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An integrated approach for predicting the shear capacity of fibre reinforced concrete beams

机译:一种预测纤维增强混凝土梁抗剪承载力的综合方法

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摘要

This paper describes the development of an integrated design approach for determining shear capacity of flexurally reinforced steel fibre reinforced concrete members. The approach considers fibre distribution profile, fibre pull-out resistance and the modified compression field theory integrated using a comprehensive strategy. To assess the performance of the developed model, a database consisting of 122 steel fibre reinforced and prestressed concrete beams failing in shear was assembled from available literature. The model predictions were shown to correlate well with the test data. The performance of the analytical model was also compared to predictions attained by the two approaches recommended by the fib Model Code 2010, one based on an empirical equation and the other on the modified compression field theory approach. The predictive performance of the proposed approach was also assessed by using the Demerit Points Classification (DPC), being the prediction as better as lower is the total penalty points provided by the classification. The model developed in this paper demonstrated a superior performance to those of the Model Code, with a higher predictive performance in terms of safety and reliability.
机译:本文描述了用于确定抗弯钢筋钢纤维增强混凝土构件的抗剪承载力的综合设计方法的发展。该方法考虑了纤维分布分布,纤维抗拔强度和使用综合策略整合的改进压缩场理论。为了评估开发模型的性能,从现有文献中收集了一个数据库,该数据库包含122根未通过剪切的钢纤维增强和预应力混凝土梁。模型预测显示与测试数据很好地相关。分析模型的性能也与fib模型代码2010推荐的两种方法所获得的预测进行了比较,一种基于经验公式,另一种基于改进的压缩场理论方法。还通过使用记分点分类(DPC)评估了所提出方法的预测性能,该分类的预测总罚分越低越好。本文开发的模型表现出优于标准规范的性能,在安全性和可靠性方面具有更高的预测性能。

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