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MODELLING AND SIMULATION OF THE DYNAMIC CUTTING PROCESS AND SURFACE TOPOGRAPHY GENERATION IN NANO/MICRO CUTTING

机译:纳米/微切割动态切割过程和表面形貌的建模与仿真

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摘要

In nano/micro cutting process, the surface quality is heavily dependent on all the dynamic factors in machining including those from the material, tooling, cutting parameters, servo accuracy, mechanical structure deformation, and non-linear factors as well. The machined surfaces are generated based on the tool profile and the real tool path combining with the various external and internal disturbances. To bridge the gap between the machining conditions and the surface quality, the integrated simulation system presented involves the dynamic cutting process, control/drive system and surface generation module. It takes account all the intricate aspects of the cutting process, such as material heterogeneity, regenerative chatter, built-up edge (BUE), spindle run-out, environmental vibration, and tool interference, etc. The frequency ratio method is used to interpret the surface topography and texture formation. The proposed systematic modelling approach is verified by the cutting experiment.
机译:在纳米/微切割过程中,表面质量严重依赖于加工中的所有动态因素,包括来自材料,工具,切割参数,伺服精度,机械结构变形和非线性因子的所有动态因素。基于工具简档和与各种外部和内部干扰组合的真实刀路路径产生加工表面。为了弥合加工条件与表面质量之间的差距,提出的集成仿真系统涉及动态切割过程,控制/驱动系统和表面产生模块。考虑到切割过程的所有复杂方面,例如材料异质性,再生颤动,内置边缘(Bue),主轴输出,环境振动和刀具干扰等。频率比方法用于解释表面形貌和纹理形成。通过切割实验验证了所提出的系统建模方法。

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