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A new method for formulating crack spacing models of RC ties

机译:建立钢筋混凝土连接缝间距模型的新方法

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摘要

Cracking of concrete is one of the most complicated phenomena in reinforced concrete analysis and is one of the key aspects governing serviceability analysis of RC structures. Current methods for investigating cracking rely on empirical approaches that give unreliable results with errors of multiple times the real value. A new non-empirical method based on the combination of the stress-transfer and the smeared approaches is proposed for deriving crack spacing models. The stress-transfer approach governs the strain distribution of the reinforcement between the consecutive cracks whereas the smeared approach allows for the estimation of the mean strain of the element. The suggested method introduces the concept of damage zones: the bond in the area adjacent to the normal cracks is considered to be fully damaged, thus bond behaviour is non-uniform in the segment between cracks. Crack spacing models were derived using the load-strain analysis method presented in the Eurocode 2 and were shown to give results that are in good agreement with the crack spacing values taken from available experimental data.
机译:混凝土开裂是钢筋混凝土分析中最复杂的现象之一,也是控制钢筋混凝土结构使用寿命的关键方面之一。当前研究裂纹的方法依赖于经验方法,这些方法会给出不可靠的结果,其误差是实际值的几倍。提出了一种基于应力传递和拖尾法相结合的非经验方法来推导裂缝间距模型。应力传递方法控制连续裂缝之间钢筋的应变分布,而拖尾方法则允许估算单元的平均应变。所建议的方法引入了损坏区域的概念:与正常裂缝相邻的区域中的粘结被认为是完全损坏的,因此在裂缝之间的段中粘结行为是不均匀的。裂缝间距模型是使用Eurocode 2中介绍的载荷应变分析方法得出的,结果表明,该结果与从可用实验数据中得出的裂缝间距值非常吻合。

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