• 제목/요약/키워드: Ceramic press-on metal technique

검색결과 17건 처리시간 0.025초

열가압성형도재의 사용이 금속도재관 치경부 변연적합도에 미치는 영향 (The effect of heat and press-on-metal technique on marginal fit of metal-ceramic crown)

  • 김지은;김세연;이청희
    • 대한치과보철학회지
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    • 제52권2호
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    • pp.90-96
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    • 2014
  • 연구 목적: 이 연구의 목적은 열가압성형기법이 금속도재관의 치경부 변연적합도에 미치는 영향을 확인하는 것이다. 연구 재료 및 방법: 실험에 앞서, 4개의 금속 주모형을 형성하였다. 각 모형은 각각chamfer, heavy chamfer, shoulder with bevel, shoulder (collarless)변연을 형성하였다. 각 변연당 10개씩의 금관을 제작하여, 총 40개를 제작하였다. Coping 단계에서, 그리고 금속도재관 완성 단계에서 주모형과 금관 사이의 변연간극은 100배율의 광학현미경 관찰을 통하여 측정되었다. Data분석은 paired t-test along with one-way ANOVA와 Duncan multiple comparison test를 이용하여 이루어졌다. 결과: 변연간극의 평균과 표준편차를 분석한 결과, 금속 코핑과 그 후 완성된 금속도재관, 모든 경우에서 변연부 간격은 임상적 허용범위 안에 있었다. Chamfer 변연 실험군의 경우 Heavy chamfer 변연 실험군에 비하여 금속도재관 완성 후 변연부 간격의 유의한 증가가 있었다. 그리고Shoulder 변연 실험군에서 도재로 처리된 변연이 Chamfer와 Shoulder변연 실험군의 금속변연에 비하여 변연부 간격이 유의하게 작게 나타났다. 결론: 열가압성형기법을 통하여 제작한 금속도재수복물의 변연적합도는 전통적인 방법으로 제작한 금속도재수복물의 변연적합도와 유의한 차이점이 없었다. 제작과정의 효율성으로, 열가압성형기법은 임상에서의 효과적인 사용법으로 고려될 수 있다.

도재용착용 비귀금속과 열가압성형도재의 전단결합강도 연구 (A Study on Shear Bond Strength of Heat Press Ceramic to Non Precious Porcelain Metal)

  • 김성수;김욱태;이명곤
    • 대한치과기공학회지
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    • 제33권1호
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    • pp.37-45
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    • 2011
  • Purpose: Heat pressed ceramics, used for all ceramic restorations, have the additional advantage of being technically less change through using of the lost-wax technique. Conceptually, combining the ceramic with the clinically proven reinforcing ability of a metal framework would be advantageous; however, cause of mismatching of fusion between ceramics and metal frameworks which from differences of casting temperature and coefficient of thermal expansion, pressed ceramics could not be used with a metal framework. The purpose of this study was to compare shear bond strength of press-to metal ceramic to porcelain fused non precious metal and feldspatic porcelain fused non precious metal. Methods: The 30 metal specimens were casted in a porcelain fused non precious metal nickel-chromium alloy. They were divided into 3 groups by surface treatment and applied ceramic: $125{\mu}m$ aluminium oxide sandblasting and veneered feldspatic porcelain (group FP), $125{\mu}m$ aluminium oxide sandblasting and had press-to-metal ceramic applied (group PC), porcelain bonder (gold bonder) fused on surface of metal specimens and had press-to-metal ceramic applied (group PCG). In each group 10 metal specimens were used. The press-to-metal ceramic applied 20 specimens had ash-free wax pattern applied, the metal-wax complexes invested, and were pressed with heat press ceramic. All specimens were subjected to shear bond strength test at a crosshead speed of 1.0 mm/min. Results: The results of measured in Mean SD and data were analyzed by one-way AVOVA (p= .05) and Tukey HSD test (p= .05).: group FP $16.090{\pm}1.841$ MPa, group PC $12.620{\pm}1.8256$ MPa, group PCG $10.920{\pm}0.9283$, significant differences between all groups (p < .05). Significant differences were found in each between group FP and group PC, group FP and group PCG (p < .05). Conclusion: The shear bond strength of press-to-metal ceramic to porcelain fused non precious metal was described higher in unused gold bonder group than used gold bonder groups.

Fabrication of a metal-ceramic crown to fit an existing partial removable dental prosthesis using ceramic pressed to metal technique: a clinical report

  • Seo, Jae-Min;Ahn, Seung-Geun
    • The Journal of Advanced Prosthodontics
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    • 제6권3호
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    • pp.241-244
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    • 2014
  • Fabricating a crown to retrofit an existing abutment tooth for a partial removable dental prosthesis (PRDP) is one of the most time-consuming and labor-intensive clinical procedures. In particular, when the patient is concerned with esthetic aspects of restoration, the task of fabricating becomes more daunting. Many techniques for the fabrication of all-metallic or metal-ceramic crowns have been discussed in the literature. This article was aimed to describe a simple fabrication method in which a retrofitting crown was fabricated for a precise fit using a ceramic-pressed-to-metal system.

The effect of two temperatures on a FG nanobeam induced by a sinusoidal pulse heating

  • Zenkour, Ashraf M.;Abouelregal, Ahmed E.
    • Structural Engineering and Mechanics
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    • 제51권2호
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    • pp.199-214
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    • 2014
  • The present investigation is concerned with the effect of two temperatures on functionally graded (FG) nanobeams subjected to sinusoidal pulse heating sources. Material properties of the nanobeam are assumed to be graded in the thickness direction according to a novel exponential distribution law in terms of the volume fractions of the metal and ceramic constituents. The upper surface of the FG nanobeam is fully ceramic whereas the lower surface is fully metal. The generalized two-temperature nonlocal theory of thermoelasticity in the context of Lord and Shulman's (LS) model is used to solve this problem. The governing equations are solved in the Laplace transformation domain. The inversion of the Laplace transformation is computed numerically using a method based on Fourier series expansion technique. Some comparisons have been shown to estimate the effects of the nonlocal parameter, the temperature discrepancy and the pulse width of the sinusoidal pulse. Additional results across the thickness of the nanobeam are presented graphically.

Thermoelastic interaction in functionally graded nanobeams subjected to time-dependent heat flux

  • Zenkour, Ashraf M.;Abouelregal, Ahmed E.
    • Steel and Composite Structures
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    • 제18권4호
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    • pp.909-924
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    • 2015
  • This paper investigates the vibration phenomenon of a nanobeam subjected to a time-dependent heat flux. Material properties of the nanobeam are assumed to be graded in the thickness direction according to a novel exponential distribution law in terms of the volume fractions of the metal and ceramic constituents. The upper surface of the functionally graded (FG) nanobeam is pure ceramic whereas the lower surface is pure metal. A nonlocal generalized thermoelasticity theory with dual-phase-lag (DPL) model is used to solve this problem. The theories of coupled thermoelasticity, generalized thermoelasticity with one relaxation time, and without energy dissipation can extracted as limited and special cases of the present model. An analytical technique based on Laplace transform is used to calculate the variation of deflection and temperature. The inverse of Laplace transforms are computed numerically using Fourier expansion techniques. The effects of the phase-lags (PLs), nonlocal parameter and the angular frequency of oscillation of the heat flux on the lateral vibration, the temperature, and the axial displacement of the nanobeam are studied.

치과 보철물에 사용되는 지르코니아 코어의 전단결합강도에 관한 연구 (Study about shear bond strength of zirconia core used in dental prosthesis)

  • 심지영;김재홍;김웅철;김혜영;김지환
    • 대한치과기공학회지
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    • 제33권4호
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    • pp.299-306
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    • 2011
  • Purpose: This study aimed to investigate the shear bond strength by manufacturing the veneering porcelain on the IPS e.max $ZirCAD^{(R)}$ 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 $ZirCAD^{(R)}$) and their manufacture recommended two veneering ceramic systems(IPS e.max $ceram^{(R)}$, IPS e. max $ZirPress^{(R)}$). A metal ceramic system(Bellabond $plus^{(R)}$, VITA $VM13^{(R)}$) 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(MPa) was analyzed with the one-way ANOVA and the Tukey's test(${\alpha}$=.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.

Nonlinear vibration of SSMFG cylindrical shells with internal resonances resting on the nonlinear viscoelastic foundation

  • Kamran, Foroutan;Habib, Ahmadi
    • Structural Engineering and Mechanics
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    • 제84권6호
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    • pp.767-782
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    • 2022
  • In this paper, the nonlinear vibration behavior of the spiral stiffened multilayer functionally graded (SSMFG) cylindrical shells exposed to the thermal environment and a uniformly distributed harmonic loading using a semi-analytical method is investigated. The cylindrical shell is surrounded by a nonlinear viscoelastic foundation consisting of a two-parameter Winkler-Pasternak foundation augmented by a Kelvin-Voigt viscoelastic model with a nonlinear cubic stiffness. The distribution of temperature and material constitutive of the stiffeners are continuously changed through the thickness direction. The cylindrical shell has three layers consisting of metal, FGM, and ceramic. The interior layer of the cylindrical shell is rich in metal, while the exterior layer is rich in ceramic, and the FG material is located between two layers. The nonlinear vibration problem utilizing the smeared stiffeners technique, the von Kármán equations, and the Galerkin method has been solved. The multiple scales method is utilized to examine the nonlinear vibration behavior of SSMFG cylindrical shells. The considered resonant case is 1:3:9 internal resonance and subharmonic resonance of order 1/3. The influences of different material and geometrical parameters on the vibration behavior of SSMFG cylindrical shells are examined. The results show that the angles of stiffeners, temperature, and elastic foundation parameters have a strong effect on the vibration behaviors of the SSMFG cylindrical shells.

Simultaneous resonances of SSMFG cylindrical shells resting on viscoelastic foundations

  • Foroutan, Kamran;Ahmadi, Habib
    • Steel and Composite Structures
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    • 제37권1호
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    • pp.51-73
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    • 2020
  • The present paper investigates the simultaneous resonance behavior of spiral stiffened multilayer functionally graded (SSMFG) cylindrical shells with internal and external functionally graded stiffeners under the two-term large amplitude excitations. The structure is embedded within a generalized nonlinear viscoelastic foundation which is composed of a two-parameter Winkler-Pasternak foundation augmented by a Kelvin-Voigt viscoelastic model with a nonlinear cubic stiffness. The cylindrical shell has three layers consist of ceramic, FGM, and metal. The exterior layer of the cylindrical shell is rich ceramic while the interior layer is rich metal and the functionally graded material layer is located between these layers. With regard to classical shells theory, von-Kármán equation, and Hook law, the relations of stress-strain are derived for shell and stiffeners. The spiral stiffeners of the cylindrical shell are modeled according to the smeared stiffener technique. According to the Galerkin method, the discretized motion equation is obtained. The simultaneous resonance is obtained using the multiple scales method. Finally, the influences of different material and geometrical parameters on the system resonances are investigated comprehensively.

Stochastic dynamic instability response of piezoelectric functionally graded beams supported by elastic foundation

  • Shegokara, Niranjan L.;Lal, Achchhe
    • Advances in aircraft and spacecraft science
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    • 제3권4호
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    • pp.471-502
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    • 2016
  • This paper presents the dynamic instability analysis of un-damped elastically supported piezoelectric functionally graded (FG) beams subjected to in-plane static and dynamic periodic thermomechanical loadings with uncertain system properties. The elastic foundation model is assumed as one parameter Pasternak foundation with Winkler cubic nonlinearity. The piezoelectric FG beam is subjected to non-uniform temperature distribution with temperature dependent material properties. The Young's modulus and Poison's ratio of ceramic, metal and piezoelectric, density of respective ceramic and metal, volume fraction exponent and foundation parameters are taken as uncertain system properties. The basic nonlinear formulation of the beam is based on higher order shear deformation theory (HSDT) with von-Karman strain kinematics. The governing deterministic static and dynamic random instability equation and regions is solved by Bolotin's approach with Newmark's time integration method combined with first order perturbation technique (FOPT). Typical numerical results in terms of the mean and standard deviation of dynamic instability analysis are presented to examine the effect of slenderness ratios, volume fraction exponents, foundation parameters, amplitude ratios, temperature increments and position of piezoelectric layers by changing the random system properties. The correctness of the present stochastic model is examined by comparing the results with direct Monte Caro simulation (MCS).

착색지르코니아 코어와 전장 도재 사이의 전단결합강도에 관한 연구 (A study on the shear bond strengths of veneering ceramics to the colored zirconia core)

  • 강선녀;조욱;전영찬;정창모;윤미정
    • 대한치과보철학회지
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    • 제47권3호
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    • pp.312-319
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    • 2009
  • 연구목적: 지르코니아-도재 수복물에 있어 상부도재와 코어 사이의 결합 실패가 종종 보고되어 왔으며 특히 착색지르코니아 코어는 기존의 백색 지르코니아보다 상부 도재와의 결합력이 약하다고 보고된 바 있다. 이 연구의 목적은 착색 지르코니아 코어 위의 상부도재를 적층식과 열가압식으로 제작하여 그 전단결합강도를 알아보고, 이를 전통적인 금속-도재간 결합강도와 비교하여 그 임상적 안정성을 평가하는 것이다. 연구 재료 및 방법: 금속도재군 (MC)을 대조군으로 하였다. 전통적인 금속도재군 (MC)과 지르코니아 코어를 사용한 두가지 군 (ZB, ZP)에 대하여 각 시스템별로 10개씩, 총 30개의 시편을 제작했다. CAD/CAM을 이용해 직경 12 mm, 높이 2.8 mm의 원판형 지르코니아 코어 (Katana zirconia)를 제작하고, 그 상부에 직경 2.8 mm, 높이 3 mm의 도재를 축성했다. ZB군은 CZR을 이용하여 적층법으로 상부도재를 제작했으며 ZP군은 NobelRondo Press ingot를 열가압하여 제작했다. Shear bond test machine (R&B Inc. Daejeon, Korea)을 이용하여 분당 0.50 mm의 속도로 파절이 일어날 때까지 전단력을 가하여 최대적용력 (N)을 측정하여 전단결합강도를 계산하고, 일원배치 분산분석을 사용하여 유의수준 5%에서 검정하였다. 파절양상을 알아보기 위하여 전자주사현미경을 통해 파절단면을 관찰했다. 결과: 평균 전단강도 (SD)는 MC 대조군 29.14 (2.26); ZB 29.48 (2.30); ZP 29.51 (2.32) 이었다. 실험군과 대조군 사이에 유의한 차이는 없었다. 모든 실험군에서 접착성 실패와 응집성 실패가 혼재된 양상을 보였으며, 응집성 실패가 우세했다. 결론: 1. 착색지르코니아 코어와 상부도재들 간의 전단결합강도는 금속 도재간 전단결합강도와 유의한 차이가 없었다. 2. 착색지르코니아 코어의 상부도재를 제작하는 방식에 있어 적층법과 열가압법 간의 전단결합강도에 유의한 차이는 없었다 (P > .05). 3. 파절양상은 응집성 파절이 우세한 가운데 접착성 파절과 응집성 파절이 혼재되어 나타났다.