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Non-structural cracking in RC walls: Part II. Quantitative prediction model

机译:钢筋混凝土墙体的非结构性开裂:第二部分。定量预测模型

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In this paper, for a quantitative assessment of non-structural cracking in an RC wall, an improved analytical model is proposed. First of all, to quantitatively calculate the cracking potential, an analytical model that can estimate the post-cracking behavior in an RC tension member is proposed. Unlike conventional approaches that use the bond-slip relationship or the assumed bond stress distribution, in our proposed approach the tensile strength of concrete at the post-cracking stage is quantified on the basis of polynomial strain distribution functions of steel and concrete. Predictions of cracking loads and elongations of reinforcing steel in RC tension members using the proposed model show good agreement with results from*previous analytical studies and from experimental data. Subsequent comparisons of analytical results with test results verify that the combined use of both the approach in this paper as well as the approach previously introduced in the companion paper to this research make it possible to accurately predict the cracking behavior of RC walls. Additionally, the influence of changes in the material properties and construction conditions on the cracking in RC walls is investigated theoretically, using the numerical model proposed in this paper.
机译:为了定量评估钢筋混凝土墙的非结构性开裂,提出了一种改进的分析模型。首先,为了定量计算开裂可能性,提出了一种可以估计RC受拉构件开裂后行为的分析模型。与使用粘结-滑动关系或假定的粘结应力分布的传统方法不同,在我们提出的方法中,根据钢和混凝土的多项式应变分布函数来量化开裂后混凝土的抗拉强度。使用所提出的模型预测钢筋混凝土受拉构件中钢筋的开裂载荷和伸长率,与先前的分析研究和实验数据的结果吻合良好。随后将分析结果与测试结果进行比较,证明结合使用本文中的方法以及先前在该论文中引入的本研究中的方法,可以准确预测RC墙的开裂行为。此外,利用本文提出的数值模型,从理论上研究了材料性能和施工条件的变化对钢筋混凝土墙体开裂的影响。

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