首页> 外文会议>The Second International Conference on Precision Engineering and NANO Technology (ICPN '2002) Oct 28-30, 2002 Changsha, China >A Novel Investigation on Machining Dynamics, Instability and Surface Topography in Peripheral Milling
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A Novel Investigation on Machining Dynamics, Instability and Surface Topography in Peripheral Milling

机译:外围铣削加工动力学,不稳定性和表面形貌的新颖研究

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摘要

Based on an improved dynamic cutting force model proposed by the authors and the vibration model of peripheral milling, this paper presented a novel closed-loop machining dynamics model, for the purpose of predicting the dynamic cutting forces, cutter vibration , machining instability, and surface topography of the surface machined. The modal parameters of the machining dynamics system were identified with the experimental modal analysis using the real-time measured cutting force and the cutter vibration. Simulations are carried out to investigate the effectiveness of the proposed model. The dimensional accuracy of the surface machined can be estimated from the simulated surface topography. The simulation result reveals that the proposed model is capable of predicting the machining instability.
机译:基于作者提出的改进的动态切削力模型和外围铣削振动模型,提出了一种新颖的闭环加工动力学模型,以预测动态切削力,刀具振动,加工不稳定性和表面加工表面的形貌。使用实时测量的切削力和刀具振动,通过实验模态分析,确定了加工动力学系统的模态参数。进行仿真以研究所提出模型的有效性。可以从模拟的表面形貌估计加工表面的尺寸精度。仿真结果表明,所提出的模型能够预测加工的不稳定性。

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