Generally the surface of the wood under the bark, and therefore also
that of any layer in the interior, is not uniform and smooth, but is
channelled and pitted by numerous depressions, which differ greatly in
size and form. Usually, any one depression or elevation is restricted
to one or few annual layers (_i.e._, seen only in one or few rings)
and is then lost, being compensated (the surface at the particular
spot evened up) by growth. In some woods, however, any depression or
elevation once attained grows from year to year and reaches a maximum
size, which is maintained for many years, sometimes throughout life.
In maple, where this tendency to preserve any particular contour is
very great, the depressions and elevations are usually small
(commonly less than one-eighth inch) but very numerous.
On tangent boards of such wood, the sections, pits, and prominences
appear as circlets, and give rise to the beautiful "bird's eye" or
"landscape" structure. Similiar structures in the burls of black ash,
maple, etc., are frequently due to the presence of dormant buds, which
cause the surface of all the layers through which they pass to be
covered by small conical elevations, whose cross-sections on the sawed
board appear as irregular circlets or islets, each with a dark speck,
the section of the pith or "trace" of the dormant bud in the center.
[Illustration: Fig. 17. Wavy Grain in Beech (_after
Nordlinger_).]
In the wood of many broad-leaved trees the wood fibres are much longer
when full grown than when they are first formed in the cambium or
growing zone. This causes the tips of each fibre to crowd in between
the fibres above and below, and leads to an irregular interlacement of
these fibres, which adds to the toughness, but reduces the
cleavability of the wood. At the juncture of the limb and stem the
fibres on the upper and lower sides of the limb behave differently.
On the lower side they run from the stem into the limb, forming an
uninterrupted strand or tissue and a perfect union. On the upper side
the fibres bend aside, are not continuous into the limb, and hence the
connection is not perfect (see Fig. 18). Owing to this arrangement of
the fibres, the cleft made in splitting never runs into the knot if
started on the side above the limb, but is apt to enter the knot if
started below, a fact well understood in woodcraft. When limbs die,
decay, and break off, the remaining stubs are surrounded, and may
finally be covered by the growth of the trunk and thus give rise to
the annoying "dead" or "loose" knots.
Public-domain text, read in full here on John Shaqi.
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