基于弯曲刚度比的复合材料帽形加筋板局部屈曲工程修正计算方法

Local buckling updating engineering method of hat-stiffened composite panel based on flexural stiffness ratio

  • 摘要: 为提高复合材料帽形加筋板蒙皮局部屈曲的工程分析方法精度,对典型复合材料帽形加筋板进行了轴压稳定性试验,提出了一种基于弯曲刚度比的复合材料帽形加筋板局部屈曲工程简化分析修正方法,所预测的屈曲载荷与轴压稳定性试验值误差在3%以内。采用有限元方法(FEM)及本文方法对两种构型的带筋条下缘条帽形加筋板进行了对比分析,本文方法与FEM计算误差在10%以内,表明本文提出的修正方法合理有效,满足工程精度要求。采用工程简化分析方法、能量法及本文方法对公开文献的试验数据进行了对比分析,结果表明采用本文方法可将工程简支屈曲分析误差和工程固支屈曲分析误差分别从41.5%、5.3%降低至3.8%,为复合材料帽形加筋板结构初步设计与分析提供了一种新的快速分析思路。

     

    Abstract: In order to improve the accuracy of local buckling engineering method of hat-stiffened composite panel, the stability experiment of typical panels under axial compression was first carried out, and then an updating engineering method for local buckling of hat-stiffened composite panel based on flexural stiffness ratio was proposed. The predicted buckling loads differ less than 3% from experimental results. The buckling analysis of two kinds of hat-stiffened panels with bottom flange was carried out by finite element model (FEM) method and the updating method this paper proposed comparatively. The error of compared results is within 10%, which verifies the reasonableness of the proposed method and satisfies the engineering accuracy. Experimental data recorded in public literature were analyzed by engineering simplified method, energy method and the updating method this paper proposed comparatively. Results show that the error by engineering simply and fixedly supported boundary conditions can be reduced from 41.5% and 5.3% to 3.8% respectively, which provides a new rapid analytical method for preliminary design of hat-stiffened composite panel.

     

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