Design of the piston followed their previous practice, with wide rings
above the pin and shallow grooves below the pin on the thrust face,
and with the pin fastened in the piston by a set screw. The piston had
four ribs underneath the head (see Figure 13b) radiating from the
center and with the two over the pin bosses incorporating
strengthening webs running down and joining the bosses. The piston
length was reduced by 1 in., thus giving a much less clumsy appearance
and, with other minor alterations, a weight saving of 40 percent (see
Figures 13b and c). The rods were for the first time made of I-section
forgings, a major departure, machined on the sides and hand
finished at the ends, with a babbit lining in the big end, the piston
pin bearing remaining steel on steel.
[Illustration: _Figure 13._--Original 6-cylinder engine: a, cylinder
assembly and valve parts; b, bottom side of piston; c, piston, piston
pin and connecting rod; d, valve mechanism; e, crankshaft and
flywheel. (Pratt & Whitney photos D-15012, 15017, 15013, 15018,
respectively.)]
At least two different general carburetion and induction systems were
utilized, possibly three. One, and most probably the original,
consisted of a duplicate of the injection pump of the 4-cylinder
fitted to a manifold which ran the length of the engine, with three
takeoffs, each of which then split into two, one for each cylinder. Of
this arrangement they tried at least two variations involving changes
in the location and method of injecting the fuel into the manifold;
and there seems to have been an intermediate manifold arrangement,
using fuel-pump injection at the middle of the straight side, or
gallery, manifold, which was fed additional air at both ends through
short auxiliary inlet pipes. This would indicate that with the
original arrangement, the end cylinders were receiving too rich a
mixture, when the fuel in the manifold was not properly vaporized.
Although the exhaust was on the same side of the engine as the inlet
system, no attempt was made to heat the incoming charge at any point
in its travel. An entirely different system adopted at the time of the
complete redesign in 1913 consisted of two float-feed Zenith
carburetors each feeding a conventional three-outlet manifold. This
carburetor was one of the first of the plain-tube type, that is, with
the airflow through a straight venturi without any spring-loaded or
auxiliary air valves, and was the simplest that could be devised. When
properly fitted to the engine, it gave a quite good approximation of
the correct fuel and air mixture ratio over the speed-load running
range, although it is considerably more than doubtful that this was
maintained at altitude, as is stated in one of the best descriptions
of the engine published at the time the carburetors were applied.
Public-domain text, read in full here on John Shaqi.
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