Incrusting With Gold.
—The article is
first made perfectly bright, and those
places which are to be gilt are covered
with a matt consisting of white lead
ground with gum water, made into a
paste which can be applied like a thick
paint by means of a pen or brush. Those
places of the metal surface not covered
by the paint are coated with asphalt
varnish—a solution of asphaltum in
benzine to which oil of turpentine is
added to render it less volatile. After
this is done lay the article in water, so
that the white lead paint comes off, and
put it into a gilding bath. By the electric
current gold is precipitated on the
bright parts of the metal. When the
layer of gold is thick enough lift the object
from the bath, wash, let dry and lay
it into a vessel filled with benzol. The
asphalt dissolves in the benzol, and the {579}
desired design appears in gold on the
bronze or silver ground. This operation
may also be performed by coating the
whole article with asphalt varnish and
executing the design by means of a blunt
graver which only takes away the varnish
covering without scratching the
metal itself. On the parts thus bared
gold is deposited by the electric current
and the varnish coating is then removed.
Ivory Gilding.
—I.—The pattern is
painted with a fine camel’s-hair pencil,
moistened with gold chloride. Hold
the ivory over the mouth of a bottle in
which hydrogen gas is generated (by the
action of dilute sulphuric acid on zinc
waste). The hydrogen reduces the
auric chloride in the painted places into
metallic gold, and the gold film precipitated
in this manner will quickly obtain a
considerable luster. The gold film is
very thin, but durable.II.—This is especially suitable for
monograms. Take gold bronze and
place as much as can be taken up with
the point of a knife in a color-cup,
moistening with a few drops of genuine
English gold paint. Coat the raised
portions sparingly with gold, using a fine
pencil; next, coat the outer and inner
borders of the design. When the work
is done, and if the staining and gilding
have been unsuccessful, which occurs
frequently at the outset, lay the work
for 5 or 10 minutes in warmed lead water
and brush off with pumice stone. By
this process very fine shades are often
obtained which cannot be produced by
mere staining. Since the gold readily
wears off on the high places of the work,
it is well to lightly coat these portions
with a thin shellac solution before gilding.
This will cause the gilding to be
more permanent.
Mat Gilding.
—To obtain a handsome
mat gilding the article, after having
been neatly polished, is passed through
a sand-blast, such as is found in glass-grinding
and etching establishments;
next, the object is carefully cleansed
of fine sand (if possible, by annealing
and decocting), whereupon it is gilt and
subsequently brushed mat with the brass
brush. Where there is no sand-blast,
the article is deadened with the steel
wire brush, which will produce a satisfactory
result, after some practice. After
that, treatment is as above. The above-mentioned
applies in general only to
silver articles. In case of articles of
gold, brass, or tombac, it is better to
previously silver them strongly, since
they are too hard for direct treatment
with the steel wire brush, and a really
correct mat cannot be attained. The
brushes referred to are, of course, circular
brushes for the lathe.
Dead-gilding Of An Alloy Of Copper And Zinc.
—The parts which are to be
deadened must be isolated from those
which are to be polished, and also from
those which are to be concealed, and
which therefore are not to be gilded.
For this purpose they are coated with a
paste made of Spanish white mixed with
water. The articles prepared in this
manner are then attached by means of
iron wire to an iron rod and suspended
in a furnace constructed for this process.
The floor of this furnace is covered on
four sides with plates of enameled earthenware
for receiving the portions spattered
about of the salt mixture given off
later.In the middle is an oven constructed
like a cooking stove, on which is an iron
tripod for carrying the deadening pan;
this latter is cemented into a second pan
of cast iron, the intervening space being
filled up with stove cement. In the middle
of the pan is the bottom or sill, provided
with a thick cast-iron plate, forming
the hearth. On all four sides of the
latter are low brick walls, connecting
with the floor of the furnace, and the
whole is covered with thick sheet metal.
On the side of the furnace opposite the
side arranged for carrying the pans, is a
boiler in which boiling water is kept.
On the same side of the furnace, but outside
it, is a large oval tub of a capacity of
about 700 or 800 quarts, which is kept
filled with water. The upper portions
of the staves of this tub are covered with
linen to absorb all parts that are spattered
about.
Powder For Gilding Metals.
—I.—In a
solution of perchloride of gold soak
small pieces of linen which are dried
over the solution so that the drops falling
therefrom are saved. When the rags
are dry burn them, carefully gathering
the ashes, which ashes, stirred with
a little water, are used for gilding either
with pumice stone or with a cork. For
the hollows, use a small piece of soft
wood, linden, or poplar.II.—Dissolve the pure gold or the leaf
in nitro-muriatic acid and then precipitate
it by a piece of copper or by a solution
of iron sulphate. The precipitate,
if by copper, must be digested with distilled
vinegar and then washed by pouring
water over it repeatedly and dried.
This precipitate will be in the form of
very fine powder; it works better and is {580}
more easily burnished than gold leaf
ground with honey.
Gilding Pastes.
—I.—A good gilding
paste is prepared as follows: Slowly
melt an ounce of pure lard over the fire,
add 1/2 a teaspoonful of juice of squills,
and stir up the mixture well, subsequently
adding 10 drops of spirit of sal
ammoniac. If the mixture is not stiff
enough after cooling, the firmness may
be enhanced by an admixture of 1/3 to 1/2
ounce of pure melted beef-tallow. A
larger addition of tallow is necessary if
the white of an egg is added. After
each addition the mixture should be
stirred up well and the white of egg
should be added, not to the warm, but
almost cold, mixture.II.—Alum, 3 parts, by weight; saltpeter,
6 parts; sulphate of zinc, 3 parts;
common salt, 3 parts. Mix all into a
thick paste, dip the articles into it, and
heat them, until nearly black, on a piece
of sheet iron over a clear coke or charcoal
fire; then plunge them into cold
water.
Red Gilding.
—This is obtained by the
use of a mixture of equal parts of verdigris
and powdered tartar, with which the
article is coated; subsequently burning it
off on a moderate coal fire. Cool in
water, dip the article in a pickle of tartar,
scratch it, and a handsome red shade
will be the result, which has not attacked
the gilding in any way.
Regilding Mat Articles.
—In order to
regenerate dead gold trinkets without
having to color them again—which is, as
a rule, impossible, because the gold is too
weak to stand a second coloring—it is
advisable to copper these articles over
before gilding them. After the copper
has deposited all over, the object, well
cleaned and scratched, is hung in the
gilding. By this manipulation much
time and vexation is saved, such as every
jeweler will have experienced in gilding
mat gold articles. The article also acquires
a faultless new appearance. Here
are two recipes for the preparation of
copper baths:I.—Distilled boiling water, 2,000
parts, by weight; sodium sulphate, 10
parts; potassium cyanide, 15 parts; cupric
acetate, 15 parts; sodium carbonate,
20 parts; ammonia, 12 parts.
II.—Dissolve crystallized verdigris, 20
parts, by weight, and potassium cyanide,
42 parts, in 1,000 parts of boiling water.
Silk Gilding.
—This can only be accomplished
by the electric process. The
fiber is first rendered conductive by impregnation
with silver nitrate solution
and reduction of same with grape sugar
and diluted alkali, or, best of all, with
Raschig’s reduction salt. In place of the
silver nitrate, a solution of lead acetate
or copper acetate may be employed.
The silk thus impregnated is treated in
the solution of an alkaline sulphide, e. g.,
sodium sulphide, ammonium sulphide,
or else with hydrogen sulphide, thus producing
a conductive coating of metallic
sulphide. Upon this gold can be precipitated
by electrodeposition in the usual
way.
Spot Gilding.
—Gilding in spots, producing
a very fine appearance, is done
by putting a thin coat of oil on those
parts of the metal where the gilding is not
to appear; the gold will then be deposited
in those spots only where there is no oil,
and the oil is easily removed when the
work is finished.
Gilding Steel.
—Pure gold is dissolved
in aqua regia; the solution is allowed to
evaporate until the acid in excess has
gone. The precipitate is placed in clean
water, 3 times the quantity of sulphuric
acid is added and the whole left to stand
for 24 hours in a well-closed flask, until
the ethereal gold solution floats on top.
By moistening polished steel with the
solution a very handsome gilding is obtained.
By the application of designs
with any desired varnish the appearance
of a mixture of gold and steel may be imparted
to the article.
Wood Gilding.
—I.—The moldings,
ledges, etc., to be gilded are painted with
a strong solution of joiners’ glue, which
is left to harden well, whereupon 8 to 10
coatings of glue mixed with whitening
are given. Each coat must, of course,
be thoroughly dry, before commencing
the next. After this has been done,
paint with a strong mixture of glue and
minium, and while this is still wet, put on
the gold leaflets and press them down
with cotton. To impart the fine gloss,
polish with a burnishing agate after the
superfluous gold has been removed.II.—Proceed as above, but take silver
leaf instead of gold leaf, and after all
is thoroughly dry and the superfluous
silver has been removed, apply a coating
of good gold lacquer. The effect will
be equally satisfactory.
Zinc Gilding.
—I.—Gilding by means
of zinc contact may be accomplished
with the following formula: Two parts, by
weight, of gold chloride; 5 parts, by
weight, of potassium cyanide; 10 parts, {581}
by weight, of sulphite of soda; and 60
parts, by weight, of sodium phosphate
are dissolved in 1,000 parts of water.
When used the bath must be hot. A
cold bath without the addition of potassium
cyanide may also be used for gilding,
and this consists of 7 parts, by
weight, of gold chloride; 30 parts, by
weight, of yellow prussiate of potash; 30
parts, by weight, of potash; 30 parts, by
weight, of common salt in 1,000 parts of
water.II.—To gild zinc articles, dissolve
20 parts of gold chloride in 20 parts of
distilled water, and 80 parts of potassium
cyanide in 80 parts of water, mix the
solutions, stir a few times, filter, and add
tartar, 5 parts, and fine chalk, 100 parts.
The resulting paste is applied with a
brush. Objects of copper and brass are
previously coated with zinc. This is
done in the following manner: Heat a
concentrated sal ammoniac solution to
the boiling point with addition of zinc
dust and immerse the thoroughly cleaned
objects until a uniform zinc coating has
formed. Or boil the articles in a concentrated
caustic soda solution with zinc
dust.
Oxidizing Processes:
Aluminum Plating.
—I.—To plate iron
and other metals with pure aluminum,
deoxidize the pieces with a solution of
borax and place them in an enameling
oven, fitted for receiving metallic vapors.
Raise the temperature to 1,832° to 2,732° F. Introduce the aluminum vapors
generated by heating a quantity of the
metal on the sand bath. When the
vapors come in contact with the metallic
surfaces, the aluminum is deposited.
The vapors that have not been used or
are exhausted may be conducted into a
vessel of water.
To Copper Aluminum
, take
| II.— |
Sulphate of copper |
30 parts |
| Cream of tartar |
30 parts |
| Soda |
25 parts |
| Water |
1,000 parts |
The articles to be coppered are merely
dipped in this bath, but they must be
well cleaned previously.
Antimony Baths.
—I.—By dissolving
15 parts, by weight, of tartar emetic
and 15 parts of prepared tartar in 500
parts of hot water and adding 45–60
parts of hydrochloric acid and 45–60
parts of powdered antimony, brass becomes
coated in the boiling liquid with
beautiful antimony colors. In this
manner it is possible to impart to brass
golden, copper-red, violet, or bluish-gray
shades, according to a shorter or longer
stay of the objects in the liquid. These
antimony colors possess a handsome
luster, are permanent, and never change
in the air.II.—Carbonate of soda, 200 parts, by
weight; sulphide of antimony, 50 parts;
water, 1,000 parts. Heat the whole in
a porcelain capsule for 1 hour, keeping
constantly in ebullition; next, filter the
solution, which, on cooling, leaves a
precipitate, which boil again with the
liquid for one-half hour, whereupon the
bath is ready for use.
To Coat Brass Articles With Antimony Colors.
—Dissolve 15 parts, by weight, of
tartar emetic and 15 parts, by weight, of
powdered tartar in 500 parts, by weight,
of hot water and add 50 parts, by weight,
of hydrochloric acid, and 50 parts, by
weight, of powdered antimony. Into
this mixture, heated to a boil, the immersed
articles become covered with
luster colors, a golden shade appearing
at first, which is succeeded by one of
copper red. If the objects remain longer
in the liquid, the color passes into violet
and finally into bluish gray.
Brassing.
—I.—To brass small articles
of iron or steel drop them into a quart of
water and 1/2 ounce each of sulphate of
copper and protochloride of tin. Stir
the articles in this solution until desired
color is obtained.II.—Brassing Zinc, Steel, Cast Iron,
etc.—Acetate of copper, 100 parts, by
weight; cyanide of potassium, 250 parts;
bisulphite of soda, 200 parts; liquid ammonia,
100 parts; protochloride of zinc,
80 parts; distilled water, 10,000 parts.
Dissolve the cyanide of potassium and
the bisulphite of soda. On the other
hand, dissolve the ammonia in three-fourths
of the water and the protochloride
of zinc in the remaining water;
next, mix the two solutions. This bath
is excellent for brassing zinc and is used
cold.
III.—Acetate of copper, 125 parts, by
weight; cyanide of potassium, 400 parts;
protochloride of zinc, 100 parts; liquid
ammonia, 100 parts; distilled water,
8,000 to 10,000 parts. Proceed as above
described.
IV.—Acetate of copper, 150 parts, by
weight; carbonate of soda, 1,000 parts;
cyanide of potassium, 550 parts; bisulphite
of soda, 200 parts; protochloride
of zinc, 100 parts. Proceed as above.
This bath serves for iron, cast iron, and
steel, and is used cold. {582}
Colored Rings On Metal.
—Dissolve 200
parts, by weight, of caustic potash in
2,000 parts of water and add 50 parts of
litharge. Boil this solution for half an
hour, taking care that a little of the
litharge remains undissolved. When
cold, pour off the clear fluid; it is then
ready for use. Move the object to and
fro in the solution; a yellow-brown color
appears, becoming in turn white, yellow,
red, and finally a beautiful violet and
blue. As soon as the desired color is
obtained, remove the article quickly
from the solution, rinse in clean water,
and dry in sawdust.
Green Or Gold Color For Brass.
—French
articles of brass, both cast and
made of sheet brass, mostly exhibit a
golden color, which is produced by a
copper coating. This color is prepared
as follows: Dissolve 50 parts, by weight,
of caustic soda and 40 parts of milk
sugar in 1,000 parts of water and boil
a quarter of an hour. The solution
finally acquires a dark-yellow color.
Now add to the mixture, which is removed
from the fire, 40 parts of concentrated
cold blue vitriol solution. A red
precipitate is obtained from the vitriol,
which falls to the bottom at 167° F.
Next a wooden sieve, fitted to the vessel,
is put into the liquid with the polished
brass articles. Toward the end of the
second minute the golden color is usually
dark enough. The sieve with the articles
is taken out and the latter are
washed and dried in sawdust. If they
remain in the copper solution they soon
assume a green color, which in a short
time passes into yellow and bluish green,
and finally into the iridescent colors.
These shades must be produced slowly
at a temperature of 133° to 135° F.
To Give A Green Color To Gold Jewelry.
—Take
verdigris, 120 parts, by
weight; sal ammoniac, 120 parts; nitrate
of potassium, 45 parts; sulphate
of zinc, 16 parts. Grind the whole and
mix with strong vinegar. Place on the
fire and boil in it the articles to be colored.
Nickeling By Oxidation.
—I.—Nickeling
may be performed on all metals cold,
by means of nickelene by the Mitressey
process, without employing electrical
apparatus, and any desired thickness
deposited. It is said to be more solid
than nickel.First Bath.—Clean the objects and
take 5 parts, by weight, of American
potash per 25 parts, by weight, of water.
If the pieces are quite rusted, take 2
parts, by weight, of chlorhydric acid per
1 part, by weight, of water. The bath
is employed cold.
Second Bath.—Put 250 parts, by
weight, of sulphate of copper in 25,000
parts, by weight, of water. After dissolution
add a few drops of sulphuric
acid, drop by drop, stirring the liquid
with a wooden stick until it becomes as
clear as spring water.
Take out the pieces thus cleaned and
place them in what is called the copper
bath, attaching to them leaves of zinc;
they will assume a red tint. Then pass
them into the nickeling bath, which is
thus composed:
|
By weight |
| Cream of tartar |
20 parts |
| Sal ammoniac, in powder |
10 parts |
| Kitchen salt |
5 parts |
| Oxychlorhydrate of tin |
20 parts |
| Sulphate of nickel, single |
30 parts |
| Sulphate of nickel, double |
50 parts |
Remove the pieces from the bath in a
few minutes and rub them with fine sand
on a moist rag. Brilliancy will thus be
obtained. To improve the appearance,
apply a brass wire brush. The nickeling
is said to be more solid and beautiful
than that obtained by the electrical
method.
Brilliancy may be also imparted by
means of a piece of buff glued on a
wooden wheel and smeared with English
red stuff. This will give a glazed
appearance.
II.—Prepare a bath of neutral zinc
chloride and a neutral solution of a
nickel salt. The objects are immersed
in the bath with small pieces of zinc
and kept boiling for some time. This
process has given satisfactory results.
It is easy to prepare the zinc chloride
by dissolving it in hydrochloric acid, as
well as a saturated solution of ammoniacal
nickel sulphate in the proportion
of two volumes of the latter to one of the
zinc chloride. The objects should be
boiled for 15 minutes in the bath.
Nickel salt may also be employed, preferably
in the state of chloride.
Pickling Solutions.
—Oxidized copper,
brass, and German silver articles must
be cleansed by acid solutions. In the
case of brass alloys, this process, through
which the object acquires a dull yellow
surface, is known as dipping or
yellowing. The treatment consists of {583}
several successive operations. The article
is first boiled in a lye composed of
1 part caustic soda and 10 parts water,
or in a solution of potash or soda or in
limewater; small objects may be placed
in alcohol or benzine. When all the
grease has been removed, the article is
well rinsed with water, and is then ready
for the next pickling. It is first plunged
into a mixture of 1 part sulphuric acid
and 10 parts water, and allowed to remain
in it till it acquires a reddish tinge.
It is then immersed in 40° Bé. nitric
acid, for the purpose of removing the
red tinge, and then for a few seconds into
a bath of 1 part nitric acid, 1.25 parts
sulphuric acid of 66° Bé., 0.01 part common
salt, and 0.02 parts lampblack.
The article must then be immediately
and carefully washed with water till no
trace of acid remains. It is then ready
for galvanizing or drying in bran or
beech sawdust. When articles united
with soft solder are pickled in nitric acid,
the solder receives a gray-black color.
Palladiumizing Watch Movements.
—Palladium
is successfully employed for
coating parts of timepieces and other
pieces of metals to preserve them against
oxidation. To prepare a palladium
bath use the following ingredients:
Chloride of palladium, 10 parts, by
weight; phosphate of ammonia, 100
parts; phosphate of soda, 300 parts;
benzoic acid, 8 parts; water, 2,000
parts.
Metal Browning By Oxidation.
—The
article ought first to be cleaned with
either nitric acid or muriatic acid, then
immersed in an acid affecting the metal
and dried in a warm place. A light
coating is thus formed. For a second
coating acetic or formic acid is used
preferably for aluminum, nickel, and
copper; but for iron and steel, muriatic
or nitric acid. After cleaning, the article
is placed in a solution of tannin or
gallic acid, and is then dried in a warm
place as before. The second coating is
of a yellowish-brown color. On placing
it near the fire, the color can be deepened
until it becomes completely black; care
must be taken to withdraw it when the
desired shade is produced. Instead of
the acids employed for the first coating,
ammonia may be used.
Silvering By Oxidation.
—The oxidizing
of silver darkens it, and gives an antique
appearance that is highly prized.I.—The salts of silver are colorless
when the acids, the elements of which
enter into their composition, are not colored,
but they generally blacken on exposure
to light. It is easy, therefore, to
blacken silver and obtain its oxide; it is
sufficient to place it in contact with a
sulphide, vapor of sulphur, sulphohydric
acids, such as the sulphides or polysulphides
of potash, soda, dissolved in water
and called eau de barège. The chlorides
play the same part, and the chloride of
lime in solution or simply Javelle water
may be used. It is used hot in order to
accelerate its action. The bath must be
prepared new for each operation for two
reasons: (1) It is of little value; (2)
the sulphides precipitate rapidly and
give best effects only at the time of their
direct precipitations. The quantity of
the reagent in solution, forming the bath,
depends upon the thickness of the deposit
of silver. When this is trifling, the oxidation
penetrates the entire deposit and
the silver exfoliates in smaller scales,
leaving the copper bare. It is necessary,
therefore, in this case to operate
with dilute baths inclosing only about
45 grains of oxidizant at most per quart.
The operation is simple: Heat the necessary
quantity of water, add the sulphide
or chloride and agitate to effect
the solution of the mixture, and then at
once plunge in the silver-plated articles,
leaving them immersed only for a few
seconds, which exposure is sufficient to
cover it with a pellicle of deep black-blue
silver. After withdrawing they are
plunged in clean cold water, rinsed and
dried, and either left mat or else polished,
according to the nature of the
articles.
Should the result not be satisfactory,
the articles are brightened by immersing
them in a lukewarm solution of cyanide
of potassium. The oxide, the true name
of which would be the sulphuret or
chloruret, can be raised only on an object
either entirely of silver or silver plated.
II.—Rub the article with a mixture of
graphite, 6 parts, and powdered bloodstone,
1 part, moistened with oil of turpentine.
Allow to dry and brush with
soft brushes passed over wax. Or else,
brush with a soft brush wet with alcoholic
or aqueous platinic chloride solution
of 1 in 20.
III.—Sulphurizing is effected with the
following methods: Dip in a solution
heated to about 175° F., of potassium
sulphide, 5 parts, by weight; ammonium
carbonate, 10 parts; water, 1,000
parts; or, calcium sulphide, 1 to 2 parts;
sal ammoniac, 4 parts; water, 1,000
parts. {584}
IV.—In the following solution articles
of silver obtain a warm brown tone:
Copper sulphate, 20 parts, by weight;
potassium nitrate, 10 parts; ammonium
chloride, 20 parts. By means of bromine,
silver and silver alloys receive a
black coloring. On engraved surfaces
a niello-like effect may be produced
thereby.
Oxidized Steel.
—I.—Mix together bismuth
chloride, 1 part; mercury bichloride,
2 parts; copper chloride, 1 part; hydrochloric
acid, 6 parts; alcohol, 5 parts;
and water, 5 parts. To use this mixture
successfully the articles to be oxidized
must be cleaned perfectly and freed
from all grease, which is best accomplished
by boiling them in a soda solution
or by washing in spirit of wine.
Care should be taken not to touch the
article with the fingers again after this
cleaning. However clean the hand
may be, it always has grease on it and
leaves spots after touching, especially on
steel. Next the object is dipped into
the liquid, or if this is not possible the
solution is applied thin but evenly with a
brush, pencil, or rabbit’s foot. When
the liquid has dried, the article is placed
for a half hour in simple boiling water.
If a very dark shade is desired the process
is repeated until the required color
is attained.II.—Apply, by means of a sponge, a
solution of crystallized iron chloride, 2
parts; solid butter of antimony, 2 parts;
and gallic acid, 1 part in 5 parts of water.
Dry the article in the air and repeat the
treatment until the desired shade is
reached. Finally rinse with water,
dry, and rub with linseed-oil varnish.
Tinning By Oxidation.
—A dipping
bath for tinning iron is prepared by dissolving
300 parts, by weight, ammonia
alum (sulphate of alumina and sulphate
of ammonia) and 10 parts of melted
stannous chloride (tin salt) in 20,000
parts of warm water. As soon as the
solution boils, the iron articles, previously
pickled and rinsed in fresh water,
are plunged into the fluid; they are immediately
covered with a layer of tin of
a beautiful dull-white color, which can
be made bright by treatment in a tub or
sack. Small quantities of tin salt are
added from time to time as may be required
to replace the tin deposited on
the iron. This bath is also well adapted
for tinning zinc, but here also, as with
iron, the deposit is not sufficient to prevent
oxidation of the metal below.
Larger articles tinned in this way are
polished by scratch brushing. In tinning
zinc by this process, the ammonia
alum may be replaced by any other kind
of alum, or aluminum sulphate may be
used alone; experience has shown, however,
that this cannot be done with iron,
cast iron, or steel. If it is desired to tin
other metals besides iron and zinc in the
solution which we have described, the
battery must be resorted to; if the latter
is used, the above solution should be applied
in preference to any other.Patina Oxidizing Processes:
Patina Of Art Bronzes.
—For all
patinas, whether the ordinary brown
of commerce, the green of the Barye
bronzes, or the dark-orange tint of the
Florentine bronzes, a brush is used with
pigments varying according to the shade
desired and applied to the metal after it
is warmed. Recipes are to be met with
on every hand that have not been patented.
But the details of the operation
are the important thing, and often the
effect is produced by a handicraft which
it is difficult to penetrate.I.—A dark tint may be obtained by
cleaning the object and applying a coat
of hydrosulphate of ammonia; then,
after drying it, by rubbing with a brush
smeared with red chalk and plumbago.
The copper may also be moistened with
a dilute solution of chloride of platina
and warmed slightly, or still by plunging
it in a warm solution of the hydrochlorate
of antimony. For the verde antique
a solution is recommended composed
of 200 grams of acetic acid of 8°
strength, the same quantity of common
vinegar, 30 parts, by weight, of carbonate
of ammonia; 10 parts, by weight,
of sea salt; with the same quantities of
cream of tartar and acetate of copper
and a little water. To obtain the
bronze of medals several processes afford
a selection: For example, the piece may
be dipped in a bath consisting of equal
parts of the perchloride and the sesquiazotate
of iron, warming to the evaporation
of the liquid, and rubbing with a
waxed brush.
II.—Dissolve copper nitrate, 10 parts,
by weight, and kitchen salt, 2 parts, in
500 parts of water and add a solution of
ammonium acetate obtained by neutralization
of 10 parts of officinal spirit of
sal ammoniac with acetic acid to a faintly
acid reaction, and filling up with water
to 500 parts. Immerse the bronze, allow
to dry, brush off superficially and repeat
this until the desired shade of color has
been obtained. {585}
A Permanent Patina For Copper.—
Green.—
| I.— |
Sodium chloride |
37 parts |
| Ammonia water |
75 parts |
| Ammonium chloride |
37 parts |
| Strong wine vinegar |
5,000 parts |
Mix and dissolve. Apply to object to
be treated, with a camel’s-hair pencil.
Repeat the operation until the desired
shade of green is reached.
Yellow Green.—
| II.— |
Oxalic acid |
5 parts |
| Ammonium chloride |
10 parts |
| Acetic acid, 30 per cent dilution |
500 parts |
Mix and dissolve. Use as above indicated.
The following will produce
the same result:
| III.— |
Potassium oxalate, acid |
4 parts |
| Ammonium chloride |
16–17 parts |
| Vinegar containing 6 per cent of acetic acid |
1,000 parts |
IV.—Bluish Green.—After using the
first formula (for green) pencil over with
the following solution:
| Ammonium chloride |
40 parts |
| Ammonium carbonate |
120 parts |
| Water |
1,000 parts |
Mix and dissolve.
Greenish Brown.—
| V.— |
Potassium sulphuret |
5 parts |
| Water |
1,000 parts |
Mix and dissolve. With this, pencil
over object to be treated, let dry, then
pencil over with 10 parts a mixture of a
saturated solution of ammonia water and
acetic acid and 5 parts of ammonium
chloride thinned with 1,000 parts of
water. Let dry again, then brush off
well. Repeat, if necessary, until the
desired hue is attained.
Another Blue Green.—
| VI.— |
Corrosive sublimate |
25 parts |
| Potassium nitrate |
86 parts |
| Borax |
56 parts |
| Zinc oxide |
113 parts |
| Copper acetate |
220–225 parts |
Mix and heat together on the surface
of the object under treatment.
VII.—Brown.—The following is a
Parisian method of producing a beautiful
deep brown:
| Potassium oxalate, acid |
3 parts |
| Ammonium chloride |
15 parts |
| Water, distilled |
280 parts |
Mix and dissolve. The object is penciled
over with this several times, each
time allowing the solution to dry before
putting on any more. The process
is slow, but makes an elegant finish.
Green Patina Upon Copper.
—To produce
a green patina upon copper take
tartaric acid, dilute it half and half with
boiling water; coat the copper with this;
allow to dry for one day and rub the applied
layer off again the next day with
oakum. The coating must be done in
dry weather, else no success will be obtained.
Take hydrochloric acid and
dilute it half and half with boiling water,
but the hydrochloric acid should be
poured in the water, not vice-versa,
which is dangerous. In this hydrochloric
acid water dissolve as much zinc
as it can solve and allow to settle. The
clear liquid is again diluted half with
boiling water and the copper is coated
with this a few times.
Black Patina.
—Black patina is obtained
by coating with tallow the pieces
to be oxidized and lighting with a rosin
torch. Finally, wipe the reliefs and let
dry.
Blue-black Patina.
—Use a dilute solution
of chloride of antimony in water
and add a little free hydrochloric acid.
Apply with a soft brush, allow the article
to dry and rub with a flannel. If expense
is no object, employ a solution of
chloride of palladium, which gives a
magnificent blue black. It is necessary,
however, to previously clean the articles
thoroughly in a hot solution of carbonate
of soda, in order to remove the dirt
and greasy matter, which would prevent
the patina from becoming fixed.
Red Patina.
—The following is a new
method of making a red patina, the so-called
blood bronze, on copper and
copper alloys. The metallic object is
first made red hot, whereby it becomes
covered with a coating consisting of
cupric oxide on the surface and cuprous
oxide beneath. After cooling, it is
worked upon with a polishing plate until
the black cupric oxide coating is removed
and the cuprous oxide appears. The
metal now shows an intense red color, {586}
with a considerable degree of luster, both
of which are so permanent that it can be
treated with chemicals, such as blue
vitriol, for instance, without being in the
least affected.If it is desired to produce a marbled
surface, instead of an even red color,
borax or some chemical having a similar
action is sprinkled upon the metal during
the process of heating. On the places
covered by the borax, oxidation is prevented,
and after polishing, spots of the
original metallic color will appear in the
red surface. These can be colored by
well-known processes, so as to give the
desired marbled appearance.
Platinizing:
Platinizing Aluminum.
—Aluminum
vessels coated with a layer of platinum
are recommended in place of platinum
vessels, when not exposed to very high
temperatures. The process of platinizing
is simple, consisting in rubbing the
aluminum surface, previously polished,
with platinic chloride, rendered slightly
alkaline. The layer of platinum is made
thicker by repeated application. Potash
lye is carefully added to a solution of
5 to 10 per cent of platinic chloride in
water till a slightly alkaline reaction is
produced on filtering paper or a porcelain
plate by means of phenolphthalein.
This solution must always be freshly
prepared, and is the best for the purpose.
Neither galvanizing nor amalgamating
will produce the desired result. Special
care must be taken that the aluminum
is free from iron, otherwise black patches
will arise which cannot be removed.
Vessels platinized in this way must not
be cleaned with substances such as sea-sand,
but with a 5 to 10 per cent solution
of oxalic acid in water, followed by thorough
rinsing in water. These vessles
are said to be specially suitable for evaporating
purposes.
Platinizing Copper And Brass.
—I.—The
articles are coated with a thin layer of
platinum in a boiling solution of platinum
sal ammoniac, 1 part; sal ammoniac, 8
parts; and water, 40 parts, and next polished
with chalk. A mixture of equal
parts of platinum sal ammoniac and tartar
may also be rubbed on the objects.
Steel and iron articles can be platinized
with an ethereal solution of platinic
chloride. For small jewelry the boiling
solution of platinic chloride, 10 parts;
cooking salt, 200 parts; and water, 1,000
parts, is employed, which is rendered alkaline
with soda lye. In this, one may
also work with zinc contact.II.—Heat 800 parts of sal ammoniac
and 10 parts of platinum sal ammoniac
to the boiling point with 400 parts of
water, in a porcelain dish, and place the
articles to be platinized into this, whereby
they soon become covered with a
coating of platinum. They are then removed
from the liquid, dried and polished
with whiting.
Platinizing On Glass Or Porcelain.
—First
dissolve the platinum at a moderate
temperature in aqua regia, and next
evaporate the solution to dryness, observing
the following rules: When the
solution commences to turn thick it is
necessary to diminish the fire, while
carrying the evaporation so far that the
salt becomes dry, but the solution should
not be allowed to acquire a brown color,
which occurs if the heat is too strong.
The result of this first operation is
chloride of platina. When the latter
has cooled off it should be dissolved in
alcohol (95 per cent). The dissolution
accomplished, which takes place at the
end of 1 or 2 hours, throw the solution
gradually into four times its weight of
essence of lavender, then put into a well-closed
flask.For use, dip a brush into the solution
and apply it upon the objects to be platinized,
let dry and place in the muffle,
leaving them in the oven for about one-half
hour. In this operation one should
be guided as regards the duration of
the baking by the hardness or fusibility
of the objects treated. The platinization
accomplished, take a cotton cloth,
dipped into whiting in the state of pulp,
and rub the platinated articles with this,
rinsing with water afterwards.
Platinizing Metals.
—Following are
several processes of platinizing on metals:It is understood that the metals to be
covered with platinum must be copper
or coppered. All these baths require
strong batteries.
I.—Take borate of potash, 300 parts,
by weight; chloride of platina, 12 parts;
distilled water, 1,000 parts.
II.—Carbonate of soda, 250 parts, by
weight; chloride of platina, 10 parts; distilled
water, 1,000 parts.
III.—Sulphocyanide of potash, 12
parts, by weight; chloride of platina, 12
parts; carbonate of soda, 12 parts; distilled
water, 1,000 parts.
IV.—Borate of soda, 500 parts, by
weight; chloride of platina, 12 parts; distilled
water, 1,000 parts. {587}
Silvering, Silver-plating, and
Desilvering:
See also Silvering by Oxidation, under
Oxidation Processes, under Plating.
Antique Silver.
—There are various
processes for producing antique silver,
either fat or oxidized:To a little copal varnish add some
finely powdered ivory black or graphite.
Thin with spirits of turpentine and rub
with a brush dipped into this varnish
the objects to be treated. Allow to dry
for an hour and wipe off the top of the
articles with some rag, so that the black
remains only in the hollows. If a softer
tint is desired, apply again with a dry
brush and wipe as the first time. The
coating of black will be weaker and the
shade handsomer.
Britannia Silver-plating.
—I.—The
article should first be cleaned and then
rubbed by means of a wet cloth with a
pinch of powder obtained by mixing together:
Nitrate of silver, 1 part; cyanide
of potassium, 2 parts; chalk, 5 parts.
Then wipe with a dry cloth, and polish
well with rouge to give brilliancy.II.—By the electric method the metal
is simply plunged into a hot saturated
solution of crude potassium carbonate,
and the plating is then done directly,
using a strong electrical current. The
potassium carbonate solution dissolves
the surface of the britannia metal and
thus enables the silver to take a strong
hold on the article.
To Silver Brass, Bronze, Copper, Etc.
—I.—In
order to silver copper, brass,
bronze, or coppered metallic articles,
dissolve 10 parts of lunar caustic in 500
parts of distilled water, and 35 parts of
potassium cyanide (98 per cent) in 500
parts of distilled water; mix both solutions
with stirring, heat to 176° to 194° F. in an enameled vessel, and enter the
articles, well cleansed of fat and impurities,
until a uniform coating has formed.II.—Zinc, brass, and copper are silvered
by applying a paste of the following
composition: Ten parts of silver
nitrate dissolved in 50 parts of distilled
water, and 25 parts of potassium cyanide
dissolved in distilled water; mix,
stir, and filter. Moisten 100 parts of
whiting and 400 parts of powdered tartar
with enough of the above solution to
make a paste-like mass, which is applied
by means of a brush on the well-cleaned
objects. After the drying of this coating,
rinse off, and dry in sawdust.
III.—To silver brass and copper by
friction, rub on the articles, previously
cleaned of grease, a paste of silver
chloride, 10 parts; cooking salt, 20 parts;
powdered tartar, 20 parts; and the necessary
water, using a rag.
Desilvering.
—I.—It often happens in
plating that, notwithstanding all precautions,
some pieces have failed and it
is necessary to commence the work
again. For removing the silver that has
been applied, a rapid method is to take
sulphuric acid, 100 parts, and nitrate of
potash, 10 parts. Put the sulphuric
acid and the nitrate of potash (saltpeter)
in a vessel of stoneware or porcelain,
heated on the water bath. When the
silver has been removed from the copper,
rinse the object several times and
recommence the silvering. This bath
may be used repeatedly, taking care each
time to put it in a stoppered bottle.
When it has been saturated with silver
and has no more strength, decant the
deposit, boil the liquor to dryness, add
the residue to the deposit, and melt in a
crucible to regenerate the metal.II.—To dissolve the silver covering of
a metallic object, a bath is made use of,
composed of 66 per cent sulphuric acid,
3 parts, and 40 per cent nitric acid, 1
part. This mixture is heated to about
176° F., and the objects to be desilvered
are suspended in it by means of a copper
wire. The operation is accomplished in
a few seconds. The objects are washed
and then dried in sawdust.