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Clamping Modeling in Automotive Flexible Workpieces Machining

机译:汽车柔性工件加工夹紧型材

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Predictive dynamic simulations of virtual machining rely on accurate representation of eigenmodes and damping factors. Historically, the modeling of flexible workpieces requires experimental updating of general modal properties, especially due to a simplified definition of fixtures. In the present work a substructuring-based approach for a virtual machining simulation is developed. It is demonstrated on a vibration-prone boring of a thin-walled automotive workpiece. Fixture-affected zones are modeled via MacNeal-type approach. This enables for addressing the influence of clamping in the mechanical modeling of dynamics, and for creating specific models of typical fixture configuration. During simulation vibrations occur on similar frequencies to those observed on real machining. Resulting surface defects follow alike patterns in simulation and experiment.
机译:虚拟加工预测动态模拟依靠精确表示的特征模糊和阻尼因子。 从历史上看,灵活工件的建模需要实验更新一般模态属性,特别是由于固定装置的简化定义。 在本作工作中,开发了一种基于虚拟加工模拟的基于结构的方法。 它在薄壁汽车工件的振动易钻孔上证明了它。 受影响的区域通过Macneal型方法进行建模。 这使得能够解决动态机械建模中钳位的影响,以及创建典型夹具配置的特定模型。 在模拟期间,在实际加工上观察到的那些频率上发生振动。 产生的表面缺陷遵循模拟和实验中的相似模式。

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