Constitutive Model for Equivalent Stress-Plastic Strain Curves Including Full-Range Strain Hardening Behavior of High-Strength Steel at Elevated Temperatures

Author:

Zeng XiangORCID,Wu Wanbo,Zou Juan,Elchalakani Mohamed

Abstract

High-strength steel has been increasingly applied to engineering structures and inevitably faces fire risks. The equivalent stress-plastic strain (σeq− εeqp) curves of steel at elevated temperatures are indispensable if a refined finite element model is used to investigate the response of steel members and structures under fire. If the tensile deformation of steel is considerable, the σeq− εeqp curves at elevated temperatures are required to consider the strain-hardening behavior during the post-necking phase. However, there is little research on the topic. Based on the engineering stress-strain curves of Q890 high-strength steel in a uniaxial tension experiment at elevated temperatures, the σeq−εeqp curves before necking are determined using theoretical formulations. An inverse method based on finite element analysis is used to determine the σeq− εeqp curves during the post-necking phase. The characteristics of σeq−εeqp curves, including the full-range strain hardening behavior at different temperatures, are discussed. An equivalent stress-plastic strain model of Q890 steel at elevated temperature is proposed, which is consistent with the σeq−εeqp curves. The constitutive model is further verified by comparing the finite element analysis and test results.

Funder

National Key R&D Program of China

Publisher

MDPI AG

Subject

General Materials Science

Reference40 articles.

1. Static strength of tubular T/Y-joints reinforced with collar plates at fire induced elevated temperature;Mar. Struct.,2019

2. The behaviour of steel frames subject to fire;J. Constr. Steel Res.,1995

3. Experimental study on material properties of Q345 steel at high temperature;Build. Struct.,2001

4. Behavior of High Strength Structural Steel at Elevated Temperatures;J. Struct. Eng.,2006

5. Dependence of mechanical properties of high strength steel S690 on elevated temperatures;Constr. Build. Mater.,2012

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