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다양한 중합 방법으로 제작한 간접 수복물용 복합레진의 굴곡 강도

Flexural strength of composite resin fabricated by various polymerization method

  • 김동연 (고려대학교 보건과학대학 보건과학연구소) ;
  • 박진영 (고려대학교 보건과학대학 보건과학연구소) ;
  • 강후원 (동아보건대학교 치기공과) ;
  • 김지환 (고려대학교 보건과학과 치의기공전공) ;
  • 김웅철 (고려대학교 보건과학과 치의기공전공)
  • Kim, Dong-Yeon (Institute for Health Science, College of Public Health Science, Korea University) ;
  • Park, Jin-Young (Institute for Health Science, College of Public Health Science, Korea University) ;
  • Kang, Hoo-Won (Department of Dental Laboratory, Donga College of Health) ;
  • Kim, Ji-Hwan (Department of Dental Laboratory Science & Engineering, College of Health Science, Korea University) ;
  • Kim, Woong-Chul (Department of Dental Laboratory Science & Engineering, College of Health Science, Korea University)
  • 투고 : 2018.04.21
  • 심사 : 2018.06.08
  • 발행 : 2018.06.30

초록

Purpose: The aim of this study is to evaluate composite resins of indirect restorations for testing of flexural strength according to various polymerization methods. Methods: Specimen was produced a total of 40 to 10 per each group with a length 25 mm, width 2 mm, thickness 2 mm using a Teflon zig. The polymerization groups were classified into four groups. The first group proceeded with light curing only(LC group). The second group proceeded with light and heat curing(LHC group). The third group proceeded with air press and light curing(ALC group). The fourth group proceeded with air press, light and heat curing(ALHC group). Each prepared group was evaluated by flexural strength test. Statistical analysis was performed by one-way ANOVA. Post-test was performed with Tukey test. Results: The lowest in the ALC group was 119.18 MPa and the highest in the ALHC group was 168.15 MPa. There were statistically significant differences. Conclusion : The composite resin of the indirect restoration is recommended to heat curing along with the air press.

키워드

참고문헌

  1. Abrisham SM, Tafti AF, Kheirkhah S, Tavakkoli MA. Shear Bond Strength of Porcelain to a Base-Metal Compared to Zirconia Core. J Dent Biomater, 4, 367-372, 2017.
  2. Cesar PF, Miranda WG, Braga RR. Influence of shade and storage time on the flexural strength, flexural modulus, and hardness of composites used for indirect restorations. J Prosthet Dent, 86, 89-96, 2001.
  3. Dejak B, Mlotkowski A. A comparison of stresses in molar teeth restored with inlays and direct restorations, including polymerization shrinkage of composite resin and tooth loading during mastication. Dent Mater, 31, 77-87, 2015. https://doi.org/10.1016/j.dental.2014.10.005
  4. ISO 10477:1992(E). Dentistry-Polymer-based crown and bridge materials. International Organization for Standardization, Geneva, Switzerland, 1992.
  5. Jun SK , Kim DA, Goo HJ, Lee HH. Investigation of the correlation between the different mechanical properties of resin composites. Dent Mater J, 32(1), 48-57, 2013. https://doi.org/10.4012/dmj.2012-178
  6. Junior SAR, Ferracane JL, Della Bona A. Flexural strength and Weibull analysis of a microhybrid and a nanofill composite evaluated by 3-and 4-point bending tests. Dent Mater, 24(3), 426-431, 2008. https://doi.org/10.1016/j.dental.2007.05.013
  7. Kim JT, Comparisons of flexural strength and cross-sectional surface area characteristics of three types of indirect composite resins. Korea University Master degree, 2017.
  8. Kim JT, Park JY, Kim WC, Kim JH. Evaluation of Flexural strength and surface porosity of three indirect composite resins. J Korean Acad Dent Tech. 39. 9-16, 2017.
  9. Mandikos MN, McGivney GP, Davis E, Bush PJ, Carter MJ. A comparison of the wear resistance and hardness of indirect composite resins. J Prosthet Dent, 85, 386-395, 2001. https://doi.org/10.1067/mpr.2001.114267
  10. Min BR, Chung IS. Shear Bond Strength and Failure Mode between Sinfony Indirect Composite Resin and Non Precious Metal. J Korean Acad Dent Tech, 30, 79-86, 2008.
  11. SM. Abrisham, A. Fallah Tafti, S. Kheirkhah, and MA. Tavakkolic. Shear Bond Strength of Porcelain to a Base-Metal Compared to Zirconia Core. J Dent Biomater, 4(1) 367-372, 2017.
  12. Setz J, Engel E. In vivo color stability of resin veneered telescopic dentures: a double blind pilot study. J Prosthet Dent, 77, 486-491, 1997. https://doi.org/10.1016/S0022-3913(97)70141-0
  13. Reinhardt JW, Boyer D, Stephens N. Effects of secondary curing on indirect posterior composite resins. Oper Dent, 19, 217-217, 1994.
  14. Wendt SL. The effect of heat used as a secondary cure upon the physical properties of three composite resins. I. Diametral tensile strength, compressive strength and marginal dimensional stability. Quintessence Int, 18, 265-271, 1987.