[Illustration: _Figure 4._--First flight engine, 1903, left side and
rear views, with dimensions. (Drawing courtesy Howell Cheney Technical
School.)
LEFT SIDE VIEW.]
[Illustration: REAR VIEW]
The selection of aluminum for the material was an integral part of
the basic design decision. Despite the excellence and accuracy of the
castings that could be obtained, there was nevertheless a minimum
dimension beyond which wall thickness could not be reduced; and the
use of either one of the two other proven materials, cast iron or
bronze, would have made the body, as they called it, prohibitively
heavy. The use of aluminum was not entirely novel at this time, as it
had been utilized in many automobile engine parts, particularly
crankcases; but its incorporation in this rather uncommon combination
represented a bold step. There was no choice in the matter of the
alloy to be used, the only proven one available was an 8 percent
copper 92 percent aluminum combination.
By means of the proper webs, brackets and bosses, the crankcase would
also carry the crankshaft, the rocker arms and bearings, and the
intake manifold. The open section of the case at the top was covered
with a screw-fastened thin sheet of cold-rolled steel. The main
bearing bosses were split at a 45° angle for ease of assembly. The
engine support and fastening were provided by four feet, or lugs, cast
integral on the bottom corners of the case, and by accompanying bolts
(Figure 2). Although the crankcase continued to be pretty much the
"body" of the internal combustion aircraft engine throughout its life,
the Wrights managed to incorporate in this original part a major
portion of the overall engine, and certainly far more than had ever
previously been included.
The design of the cylinder barrel presented fairly simple problems
involving not much more than those of keeping the sections as thin as
possible and devising means of fastening it and of keeping the water
jacket tight. They saved considerable weight by making the barrel
quite short, so that in operation a large part of the piston extended
below the bottom of it; but this could be accepted, as there were no
rings below the piston pin (Figure 6). The barrel material, a good
grade of cast iron, was an almost automatic choice. In connection with
these seemingly predetermined decisions, however, it should be
remembered that their goal was an engine which would work without
long-time development, and that, with no previous experience in
lightweight construction to guide them they were nevertheless
compelled to meet a weight limit, so that the thickness of every wall
and flange and the length of every thread was important.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account