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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Chip evacuation force modelling for deep hole drilling with twist drills
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Chip evacuation force modelling for deep hole drilling with twist drills

机译:深孔钻孔芯片抽空力模拟

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摘要

Chip evacuation is the main difficulty of deep hole drilling process. For deep hole drilling with large depth-to-diameter ratio over 10, drilling force increases significantly with the drilling depth due to the friction and pressure reaction between the continuing generated chips and the drill flutes as well as the hole wall. In practical deep hole drilling process, overlarge drilling depth will cause drill breakage due to the low rigidity of the deep-hole twist drill, while using too small drilling depth is inefficient. The existing methods for drilling depth optimization are still faced with troubles, including lack of prior knowledge input of the monitoring method and difficult to measure or calibrate model parameters of the prediction model. To overcome these problems, a novel and practical chip evacuation force model for deep hole drilling is developed in this paper. Firstly, the chip evacuation forces in deep hole drilling are derived based on the elemental chip flow method, with the expression including three chip evacuation force coefficients for the practicability of the model. Then, the chip evacuation force coefficients are calibrated in a set of drilling tests under different cutting parameters, and the relations between chip evacuation force coefficients and cutting parameters are investigated with range analysis and analysis of variance. Finally, validation experiment results show that the proposed chip evacuation force model is able to predict the drilling force with increasing drilling depth in deep hole drilling, and the maximum drilling depth can be obtained accurately with the error less than 3%.
机译:排屑是深孔钻加工的主要困难。对于具有大的深度与直径的比值深孔钻10,与钻井深度显著钻孔力增大由于持续产生的切屑和钻屑槽以及孔壁之间的摩擦和压力的反应。在实际的深孔钻加工,超大钻孔深度将导致钻头破损由于深孔麻花钻的刚性低,当使用过小的钻孔深度是低效的。用于钻井深度优化的现有方法仍然面临的麻烦,包括缺乏监测方法的先验知识的输入和难以测量或预测模型的校准模型参数。为了克服这些问题,深孔钻一个新颖实用的排屑力模型本文开发。首先,在深孔钻的排屑力是基于元素芯片流的方法得到,与包括用于所述模型的实用性3个排屑力系数的表达。然后,排屑力系数被校准在一组在不同的切削参数钻孔测试,和排屑力系数和切削参数之间的关系与范围分析和方差分析调查。最后,验证实验结果表明,所提出的排屑力模型能够与在深孔钻提高钻探深度预测钻孔力,并且可以与所述误差小于3%精确地获得最大钻孔深度。

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