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Minimisation of Pose-Dependent Regenerative Vibrations for 5-Axis Milling Operations

机译:将 5 轴铣削操作中与姿态相关的再生振动降至最低

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摘要

The machining of free-formed surfaces, e.g., dies or moulds, is often affected by tool vibrations, which can affect the quality of the workpiece surface. Furthermore, in 5-axis milling, the dynamic properties of the system consisting of the tool, spindle and machine tool can vary depending on the tool pose. In this paper, a simulation-based methodology for optimising the tool orientation, i.e., tilt and lead angle of simultaneous 5-axis milling processes, is presented. For this purpose, a path finding algorithm was used to identify process configurations, that minimise tool vibrations based on pre-calculated simulation results, which were organised using graph theory. In addition, the acceleration behaviour of the feed drives, which limits the ability of adjusting the tool orientation with a high adaption frequency, as well as potential collisions of the tool, tool chuck and spindle with the workpiece were considered during the optimisation procedure.
机译:自由曲面(例如模具或模具)的加工经常受到刀具振动的影响,从而影响工件表面的质量。此外,在 5 轴铣削中,由刀具、主轴和机床组成的系统的动态特性会因刀具姿势而异。本文提出了一种基于仿真的优化刀具方向的方法,即同步 5 轴铣削工艺的倾斜角和导程角。为此,使用路径查找算法来识别过程配置,该配置基于预先计算的仿真结果(使用图论进行组织)将工具振动降至最低。此外,在优化过程中还考虑了进给驱动器的加速行为,这限制了以高适应频率调整刀具方向的能力,以及刀具、刀盘和主轴与工件的潜在碰撞。

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