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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >A New Algorithm for the Numerical Simulation of Machined Surface Topography in Multiaxis Ball-End Milling
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A New Algorithm for the Numerical Simulation of Machined Surface Topography in Multiaxis Ball-End Milling

机译:多轴球头铣削加工表面形貌数值模拟的新算法

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摘要

In milling process, surface topography is a significant factor that affects directly the surface integrity and constitutes a supplement to the form error associated with the workpiece deformation. Based on the tool machining paths and the trajectory equation of the cutting edge relative to the workpiece, a new and general iterative algorithm is developed here for the numerical simulation of the machined surface topography in multiaxis ball-end milling. The influences of machining parameters such as the milling modes, cutter runout, cutter inclination direction, and inclination angle upon the topography and surface roughness values are studied in detail. Compared with existing methods, the basic advantages and novelties of the proposed method can be resumed below. First, it is unnecessary to discretize the cutting edge and tool feed motion and rotation motion. Second, influences of cutting modes and cutter inclinations are studied systematically and explicitly for the first time. The generality of the algorithm makes it possible to calculate the pointwise topography value on any sculptured surface of the workpiece. Besides, the proposed method is proved to be more efficient in saving computing time than the time step method that is commonly used. Finally, some examples are presented and simulation results are compared with experimental ones.
机译:在铣削过程中,表面形貌是直接影响表面完整性的重要因素,并且是与工件变形相关的形状误差的补充。基于刀具的加工路径和切削刃相对于工件的轨迹方程,在此开发了一种新的通用迭代算法,用于多轴球头铣削中加工表面形貌的数值模拟。详细研究了铣削模式,刀具跳动,刀具倾斜方向和倾斜角度等加工参数对形貌和表面粗糙度值的影响。与现有方法相比,该方法的基本优点和新颖性可以在下面恢复。首先,不需要离散化切削刃以及刀具进给运动和旋转运动。其次,首次系统,明确地研究了切削方式和刀具倾角的影响。该算法的通用性使得可以在工件的任何雕刻表面上计算逐点形貌值。此外,该方法被证明比通常使用的时间步长方法在节省计算时间方面更为有效。最后,给出了一些例子,并将仿真结果与实验结果进行了比较。

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