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An analytical model for stress-strain behavior of confined concrete

机译:承压混凝土应力应变特性分析模型

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It is well known that the strength and ductility of concrete are highly dependent on the level of confinement provided by the lateral reinforcement. The stiffness and the constitutive behavior of the confining reinforcement (elastic, elastoplastic, etc.) are the important factors affecting the behavior of concrete. In this study, a new simple confined concrete model is developed for describing the axial and lateral deformation characteristics of concrete under triaxial compression. The stress-strain relationship of confined concrete in the axial direction is defined with an elastic region followed by a nonlinear curve. The descending region of the stress-strain curve is defined using a constant failure energy criterion. The elastic limit, ultimate strength, and residual capacity of confined concrete are determined using the Leon-Pramono criterion. The lateral deformation of confined concrete is described using a function that provides a smooth transition from elastic to inelastic behavior and satisfies the zero volumetric strain condition at ultimate strength. The model estimations are compared with the results of triaxial concrete compression tests, and fiber reinforced polymer (FRP) and steel confined concrete tests reported in the literature. A good agreement was observed in terms of ultimate strength, residual strength, and axial and lateral deformation behavior. It was observed that the model can be successfully applied for FRP and steel confined concrete, removing the need to adjust parameters for different lateral reinforcement types. Finally, a parametric study was conducted to investigate the effect of the lateral reinforcement ratio, concrete strength, and compressive failure energy on the behavior of steel and FRP confined concrete.
机译:众所周知,混凝土的强度和延展性高度取决于侧向钢筋所提供的约束水平。约束钢筋的刚度和本构行为(弹性,弹塑性等)是影响混凝土行为的重要因素。在这项研究中,建立了一个新的简单约束混凝土模型,用于描述三轴压缩下混凝土的轴向和横向变形特性。承压混凝土在轴向的应力-应变关系由弹性区域和非线性曲线定义。应力-应变曲线的下降区域是使用恒定破坏能量准则定义的。密闭混凝土的弹性极限,极限强度和残余承载力是使用Leon-Pramono准则确定的。使用提供从弹性到非弹性行为的平滑过渡并满足极限强度下的零体积应变条件的函数来描述承压混凝土的横向变形。将模型估计值与文献中报道的三轴混凝土压缩试验,纤维增强聚合物(FRP)和钢约束混凝土试验的结果进行比较。在极限强度,残余强度以及轴向和横向变形行为方面观察到很好的一致性。据观察,该模型可以成功地应用于FRP和钢承压混凝土,而无需为不同的横向钢筋类型调整参数。最后,进行了参数研究,以研究侧向配筋率,混凝土强度和压缩破坏能对钢和FRP约束混凝土性能的影响。

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