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Stress-strain Analysis Of A Cylindrical Pipe Subjected To A Transverse Load And Large Deflections

机译:横向载荷和大挠度下圆柱管的应力应变分析

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摘要

The increased use of polymers and reinforced polymers in civil construction applications originated elegant structures with a high specific strength and stiffness. The mechanical performance improved significantly in comparison with traditional materials; however, the structural engineers face new challenges. The high strength compared with the stiffness of these new materials allows large deformations without failure or damage, especially in large structures. The classical theories, i.e. based on small deformations, became no longer valid and corrections must be used. The aim of this work was to show this occurrence in a practical case, used in civil engineering construction. For that purpose a glass-fiber reinforced (GRP) buried pipe under a transverse load was analyzed. Strains experimentally measured and FEM analyses are used to verify the phenomenon. In this case, the relation between the maximum deflection and the maximum hoop strain was no longer linear as predicted by the small deformation theory. A simple approach using deformation components based on finite deformations theory was proposed and assessed. Although this approach, which has an analytical integral solution, does not predict accurately the nonlinear phenomena it allowed a dimensionless parametric study of the problem. A simple correction of this approach is proposed and assessed.
机译:聚合物和增强聚合物在民用建筑应用中的越来越多的使用产生了具有高比强度和刚度的优雅结构。与传统材料相比,机械性能显着提高;但是,结构工程师面临着新的挑战。与这些新材料的刚度相比,高强度可实现大变形而不会造成故障或损坏,尤其是在大型结构中。基于小变形的经典理论不再有效,必须使用更正。这项工作的目的是在实际案例中显示这种情况,用于土木工程建设。为此,分析了玻璃纤维增​​强(GRP)的横向载荷下的埋管。通过实验测量菌株和有限元分析来验证该现象。在这种情况下,最大变形和最大环向应变之间的关系不再像小变形理论所预测的那样呈线性关系。提出并评估了一种基于有限变形理论的使用变形分量的简单方法。尽管这种方法具有解析积分解决方案,但不能准确预测非线性现象,但可以对问题进行无量纲的参数研究。建议并评估了此方法的简单更正。

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