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A multiaxial load-induced thermal strain constitutive model for concrete

机译:混凝土的多轴荷载引起的热应变本构模型

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摘要

The paper presents a novel thermomechanical 3D Load-Induced Thermal Strain (LITS) model that captures the experimentally demonstrated behavior of concrete in the case of heating under multiaxial mechanical load, for temperatures up to 250 °C. In contrast to the models available in the literature, the new model takes into account the observed dependency of LITS on stress confinement. Such a dependency is introduced through a confinement coefficient which makes LITS directly proportional to the confinement of the stress state. Also, a new practical bilinear LITS model is proposed and proved to be suitable for fitting the general trend of the curves experimentally obtained for different loading conditions. The presented model is embedded in a thermoelastic material constitutive law, and then verified and validated against experiments performed on concrete specimens subjected to transient temperatures up to 250 °C under uniaxial, biaxial and triaxial compressive stress states. Once calibrated and validated, the constitutive model is used to evaluate the effects of LITS on the structural behavior of a Prestressed Concrete Pressure Vessel (PCPV) of a typical Advanced Gas cooled Reactor (AGR) subjected to a heating-cooling cycle simulating a temporary fault in its cooling system. The results of this study indicate that the development of LITS significantly influences the stress redistribution in the structure. Moreover, it is shown that in the case of PCPVs (and by extension similar structures) it is crucial to consider the LITS dependence on the stress confinement.udud
机译:本文提出了一种新型的热机械3D载荷诱导热应变(LITS)模型,该模型捕获了在多轴机械载荷下加热,温度高达250CC的情况下,混凝土在实验中表现出的行为。与文献中可用的模型相比,新模型考虑了LITS对应力限制的依赖性。这种依赖性通过限制系数引入,该限制系数使LITS与应力状态的限制成正比。此外,提出了一种新的实用双线性LITS模型,并证明该模型适合于拟合在不同载荷条件下实验获得的曲线的总体趋势。所提出的模型被嵌入到热弹性材料的本构定律中,然后针对在单轴,双轴和三轴压缩应力状态下承受最高250 C瞬态温度的混凝土试样进行的实验进行验证和验证。一旦经过校准和验证,本构模型将用于评估LITS对典型的先进气冷堆(AGR)的预应力混凝土压力容器(PCPV)的结构行为的影响,该预热混凝土压力容器经历了模拟短暂故障的加热-冷却循环在其冷却系统中。这项研究的结果表明LITS的发展显着影响结构中的应力重新分布。此外,研究表明,在PCPV(以及扩展为类似结构)的情况下,考虑LITS对应力限制的依赖性至关重要。

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