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      KCI등재 SCIE SCOPUS

      The effect of silane applied to glass ceramics on surface structure and bonding strength at different temperatures

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      https://www.riss.kr/link?id=A101841250

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      다국어 초록 (Multilingual Abstract)

      PURPOSE To evaluate the effect of various surface treatments on the surface structure and shear bond strength (SBS) of different ceramics. MATERIALS AND METHODS 288 specimens (lithium-disilicate, leucite-reinforced, and glass infiltrated zirconia) wer...

      PURPOSE
      To evaluate the effect of various surface treatments on the surface structure and shear bond strength (SBS) of different ceramics.
      MATERIALS AND METHODS
      288 specimens (lithium-disilicate, leucite-reinforced, and glass infiltrated zirconia) were first divided into two groups according to the resin cement used, and were later divided into four groups according to the given surface treatments: G1 (hydrofluoric acid (HF)+silane), G2 (silane alone-no heat-treatment), G3 (silane alone-then dried with 60℃ heat-treatment), and G4 (silane alone-then dried with 100℃ heat-treatment). Two different adhesive luting systems were applied onto the ceramic discs in all groups. SBS (in MPa) was calculated from the failure load per bonded area (in N/mm2). Subsequently, one specimen from each group was prepared for SEM evaluation of the separated-resin–ceramic interface.
      RESULTS
      SBS values of G1 were significantly higher than those of the other groups in the lithium disilicate ceramic and leucite reinforced ceramic, and the SBS values of G4 and G1 were significantly higher than those of G2 and G3 in glass infiltrated zirconia. The three-way ANOVA revealed that the SBS values were significantly affected by the type of resin cement (P<.001). FIN ceramics had the highest rate of cohesive failure on the ceramic surfaces than other ceramic groups. AFM images showed that the surface treatment groups exhibited similar topographies, except the group treated with HF.
      CONCLUSION
      The heat treatment was not sufficient to achieve high SBS values as compared with HF acid etching. The surface topography of ceramics was affected by surface treatments.

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      참고문헌 (Reference)

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      2 Edelhoff D, "To what extent does the longevity of fixed dental prostheses depend on the function of the cement? Working Group 4 materials: cementation" 18 : 193-204, 2007

      3 Barghi N, "To silanate or not to silanate: making a clinical decision" 21 : 659-662, 2000

      4 Blatz MB, "The effect of silica coating on the resin bond to the intaglio surface of Procera AllCeram restorations" 34 : 542-547, 2003

      5 Fabianelli A, "The effect of different surface treatments on bond strength between leucite reinforced feldspathic ceramic and composite resin" 38 : 39-43, 2010

      6 Al-Dohan HM, "Shear strength of core-veneer interface in bi-layered ceramics" 91 : 349-355, 2004

      7 최부경, "Shear bond strength of veneering porcelain to zirconia and metal cores" 대한치과보철학회 1 (1): 129-135, 2009

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      9 Craig RG JP, "Restorative dental materials" Mosby 85-, 2002

      10 Blatz MB, "Resin-ceramic bonding: a review of the literature" 89 : 268-274, 2003

      1 Piconi C, "Zirconia as a ceramic biomaterial" 20 : 1-25, 1999

      2 Edelhoff D, "To what extent does the longevity of fixed dental prostheses depend on the function of the cement? Working Group 4 materials: cementation" 18 : 193-204, 2007

      3 Barghi N, "To silanate or not to silanate: making a clinical decision" 21 : 659-662, 2000

      4 Blatz MB, "The effect of silica coating on the resin bond to the intaglio surface of Procera AllCeram restorations" 34 : 542-547, 2003

      5 Fabianelli A, "The effect of different surface treatments on bond strength between leucite reinforced feldspathic ceramic and composite resin" 38 : 39-43, 2010

      6 Al-Dohan HM, "Shear strength of core-veneer interface in bi-layered ceramics" 91 : 349-355, 2004

      7 최부경, "Shear bond strength of veneering porcelain to zirconia and metal cores" 대한치과보철학회 1 (1): 129-135, 2009

      8 al Edris A, "SEM evaluation of etch patterns by three etchants on three porcelains" 64 : 734-739, 1990

      9 Craig RG JP, "Restorative dental materials" Mosby 85-, 2002

      10 Blatz MB, "Resin-ceramic bonding: a review of the literature" 89 : 268-274, 2003

      11 Seghi RR, "Relative fracture toughness and hardness of new dental ceramics" 74 : 145-150, 1995

      12 Seghi RR, "Relative flexural strength of six new ceramic materials" 8 : 239-246, 1995

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      15 Shimada Y, "Micro-shear bond strength of dual-cured resin cement to glass ceramics" 18 : 380-388, 2002

      16 Mackert JR Jr, "Leucite crystallization during processing of a heat-pressed dental ceramic" 9 : 261-265, 1996

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      21 Moharamzadeh K, "Fracture toughness of a ceramic-resin interface" 24 : 172-177, 2008

      22 Yoshida K, "Effects of two silane coupling agents, a bonding agent, and thermal cycling on the bond strength of a CAD/CAM composite material cemented with two resin luting agents" 85 : 184-189, 2001

      23 Roulet JF, "Effects of treatment and storage conditions on ceramic/composite bond strength" 74 : 381-387, 1995

      24 Lu YC, "Effects of surface treatments on bond strength of glass-infiltrated ceramic" 28 : 805-813, 2001

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      29 Ozcan M, "Effect of surface conditioning methods on the bond strength of luting cement to ceramics" 19 : 725-731, 2003

      30 Corazza PH, "Effect of post-silanization heat treatments of silanized feldspathic ceramic on adhesion to resin cement" 15 : 473-479, 2013

      31 Kon M, "Effect of leucite crystals on the strength of glassy porcelain" 13 : 138-147, 1994

      32 Filho AM, "Effect of different ceramic surface treatments on resin microtensile bond strength" 13 : 28-35, 2004

      33 Denry IL, "Effect of cubic leucite stabilization on the flexural strength of feldspathic dental porcelain" 75 : 1928-1935, 1996

      34 Rosenstiel SF, "Dental luting agents: A review of the current literature" 80 : 280-301, 1998

      35 Chen JR, "Carbon dioxide laser application enhances the effect of silane primer on the shear bond strength between porcelain and composite resin" 29 : 731-737, 2010

      36 Cotes C, "Can heat treatment procedures of pre-hydrolyzed silane replace hydrofluoric acid in the adhesion of resin ceramic?" 15 : 569-574, 2013

      37 Chung KH, "Bonding strengths of porcelain repair systems with various surface treatments" 78 : 267-274, 1997

      38 Hooshmand T, "Bond durability of the resin-bonded and silane treated ceramic surface" 18 : 179-188, 2002

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      40 Krämer N, "Adhesive luting of indirect restorations" 13 : 60D-76D, 2000

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2009-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2009-01-01 평가 학술지 분리 (기타) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.91 0.23 0.75
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.67 0.59 0.57 0.04
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