Railway Construction — John Stuart Mill — John Shaqi
Railway Construction
John Stuart Mill · en
curved portion of our lines, heedless of the close approach to the
limit of safety, and unless this excessive speed be controlled in
time, the result must be disaster on a very large scale.
A sharp curve leading into or out of a terminal station or main-line
stopping-station does not so much affect the train running as a sharp
curve at an intermediate point between stations where the train may be
expected to run at its maximum speed. Wherever it is possible it is
very desirable to avoid sharp curves on inclines, because there are
times when descending trains may acquire a considerable velocity, and
wheels tightly gripped by the brakes have not the same facility for
following the curves as when they are running free.
In rugged and mountainous districts sharp curves are almost
unavoidable, except by introducing a series of tunnels; but in these
districts both the gradients and curves are alike exceptional, the
speed is necessarily slow, and special precautions are taken for the
ascending and descending trains.
[Illustration: Fig. 30, 31, 32, 33, 34, 35, 36, 37, 38]
When setting out reverse curves on a main line a piece of straight
line should always be laid in between the termination of the one curve
and the beginning of the other, to allow of a proper adjustment of the
rails to suit the super-elevation adopted on each of the adjoining
curves. In station yards and sidings this is not so absolutely
necessary, the sorting of the carriages and waggons and the
marshalling of the trains being carried on at a low speed, which does
not necessitate any super-elevation of the rails on the curves. The
speed of the train regulates the amount of super-elevation to be given
on any particular curve, and to ensure smooth and safe running this
amount must be maintained uniform all round the curve. On curves of
small radius, guard, or check, rails are frequently placed alongside
the inner rail, as in Figs. 30 to 33, to check the tendency of the
engine to leave the rails and run in a straight line. For the
bull-head road a special chair is used, which holds both the
running-rail and the check-rail, as shown on the sketch, the rails
being kept the proper distance apart by the web portion in the centre,
which forms part of the casting. For the flange railroad, check-rails
are sometimes made of strong angle irons placed against the flange of
the running-rail, and bolted to the transverse sleepers. This method 53
is not nearly so strong or efficient as the arrangement shown on Fig.
33, with a cast-iron distance-block about six inches long, placed
between the running-rail and check-rail, and all tied together with a
strong through bolt. A bolt-hole is punched in the edge of the flange
of check-rail, and a crab bolt and clip holds the two rails on the
sleeper. The cast-iron distance-blocks are placed just outside the
sleeper, so as not to interfere with the holding-down bolt. Doubtless
these guard rails do good service, but if the leading wheels of the