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Method for optimum calculus of machining parameters according to tool trajectories type based on milling process simulation

机译:基于铣削过程仿真的根据刀具轨迹类型最优计算加工参数的方法

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Virtual manufacturing systems can provide useful means for products to be manufactured without the need of physical testing on the shop floor. As a result, the time and cost of part production can be decreased. The paper presents the influence of tool path trajectory on surface deviation geometry when finishing inclined surfaces. The aim of the study is to optimize the milling process taking into account the milling strategy. The research was focused on ball end finishing because it is well known that in plain cutting, in the centre of the flat mill the cutting speed is vc = 0 m/min. According to that, the surface roughness is influenced by the fact that in this area a friction process occurs and not a cutting process. Six types of tool trajectories were simulated and surface deviation was evaluated.
机译:虚拟制造系统可以为要制造的产品提供有用的手段,而无需在车间进行物理测试。结果,可以减少零件生产的时间和成本。本文介绍了在精加工斜面时刀具路径轨迹对表面偏差几何形状的影响。研究的目的是考虑铣削策略来优化铣削过程。该研究的重点是球头精加工,因为众所周知,在平面切削中,在平磨机的中心切削速度为vc = 0 m / min。据此,表面粗糙度受到以下事实的影响:在该区域中发生摩擦过程而不是切割过程。模拟了六种刀具轨迹并评估了表面偏差。

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