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Load-carrying capacity of thin-walled composite beams subjected to pure bending

机译:纯弯薄壁组合梁的承载力

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The paper deals with estimating load capacity of thin-walled composite beams with C-shaped cross-section subjected to pure bending The discussed beams were made of eight-layer GFRP laminate. The analysis have been performed on six ply systems. To designate load capacity of analyzed structures the ANSYS. program based on finite element method were employed. The experimental tests were conducted. Estimations of load capacity were based on the following failure criteria: Inverse of Tsai-Wu, Hoffman and criterion of maximum stress reduced to fiber direction. Based on the performed experimental and numerical studies it has been concluded that the largest convergence of numerical and experimental results was obtained with the implementation of the criterion of maximum stress reduced to the fiber direction. After exceeding the compressive strength or tension strength in the direction of the fibers the composite beams were characterized by a high stiffness degradation, leading to rapid destruction of the structures.
机译:本文旨在评估承受纯弯曲作用的C形截面薄壁组合梁的承载能力。所讨论的梁由八层GFRP层压板制成。分析已在六层系统上进行。为了指定分析结构的承载能力,ANSYS。采用基于有限元法的程序。进行了实验测试。负载能力的估算基于以下破坏准则:Tsai-Wu的倒数,Hoffman和最大应力向纤维方向减小的准则。根据进行的实验和数值研究得出的结论是,通过将最大应力减小到纤维方向,可以实现数值和实验结果的最大收敛。在超过纤维方向的抗压强度或抗拉强度后,复合梁的特征是高刚度退化,导致结构的快速破坏。

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