Catechism of the locomotiveForney, Matthias N. (Matthias Nace)
Science
Catechism of the locomotive
Forney, Matthias N. (Matthias Nace)
Locomotives -- Handbooks, manuals, etc.
_Answer._ Because it is necessary to reduce the travel of the
slide-valve in order to cut off the steam “_short_,” or soon after the
beginning of the stroke of the piston. When the travel is reduced, the
valve opens the port only a small distance, so that the area of the
opening is not then sufficient to allow the steam to flow into the
cylinder with sufficient rapidity to fill it at full boiler pressure,
especially if the engine is working at a high speed. Thus, by referring
to the table given on page 216 and to the motion curves in fig. 128, it
will be seen that when the steam is cut off at from ¹⁄₄ to ¹⁄₂ stroke,
the port is opened for the admission of steam only from ¹⁄₄ to ¹⁄₂ inch
wide. From the curves it will also be seen that the valve then acquires
its maximum travel and the steam-port its greatest width of opening
very soon after the piston begins its stroke; after which the port is
gradually closed, so that before the steam is entirely cut off the
opening is so much reduced in area that the steam cannot flow through
it rapidly enough to maintain the steam at full boiler pressure in the
cylinder when the engine is working at high speeds.
QUESTION 208. _What means are used to overcome this difficulty and
thus admit steam at full boiler pressure when the valve is cutting off
short?_
_Answer._ In the first place, the steam-ports are made from ten to
twelve times as long as they are wide, so that a narrow opening will
have a comparatively large area. In the second place, by giving the
valve lead, not only are the clearance space and the steam-way filled
with steam when the piston begins its stroke, but the port is then
open a distance equal to the lead. With the ordinary link motion, as
has already been shown, this lead increases as the travel and period
of admission diminish, so that the smaller the total distance that
the port is opened, the greater is its opening at the beginning of
the stroke. As the steam is usually cut off short when locomotives
run at high speeds, it will be seen that the increased lead which is
imparted to the valve by the shifting link is an advantage rather than
a disadvantage. But while it is often possible in this way to secure
a pressure of steam in the cylinder at the beginning of the stroke
equal or nearly so to that in the boiler, yet it is almost impossible
to maintain this pressure during the whole period of admission, when
the steam is cut off short and the engine working at a high speed. To
obviate this evil what is called the Allen valve was designed, which
is represented in fig. 132. This valve has a channel or supplementary
port, _a a_, which passes over the exhaust cavity, and has two
openings, _b_, _b′_, in the valve-face. When the valve begins to admit
or “_take_” steam at _c_, as shown in fig. 133, it will be seen that it
also uncovers the opening _b′_ at _e_ and admits steam at _b′_, which
passes through the channel _b′ a a b_ and enters the steam-port _c_
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