In the absence of proper efforts to secure reproduction, the most
valuable kinds are rapidly being decimated, and the necessity of a
more rational and careful use of what remains is clearly apparent. By
greater care in selection, however, not only will the duration of the
supply be extended, but more satisfactory results will accrue from its
practice.
There are few more extensive and wide-reaching subjects on which to
treat than timber, which in this book refers to dead timber--the
timber of commerce--as distinct from the living tree. Such a great
number of different kinds of wood are now being brought from various
parts of the world, so many new kinds are continually being added, and
the subject is more difficult to explain because timber of practically
the same character which comes from different localities goes under
different names, that if one were always to adhere to the botanical
name there would be less confusion, although even botanists differ in
some cases as to names. Except in the cases of the older and better
known timbers, one rarely takes up two books dealing with timber and
finds the botanical names the same; moreover, trees of the same
species may produce a much poorer quality of timber when obtained from
different localities in the same country, so that botanical knowledge
will not always allow us to dispense with other tests.
The structure of wood affords the only reliable means of
distinguishing the different kinds. Color, weight, smell, and other
appearances, which are often direct or indirect results of structure,
may be helpful in this distinction, but cannot be relied upon
entirely. Furthermore, structure underlies nearly all the technical
properties of this important product, and furnishes an explanation why
one piece differs in these properties from another. Structure explains
why oak is heavier, stronger, and tougher than pine; why it is harder
to saw and plane, and why it is so much more difficult to season
without injury. From its less porous structure alone it is evident
that a piece of young and thrifty oak is stronger than the porous wood
of an old or stunted tree, or that a Georgia or long-leaf pine excels
white pine in weight and strength.
Keeping especially in mind the arrangement and direction of the fibres
of wood, it is clear at once why knots and "cross-grain" interfere
with the strength of timber. It is due to the structural peculiarities
that "honeycombing" occurs in rapid seasoning, that checks or cracks
extend radially and follow pith rays, that tangent or "bastard" cut
stock shrinks and warps more than that which is quarter-sawn. These
same peculiarities enable oak to take a better finish than basswood or
coarse-grained pine.
Structure of Wood
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