British Manufacturing Industries: Pottery, Glass and Silicates, Furniture and Woodwork.Arnoux, Léon
History
British Manufacturing Industries: Pottery, Glass and Silicates, Furniture and Woodwork.
Arnoux, Léon
Manufacturing industries -- Great Britain
Modern chemistry has placed at the disposal of colour makers new
compounds which have made the preparation of fluxes comparatively
easy. At the present time two classes are required: those in which the
oxides of lead predominate, and those chiefly made with borax, which
on account of its great purity is used in almost every flux, and is of
great service for those colours which, like the pinks and purples,
would suffer from the presence of lead.
The preparation of painting colours is a little more complicated, and
each requires a different treatment. The number of those found in the
trade is rather large, and each artist has his favourite maker. In
this, as in any other kind of painting, beginners are apt to think
that they will be assisted by the use of a great variety of tints,
when they will learn by more experience, that a very limited number is
sufficient. I cannot undertake to give any receipts for those who
might wish to prepare these themselves; I only mention the name of the
substances necessary to secure each of the essential colours.
White is not a colour, but when wanted on a coloured body, it is
procured by an enamel prepared with the oxide of tin. Light yellow
requires the oxides of lead and antimony. Orange will require the
same, with an addition of deutoxide of iron. The hydrate of peroxide
of the same metal will give a golden buff. The subchromate of lead
gives a very bright red, but it is very unsafe and mixes badly; the
reds made by calcining the common sulphate of iron are preferred. From
this, according to the degree of fire, all shades of red may be got,
from an orange red to a deep purple brown. The pinks, purples, and
crimsons are made from the precipitate of cassius; this is obtained by
pouring a weak solution of tin in the chloride of gold. The dark blue
is a triple silicate of cobalt, which, by the admixture of the white
oxide of zinc, may be converted into a brighter blue. The green oxide
of chrome is the base of all greens, the tint of which is modified by
cobalt for the blue greens, and antimony for the yellow greens. The
chromate of iron, a mineral coming in large quantities from South
America, is the base of all browns. The black may be got from the
mixture of various oxides, but the best is that made from the oxide of
iridium. Besides the above, there is another class of colours in which
the oxides are thoroughly combined with the fluxes, such as the greens
made from copper and the transparent blues, which are ground colours,
and must be classified with the glazes. When painting colours are
fired with their respective fluxes, they are very permanent, and will
not only resist ordinary atmospheric influences, but also the action
of every gas or mineral acid (the fluoric excepted). This seems an
advantage in favour of painting on pottery, and one which ought to
give them an additional value; in reality, however, artistic merit
ranks above all other considerations, and unless the work is original,
Public-domain text, read in full here on John Shaqi.
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