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Modeling and Distribution Laws of Drilling Force for Staggered Teeth BTA Deep Hole Drill

机译:交错齿BTA深孔钻的钻力建模与分布规律

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摘要

The boring and trepanning association (BTA) deep hole drilling is a typical self-guiding machining method. The drilling force and its distribution laws along the cutting radius directly affect the stability of drilling and the quality of machined hole. Based on the oblique cutting theory, a novel drilling force model is developed to predict the thrust and torque for staggered teeth BTA deep hole drill with variable geometries. Using the constraint relationships between the cutting force components and cutting angles, combined with the measured drilling force during the drill entrance, the parameters of the model including normal shear angle, normal friction angle and shear stress involved in the cutting force coefficients along the cutting radius, and the axial and circumferential friction coefficients between the guide pads and the hole wall are obtained. The model-predicted drilling force is validated by experimental results.
机译:镗削协会(BTA)深孔钻削是一种典型的自导加工方法。钻孔力及其沿切削半径的分布规律直接影响钻孔的稳定性和加工孔的质量。基于斜切理论,开发了一种新型的钻削力模型,以预测具有可变几何形状的交错齿BTA深孔钻的推力和扭矩。利用切削力分量和切削角度之间的约束关系,并结合钻头入口期间测得的钻削力,模型的参数包括沿切削半径的切削力系数所涉及的法向剪切角,法向摩擦角和剪应力,得到导向块与孔壁之间的轴向和圆周摩擦系数。通过实验结果验证了模型预测的钻探力。

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