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Creep, Shrinkage, and Anisotropic Damage in Alkali-Aggregate Reaction Swelling Mechanism-Part I:A Constitutive Model

机译:碱-骨料反应膨胀机理的蠕变,收缩和各向异性破坏-第一部分:本构模型

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摘要

Modeling the behavior of alkali aggregate reaction (AAR)-damaged concrete is made complex by the large number of elementary physical phenomena to be taken into account (concrete reactivity, thermal activation, moisture dependence, concrete rheology, and damage interaction). This paper presents the elementary physical principles that lead to the formulation of a visco-elasto-plastic orthotropic damage model including chemical pressure induced by AAR. Particular attention is also paid to the modeling of moisture effects on AAR development and on drying shrinkage. The constitutive modeling proposed is developed into the framework of an anisotropic damage theory to realistically model the strong cracking anisotropy and swelling observed on affected reinforced beams. This paper is followed by a second one in which a calibration procedure is given for the model parameters and experimental results are used to verify the capability of the model to describe the mechanical behavior of degraded structures under various environmental and loading conditions.
机译:考虑到大量的基本物理现象(混凝土的反应性,热活化性,湿度依赖性,混凝土的流变性和损伤相互作用),对破坏碱集料反应(AAR)的混凝土的行为进行建模变得复杂。本文介绍了导致制定粘弹塑性正交异性损伤模型(包括由AAR引起的化学压力)的基本物理原理。还特别注意了水分对AAR形成和干燥收缩的影响的建模。提出的本构模型被开发到各向异性损伤理论的框架中,以真实地模拟在受影响的加固梁上观察到的强裂纹各向异性和溶胀。本文后面是第二篇,其中给出了模型参数的校准程序,并使用实验结果验证了模型描述各种环境和载荷条件下退化结构的力学行为的能力。

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