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Experimental and analytical investigation of the drilling forces of the carbon fiber reinforced plastics including thermal effects

机译:碳纤维增强塑料钻探等钻井力的实验和分析研究

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摘要

We present the experimental and analytical investigation of the drilling forces for unidirectional carbon fiber reinforced plastics (CFRP) composites according to different machining parameters. In the analytical thrust force model, the chisel edge region is classified as an extrusion operation and the lip is considered as a orthogonal small-element cutting region. The chipping, pressing, and bouncing regions of the lip are incorporated into this thrust force model. In addition, the analytical model includes the thermophysical properties of CFRP by incorporating softening of the material due to drilling processes. Based on the developed model, the thrust force curve for all drilling stages is analyzed in time-domain considering both cutting conditions and material properties. Comparison between predictions and experiments was performed on three CFRP samples with different fiber volume fractions and sixteen cutting conditions. It was observed that the predicted forces can capture the trend of the experimental data with the relative small error. Time-domain analysis and fluctuation evaluation were also used to better understand the mechanism of thrust force during CFRP drilling.
机译:我们根据不同的加工参数介绍了单向碳纤维增强塑料(CFRP)复合材料的钻孔力的实验和分析研究。在分析推力模型中,凿子边缘区域被分类为挤出操作,并且唇部被认为是正交的小元素切割区域。唇缘的碎裂,压制和弹跳区域掺入该推力模型中。此外,分析模型包括通过钻孔工艺掺入材料的软化来包括CFRP的热物理性质。基于开发的模型,考虑到切割条件和材料特性,在时域中分析了所有钻井阶段的推力曲线。预测和实验之间的比较是在具有不同纤维体积分数和十六个切割条件的三种CFRP样品上进行的。观察到预测力可以通过相对较小的误差捕获实验数据的趋势。时间域分析和波动评估也用于更好地理解CFRP钻井期间推力力的机制。

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