Steel and Composite Structures
Volume 49, Number 4, 2023, pages 381-392
DOI: 10.12989/scs.2023.49.4.381
Experimental assessment on flexural behavior of demountable steel-UHPC composite slabs with a novel NPR steel plate
Jin-Ben Gu, Jun-Yan Wang, Yi Tao and Qing-Xuan Shi
Abstract
This study experimentally investigates the flexural behavior of steel-UHPC composite slabs composed of an
innovative negative Poisson's ratio (NPR) steel plate and Ultra High Performance Concrete (UHPC) slab connected via
demountable high-strength bolt shear connectors. Eight demountable composite slab specimens were fabricated and tested under
traditional four-point bending method. The effects of loading histories (positive and negative bending moment), types of steel
plate (NPR steel plate and Q355 steel plate) and spacings of high-strength bolts (150 mm, 200 mm and 250 mm) on the flexural
behavior of demountable composite slab, including failure mode, load-deflection curve, interface relative slip, crack width and
sectional strain distribution, were evaluated. The results revealed that under positive bending moment, the failure mode of
composite slabs employing NPR steel plate was distinct from that with Q355 steel plate, which exhibited that part of highstrength bolts was cut off, part of pre-embedded padded extension nuts was pulled out, and UHPC collapsed due to
instantaneous instability and etc. Besides, under the same spacing of high-strength bolts, NPR steel plate availably delayed and
restrained the relative slip between steel plate and UHPC plate, thus significantly enhanced the cooperative deformation
capacity, flexural stiffness and load capacity for composite slabs further. While under negative bending moment, NPR steel plate
effectively improved the flexural capacity and deformation characteristics of composite slabs, but it has no obvious effect on the
initial flexural stiffness of composite slabs. Meanwhile, the excellent crack-width control ability for UHPC endowed composite
members with better durability. Furthermore, according to the sectional strain distribution analysis, due to the negative Poisson's
ratio effect and high yield strength of NPR steel plate, the tensile strain between NPR steel plate and UHPC layer held strain
compatibility during the whole loading process, and the magnitude of upward movement for sectional plastic neutral axis could
be ignored with the increase of positive bending moment.
Key Words
composite slab; cooperative deformation; flexural behavior; negative Poisson
Address
Jin-Ben Gu and Qing-Xuan Shi:College of Civil Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi, 710055, China
Jun-Yan Wang:Key Laboratory of Advanced Civil Engineering Materials, Tongji University, Ministry of Education, Shanghai, 201804, China
Yi Tao:1)College of Civil Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi, 710055, China
2)State Key Laboratory of Green Building, Xi'an University of Architecture and Technology, Xi'an, Shaanxi, 710055, China