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Fictitious Rough Crack Model (FRCM): A Smeared Crack Modelling Approach to Account for Aggregate Interlock and Mixed Mode Fracture of Plain Concrete

机译:虚拟粗糙裂纹模型(FRCM):一种弥散裂纹建模方法解决了普通混凝土的骨料联锁和混合模式断裂问题

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摘要

The intention of this paper is to clarify the mechanisms of mixed mode fracture and shear stress transfer in plain concrete. To capture these scarcely explored phenomena, a new mechanical formulation is proposed called the fictitious rough crack model (FRCM). The FRCM considers mode I deformations to control crack formation and residual tensile stress transfer, while mode II deformations are assumed to induce shear stress transfer along the crack surfaces and compressive normal stresses attributed to aggregate interlock. The fundamental idea of the FRCM is to combine these tension-softening and shear-transfer laws and to superimpose the emerging shear and normal stresses of both mechanisms in the crack. The paper illustrates the analytical development of the FRCM and its numerical implementation. Three well-known experimental benchmark problems (concrete panel test series by Nooru-Mohamed and by Hassanzadeh as well as aggregate interlock test series by Paulay and Loeber) are numerically addressed to test plausibility of FRCM results. The numerical implementation of the FRCM is capable of simulating the transition from mode-I fracture to mixed-mode fracture in the structural response and is also able to predict the crack path with reasonable agreement.
机译:本文的目的是阐明普通混凝土中混合模式断裂和剪切应力传递的机理。为了捕获这些很少探索的现象,提出了一种新的机械公式,称为虚拟粗糙裂纹模型(FRCM)。 FRCM考虑了I型变形来控制裂纹的形成和残余拉伸应力的传递,而II型变形被认为是引起沿裂纹表面的切应力传递和归因于骨料互锁的压缩法向应力。 FRCM的基本思想是将这些张力软化和剪切传递定律结合起来,并叠加裂纹中这两种机理的新出现的剪切应力和法向应力。本文说明了FRCM的分析发展及其数值实现。对三个著名的实验基准问题(Nooru-Mohamed和Hassanzadeh的混凝土面板试验系列以及Paulay和Loeber的聚集互锁试验系列)进行了数值计算,以检验FRCM结果的合理性。 FRCM的数值实现能够模拟结构响应中从I型断裂到混合模式断裂的过渡,并且能够以合理的一致性预测裂纹路径。

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