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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Model for the prediction of 3D surface topography in 5-axis milling
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Model for the prediction of 3D surface topography in 5-axis milling

机译:5轴铣削中的3D表面形貌预测模型

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The paper deals with the prediction of the 3D surface topography obtained in 5-axis milling in function of the machining conditions. For this purpose, a simulation model for the prediction of machined surface patterns is developed based on the well-known N-buffer method. As in sculptured surface machining the feed rates locally vary, the proposed model can be coupled to a feed-rate prediction model. Thanks to the simulation model of 3D surface topography, the influence of the machining strategy on resulting 3D surface patterns is analyzed through an experimental design. Results enhance the major influence of the tool inclination on 3D topography. Surface parameters used in the study are strongly affected by the variation of the yaw angle. The effect of the feed rate is also significant on amplitude parameters. Finally, the analysis brings out the interest of using surface parameters to characterize 3D surface topography obtained in 5-axis milling.
机译:本文根据加工条件对5轴铣削中获得的3D表面形貌进行预测。为此,基于公知的N-缓冲方法开发了用于预测加工的表面图案的仿真模型。由于在雕刻表面加工中进给速度会局部变化,因此建议的模型可以与进给速度预测模型耦合。借助3D表面形貌的仿真模型,通过实验设计分析了加工策略对所得3D表面图案的影响。结果增强了工具倾斜度对3D地形的主要影响。研究中使用的表面参数受到偏航角变化的强烈影响。进给速度对振幅参数的影响也很明显。最后,分析引起了使用表面参数来表征5轴铣削中获得的3D表面形貌的兴趣。

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