Synthetic resins and their raw materials: A survey of the types and uses of synthetic resins, the organization of the industry, and the trade in resins and raw materials, with particular references to factors essential to tariff consideration. Under the general provisions of section 332, title III, part II, Tariff act of 1930.United States Tariff Commission
Science
Synthetic resins and their raw materials: A survey of the types and uses of synthetic resins, the organization of the industry, and the trade in resins and raw materials, with particular references to factors essential to tariff consideration. Under the general provisions of section 332, title III, part II, Tariff act of 1930.
United States Tariff Commission
Gums and resins industry; Plastics
_Alkyd resins made from phthalic anhydride._—The rapid increase in
the production of alkyd resins for use in coatings is one of the most
remarkable in the whole resin industry. They go into varnishes, lacquers,
and enamels for spraying, brushing, and dipping. The coatings may be
air-dried, with a wide range of drying time, or dried by oven baking. The
volume of alkyd resins used by the coating industry has grown so large
that a number of coating firms have gone into the production of alkyds
and now make part or all of their own requirements. In 1937 there were
24 paint, varnish, and lacquer firms producing alkyd resins. Included in
this number were the first and second largest producers of such resins.
Eleven producers of these resins, including the third and fourth largest,
made alkyd resins for sale only. Each of these groups included one firm
which also made phthalic anhydride.
_Alkyd resins made from maleic anhydride._—In 1937 there were seven
producers of alkyd resins from maleic anhydride who produced for sale
only. This group included the two largest producers and also one firm
which produced maleic anhydride. In addition there were five paint,
varnish, and lacquer firms producing part or all of their needs of
resins of this type. The general conditions under which these resins are
consumed are the same as for alkyd resins made from phthalic anhydride.
_Urea resins for molding._—The conditions under which urea resins are
molded are not greatly different from those already discussed for
tar-acid resins. The molding cycle is somewhat longer and, because of
the light colors used, special precautions must be taken to prevent
discoloration of the molded product by dirt or flecks of molding powder
from other operations, carried through the air or upon the person of the
laborer. In 1937 there were four producers of urea resins for molding.
Three of them, including the two largest, produced for sale only; the
other consumed his own production.
_Urea resins for other uses._—Until recently urea resins were thought
of exclusively for molding, but they are now being used for laminating,
for surface coatings, and also as an adhesive. Ordinarily the ureas are
used only in impregnating the outside laminae of a laminated sheet where
they are valuable for the light colors they make possible. The volume of
urea resins used in surface coatings is small compared with the alkyd or
tar-acid resins used for this purpose, but is increasing. The use of urea
resins in adhesives is still new but promises to become important.
In 1937 there were four producers of the ureas for uses other than
molding, who produced for sale only; and two producers who consumed their
own product.
_Coumarone and indene resins._—Coumarone and indene resins are produced
in connection with the production of solvent naphtha. There were three
producers in 1937, all of whom sold their product. These resins go into
varnishes, where they replace natural resins or ester gum.
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