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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Optimal Workpiece Setup for Time-Efficient and Energy-Saving Five-Axis Machining of Freeform Surfaces
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Optimal Workpiece Setup for Time-Efficient and Energy-Saving Five-Axis Machining of Freeform Surfaces

机译:最佳的工件设置用于较Questiform表面的节省节能五轴加工

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摘要

Energy consumption in five-axis machining of freeform surfaces can be considerably large for large-size parts. This paper presents a study on how to setup the workpiece in order to minimize the energy consumption without modifying the toolpath itself. For an arbitrary freeform workpiece, the way how it is setup on the working table highly affects the machine's kinematic behavior, which dominates the overall processing time and energy consumption. Taking into account the speed and acceleration limit of each axis of the machine, we first establish the energy consumption model as a function of the workpiece setup. However, this original model involves certain critical physically pertinent coefficients (such as the moment of inertial of a rotary table) which are usually unavailable in practice. Instead, by exploring insightful geometric characteristics of the five-axis machine, an alternative energy consumption model is established which is independent of those hard-to-obtain coefficients. A simple algorithm is then designed to optimize this model. Both computer simulations and physical cutting experiments demonstrate that, when compared with an arbitrary setup, the optimized workpiece setup is able to achieve a significant saving (as much as 50%) in both energy consumption and total machining time, both using a same tool path.
机译:对于大型零件,FreeForm表面的五轴加工中的能耗可以很大。本文提出了关于如何设置工件的研究,以便在不修改刀具路径本身的情况下最小化能量消耗。对于任意自由形式工件,如何在工作台上设置的方式高度影响机器的运动行为,这些行为主要处理整体处理时间和能量消耗。考虑到机器每个轴的速度和加速度,我们首先将能耗模型建立为工件设置的功能。然而,该原始模型涉及某些临界物理相关的系数(例如旋转台的惯性矩),其通常在实践中不可用。相反,通过探索五轴机器的富轴几何特性,建立了独立于那些难以获得的系数的替代能量消耗模型。然后设计一种简单的算法来优化该模型。计算机模拟和物理切割实验都表明,与任意设置相比,优化的工件设置能够在能量消耗和总加工时间内实现显着的节省(多达50%),都使用相同的工具路径。

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