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Thermodynamic gradient-based poroplastic theory for concrete under high temperatures

机译:高温下基于热力学梯度的多孔塑性理论

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摘要

Concrete materials subjected to long term exposures to high temperatures suffer severe degradations in its mechanical properties (cohesion, friction, strength and stiffness) and changes in their failure mechanisms. These degradations may lead to irreversible damage or sudden collapse of the related structures. From the predictive analysis stand point, accurate constitutive theories are required to simulate the variations of concrete mechanical failure behavior under high and durable temperature fields. In the realm of the smeared crack approach, non-local model strategies are required to objectively reproduce failure behaviors under coupled thermo-mechanical loading conditions, while realistic descriptions of the involved characteristic lengths are needed to objectively reproduce the variation from ductile to brittle failure modes depending on the acting confining pressure and temperature. In this work, a thermodynamically consistent gradient poroplastic model for concrete subjected to high temperatures is proposed. A particular and simple form of gradient-based poroplasticity is considered whereby the state variables are the only ones of non-local character. The degradations of these variables due to coupled thermo-mechanical effects are described in the framework of the thermodynamic approach. After describing the material formulation, numerical analyses are presented which demonstrate the predictive capabilities of the proposed constitutive theory for different stress paths and thermal conditions.
机译:长期暴露于高温下的混凝土材料的机械性能(内聚力,摩擦力,强度和刚度)会严重下降,其破坏机理也会发生变化。这些退化可能导致相关结构不可逆转的损坏或突然倒塌。从预测分析的角度出发,需要精确的本构理论来模拟高温和持久温度场下混凝土机械破坏行为的变化。在涂抹裂纹方法的领域中,需要非局部模型策略来客观地再现在耦合热机械载荷条件下的破坏行为,而需要对所涉及特征长度的真实描述来客观地再现从延性到脆性破坏模式的变化。取决于作用围压和温度。在这项工作中,提出了高温下混凝土的热力学一致梯度多孔塑性模型。考虑基于梯度的孔隙塑性的一种特殊且简单的形式,其中状态变量是唯一的非局部特征变量。在热力学方法的框架中描述了由于耦合的热机械效应而导致的这些变量的退化。在描述了材料配方之后,进行了数值分析,这些分析证明了所提出的本构理论对不同应力路径和热条件的预测能力。

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