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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Axial cutting force prediction model of titanium matrix composites TiBw/TC4 in ultrasonic vibration–assisted drilling
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Axial cutting force prediction model of titanium matrix composites TiBw/TC4 in ultrasonic vibration–assisted drilling

机译:超声波振动辅助钻井钛基复合材料TIBW / TC4的轴向切割力预测模型

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摘要

Ultrasonic vibration–assisted drilling (UVAD) can significantly improve the quality of the hole while reducing the axial force of drilling, which has important application prospects. In order to reveal the variation law of drilling force under the joint action of ultrasonic vibration and cutting heat, and to guide the optimization of high-efficiency UVAD process, titanium matrix composites TiBw/TC4 (TiB whisker volume fraction of 8.5%) is taken as the research object. Firstly, based on the theory of fracture indentation and the theory of ordinary drilling (OD), the comprehensive softening coefficient of the material under the action of ultrasonic impact and cutting temperature is introduced, and the model of axial drilling force considering the softening effect is established. Secondly, the experiment of UVAD was carried out, and the interaction mechanism about drilling force and vibration impact and drilling temperature was analyzed. Finally, the experimental data was used to establish the softening coefficient response surface, which described visually the variation law of the softening coefficient. The feasibility of the drilling force model was verified, and the trend between the drilling parameters and the drilling force was analyzed. The results show that the error between experimental axial drilling force value and prediction value of UVAD is less than 10%, and the maximum axial drilling force is about 23.1% lower than OD.
机译:超声波振动辅助钻孔(UVAD)可以显着提高孔的质量,同时降低钻孔的轴向力,具有重要的应用前景。为了揭示在超声波振动和切割热的关节作用下钻探力的变化定律,并引导高效UVAD工艺的优化,采取钛基复合材料TIBW / TC4(TIB晶须量分数为8.5%)作为研究对象。首先,基于骨折凹陷理论和普通钻井理论(OD),引入了超声波冲击和切削温度作用下综合软化系数,以及考虑软化效果的轴向钻探力的模型已确立的。其次,进行了UVAD的实验,分析了关于钻孔和振动冲击和钻井温度的相互作用机制。最后,使用实验数据来建立软化系数响应面,该响应表面在视觉上描述软化系数的变化规律。验证了钻探力模型的可行性,分析了钻孔参数与钻孔力之间的趋势。结果表明,UVAD的实验轴向钻探力值和预测值之间的误差小于10%,最大轴向钻探力比OD低约23.1%。

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