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E D. Rodeghiero et al/ Materials Science and Engineering 4244(1998)11-21 9 P F. Becher, Transient thermal stress behavior in ZrO2tough [25]K. Yamada, M. Mohri, in: S Somiya, Y Inomata(Eds ) Silicon ned Al,O3, J. Am. Ceram Soc. 64(1)(1981)37-39 Carbide Ceramics-l, Elsevier Applied Science, New York, 1991 10D. Hoffman, S. Komameni, R. Roy, Preparation of a diphasic 13-44. photosensitive xerogel, J Mater. Sci. Lett. 3(1984)439-442. [26 E D. Rodeghiero, E. Ustundag, M. Wuthenow, S.L. Sass, E.P. [1 D. Hoffman, R. Roy, S. Komarneni, Diphasic ceramic com Giannelis, The nature of ductile phase toughening in Ni/a-Al2O3 posites via a sol-gel method, Mater. Lett. 2(3)(1984)245-247 metal-ceramic composites, Ceram. Trans. 74(1996)353-364 [12]RA. Roy, R. Roy, Diphasic xerogels: I. ceramic-metal com- [27 C.J. Brinker, G.W. Scherer, Sol-Gel Science, Academic Press, posites. Mater. Res. Bull. 19(1984)169-177 [13 J.H. Adair, S.A. Touse, P.J. Melling, Chemically derived multi San Diego, CA, 1990, pp. 319-330. yer ceramics, Am. Ceram Soc. Bull. 66(10)(1987)1490-1494 [28 P F. Becher, G.C. Wei, Toughening behavior in SiC-whisker- [14 E.D. Rodeghiero, O. K. Tse, J Chisaki, E.P. Giannelis, Synthesis reinforced alumina, J. Am. Ceram. Soc. C67(12)(1987)267- and properties of Ni/a-Al,O3 composites via sol-gel, Mater. Sci Eng.A195(1995)151-161 229R.C. Weast(Ed ) CRC Handbook of Chemistry and Physics, [5 E.D. Rodeghiero, O. K. Tse, B.S. Wolkenberg, E P Giannelis, in: 67th edn., CRC Press, Boca Raton, FL, 1986. pp. B68-B146 T.S. Srivatsan, J.J. Moore(Eds ) Processing and Fabrication of B30 M. F. Ashby, D R.H. Jones, Engineering Materials I, Pergamon, Advanced Materials Iv. The Minerals. Metals and Materials New York, 1980, p 31 Society, Warrendale, PA, 1996, pp. 775-788 B31J. Criscione, private communication, Cornell University (1994). [16 J.M. Whitney, R L. McCullough, Delaware Composites Design [2]KK. Phani, S.K. Niyogi, Porosity dependence of ultrasonic Encyclopedia, vol 2, Technomic, Lancaster, PA, 1990, pp 3-35 velocity and elastic modulus in sintered uranium dioxide- 17]J.R. Neighbours, G.E. Schacher, Determination of elastic con- discussion, J. Mater. Sci. Lett. 5(1986)427-430 stants from sound-velocity measurements in crystals of general [33]GC. Wei, P F. Becher, Development of Sic-whisker-reinforced symmetry, J. Appl. Phys. 38(13)(1967)5366-5375. ceramics, Am. Ceram Soc. Bull. 64(2)(1985)298-304 [8] w. Shang-Xian, in: J.H. Underwood, S.w. Freiman, F.I. [34]M F. Ashby, D R H. Jones, Engineering Materials I, Pergamon, Baratta(Eds ) Chevron-Notched Specimens: Testing and Stress New York, 1980, p. 127. Analysis, ASTM STP 855, ASTM, Philadelphia, PA, 1984, Pp. [35V. D. Krstic, P.S. Nicholson, Toughening of glasses by metallic 176-192 particles, J. Am. Ceram. Soc. 64(9)(1981)499-504 [19 E. Ustundag, E.D. Rodeghiero, H.J. Yoo, A.T. Zehnder, A 36V.D. Krstic, On the fracture of brittle- matrix/ductile-particle Fracture Toughness Testing Procedure for Small Chevron- Notched Three-Point Bend Specimens, unpublished research. opposites, Philos. Mag. A 48(5)(1983)695-708 )A.T. Zehnder, private communication, Cornell University 37KT. Faber, A.G. Evans, Crack deflection processes-l. theory, Acta metall.31(4)(1983)565-576. I]JJ. Lannutti, D E. Clark, in: C.. Brinker, D E. Clark, D.R. [38]G H. Campbell, M. Ruhle, B.J. Dalgleish, A.G. Evans, Whisker Ulrich(Eds ) Better Ceramics Through Chemistry, North-Hol- toughening: A comparison between aluminum oxide and silicon land, New York, 1984, pp 369-374 nitride toughened with silicon carbide, J Am Ceram Soc. 73(3) [22 B.D. Cullity, Elements of X-Ray Diffraction, 2nd edn., Addison- (1990)521-530 Wesley, Reading, MA, 1978, pp 284-285 39 E.D. Rodeghiero, B.S. Wolkenberg, E P. Giannelis, Fracture [23] C.J. Brinker, G w. Scherer, Sol-Gel Science, Academic Press toughness enhancement of Ni/a-Al,O, composites via the addi- San Diego, CA, 1990, pp 599-607 ion of chromium oxide, Ceram. Trans. 74(1996)365-373 224Y. Inomata, in: S. Somiya, Y. Inomata(Eds ) Silicon Carbide 40]RW. Rice, in: C.J. Brinker, D.E. Clark, D.R. Ulrich(Eds Ceramics-l, Elsevier Applied Science, New York, 1991, pp Better Ceramics Through Chemistry, North-Holland, New York,1984,pp.337-345.E.D. Rodeghiero et al. / Materials Science and Engineering A244 (1998) 11–21 21 [9] P.F. Becher, Transient thermal stress behavior in ZrO2-tough￾ened Al2O3, J. Am. Ceram. Soc. 64 (1) (1981) 37–39. [10] D. Hoffman, S. Komarneni, R. Roy, Preparation of a diphasic photosensitive xerogel, J. Mater. Sci. Lett. 3 (1984) 439–442. [11] D. Hoffman, R. Roy, S. Komarneni, Diphasic ceramic com￾posites via a sol–gel method, Mater. Lett. 2 (3) (1984) 245–247. [12] R.A. Roy, R. Roy, Diphasic xerogels: I. ceramic–metal com￾posites, Mater. Res. Bull. 19 (1984) 169–177. [13] J.H. Adair, S.A. Touse, P.J. Melling, Chemically derived multi￾layer ceramics, Am. Ceram. Soc. Bull. 66 (10) (1987) 1490–1494. [14] E.D. Rodeghiero, O.K. Tse, J. Chisaki, E.P. Giannelis, Synthesis and properties of Ni/a-Al2O3 composites via sol–gel, Mater. Sci. Eng. A195 (1995) 151–161. [15] E.D. Rodeghiero, O.K. Tse, B.S. Wolkenberg, E.P Giannelis, in: T.S. Srivatsan, J.J. Moore (Eds.), Processing and Fabrication of Advanced Materials IV, The Minerals, Metals and Materials Society, Warrendale, PA, 1996, pp. 775–788. [16] J.M. Whitney, R.L. McCullough, Delaware Composites Design Encyclopedia, vol. 2, Technomic, Lancaster, PA, 1990, pp. 3–35. [17] J.R. Neighbours, G.E. Schacher, Determination of elastic con￾stants from sound-velocity measurements in crystals of general symmetry, J. Appl. Phys. 38 (13) (1967) 5366–5375. [18] W. Shang-Xian, in: J.H. Underwood, S.W. Freiman, F.I. Baratta (Eds.), Chevron-Notched Specimens: Testing and Stress Analysis, ASTM STP 855, ASTM, Philadelphia, PA, 1984, pp. 176–192. [19] E. Ustundag, E.D. Rodeghiero, H.J. Yoo, A.T. Zehnder, A Fracture Toughness Testing Procedure for Small Chevron￾Notched Three-Point Bend Specimens, unpublished research. [20] A.T. Zehnder, private communication, Cornell University (1996). [21] J.J. Lannutti, D.E. Clark, in: C.J. Brinker, D.E. Clark, D.R. Ulrich (Eds.), Better Ceramics Through Chemistry, North-Hol￾land, New York, 1984, pp. 369–374. [22] B.D. Cullity, Elements of X-Ray Diffraction, 2nd edn., Addison￾Wesley, Reading, MA, 1978, pp. 284–285. [23] C.J. Brinker, G.W. Scherer, Sol-Gel Science, Academic Press, San Diego, CA, 1990, pp. 599–607. [24] Y. Inomata, in: S. Somiya, Y. Inomata (Eds.), Silicon Carbide Ceramics-1, Elsevier Applied Science, New York, 1991, pp. 1–11. [25] K. Yamada, M. Mohri, in: S. Somiya, Y. Inomata (Eds.), Silicon Carbide Ceramics-1, Elsevier Applied Science, New York, 1991, pp. 13–44. [26] E.D. Rodeghiero, E. Ustundag, M. Wuthenow, S.L. Sass, E.P. Giannelis, The nature of ductile phase toughening in Ni/a-Al2O3 metal–ceramic composites, Ceram. Trans. 74 (1996) 353–364. [27] C.J. Brinker, G.W. Scherer, Sol-Gel Science, Academic Press, San Diego, CA, 1990, pp. 319-330. [28] P.F. Becher, G.C. Wei, Toughening behavior in SiC-whisker￾reinforced alumina, J. Am. Ceram. Soc. C67 (12) (1987) 267– 269. [29] R.C. Weast (Ed.), CRC Handbook of Chemistry and Physics, 67th edn., CRC Press, Boca Raton, FL, 1986, pp. B68–B146. [30] M.F. Ashby, D.R.H. Jones, Engineering Materials I, Pergamon, New York, 1980, p. 31. [31] J. Criscione, private communication, Cornell University (1994). [32] K.K. Phani, S.K. Niyogi, Porosity dependence of ultrasonic velocity and elastic modulus in sintered uranium dioxide—a discussion, J. Mater. Sci. Lett. 5 (1986) 427–430. [33] G.C. Wei, P.F. Becher, Development of SiC-whisker-reinforced ceramics, Am. Ceram. Soc. Bull. 64 (2) (1985) 298–304. [34] M.F. Ashby, D.R.H. Jones, Engineering Materials I, Pergamon, New York, 1980, p. 127. [35] V.D. Krstic, P.S. Nicholson, Toughening of glasses by metallic particles, J. Am. Ceram. Soc. 64 (9) (1981) 499–504. [36] V.D. Krstic, On the fracture of brittle-matrix/ductile-particle composites, Philos. Mag. A 48 (5) (1983) 695–708. [37] K.T. Faber, A.G. Evans, Crack deflection processes-I. theory, Acta Metall. 31 (4) (1983) 565–576. [38] G.H. Campbell, M. Ruhle, B.J. Dalgleish, A.G. Evans, Whisker toughening: A comparison between aluminum oxide and silicon nitride toughened with silicon carbide, J. Am. Ceram. Soc. 73 (3) (1990) 521–530. [39] E.D. Rodeghiero, B.S. Wolkenberg, E.P. Giannelis, Fracture toughness enhancement of Ni/a-Al2O3 composites via the addi￾tion of chromium oxide, Ceram. Trans. 74 (1996) 365–373. [40] R.W. Rice, in: C.J. Brinker, D.E. Clark, D.R. Ulrich (Eds.), Better Ceramics Through Chemistry, North-Holland, New York, 1984, pp. 337–345. .
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