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Application of Drucker-Prager Plasticity Model for Stress-Strain Modeling of FRP Confined Concrete Columns

机译:德拉伯 - PRAGER塑性模型在FRP紧孔混凝土柱的应力 - 应变模型中的应用

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Existing research works have identified that Drucker-Prager (DP) plasticity model is capable of modeling the stress-strain behavior of confined concrete. However, the accuracy of the model largely depends on the adequate evaluation of its parameters that determine the yield criterion, hardening/softening rule and flow rule. Up to date, most research works mainly focus on the first two criteria. The plastic dilation angle is the major parameter that governs the DP flow rule. This paper addresses the plastic dilation properties of concrete for FRP confined circular concrete columns under the theoretical framework of DP model in the commercial software ABAQUS. Through careful analyses of test results for FRP confined concrete columns, it is found that the plastic dilation angle is a function of axial plastic strain and the lateral stiffness ratio. A simple model for the plastic dilation angle is subsequently developed. With the implementation of this model, the finite element analysis results fit well with the experimental stress-strain curves for columns with both low and high confinement.
机译:现有的研究工作已经确定了DRUCKER-PRAGER(DP)塑性模型能够建模密闭混凝土的应力 - 应变行为。然而,模型的准确性很大程度上取决于其参数的足够评估,确定屈服标准,硬化/软化规则和流量规则。最新的,大多数研究主要主要关注前两个标准。塑料扩张角度是控制DP流量规则的主要参数。本文在商业软件ABAQUS中的DP模型理论框架下,解决了FRP混凝土的塑料扩张性能。通过仔细分析FRP限制混凝土柱的测试结果,发现塑料扩张角是轴向塑性应变和横向刚度比的函数。随后开发了一种简单的塑料扩张角模型。随着该模型的实现,有限元分析结果与具有低宽度和高限制的实验性应力 - 应变曲线相适合。

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