Bridge bearings are crucial elements in bridge engineering, responsible for transferring loads between the bridge superstructure and the supporting substructure. They ensure proper load distribution, stability, and minimize stress concentrations, extending the lifespan of bridges and enhancing their safety.
Bearing Type | Advantages |
---|---|
Elastomeric | High load capacity, shock absorption |
Steel | Durability, low friction |
Rocker | Angular movement accommodation |
Bridge bearings provide rotational or translational movement to accommodate bridge movements due to thermal expansion, shrinkage, and live loads. They prevent binding and shear stresses, ensuring load transfer without compromising structural integrity. Bearings are designed to withstand various forces, including vertical loads, axial loads, and moments.
Bearing Element | Function |
---|---|
Top plate | Transfer load from superstructure |
Base plate | Transfer load to substructure |
Elastomeric layer | Provides flexibility and shock absorption |
Reinforcement | Prevents premature failure |
Advanced bridge bearings incorporate innovative features for enhanced performance and durability:
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