Practical Hand Book of Gas, Oil and Steam Engines: Stationary, Marine, Traction; Gas Burners, Oil Burners, Etc.; Farm, Traction, Automobile, Locomotive; A simple, practical and comprehensive book on the construction, operation and repair of all kinds of engines. Dealing with the various parts in detail and the various types of engines and also the use of different kinds of fuel.Rathbun, John B.
Science
Practical Hand Book of Gas, Oil and Steam Engines: Stationary, Marine, Traction; Gas Burners, Oil Burners, Etc.; Farm, Traction, Automobile, Locomotive; A simple, practical and comprehensive book on the construction, operation and repair of all kinds of engines. Dealing with the various parts in detail and the various types of engines and also the use of different kinds of fuel.
Rathbun, John B.
Internal combustion engines; Traction-engines
There are two separate paths provided for the exhaust gases, one being
through the auxiliary exhaust ports at the end of the stroke, and the
other path through the exhaust valve located in the cylinder head. The
auxiliary ports may be seen in the cross-section directly below the
piston head in cylinders 4 and 5. The auxiliary ports are uncovered by
the piston at the inner end of the working stroke, and it is at this
point that the greater percentage of the exhaust leaves the cylinder.
These ports or holes are formed on a projecting annular ring in which
enough material is provided to make up for the strength lost by boring
the ports. As these ports are, in the majority of cases, bored at an
acute angle with the center line of the cylinder, it is impossible for
the cylinder oil to escape.
All exhaust valves are operated by levers and push rods connected to a
cam mechanism on the outside of the crank case. A single cam ring
operates all of the valves except where a step-by-step compression is
desired. The exhaust mechanism is provided with a simple device by which
the closing of the exhaust valve may be delayed through any portion of
the exhaust stroke, thus reducing the compression and adding to the
facility of cranking. The motor is started with the compression entirely
released in which condition it can be spun about its shaft with ease.
After giving the motor its initial spin, the compression and spark are
thrown in and the engine begins its normal operation. The compression
release lever may be used for starting or slow running and in cutting
off the power regardless of the ignition advance or retard.
One connecting rod, called the “master” rod, is an integral part of the
spider that contains the ball bearings of the crank pin, thus
controlling the angular relation between the connecting rods and
cylinders. The remaining six rods are, of course, articulated on the
spider by pins so that the rods may move in regard to the spider when in
different parts of the stroke. The shell of the pistons is of a fine
grade of iron, very thin and elastic, so that it may conform readily to
the outline of the cylinder bore. The head of the piston consists
principally of the intake valve cage, the cage carrying the piston pin
as well as the valve.
Oil is supplied by a positive pump that measures the lubricant in exact
proportion to the load on the engine. Both the oil and the gasoline
mixture enter the crank case through the hollow crank shaft and mingle
in the form of a vapor. This oil mist reaches every moving part and
results in perfect lubrication. The pistons are provided with oil
shields which carry the oil directly to the cylinder walls and prevent
the loss of oil through the exhaust valve.
Public-domain text, read in full here on John Shaqi.
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