Composite Effects Between Steel Girder and Orthotropic Steel Deck Connected by Shear Force Transferring Members During Deck Replacement Work

Author:

Kitaichi Sayuri1,Takeno Masakazu1,Shiratori Mitsuru2,Morikawa Kazusa2,Yamaguchi Takashi3,Nakamura Shunichi4

Affiliation:

1. Nippon Steel Corporation, Tokyo, Japan

2. Yokogawa NS Engineering Corp., Tokyo, Japan

3. Osaka Metropolitan University, Osaka, Japan

4. Tokai University, Tokyo, Japan

Abstract

<p>To shorten the construction period, a novel deck replacement method, which does not need the removal of the entire existing reinforced concrete deck above the girder flanges, has been developed and applied to actual deck replacement work. This method is characterized by a load transfer between the girder and the deck using shear force transferring members (SFTMs). To verify this composite effect by installing SFTMs in accordance with the construction stage, field measurement and FEM analysis have been carried out. The obtained results indicate that the neutral axis in the cross section of the girder moves upward as the construction progress. If the index is defined as 100% for the fully composite state and 0% for a non- composite state, its value for the obtained state is approximately 70%, which indicates that SFTMs have sufficient functionality to enable the interaction between the girder and orthotropic steel deck effective.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference5 articles.

1. Newmark, N.M., C.P. Siess, and I.M. Viest. Test and Analysis of Composite Beams with Incomplete Interaction. Proc. of the Society for Experimental Stress Analysis. 1951; Vol. 9,No. 1: pp. 75-92.

2. Nonlinear Analysis of Steel-Concrete Composite Structures: State of the Art;Enrico Spacone;Journal of Structural Engineering (ASCE)

3. Sadao KOMATSU, Takashi SASAKI. Theory and Approximate Calculation Method of Composite Grillage Girder Bridges Having Incomplete Interaction. Proceedings of the Japan Society of Civil Engineers. 1983; Issue 329: pp.27-37. (in Japanese)

4. Experimental and numerical study on static behavior of elastic concrete-steel composite beams;Ying Xing;Journal of Constructional Steel Research

5. Experimental investigation of steel-concrete composite beams with different degrees of shear connection under monotonic and fatigue loads;Bing Wang;Advances in Structural Engineering

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