Mechanics: The Science of MachineryBond, A. Russell (Alexander Russell)
History
Mechanics: The Science of Machinery
Bond, A. Russell (Alexander Russell)
Machinery; Mechanical engineering; Mechanics
EVERY animal is a complex machine, provided with its own motive power
and a brain for directing the operation of its own mechanical elements.
Not satisfied with the mechanism that nature has put into the human
machine, man has reached for other elements and devised mechanisms
of his own in order to supplement the human machine and increase its
efficiency. At first, as we have seen, these elements were hand tools
of the crudest sort; but they were gradually improved and then they
were combined into what we term machines. In developing these machines,
he naturally took his own system as a pattern and was guided to a
large extent by an examination of his own physical structure. We see
this very clearly in the names of the different parts of machinery,
which are taken from the names of similar parts in the human frame.
Almost every member of the body is used in mechanical terminology. For
instance, we have the “head” and the “foot,” the “arms” and the “legs,”
the “fingers” and the “ankles,” “elbows,” “shoulders,” “trunk,” “hips,”
and various parts of the face, such as the “eyes,” “ears,” “nose,”
“mouth,” “teeth,” “lips,” and even the “gums,” to indicate parts of
machinery which have some remote resemblance to these features.
Before we can understand machinery we must have some general knowledge
of the elements of which it is composed. Probably most of the readers
of this book already possess a fair knowledge of machine elements and
mechanical movements and they can well afford to skip this chapter.
However, for the benefit of the uninitiated, we must put a machine on
the operating table, dissect it, and explain its anatomical structure.
We cannot attempt a very detailed study, but will confine ourselves to
the most important elements.
Every machine is made up of movable parts and fixed parts, the latter
serving to guide or constrain the motion of the former; for no
combination of elements will constitute a machine unless the parts are
_constrained_ to move in certain predetermined directions.
THE LEVER
Among the moving elements the first to be considered is the lever,
which really forms a broad classification comprising many elements that
will hardly be recognized as levers at first blush. Levers in some form
are to be found in practically every machine. A wheel, a gear, and a
pulley are really levers in disguise, as will be explained presently.
Of course everyone knows that a simple lever consists of a rigid bar
that swings on a fulcrum. The fulcrum may be a knife edge, a shaft
passing through the bar or any element on which the bar can be swung
or oscillated. The purpose of the lever is to give a certain advantage
in the application of a force to a load. This may be a change of speed
and distance of travel, and hence of power, or merely a change of
direction.
[Illustration: FIG. 1.--THREE ORDERS OF SIMPLE LEVERS]
Public-domain text, read in full here on John Shaqi.
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