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Shear characteristics of perfobond strip with SFRM based on push-out and pull-out tests

 Shear characteristics of perfobond strip with SFRM based on push-out and pull-out tests
Author(s): , , , ,
Presented at IABSE Congress: The Evolving Metropolis, New York, NY, USA, 4-6 September 2019, published in , pp. 2078-2082
DOI: 10.2749/newyork.2019.2078
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In order to sufficiently ensure the shear performance of perfobond strip connectors in steel-concrete hybrid structures, reinforcements are generally arranged inside the connection for enhancing th...
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Bibliographic Details

Author(s): (Utsunomiya University)
(Utsunomiya University)
(Utsunomiya University)
(Civil engineering office of Tochigi City)
(P.S. Mitsubishi Construction Co., Ltd.)
Medium: conference paper
Language(s): English
Conference: IABSE Congress: The Evolving Metropolis, New York, NY, USA, 4-6 September 2019
Published in:
Page(s): 2078-2082 Total no. of pages: 5
Page(s): 2078-2082
Total no. of pages: 5
DOI: 10.2749/newyork.2019.2078
Abstract:

In order to sufficiently ensure the shear performance of perfobond strip connectors in steel-concrete hybrid structures, reinforcements are generally arranged inside the connection for enhancing the restraint effect around the perfobond strip. Alternatively, the restraint effect around the perfobond strip can be enhanced by using the steel fiber reinforced mortar (SFRM) for the connection. This study aims to investigate the shear characteristics of the perfobond strip combining with SFRM in the condition without the surrounding reinforcements. The push-out and pull-out tests are carried out, and the experimental parameters are the compressive strength of SFRM, the dimensions of the perfobond steel plate and the surrounding mortar block. The influences of experimental parameters including the test method on the shear characteristics of the perfobond strip are discussed from the experimental results.

Keywords:
push-out test shear resistance pull-out test connections of precast concrete members perfobond strip steel fiber reinforced mortar