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首页> 外文期刊>International Journal of Mechanical Sciences >Roughness control method for five-axis flank milling based on the analysis of surface topography
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Roughness control method for five-axis flank milling based on the analysis of surface topography

机译:基于表面形貌分析的五轴侧面铣削粗糙度控制方法

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摘要

In five-axis flank milling, the surface roughness always varies within a relatively large scale due to the variable geometric feature of the non-developable ruled surface. This variation in roughness is an unstable factor that leads to poor machining quality at local positions on the machined surface. To solve these problems, this paper presents a surface roughness control method using feed rate optimization for five-axis flank milling based on the analysis of surface topography. First, the surface topography is predicted by a novel elliptical model. Based on this model, the influences of cutter runout and workpiece curvature on the surface profile height are analysed. Then, the surface roughness is expressed as a function of the local curvature at each cutting location. Finally, an overdetermined system of nonlinear equations is derived that allows the feed rate to be adjusted for providing an even roughness distribution on the machined surface. A series of cutting tests are performed to validate the proposed theory. The results show that the roughness uniformity and machining quality of the surface are effectively improved by the optimized feed rate.
机译:在五轴侧面铣削中,由于非显影裁定表面的可变几何特征,表面粗糙度总是在相对大的尺度内变化。粗糙度的这种变化是一种不稳定的因素,导致机加工表面上的局部位置处的加工质量不佳。为了解决这些问题,本文采用了一种基于表面形貌分析的五轴侧面铣削的进给速率优化的表面粗糙度控制方法。首先,通过新颖的椭圆模型预测表面形貌。基于该模型,分析了刀具跳动和工件曲率对表面轮廓高度的影响。然后,表面粗糙度表示为每个切割位置处的局部曲率的函数。最后,导出了一种过度确定的非线性方程系统,其允许调节进料速率,以便在加工表面上提供均匀的粗糙度分布。进行一系列切割测试以验证提出的理论。结果表明,通过优化的进料速率有效地提高了表面的粗糙度均匀性和加工质量。

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