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首页> 外文期刊>Procedia CIRP >Tool Orientation Optimization for Reduction of Vibration and Deformation in Ball-end Milling of Thin-walled Impeller Blades
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Tool Orientation Optimization for Reduction of Vibration and Deformation in Ball-end Milling of Thin-walled Impeller Blades

机译:减少薄壁叶轮叶片球头铣削中振动和变形的刀具方向优化

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Due to the flexibility of one-side-supported thin impeller blades, machining defects such as overcut or undercut frequently occur, especially at the front and rear edge connecting the suction surface and the pressure surface, where the thickness are even less than 0.2 millimeter. Vibration and deformation are great challenges for engineers and should be mitigated for better quality. To this end, in the paper a method of tool orientation determination for vibration and deformation reduction during ball-end milling of flexible impeller blades is proposed. In order to reduce vibration level, carefully at the front and rear edge, the direction of resultant cutting force is attempted to be adjusted in the plane in which the stiffness of blade is relatively high. Thus, the cutting force component in the direction of high flexibility is small enough. As a result of modeling, two parts are included, i.e. modeling of tool-workpiece engagement and cutting force in the ball-end finish milling, FEM modeling of structure deformation of flexible workpiece. Machining experiments on 5-axis machining center Mikron UCP 800 verify that the optimized tool orientation could be used for deformation and vibration reduction in milling of flexible parts.
机译:由于一侧支撑的薄叶轮叶片的柔韧性,经常发生机械加工缺陷,例如过切或底切,特别是在连接吸力面和压力面的前后边缘处,其厚度甚至小于0.2毫米。振动和变形对工程师来说是巨大的挑战,应该减轻振动和变形以提高质量。为此,在本文中,提出了一种用于确定柔性叶轮叶片球头铣削过程中的振动和变形的刀具方向确定方法。为了减小振动水平,在前边缘和后边缘处小心地尝试在刀片的刚度相对较高的平面中调节合成切削力的方向。因此,沿高柔性方向的切削力分量足够小。作为建模的结果,包括两个部分,即,工具-工件接合和球形端铣削中的切削力的建模,柔性工件的结构变形的FEM建模。在5轴加工中心Mikron UCP 800上进行的加工实验证明,优化的刀具方向可用于柔性零件铣削中的变形和减振。

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