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首页> 外文期刊>The Archive of Mechanical Engineering >Simulation-Based Stability Analysis of a Thin-Walled Cylinder During Turning with Improvements Using an Adaptronic Turning Chisel
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Simulation-Based Stability Analysis of a Thin-Walled Cylinder During Turning with Improvements Using an Adaptronic Turning Chisel

机译:基于薄壁圆筒的转弯过程中基于仿真的稳定性分析,并采用自适应旋转凿子进行了改进

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The dynamics of the turning process of a thin-walled cylinder in manufacturing is modeled using flexible multibody system theory. The obtained model is time varying due to workpiece rotation and tool feed and retarded, due to repeated cutting of the same surface. Instabilities can occur due to these consecutive cuts that must be avoided in practical application because of the detrimental effects on workpiece, tool and possibly the machine. Neglecting the small feed, the stability of the resulting periodic system with time-delay can be analyzed using the semi-discretization method. The use of an adaptronic tool holder comprising actuators and sensors to improve the dynamic stability is then investigated. Different control concepts, two collocated and two model-based, are implemented in simulation and tuned to increase the domain of stable cutting. Cutting of a moderately thin workpiece exhibits instabilities mainly due to tool vibration. In this case, the stability boundary can be significantly improved. When the instability is due to workpiece vibration, the collocated concepts fail completely. Model based concepts can still obtain some improvements, but are sensitive to modeling errors in the coupling of workpiece and tool.
机译:使用柔性多体系统理论对薄壁圆筒车削过程中的动力学进行建模。所获得的模型由于工件旋转和刀具进给而随时间变化,并且由于重复切削同一表面而延迟。由于这些连续的切口会导致不稳定性,在实际应用中必须避免这些切口,因为这会对工件,工具以及可能的机器造成不利影响。忽略小进料,可以使用半离散化方法分析所得的具有时滞的周期系统的稳定性。然后研究了使用包括致动器和传感器的自适应工具架来改善动态稳定性。在仿真中实现了两个并置的和两个基于模型的不同控制概念,并对其进行了调整,以增加稳定切削的范围。主要由于工具振动,切割中等厚度的工件会表现出不稳定性。在这种情况下,可以显着改善稳定性边界。当不稳定性是由于工件振动引起的时,并置概念将完全失败。基于模型的概念仍然可以获得一些改进,但是对工件和工具耦合中的建模错误敏感。

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