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The influence of supporting force on machining stability during mirror milling of thin-walled parts

机译:薄壁零件镜铣过程中支撑力对加工稳定性的影响

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摘要

Mirror milling has been regarded as an effective way for large monolithic thin-walled parts machining. However, the supporting force not only improves the stiffness of the cutting point but also affects the dynamic behavior of the machining system. Essentially, the influence mechanism of supporting force on the mirror milling stability should be analyzed. Firstly, a 3-DOF dynamic system model has been developed considering the supporting head-workpiece interaction during mirror milling. And then, the evolution of modal parameters of thin-walled parts under different supporting forces is investigated with a series of impulse harmer tests, which will supply the dynamic parameters for the mirror milling stability lobes prediction using the full-discretization method. On this basis, the optimum supporting force can be determined according to the relationship of the limited cutting depth and the supporting force. At last, the analysis resulted was verified with a series of mirror milling slot test. From the comparison, the optimum supporting force could maintain the stable mirror milling and avoid excess deformation simultaneously.
机译:镜面铣削被认为是大型整体薄壁零件加工的有效方法。然而,支撑力不仅改善了切割点的刚度,而且影响了加工系统的动态行为。基本上,应分析支撑力对镜面铣削稳定性的影响机理。首先,考虑到镜面铣削期间的支撑头工件相互作用,开发了三维动态系统模型。然后,通过一系列脉冲横静脉测试研究了不同支撑力下薄壁部件的模态参数的演变,这将使用全离散化方法为镜面研磨稳定性Lobes预测提供动态参数。在此基础上,可以根据有限切削深度和支撑力的关系来确定最佳支撑力。最后,通过一系列镜面铣削槽试验验证了分析。从比较来看,最佳支撑力可以保持稳定的镜面研磨并同时避免过量变形。

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