This paper proposes a curved link-slab (CLS) structure, simplified into a hingeless arch model, to address the current cracking phenomenon of CLS concrete. The stress formula of the hingeless arch under various loads is derived based on the classical mechanic’s method. Based on an actual bridge example, the mechanical properties of CLS are analyzed under different loads and load combinations. The results show that: (1) the CLS stress is significantly lower than that of the flat link-slab structure (FLS), (2) its stress values are less than the concrete tensile limit, and (3) the CLS can effectively solve the concrete cracking phenomenon on the link-slab. The rationality of the stress formula derived from the simplified model of the hingeles...
RC slabs can be subjected simultaneously to transverse loads and in-plane tensile forces, as it happ...
In order to investigate the mechanical behavior, ultimate load carrying capacity, and failure mode o...
In current design practice, the philosophy for the strength design of reinforced and prestressed con...
Water leakage and debris accumulation caused by the expansion joints in a bridge superstructure redu...
Link slab is proposed to eliminate deck joints for multi-span simply supported girder bridge. Howeve...
In this study a four-leg lattice structure CFST arch bridge is analyzed using finite element softwar...
The link slab could be applied to the abutment-superstructure connections to eliminate deck joints t...
The development of steel reinforced concrete in the early 20th century led to a decline in masonry a...
Reinforced concrete arch bridges offer unique functionality and aesthetic appeal---particularly when...
ABSTRACT The stability assessment of concrete arch bridges is considered for 4 heritage examples, ha...
Curved concrete bridge girders have very complex internal forces, stress and strain distribution. As...
Deformation of the main girder is absorbed by a continuously reinforced concrete pavement (CRCP) wit...
The main objective of this research is to understand the development of arch action in a single T-be...
Hollow core slab bridges are constructed by placing prefabricated or prestressed box beams adjacent ...
This research investigates three-dimensional finite element modeling techniques for slab-on-girder b...
RC slabs can be subjected simultaneously to transverse loads and in-plane tensile forces, as it happ...
In order to investigate the mechanical behavior, ultimate load carrying capacity, and failure mode o...
In current design practice, the philosophy for the strength design of reinforced and prestressed con...
Water leakage and debris accumulation caused by the expansion joints in a bridge superstructure redu...
Link slab is proposed to eliminate deck joints for multi-span simply supported girder bridge. Howeve...
In this study a four-leg lattice structure CFST arch bridge is analyzed using finite element softwar...
The link slab could be applied to the abutment-superstructure connections to eliminate deck joints t...
The development of steel reinforced concrete in the early 20th century led to a decline in masonry a...
Reinforced concrete arch bridges offer unique functionality and aesthetic appeal---particularly when...
ABSTRACT The stability assessment of concrete arch bridges is considered for 4 heritage examples, ha...
Curved concrete bridge girders have very complex internal forces, stress and strain distribution. As...
Deformation of the main girder is absorbed by a continuously reinforced concrete pavement (CRCP) wit...
The main objective of this research is to understand the development of arch action in a single T-be...
Hollow core slab bridges are constructed by placing prefabricated or prestressed box beams adjacent ...
This research investigates three-dimensional finite element modeling techniques for slab-on-girder b...
RC slabs can be subjected simultaneously to transverse loads and in-plane tensile forces, as it happ...
In order to investigate the mechanical behavior, ultimate load carrying capacity, and failure mode o...
In current design practice, the philosophy for the strength design of reinforced and prestressed con...