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Analytical study of the sectional behavior and the effective width of T-shaped reinforced concrete walls

机译:T形钢筋混凝土墙体截面行为及有效宽度的分析研究

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In this article, the sectional behavior (strain and stress) and the effective width in T-shaped reinforced concrete wall are analytically studied. For the parametric study, a nonlinear quadrilateral thin flat layered shell element with 6 degrees of freedom (DOF) per node for the modeling of reinforced concrete wall structures developed by Rojas et al. (2019) is used, varying the axial load (AL), longitudinal steel ratio of the web (LSRW) and flange (LSRF) boundary, aspect ratio (AR) relative to the length of the web of the wall (lw) and height of the wall (hw), and length of the flange (Lf). The parametric study is used to compare the element response that couple the axial, flexion and shear behavior, with a model that only incorporates the coupling of flexion and axial, maintaining plane sections (flexural model). Based on the parametric study, it is calibrated an analytic model of the strain profile of the tension flange of T-shaped walls. Additionally, by including the effect of shear in the model, amplification of the maximum compression strain and a reduction of the maximum tensile strain in the web is observed, mainly in squat walls. Besides, the parametric study is also used to calculate the effective width of Tshaped walls with the flange in tension, finding that it depends mainly on the length of the flange and the roof drift. After initiation of yielding in the flange, the effective width grows quickly, concluding that independent of the geometry and the slenderness, the effective width of the flange in tension covers the entire section if yielding is expected.
机译:在本文中,研究了T形钢筋混凝土墙的截面行为(应变和应力)和有效宽度。对于参数研究,每个节点具有6度自由度(DOF)的非线性四边形薄扁平分层壳元件,用于罗哈斯等人开发的钢筋混凝土墙体结构的建模。 (2019)使用,改变轴向载荷(Al),幅材(LSRW)和法兰(LSRF)边界的纵向钢比,纵横比(AR)相对于墙壁(LW)和高度的长度墙壁(HW)和法兰(LF)的长度。参数研究用于比较轴向,屈曲和剪切行为的元件响应,其中型号仅采用屈曲和轴向,维护平面部分(弯曲模型)的耦合。基于参数研究,校准了T形壁的张力凸缘的应变轮廓的分析模型。另外,通过包括剪切在模型中的效果,主要观察到最大压缩应变的放大和幅材中的最大拉伸应变的降低,主要是在蹲墙中。此外,参数研究还用于计算带有张力的法兰的Tspaped壁的有效宽度,发现它主要取决于法兰和屋顶漂移的长度。在发起凸缘的屈服后,有效宽度快速增长,结束性地与几何形状和细长,张力中法兰的有效宽度覆盖整个部分,如果预期屈服。

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