Influence of loading rate on failure mode of reinforced concrete members

Author:

Isaac Philip1,Darby Antony1,Ibell Tim1,Evernden Mark1

Affiliation:

1. Department of Architecture and Civil Engineering, University of Bath, Bath, UK

Abstract

The lack of simplified methods for accurately predicting the response mode of reinforced concrete structural members (predominantly beams and columns) to impulsive loads indicates a lack of fundamental understanding of the complicated response of members in this situation. This often leads to engineers using over-simplified analytical methods or developing complex finite-element models, the reliability of which has been questioned. This paper presents the development of a theoretical model for predicting the initial demand on a reinforced concrete member subjected to impulsive loads, which can be used to show whether a brittle shear failure results. The model treats the response as being dominated by a wave phenomenon and employing a time increment approach to solve the equation of motion. Under impact loading, the model is able to demonstrate why higher velocity impacts are more likely to cause brittle shear failures in reinforced concrete beams than slower ones for the same impact energy. The paper concludes by extending the proposed method to predict the shear and bending demands on a blast-loaded member. It is hoped that through this new analytical model, design guidelines for new structures can be improved and better assessments of the vulnerability of existing structures can be carried out.

Publisher

Thomas Telford Ltd.

Subject

Mechanics of Materials,Civil and Structural Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Numerical investigation on low-velocity impact response of CFRP wraps in presence of concrete substrate;Composite Structures;2020-01

2. Response of Slab-Column Connections under Dynamic Collapse Load Rates;ACI Structural Journal;2019-09

3. Effect of loading velocity on the seismic behavior of RC joints;Earthquakes and Structures;2015-03-25

4. Editorial;Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics;2013-12

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