发动态子框架以促进使用移动机床的原位加工解决方案

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In situ machining of large parts using mobile machines that are moved to part location(s) allows these parts to be machined, repaired and maintained directly on the site of operation. However, every new part and location that the machine is moved to results in different boundary conditions for the machine-part system which singularly influences the dynamics of the combined system and makes for difficult planning of first-time right machining solutions. To facilitate the planning of in situ machining solutions, this paper presents a dynamic substructuring framework that can predict assembled system dynamics by combining measured and/or modelled substructural response of the individual components under varying base/part/contact/configuration characteristics. Substructural coupling is formulated in the frequency and the continuous-time domains for representative examples of the mobile machine being connected to two different part/base models. The frequency based substructuring approach is used to predict tool point dynamics, results of which are instructive for designing of machining strategies to ensure stable productive cutting conditions. State-space substructural coupling predicts the changing nature of the plant model under the varying influences, which provides guidelines for designing appropriate control strategies and selection of appropriate CNC control parameters. Methods presented aid establishment of experimental guidelines for planning of first-time right in situ machining solutions.
机译:使用移动机器原位加工大型零件,移动机器可以移动到零件位置,从而可以直接在操作现场进行这些零件的加工,修理和维护。然而,机器要移动到的每个新零件和位置都会导致机器零件系统的边界条件不同,这会单独影响组合系统的动力学,并给首次正确加工方案的规划带来困难。为了便于原位加工解决方案的规划,本文提出了一个动态子结构框架,该框架可以通过组合在变化的基础/零件/接触/配置特征下单个组件的测量和/或建模子结构响应来预测组装后的系统动力学。在频域和连续时域中建立了子结构耦合,用于将移动机器的代表性示例连接到两个不同的零件/基本模型。基于频率的子结构化方法用于预测刀尖动态,其结果对于设计加工策略以确保稳定的生产切削条件具有指导意义。状态空间子结构耦合预测了在变化的影响下工厂模型的变化性质,这为设计适当的控制策略和选择适当的CNC控制参数提供了指导。方法提出了帮助建立实验指导方针,以计划首次就地加工解决方案的计划。

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