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Sculpture surface machining: a generalized model of ball-end milling force system

机译:雕刻表面加工:球头铣削力系统的通用模型

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摘要

A new mechanistic model is presented for the prediction of a cutting force system in ball-end milling of sculpture surfaces. The model has the ability to calculate the workpiece/cutter intersection domain automatically for a given cutter location (CL) file, cutter and workpiece geometries. Furthermore, an analytical approach is used to determine the instantaneous chip load (with and without runout) and cutting forces. In addition to predicting the cutting forces, the model also employs a Boolean approach for a given cutter, workpiece geometries, and CL file to determine the surface topography and scallop height variations along the workpiece surface which can be visualized in 3-D. The results of model validation experiments on machining Ti-6Al-4V are also reported. Comparisons of the predicted and measured forces as well as surface topography show good agreement.
机译:提出了一种新的力学模型,用于预测雕刻表面球头铣削中的切削力系统。该模型具有针对给定的刀具位置(CL)文件,刀具和工件几何形状自动计算工件/刀具相交区域的能力。此外,使用一种分析方法来确定瞬时切屑载荷(有或没有跳动)和切削力。除了预测切削力外,该模型还针对给定的刀具,工件几何形状和CL文件采用布尔方法来确定沿工件表面的表面形貌和扇贝高度变化,这些变化可以在3-D中可视化。还报告了在Ti-6Al-4V上进行加工的模型验证实验的结果。预测力和测量力以及表面形貌的比较显示出很好的一致性。

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