Ïàòåíò ÑØÀ ¹ | 6797220 |
---|---|
Àâòîð(û) | Mulligan è äð. |
Äàòà âûäà÷è | S28 eptember 2004 ã. |
Processes for mechanically fabricating two and three-dimensional fibrous monolith composites include preparing a fibrous monolith filament from a core composition of a first powder material and a boundary material of a second powder material. The filament includes a first portion of the core composition surrounded by a second portion of the boundary composition. One or more filaments are extruded through a mechanically-controlled deposition nozzle onto a working surface to create a fibrous monolith composite object. The objects may be formed directly from computer models and have complex geometries.
Àâòîðû: | Anthony C. Mulligan (Tucson, AZ), Mark J. Rigali (Tucson, AZ), Manish P. Sutaria (Philadelphia, PA), Gregory J. Artz (Tucson, AZ), Felix H. Gafner (Tucson, AZ), K. Ranji Vaidyanathan (Tucson, AZ) |
---|---|
Çàÿâèòåëü: | Advanced Ceramics Research, Inc. (Tucson, AZ) |
ID ñåìåéñòâà ïàòåíòîâ | 21717012 |
Íîìåð çàÿâêè: | 10/005,656 |
Äàòà ðåãèñòðàöèè: | 04 äåêàáðÿ 2001 ã. |
Êëàññ ïàòåíòíîé êëàññèôèêàöèè ÑØÀ: | 264/241; 264/308; 264/638; 264/642; 419/65; 419/67 |
Êëàññ ñîâìåñòíîé ïàòåíòíîé êëàññèôèêàöèè: | C04B 35/6303 (20130101); C04B 35/806 (20130101); C04B 35/6455 (20130101); C04B 35/645 (20130101); C04B 35/638 (20130101); C04B 35/634 (20130101); C04B 35/632 (20130101); B22F 3/008 (20130101); B28B 3/20 (20130101); B28B 17/0081 (20130101); B29C 43/006 (20130101); B29C 47/0016 (20130101); C04B 35/5622 (20130101); C04B 35/6286 (20130101); B22F 3/10 (20130101); B22F 3/14 (20130101); B22F 3/15 (20130101); B22F 1/004 (20130101); B22F 1/025 (20130101); B22F 3/20 (20130101); B22F 3/008 (20130101); B22F 3/20 (20130101); B22F 1/004 (20130101); B22F 3/008 (20130101); B22F 3/004 (20130101); C04B 2235/96 (20130101); C04B 2235/77 (20130101); C04B 2235/6021 (20130101); C04B 2235/524 (20130101); C04B 2235/3839 (20130101); C04B 2235/3826 (20130101); B22F 2998/00 (20130101); B22F 2999/00 (20130101); B29C 47/54 (20130101); B29K 2105/06 (20130101); B22F 2998/00 (20130101); B22F 2999/00 (20130101); B22F 2999/00 (20130101); B22F 2999/00 (20130101); B22F 2203/01 (20130101) |
Êëàññ ìåæäóíàðîäíîé ïàòåíòíîé êëàññèôèêàöèè (ÌÏÊ): | B22F 3/00 (20060101); B29C 43/00 (20060101); B28B 3/20 (20060101); B29C 47/54 (20060101); B29C 47/36 (20060101); B28B 005/00 () |
Îáëàñòü ïîèñêà: | ;264/241,308,638,642 ;419/65,67 |
4772524 | September 1988 | Coblenz |
5053092 | October 1991 | Lachman |
5116663 | May 1992 | Fujimoto |
5120688 | June 1992 | Hsieh |
5294387 | March 1994 | Nakano |
5398193 | March 1995 | deAngelis |
5588997 | December 1996 | Lysson et al. |
5645781 | July 1997 | Popovic'et al. |
5679157 | October 1997 | Milliman |
6046499 | April 2000 | Yano |
6063502 | May 2000 | Sue et al. |
6171532 | January 2001 | Sterzel |
6193001 | February 2001 | Eyre et al. |
6315065 | November 2001 | Yong et al. |
6325165 | December 2001 | Eyre |
6361873 | March 2002 | Yong et al. |
6451442 | September 2002 | Sue et al. |
2002/0127384 | September 2002 | Mulligan et al. |
2002/0154741 | October 2002 | Rigali et al. |
WO 01/53069 | Jul 2001 | WO | |||
PCT International Search Report mailed Feb. 25, 2003, (PCT/US02/38804). . PCT International Search Report mailed Feb. 28, 2003, (PCT/US02/38654). . PCT International Search Report mailed Mar. 6, 2003, (PCT/US02/38680). . T. Daxner, H.J. Bohm, and F.G. Rammerstorfer, "Mesoscopic Simulation of Inhomogeneous Metallic Foams with Respect to Energy Absorption." Computational Materials Science 16, pp. 61-69 (1999). . Mark A. Janney, Stephen D. Nunn, Claudia A. Walls, Ogbemi O. Omatete, Randy B. Ogle, Glen II. Kirby, and April D. McMillan, "Gelcasting," The Handbook of Ceramic Engineering. . T.J. Lu, B.A. Stone and M.F. Ashby, "Heat Transfer in Open-Cell Metal Foams," Acta Mater., vol. 46, No. 10, pp. 3619-3635 (1998). . S. Santosa and T. Wierzbicki, "On the Modeling of Crush Behavior of a Closed-Cell Aluminum Foam Structure," J. Mech. Phys. Solids, vol. 46, No. 4, pp. 645-669 (1998). . S.P. Santosa and T. Wierzbicki, A.G. Hanssen and M. Langseth, "Experimental and Numerical Studies of Foam-Filled Sections," International Journal of Impact Engineering 24, pp. 509-534 (2000). . J.J. Brennan and K. M. Prewo, "Silicon Carbide Fibre Reinforced Glass-Ceramic Matrix Composites Exhibiting High Strength and Toughness," J. Mater. Sci., 17 2371-83 (1982). . G. Hilmas, et al., "Fibrous Monoliths: Non -Brittle Fracture from Powder-Processed Ceramics,"0 Mat. Sci. & Eng.A195, 263-268 (1995). . G.E. Hilmas, et al., "SIC and SI.sub.3 N.sub.4 Fibrous Monoliths: Non-Brittle Fracture From Powder Processed Ceramics Produced by Coextrusion," vol. 61 Ceramic Processing Science and Technology, pp. 609-14 (1993). . H. Kodama, et al., "Silicon Carbide Monofilament-Reinforced Silicon Nitride or Silicon Carbide Matrix Composites," J. Am. Ceram. Soc., 72(4) 551-56 (1989). . D. Kovar, et al., "Fibrous Monolithic Ceramics" J. Am. Ceram. Soc., 80(10) 24171-2487 (1997). . P.J. Lamico, et al., "SIC/SIC Composite Ceramics," Am. Ceram. Soc. Bull., 65(2) 336-38 (1988). . T.I. Mah, et al., "Recent Developments in Fiber-Reinforced High Temperature Ceramic Composites," Am. Ceram. Soc. Bull., 88(2) 304-08 (1987). . K.M. Prewo, "Fiber-Reinforced Ceramics: New Opportunities for Composite Maaterials," Am. Ceram. Soc. Bull., 68(2) 395-400 (1989). . K.M. Prewo and J. J. Brennan, "High-Strength Silicon Carbide Fibre-Reinforced Glass-Matrix Composite," J. Mater. Sci., 16 483-88 (1980). . J.R. Strife, et al., "Status of Continuous Fiber-Reinforced Ceramic Matrix Composite Processing Technology," Ceram. Eng. Sci. Proc., 11(7-8) 871-919 (1990).. |