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
A magneto is a device that converts the mechanical energy received from
the engine into electrical energy, the electricity thus produced being
used to ignite the charge in the engine. This appliance does away with
all of the troubles incident to a rapidly deteriorating chemical battery
and produces a much hotter and uniform spark. A magneto is especially
desirable with multiple cylinder engines where the demand for current is
almost continuous, as the amount of current delivered by the magneto has
no effect on its life or upon the quality of the spark.
The principal parts of the generating system of the magneto are the
magnets, the armature, the armature winding, and the current collecting
device, of which the armature and its windings are the rotating parts.
The production of current in the magneto is the result of moving or
rotating the armature coil in the magnetic field of force of the
magnets. When any conductor is moved in a space that is under the
influence of a magnet a current is generated in the conductor which
flows in a direction perpendicular to the direction of motion. The value
of the current thus generated depends on the strength of the magnetic
field, the speed with which it is cut, and the number of conductors
cutting it that are connected in series. Roughly, the voltage is
doubled, with an increase of twice the former speed, and with all other
things equal, the voltage is doubled by doubling the number of
conductors connected in series.
By employing powerful magnets, and a large number of conductors (turns
of wire) on the armature it is possible to obtain sufficient voltage for
the ignition system at a comparatively low speed. The number of amperes
delivered depends principally upon the internal resistance of the
armature and the external circuit, and not on the number of conductors,
nor directly upon the strength of the field. For this reason, low
voltage machines that are intended to deliver a great amperage have only
a few conductors of large cross section, while high tension machines
have a great number of conductors of small size. In all cases the
magneto, or ignition dynamo must be considered simply as a generator of
current in the same way that a battery is a source of current since the
current generated by them is utilized in precisely the same way.
The class of ignition system on which the magneto is used determines the
class of the magneto. The low tension magneto is used principally for
the make and break system, although it is sometimes used in connection
with a high tension spark coil or transformed in the same way that a
battery is used with a vibrator coil. The high tension magneto is used
exclusively with the jump spark system and high tension spark plug.
Public-domain text, read in full here on John Shaqi.
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