Paint Technology and TestsGardner, Henry A. (Henry Alfred)
Science
Paint Technology and Tests
Gardner, Henry A. (Henry Alfred)
Paint
========+============+================+=====
Sp. Gr. | Iodine No. | Saponification | Acid
| | No. | No.
--------+------------+----------------+-----
.925 | 118 | 191 | 9.5
========+============+================+=====
=Rosin Oil.= By the dry distillation of rosin, there is yielded a series
of heavy dark oils consisting principally of hydrocarbons, resinous
bodies, and free acid. These oils vary in their saponification number
from 10 to 60, while their unsaponifiable value averages about 80. Of
the grades termed first, second, third, and fourth run, the latter two
are superior for use in paints, as a rule containing less free acid than
the preliminary runs. Treatment with steam and alkali serve to
neutralize the acid nature of the oils and to remove impurities. Refined
oils are lighter in color and are often blown and bodied to fairly rapid
drying products, especially when treated with manganese driers. Rosin
oils are seldom used with lead pigments, on account of the presence of
sulphur in the oils, which would result in darkening. Rosin oil paints
work very smoothly, even when they are curdled, producing glossy
surfaces. The rapid checking of rosin oil paints on wooden surfaces bars
the use of this oil for such purposes.
ANALYSES OF ROSIN OILS
==+=========+============+================+======
| Sp. Gr. | Iodine | Saponification | Acid
| | Value | No. | No.
--+---------+------------+----------------+------
A | .966 | 41 | 27 | 16.7
B | .99 | 48 | 38 | 10.0
==+=========+============+================+======
=Hydrocarbon Oils.= Several grades of neutral or mineral oils, varying
somewhat in gravity, color, and quality, are produced as the last
distillate in the refining of petroleum. These oils when mixed with
drying oils and strong driers find application in the manufacture of
some freight-car, barn, and other paints which sell at a low price. A
small percentage of mineral oil is said to be valuable in structural
steel paints, acting as a preventative of hard drying and thus keeping
the film soft and elastic. Streaking and sweating is apt to ensue if any
great quantity is used. Mineral oils have a characteristic bloom,
showing a greenish fluorescence when examined by transmitted light. This
bloom is due to the presence of some strongly fluorescent material which
is shown up with intensity when mineral oils are exposed to ultraviolet
rays such as emanate from an enclosed arc light. Outerbridge[1] first
proposed this test for mineral oils, and he has worked out a
"fluorescent scale," by which very small percentages of hydrocarbon oils
may be detected in other oils. Several types of so-called debloomed oil
have been placed upon the market, and although such oils appear under
ordinary light conditions to be free from bloom, they fluoresce quite
strongly when given the Outerbridge test.
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