4.7 Article

Seismic performance of precast shear wall with sleeves connection based on experimental and numerical studies

Journal

ENGINEERING STRUCTURES
Volume 150, Issue -, Pages 346-358

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.engstruct.2017.06.026

Keywords

Precast reinforced concrete shear wall; Grout-filled sleeves connection; Force-displacement mixed control; Quasi-static test; Axial-flexure-shear boundary condition

Funding

  1. National Key Research and Development Program of China [2016YFC0701106]
  2. National Science Foundation of China [51308159, 51161120360, 51408157]
  3. A Set of Technology Study and Engineering Application Examples for Building Industrialization in Yunnan Province [2012CA025]

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The seismic behavior of a full-scale precast reinforced concrete shear wall (PRCSW) endowed with single-row grout-filled sleeves connection, which was developed for six-story precast box-modularized structures with reinforced concrete shear walls (PBSRCSWs), is investigated in this paper. In order to accurately reproduce theaxial-flexure-shear boundary conditions of PRCSW specimens under quasi static loading, this paper proposes a force-displacement mixed control method. Relevant experimental results showed that desired axial forces, rotations and lateral deformations were effectively accomplished on the specimens. Moreover, the PRCSW specimen resembled the cast-in-situ shear wall specimen in terms of failure modes, interstory drift angle, ultimate force, ductility and dissipated hysteretic energy. In particular, the maximum interstory drift angle of the PRCSW specimen reached 17.86 mrad. Finally, experimental results and numerical simulations indicated that the proposed grout-filled sleeves connection method can be safely employed in six-story PBSRCSWs. (C) 2017 Published by Elsevier Ltd.

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