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Creep damage modelling for quasi-brittle materials

机译:准脆性材料的蠕变损伤建模

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Softening and time-dependence of fracture are two complex and coupled phenomena that have to be taken into account in order to simulate realistic concrete or rock behaviour. Understanding the interaction between these two phenomena is important to design reliable civil engineering structures subjected to high level loading during a long time. The aim of this paper is to develop a simple time-dependent softening model applied to quasi-brittle materials such as rock or concrete. A three-dimensional constitutive visco-damage model describes phenomena like relaxation, creep and rate-dependent loading using a unified framework. The model could be viewed as a generalisation of a time-independent damage model and is based on strong thermodynamical arguments. A general material stability analysis is proposed in case of uniaxial monotonic loading. Phenomena as creep failure under high-sustained load are explained quite simply within stability theory. Creep failure appears as the manifestation of a bifurcation phenomenon. Consequently, this model is able to predict creep failure for various stress level. Conversely, for low-sustained load, the motion asymptotically converges towards an equilibrium configuration, also called equilibrium curve. As for endochronic models, no initial threshold is assumed. Nevertheless, an apparent elastic domain is identified for constant strain rate tests, which reveals the competition between the internal kinetics of damage and the strain rate imposed on the material.
机译:断裂的软化和时间依赖性是两个复杂且耦合的现象,为了模拟真实的混凝土或岩石行为,必须考虑这些现象。了解这两种现象之间的相互作用对于设计可靠的,长期承受高水平荷载的土木工程结构非常重要。本文的目的是开发一种适用于准脆性材料(如岩石或混凝土)的简单的随时间变化的软化模型。三维本构粘滞损伤模型使用统一框架描述了诸如松弛,蠕变和取决于速率的加载等现象。该模型可以看作是与时间无关的损伤模型的概括,并且基于强大的热力学论据。提出了单轴单调加载情况下的一般材料稳定性分析。在稳定性理论中非常简单地解释了在高持续载荷下蠕变破坏的现象。蠕变破坏表现为分叉现象的表现。因此,该模型能够预测各种应力水平下的蠕变破坏。相反,对于低持续负载,运动渐近收敛于平衡构型,也称为平衡曲线。对于内部模型,不假定初始阈值。尽管如此,对于恒定的应变速率测试,仍可以识别出明显的弹性域,这揭示了内部破坏动力学与施加在材料上的应变速率之间的竞争。

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