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Buckling and free vibration analyses of pultruded GFRP laminated composites: Experimental, numerical and analytical investigations

机译:Pultruded GFRP层压复合材料的屈曲和自由振动分析:实验,数值和分析研究

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摘要

Two of the most important of the loads exposed to the structures whose construction material is pultruded GFRP are buckling and vibration loads. Therefore, it is crucial to determine the behavior of this material against buckling and vibration loads considering the fiber and layer configurations. Pursuant to this goal, comprehensive experimental, numerical and analytical studies have been undertaken. An exact analytical solution based on first order shear deformation plate theory was used for the solution of stability and vibration problems. The virtual displacement principle was utilized herein to derive governing differential equations. Effective material properties of pultruded GFRP composites were obtained by using the mixture rule model. The laminated plate was assumed to be a plate strip in cylindrical bending. The solutions were obtained with an infinite series. On the other hand, a numerical study was conducted by a finite element software, ABAQUS. Burn-out and mechanical tests were performed to determine the mechanical properties of the obtained pultruded GFRP composite specimens. The buckling and modal analysis for natural frequencies tests were utilized to investigate the performance of pultruded GFRP specimens. The experimental findings were compared with the calculated analytical and numerical results, and good conformance was obtained. Macro and micro mechanical damage analyzes were performed to better understand the behavior of the pultruded GFRP composite specimens.
机译:暴露于结构材料被拉挤GFRP的结构的两个最重要的负载是屈曲和振动载荷。因此,考虑到纤维和层配置,确定这种材料的行为是至关重要的。考虑纤维和层配置,这是对屈曲和振动载荷的行为。根据这一目标,已经采取了全面的实验,数值和分析研究。基于一阶剪切变形板理论的精确分析解决方案用于稳定性和振动问题的解决方案。本文在本文中使用了虚拟位移原理来导出控制微分方程。通过使用混合规则模型获得覆膜GFRP复合材料的有效材料性能。假设层压板是圆柱形弯曲的板条。用无限系列获得溶液。另一方面,由有限元软件,ABAQUS进行数值研究。进行烧坏和机械试验以确定所得覆布尔特型GFRP复合标本的机械性能。利用自然频率试验的屈曲和模态分析来研究Pultruded GFRP标本的性能。将实验结果与计算的分析和数值结果进行比较,并获得了良好的一致性。进行宏观和微机械损伤分析以更好地了解覆厥GFRP复合标本的行为。

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