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A lateral strain plasticity model for FRP confined concrete

机译:FRP承压混凝土的侧向应变塑性模型

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摘要

This paper presents a plasticity constitutive formulation for actively and passively confined concrete. The loading surface is based on Menetrey and Willam's model with an additional frictional driver parameter. The frictional driver parameter controls the prediction of the peak stress and the residual stress level. The proposed flow rule has a plastic dilation rate control parameter which is a function of the restraining device or the local lateral modulus. A non-constant plastic dilation rate formulation is proposed to improve the prediction of the lateral strain behaviour of concrete. The proposed plastic dilation rate formulation is able to model plastic volumetric compaction caused by the use of very stiff confining devices, as well as the initial plastic compaction after the onset of localized cracking. Furthermore, the formulation is able to distinguish between active and passive confinement by monitoring the local lateral modulus. The accuracy of the proposed plastic dilation rate formulation is verified by comparison with experimental results for specimens subjected to either active or passive confinement from a variety of concrete strengths. The comparison between the proposed plasticity model and the experimental results for concrete under passive confinement (specimens with FRP confining material) was excellent. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:本文介绍了主动和被动约束混凝土的塑性本构公式。加载表面基于Menetrey和Willam模型,并带有附加的摩擦驱动参数。摩擦驱动器参数控制峰值应力和残余应力水平的预测。所提出的流动规则具有塑性膨胀率控制参数,该参数是约束装置或局部横向模量的函数。提出了一种非恒定塑性膨胀率公式,以改善对混凝土侧向应变行为的预测。拟议的塑性膨胀率公式能够模拟由于使用非常坚硬的限制装置而引起的塑料体积压缩,以及在局部开裂发生后的初始塑料压缩。此外,该制剂能够通过监测局部横向模量来区分主动约束和被动约束。通过与由各种混凝土强度进行主动或被动约束的试样的实验结果进行比较,验证了所提出的塑性膨胀率配方的准确性。所提出的可塑性模型与被动约束下混凝土的试验结果(采用FRP约束材料的样品)进行了比较。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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