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Prediction of cracking, yield and ultimate strengths based on the concrete three-phase micromechanics model

机译:基于混凝土三相微力学模型的开裂,屈服和极限强度预测

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摘要

On a microscopic scale, concrete was regarded as a three-phase composite consisting of coarse aggregate, cement mortar and interface transition zone (ITZ). The coarse aggregates and their peripheral ITZ were equated with equivalent particles blended in cement mortar through two equivalent processes. Taking the effects of ITZ, aggregate gradation, maximum aggregate size and the interactions among equivalent particles into consideration, the average stress of microscopic phase of concrete was calculated based on a micromechanics model, and the stress concentration within ITZ phase was further solved. Adopting the Drucker-Prager criterion to decide the failure of the microscopic phases, the cracking strength, yield strength and ultimate strength of the concrete were calculated respectively when the ITZ cracking, the ITZ failure and the mortar failure occurred. The results were compared with test data to verify the effectiveness and reliability of the model. Based on the model, the influence of the elastic modulus of coarse aggregate, the coarse aggregate content and the elastic modulus of ITZ on the yield strength and ultimate strength are discussed. This paper presents an approach to explore the connection between macroscopic strength and microscopic phase strength, which provides a theoretical reference for studying the failure mechanism of concrete. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在微观上,混凝土被视为由粗骨料,水泥砂浆和界面过渡区(ITZ)组成的三相复合材料。通过两个等效过程,将粗骨料及其外围ITZ等同于在水泥砂浆中混合的等效颗粒。考虑到ITZ的影响,骨料的级配,最大骨料的大小以及等效颗粒之间的相互作用,基于微力学模型计算了混凝土微观相的平均应力,并进一步解决了ITZ相内的应力集中。采用Drucker-Prager判据确定微观相的破坏,分别计算了ITZ开裂,ITZ破坏和砂浆破坏发生时混凝土的抗裂强度,屈服强度和极限强度。将结果与测试数据进行比较,以验证模型的有效性和可靠性。基于该模型,讨论了粗骨料的弹性模量,粗骨料含量和ITZ的弹性模量对屈服强度和极限强度的影响。本文提出了一种探索宏观强度与微观相强度之间联系的方法,为研究混凝土的破坏机理提供了理论参考。 (C)2018 Elsevier Ltd.保留所有权利。

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