Scientific American Supplement, No. 717, September 28, 1889Various
Science
Scientific American Supplement, No. 717, September 28, 1889
Various
Science -- Periodicals
The propeller shaft is generally made of iron, and if made _not less_
than the Board of Trade rules as regards diameter, of the best iron,
and the gun metal liners carefully fitted, they have given little
trouble; the principal trouble has arisen from defective fitting of
the propeller boss. This shaft working in sea water, though running in
lignum vitae bearings, has a considerable wear down at the outer
bearings in four or five years, and the shaft gets out of line. This
wear has been lessened considerably by fitting the wood so that the
grain is endway to the shaft, and with sufficient bearing surface
these bearings have not required lining up for nine years. It is,
however, a shaft that cannot be inspected except when in dry dock, and
has to be disconnected from the propeller, and drawn inside for
examination at periods suggested by experience. Serious accidents have
occurred through want of attention to the examination of this shaft;
when working in salt water, with liners of gun metal, galvanic action
ensues, and extensive corrosion takes place in the iron at the ends of
the brass liners, more especially if they are faced up at right angles
to the shaft. Some engineers have the uncovered part of the shaft
between the liners, inside the tube, protected against the sea water
by winding over it tarred line. As this may give out and cause some
trouble, by stopping the water space, I have not adopted it, and shall
be pleased to have the experience of any seagoing engineer on this
important matter. A groove round the shaft is formed, due to this
action, and in some cases the shaft has broken inside the stern tube,
breaking not only it, but tearing open the hull, resulting in the
foundering of the vessel. Steel has been used for screw shafts, but
has not been found so suitable, as it corrodes more rapidly in the
presence of salt water and gun metal than iron, and unless protected
by a solid liner for the most part of its length, a mechanical feat
which has not yet been achieved in ordinary construction, as this
liner would require to be 20 ft. long. I find it exceedingly difficult
to get a liner of only 7 ft. long in one piece, and the majority of 6
ft. liners are fitted _in two pieces_. The joint of the two liners is
rarely _watertight_, and many shafts have been destroyed by this
method of fitting these liners.
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