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  4. A Cyclic Backbone Curve for Shear-Critical Reinforced Concrete Walls
 
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A Cyclic Backbone Curve for Shear-Critical Reinforced Concrete Walls

Source
Journal of Structural Engineering United States
ISSN
07339445
Date Issued
2019-04-01
Author(s)
Epackachi, Siamak
Sharma, Nikhil
Whittaker, Andrew
Hamburger, Ronald O.
Hortacsu, Ayse
DOI
10.1061/(ASCE)ST.1943-541X.0002277
Volume
145
Issue
4
Abstract
Backbone curves are used in seismic design standards as the basis for developing component models for nonlinear static and dynamic analysis. Herein, data from 240 tests of rectangular, barbell, and flanged shear-critical walls are assembled and analyzed to develop an improved cyclic backbone curve for use in nonlinear response-history analysis. Values of drift ratio and normalized lateral force at the control points on the cyclic backbone curve are identified. The effects of design parameters, including wall aspect ratio, axial load, day-of-test concrete compressive strength, vertical and horizontal web reinforcement ratio, reinforcement ratio in the boundary elements, and yield strength of reinforcement, on the coordinates of the control points are addressed. The accuracy of equations for peak shear strength is assessed using the collected test data.
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URI
https://d8.irins.org/handle/IITG2025/23325
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