Numerical and experimental post-buckling analysis of slender thin-walled GLARE members subjected to compressive loading

D. Banat, R. Mania
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Abstract

This study deals with a post-buckling analysis of thin-walled GLARE members subjected to axial compressive loading. Considered slender and top-hat-shaped GLARE samples are made of hybrid composite that consists of alternating thin layers of aluminum alloy sheets and unidirectional glass fiberreinforced prepregs. Composite specimens were axially compressed in laboratory tests by the electromechanical static testing unit of Instron that provided a displacement control loading. Deformations were measured in full load range until specimen fracture by means of Aramis 3D noncontact optical equipment that uses the digital image correlation (DIC) method. The behavior of thinwalled GLARE members was analyzed with the primary attention to post-buckling response. Simultaneously, numerical simulations by FEM were performed to predict the load-carrying capacity of thin-walled sections. Comparative post-buckling analysis was performed based on nominal stress state in both non-degraded and degraded structure. For the latter, the damage evolution law was introduced by the material property degradation method (MPDG), which allowed a gradual reduction of material stiffness based on assumed damage variables. The impact of damage variables on the laminate loadcarrying capacity and predicted damage mode was investigated. Presented numerical results were found to be in a high agreement with experimental damage tests.
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细长薄壁眩光构件受压后屈曲的数值与实验分析
本文研究了受轴向压缩载荷作用的薄壁眩光构件的后屈曲分析。考虑到细长和顶帽形状的眩光样品由混合复合材料制成,混合复合材料由交替的薄层铝合金片和单向玻璃纤维增强预浸料组成。复合材料试样在实验室试验中由Instron的机电静力测试单元进行轴向压缩,提供位移控制加载。采用数字图像相关(DIC)方法的Aramis三维非接触式光学仪器测量了试件在全载荷范围内直至断裂的变形。分析了薄壁强光混凝土构件的屈曲后响应。同时,采用有限元方法对薄壁截面的承载能力进行了数值模拟。基于未退化和退化结构的名义应力状态进行了屈曲后对比分析。对于后者,采用材料性能退化法(MPDG)引入损伤演化规律,允许基于假定损伤变量的材料刚度逐渐降低。研究了损伤变量对层合板承载能力和预测损伤模式的影响。数值计算结果与试验损伤试验结果吻合较好。
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