From the Earth to the moon; and, round the moonVerne, Jules
Science
From the Earth to the moon; and, round the moon
Verne, Jules
Manned space flight -- Fiction; Moon -- Fiction; Science fiction; Space flight to the moon -- Fiction; Space ships -- Fiction
Cast iron, however, if subjected to only one single fusion, is rarely
sufficiently homogeneous; and it requires a second fusion completely to
refine it by dispossessing it of its last earthly deposits. So long
before being forwarded to Tampa Town, the iron ore, molten in the great
furnaces of Coldspring, and brought into contact with coal and silicium
heated to a high temperature, was carburized and transformed into cast
iron. After this first operation, the metal was sent on to Stones Hill.
They had, however, to deal with 136,000,000 pounds of iron, a quantity
far too costly to send by railway. The cost of transport would have
been double that of material. It appeared preferable to freight vessels
at New York, and to load them with the iron in bars. This, however,
required not less than sixty- eight vessels of 1,000 tons, a veritable
fleet, which, quitting New York on the 3rd of May, on the 10th of the
same month ascended the Bay of Espiritu Santo, and discharged their
cargoes, without dues, in the port at Tampa Town. Thence the iron was
transported by rail to Stones Hill, and about the middle of January
this enormous mass of metal was delivered at its destination.
It will easily be understood that 1,200 furnaces were not too many to
melt simultaneously these 60,000 tons of iron. Each of these furnaces
contained nearly 140,000 pounds weight of metal. They were all built
after the model of those which served for the casting of the Rodman
gun; they were trapezoidal in shape, with a high elliptical arch. These
furnaces, constructed of fireproof brick, were especially adapted for
burning pit coal, with a flat bottom upon which the iron bars were
laid. This bottom, inclined at an angle of 25 degrees, allowed the
metal to flow into the receiving troughs; and the 1,200 converging
trenches carried the molten metal down to the central well.
The day following that on which the works of the masonry and boring had
been completed, Barbicane set to work upon the central mould. His
object now was to raise within the center of the well, and with a
coincident axis, a cylinder 900 feet high, and nine feet in diameter,
which should exactly fill up the space reserved for the bore of the
Columbiad. This cylinder was composed of a mixture of clay and sand,
with the addition of a little hay and straw. The space left between the
mould and the masonry was intended to be filled up by the molten metal,
which would thus form the walls six feet in thickness. This cylinder,
in order to maintain its equilibrium, had to be bound by iron bands,
and firmly fixed at certain intervals by cross-clamps fastened into the
stone lining; after the castings these would be buried in the block of
metal, leaving no external projection.
This operation was completed on the 8th of July, and the run of the
metal was fixed for the following day.
“This _fete_ of the casting will be a grand ceremony,” said J. T.
Maston to his friend Barbicane.
Public-domain text, read in full here on John Shaqi.
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