The American Railway: Its Construction, Development, Management, and AppliancesClarke, Thomas Curtis
History
The American Railway: Its Construction, Development, Management, and Appliances
Clarke, Thomas Curtis
Railroads -- United States
It speaks well for the skill and honesty of American bridge
engineers that many of their old bridges are still in use, designed
for loads of 2,500 pounds per lineal foot, and now daily carrying
loads of 4,000 pounds and over per foot. Sometimes the floor has
been replaced by a stronger one, but the trusses still remain and
do good service. The writer may be permitted to point to the bridge
over the Mississippi River at Quincy, Ill., built in 1869, as an
example. Most bridge-accidents can be traced to derailed trains
striking the trusses and knocking them down. Engineers (both those
specially connected with bridge works, and those in charge of
railways) know much better now what is wanted, and the managers of
railways are willing to pay for the best article. The introduction
of mild steel is a great step in advance. This material has an
ultimate strength, in the finished piece, of 63,000 to 65,000
pounds per square inch, or forty per cent. more than iron, and it
is tough enough to be tied in a knot, or punched into the shape of
a bowl, while cold. With this material it is as easy to construct
spans of 500 feet as it was spans of 250 feet in iron.
Bridges are now designed to carry much heavier loads than formerly.
The best practice adopts riveted connections except at the junction
of the chord-bars and the main diagonals, where pins and eyes
are still very properly used. Plate girders below the track are
preferred up to 60 or 70 feet long, then riveted lattice up
to 125 feet. The wind strains also are now provided for with a
considerable excess of material, amounting in very long spans to
nearly as much as the strains due to gravity. Observing the rule
that no bridge can be stronger than its weakest part, a vast deal
of care and skill has been applied in perfecting the connections
of the parts of a truss, and many valuable experiments have been
made which have greatly enlarged our knowledge of this difficult
subject. The introduction of riveting by the power of steam or
compressed air is another very great improvement.[5]
[Illustration: Kinzua Viaduct; Erie Railway.]
Public-domain text, read in full here on John Shaqi.
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