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M.G. Holmquist et al./ Composites: Part A 34(2003)163-170 [28] Wilson DM, Lieder SL, Lueneberg DC. Microstructure and high [34] Hutchinson JW, Suo Z Mixed mode cracking in layered materials rties of Nextel 720 fibers. Ceram Engng sci proc dv Appl Mech 1991; 29: 63-163. 95:16(5:1005-14 135] Lange Ff, Tu wC, Evans AG. US Patent 5, 856, 252; 1999. [29] Wilson DM, Visser LR. High performance oxide fibers for metal and [36] Mattoni M, Yang JY, Levi CG, Zok FW. Effects of matrix porosity roceedings of the Processing of Fibers and the mechanical properties of a porous-matrix, all-oxide ceramic e, Barga, Italy: May 2000 composite. J Am Ceram Soc 2001: 84(11): 2594-602. [30] Franks Gv, La Plastic clay.like fiow stress of saturated [37] Ahlberg K, editor. AGA gas handbook. Sweden: Almgvist and advanced ceramic powder compacts. J Am Ceram Soc 2001: 21(7): Wikel:;1985.p.390 [38] Lange FF, Radsick TC, Holmquist M. In: Krenkel w, Naslain R, [311 Radsick TC. Fabrication of ceramic matrix composite tubes using a Schneider H, editors. Oxide/oxide composites: control of microstruc orous alumina/mullite matrix and aluminosilicate fiber. MSc thesis ure and properties. Proceedings of the Fourth International University of California. Santa Barbara: 2000 Conference on High Temperature Ceramic Matrix Composites, New compacts. I. Kinetic studies and microstructure development. J Am York: Wiley/VCH; 2001. p. 587-99 Ceram Soc1995;78(12:3277-82 [39] Glass SJ, Green DJ. Permeability and infiltration of partially sintered [33] Tu wC, Lange FF. Liquid precursor infiltration processing of powde ceramics. J Am Ceram Soc 1999: 82(10): 2745-52 compacts: Il Fracture toughness and strength. J Am Ceram Soc 1995: [40] Fujita H. Materials Department, University of Califomia, Santa 78(12):3283-9. Barbara, personal communication: August 2001[28] Wilson DM, Lieder SL, Lueneberg DC. Microstructure and high temperature properties of Nextel 720 fibers. Ceram Engng Sci Proc 1995;16(5):1005–14. [29] Wilson DM, Visser LR. High performance oxide fibers for metal and ceramic composites. Proceedings of the Processing of Fibers and Composites Conference, Barga, Italy; May 2000. [30] Franks GV, Lange FF. Plastic clay-like flow stress of saturated advanced ceramic powder compacts. J Am Ceram Soc 2001; 21(7): 893–899. [31] Radsick TC. Fabrication of ceramic matrix composite tubes using a porous alumina/mullite matrix and aluminosilicate fiber. MSc Thesis. University of California, Santa Barbara; 2000. [32] Tu WC, Lange FF. Liquid precursor infiltration processing of powder compacts. I. Kinetic studies and microstructure development. J Am Ceram Soc 1995;78(12):3277–82. [33] Tu WC, Lange FF. Liquid precursor infiltration processing of powder compacts: II. Fracture toughness and strength. J Am Ceram Soc 1995; 78(12):3283–9. [34] Hutchinson JW, Suo Z. Mixed mode cracking in layered materials. Adv Appl Mech 1991;29:63–163. [35] Lange FF, Tu WC, Evans AG. US Patent 5,856,252; 1999. [36] Mattoni M, Yang JY, Levi CG, Zok FW. Effects of matrix porosity on the mechanical properties of a porous-matrix, all-oxide ceramic composite. J Am Ceram Soc 2001; 84 (11): 2594–602. [37] Ahlberg K, editor. AGA gas handbook. Sweden: Almqvist and Wiksell; 1985. p. 390. [38] Lange FF, Radsick TC, Holmquist M. In: Krenkel W, Naslain R, Schneider H, editors. Oxide/oxide composites: control of microstruc￾ture and properties. Proceedings of the Fourth International Conference on High Temperature Ceramic Matrix Composites, New York: Wiley/VCH; 2001. p. 587–99. [39] Glass SJ, Green DJ. Permeability and infiltration of partially sintered ceramics. J Am Ceram Soc 1999;82(10):2745–52. [40] Fujita H. Materials Department, University of California, Santa Barbara, personal communication; August 2001. 170 M.G. Holmquist et al. / Composites: Part A 34 (2003) 163–170
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