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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Mathematical Modeling of Cutting Forces in Microdrilling
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Mathematical Modeling of Cutting Forces in Microdrilling

机译:微钻切削力的数学建模

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摘要

In drilling, the primary and secondary cutting lips of the drill shear the material while the central portion of the chisel edge indents the workpiece, making the cutting process complex to understand. As we go for microdrilling, it exhibits an added complexity to the cutting mechanism as the edge radius gets comparable to chip thickness at low feeds. The presented work models the forces by the primary cutting lip of a microdrill analytically using slip-line field that includes the changes in the effective rake angle and dead metal cap during cutting for cases of shearing as well as ploughing. To study the variation of forces experimentally, the primary cutting lip and chisel edge forces are separated out by drilling through pilot holes of diameter slightly above the drill-web thickness. Finally, the analytical and experimental results are compared and the model is calibrated.
机译:在钻孔过程中,钻头的主切削刃和副切削刃会剪切材料,而凿子边缘的中央部分会压入工件,从而使切削过程难以理解。当我们进行微钻孔时,由于切削刃的半径与低进给量时的切屑厚度相当,因此切削机理更加复杂。提出的工作使用滑移线域分析地模拟了微钻的主切削唇口的力,该滑移线域包括剪切和耕作时切削过程中有效前角和死金属盖的变化。为了通过实验研究力的变化,通过在直径略大于钻网厚度的导向孔中钻孔,将主要的切割唇缘和凿子边缘力分离出来。最后,比较分析结果和实验结果并校准模型。

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