TY - JOUR
T1 - Structural Metals after Exposure to High Temperatures
T2 - Residual Mechanical Properties and Predictions
AU - Cai, Yancheng
AU - Ho, Hung Wai
AU - Li, Shuxiang
AU - Mensinger, Martin
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024
Y1 - 2024
N2 - Most research works have focused on studying the postfire (after exposure to high temperatures) mechanical properties of either carbon steel, stainless steel, or aluminum alloy. There are few studies directly comparing the mechanical properties of these structural metals after exposure to high temperatures, and there is no universal predictive equation describing their postfire retention factors. Herein, mechanical properties of structural metals (i.e., carbon steel, stainless steel, and aluminum alloy) after exposure to high temperatures are experimentally investigated. The mechanical properties of these structural metals are compared and rigorously analyzed. Existing equations are assessed by comparing their predictions against the corresponding postfire retention factors of the coupon specimens. A unified equation for the postfire mechanical properties of structural metals is developed, proposing different sets of coefficients for various structural metals based on the new test data from this study and the existing literature. The unified equation generally provides a safe and convenient assessment method, enabling practical engineers to determine the mechanical properties of metal structures after exposure to high temperatures in terms of Young's modulus, 0.2% proof stress (yield strength), and ultimate strength.
AB - Most research works have focused on studying the postfire (after exposure to high temperatures) mechanical properties of either carbon steel, stainless steel, or aluminum alloy. There are few studies directly comparing the mechanical properties of these structural metals after exposure to high temperatures, and there is no universal predictive equation describing their postfire retention factors. Herein, mechanical properties of structural metals (i.e., carbon steel, stainless steel, and aluminum alloy) after exposure to high temperatures are experimentally investigated. The mechanical properties of these structural metals are compared and rigorously analyzed. Existing equations are assessed by comparing their predictions against the corresponding postfire retention factors of the coupon specimens. A unified equation for the postfire mechanical properties of structural metals is developed, proposing different sets of coefficients for various structural metals based on the new test data from this study and the existing literature. The unified equation generally provides a safe and convenient assessment method, enabling practical engineers to determine the mechanical properties of metal structures after exposure to high temperatures in terms of Young's modulus, 0.2% proof stress (yield strength), and ultimate strength.
KW - aluminum alloys
KW - carbon steels
KW - high-performance steels
KW - mechanical properties
KW - postfire
KW - stainless steels
UR - http://www.scopus.com/inward/record.url?scp=85212214653&partnerID=8YFLogxK
U2 - 10.1002/srin.202400610
DO - 10.1002/srin.202400610
M3 - Article
AN - SCOPUS:85212214653
SN - 1611-3683
JO - Steel Research International
JF - Steel Research International
ER -