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Concrete Open-Wall Systems Wrapped with FRP under Torsional Loads

机译:扭转荷载下玻璃纤维布包裹的混凝土幕墙系统

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摘要

The static behavior of reinforced concrete (RC) beams plated with layers of fiber-reinforced composite material (FRP) is widely investigated in current literature, which deals with both its numerical modeling as well as experiments. Scientific interest in this topic is explained by the increasing widespread use of composite materials in retrofitting techniques, as well as the consolidation and upgrading of existing reinforced concrete elements to new service conditions. The effectiveness of these techniques is typically influenced by the debonding of the FRP at the interface with concrete, where the transfer of stresses occurs from one element (RC member) to the other (FRP strengthening). In fact, the activation of the well-known premature failure modes can be regarded as a consequence of high peak values of the interfacial interactions. Until now, typical applications of FRP structural plating have included cases of flexural or shear-flexural strengthening. Within this context, the present study aims at extending the investigation to the case of wall-systems with open cross-section under torsional loads. It includes the results of some numerical analyses carried out by means of a finite element approximation.
机译:在当前文献中,广泛地研究了镀有纤维增强复合材料(FRP)层的钢筋混凝土(RC)梁的静态性能,涉及其数值模拟和实验。通过在翻新技术中越来越广泛地使用复合材料,以及将现有的钢筋混凝土构件加固和升级到新的使用条件,可以说明对这一主题的科学兴趣。这些技术的有效性通常受FRP在混凝土界面处的脱胶影响,其中应力从一个元件(RC构件)传递到另一个(FRP加强)。实际上,可以将众所周知的过早失效模式的激活归因于界面相互作用的高峰值。到目前为止,FRP结构板的典型应用包括抗弯或抗剪加固的案例。在此背景下,本研究旨在将研究范围扩展到在扭转载荷下具有开放横截面的墙系统的情况。它包括通过有限元逼近进行的一些数值分析的结果。

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