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
This at once makes possible and practicable the simultaneous advance and
retard of magnets and breaker instead of the advance and retard of the
breaker alone as the magnets may be moved to and fro with the breaker
housing. It will be seen that as a result of this new departure the
relative position of armature and field at the moment of sparking is
absolutely maintained, and the same quality of spark is therefore
produced, no matter what the timing may be. Furthermore, the range of
timing, which with the horse-shoe type of magneto is limited to 10° or
15° at low speeds (i. e. at speeds at which a retarded spark is of
value) becomes limited only by the necessity of supplying a suitable
support for the magnets. With the standard types of Mea magnetos
described in the following, this range varies from about 45° to 70°, but
if necessary this range can be increased to any amount desired.
The bell-shaped magnets are fixed to the casing which is mounted on a
base supplied with the magneto. The timing is altered by turning the
casing and magnets together on the base.
Fig. 112 shows a longitudinal section of a four cylinder Mea magneto.
The armature F with the ball bearings 17–18 rotates in the bell-shaped
magnets 100, the poles of the magnets being on a horizontal line
opposite the armature 1. The armature is of the ordinary H type iron
core wound with a double winding of heavy primary and fine secondary
wire. On the armature are mounted the condenser 12, the high tension
collector ring 4, and the low tension circuit breaker 26–39.
The circuit breaker consists of a disc 27 on which are mounted the short
platinum 33, the other contact point 34 is movable and is supported by a
spring 30 which is fastened to the insulated plate 28 mounted on disc
27. Fiber roller 31 in connection with cam disc 40 which is provided
with two cams is located inside the breaker. Revolving with the armature
the roller presses against the spring supported part of the breaker
whenever it rolls over the two cams which of course is twice per
revolution.
[Illustration:
Magneto of Roberts Motor in Advanced Position.
]
[Illustration:
112-a. Advance and Retard Mechanism Used in the Roberts Motors. The
Magneto is Driven by a Helical Gear from the Small Pinion. By
Shifting the Gear Back and Forth on the Pinion, the Armature of the
Magneto is Advanced or Retarded in Regard to the Piston Position.
The Reason for this Change Will be Seen from the Cuts by Noting the
Position of the Lower Helix.
]
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.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account