The Steam Engine Explained and Illustrated (Seventh Edition): With an Account of Its Invention and Progressive Improvement, and Its Application to Navigation and Railways; Including Also a Memoir of WattLardner, Dionysius
History
The Steam Engine Explained and Illustrated (Seventh Edition): With an Account of Its Invention and Progressive Improvement, and Its Application to Navigation and Railways; Including Also a Memoir of Watt
Lardner, Dionysius
Steam-engines; Watt, James, 1736-1819
Since, however accurately the surfaces of the piston and cylinder
may be constructed, there will always be in practice more or less
imperfection of form, it is evident that the contact of the
surface of the piston with the cylinder throughout the stroke can
only be maintained by giving to the circumference of the piston
sufficient elasticity to accommodate itself to such inequalities
of form. The substance, whatever it may be, used for this purpose,
and by which the piston is surrounded, is called _packing_.
In steam pistons the material used for packing must be such as is
capable of resisting the united effects of heat and moisture.
Hence leather and other animal substances are inapplicable.
The packing used for steam pistons is therefore of two kinds,
_vegetable packing_, usually hemp, or _metallic packing_.
The common hemp-packed piston has been already in part described
(79.). The bottom of the piston is a circular plate just so much
less in diameter than the cylinder as is sufficient to allow its
free motion in ascending and descending. A little above its lowest
point this plate begins gradually to diminish in thickness, until
its diameter is reduced to from one to two inches less than that
of the cylinder, leaving therefore around [Pg243] it a hollow
space, as represented in _fig._ 65. The cover of the piston is a
plate similarly formed, being in like manner gradually reduced in
thickness downwards, so as to correspond with the lower plate. In
the hollow space which thus surrounds the piston a packing of
unspun hemp or soft rope, called _gasket_, is introduced by
winding it round the piston so as to render it an even and compact
mass. When the space is thus filled up, the top of the piston is
attached to the bottom by screws. The curved form of the space
within which the hempen packing is confined is such that when the
screws are tightened, that part of the packing which is nearest to
the top and bottom of the piston is forced against the cylinder,
so as to produce upon the two parallel rings as much pressure as
is necessary to render it steam-tight. When by use the packing is
worn down so as to produce leakage, the cover of the cylinder must
be removed, and the screws connecting the top and bottom of the
piston tightened: this will force out the packing and render the
piston steam-tight. This packing is lubricated by melted tallow
let down upon the piston from the funnel inserted in the top of
the cylinder, furnished with a stop-cock to prevent the escape of
steam. The lower end of the piston-rod is formed slightly conical,
the thickest part of the cone being downward. It is passed up
through the piston, and a nut or wedge between the top and bottom
is inserted so as to secure the piston in its position upon the
rod.
[Illustration: _Fig._ 65.]
Public-domain text, read in full here on John Shaqi.
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