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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Prediction of the cutting forces generated in the drilling of carbon-fibre-reinforced plastic composites using a twist drill
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Prediction of the cutting forces generated in the drilling of carbon-fibre-reinforced plastic composites using a twist drill

机译:预测使用麻花钻钻孔碳纤维增强塑料复合材料时产生的切削力

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摘要

The cutting force is regarded as the main factor that influences the quality of the hole created in the drilling of carbon-fibre-reinforced plastic composites. This paper proposes a model for the prediction of the thrust force and torque generated in the drilling of composite materials using a twist drill. In the model, contact theory is applied to the chisel edge cutting zone and oblique cutting is considered in the cutting lips cutting zone that is considered to have three distinct deformation regions. The model takes into account the spindle speed, feed rate, drill diameter, point angle, nose radius, rake angle of the chisel edge, web thickness, and fibre orientation. The cutting forces predicted by this model are in satisfactory agreement with experimental results and thus it is concluded that the proposed model can be used to optimize the cutting parameters and tool geometries in the drilling of composites.
机译:切削力被认为是影响在碳纤维增强塑料复合材料钻孔过程中产生的孔的质量的主要因素。本文提出了一种模型,用于预测使用麻花钻在复合材料钻孔过程中产生的推力和扭矩。在该模型中,将接触理论应用于凿子边缘切割区域,并在被认为具有三个不同变形区域的切割唇形切割区域中考虑了倾斜切割。该模型考虑了主轴转速,进给速度,钻头直径,尖角,刀尖半径,凿子边缘的前角,纤网厚度和纤维方向。该模型预测的切削力与实验结果令人满意,因此得出的结论是,该模型可用于优化复合材料钻削中的切削参数和刀具几何形状。

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