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首页> 外文期刊>Engineering Structures >Modeling SRP-concrete interfacial bond behavior and strength
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Modeling SRP-concrete interfacial bond behavior and strength

机译:对SRP-混凝土界面粘结行为和强度建模

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Relatively recently a steel fabric/laminate has been proposed for externally strengthening concrete structures, using a polymeric resin. The steel fiber-polymer composite system is termed Steel Reinforced Polymer (SRP). To determine the ultimate load capacity of an SRP retrofitted concrete structure, one must accurately predict the SRP-concrete interface debonding load, which requires a robust local bond-slip model. Many design guidelines recommend mode II interfacial fracture energy limit as the failure criterion for FRP-concrete interface. For SRP strengthened members, a suitable constitutive law and failure criterion have not been established yet. Consequently, in this study the applicability of five existing bond-slip interface models for FRP-concrete interface to SRP-concrete interface is examined. The models' parameters are calibrated for SRP-concrete interface using an experimental database by the present authors and compared with the values suggested by the original authors for FRP-concrete interface. The database involves results of tests on concrete prisms bonded to SRP strips. The experimental interfacial bond-slip relationship for the former interface is observed to have a more precipitous descent after the peak stress than predicted by the existing models; consequently, a new model is proposed here to capture this phenomenon. All the models are calibrated using a classical technique which minimizes the difference between the measured and computed interfacial shear stress values at different slip levels. The results indicate that all the models predict relatively well the slope of the ascending branch of the shear stress-slip curve, but they give substantially different values for the maximum shear stress attainable and noticeably different descending branch profiles. Among these, overall, the proposed model is in relatively better agreement with the experimental results.
机译:相对最近,已经提出了一种钢织物/层压板,用于使用聚合树脂从外部增强混凝土结构。钢纤维-聚合物复合材料系统称为钢增强聚合物(SRP)。为了确定SRP翻新混凝土结构的极限承载能力,必须准确预测SRP-混凝土界面脱粘载荷,这需要鲁棒的局部粘结滑移模型。许多设计指南都将模式II界面断裂能限制作为FRP-混凝土界面的破坏准则。对于增强SRP的成员,尚未建立合适的本构法和破坏准则。因此,在这项研究中,研究了五个现有的粘结-滑移界面模型对于FRP-混凝土界面到SRP-混凝土界面的适用性。本作者使用实验数据库对SRP混凝土界面的模型参数进行了校准,并与原始作者针对FRP混凝土界面建议的值进行了比较。该数据库包含结合到SRP条上的混凝土棱镜的测试结果。观察到前者界面的实验性界面结合-滑移关系在峰值应力之后比现有模型预测的具有更大的下降。因此,这里提出了一个新的模型来捕获这种现象。所有模型都使用经典技术进行了校准,该技术可以最大程度地减少在不同滑移水平下测量的和计算的界面剪切应力值之间的差异。结果表明,所有模型都相对较好地预测了剪应力-滑移曲线的上升分支的斜率,但是它们给出了可达到的最大剪应力的显着不同值,并且下降分支轮廓明显不同。其中,总体而言,所提出的模型与实验结果相对较好。

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