Prediction of Top-Down Transverse Cracking in Jointed Plain Concrete Pavement

Authors

  • Yanfei Peng
  • Will Hansen
  • David L. Smiley
  • Elin A. Jensen

DOI:

https://doi.org/10.33593/iccp.v8i1.588

Keywords:

top-down transverse cracking, JPCP, void, LTE, ABAQUS, deflection, slab-base contact, slab support

Abstract

This paper describes the findings of a recently completed investigation by the University of Michigan to identify the causes for premature, mid-slab cracking of joined plain concrete pavement (JPCP) in Michigan. The study found several factors are working interactively to induce slab cracking. The major factor is the support characteristics of the unbound open-graded aggregate base. Deflection testing showed a permanent loss of slab contact with the base (void) exists near the doweled joint. Time history analysis of the deflection data showed that the dowels are very likely loose. Loss of slab-base contact without pumping suggests that post-compaction under heavy vehicle loading or particle degradation is occurring. In addition, the study found that the load transfer efficiency (LTE) across joints has declined since construction. Finite element analysis (ABAQUS) was used to evaluate the extent and significance of these factors on tensile stress and fatigue cracking. Fatigue failure culminates from excessive tensile stress at mid-slab at the slab’s topside outer edge. The slab stress predictions correlate well with the deflection-based fatigue model by Wu et al. (1993) suggesting that a threshold corner deflection criteria may be used to determine when loss of slab support is critical.

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Published

2025-01-17

How to Cite

[1]
Peng, Y. et al. 2025. Prediction of Top-Down Transverse Cracking in Jointed Plain Concrete Pavement. Proceedings of the International Conference on Concrete Pavements. 8, 1 (Jan. 2025). DOI:https://doi.org/10.33593/iccp.v8i1.588.