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j Mater sci(2008)43:5942-5947 Acknowledgements This work was suppo 11. Lee H, Speyer R(2002)J Am Ceram Soc 85: 1291 0748364"CAREER: Hard and tough boron rich ceran 2. Orlovskaya N, Lugovy M, Ko F, Yarmolenko S, Sankar J, esigned to contain thermal residual stresses, the Euro Kuebler J(2006)Compos B 37: 524. doi: 10. 1016/j composites. ion INCO-Copernicus Grant ICA2-CT-2000-10020"L 2006.02.02 Swiss Federal Office for Education and Science Grant BI 13. Orlovskaya N, Lugovy M, Kuebler J, Mechanical performance of AFOSR, the project F49620-02-0340, and NATO 3 layered B4 C/.C-Sic laminates (in preparation) Linkage Grant"Layered ceramic sensors for biological and chemical 14. Tariolle S. Reynaud C, Thevenot F, Chartier T, Besso JL(2004) Solid state Chem177:487.doi:10.1016/s.200302007 Mcclellan K, Chu F, Roper JM, Shindo I (2001)J Math Sci 6:3403.doi:10.1023/A:l017947625784 References 16. Radchenko A, Subbotin V, Lugovy M, Orlovskaya N, Fra 1. Johnson GR, Holmquist TJ(1999)J Appl Phys 85: 8060. doi: 17. Orlovskaya N, Lugovy M, Subbotin V, Radchenko O,Adams J 10631.370643 Cheda M et al (2005)J Math Sci 40: 5483. doi: 10.1007/s10853- 2. Orphal DL, Franzen RR, Charters AC, Menna TL, Piekutowski 05-1923-X AJ(1997)Int J Impact Eng 19: 15. doi: 10.1016/S0734-743x96) 18. Kakazey M, Vlasova M, Gonzalez-Rodriguez JG, Dominguez- 00004-8 Patino M, Leder R(2006)Mater Sci Eng A 418: 111. doi 3. Chen M, Mccauley Jw, Hemker K(2003)Science 299: 1563 doi: 10.1 126/science. 1080819 10.1016/ J.msea.2005.lo18 4. Bourne NK (2002)In: Proceedings of the Royal Society of 19. Tabor D(1951)Hardness of metals. Clarendon Press, Oxford London series A-mathematical, physical and engineering sci- Ceram Soc64:533.doi:10.lll11151-2916.198l.tbl0320.x ences,458(2024,p1999 21. European Standard EN 843-1, Advanced technical ceramics- 5. Vogler TJ, Reinhart WD, Chabildas LC (2004)J Appl Phys 95:4173.doi:10.1063/l.1686902 Mechanical properties of monolithic ceramics at room tempera Ire-Part I: determination of flexural strength. december 2006 6. Nhara K, Nakahira A, Hirai T(1984)J Am Ceram Soc 67:13 22. European Standard EN 843-2, Advanced technical ceramic 7. Champagne B, Angers R(1979)J Am Ceram Soc 62: 149. doi: 0.llIl1151-2916.1979b19042x Mechanical properties of monolithic ceramics at room tempera ure--Part 2: determination Youngs modulus, shear strength and 8. Yamada S, Sakaguchi S, Hirao K, Yamauchi Y, Kanzaki s J Ceram Soc Jpn 111: 53. doi: 10.2109/jcersj-11153 Poissons ratio. December 2006 9. Thevenot F(990)J Eur Ceram Soc 6: 205. doi: 10.1016 23. Anselmi-Tamburini U, Ohyanagi M. Munir ZA(2004)Chem Mater I6:4347.doi:10.102lcm0491 22199090048K 24. Lemis-Petrope Kapaklis V, Peikrishvili AB, Politis C 10. Abzianidze TG, Eristavi AM, Shalamberidze So (2000)J Solid (2003)JMod d physi 17:2781.doi:10.1142S02179792030l8582 State Chen154:191.doi:10.1006js:.2000.8834 2 SpringerAcknowledgements This work was supported by NSF project 0748364 ‘‘CAREER: Hard and tough boron rich ceramic laminates designed to contain thermal residual stresses,’’ the European Commis￾sion INCO-Copernicus Grant ICA2-CT-2000-10020 ‘‘LAMINATES,’’ Swiss Federal Office for Education and Science Grant BBW 99.0785, AFOSR, the project # F49620-02-0340, and NATO Collaborative Linkage Grant ‘‘Layered ceramic sensors for biological and chemical detection.’’ References 1. Johnson GR, Holmquist TJ (1999) J Appl Phys 85:8060. doi: 10.1063/1.370643 2. Orphal DL, Franzen RR, Charters AC, Menna TL, Piekutowski AJ (1997) Int J Impact Eng 19:15. doi:10.1016/S0734-743X(96) 00004-8 3. Chen M, Mccauley JW, Hemker KJ (2003) Science 299:1563. doi:10.1126/science.1080819 4. Bourne NK (2002) In: Proceedings of the Royal Society of London series A—mathematical, physical and engineering sci￾ences, 458(2024), p 1999 5. Vogler TJ, Reinhart WD, Chabildas LC (2004) J Appl Phys 95:4173. doi:10.1063/1.1686902 6. Niihara K, Nakahira A, Hirai T (1984) J Am Ceram Soc 67:13 7. Champagne B, Angers R (1979) J Am Ceram Soc 62:149. doi: 10.1111/j.1151-2916.1979.tb19042.x 8. Yamada S, Sakaguchi S, Hirao K, Yamauchi Y, Kanzaki S (2003) J Ceram Soc Jpn 111:53. doi:10.2109/jcersj.111.53 9. Thevenot F (1990) J Eur Ceram Soc 6:205. doi:10.1016/0955- 2219(90)90048-K 10. Abzianidze TG, Eristavi AM, Shalamberidze SO (2000) J Solid State Chem 154:191. doi:10.1006/jssc.2000.8834 11. Lee H, Speyer R (2002) J Am Ceram Soc 85:1291 12. Orlovskaya N, Lugovy M, Ko F, Yarmolenko S, Sankar J, Kuebler J (2006) Compos B 37:524. doi:10.1016/j.compositesb. 2006.02.022 13. Orlovskaya N, Lugovy M, Kuebler J, Mechanical performance of 3 layered B4C/B4C-SiC laminates (in preparation) 14. Tariolle S, Reynaud C, Thevenot F, Chartier T, Besso JL (2004) J Solid State Chem 177:487. doi:10.1016/j.jssc.2003.02.007 15. Mcclellan KJ, Chu F, Roper JM, Shindo I (2001) J Math Sci 36:3403. doi:10.1023/A:1017947625784 16. Radchenko A, Subbotin V, Lugovy M, Orlovskaya N, Fracture toughness anisotropy of hot pressed silicon nitride (in preparation) 17. Orlovskaya N, Lugovy M, Subbotin V, Radchenko O, Adams J, Cheda M et al (2005) J Math Sci 40:5483. doi:10.1007/s10853- 005-1923-x 18. Kakazey M, Vlasova M, Gonzalez-Rodriguez JG, Dominguez￾Patino M, Leder R (2006) Mater Sci Eng A 418:111. doi: 10.1016/j.msea.2005.11.018 19. Tabor D (1951) Hardness of metals. Clarendon Press, Oxford 20. Antis GR, Chantikol P, Lawn BR, Marshall DB (1981) J Am Ceram Soc 64:533. doi:10.1111/j.1151-2916.1981.tb10320.x 21. European Standard EN 843-1, Advanced technical ceramics— Mechanical properties of monolithic ceramics at room tempera￾ture—Part 1: determination of flexural strength, December 2006 22. European Standard EN 843-2, Advanced technical ceramics— Mechanical properties of monolithic ceramics at room tempera￾ture—Part 2: determination Young’s modulus, shear strength and Poisson’s ratio, December 2006 23. Anselmi-Tamburini U, Ohyanagi M, Munir ZA (2004) Chem Mater 16:4347. doi:10.1021/cm049195q 24. Lemis-Petropoulos P, Kapaklis V, Peikrishvili AB, Politis C (2003) J Mod Phys B 17:2781. doi:10.1142/S0217979203018582 J Mater Sci (2008) 43:5942–5947 5947 123
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