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Experimental and numerical investigation of stiffener effects on buckling strength of composite laminates with circular cutout

机译:圆形切口复合层压板屈曲强度的实验与数值研究

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In the notched structures, to achieve maximum buckling resistance in comparison with structural weight, the optimal design of a stiffener is very important. In this research, after a review of the existing literature, nonlinear buckling behavior of composite plates containing the cutout with three different designs of stringer was investigated. The considered stiffeners are planer, longitudinal, and ring types. The buckling experiments were carried out on the stiffened plates containing a circular notch. Moreover, to achieve an efficient prediction of the buckling in the stiffened laminate with the hole, a finite strip method is developed based on the Airy stress function and von Karman's large deformation equations. Studies show that there is a good agreement between the postbuckling behaviors derived from developed finite strip method with experimental results. Fast convergence of the considered finite strip method compared with the finite element results shows its efficiency for prediction of buckling behavior in laminated composites. The results show that the buckling load-bearing capacities of perforated plates with a longitudinal and planer stiffener are higher compared with the other stiffener, respectively. The detailed parametric study on the effects of thickness of the plate and stiffener and opening diameter on buckling behavior was performed using experiments and modeling.
机译:在凹口结构中,为了实现最大屈曲电阻与结构重量相比,加强筋的最佳设计非常重要。在本研究中,在审查了现有文献之后,研究了含有三种不同设计的刺指针切口的复合板的非线性屈曲行为。考虑的加强筋是刨床,纵向和环类型。屈曲实验在含有圆形缺口的加强板上进行。此外,为了在具有孔的加强层压板中实现对屈曲的屈曲预测,基于通气应力功能和von Karman的大变形方程式开发了有限的条带方法。研究表明,在具有实验结果的开发的有限带法中衍生自发达的有限带法的假设行为之间存在良好的一致性。与有限元结果相比,所考虑的有限条带方法的快速收敛性显示其用于预测层压复合材料中屈曲行为的效率。结果表明,与其他加强孔相比,具有纵向和刨床加强件的穿孔板的屈曲承载容量分别更高。使用实验和建模,进行对板材和加强件厚度和开口直径的影响的详细参数研究。

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