The History of Silk, Cotton, Linen, Wool, and Other Fibrous Substances;: Including Observations on Spinning, Dyeing, and Weaving.Gilroy, Clinton G.
History
The History of Silk, Cotton, Linen, Wool, and Other Fibrous Substances;: Including Observations on Spinning, Dyeing, and Weaving.
Gilroy, Clinton G.
History, Ancient; Textile fabrics -- History
[134] This ounce contains 576 grains; 8.5325 of these grains equal
seven grains troy. One ounce avoirdupoise is therefore equal to
about 533 grains, and between 11-12 and 11-13 ounce avoirdupoise
equals one of the above ounces.
It is thus seen that, in a few short weeks, the insect has multiplied
its weight more than _nine thousand fold_! From this period, and during
the whole of its two succeeding states of being, the worm imbibes no
nourishment, and gradually diminishes in weight; being supported by its
own substance, and appearing to find sufficient occupation in forming
its silken web, and providing successors for our service, without
indulging that grosser appetite which forms the beginning and the end
of their desires during their caterpillar existence.
The moth enjoys its liberty for only a very brief space. Its first
employment is to seek its mate; after which the female deposits her
eggs; and both in the course of two or three days after, end their
being.
Formation of Silk. By M. H. Straus, of Durckheim.--“It is generally
admitted by naturalists that the thread of the caterpillar is
produced by a simple emission of liquid matter through the orifice of
the spinner, and that it acquires solidity at once from the drying
influence of the air. It was easy to entertain such an hypothesis,
for nothing is more simple than the formation of a very fine thread
by such a process. But a little reflection will soon show us, even _à
priori_, that it is not possible; for how can we comprehend that so
fine a fibre, liquid at the instant of its issue from the aperture,
should _instantly_ acquire such a consistence as to bear the weight of
the animal suspended by it, and at the same time that it is rapidly
produced? Though the fluid, holding the silk in solution, should be
quickly volatilised, it must still be a matter of conjecture, how the
animal suspended by this thread could be able to arrest its issue,
holding on only by the thread itself, for it cannot pinch the thread,
seeing that it is only in a liquid state inside, and the thread cannot
be glued to the edge of the opening, as its rapid adhesion would
prevent its issue while the animal is spinning. A little examination
would satisfy us that silk cannot be produced in this manner, but that
it is secreted in the _form of silk_ in the silk vessels, and that
the spinning apparatus _only winds it_. The thread is produced in the
slender posterior part of the vessel, the inflated portion of which
consists of the reservoir of ready formed silk, where it is found in
the form of a skein; each thread being rolled up so as to occupy in the
silk-worm (_Bombex mori_) a space of only about a sixth part of the
real length of the skein. The fact is shown by the following experiment
I made for the purpose of ascertaining whether the silk is formed in
the body of the caterpillars.
Public-domain text, read in full here on John Shaqi.
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