Logo do repositório

FEM-based practical recommendations for detailing UHPC wet joints of precast slabs

Carregando...
Imagem de Miniatura

Orientador

Coorientador

Pós-graduação

Curso de graduação

Título da Revista

ISSN da Revista

Título de Volume

Editor

Elsevier

Tipo

Artigo

Direito de acesso

Acesso restrito

Resumo

The structural performance of bridges with full-depth precast slabs relies on the effectiveness of cast-in-place concrete wet joint in transferring forces. These wet joints are formed over interlocking reinforcement bars, with wet joint detailing being a critical factor in the behavior of slab connections. The reinforcement arrangement should be simple to manufacture, easy to assemble on-site, and ensure the durability and strength of the connection, which can be optimized by using ultra-high-performance fiber-reinforced concrete (UHPC). This study investigates the performance of different reinforcement wet joint configurations in connections between full-depth precast slabs and evaluates their performance using UHPC as wet joint filler material. Experimental results were selected from the literature to calibrate the behavior of finite element model of the wet joint. Numerical results showed that the UHPC properties contribute significantly to enhance connection performance, particularly in the anchorage between reinforcement bars, allowing for reduced reinforcement splice length compared to conventional concrete. Anchorage failure is avoided with a minimum connection length of 200 mm and a splice length of at least 7.5 times the diameter of the longitudinal bars (db). Additionally, the use of headed or looped bars in the connection improves reinforcement anchorage.

Descrição

Palavras-chave

Full-depth precast slab, Connection, UHPC, Numerical simulation, Reinforcement joints

Idioma

Inglês

Citação

SILVA, M. A. do R. da; SOUSA, A. M. D. de; ARAÚJO, D. de L.; SANABRIA DÍAZ, R. A.; KRAHL, P. A.; EL DEBS, M. K.. FEM-based practical recommendations for detailing UHPC wet joints of precast slabs. Structures, Oxford, v. 80, n. p. 1-20, 2026. DOI: https://doi.org/10.1016/j.istruc.2025.109798.

Itens relacionados

Unidades

Item type:Unidade,
Faculdade de Engenharia
FEIS
Campus: Ilha Solteira


Departamentos

Cursos de graduação

Programas de pós-graduação

Outras formas de acesso