The crankcase was a relatively strong and well proportioned structure
with three heavy strengthening ribs running from side to side, its
only weakness being the one open side. A sheet-iron sump was fastened
to the bottom by screws and it would appear from its design, method of
attachment, and location of the engine mounting pads that this was
added some time after the crankcase had been designed; but if so it
was apparently retrofitted, as engines with quite low serial numbers
have this part.
The ignition was by high-tension magneto and spark plug and this
decision to change from the make-and-break system was undoubtedly the
correct one, just as adoption of the other form originally was logical
under the circumstances that existed then. The high-tension system was
simpler and had now collected more service experience. The magneto
was driven through the camshaft gear, and a shelf, or bracket, cast as
an integral part of the case, was provided for mounting it. The spark
advance control was in the magneto and, since spark timing was the
only means of regulating the engine power and speed, a wide range of
adjustment was provided.
The engine had the controllable compression release which had been
added to the _No. 2_ and _No. 3_ flat engines, although mechanically
it was considerably altered from the original design. Instead of the
movable stop operating directly on the rocker roller to hold the
exhaust valve open, it was located underneath a collar on the pushrod.
This stop was hinged to the crankcase and actuated by a small rod
running along and supported by the crankcase deck. Longitudinal
movement of this rod in one direction would, by spring pressure on
each stop, push them underneath the collars as the exhaust valves were
successively opened. A reverse movement of the rod would release them
(see Figure 10f). Why they retained the method of manually operating
the compression release, which was the same as had been used in the
1904-1905 engine, is not quite clear. That is, the mechanism was put
into operation by pulling a wire running from the pilot to a lever
actuating the cam which moved the control rod. When normal valve
operation was subsequently desired, the pilot was compelled to reach
with his hand and operate the lever manually, whereas a second wire or
push-pull mechanism would have obviated the necessity for both the
awkward manual operation of the lever and the gear guard which was
added to protect the pilot's hand, the lever being located close to
the camshaft gear.
Public-domain text, read in full here on John Shaqi.
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