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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental study on drilling temperature and hole quality in drilling of carbon fiber reinforced plastic/titanium stacks
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Experimental study on drilling temperature and hole quality in drilling of carbon fiber reinforced plastic/titanium stacks

机译:碳纤维增强塑料/钛堆钻井钻孔温度和孔质量的试验研究

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摘要

Carbon fiber reinforced plastic/titanium stacks are widely used in aviation field due to the superior properties such as high strength-to-weight and high yield strength. Drilling these stacks in single shot is still challenging because of the disparate properties of two stack constituents. Various hole defects occur during drilling stacks, especially for stacking sequence titanium alloy to carbon fiber reinforced plastics. Cutting parameters of titanium alloy, compared to those of carbon fiber reinforced plastics, have more significant influences on hole quality of stacks. The contribution of this work is to research the influence of cutting parameters of titanium alloy on hole qualities during drilling of stacks including drilling temperature, hole diameter deviation, titanium burrs, and interface damage. A novel assessment approach is developed to character the interface damage area based on the greyscale of digital image. Interface damage factor is proposed to evaluate interface damage quantitatively. Experimental results indicate that maximum drilling temperature reaches the peak value when drilling of the interface region. Hole diameter of titanium layer is always lager than that of the carbon fiber reinforced plastic layer. In the same layer, the deviation of hole diameter increases as spindle speed of drilling titanium layer increases. In addition, the damage areas obtained through damage assessment method show a good correlation with the experimental damage results in shape and distribution. Interface damage increases with the rise of the spindle speed of drilling titanium layer.
机译:由于高强度至重量高,产量高,碳纤维增强塑料/钛堆叠广泛用于航空场中。由于两个堆叠成分的不同性质,在单次射击中钻头仍然挑战。在钻孔堆叠期间发生各种孔缺陷,特别是用于将序列钛合金堆叠到碳纤维增强塑料中。与碳纤维增强塑料相比,钛合金的切割参数对堆叠孔质量的影响更大。这项工作的贡献是研究钛合金切割参数对钻孔钻孔孔质量的影响,包括钻井温度,孔径偏差,钛毛刺和界面损坏。基于数字图像灰度的界面损伤区域开发了一种新的评估方法。建议界面损伤因子以定量评估界面损伤。实验结果表明,当沿界面区域钻孔时,最大钻井温度达到峰值。钛层的孔径总是比碳纤维增强塑料层的叠加。在同一层中,随着钻钛层的主轴速度增加,孔直径的偏差增加。此外,通过损伤评估方法获得的损伤区域显示出与实验损伤导致形状和分布的良好相关性。随着钻井钛层的主轴速度的升高,界面损坏增加。

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