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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Mechanistic force modeling of single point cutting tool in terms of grinding angles
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Mechanistic force modeling of single point cutting tool in terms of grinding angles

机译:基于磨削角度的单点切削刀具机械力建模

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摘要

The cutting tool angles have conventionally been presented using projective geometry in terms of the projections of cutting edges on respective planes, which makes the visualization of geometry difficult, particularly for complex tools. Modeling a cutting tool using the actual grinding angles can simplify the geometric definition of the tools and provide a comprehensive and simple definition of tools for downstream applications. The paper presents the 3D definition of the faces of a single point cutting tool (SPCT) in terms of 3D rotational grinding angles and maps the new tool nomenclature with the ASA, ORS and NRS nomenclatures. A mechanistic model is subsequently proposed to predict the forces in terms of the grinding angles, chip thickness and velocity using second degree polynomial function, unlike the conventionally used logarithmic ones. The model has been calibrated for HSS tool and Mild Steel workpiece combination for end turning of a tubular workpiece based on the regression analysis of a central composite design of the experiments. The results have been discussed and the model has been validated for a new set of experimental data. The model shows a good correlation to the observed results.
机译:就切削刃在相应平面上的投影而言,传统上使用投影几何形状来表示切削工具的角度,这使得几何形状的可视化变得困难,尤其是对于复杂的刀具。使用实际的磨削角度对切削工具进行建模可以简化工具的几何定义,并为下游应用提供全面而简单的工具定义。本文根据3D旋转磨削角度介绍了单点切削刀具(SPCT)的3D定义,并用ASA,ORS和NRS命名法映射了新的刀具命名法。随后提出了一种机械模型,使用二阶多项式函数来预测磨削角度,切屑厚度和速度方面的力,这与常规使用的对数函数不同。该模型已针对HSS工具和低碳钢工件组合进行了校准,该模型基于实验的中央复合设计的回归分析对管状工件进行了端部车削。已经讨论了结果,并且已经针对一组新的实验数据验证了该模型。该模型显示出与观测结果的良好相关性。

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