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首页> 外文期刊>Journal of structural engineering >Improved Fixed Strut-Angle Model for Analysis of Reinforced Concrete Panel Elements under Monotonic Shear Loads
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Improved Fixed Strut-Angle Model for Analysis of Reinforced Concrete Panel Elements under Monotonic Shear Loads

机译:单调剪切载荷下钢筋混凝土板元件分析改进的固定支柱模型

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Reinforced concrete (RC) structures are subjected to combinations of axial, shear, flexure, and torsional loading during an earthquake event. Comprehensive understanding of the behavior of shear panels is essential to predict the response of members under combined loading. This work focuses on the analytical modeling of RC shear panel elements. A baseline fixed strut-angle model (FSAM) was initially proposed for the shear behavior of RC panel elements, satisfying the three basic principles of mechanics: stress equilibrium, strain compatibility, and material constitutive behavior. The FSAM was later modified to consider the effect of dowel action and aggregate interlock through empirical relationships. Use of modified FSAM formulations for the estimation of the monotonic response of shear panels with different reinforcement ratios in longitudinal and transverse directions leads to loss of convergence after yielding of the transverse reinforcement. Thus, an accurate estimation of postyield response is not possible using the existing FSAM, which is critical for seismic design. This paper presents an improved algorithm for FSAM by employing experimentally validated constitutive relationships for the aggregate interlock mechanism. Comprehensive correlation studies considering parameters including the amount of reinforcement and concrete strength are reported to understand the improved FSAM. Predictions of the improved FSAM for shear panels with unequal reinforcement are better than those derived using the existing FSAM approach. (C) 2021 American Society of Civil Engineers.
机译:在地震事件期间,钢筋混凝土(RC)结构受到轴向,剪切,弯曲和扭转负荷的组合。全面了解剪切面板的行为对于预测成员在组合加载下的响应至关重要。这项工作侧重于RC剪切面板元件的分析建模。最初提出了一种基线固定支柱角模型(FSAM)用于RC面板元件的剪切行为,满足机械的三个基本原理:应力平衡,应变兼容性和材料本构行为。 FSAM后来被修改,以考虑销钉作用和聚合互锁的效果。使用改进的FSAM制剂在纵向和横向上具有不同的增强比的剪力板的单调响应导致横向加强后的收敛损失。因此,使用现有FSAM无法精确估计邮政响应,这对于地震设计至关重要。本文通过采用对聚合互锁机制的实验验证的本构关系来提高FSAM的改进算法。据报道,考虑参数的综合相关性研究,包括加强和混凝土强度的数量来了解改进的FSAM。具有不等强化的剪切面板的改进FSAM的预测优于使用现有FSAM方法的那些。 (c)2021年美国土木工程师协会。

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