"Query 11th.--The fire-bars must be of wrought iron; we find them
answer much better than cast iron. Let them be 5/8ths of an inch from
bar to bar, 1 inch thick at the top, 3/8ths of an inch at the bottom,
2 inches deep, 4 feet long, with bits on them at the ends, to prevent
their getting too close together. I find the nearer the fire is to the
door, the better and handier it is to work. All the large engines are
in this way, and we do not find the door or front plate get hot, as
they are lined with brick. Cast the door with a rib to hold a brick on
its edge. Tube, 2 feet 9 inches by 1 foot 11 inches; manhole, 15 by 10
inches.
"Query 12th.--A governor will be required; perhaps as good a place
as any for it, out of the way, will be on the cast iron that carries
the beam; you may turn the fly-wheel whichever way you please. If
this engine is worked with steam of 25 lbs. to the inch above the
atmosphere, and the steam shut off at one-twentieth part of the
ascending stroke of the piston, the power will be as three is to two
of Boulton and Watt's single engines.
"Only two pairs of stones for the present, but calculate those stones
to stand in such a way that another pair may be placed, on a future
day, if wanted. I have not seen Mr. Richards lately. I wish you to
write a form of an order, in your next, such as you wish, and I will
get him to write to you accordingly. Put the engine and drum for Lord
de Dunstanville out of hand neat and well, as it will be well paid
for; and make the stands, &c., in your own way.
"RD. TREVITHICK."
Mr. Richards' flour-mill engine may claim to be the first practical
smoke-burner: keeping the fire much thinner at the inner end of the
grate-bars than at the fire-door end of the grate, allowed of the
freer passage of air through the thinner layer of coal, near the
fire-*bridge, causing the combustion of the passing gas. This idea has,
since the date of Trevithick's letter, led to several smoke-burning
patents. The boiler fire-tube was oval, 2 feet 9 inches by 1 foot 11
inches. The open-topped cylinder was supplied with a heavy and deep
piston serving as a counterweight, and also as a guide in the cylinder
for correcting the angle of the connecting rod. Experience had taught
him that the cold sides of the condenser were sufficient to work an
engine a great many strokes without a supply of injection; and he had
already used high-pressure steam of 25 lbs. to the inch above the
atmosphere, cut off from the cylinder when the piston had performed
one quarter of its course: thus both these things were as first steps
leading to the modern expansive steam-engine and surface condensation.
The simplicity of the engine is remarkable--a high-pressure, expansive,
condensing engine, worked by a single four-way cock, without
cylinder-cover, or parallel motion.
Public-domain text, read in full here on John Shaqi.
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