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Deterministic size effect in concrete structures with account for chemo-mechanical loading

机译:考虑化学机械载荷的混凝土结构的确定尺寸效应

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摘要

The work presented here is focused on examining the size effect in concrete structures subjected to different loading conditions, which include a chemo-mechanical interaction. The study involves extensive three dimensional finite element simulations, which incorporate a constitutive law with embedded discontinuity for tracing the propagation of damage pattern. The analysis deals with various mechanical scenarios that incorporate both a cohesive and frictional damage mechanism, as well as the effects of degradation of concrete triggered by continuing alkali-silica reaction (ASR). In the latter case, a chemoplasticity framework is employed. The first set of simulations provides a deterministic assessment of the size effect in a series of three-point bending tests as well as compression tests. For continuing ASR, it is demonstrated that, by increasing the size of the structure, a spontaneous failure may occur under a sustained load. The numerical examples given here clearly show that the size effect is associated with propagation of localized damage whose rate is controlled by a suitably defined 'characteristic length'. (C) 2016 Elsevier Ltd. All rights reserved.
机译:此处介绍的工作重点是检查混凝土结构在不同载荷条件下的尺寸效应,其中包括化学-机械相互作用。该研究涉及广泛的三维有限元模拟,该模拟结合了具有嵌入不连续性的本构定律,以追踪损伤模式的传播。该分析处理了各种机械场景,这些场景结合了内聚和摩擦损伤机理,以及由于持续的碱-二氧化硅反应(ASR)引发的混凝土降解的影响。在后一种情况下,采用化学可塑性框架。第一组模拟提供了一系列三点弯曲测试和压缩测试中对尺寸效果的确定性评估。对于连续的ASR,已证明,通过增加结构的尺寸,在持续的载荷下可能会发生自发的破坏。此处给出的数字示例清楚地表明,尺寸效应与局部损伤的传播相关,局部损伤的发生率由适当定义的“特征长度”控制。 (C)2016 Elsevier Ltd.保留所有权利。

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