Article ID Journal Published Year Pages File Type
267009 Engineering Structures 2013 11 Pages PDF
Abstract

The strength and deformation capacity of concrete frames is typically governed by their nodal regions behaviour. This is particularly relevant for frame corners subjected to opening bending moments, where premature brittle failures may develop depending on the reinforcement arrangement. Although some previous investigations have shown a significant dependence of the nodal regions behaviour as a function of the corner angle (α, measured between frame axes), most research has concentrated on orthogonal corners (α = 90°). However, design recommendations obtained for orthogonal corners may not be directly applicable (neither optimal) for other corner angles, and particularly for larger corner angles. In this paper, the result of an experimental and theoretical investigation on frame corners with a corner angle (α = 125°) is presented. Sixteen tests were performed on 400-mm thickness specimens representative of actual frame corners subjected to opening bending moments. The experimental results are investigated by means of Elastic–Plastic Stress Fields and strut-and-tie models leading to a number of recommendations for their design in practice.

► The paper presents an in-depth research on existing RC corner frame tests. ► A new test series on corner frames uncovered by available tests is presented. ► New reinforcement layouts are investigated and optimised. ► Design proposals for RC opening corner frames are provided.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Geotechnical Engineering and Engineering Geology
Authors
, , ,