Discoveries and Inventions of the Nineteenth CenturyRoutledge, Robert
History
Discoveries and Inventions of the Nineteenth Century
Routledge, Robert
Inventions -- History -- 19th century
Fig. 22 represents in section the later type of blast furnace, which of
course is circular in plan. Its height may be taken as 80 feet, and the
diameter at the widest part of the interior as 22½ feet, narrowed to 20
feet near the top. The lowest portion, C, is called the _crucible_, the
bottom of which is the _hearth_, both formed of the most refractory
materials obtainable. The conical widening, B, above the crucible is the
_boshes_, and at the top is seen the “cup and cone” apparatus already
described, A, surmounted by the short cylindrical iron mouth, through
apertures in which the charges are tipped from the gallery, D, these
having been raised there in small trucks by hydraulic or other
elevators. The escaping gases leave the furnace by the exit, E, which
leads into the “down-come,” G, and they are conducted from it to the
“regenerative stoves” and dealt with as presently to be described. Our
section represents the masonry of the furnace as sustained by pillars,
P, at the outside of the lower part; these pillars support a strong ring
of iron plates upon which the wall rests. This arrangement has the
advantage of allowing the workmen the greatest freedom of access to
parts about the crucible, which require much attention. Here, at the
lowest part, is an aperture from which the liquid iron is allowed to run
out every five or six hours, it being plugged in the meantime by clay
and sand. The slag being much lighter than the iron, floats above it,
and runs off at a higher level over the _tympstone_. Opening into the
hearth are several orifices to admit the hot blast from the nozzles of
the _tuyères_, which of course do not project into the furnace itself;
but they are so near to the region of intensest heat that they would be
rapidly destroyed unless they were surrounded by a casing through which
a current of water is constantly running. The _tuyères_, of which there
may be 3 or 5, are supplied from the pipe seen at K. The earlier plans
of heating the air did not permit of a very high temperature being given
to the hot blast, about 600° F. being the limit; but the “regenerative”
stoves can supply a blast of more than 1,600° F., or not far below the
melting point of silver. Another great increase has been in the pressure
of the blast; 2 or 3 lbs. per square inch sufficed in the earlier
practice; but the lofty modern furnaces have to be supplied with the
blast at a pressure of 10 lbs. per square inch, and over. Even when
comparatively low pressures were the rule, a large ironworks required
much blowing power. The works formerly at Dowlais, in South Wales, for
instance, had an engine of 650 horse-power for the blowing engine, in
which a piston of 12 feet diameter moved in a cylinder 12 feet in
length. The quantity of air that passes into a blast furnace amounts to
thousands of tons per week, its weight being much greater than that of
all the ore, coke, and limestone put together.
[Illustration:
FIG. 22.—_Section of Blast Furnace._
]
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account