Yıl: 2022 Cilt: 46 Sayı: 1 Sayfa Aralığı: 13 - 18 Metin Dili: İngilizce İndeks Tarihi: 10-08-2022

EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS

Öz:
Background and Aim: Translucency of zirconium is important to achieve aesthetic natural results. Sintering temperature has critical effects on translucency of zirconium. The purpose of the in vitro study was to evaluate the effect of different sintering temperature on the translucency of two different zirconium framework materials. Materials and Methods: 16 mm diameter and 1.25±0.05 mm thickness (Katana) and 16 mm diameter and 1.20±0.05 mm (White-Peaks) presintered blocks were prepared, divided into 2 main groups according zirconium core materials, and 6 subgroups (n=10) according to final sintering temperatures (1400 o C, 1500 o C, and 1600 o C). To assess translucency, a spectral reflectance was measured at wavelengths of 190 nm to 1100 nm at 10-nm intervals by using a computerized spectrophotometer and in the range of 380-780 nm were chosen for statistical analysis. Sintering temperature and zirconia core materials were separately analyzed by using ANOVA in case of significant interactions. Pairwise comparisons were evaluated using the Tukey and Bonferroni post hoc tests and differences (a=.05). Results: The significant differences were found between Katana (group K) and White Peaks (group WP). While the highest Translucency Parameter (TP) value of group K was recorded at 1500 o C (0.4063 for 1400 o C, 0.532 for 1500 o C, and 0.5115 for 1600 o C), the highest TP value of group WP was recorded at 1600 o C (0.5503 for 1400 o C, 0.5266 for 1500 o C, and 0.5723 for 1600 o C). Conclusions: The light transmisson of zirconium frameworks materials was affected by sintering temperature and TP increased with increasing sintering temperature.
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  • 1. Chevalier J. What future for zirconia as a biomaterial? Biomaterials 2006; 27: 535-543.
  • 2. Ilie N, Stawarczyk B. Quantification of the amount of light passing through zirconia: The effect of material shade, thickness, and curing conditions. J Dent 2014; 42: 684-690.
  • 3. Sen N, Sermet IB, Cinar S. Effect of coloring and sintering on the translucency and biaxial strength of monolithic zirconia. J Prosthet Dent 2018;119(2):308.e1-308.e7.
  • 4. Tholey MJ, Swain MV, Thiel N. Thermal gradients and residual stresses in veneered Y-TZP frameworks. Dent Mater 2011; 27: 1102-1110.
  • 5. Muñoz EM, Longhini D, Antonio SG, Adabo GL. The effects of mechanical and hydrothermal aging on microstructure and biaxial flexural strength of an anterior and a posterior monolithic zirconia. J Dent 2017; 63: 94-102.
  • 6. Klimke J, Trunecy M KA. Transparent tetragonal yttria-stabilized zirconia ceramics: influence of scattering caused by birefringence. J Am Ceram Soc 2011; 94: 1850-1858.
  • 7. Cardoso KV, Adabo GL, Mariscal-Muñoz E, Antonio SG AFJ. Effect of sintering temperature on microstructure, flexural strength, and optical properties of a fully stabilized monolithic zirconia. J Prosthet Dent 2020; 124: 594-598.
  • 8. Zhang Y. Making yttria-stabilized tetragonal zirconia translucent. Dent Mater 2014; 30: 1195-1203.
  • 9. Zhang F, Vanmeensel K, Batuk M, Hadermann J, Inokoshi M, Meerbeek BV et al. Highly-translucent, strong and aging-resistant 3Y-TZP ceramics for dental restoration by grain boundary segregation. Acta Biomater 2015; 16: 215-222.
  • 10. Jiang L, Liao Y, Wan Q, Li W. Effects of sintering temperature and particle size on the translucency of zirconium dioxide dental ceramic. J Mater Sci Mater Med 2011; 22: 2429-2235.
  • 11. Baldissara P, Llukacej A, Ciocca L, Valandro FL, Scotti R. Translucency of zirconia copings made with different CAD/CAM systems. J Prosthet Dent 2010; 104: 6-12.
  • 12. Sulaiman TA, Abdulmajeed AA, Donovan TE, Vallittu PK, Närhi TO, Lassila LV. The effect of staining and vacuum sintering on optical and mechanical properties of partially and fully stabilized monolithic zirconia. Dent Mater J 2015; 34: 605-610.
  • 13. Ebeid K, Wille S, Hamdy A, Salah T, El-Etreby A, Kern M. Effect of changes in sintering parameters on monolithic translucent zirconia. Dent Mater 2014; 30: 419-424.
  • 14. Sulaiman TA, Abdulmajeed AA, Shahramian K, Lassila L. Effect of different treatments on the flexural strength of fully versus partially stabilized monolithic zirconia. J Prosthet Dent 2017; 118: 216-220.
  • 15. Stawarczyk B, Özcan M, Hallmann L, Ender A, Mehl A, Hämmerlet CHF. The effect of zirconia sintering temperature on flexural strength, grain size, and contrast ratio. Clin Oral Investig 2013; 17: 269-274.
  • 16. Chevalier J, Deville S, Münch E, Jullian R, Lair F. Critical effect of cubic phase on aging in 3 mol% yttria-stabilized zirconia ceramics for hip replacement prosthesis. Biomaterials 2004; 25: 5539-5545
  • 17. Aboushelib MN, De Jager N, Kleverlaan CJ, Feilzer AJ. Microtensile bond strength of different components of core veneered all-ceramic restorations. Dent Mater 2005; 21: 984-991.
  • 18. Piconi C, Maccauro G. Zirconia as a ceramic biomaterial. Biomaterials 1999; 20: 1-25.
  • 19. Sheng Y, Shi Y, Wang L, Narasimhan SG. Translucent Radiosity: Efficiently combining diffuse inter-reflection and subsurface scattering. IEEE Trans Vis Comput Graph 2014; 20: 1009-1021.
  • 20. Sulaiman TA, Abdulmajeed AA, Donovan TE, Ritter AV, Vallittu PK, Närhi TO et al. Optical properties and light irradiance of monolithic zirconia at variable thicknesses. Dent Mater 2015; 31: 1180-1187.
  • 21. Della Bona A, Nogueira AD, Pecho OE. Optical properties of CAD-CAM ceramic systems. J Dent 2014; 42: 1202-1209.
  • 22. Raptis N V, Michalakis KX, Hirayama H. Optical behavior of current ceramic systems. Int J Periodontics Restorative Dent 2006; 26: 31-41.
  • 23. Attachoo S, Juntavee N. Role of sintered temperature and sintering time on spectral translucence of nano-crystal monolithic zirconia. J Clin Exp Dent 2019; 11: 146-153.
  • 24. Denry I, Kelly JR. State of the art of zirconia for dental applications. Dent Mater 2008; 24: 299-307.
  • 25. Crispin BJ, Hewlett E, Seghi R. Relative color stability of ceramic stains subjected to glazing temperatures. J Prosthet Dent 1991; 66: 20-23.
  • 26. Okubo SR, Kanawati A, Richards MW, Childress S. Evaluation of visual and instrument shade matching. J Prosthet Dent 1998; 80: 642-648.
  • 27. Denry I, Kelly JR. Emerging ceramic-based materials for dentistry. J Dent Res 2014; 93: 1235-1242
  • 28. Matsui K, Yoshida H, Ikuhara Y. Isothermal sintering effects on phase separation and grain growth in yttria-stabilized tetragonal zirconia polycrystal. J Am Ceram Soc 2009; 92: 467-475.
  • 29. Darmawan BA, Fisher JG, Trung DT, Sakthiabirami K, Park SW. Two-step sintering of partially stabilized zirconia for applications in ceramic crowns. Materials (Basel) 2020; 15;13(8):1857.
  • 30. Sulaiman TA, Abdulmajeed AA, Donovan TE, Vallıttu PK, Narhı TO, Lassıla LV. The effect of staining and vacuum sintering on optical and mechanical properties of partially and fully stabilized monolithic zirconia. Dent Mater J 2015; 34: 605-610.
  • 31. Juntavee N, Attashu S. Effect of sintering process on color parameters of nano-sized yttria partially stabilized tetragonal monolithic zirconia. J Clin Exp Dent 2018; 10: 794-804.
  • 32. Stawarczyk B, Emslander A, Roos M, Sener B, Noack F, Keul C. Zirconia ceramics, their contrast ratio and grain size depending on sintering parameters. Dent Mater J 2014; 33: 591-598.
  • 33. Hjerppe J, Närhi T, Fröberg K, Vallittu PK, Lassila LVJ. Effect of shading the zirconia framework on biaxial strength and surface microhardness. Acta Odontol Scand 2008; 66: 262-267.
  • 34. Baldissara P, Wandscher VF, Marchionatti AME, Parisi C, Monaco C, Ciocca L. Translucency of IPS e.max and cubic zirconia monolithic crowns. J Prosthet Dent 2018; 120: 269-275.
APA SEFERLİ Z, ERTAN A, Akçin E, Karaağaçlıoğlu L (2022). EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. , 13 - 18.
Chicago SEFERLİ ZAHİD,ERTAN Ahmet Atila,Akçin Elif Tuba,Karaağaçlıoğlu Lale EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. (2022): 13 - 18.
MLA SEFERLİ ZAHİD,ERTAN Ahmet Atila,Akçin Elif Tuba,Karaağaçlıoğlu Lale EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. , 2022, ss.13 - 18.
AMA SEFERLİ Z,ERTAN A,Akçin E,Karaağaçlıoğlu L EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. . 2022; 13 - 18.
Vancouver SEFERLİ Z,ERTAN A,Akçin E,Karaağaçlıoğlu L EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. . 2022; 13 - 18.
IEEE SEFERLİ Z,ERTAN A,Akçin E,Karaağaçlıoğlu L "EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS." , ss.13 - 18, 2022.
ISNAD SEFERLİ, ZAHİD vd. "EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS". (2022), 13-18.
APA SEFERLİ Z, ERTAN A, Akçin E, Karaağaçlıoğlu L (2022). EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. Clinical Dentistry and Research, 46(1), 13 - 18.
Chicago SEFERLİ ZAHİD,ERTAN Ahmet Atila,Akçin Elif Tuba,Karaağaçlıoğlu Lale EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. Clinical Dentistry and Research 46, no.1 (2022): 13 - 18.
MLA SEFERLİ ZAHİD,ERTAN Ahmet Atila,Akçin Elif Tuba,Karaağaçlıoğlu Lale EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. Clinical Dentistry and Research, vol.46, no.1, 2022, ss.13 - 18.
AMA SEFERLİ Z,ERTAN A,Akçin E,Karaağaçlıoğlu L EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. Clinical Dentistry and Research. 2022; 46(1): 13 - 18.
Vancouver SEFERLİ Z,ERTAN A,Akçin E,Karaağaçlıoğlu L EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS. Clinical Dentistry and Research. 2022; 46(1): 13 - 18.
IEEE SEFERLİ Z,ERTAN A,Akçin E,Karaağaçlıoğlu L "EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS." Clinical Dentistry and Research, 46, ss.13 - 18, 2022.
ISNAD SEFERLİ, ZAHİD vd. "EFFECT OF SINTERING TEMPERATURE ON LIGHT TRANSMISSION OF ZIRCONIUM CORE MATERIALS". Clinical Dentistry and Research 46/1 (2022), 13-18.