It is the object of the present invention to provide a paving composition for playgrounds, tennis courts, parking lots, airport runways, pedestrian walkways, and other paving surfaces which includes a black asphaltic type binder as well as a coloring agent to impart a graded degree of color, other than black, throughout the mass thereof. Thereby, a distinctive ground surface may be laid down without need for painting thereof which, at best, lasts for only a relatively short period of time and which requires coating the surface repeatedly upon wear and deterioration of the painted surface.
It is another object of the invention to improve upon the paving composition and the surfaces produced therewith, as disclosed in U.S. Pat. No. 2,863,841, Dec. 9, 1958, to impart a permanent distinctive color throughout the mass of the latter. Heretofore, the pavements produced in accordance with the disclosure in this patent, were black in color and required the application of colored paints or other surface coatings if any other colors were desired.
The advantageous characteristics of the pavement composition produced in accordance with the teachings in the above-mentioned patent are fully set forth therein, and are incorporated in the present disclosure by reference thereto.
Extensive experimentation in the field of producing colored paving mixtures having bituminous or asphaltic materials as a component thereof has not met with commercial success up to the present time. This is true despite the fact that the coloring of Portland cement concretes has been known in the art for decades, as exemplified by the disclosure in U.S. Pat. No. 3,068,109, Dec. 11, 1962. The use of Albino asphalt to which acrylic color pigments were added, proved impractical, probably as a consequence of the high cost of producing the former.
In accordance with the present invention, the preferred formulation of the desired colored paving composition may be as follows:
Sand and stone: 45%-80%
Bituminous binder: 6%-28%
Ferric oxide: 4%-20%
The percentages, by weight, of the specific ingredients may be varied in dependence upon the specific uses of the pavement, i.e., a pavement requiring greater strength and resistance to wear would have a higher sand and stone content, while one requiring a brighter color would include a higher quantity of ferric oxide. Also, the ferric oxide may be introduced into the black asphalt mix either in the pug mill or directly into a cold asphalt mix.
In accordance with the present invention, the paving mixture disclosed in the first-mentioned patent above, has been improved and modified by using the following ingredients:
Exfoliated vermiculite: 2% to 8%
Granulated rubber: 6% to 18%
Fine sand and stone screenings: 45% to 80%
Bituminous binder: 10% to 28%
Synthetic ferric oxide: 4% to 20%
A specific formulation of the paving mixture within the ranges above may be as follows:
Exfoliated vermiculite: 5%
Granulated rubber: 13%
Fine sand and stone screenings: 52%
Bituminous binder: 20%
Synthetic ferric oxide: 10%
The synthetic ferric oxide ingredient is preferable to the natural ferric oxide, and may be in the form of any known industrial coloring agents of this composition. The brightness or intensity of the color may be varied by varying the ratio of the quantity of ferric oxide to the bituminous binder.
A red colored pavement, as an alternative to a painted black surface, which may be laid down in depths from one-fourth inch to twelve inches or more, offers many economies in the maintenance of athletic facilities, walkways which require delineation such as bike paths, danger areas, airport runways, etc.
A variation in the coloring ingredient by the use of other metal oxides such as chromium oxide, results in different colorations. No after treatments of the deposited surface are required to attain the desired color effect.
The ferric oxide coloring agent may be introduced in the pavement mix either prior to the feeding of the total mix into a pugmill, or directly into a cold mix of asphalt combined with rubber and vermiculite.
The particle size of the several ingredients in the mixtures above may be the same as disclosed in the first-mentioned patent. Thus, the sand and stone screenings should be relatively fine, not exceeding approximately one-eighth inch. The size of the vermiculite flakes should range from 0.04 inches to approximately five-sixteenth inch, and the granulated rubber should range from 0.04 inch to approximately one-fourth inch.