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Toward a design method for metal-composite co-cured joints based on the G-SIFs

机译:一种基于G-SIF的金属复合共固化接头的设计方法

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摘要

In this work, a systematic study of the singular stress field in the zone where the interface intersects the free edge surfaces of bonded metal-composite co-cured joints, has been performed. The obtained theoretical, numerical and experimental results have permitted to detect the relationships between the joint configuration and the singular stress field, as well as to implement a new design method based on the so called generalised stress intensity factors. Such a proposed method allows the user to predict the static strength of a generic metal-composite co-cured joint, vs. the main influence parameters as the elastic modulus of the coupled materials, the overlap length, the taper angle, the imbalance, etc. The accuracy of the theoretical and numerical analyses performed in the present study, as well as the reliability of the strength predictions provided by the proposed method, have been tested by means of experimental assessments carried out by using aluminum-GFRP and aluminum-CFRP co-cured double lap joints.
机译:在这项工作中,对界面与粘结的金属复合共固化接头的自由边缘表面相交的区域中的奇异应力场进行了系统的研究。所获得的理论,数值和实验结果已允许检测关节构型与奇异应力场之间的关系,并基于所谓的广义应力强度因子实施一种新的设计方法。这种建议的方法使用户可以预测通用的金属复合共固化接头的静态强度,以及主要影响参数,如耦合材料的弹性模量,重叠长度,锥角,不平衡度等。通过使用铝-玻璃纤维增​​强塑料和铝-碳纤维增强塑料复合材料进行的实验评估,对本研究中进行的理论和数值分析的准确性以及所提出方法提供的强度预测的可靠性进行了测试。固化的双膝关节。

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