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首页> 外文期刊>Journal of Steel Structures & Construction >Mechanical and Thermochemical Studies Using the Experimental Fracture Mechanics Single Contoured-Cantilever Beam Specimen
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Mechanical and Thermochemical Studies Using the Experimental Fracture Mechanics Single Contoured-Cantilever Beam Specimen

机译:使用实验断裂力学的单轮廓悬臂梁试样进行机械和热化学研究

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Construction practices involving the rehabilitating, retrofitting, and reinforcing of concrete structures using fiber reinforced polymer (FRP) fabrics have been well documented. Experimental efforts to characterize the effectiveness of this technology, however, have included many large scale FRP-concrete tests for strength/stiffness evaluations which do not detect delamination effects; small-scale tests, on the other hand, only provide average interface strength properties that neither describe failure mechanisms nor provide fracture toughness data. In this paper, the experimental fracture mechanics specimen known as the single contoured-cantilever beam (SCCB) was used to obtain important quantitative results of FRP-concrete interfaces as subject to a host of conditions: dry, freezingthawing, wetting-drying, fatigue, and surface roughness effects on the integrity of the interface bond. The findings of this research effort demonstrate both the importance of surface preparation towards achieving an optimal bond as well as offering a means of gaging rates of degradation of the interface under a variety of commonly encountered construction environments.
机译:使用纤维增强聚合物(FRP)织物进行混凝土结构的修复,翻新和加固的施工实践已得到充分记录。然而,为表征该技术的有效性而进行的实验性努力包括许多大型FRP混凝土试验,以进行强度/刚度评估,但未检测到分层效应。另一方面,小规模测试仅提供既不描述破坏机理也不提供断裂韧性数据的平均界面强度特性。本文采用称为单轮廓悬臂梁(SCCB)的实验性断裂力学样本来获得FRP-混凝土界面的重要定量结果,该条件受以下条件的影响:干燥,冻融,湿润干燥,疲劳,表面粗糙度对界面结合的完整性有影响。这项研究工作的结果证明了表面准备对于实现最佳粘合的重要性以及在各种常见的施工环境下提供一种衡量界面降解速率的手段。

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