Great Facts: A Popular History and Description of the Most Remarkable Inventions During the Present CenturyBakewell, Frederick C. (Frederick Collier)
History
Great Facts: A Popular History and Description of the Most Remarkable Inventions During the Present Century
Bakewell, Frederick C. (Frederick Collier)
Inventions
The length of telegraphic communication established at Munich, in 1837,
by Dr. Steinheil, was an important practical advance in the system of
extending and insulating the wires, and deserves consideration, not
only from the extent to which it was carried into practical operation,
but from the circumstance that the earth was employed to form the
return circuit. The wires appear to have been carried through the city
by extending them from the church towers and other elevated buildings.
That plan, indeed, presents so many facilities for passing telegraph
wires through towns, that it is not improbable it may be ultimately
adopted in this country.
Though the conducting power of the earth was thus early made use of for
one-half of the circuit, the fact seems to have been unknown in England
at the time of laying down the telegraph wires to Slough in 1845,
for a separate wire was then used for the return current. Some years
afterwards, indeed, Mr. Bain laid claim to the discovery; but the fact
that the conducting power of the earth had been previously applied to
the purpose by Dr. Steinheil has been incontestably proved.
In the early stages of the practical application of electric telegraphs
in this country, Mr. Cook took an active part in overcoming the
numerous difficulties attending the proper protection and insulation
of the wires. In the first instance, the plan of burying the wires in
trenches was tried, but with very indifferent success, as the asphaltum
and other resinous substances with which it was attempted to insulate
them were inadequate for the purpose, and allowed the electricity to
escape from wire to wire. The method of supporting the wires on tall
posts was then adopted by Mr. Cooke, the wires being insulated from
the posts at the points of suspension, by passing them through quills.
Various improvements have since been made in the insulators, and the
plan most in favour at present is to pass the wires through globular
earthenware or glass insulators, attached to the posts, as shown in the
annexed diagram. The wires themselves are about one-sixth of an inch in
diameter; they are made of iron coated with zinc, or galvanized, as it
is termed, to protect them from rust.
[Illustration]
Public-domain text, read in full here on John Shaqi.
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