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首页> 外文期刊>International Journal of Damage Mechanics >Refined Delamination Factor Failure Characterization of Composite Wind Turbine Blade
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Refined Delamination Factor Failure Characterization of Composite Wind Turbine Blade

机译:复合风力涡轮机叶片的细化分层因子失效特征

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摘要

Wind turbines are used to convert the kinetic energy of wind into useful power. The wind turbine blades are fabricated using glass fiber-reinforced composite materials. Wind turbine blades are complex section. In order to improve the strength of the blades under varying loading conditions, spars are embedded in it. The spars are fastened with the composite shells of the blades using bolted connections. In order to affect this fastening, holes of appropriate size were drilled in the composite laminates. Delamination is the major failure in composite blades which is induced during drilling. Delamination is quantitatively measured using digital means. A comparison between the conventional (F_D) and adjusted (F_(DA)) delamination factors is presented. In order to effectively quantify the delamination, refined delamination factor (F_(DR)) is proposed. It is found that the proposed F_(DR) predicts the failure in a better manner when compared with predictive capabilities of F_D as well as F_(DA).
机译:风力涡轮机用于将风的动能转换成有用的功率。风力涡轮机叶片使用玻璃纤维增​​强的复合材料制成。风力涡轮机叶片是复杂的部分。为了在变化的负载条件下提高叶片的强度,将剑杆嵌入其中。使用螺栓连接将翼梁与叶片的复合壳体固定在一起。为了影响这种紧固,在复合层压板中钻了适当大小的孔。分层是复合刀片在钻孔过程中引起的主要故障。分层使用数字手段定量测量。给出了常规(F_D)和调整后(F_(DA))分层因子之间的比较。为了有效地量化分层,提出了改进的分层因子(F_(DR))。发现与F_D和F_(DA)的预测能力相比,提出的F_(DR)可以更好地预测故障。

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