The strength of current required for different kinds of plating varies
considerably, and if the work is to be of the best quality it is very
important that the current should be exactly right for the particular
process in hand. In order to adjust it accurately variable resistances
of German silver wire are provided for each vat, the current having to
pass through the resistance before reaching the solution. The volume
and the pressure of the current are measured by amperemeters and
voltmeters attached to the resistance boards. If the intensity of the
current is too great the articles are liable to be “burnt,” when the
deposit is dark coloured and often useless.
When exceptionally irregular surfaces have to be plated it is sometimes
necessary to employ an anode of special shape, in order to keep as
uniform a distance as possible between the electrodes. If this is not
done, those parts of the surface nearest the anode get more than their
share of the current, and so they receive a thicker deposit than the
parts farther away.
An interesting process is that known as “parcel-plating,” by which
decorative coatings of different coloured metals can be deposited on
one article. For instance, if it is desired to have gold flowers on a
silver brooch, the parts which are not to be gilded are painted over
with a non-conducting varnish. When this varnish is quite dry the
brooch is placed in the gilding vat and the current sent through in the
usual way. The gold is then deposited only on the parts unprotected
by varnish, and after the gilding the varnish is easily removed by
softening it in turpentine and brushing with a bristle brush. More
elaborate combinations of different coloured metals can be made in the
same way.
Sugar basins, cream jugs, ornamental bowls, cigarette cases, and other
articles are often gilded only on the inside. The article is filled
with gold solution and connected to the cathode rod. A piece of gold
wrapped in calico is attached to the anode rod, suspended in the
solution inside the article, and moved about quickly until the deposit
is of the required thickness.
The time occupied in plating is greatly shortened by stirring or
agitating the solutions. This sets up a good circulation of the liquid,
and a continual supply of fresh solution is brought to the cathode.
At the same time the resistance to the current is decreased, and
more current may be used without fear of burning. Fig. 37 shows an
arrangement for this purpose. The solution is agitated by compressed
air, and at the same time the cathode rods are moved backwards and
forwards. Plating solutions are also frequently heated in order to
hasten the rate of deposition.
Public-domain text, read in full here on John Shaqi.
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