These are bow and string girders, of 100 feet span, and were made of
considerable height, not only to reduce the strain on each of the
members of the framework, but also in order that the rib or upper
portion of each truss might be braced diagonally to the corresponding
portion of the other trusses, and headway left for the locomotive
chimneys to pass underneath. This bracing counteracts any tendency of
the ribs to bend sideways under the compressive strain. The form of the
trusses is shown in fig. 1, Pl. IV. (p. 206). Each truss is a
wrought-iron polygonal arch of triangular section, from which is
suspended a horizontal girder supporting the roadway. This girder also
forms the tie which connects the feet of the arch and counteracts its
thrust. The diagonal braces shown on the elevation of the bridge prevent
the arch from being distorted by the unequal loading caused by a
passing train. The middle truss is twice the strength of each of those
at the outside, being made so by increasing the thickness of the plates.
One of the outside trusses was tested with a distributed load of 1½ tons
per foot-run of its length.
[Illustration: _Scale of feet._
Fig. 10. Truss of Windsor Bridge.
_Transverse Section._]
At about the same time that the Newport viaduct was reconstructed, Mr.
Brunel designed the bridge over the Thames on the Windsor branch of the
Great Western Railway. This is a very large example of the bow and
string girder, the span being 202 feet, and the height of the truss 23
feet. The trusses are three in number, for two lines of way, the middle
one being twice the strength of the outside trusses. The elevation of
the Windsor bridge is shown in fig. 2, Pl. IV. (p. 206). The bridge is
oblique to the river, being 20° off the square. To steady the arched
ribs sideways a system of diagonal bracing extends over the whole of the
top of the trusses, except at the ends, where headway has to be left for
the trains.
A section of the arched ribs and of the roadway girders in the centre of
one of the trusses is given in the woodcut (fig. 10). The arched rib, to
resist compression, is of triangular section.[99]
* * * * *
The borings to ascertain the nature of the ground at the foundations of
the piers were made in 1846, but it was not until 1848 that the works
were commenced. Each abutment consists of six cast-iron cylinders, 6
feet diameter, which were sunk by excavating the gravel from their
interior by hand dredging and by placing weights on the top so as to
force them down.
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