Application of shrinkage prediction models to restraint crack formation in unbonded post-tensioned slabs

  • Lara, Gabriela R. Martinez; 
  • Shin, Myoungsu; 
  • Byun, Yong-Hoon; 
  • Zi, Goangseup; 
  • Kang, Thomas H-K.
Citations

WEB OF SCIENCE

1
Citations

SCOPUS

1

초록

This study aims to investigate the effect of restraint configuration on crack formation due to shrinkage-and-creep-induced volumetric change in unbonded post-tensioned slabs. The first part of this study focuses on the comparison of existing shrinkage and creep calculation models that are used to predict the volume-changing behavior of concrete. The second part of this study presents the finite element analysis of a series of architectural configuration prototypes subjected to shrinkage and creep, which comprise unbonded post-tensioned slabs with various restraint configurations. The shrinkage and creep effects were simulated in the analysis by imposing strains obtained from one selected calculation model. The results suggest that a slab up to 300 ft. (90 m) in length does not require a closure strip if it is unrestrained by perimeter walls, and that the most effective restraint crack mitigation strategy for a slab restrained by perimeter walls is a partial wall release.

키워드

crack formation; post-tensioning concrete slabs; restraint crack; shrinkage prediction; DRYING SHRINKAGE; CREEP; DESIGN
제목
Application of shrinkage prediction models to restraint crack formation in unbonded post-tensioned slabs
저자
Lara, Gabriela R. Martinez; Shin, Myoungsu; Byun, Yong-Hoon; Zi, Goangseup; Kang, Thomas H-K.
DOI
10.12989/cac.2024.33.4.349
발행일
2024-04
유형
Article
저널명
Computers and Concrete, An International Journal
권
33
호
4
페이지
349 ~ 359