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Short Stud Arrangement Effect on Flexural Behavior of Steel-UHPC Composite Decks

 Short Stud Arrangement Effect on Flexural Behavior of Steel-UHPC Composite Decks
Autor(en): , , , ,
Beitrag für IABSE Congress: Bridges and Structures: Connection, Integration and Harmonisation, Nanjing, People's Republic of China, 21-23 September 2022, veröffentlicht in , S. 607-615
DOI: 10.2749/nanjing.2022.0607
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To investigate the effects of short stud arrangement on flexural behavior of steel-UHPC composite decks, a static bending test was conducted on a full-scale segmental specimen and a parametric anal...
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Bibliografische Angaben

Autor(en): (College of Civil Engineering, Tongji University, Shanghai, China)
(College of Civil Engineering, Tongji University, Shanghai, China)
(College of Civil Engineering, Tongji University, Shanghai, China)
(College of Civil Engineering, Tongji University, Shanghai, China)
(Shanghai Municipal Engineering Design Institute (Group) Co., Ltd, Shanghai, China)
(Shanghai Municipal Engineering Design Institute (Group) Co., Ltd, Shanghai, China)
Medium: Tagungsbeitrag
Sprache(n): Englisch
Tagung: IABSE Congress: Bridges and Structures: Connection, Integration and Harmonisation, Nanjing, People's Republic of China, 21-23 September 2022
Veröffentlicht in:
Seite(n): 607-615 Anzahl der Seiten (im PDF): 9
Seite(n): 607-615
Anzahl der Seiten (im PDF): 9
DOI: 10.2749/nanjing.2022.0607
Abstrakt:

To investigate the effects of short stud arrangement on flexural behavior of steel-UHPC composite decks, a static bending test was conducted on a full-scale segmental specimen and a parametric analysis was executed based on a validated finite-element model. The test results showed that when UHPC crack width reached 0,10 mm, the measured strain of UHPC was 1568 με, accounting for 47% of the material ultimate tensile strain. And the corresponding nominal stress of UHPC was largely over the material cracking stress. The parametric analysis results showed that increasing stud spacing from 200 mm to 300 mm increased the UHPC cracking load by 9,7% because of a lower composite action; compared with the normal arrangement, studs arranged in groups with the same amount could increase the UHPC cracking load by 11,1% while maintaining the combined effect. However, this was under the condition that the steel and UHPC partially interacted.

Stichwörter:
Finite-Elemente-Simulation
Copyright: © 2022 International Association for Bridge and Structural Engineering (IABSE)
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