U.S. patent application Ser. No. 08/518,625, filed Aug. 23, 1995, Sanahuja. |
U.S. patent application Ser. No. 09/141,893, filed Aug. 28, 1998, Webster et al. |
English Abstract of DE 4012449 Oct. 24, 1991. |
English Abstract of DE 3233953; Mar. 15, 1984. |
English Abstract of JP 03-207733; Sep. 11, 1991. |
English Abstract of JP 6010276A; Jan, 18, 1994. |
English Abstract of JP 60-042441; Mar. 06, 1985. |
Hawkins et al., “Synergistic Antioxidant Combinations. Mechanism of Stabilization with Organo-Sulfur Compounds” pp. 3499-3509, from “Journal of Polymer Science: Part A”, vol. 1; 1963. |
Stengrevics et al., “Stabilization of Filled Polyolefins”; pp. 35-39, from “Plastics Compounding” Jul. 1987. |
Hawkins et al.; “Stabilization of Plastic Insulating Material For Wire and Cable”, pp. 82-89 from “The Plastics Institute”, vol. 29 No. 81, Jun. 1961. |
Hawkins et al., “New Thermal Antioxidants for Polyethylene Containing Carbon Black”, pp. 43-49 from “Journal of Applied Polymer Science” vol. I, Issue No. 1, 1959. |
Crompton, “The Effect of Carbon Black on Thermal Antioxidants for Polyethylene” pp. 558-560 from “Journal of Applied Polymer Science”, vol. VI, Issue No. 23, 1962. |
Hawkins, “The Effect of Carbon Black on Thermal Antioxidants for Polyethylene”, pp. 37-42 from “Journal of Applied Polymer Science”, vol. 1, Issue No. 1; 1959. |
Whitney, “The Modifying Characteristics of Special Carbon Blacks With Emphasis On Ultra-Violet Light Stabilization” from 1998 Society of Plastics Engineers Regional Conference; Oct. 2, 1988. |
Williams et al., “Effect of the Chemical and Physical Properties of Carbon Black on its Performance in Polyethylene” pp. 861-886, for “Journal of Applied Polymer Science” vol. 9; 1965. |
Kovacs, et al., “The Effect of the Chemical and Physical Properties of Carbon Black on the Thermal and Photooxidation of Polyethylene”, pp. 171-180, from “Journal of Polymer Science”, Symposium No. 57; 1976. |
Hawkins, “Stabilization Update-Carbon Black-The Complete Stabilizer for Polyethylene”, p. 32 from “Polymer News” vol. 4; 1977. |
Turley et al., “Using Carbon Black to Protect Linear Low Density Polyethylene from Ultra-Violet Light Degradation”, pp. 53-59 from “Journal of Advanced Materials”; Apr. 1994. |
Chemical Abstract 72:11860t; 1970. |
Chemical Abstract 69:10147s; 1968. |
Howard, “Autoxidation and Antioxidants. Basic Principles and New Developments”, pp. 976-990; from “Rubber Chemistry and Technology”; May 7, 1974. |
Uzelmeier, “How Heat and Light Affect Pigmented Polypropylene”, pp. 69-74, from “SPE Journal”, vol. 26; May 1970. |
Uzelmeier, “The Effect of Pigments on the Heat and Light Stability Of Polypropylene”; pp. 29-33; 1969. |
“A Total System Approach—Colorants and Additive Modifiers”, from “1998 Society of Plastics Engineers Regional Conference”; 1988. |
“Epoxide Resin Tools” pp. 448,449, from “British Plastics”, Oct. 1957. |
Ambrose “Pigments in Polymer Materials”, p. 446, from “British Plastics”, Oct. 1957. |
Serizawa et al., “Effects of Oxidation of Carbon Black Surface on the Properties of Carbon Black-Natural Rubber Systems”, pp. 201-206, from “Polymer Journal”, vol. 15, No. 3, 1983. |
Hawkins et al., “Carbon Black as a Catalyst in the Oxidation of Antioxidants” pp. S106, S107, from “Journal of Polymer Science”, vol. 62, Issue 174; 1962. |
Hawkins et al., “Synergistic Antioxidant Combinations. Carbon Black Substitutes” pp. 3489-3497 from “Journal of Polymer Science: Part A”, vol. 1; 1963. |
Walker et al., “Carbon-Black Survives 20 Years of Weathering in Canada”, pp. 68-72, from Modern Plastics; May 1983. |
Latocha et al., “Temperature Effect on the Cooperative Action of Antioxidants”, pp. 189-192, from “Polymer Degradation and Stability”; vol. 7; 1984. |
Scott, “Atmospheric Oxidation and Antioxidants”, pp. 119-125, Elsevier Publishing Company; 1965. |
Matreyek et al., Effect of Carbon Black, Antioxidants, and Ultraviolet Absorbers on the Photooxidation of Polyethylene, pp. 606-610, 1974. |
Drogin, “The Use of Carbon Black in Plastics”, pp. 248-252, from “SPE Journal”, Mar. 1965. |