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February 5, 2026Buildings0 citationsOpen Access

Flexural Behavior of One-Way Lightweight UHPC-NC Superimposed Sandwich Slabs

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ZMZiqian MaHLH. N. LiTSTian Su

Key Points

  • This research aims to evaluate the flexural performance of a new UHPC-NC sandwich slab system.
  • Introduced a UHPC-NC sandwich slab design free of conventional longitudinal reinforcement.
  • Conducted four-point bending tests to assess flexural strength and performance.
  • Compared results with a fully UHPC sandwich slab of similar design.
  • Utilized analytical and numerical methods for comprehensive evaluation of structural responses.
  • The UHPC-NC slab achieved a ductility coefficient of 3.23, surpassing that of the fully UHPC slab.
  • Demonstrated superior flexural structural integrity compared to conventional UHPC slabs.
  • Showed significant reductions in construction costs and improvements in efficiency.
  • Provided accurate assessments of cracking patterns and ultimate load capacities.

Abstract

A novel type of ultra-high-performance concrete–normal concrete (UHPC-NC) superimposed sandwich slab is introduced, which eliminates the need for conventional longitudinal reinforcement. This sandwich slab consists of a prefabricated thin UHPC layer at the bottom, a cast-in-place NC layer at the top, and an extruded polystyrene foam core that provides both acoustic and thermal insulation. The resulting lightweight composite sandwich structure is integrated with web walls reinforced by a three-dimensional truss reinforcement system. The flexural performance is examined through four-point bending tests and compared with that of a fully UHPC sandwich slab of identical structural configuration and casting progress. Relative to the fully UHPC slab, the UHPC-NC slab demonstrates superior flexural structural integrity, significantly reduces costs and improves construction efficiency. The ductility coefficient of the UHPC-NC slab reaches 3.23, which is superior to the UHPC slab. This indicates that it has a stronger collaborative working ability with the rebars and the compressed concrete. Comprehensive analytical, numerical, and experimental investigations into the flexural behavior of the proposed UHPC-NC sandwich slab yield accurate evaluation of cracking and ultimate load capacities, thereby offering valuable guidance for the engineering application of this innovative superimposed sandwich slab system.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/69843543f1d9ada3c1fb3ebehttps://doi.org/10.3390/buildings16030641
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