_Stiffness, Elasticity, and Strength_--Rules for measuring the stiffness
of timber are involved in mathematical formulas; but the practical
quality of stiffness is not difficult to understand. Wood which does not
bend easily is stiff. If it springs back to its original position after
the removal of the force which bends it, the wood is elastic. The
greatest load it can sustain without breaking, is the measure of its
strength. The load required to produce a certain amount of bending is
the measure of its stiffness. Flexibility, a term much used by certain
classes of workers in wood, is the opposite of stiffness. A brittle wood
is not necessarily weak. It may sustain a heavy load without breaking,
but when it fails, the break is sudden and complete. A tough wood
behaves differently, though it may not be as strong as a brittle one.
When a tough wood breaks, the parts are inclined to adhere after they
have ceased to sustain the load. Hickory is tough, and in breaking, the
wood crushes and splinters. Mesquite is brittle, and a clean snap severs
the stick at once.
Builders of houses and bridges, and the manufacturers of articles of
wood, study with the greatest care the stiffness, elasticity, strength,
toughness, and brittleness of timber. Its chief value may depend upon
the presence or absence of one or more of these properties. Take away
hickory’s toughness and elasticity and it would cease to be a great
vehicle and handle material. Reduce the stiffness and strength of
longleaf pine and Douglas fir and they would drop at once from the high
esteem in which they are held as structural timbers. Destroy the
brittleness of red cedar and it would lose one of the chief qualities
which make it the leading lead pencil wood of the world.
There are recognized methods of measuring these important physical
properties of woods, but they are expressed in language so technical
that it means little to persons who are not specialists. For ordinary
purposes, it is unnecessary to be more explicit than to state a certain
wood is or is not strong, stiff, tough and elastic. Some species possess
one or more of these properties to double the degree that others possess
them. Different trees of the same species differ greatly, and even
different parts of the same tree. Most tables of figures which show the
various physical properties of woods, give averages only, not absolute
values.
_Hardness_--In some woods hardness is considered an advantage, but not
in others. If sugar maple were as soft as white pine, it would not be
the great floor material it is; and if white pine were as hard as maple,
pattern makers would not want it, door and sash manufacturers would get
along with less, and it would not be the leading packing box material in
so wide a region.
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.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account