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치과 보철물에 사용되는 지르코니아 코어의 전단결합강도에 관한 연구Study about shear bond strength of zirconia core used in dental prosthesis

Other Titles
Study about shear bond strength of zirconia core used in dental prosthesis
Authors
김지환김웅철김혜영김재홍김지환
Issue Date
2011
Publisher
대한치과기공학회
Keywords
zirconia core; shear bond strength; IPS e.max Zirpress; failure mode
Citation
대한치과기공학회지, v.33, no.4, pp.299 - 306
Indexed
KCI
OTHER
Journal Title
대한치과기공학회지
Volume
33
Number
4
Start Page
299
End Page
306
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/113618
ISSN
1229-3954
Abstract
Purpose: This study aimed to investigate the shear bond strength by manufacturing the veneering porcelain on the IPS e.max ZirCAD zirconia core, using the layering technique and heat-pressing technique, and to evaluate the clinical stability by comparing to the conventional metal ceramic system. Methods: The Schmitz-Schulmeyer test method was used to evaluate the core-veneer shear bond strength of zirconia core ceramic(IPS e.max ZirCAD ) and their manufacture recommended two veneering ceramic systems(IPS e.max ceram , IPS e.max ZirPress ). A metal ceramic system(Bellabond plus , VITA VM13 )was used as a control group for the two all ceramic system test groups. The maximum loading and shear bond strength was measured. The average shear strength( ) was analyzed with the one-way ANOVA and the Tukey’s test( =.05). The fracture specimens were examined using Microscope to determine the failure pattern. Results: The mean shear bond strengths(SD) in MPa were MBSB control 43.62(2.13); ZBSB 18.65(1.76); ZPSB 18.89(1.54). The shear strengths of the zirconia cores were not significantly different(P>.05). Microscope examination showed that zirconia specimens presented mixed failure, and base metal alloy specimens showed adhesive failure. Conclusion: There was no siginificant different between the layering technique and the heat pressing technique in the veneering methods on the zirconia cores. None of the zirconia core and veneering ceramics could attain the high bond strength values of the metal ceramic combination.
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보건과학대학 (보건정책관리학부)
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