Latent resistance mechanisms of steel truss bridges after critical failures

成果类型:
Article
署名作者:
Reyes-Suarez, Juan C.; Buitrago, Manuel; Barros, Brais; Mammeri, Safae; Makoond, Nirvan; Lazaro, Carlos; Riveiro, Belen; Adam, Jose M.
署名单位:
Universitat Politecnica de Valencia; Universidade de Vigo; Universitat Politecnica de Valencia
刊物名称:
Nature
ISSN/ISSBN:
0028-3068
DOI:
10.1038/s41586-025-09300-8
发表日期:
2025-09-04
关键词:
robustness collapse
摘要:
Steel truss bridges are constructed by connecting many different types of bars (components) to form a load-bearing structural system. Several disastrous collapses of this type of bridge have occurred as a result of initial component failure(s) propagating to the rest of the structure1, 2-3. Despite the prevalence and importance of these structures, it is still unclear why initial component failures propagate disproportionately in some bridges but barely affect functionality in others4, 5, 6-7. Here we uncover and characterize the fundamental secondary resistance mechanisms that allow steel truss bridges to withstand the initial failure of any main component. These mechanisms differ substantially from the primary resistance mechanisms considered during the design of (undamaged) bridges. After testing a scaled-down specimen of a real bridge and using validated numerical models to simulate the failure of all main bridge components, we show how secondary resistance mechanisms interact to redistribute the loads supported by failed components to other parts of the structure. By studying the evolution of these mechanisms under increasing loads up to global failure, we are able to describe the conditions that enable their effective development. These findings can be used to enhance present bridge design and maintenance strategies, ultimately leading to safer transport networks.