Discoveries and Inventions of the Nineteenth CenturyRoutledge, Robert
History
Discoveries and Inventions of the Nineteenth Century
Routledge, Robert
Inventions -- History -- 19th century
The toothed rail or rack which was formerly supposed necessary to obtain
power of traction on rails has been already mentioned (p. 101), and as
early as 1812 such a contrivance appears to have been in use in England,
near Leeds, the invention of a Mr. Blenkinsop. This mode of traction
received no development or improvement worthy of notice until Mr. S.
Marsh constructed, in 1866, a railway ladder—for so it may be called—for
the ascent of Mount Washington in the United States. In this case there
was a centre rail formed of iron, angle iron laid between and parallel
to the metals on which ran the wheels of the carriages. In this centre
rail angle irons were connected by round bars of wrought iron, which the
teeth of a pinion of the locomotive engaged, so that a climbing action,
resembling somewhat that of a wheel entering on the successive rounds of
a ladder, was produced, and in this way an ascensive power was obtained
sufficient to overcome gravity, the gradient not much exceeding a rise
of one foot in three at any point (12 vertical to 32 horizontal). This
railway was completed in 1869, and for more than a quarter of a century
it has carried thousands of tourists to the summit of Mount Washington
without a single fatal accident. This system of ascending mountains was
soon adopted in Europe with certain improvements, for in 1870 an
inclined railway was constructed to the summit of the Rigi, in which a
system of involute gearing was substituted for the ladder-like rounds of
Mr. Marsh. A certain vibratory action, due to the successive engagements
of the teeth in the central rack, which was somewhat disagreeable for
passengers, was soon afterwards obviated in the Abt system, in which two
racks are used, with the teeth of one opposite the spaces of the other,
and a double pinion provided, so that greater uniformity in the acting
power is obtained. With certain modifications in detail, such as
horizontal instead of vertical pinions, this system has been largely
adopted wherever cables have been dispensed with. In the inclined
railway by which Mount Pilatus, near Lucerne, is now ascended,
horizontal teeth project from both sides of a centre rail, and these are
engaged by horizontal pinions. The incline here is very steep, being in
places nearly 30 degrees; teeth perpendicular to the plane of the
incline would have offered a less margin of safety than those on the
plan actually adopted. In some places, as among the Alps, and more
particularly in South America, there are railways in which the ordinary
mode of traction and that with the rack are combined; that is, where the
gradient exceeds the ordinary limit, a central rack-rail is laid down,
on approaching which the engineer slackens his speed, and allows
pinions, moved by the locomotive, to become engaged in the double rack,
by which he slowly climbs the steep ascent until a level tract is
reached which permits of the ordinary traction being resumed.
[Illustration:
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