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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Mechanical model for predicting thrust and torque in vibration drilling fibre-reinforced composite materials
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Mechanical model for predicting thrust and torque in vibration drilling fibre-reinforced composite materials

机译:振动钻削纤维增强复合材料的推力和扭矩预测力学模型

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摘要

Delamination is a dramatic problem associated with drilling fibre-reinforced composite materials (FRCMs), which, in addition to reducing the structural integrity of the material, also results in poor assembly tolerance and has the potential for long-term performance deterioration. The key to solving the problem lies in reducing the thrust force of drilling. In this paper, a theoretical analysis for predicting mean values of thrust and torque in vibration drilling FRCMs is presented. The model is based on mechanics of vibration cutting analysis and the continuous distributions of thrust and torque along the lip and the chisel edge of a twist drill. The result of a simulation study has shown a very good agreement between the theoretical predictions and the experimental evidence. On the same cutting conditions, the thrust and the torque by the vibration drilling method are reduced by 20-30 percent, compared with conventional drilling.
机译:分层是与钻进纤维增强复合材料(FRCM)相关的严重问题,除降低材料的结构完整性外,还会导致装配公差差,并可能导致长期性能下降。解决该问题的关键在于降低钻孔的推力。本文提出了预测振动钻削FRCM中推力和扭矩平均值的理论分析。该模型基于振动切削分析的力学原理以及沿麻花钻的唇缘和凿子边缘的推力和扭矩的连续分布。仿真研究的结果表明理论预测和实验证据之间有很好的一致性。在相同的切削条件下,与常规钻孔相比,采用振动钻孔方法的推力和扭矩降低了20%到30%。

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