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Testing and analysis of pultruded GFRP continuous beams for the deflection serviceability limit state

机译:拉制GFRP连续梁挠度极限使用状态的试验与分析。

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摘要

An investigation of the deformation response of an unequal two-span pultruded glass fibre reinforced polymer (GFRP) wide flange (WF) beam up to the deflection serviceability limit is described. The beam was subjected to vertical point loading at the centre of the longer span. Mid-span deflections, support rotations and outer surface flange strains recorded during major- and minor-axis flexure tests on the beam are presented and shown to be both repeatable and linear. New closed-form shear deformation equations are presented for the forces and displacements of two-span continuous beams of arbitrary span ratio with the longer span subjected to a vertical mid-span point load. The equations have been used to predict the mid-span deflections, support rotations and surface strains recorded during the flexure tests. It is shown that the equations are able to predict the experimental deflections accurately. Depending on the particular support, the rotations (particularly the minor-axis rotations) are slightly under/over-estimated and, in general, the surface strains are over-estimated. It is concluded that this investigation provides further confirmation of the utility of shear deformation continuous beam equations for predicting the deformations of pultruded GFRP beams up to the deflection serviceability limit.
机译:描述了不等跨度的两跨拉挤玻璃纤维增​​强聚合物(GFRP)宽翼缘(WF)梁直至挠性可使用极限的变形响应的研究。梁在较长跨度的中心受到垂直点荷载。给出了在梁的长轴和短轴挠曲测试期间记录的中跨挠度,支撑旋转和外表面法兰应变,并显示它们是可重复且线性的。针对任意跨径比的两跨连续梁的力和位移,提出了一种新的闭合形式的剪切变形方程。该方程式已用于预测挠曲测试期间记录的中跨挠度,支撑旋转和表面应变。结果表明,该方程能够准确地预测实验偏差。取决于特定的支撑,旋转(尤其是短轴旋转)会略微偏低/偏高,并且通常表面应变会偏高。结论是,这项研究进一步证实了剪切变形连续梁方程在预测拉力GFRP梁变形至变形极限之前的实用性。

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    Turvey Geoffrey John;

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  • 年度 2016
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