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A mesoscale interface approach to modelling fractures in concrete for material investigation

机译:用中尺度界面方法对混凝土中的裂缝进行建模以进行材料研究

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Advanced computational modelling can provide a powerful tool for material investigation and characterisation. For concrete materials, appropriate description of the heterogeneity and realisation of complex fractures are two challenging aspects in high fidelity numerical simulations. This paper presents a new mesoscale model for concrete with the ability of simulating natural evolution of fracture at the interface between the aggregates and mortar matrix and without restriction to the loading conditions. To this end, a combined cohesive and contact interface approach is employed. The contact-friction process at a fractured interface is treated as an independent process that complements the general cohesive law, thus allowing the closure of cracked surfaces and the development of residual shear resistance in a realistic manner. Parametrisation is conducted to examine the effects of pertinent interface parameters on the macroscopic behaviour of concrete. The modelling approach is demonstrated to be capable of simulating the behaviour of concrete under a variety of loading conditions, including confined and dynamic compression. The new mesoscale model provides a comprehensive numerical means for investigating into the micro-mesoscale mechanisms underlying the macroscopic behaviour of concrete. (C) 2018 Elsevier Ltd. All rights reserved.
机译:先进的计算建模可以为材料研究和表征提供强大的工具。对于混凝土材料,高保真度数值模​​拟中对异质性和复杂裂缝的实现的适当描述是两个具有挑战性的方面。本文提出了一种新的混凝土中尺度模型,该模型能够模拟骨料与砂浆基体之间的界面处的断裂自然演化,并且不受载荷条件的限制。为此,采用了结合的内聚和接触界面方法。断裂界面处的接触摩擦过程被视为独立的过程,可补充一般的内聚规律,因此可以以现实的方式封闭裂纹表面并形成残余抗剪强度。进行参数化以检查相关界面参数对混凝土宏观性能的影响。事实证明,该建模方法能够模拟各种荷载条件下混凝土的行为,包括有限和动态压缩。新的中尺度模型为研究混凝土宏观行为基础的微观尺度机制提供了全面的数值手段。 (C)2018 Elsevier Ltd.保留所有权利。

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