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https://science.howstuffworks.com/engineering/civil/bridge4.htm
All these different truss patterns also factored into how beam bridges were being built. Some takes featured a through truss above the bridge, while others boasted a deck truss beneath the bridge. A single beam spanning any distance undergoes compression and tension.
https://theconstructor.org/structural-engg/cantilevered-beams-trusses-applications-advantages/36236/
The particular advantage of cantilevered truss for very great spans is that it can be erected without scaffolding under the center, and in bridge work this is considered as its only advantage. For roofing platforms and grand stands, where an outer support is not desired, it is the only type of truss available.
https://www.tn.gov/tdot/structures-/historic-bridges/what-is-a-truss-bridge.html
A properly designed and built truss will distribute stresses throughout its structure, allowing the bridge to safely support its own weight, the weight of vehicles crossing it, and wind loads. The truss does not support the roadway from above, like a suspension bridge, or from below, like an arch bridge…
https://science.howstuffworks.com/engineering/civil/bridge3.htm
This support truss adds rigidity to the existing beam, greatly increasing its ability to dissipate the compression and tension. Once the beam begins to compress, the force spreads through the truss. Yet even with a truss, a beam bridge is only good for a limited distance.
https://www.answers.com/Q/How_does_a_truss_bridge_support_a_load
The strengths of Truss bridges are that Truss bridges can support and resist lateral loads. Another is that unlike the Arch and Beam bridges, the Truss bridge prevents twisting and swaying during earthquakes and high winds. Truss bridges also resist the forces of compression and tension.
https://www.quora.com/How-does-a-truss-bridge-work
The truss does not support the roadway from above, like a suspension bridge, or from below, like an arch bridge; rather, it makes the roadway stiffer and stronger, helping it hold together against the various loads it encounters.
https://en.wikipedia.org/wiki/Truss_bridge
A lenticular truss bridge includes a lens-shape truss, with trusses between an upper arch that curves up and then down to end points, and a lower arch that curves down and then up to meet at the same end points. Where the arches extend above and below the roadbed, it is a lenticular pony truss bridge.Ancestor: Beam bridge
https://www.quora.com/How-does-a-bridge-support-weight-mechanically-speaking
When a load is placed on the bridge, there is an element that transfers the load from the center of the bridge to the supports. This is carried out by bending in case of beam, axial forces in case of truss, cables and arches. This happens because we are resisting the load from falling down.
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