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DAMAGE AND FAILURE ANALYSIS OF CONCRETE USING SYNTHETIC 3D MESO-STRUCTURES

机译:用合成3D中型结构的混凝土损伤与故障分析

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Concrete is one of the key materials used in the construction of nuclear power plants, with both structural and shielding functions. Understanding the aging of concrete in service is essential prerequisite for advanced plant life assessment. Aging is associated with changes in the complex heterogeneous structure of concrete, which could be chemically and/or mechanically driven. First steps towards modelling and predicting aging can be made by appropriate representations of concrete at its meso-structural length scale, where it is a three-phase composite, containing mortar, coarse aggregates and voids. This work presents generation and packing algorithms for modelling three-dimensional heterogeneous concrete specimens with randomly distributed spherical, ellipsoidal and polyhedral aggregates and voids, with prescribed size distributions, shape and volume fraction. Models are meshed automatically and include cohesive elements at all interfaces between continuum elements. The cohesive elements represent potential crack paths and their traction-separation laws are different within the mortar, within the aggregates and at the interfaces between these phases. Mesoscale crack initiation, propagation and coalescence are simulated naturally with the cohesive elements. The models are solved by FEM, and statistically analysed to evaluate the effects of mechanical behaviour of concrete. The proposed methodology provides an effective and efficient tool for damage and failure analysis of concrete, and a comprehensive study was conducted for 3D heterogeous concretes in this paper.
机译:混凝土是结构和屏蔽功能的构建中使用的关键材料之一。了解服务中混凝土老化是先进植物寿命评估的必要先决条件。老化与混凝土复杂异质结构的变化有关,其可以化学和/或机械驱动。展望和预测老化的第一步骤可以通过其中间结构长度的混凝土的适当表示来制备,其中是三相复合材料,含有砂浆,粗聚集体和空隙。该工作提出了用于用随机分布的球形,椭圆形和多面体聚集体和空隙建模三维异质混凝土样本的产生和包装算法,规定尺寸分布,形状和体积分数。模型自动啮合,包括连续元件之间的所有接口的凝聚元素。粘合元件代表潜在的裂纹路径,它们的牵引性定律在砂浆内不同,聚集体和这些相之间的界面。 Mescle裂纹启动,传播和聚结用粘性元素自然模拟。通过FEM解决模型,统计学分析以评估混凝土机械行为的影响。该提出的方法提供了一种有效且有效的混凝土损坏和故障分析工具,并对本文的3D杂化混凝土进行了综合研究。

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