Integral abutment bridges (IABs) are increasingly preferred over expansion joint bridges due to their ease of construction, and lower maintenance and repair cost. However, no consistent design guidelines exist for IABs due to the complexities associated with soil-structure interactions and nonlinear behaviour of the backfill soil used for the abutments. The temperature-induced cyclic movement of a bridge abutment causes an increase in lateral earth pressure on the abutment wall, which could lead to stress ratcheting. After a number of thermal cyclic movements, permanent soil densification and settlement at the bridge approach will result. In order to study abutment-soil interactions at a different magnitude of cyclic loading, model scale ex...
The integral bridge concept eliminates problems associated with expansion joints and bearings used o...
Deformation of bridges that are induced by thermal loads can be accommodated by expansion joints and...
PDFTech ReportVCTIR 13-R7RC00010Jointless bridgesEarth wallsBridge piersThermal expansionContraction...
Integral abutment bridges (IABs) have been increasingly utilized in many countries due to the advant...
Abutments in integral bridges experience rotational cyclic movements as a result of the temperature ...
To reduce long-term maintenance costs arising from the deterioration of concrete bridges due to leak...
Integral abutment bridges(IABs) are bridges designed without the use of expansion joints. Hence, the...
Compared with conventional bridges, integral bridges have no bearings or joints between the decks an...
Integral Abutment Bridges are widely utilized around the world because they offer a design alternati...
Abutment walls in integral abutment bridges (IABs) move in a cyclic pattern in response to temperatu...
The soil adjacent to integral bridge abutments experiences daily and annual temperature-induced cycl...
Integral abutment bridges (IAB)are becoming increasing popular both in Australia and globally due to...
Integral abutment bridges (IAB), which are characterized by a lack of thermal expansion joints and b...
Dissertation (MEng (Structural Engineering))--University of Pretoria, 2023.Although the construction...
Interest in integral abutment bridges (IABs) from the industry has increased in recent years. IABs a...
The integral bridge concept eliminates problems associated with expansion joints and bearings used o...
Deformation of bridges that are induced by thermal loads can be accommodated by expansion joints and...
PDFTech ReportVCTIR 13-R7RC00010Jointless bridgesEarth wallsBridge piersThermal expansionContraction...
Integral abutment bridges (IABs) have been increasingly utilized in many countries due to the advant...
Abutments in integral bridges experience rotational cyclic movements as a result of the temperature ...
To reduce long-term maintenance costs arising from the deterioration of concrete bridges due to leak...
Integral abutment bridges(IABs) are bridges designed without the use of expansion joints. Hence, the...
Compared with conventional bridges, integral bridges have no bearings or joints between the decks an...
Integral Abutment Bridges are widely utilized around the world because they offer a design alternati...
Abutment walls in integral abutment bridges (IABs) move in a cyclic pattern in response to temperatu...
The soil adjacent to integral bridge abutments experiences daily and annual temperature-induced cycl...
Integral abutment bridges (IAB)are becoming increasing popular both in Australia and globally due to...
Integral abutment bridges (IAB), which are characterized by a lack of thermal expansion joints and b...
Dissertation (MEng (Structural Engineering))--University of Pretoria, 2023.Although the construction...
Interest in integral abutment bridges (IABs) from the industry has increased in recent years. IABs a...
The integral bridge concept eliminates problems associated with expansion joints and bearings used o...
Deformation of bridges that are induced by thermal loads can be accommodated by expansion joints and...
PDFTech ReportVCTIR 13-R7RC00010Jointless bridgesEarth wallsBridge piersThermal expansionContraction...