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Crack width analysis of reinforced concrete members under flexure by finite element method and crack queuing algorithm

机译:钢筋混凝土构件受弯裂缝宽度的有限元分析和裂纹排队算法。

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In reinforced concrete design, it is necessary to evaluate the crack widths so as to ensure compliance with the design codes. However, crack width analysis is not easy and so far only empirical formulas, which do not agree with each other, are available for rough estimation. Particularly, the smeared crack models, which do not allow for bond-slip of reinforcing bars, would not give any crack widths. On the other hand, the discrete crack models are difficult to apply because of the need to adaptively generate discrete crack elements to follow the crack formation. Herein, a new finite element method for discrete crack analysis, which does not require the use of discrete crack elements, is developed. The reinforcing bars are modeled by discrete bar elements and their bond-slip is allowed for using interface elements. Moreover, a crack queuing algorithm is employed to simulate the stress redistribution during cracking and a cracking criterion based on both tensile strength and fracture toughness is adopted to cater for stress concentration at crack tips for correct prediction of crack number, spacing and widths. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在钢筋混凝土设计中,有必要评估裂缝宽度,以确保符合设计规范。但是,裂纹宽度分析并不容易,到目前为止,只有经验公式彼此不一致,才可以进行粗略估计。特别是,不允许钢筋发生粘结滑移的涂污裂缝模型不会给出任何裂缝宽度。另一方面,由于需要自适应地生成离散裂纹元素以跟随裂纹形成,因此离散裂纹模型难以应用。在这里,开发了一种新的用于离散裂纹分析的有限元方法,该方法不需要使用离散裂纹元素。钢筋是由离散的钢筋单元建模的,并且允许使用界面单元来进行粘结滑移。此外,采用裂纹排队算法来模拟开裂过程中的应力重新分布,并采用基于拉伸强度和断裂韧性的开裂准则来满足裂纹尖端的应力集中,从而正确预测裂纹的数量,间距和宽度。 (C)2015 Elsevier Ltd.保留所有权利。

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