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Analytical study of delamination damage and delamination-free drilling method of CFRP composite

机译:CFRP复合材料分层损伤和无分层钻井方法的分析研究

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摘要

Drilling of composite materials is a challenge in aviation and aerospace field. Delamination often occurs at the hole exit which can reduce the strength of the structure. In this study, to reduce delamination, an analytical model with thermal effect is proposed to predict critical delamination condition of composite. Anisotropy of the composite, thermos-mechanical deformation and load cases of the tool are taken into consideration. Numerical simulation and punching experiments with accurate uncut plies are conducted to validate the rational of the analytical model. The value of critical thrust force and the effect of drilling temperature on that are obtained from the model. In addition, a thrust force model based on the tool geometry is presented with the feed rate per tooth. According to the proposed model, critical feed rate per tooth for delamination-free drilling with different uncut plies and drill diameters can be obtained
机译:复合材料钻井是航空和航空航天领域的挑战。 分层经常发生在孔出口处,这可以降低结构的强度。 在该研究中,为了减少分层,提出了一种具有热效应的分析模型来预测复合材料的临界分层条件。 考虑了该工具的复合材料,热机械变形和负载案例的各向异性。 进行了具有精确未切割层的数值模拟和冲压实验,以验证分析模型的理性。 临界推力的值和钻孔温度对模型的影响。 另外,基于工具几何形状的推力模型以每齿的进料速率呈现。 根据所提出的模型,可以获得具有不同未切割层和钻头直径的无分层钻孔的每个牙齿的临界进料速率

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