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Parametric Study and Design Method of Compressed Steel-Rubber Composite Anti-Collision Device

 Parametric Study and Design Method of Compressed Steel-Rubber Composite Anti-Collision Device
Author(s): , , ORCID, ,
Presented at IABSE Congress: Bridges and Structures: Connection, Integration and Harmonisation, Nanjing, People's Republic of China, 21-23 September 2022, published in , pp. 845-853
DOI: 10.2749/nanjing.2022.0845
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The compressed steel-rubber composite anti-collision device is a new type of self-floating device protect bridges from ship collision, which can significantly reduce the structural damage caused by...
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Bibliographic Details

Author(s): (Tongji University, Shanghai, China)
(Tongji University, Shanghai, China)
ORCID (Tongji University, Shanghai, China)
(Tongji University, Shanghai, China)
(University of Castilla-La Mancha, Spain)
Medium: conference paper
Language(s): English
Conference: IABSE Congress: Bridges and Structures: Connection, Integration and Harmonisation, Nanjing, People's Republic of China, 21-23 September 2022
Published in:
Page(s): 845-853 Total no. of pages: 9
Page(s): 845-853
Total no. of pages: 9
DOI: 10.2749/nanjing.2022.0845
Abstract:

The compressed steel-rubber composite anti-collision device is a new type of self-floating device protect bridges from ship collision, which can significantly reduce the structural damage caused by ship collision. The use of compressed tires recycles the old tires and increases the elasticity of the device. Based on experimental analysis, the paper continued to develop detailed finite element model to investigate the behavior of the anti-collision device. Besides the comparison with the test results, parametrical study was developed including the thickness, position, number of the diaphragms to evaluate the sensitive parameters, so as to determine the design parameters for different collision conditions. Finally, a simplified design method including the key parameters was proposed to simplify the design process of anti-collision design.

Keywords:
ultimate load capacity anti-collision device parametrical study simplified formula
Copyright: © 2022 International Association for Bridge and Structural Engineering (IABSE)
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