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February 2, 2026Advances in Structural Engineering0 citations

Static and fatigue performance of composite deck slabs with notched perfobond ribs

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YSYichi ShiXXXiaoqing XuYLY. LIU

Key Points

  • This research aims to evaluate the static and fatigue performance of composite deck slabs with notched perfobond ribs.
  • Developed finite element models to analyze static load transfer mechanisms.
  • Evaluated fatigue performance using the Smith-Watson-Topper model and critical plane method.
  • Conducted a parametric study to assess the effects of geometric parameters on performance.
  • NCDS showed similar static performance to regular CDSs.
  • Fillet welds were identified as critical for fatigue crack initiation in the shear-bending region.
  • Proper rib design could enhance fatigue life by 36.4% compared to regular CDSs.

Abstract

To accelerate the construction of composite deck slabs (CDSs), a novel detail (NCDS) is proposed, where regular perfobond ribs are replaced with notched ones so that the perforating rebars can be easily placed inside the holes. First, finite element models were established to reveal the static load transfer mechanism and compare it with regular CDSs. Then, the fatigue performance was evaluated by employing the Smith-Watson-Topper model based on critical plane method. Finally, the effects of geometric parameters were investigated through a parametric study. Results show that NCDS shows no significant difference in static performance compared to regular CDSs. The fillet welds connecting the bottom plate and notched ribs are subjected to multiaxial stress, and the shear-bending region is the most critical position for fatigue crack initiation. The parametric study demonstrates that with proper design of rib geometries, NCDSs could reach a 36.4% higher fatigue life than regular CDSs.

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Cite This Study

Shi et al. (2026) studied this question.

synapsesocial.com/papers/6980ffe7c1c9540dea812cc7https://doi.org/10.1177/13694332261420439
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