Drilling is inevitable for CFRP components' assembling process in the aviation industry. The exit damage frequently occurs and affects the load carrying capacity of components. Consequently, it is of great urgency to enhance drilling exit quality on CFRP components. The article aims to guide the reasonable choice of drill helical direction and effectively reduce exit damage. Exit observation experiments are carried out with left-hand helical, right-hand helical and straight one-shot drill drilling T800S CFRP laminates separately. The development rules of exit damage and delamination factor curves are obtained. Combined with loading conditions and fracture modes of push-out burrs, and thrust force curves, the influence of drill helical direction on exit damage development is derived. It is found that the main fracture modes for left-hand helical, right-hand helical, and straight one-shot drill are mode I, extrusive fracture, mode III respectively. Among them, mode III has the least effect on exit damage development. Meanwhile, the changing rate of thrust force is relative slow for right-hand helical and straight one-shot drill in the thrust force increasing phase of stage II, which is disadvantaged for exit damage development. Therefore, straight one-shot drill's exit quality is the best.
CITATION STYLE
Bai, Y., Jia, Z. Y., Wang, F. J., Fu, R., Guo, H. B., Cheng, D., & Zhang, B. Y. (2017). Influence of drill helical direction on exit damage development in drilling carbon fiber reinforced plastic. In IOP Conference Series: Materials Science and Engineering (Vol. 213). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/213/1/012015
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