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Cohesive cracked-hinge model for simulation of fracture in one-way slabs on grade

机译:用于模拟单向平板断裂的内聚裂纹铰链模型

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摘要

Numerical analysis of slab on grade structures subjected to mechanical loads is a complex matter often requiring computationally expensive models. In order to develop a simplified and general concept for non-linear analysis of slab on grade structures, this paper presents a cohesive cracked-hinge model aimed at the analysis of the bending fracture of the cemented material. The model is based on the fracture mechanics concepts of the fictitious crack model with a linear stress-crack opening relationship. Moreover, the paper presents a two-parameter spring foundation model applied to realistically capture the continuity in the supporting medium. The functionality of the proposed model is compared to numerical analysis with application of the more conventional cohesive zone model. The results obtained show that the methodology is a attractive and powerful one well-suited for practical use and further development.
机译:在承受机械载荷的坡度结构上对楼板进行数值分析是一件复杂的事情,通常需要计算昂贵的模型。为了建立简化的平板对楼板结构非线性分析的通用概念,本文提出了一种内聚裂纹铰链模型,旨在分析胶结材料的弯曲断裂。该模型基于虚拟裂纹模型的断裂力学概念,具有线性应力-裂纹开口关系。此外,本文提出了一个两参数弹簧基础模型,可用于实际捕获支撑介质中的连续性。通过使用更常规的内聚区模型,将所提出模型的功能与数值分析进行了比较。所获得的结果表明,该方法是一种非常有吸引力且功能强大的方法,非常适合实际使用和进一步开发。

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