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
In order to obtain the benefits of high compression, perfect scavenging
of the products of combustion from the cylinder and perfect mixtures, a
great variety of engines have been developed in which the number of
strokes taken to accomplish the five events varies. In some engines the
cycle is accomplished in two strokes, in other engines it is
accomplished in six strokes, but in the great majority of cases the
cycle is performed in either two or four strokes, and as these are by
far the most common routines, we will confine our description to engines
of these types.
(25) Four Stroke Cycle Engine.
The four stroke cycle engine, some times improperly called the “four
cycle” engine is the most widely used type for all classes of service,
except possibly for marine work. Its extended use is due to its superior
scavenging, high efficiency and reliability, although it is somewhat
more complicated than the two stroke cycle type. Its ability to function
properly under a wide variation of speed has driven the two stroke cycle
type out of the automobile field, and its many admirable characteristics
have cut a wide swath in the marine field, the stronghold of the two
stroke cycle type.
A four stroke cycle engine performs the cycle of events in four strokes
or two revolutions, only one of the strokes being a power of working
stroke. In a single cylinder engine the explosion in the working strokes
supplies enough power to the fly-wheel to carry the engine and its load
through the remaining three strokes. Thus the energy stored in the fly
wheel is sufficient to carry not only the load during the idle strokes
but to “inhale” and compress the charge as well. Due to the long
interval that exists between explosions, they are corresponding heavy
and are productive of heavy strains in the engine and are the cause of
considerable vibration.
To reduce the ill effects of the heavy intermittent blows, the majority
of automobile and stationary engines are provided with two or more
cylinders, the power being equally divided among them. In a four
cylinder engine, there are four times as many impulses as in a single
cylinder engine and the blow dealt by the individual cylinder is only
one-quarter as great. While a single cylinder engine has an impulse only
once in every other revolution, the four cylinder has two impulses in
one revolution. Besides the advantages gained by increasing the
impulses, the mechanical balance of a multiple cylinder engine is always
better than that of a single and is also much lighter in weight since
less material is required to resist shocks of the explosions.
[Illustration:
Fig. 4. Diagrammatic View of Four Stroke Cycle Engine with the Piston
in Various Positions Corresponding with the Five Events. Diagram
A—Suction. Diagram B—Compression. Diagram C—Ignition. Diagram
D—Working Stroke. Diagram E—Release. Diagram F—Scavenging Stroke.
]
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