Claims
- 1. Polymethylmethacrylate nanocomposite optical plastic article, comprises: a polymethylmethacrylate host material having a temperature sensitive optical vector x1 and nanoparticles dispersed in said polymethylmethacrylate host material having a temperature sensitive optical vector x2, wherein said temperature sensitive optical vector x1 is directionally opposed to said temperature sensitive optical vector x2.
- 2. The polymethylmethacrylate nanocomposite optical plastic article recited in claim 1 wherein each of said temperature sensitive optical vectors x1 and x2 are defined by a change in refractive index (dn) of said polyemethylmethacrylate host material and said nanoparticles, respectively, with respect to a change in temperature (dT).
- 3. The polymethylmethacrylate nanocomposite optical plastic article recited in claim 1 wherein said temperature sensitive optical vector x1 has a negative value of about 105×10−6/degree C. and said temperature sensitive optical vector x2 has a positive value of greater than about 6×10−6/degree C. and less than about 50×10−6/degree C.
- 4. The polymethylmethacrylate nanocomposite optical plastic article recited in claim 1 wherein said nanoparticles are magnesium oxide.
- 5. The polymethylmethacrylate nanocomposite optical plastic article recited in claim 1 wherein said nanoparticles are aluminum oxide.
- 6. The polymethylmethacrylate nanocomposite optical plastic article recited in claim 3 wherein said nanoparticles are calcium carbonate.
- 7. The polymethylmethacrylate nanocomposite optical plastic article recited in claim 4 wherein said polymethylmethacrylate host material comprises a predetermined volume (%) of said magnesium oxide nanoparticles to reduce x1 by about 50%, said predetermined volume being determined by the equation:
- 8. The polymethylmethacrylate nanocomposite optical plastic article recited in claim 7 wherein said predetermined volume (%) of said magnesium oxide nanoparticles dispersed in said polymethymethacrylate host material is about 42%.
- 9. A method of manufacturing a polymethylmethacrylate nanocomposite optical plastic article, comprising the steps of:
(a) providing a polymethylmethacrylate host material having a temperature sensitive optical vector x1 and nanoparticles having a temperature sensitive optical vector x2,, wherein said temperature sensitive optical vector x1 is directionally opposed to temperature sensitive optical vector x2; (b) dispersing said nanoparticles into said polymethylmethacrylate host material forming a polymethylmethacrylate nanocomposite material; and, (c) forming said polymethylmethacrylate nanocomposite material into said polymethylmethacrylate nanocomposite optical plastic article.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application is related to U.S. application Ser. No. (D-81169), filed Dec. 22, 2000, by Border, et al., and entitled, “Reduced Temperature Sensitive Polymeric Optical Article And Method Of Making Same;” U.S. application Ser. No. (D-82045), filed Dec. 22, 2000, by Border, et al., and entitled, “Cyclic Olefin Polymeric Nanocomposite Optical Plastic Article And Method Of Making Same;” U.S. application Ser. No. (D-82046), filed Dec. 22, 2000, by Border, et al., and entitled, “Polystyrene Nanocomposite Optical Plastic Article And Method Of Making Same;” U.S. application Ser. No. (D-82047), filed Dec. 22, 2000, by Border, et al., and entitled, “Polycarbonate Nanocomposite Optical Plastic Article And Method Of Making Same;” U.S. application Ser. No. (D-82048), filed Dec. 22, 2000, by Border, et al., and entitled, “Polysulfone Nanocomposite Optical Plastic Article And Method Of Making Same.”