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Improved model for interfacial stresses accounting for the effect of shear deformation in plated beams

机译:考虑板梁剪切变形影响的界面应力改进模型

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摘要

A significant increase in strength and performance of reinforced concrete, timber and metal beams may be achieved by adhesively bonding a fibre reinforced polymer composite, or metallic such as steel plate to the tension face of a beam. One of the major failure modes in these plated beams is the debonding of the plate from the original beam in a brittle manner. This is commonly attributed to the interfacial stresses between the adherends whose quantification has led to the development of many analytical solutions over the last two decades. The adherends are subjected to axial, bending and shear deformations. However, most analytical solutions have neglected the effect of shear deformation in adherends. Few solutions consider this effect approximately but are limited to one or two specific loading conditions. This paper presents a more rigorous solution for interfacial stresses in plated beams under an arbitrary loading with the shear deformation of the adherends duly considered in closed form using Timoshenko’s beam theory. The solution is general to linear elastic analysis of prismatic beams of arbitrary cross section under arbitrary loading with a plate of any thickness bonded either symmetrically or asymmetrically with respect to the span of the beam.
机译:通过将纤维增强的聚合物复合材料或金属(例如钢板)粘合到梁的受拉面上,可以显着提高钢筋混凝土,木材和金属梁的强度和性能。这些镀覆梁中的主要失效模式之一是板以脆性方式与原始梁脱粘。这通常归因于被粘物之间的界面应力,在过去的二十年中,其被量化导致许多分析解决方案的发展。被粘物会受到轴向,弯曲和剪切变形。但是,大多数分析解决方案都忽略了被粘物中剪切变形的影响。很少有解决方案会考虑这种影响,但仅限于一种或两种特定的加载条件。本文根据蒂莫申科的梁理论,提出了一种针对封闭梁在任意载荷下的界面应力的更为严格的解决方案,并以闭合形式适当考虑了被粘物的剪切变形。该解决方案通常适用于在任意载荷下使用任意厚度的板相对于梁的跨度对称或不对称粘结的任意截面的棱柱形梁的线性弹性分析。

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