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Effect of sintering parameters using the central composite design method, electronic structure and physical properties of yttria-partially stabilized ZrO2 commercial ceramics Cover

Effect of sintering parameters using the central composite design method, electronic structure and physical properties of yttria-partially stabilized ZrO2 commercial ceramics

Open Access
|Feb 2017

References

  1. Ali S.A., Karthigeyan S., Deivanai M., Ma R., J. Prosthodont., 34 (2014), 178.
  2. Denry I., Kelly J.R., Dent. Mater., 24 (2008), 299.
  3. Birkby I., Harrison P., Stevens R., J. Eur. Ceram. Soc., 5 (1989), 37.
  4. Yang C.C.T., Wei W.C.J., Wear, 242 (2000), 97.
  5. Kohorst P., Borchers L., Strempel J., Stiesch M., Hassel T., Bach F.W., Hubsch C., Acta Biomater, 8 (2012), 1213.
  6. Christel P., Meunier A., Heller M., Torre J.P., Peille C.N., J. Biomed. Mater. Res. A, 23 (1989), 45.
  7. Kuwabara M., Ashizuka M., Kubota Y., Tsukidate T., J. Mater. Sci. Lett., 5 (1986), 7.
  8. Aboushelib M.N., Kleverlaan C.J., Feilzer A.J., J. Prosthodont., 17 (2008), 538.
  9. Uoa M., Sjoren G., Sundh A., Watari F., Bergman M., Lerner U., Dent. Mater., 19 (2003), 487.
  10. Özkol E., Zhang W., Ebert J., Telle R., J. Eur. Ceram. Soc., 32 (2012), 2193.
  11. Muńoz-Tabares J.A., Jiménez-Piqué E., Reyes-Gasga J., Anglada M., J. Eur. Ceram. Soc., 32 (2012), 3919.
  12. Mazaheri M., Simchi A., Golestani-Fard F., J. Eur. Ceram. Soc., 28 (2008), 2933.
  13. Vleugels J., Yuan Z.X., Der Biest O.V., J. Eur. Ceram. Soc., 22 (2002), 873.
  14. Nogiwa-Valdez A.A., Rainforth W.M., Zeng P., Ross I.M., Acta Biomater., 9 (2013), 6226.
  15. Ran S., Vleugels J., Huang S., Vanmeensel K., Blank D.H.A., Winnubst L., J. Eur. Ceram. Soc., 30 (2010), 899.
  16. Chaim R., Mat. Sci. Eng. A-Struct, 486 (2008), 439.
  17. Li J., Tang Z., Zhang Z., Luo S., Mater. Sci. Eng. B-Adv, 99 (2003), 321.
  18. Kim M., Laine R.M., J. Am. Ceram. Soc., 93 (2010), 709.
  19. Sagel-Ransijn C.D., Winnubst A.J.A., Burggraaf A.J., Verweij H., J. Eur. Ceram. Soc., 17 (1996), 1133.
  20. Theunissen G.S.A.M., Winnubst A.J.A., Burggraaf A.J., J. Eur. Ceram. Soc., 11 (1993), 315.
  21. Asar N.V., Korkmaz T., Gül E.B., Mater. Design., 31 (1993), 2540.
  22. Rasmussen S.T., Ngaji-Okumu W., Boenke K., O Brien W.J., Dent. Mater., 13 (1997), 43.
  23. Wang H., Liao Y., Chao Y., Liang X., Dent. Mater., 23 (2007), 1108.
  24. Holland T.B., Anselmi-Tamburini U., Quach D.V., Tran T.B., Mukherjee A.K., J. Eur. Ceram. Soc., 32 (2012), 3667.
  25. Raj P.M., Odulena A., Cannon W.R., Acta Mater., 50 (2002), 2559.
  26. Faes A., Fuerbringer J.M., Mohamedi D., Hessler-Wyser A., Caboche G., van Herle J., J. Power Sources, 196 (2011), 7058.
  27. Bashiri M., Geranmayeh A.F., Sci. Iran., 18 (2011), 1600.
  28. Hang Y., Qu M., Ukkusuri S., Energ. Buildings, 43 (2011), 988.
  29. Hollebeeck S., Borlon F., Schneider Y.J., Larondelle Y., Rogez H., Food Chem., 138 (2013), 1936.
  30. Zhu Z., Zhang G., Luo Y., Ran W., Shen Q., Bioresource Technol., 112 (2012), 254.
  31. Sani E., Mercatelli L., Sans J.L., Sciti D., Sol. Energ. Mat. Sol. C., 140 (2015), 477.
  32. Pan W., Chen K., Ai N., Lü Z., Jiang S.P., J. Electrochem. Soc., 163 (2016), F106.
  33. Balachandran M., Devanathan S., Muraleekrishnan R., Bhagawan S.S., Mater. Design., 35 (2012), 854.
  34. Guaracho V.V., Kaminari N.M., Ponte M.J., Ponte H.A., J. Hazard. Mater., 172 (2009), 1087.
  35. Fang Y., Zhang Y., Song J., Fan H., Hu L., Mater. Design., 49 (2013), 421.
  36. Diler E.A., Ipek R., Compos. Part B. Eng., 50 (2013), 371.
  37. Pongstabodee S., Monyanon S., Luengnaruemitchai A., Int. J. Hydrogen. Energ., 37 (2012), 4749.
  38. Bayhan M., Önel K., Mater. Design., 31 (2010), 3015.
  39. Shehzad A., Bashir M.J.K., Sethupathi S., Younus M., Lim J.W., IJPAES., 6 (2016), 255.
  40. Diler E.A., Ipek R., Compos. Part. B. Eng., 50(2013) , 371.
  41. Diler E.A., Ipek R., Mat. Sci. Eng. A-Struct., 548 (2012), 43.
  42. Badwal S., Ciacchi F., Giampietro K., Solid State Ionics, 176 (2005), 169.
  43. Casellas D., Cumbrera F.L., Sánchez-Bajo F., Forsling W., Llanes L., Anglada M., J. Eur. Ceram. Soc., 21 (2001), 765.
  44. ASTM C1327 – 08 Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics.
  45. Smith D.K., Newkirk W., Acta Crystallogr., 18 (1965), 983.
  46. Bondars B., Heidemane G., Grabis J., Laschke K., Boysen H., Schneider J., Frey F., J. Mater. Sci., 30 (1995), 1621.
  47. Hunter B.A., Howard C.J., Kim D.J., Austr. J. Phys., 51 (1998), 539.
  48. Rietveld H.M., J. Appl. Crystallogr., 2 (1969), 65.
  49. Bish D.L., Post J.E., Am. Mineral., 78 (1993), 932.
  50. Bortolotti M., Lutterotti L., Lonardelli I., J. Appl. Crystallogr., 42 (2009), 538.
  51. Lutterotti L., Matthies S., Wenk H.R., Schultz A.J., Richardson J., J. Appl. Phys., 81 (1997), 594.
  52. Lutterotti L., Ceccato R., Dal Maschio R., Pagani E., Mater Sci. Forum., 278 – 281 (1998), 87.
  53. Momma K., Izumi F., J. Appl. Crystallogr., 44 (2011), 1272.
  54. Kuz’minov Y.S., Lomonova E.E., Osiko V.V., Cubic zirconia and skull melting, Intl. Science Pub, Cambridge, 2008.
  55. Pakharukova V.P., Moroz E.M., Zyuzin D.A., Ishchenko A.V., Dolgikh L.Y., Strizhak P.E., J. Phys. Chem. C., 119 (2015), 28828.
  56. Zhang X.J., Liu Z.P., J. Chem. Theory Comput., 11 (2015), 4885.
  57. Kohara S., Salmon P.S., Adv. Phys., 1 (2016), 640.
  58. Zhao X., Vanderbilt D., Phys. Rev. B., 65 (2002), 0751051.
  59. Ikeno H., Krause M., Höche T., Patzig C., Hu Y., Gawronski A., Tanaka I., Rüsse C., J. Phys.- Condens. Mat., 25 (2013), 165505.
  60. Yang X., Yang L., Lin S., Zhou R., J. Phys. Chem. C, 119 (2015), 6065.
  61. Gaunt A.J., May I., Collison D., Holmana, K.T., Pope M.T., J. Mol. Struct., 656 (2003), 101.
  62. Bai Y., Dou Y., Xie L.H., Rutledge W., Li J.R., Zhou H.C., Chem. Soc. Rev., 45 (2016), 2327.
  63. Cunha F.S., Sczancoski J.C., Nogueira I.C., Oliveira De V.G., Lustosa S.M.C., Longo E., Cavalcante L.S., CrystEngComm, 17 (2015), 8207.
  64. Sinhamahapatra A., Jeon J.P., Kang J., Han B., Yu J.S., Sci. Rep.-UK, 6 (2016), 27218.
  65. Rahaman M.N., Sintering of Ceramics, CRC Press & Taylor and Francis Group, New York, 2008.
  66. Badapanda T., Rout S.K., Cavalcante L.S., Sczancoski J.C., Panigrahi S., Sinha T.P., Longo E., Mater. Chem. Phys., 121 (2010), 147.
  67. Cheng K., Zhang L., Lu C., Tieu K., Sci. Rep.-UK, 6 (2016), 25427.
  68. Hosokawa M., Nogi, K., Naito, M., Yokoyama, T.U., Nanoparticle Technology Handbook., Elsevier, Amsterdam, 2008, p. 312.
  69. Badapanda T., Senthil V., Rout S.K., Cavalcante L.S., Simoes A.Z., Sinha T.P., Panigrahi S., De Jesus M.M., Longo E., Varela J.A., Curr. Appl. Phys., 11 (2011), 1282.
  70. Marques V.S., Cavalcante L.S., Sczancoski J.C., Alcantara A.F.P., Orlandi M.O., Moraes E., Longo, E., Varela J.A., Siu Li M., Santos M.R.M.C., Cryst. Growth Des., 10 (2010), 4752.
  71. Fábregas I.O., Reinoso M., Otal E., Kim M., J. Eur. Ceram. Soc., 36 (2016), 2043.
  72. Subbanna M., Kapur P.C., Pradip P., Malghan S.G., Ceram. Int., 27 (2001), 57.
  73. Pouchly V., Maca K., Shen Z., J. Eur. Ceram. Soc., 33 (2013), 2275.
  74. Theunissen G.S.A.M., Winnubst A.J.A., Burggraaf A.J., J. Eur. Ceram. Soc., 11 (1993), 315.
  75. Luo J., Stevens R., Ceram. Int., 25 (1999), 281.
  76. Bundschuh W., Gahr K.H.Z., Tribol. Int., 27 (1994), 97.
  77. Marro F.G., Anglada M., J. Eur. Ceram. Soc., 32 (2012), 317.
DOI: https://doi.org/10.1515/msp-2017-0035 | Journal eISSN: 2083-134X | Journal ISSN: 2083-1331
Language: English
Page range: 225 - 238
Submitted on: Sep 15, 2016
Accepted on: Jan 28, 2017
Published on: Feb 24, 2017
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 A.M. Mendes, M.C.B. Costa, V.D. Araújo, F.V. Motta, C.A. Paskocimas, W. Acchar, E. Longo, M.R.D. Bomio, L.S. Cavalcante, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.