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A study of computer-assisted analysis of effects of drill geometry and surface coating on forces and power in drilling

机译:计算机辅助分析钻头几何形状和表面涂层对钻削力和功率的影响的研究

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The success of continuous improved drill performance in cutting applications has to date largely been based on significant advances through tool surface coatings and modifications of drill point geometry, i.e. optimisation of the rake angle distributions along the drill lips and the chisel edge. It has been recognised that due to the complexity of equations for the force and power predictions, computer assistance is needed. Consequently, this paper presents the results of a systematic - computer-assisted - study focused on determining, and describing, from a mathematical point of view, the relationship between the drill point geometrical features and the performance measures as assessed by the cutting forces and power in drilling. This is followed by a study of predicted influences of drilling variables on the generated thrust, torque and power. The results are presented for different types of modern commercial tool surface coatings and work-piece materials. It is suggested that this sort of information may be used, by both tool manufacturers and users, to assist in the optimisation, and selection, of the drill point geometrical features for 'best' performance.
机译:迄今为止,在切削应用中连续改进钻头性能的成功很大程度上取决于刀具表面涂层的显着进步和钻头几何形状的改进,即沿钻唇和凿刃的前角分布的优化。已经认识到,由于力和功率预测方程的复杂性,需要计算机辅助。因此,本文介绍了系统的计算机辅助研究的结果,该研究侧重于从数学的角度确定和描述钻头几何特征与切削力和功率所评估的性能指标之间的关系。在钻井中。接下来是研究钻井变量对所产生的推力,扭矩和功率的预测影响。给出了针对不同类型的现代商用工具表面涂层和工件材料的结果。建议工具制造商和用户都使用此类信息,以帮助优化和选择钻头几何特征,以实现“最佳”性能。

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