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Structural analysis and chracterisation technique applied to a CNC vertical machining centre

机译:结构分析和特征化技术应用于CNC立式加工中心

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摘要

There is a requirement for improved 3D surface characterisation and reduced tool wear, when modern computer numerical-controlled (CNC) machine tools are operating at high cutting velocities, spindle speeds and feed-rates. This research project investigates vibration-induced errors on a CNC vertical machining centre under dynamic conditions. A model of the machine structural dynamics is constructed using the Finite Element Method (FEM) for the comprehensive analytical investigation of the machine vibration behaviour. The analytical model is then validated against the measured results obtained from an experimental modal analysis (EMA) investigation. A correlation analysis of the simulated and experimental modal analysis results is undertaken in order to improve the accuracy of the model and minimise modelling practice errors. The resulting optimised model will need further sensitivity analysis utilising parametric structural analysis and characterisation techniques in order to identify a potential for vibration reduction using passive methods.
机译:当现代计算机数控(CNC)机床以高切削速度,主轴速度和进给速率运行时,需要改善3D表面特征并减少刀具磨损。该研究项目研究了动态条件下CNC立式加工中心的振动引起的误差。使用有限元方法(FEM)构建了机器结构动力学模型,用于对机器振动行为进行全面的分析研究。然后针对从实验模态分析(EMA)研究获得的测量结果对分析模型进行验证。对模拟和实验模态分析结果进行相关分析,以提高模型的准确性并最大程度地减少建模实践中的误差。最终的优化模型将需要使用参数结构分析和表征技术进行进一步的敏感性分析,以便确定使用被动方法进行减振的潜力。

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