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
Mention has already been made of how, in the case of mixing carbonates
of soda and potash, the one assists the fusibility of the other, and
this is more particularly true in the mixture of silicates in the
composition of the ordinary glass. Silicates of soda and potash are
separately much more infusible than a mixture of the two, and the
addition of other silicates to them renders them more fusible still;
silicate of lead, as has already been mentioned, causing the glass
into whose composition it enters to fuse at a much lower temperature
than it would do if that silicate were absent. Again, if the silicate
of lead be present in too large proportions, and if great care be not
taken in the manufacture of lead glass, the silicate of lead, from its
greater density, will sink lower among the molten silicates, and will
therefore cause a larger proportion of lead to be in the glass at the
bottom of the pot than there is at the top. We often notice in
tumblers and decanters of the cheaper kind, that there are very
distinct striA| running through the whole substance in some particular
portion of the glass. Now this is owing to the greater density of the
lead silicate, which sinks lower down in the collected mass of glass,
and therefore imparts to it this peculiar effect. When a pot of flint
glass is worked off, that which remains at the bottom usually contains
more lead than that which is worked off in the earlier part of the
day.
_Coloured Glasses._--It has been before shown that silica unites with
metallic oxides; in fact, glass is nothing but a compound brought
about by the union. With certain metallic oxides, silica forms
coloured silicates or glasses; and these, when fused with colourless
glasses, impart to them the colour of the silicate. Oxide of iron
colours glass either green or yellow, according to the nature of the
oxide; the silicate of the protoxide of iron being green, and that of
the peroxide, yellow of a slightly brownish tint. Copper forms two
oxides, the suboxide and the protoxide; the suboxide colours glass
red, while the protoxide renders it green. Black oxide of manganese
colours glass purple; but if large quantities be used, it makes it
perfectly black. Sesquioxide of chromium imparts a beautiful green
colour to glass, while oxide of uranium produces an opalescent effect
of yellow with a tinge of green. This latter, by the way, has the
power of reducing the ultra-violet rays of the spectrum to luminous
rays, and, when held in the rays of a spectrum obtained by the
electric light, produces an extremely beautiful effect, which is
called fluorescence. A small quantity of the oxide of gold tints glass
pink, but the colour becomes extremely rich and ruby-like, when a
larger quantity of the oxide is employed. Oxide of cobalt in very
small quantities yields, with silicic acid, an intensely blue
silicate. This substance, carefully prepared in a special manner and
ground to a fine powder, forms the well known water-colour pigment
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.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account