• 제목/요약/키워드: bonded system

검색결과 467건 처리시간 0.03초

도재에 대한 교정용 브라켓 접착 레진의 전단접착강도에 관한 연구 (SHEAR BOND STRENGTH OF ORTHODONTIC BONDING RESINS TO PORCELAIN; AN IN VITRO STUDY)

  • 고진환;이기수
    • 대한치과교정학회지
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    • 제22권1호
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    • pp.43-65
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    • 1992
  • Bonding orthodontic adhesive resins to glazed porcelain surface is not attainable. The aim of this investigation was to examine, in vitro, the effect of three methods of porcelain surface pretreatment on the shear bond strength of orthodontic adhesives, and to compare the shear strength of orthodontic bracket bonding to porcelain surface by the best results that to human enamel. Porcelain disks ($Ceramco^{(TM)}$ and $Vita^{(TM)}$) baked in the laboratory were roughened by sandpapers, #320, #600, #800, #1000 and #1200, and were pretreated with silane and dried at the various temperatures, room temperature, $50^{\circ}C$, $70^{\circ}C$ and $90^{\circ}C$, and were etched by 3% hydrofluoric acid solution for 1, 3, 5, 7, and 9 minutes, orthodontic adhesives (System $1+^{(TM)}$ and $Unite^{(TM)}$) were applied on them, and shear bond strengths were measured by Instron. The best results of pretreatment of each method were determined by the shear bond strengths. Again, porcelain disks were pretreated by the determined best results and human enamel were etched by 37% hydrofluoric acid solution, orthodontic brackets were bonded on them by the orthodontic adhesives, and the shear bond strengths were measured and compared between them. 1. Roughening porcelain surfaces with coarse sandpaper (#300) showed higher shear bond strength than that with finer sandpapers, but it $(22.44Kgf/cm^2)$ was distinguishably low compared to that from etched human enamel $(144.11Kgf/cm^2)$. 2. There were disparities in shear bond strengths upon the orthodontic resins, which was presumably related to the contents of fillers in orthodontic adhesive resins. Also there were disparities in shear bond strength upon the porcelains which had different composition. 3. Silane enhanced the shear bond strength of orthodontic resins to porcelain surfaces ($25.20Kgf/cm^2$ at $50^{\circ}C$), which was markedly low compared to that from etched human enamel. 4. Etched porcelain surface with 3% hydrofluoric acid solution for 1 to 9 minutes showed no difference in shear bonding strength of orthodontic adhesive resins. Shear bond strength from etched porcelain $(97.43-120.72Kgf/cm^2)$ were as high as clinically available, but low compared to that from etched human enamel. 5. Roughening with #300 sandpaper and etching by 3% hydrofluoric acid followed silane application on porcelain surface showed lower shear bond strength than etched human enamel, but were as high as clinically useful. 6. The results suggest that etching porcelain surface by 3% hydrofluoric acid solution might provide comparatively high shear bond strength as much as clinically favorable.

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불산 처리 시간이 강화형 전부도재관과 레진 시멘트의 전단 결합강도에 미치는 영향 (EFFECT OF ETCHING TIME ON SHEAR BOND STRENGTH OF RESIN CEMENTS TO REINFORCED ALL-CERAMIC CROWNS)

  • 김경일;최근배;안승근;박찬운
    • 대한치과보철학회지
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    • 제42권5호
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    • pp.501-513
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    • 2004
  • Purpose : The purpose of this study was to evaluate the effects of etching time on shear bond strength of four resin cements to IPS Empress 2 ceramic. Material and Methods: Forty rectangular shape ceramic specimens ($10{\times}15{\times}3.5mm$ size) were used for this study. The ceramic specimens divided into four groups and were etched with 10% hydrofluoric acid for 0, 10, 30, 60, 180, 300, 420, 600, and 900 seconds respectively. Etched surfaces of ceramic specimens were coated with ceramic adhesive system and bonded with four resin cement (Variolink II, Panavia F, Panavia 21, Super-Bond C&B) using acrylic glass tube. All cemented specimens were tested under shear loading untill fracture on universal testing machine at a crosshead speed 1mm/min: the maximum load at fracture (kg) was recored. Shear bond strengh data were analyzed with oneway analysis of variance and Tukey HSD tests (p<.05). Etched ceramic surfaces (0-, 60-, 300-, and 600-seconds etching period) and fracture surfaces after shear testing were examined mophologically using scanning electron microscopy. Results : Ceramic surface treatment with 10% hydrofluoric acid improved the bond strength of three resin cement except for Super-Bond C&B cement. Variolink II (41.0$\pm$2.4 MPa) resin cement at 300-seconds etching time showed statistically higher shear bond strength than the other resin cements (Panavia F: 28.3$\pm$2.3 MPa, Panavia 21: 21.5$\pm$2.2 MPa, Super-Bond C&B: 16.7$\pm$1.6 MPa). Ceramic surface etched with 10% hydrofluoric acid for 300 seconds showed more retentive surface texture. Conclusion: Within the limitation of this study, Variolink II resin cement are suitable for cementation of Empress 2 all-ceramic restorations and etching with 10% hydrofluoric acid for 180 to 300 seconds is required to enhance the bond strength.

풍촌층 상부 층준의 고품위 석회석 동정을 위한 SWIR 적용 (SWIR Application for the Identification of High-Grade Limestones from the Upper Pungchon Formation)

  • 김용휘;김규보;최선규;김창성
    • 자원환경지질
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    • 제49권5호
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    • pp.335-347
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    • 2016
  • 정선 지역 고품위 석회석 광산인 강원, 충무 및 백운 광산을 대상으로 풍촌층 상부 층준의 대표적 탄산염암을 구분하고 각 유형의 전암 분석 및 VNIR-SWIR(visible near infrared-short wavelength infrared) 분광분석을 실시하여, 현장에서 고품위 석회석의 CaO 함량, 이질 불순물 및 백색도를 평가할 수 있는 분석법을 제시하였다. 동일 시료에서 분말 시료의 분광 반사도는 절단 시편에 비하여 매우 높은 분광 반사도를 보였고, 탄산염암의 분말 시료는 백색도와 분광 반사도가 0.99의 매우 높은 상관관계를 보이고 있다. 전암 분석에서 확인된 충무광산의 방해석과 백운석 분말 시료를 75:25, 50:50, 25:75 질량비로 혼합하여 각각 스펙트럼의 변화를 확인하고, 탄산염암의 CaO 함량과 흡수파장을 비교한 결과 0.98~0.99로 매우 높은 상관도를 보이고 있다. 탄산염암의 흡수파장과 화학조성은 2340 nm(55.86 wt.%)에서 2320 nm(29.71 wt.%)로 이는 $CO{_3}^{-2}$ 성분과 결합하고 있는 Ca 함량과 이를 치환하는 Mg 성분 함량의 차이에 따라 흡수 위치가 변화되는 것을 의미하며, 현장에서 분광분석을 통한 탄산염광물의 CaO 함량을 정량적으로 적용할 수 있다.

체세포배발생을 통한 오일팜나무(Elaeis guineensis Jacq.) 클론의 기내증식 및 RAPD를 이용한 체세포변이의 검정 (In vitro propagation of oil palm (Elaeis guineensis Jacq.) clones through somatic embryogenesis and analysis of somaclonal variation by RAPD)

  • 안인숙;박혜림;손성호
    • Journal of Plant Biotechnology
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    • 제39권3호
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    • pp.196-204
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    • 2012
  • 본 실험은 오일팜나무에서 somatic embryo mass(SEM)를 유도한 후 이로부터 식물체 분화를 통한 클론묘 대량증식 시스템을 확립하고, 기내 배양에 의하여 야기된 체세포변이의 확인 방법을 확립하기 위하여 수행되었다. 오일팜 조직배양묘의 정단 부분을 $NaH_2PO_4{\cdot}2H_2O$와 카제인이 첨가된 1/2MS 수정 배지에 배양하여 체세포배성 캘러스를 유도하였다. 유도된 체세포배성 캘러스는 몇 번의 계대배양을 통하여 SEM으로 발달하였다. SEM 조직은 단단하며, 강하게 붙어있어서 개개의 체세포배를 따로 분리하는 것이 매우 어려웠다. SEM 조직을 $NH_4NO_3$, 카제인, L-ascorbic acid가 첨가된 MS 수정 배지에 배양하였을 때 신초가 성공적으로 분화하였다. 기내 오일팜나무를 야외로 순화하여 완전한 오일팜나무 클론묘를 획득할 수 있었다. 기내 배양묘 중 건강하고 생장이 양호한 신초를 무작위로 95 개체를 선발하여 RAPD 분석을 실시하였다. 총 19개의 random primer를 사용하여 95 개체에 대한 RAPD를 수행한 결과, 대부분의 primer에서는 동일한 밴드 형태를 보여 어떠한 변이도 감지할 수 없었다. 그러나, MspI으로 절단된 genomic DNA를 BNR36 primer로 PCR을 수행하였을 때, 개체 간 차이를 보이는 밴드 형태를 나타내어 체세포변이를 감지할 수 있었다. 95 개체 중 #22, #28, #35, #77 의 4 개체에서 약 1kb 부근의 밴드 하나가 없었으며, 그 중 #28, #35, #77의 밴드 강도는 정상 밴드보다 월등히 강한 것을 확인하였다. NCBI 분석 결과, 이 변이 밴드는 오일팜나무의 엽록체 게놈과 관련이 있는 것으로 확인되었다. 본 연구 결과로부터 오일팜나무의 클론묘 대량증식 시스템을 확립할 수 있었고, RAPD 분석을 통하여 기내 상태에 있는 조직배양묘의 체세포 변이 여부를 판별할 수 있는 방법 확립할 수 있었다.

Microabrasive로 처리한 상아질표면에 대한 복합레진의 결합강도에 관한 연구 (A STUDY OF THE BOND STRENGTHS OF COMPOSITE RESIN TO DENTIN SURFACES PREPARED WITH MICROABRASIVE)

  • 최경규;민병순
    • Restorative Dentistry and Endodontics
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    • 제22권1호
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    • pp.61-75
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    • 1997
  • The bond strengths of composite resin to tooth dentin vary with the methods of cavity preparation and surface treatment. Recent developments in techniques of dentinal surface treatment have renewed interest in microabrasive as a means of tooth preparation, The purpose of this study was to determine the effects of a new method of cavity preparation on the bond of composite resin to dentin. Freshly extracted 144 healthy human third molars were used in this study. The dentin surfaces prepared with #600 SiC abrasive paper were divided into control and air abrasion groups according to the method of dentin surface preparation using different combinations of delivery pressure, time, and acid etching. The shear bond strengths were measured after the composite resin (Clearfil Photo Bright) was bonded to prepared dentin surfaces by light-curing using a dentin bonding system (All-bond 2), In addition, the average surface roughness was measured to investigate the effect of differently prepared dentin surfaces on the shear bond strengths. The surface changes of prepared dentin and the debonded dentin surfaces were observed with SEM (S-2300, Hitachi Co., Japan). The following results from this-study were obtained ; 1. There was no significant difference of shear bond strengths according to the changes of delivery pressure and time. 2. The shear bond strengths were lower than the control in the air abraded-only groups, but those of the additional acid-etched groups were higher than the control. 3. The shear bond strengths to all air-abraded surfaces were increased by acid etching. 4. The correlation between shear bond strengths and surface roughness was not certain, although the mean surface roughness of all air-abraded surfaces has increased evidently while it has slightly decreased for additional acid etching. 5. On SEM examination, the dentinal tubules were almost occluded in the air abraded-only groups, but those were opened in the additional acid-etched groups. 6. The debonded surfaces were showed adhesive failure mode in the air abraded- only groups, while those were showed mainly the mixed and cohesive failure mode in the additional acid-etched groups. These results suggest that the layer produced during cavity preparation or surface treatment with air abrasion must be removed for maximum bond strength of composite resin to dentin.

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Porcelain Laminate veneer 절연 피복시 설측 연장 길이에 따른 파절강도의 연구 (THE STUDY OF FRACTURE STRENGTH OF PORCELAIN LAMINATE VENEER WITH VARIOUS LINGUAL EXTENTION LENGTH WHEN LNCISAL RESTORING)

  • 박종한;조광헌
    • 대한치과보철학회지
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    • 제34권4호
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    • pp.746-754
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    • 1996
  • 개교증, 절연부 파절, 변색등 심미적 요인으로 라미네이트를 설측연장시 연장길이에 따른 파절강도를 알아보기위해 발거된 60개의 상악 전치의 순면에 3개의 seating form을 형성하고sheet wax를 사용하여 가로 5mm $^*$세로 5mm $^*$두께 0.9mm의 block을 형성하고, 각 군에 따라 I군 : 0.5mm, II군 : 1mm, III군 : 2mm, IV군 : 0mm로 설측 연장 길이를 달리하여 block을 형성 이를 인상채득하여 내화모형을 제작하였다. 여기에 라미네이트용 도재를 2회에 걸쳐 축성 통법대로 소성 제작하였다. block에 맞추어 contouring하고, 내화매몰재를 제거 sandblast처리를 시행하였다. 그후 레진시멘트로 합착하였다. 절치간 각도를 127도로 특별히 제작된 holding device를 이용하여 인스트론 만능시험기에 시편을 거상하고, 분당 0.5mm cross head speed로 파절강도를 측정하여 다음과 같은 결과를 얻었다. 1. 각 군의 평균파절강도는 대조군인 설면으로 연장치 않은 IV군에서 86.95Mpa, 0.5mm 연장한 I군에서 44.98Mpa, 1.0mm연장한 II군에서 27.47Mpa, 2.0mm연장한 III군에서 19.61Mpa의 순으로 나타났다. 2. 모든 실험군 사이에는 통계적으로 유의성 있는 차이를 나타냈고(p<0.01), 이러한 실험 결과로 미루어 보아 라미네이트 디자인시, 설면으로 연장치 않거나, 절연부의 피개가 불가피한 경우에는 설면으로 0.5mm 연장하는 것이 파절 강도면에서 유리하다고 사료된다.

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AgAl 전극 고온 소성 조건 가변에 따른 N-형 결정질 실리콘 태양전지의 접촉 특성 분석 (Analysis of Contact Properties by Varying the Firing Condition of AgAl Electrode for n-type Crystalline Silicon Solar Cell)

  • 오동현;정성윤;전민한;강지윤;심경배;박철민;김현후;이준신
    • 한국전기전자재료학회논문지
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    • 제29권8호
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    • pp.461-465
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    • 2016
  • n-type silicon shows the better tolerance towards metal impurities with a higher minority carrier lifetime compared to p-type silicon substrate. Due to better lifetime stability as compared to p-type during illumination made the photovoltaic community to switch toward n-type wafers for high efficiency silicon solar cells. We fabricated the front electrode of the n-type solar cell with AgAl paste. The electrodes characteristics of the AgAl paste depend on the contact junction depth that is closely related to the firing temperature. Metal contact depth with p+ emitter, with optimized depth is important as it influence the resistance. In this study, we optimize the firing condition for the effective formation of the metal depth by varying the firing condition. The firing was carried out at temperatures below $670^{\circ}C$ with low contact depth and high contact resistance. It was noted that the contact resistance was reduced with the increase of firing temperature. The contact resistance of $5.99m{\Omega}cm^2$ was shown for the optimum firing temperature of $865^{\circ}C$. Over $900^{\circ}C$, contact junction is bonded to the Si through the emitter, resulting the contact resistance to shunt. we obtained photovoltaic parameter such as fill factor of 76.68%, short-circuit current of $40.2mA/cm^2$, open-circuit voltage of 620 mV and convert efficiency of 19.11%.

Adhesion of Model Molecules to Metallic Surfaces, the Implications for Corrosion Protection

  • de Wit, J.H.W.;van den Brand, J.;de Wit, F.M.;Mol, J.M.C.
    • Corrosion Science and Technology
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    • 제7권1호
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    • pp.50-60
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    • 2008
  • The majority of the described experimental results deal with relatively pure aluminium. Variations were made in the pretreatment of the aluminum substrates and an investigation was performed on the resulting changes in oxide layer composition and chemistry. Subsequently, the bonding behavior of the surfaces was investigated by using model adhesion molecules. These molecules were chosen to represent the bonding functionality of an organic polymer. They were applied onto the pretreated surfaces as a monolayer and the bonding behavior was studied using infrared reflection absorption spectroscopy. A direct and clear relation was found between the hydroxyl fraction on the oxide surfaces and the amount of molecules that subsequently bonded to the surface. Moreover, it was found that most bonds between the oxide surface and organic functional groups are not stable in the presence of water. The best performance was obtained using molecules, which are capable of chemisorption with the oxide surface. Finally, it was found that freshly prepared relatively pure aluminum substrates, which are left in air, rapidly lose their bonding capacity towards organic functional groups. This can be attributed to the adsorption of contamination and water to the oxide surface. In addition the adhesion of a typical epoxy-coated aluminum system was investigated during exposure to water at different temperatures. The coating was found to quite rapidly lose its adhesion upon exposure to water. This rapid loss of adhesion corresponds well with the data where it was demonstrated that the studied epoxy coating only bonds through physisorptive hydrogen bonding, these bonds not being stable in the presence of water. After the initial loss the adhesion of the coating was however found to recover again and even exceeded the adhesion prior to exposure. The improvement could be ascribed to the growth of a thin oxyhydroxide layer on the aluminum substrate, which forms a new, water-stable and stronger bond with the epoxy coating. Two routes for improvement of adhesion are finally decribed including an interphasial polymeric thin layer and a treatment in boiling water of the substrate before coating takes place. The adhesion properties were finely also studied as a function of the Mg content of the alloys. It was shown that an enrichment of Mg in the oxide could take place when Mg containing alloys are heat-treated. It is expected that for these alloys the (hydr)oxide fraction also depends on the pre-treatment and on the distribution of magnesium as compared to the aluminium hydroxides, with a direct impact on adhesive properties.

$75{\mu}m$ Cu via가 형성된 3D 스택 패키지용 interconnection 공정 및 접합부의 전기적 특성 (Interconnection Process and Electrical Properties of the Interconnection Joints for 3D Stack Package with $75{\mu}m$ Cu Via)

  • 이광용;오택수;원혜진;이재호;오태성
    • 마이크로전자및패키징학회지
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    • 제12권2호
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    • pp.111-119
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    • 2005
  • 직경 $75{\mu}m$ 높이 $90{\mu}m$$150{\mu}m$ 피치의 Cu via를 통한 삼차원 배선구조를 갖는 스택 시편을 deep RIE를 이용한 via hole 형성공정 , 펄스-역펄스 전기도금법에 의한 Cu via filling 공정, CMP를 이용한 Si thinning 공정, photholithography, 금속박막 스퍼터링, 전기도금법에 의한 Cu/Sn 범프 형성공정 및 플립칩 공정을 이용하여 제작하였다. Cu via를 갖는 daisy chain 시편에서 측정한 접속범프 개수에 따른 daisy chain의 저항 그래프의 기울기로부터 Cu/Sn 범프 접속저항과 Cu via 저항을 구하는 것이 가능하였다. $270^{\circ}C$에서 2분간 유지하여 플립칩 본딩시 $100{\times}100{\mu}m$크기의 Cu/Sn 범프 접속저항은 6.7 m$\Omega$이었으며, 직경 $75 {\mu}m$, 높이 $90{\mu}m$인 Cu via의 저항은 2.3m$\Omega$이었다.

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EFFECT OF SURFACE TREATMENT METHODS ON THE SHEAR BOND STRENGTH OF RESIN CEMENT TO ZIRCONIA CERAMIC

  • Lee, Ho-Jeong;Ryu, Jae-Jun;Shin, Sang-Wan;Sub, Kyu-Won
    • 대한치과보철학회지
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    • 제45권6호
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    • pp.743-752
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    • 2007
  • Statement of problem. The aims of the study were to evaluate the effect of current surface conditioning methods on the bond strength of a resin composite luting cement bonded to ceramic surfaces and to identify the optimum cement type. Material and methods. The sixty zirconia ceramic specimens(10 per group) with EVEREST milling machine and 60 tooth block were made. The zirconia ceramic surface was divided into two groups according to surface treatment: (1) airborne abrasion with $110{\mu}m$ aluminum oxide particles; (2) Rocatec system, tribochemical silica coating. The zirconia ceramic specimens were cemented to tooth block using resin cements. The tested resin cements were Rely X ARC, Panavia F and Superbond C&B. Each specimen was mount in a jig of the universal testing machine for shear strength. The results were subjected to 2-way ANOVA and Post hoc tests was performed using Tukey, Scheffe, and Bonferroni test. Results. The mean value of shear bond strength(MPa) were as follows: $$RelyXARC(+Al_2O_3),5.35{\pm}1.69$$; $$RelyXARC(+Rocatec),8.50{\pm}2.13$$; $$PanaviaF(+Al_2O_3),9.58{\pm}1.13$$; $$PanaviaF(+Rocatec),12.98{\pm}1.71$$; $$SuperbondC&B(+Al_2O_3)8.27{\pm}2.04$$; $$SuperbondC&B(+Rocatec),14.46{\pm}2.39$$. There was a significant increase in the shear bond strength when the ceramic surface was subjected to the tribochemical treatment(Rocatec 3M) in all cement groups(P<0.05). Bonding strengths of cements applied to samples treated with $Al_2O_3$ were compared; Rely X ARC showed the lowest values, whereas Panavia F cement showed higher value than that of Superbond C&B group with no statistical significance. When the bond strength of cements with of Rocatec treatment was compared, Rely X ARC showed lowest values. Overall, it was apparent that tribochemical treated Super-Bond possessed higher mean bond strength (14.46MPa; P<0.05) than that of Panavia F cement group with no significance. Conclusions. Silica coating followed silanization(Rocatec treatment) increase the bond strength between resin cement and zirconia ceramic. Panavia F containing phosphate monomer and Superbond C&B comprised of 4-META tend to bond chemically with zirconia ceramic, thus demonstrating higher bond strength compared to BisGMA resin cement. Superbond C&B has shown to have highest value of bonding strength to zirconia ceramic after Rocatec treatment compared to other cement.