Schmidt, Wayde R., “Silicon-Based Nanostructural Ceramics Derived From Polymer Precursors: Development of Processing, Structure & Property Relationships”, Final Technical Report under Contract No. F49620-95-C-0020, R98-5.903-0009.4, United Technologies Research Center, Oct. 15, 1998, pp. 1-15 including Figures 1-49. |
Sellinger, Alan et al., “Continuous self-assembly of organic-inorganic nanocomposite coatings that mimic nacre”, Nature, vol. 394, Jul. 16, 1998, pp. 256-260. |
Strife, J. R. et al., “A Study of the Critical Factors Controlling the Synthesis of Ceramic Matrix Composites from Preceramic Polymers”, Final Technical Report, Dec. 15, 1990, R90-917810-5, United Technologies Research Center, 22 pages, 27 figures. |
Wesson, J. P. et al., “Novel Precursor Approaches for CMC Derived by Polymer Pyrolysis”, Annual Technical Report, Dec. 15, 1991, R91-970051-1, United Technologies Research Center, 13 pages, 16 figures. |
Wesson, J. P. et al., “Novel Precursor Approaches for CMC Derived by Polymer Pyrolysis”, Annual Techical Report, Dec. 15, 1992, R92-970051-2,United Technologies Research Center, 23 pages. |
Schmidt, W. R., “Novel Precursor Approaches for CMC Derived by Polymer Pyrolysis”, Final Technical Report, Feb. 15, 1994, R94-970051-3, United Technologies Research Center, 52 pages. |
Verdecia, G. et al., “Aluminum-27 and Silicon-29 Solid State Nuclear Magnetic Resonance Study of Silicon Carbide/Aluminum Nitride Systems: Effect of Silicon/Aluminum Ratio and Pyrolysis Temperature”, Chem. Mater., vol. 10, No. 4, 1998, pp. 1003-1009. ( No month available) |
Stirlen, Peter et al., “Si/SiC-Ceramic low process shrinkage—high temperature material for the Laser Sinter process.” Solid Freeform Fabrication Proceedings, Aug. 1998, pp. 581-588. |