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      도재용착용 Ni-Cr계 합금의 이트륨 첨가물이 도재전단결합강도에 미치는 영향

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      https://www.riss.kr/link?id=A106286704

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      다국어 초록 (Multilingual Abstract)

      Purpose: In this study, to evaluate the effect of oxide changes on the shear bond strength according to the composition of Ni-Cr alloys for porcelain fused matal crown, T-4 alloys, Zeroy alloys and Zeroy-X alloys were selected. Methods: 20 specimens were fabricated using selected Ni-Cr alloys and porcelain powders. A Ni-Cr alloy having a diameter of 5 ㎜ and a height of 25 ㎜ was produced and the metal surface was polished. Porcelain powder was fired on the polished metal surface to a diameter of 5 mm and a height of 3 mm. The experiment group consisted of three groups, T-4(TNA), Zeroy(ZNA) and Zeroy-X(ZXA). The fabricated specimens were mounted on a jig of a universal testing machine(UTM) and fracture strength was measured by applying a shear force at a UTM crosshead speed of 0.5 ㎜/min. The fracture strength was calculated as the bond strength between the porcelain and the alloy. The surface of the fractured alloy was analyzed by X-ray diffraction(XRD) and scanning electron microscopy(SEM), and the components of the oxide were measured by energy dispersive X-ray spectroscopy(EDX) line profile method. Results: In SEM, XRD and EDX analysis, yttrium tended to increase the mechanical and chemical bonding forces. The shear bond strength of ZXA group containing yttrium showed the highest value at 27.53 MPa. Conclusion: Based on the results of this study, it is considered that the yttrium-added Ni-Cr alloy is clinically acceptable in porcelain shear bond strength.
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      Purpose: In this study, to evaluate the effect of oxide changes on the shear bond strength according to the composition of Ni-Cr alloys for porcelain fused matal crown, T-4 alloys, Zeroy alloys and Zeroy-X alloys were selected. Methods: 20 specimens w...

      Purpose: In this study, to evaluate the effect of oxide changes on the shear bond strength according to the composition of Ni-Cr alloys for porcelain fused matal crown, T-4 alloys, Zeroy alloys and Zeroy-X alloys were selected. Methods: 20 specimens were fabricated using selected Ni-Cr alloys and porcelain powders. A Ni-Cr alloy having a diameter of 5 ㎜ and a height of 25 ㎜ was produced and the metal surface was polished. Porcelain powder was fired on the polished metal surface to a diameter of 5 mm and a height of 3 mm. The experiment group consisted of three groups, T-4(TNA), Zeroy(ZNA) and Zeroy-X(ZXA). The fabricated specimens were mounted on a jig of a universal testing machine(UTM) and fracture strength was measured by applying a shear force at a UTM crosshead speed of 0.5 ㎜/min. The fracture strength was calculated as the bond strength between the porcelain and the alloy. The surface of the fractured alloy was analyzed by X-ray diffraction(XRD) and scanning electron microscopy(SEM), and the components of the oxide were measured by energy dispersive X-ray spectroscopy(EDX) line profile method. Results: In SEM, XRD and EDX analysis, yttrium tended to increase the mechanical and chemical bonding forces. The shear bond strength of ZXA group containing yttrium showed the highest value at 27.53 MPa. Conclusion: Based on the results of this study, it is considered that the yttrium-added Ni-Cr alloy is clinically acceptable in porcelain shear bond strength.

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      목차 (Table of Contents)

      • [Abstract]
      • I. 서론
      • II. 연구 방법
      • 1. 연구재료
      • 2. 연구방법
      • [Abstract]
      • I. 서론
      • II. 연구 방법
      • 1. 연구재료
      • 2. 연구방법
      • Ⅲ. 결과
      • 1. X-선 회절 (XRD) 분석
      • 2. SEM/EDS 분석
      • 3. 전단결합강도 분석
      • Ⅳ. 고찰
      • Ⅴ. 결론
      • REFERENCES
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      참고문헌 (Reference)

      1 McLean JW, "The science and art of dental ceramics" Quintessence publishing Co. Inc 55-95, 1979

      2 McLean JW, "The science and art of dental ceramics" Quintessence publishing Co. Inc 189-192, 1980

      3 Baran GR, "The metallurgy of Ni-Cr alloys for fixed prosthodontics" 50 : 639-, 1983

      4 Resmussen ST, "The effect of using recast metal on the bond between porcelain and gold-palladium alloy" 55 : 447-452, 1986

      5 Wu Y, "The effect of oxidetion heat treatment of porcelain bond strength in selected base metal alloys" 66 : 439-444, 1991

      6 Kim CY, "The effect of Nb on interfacial characteristics of Ni-Cr alloy for porcelain fused to metal crown" Graduate school, Inje University 2004

      7 Kuschner M, "The carcinogenicity of beryllium" 40 : 101-, 1981

      8 Matkovic T, "Structure and properties of biomedical Co-Cr-Ti alloys" 407 : 294-298, 2005

      9 De Melo RM, "Shear bond strengths of a ceramic system to alternative metal alloys" 93 : 64-69, 2005

      10 Santos JG, "Shear bond strength of metal-ceramic repair systems" 96 : 165-173, 2006

      1 McLean JW, "The science and art of dental ceramics" Quintessence publishing Co. Inc 55-95, 1979

      2 McLean JW, "The science and art of dental ceramics" Quintessence publishing Co. Inc 189-192, 1980

      3 Baran GR, "The metallurgy of Ni-Cr alloys for fixed prosthodontics" 50 : 639-, 1983

      4 Resmussen ST, "The effect of using recast metal on the bond between porcelain and gold-palladium alloy" 55 : 447-452, 1986

      5 Wu Y, "The effect of oxidetion heat treatment of porcelain bond strength in selected base metal alloys" 66 : 439-444, 1991

      6 Kim CY, "The effect of Nb on interfacial characteristics of Ni-Cr alloy for porcelain fused to metal crown" Graduate school, Inje University 2004

      7 Kuschner M, "The carcinogenicity of beryllium" 40 : 101-, 1981

      8 Matkovic T, "Structure and properties of biomedical Co-Cr-Ti alloys" 407 : 294-298, 2005

      9 De Melo RM, "Shear bond strengths of a ceramic system to alternative metal alloys" 93 : 64-69, 2005

      10 Santos JG, "Shear bond strength of metal-ceramic repair systems" 96 : 165-173, 2006

      11 Craig RG, "Restorative dental materials" Mosby-Year Book Inc 409-412, 1997

      12 Papazoglou E, "Porcelain adherence to high-palladium alloys" 70 : 386-394, 1993

      13 Anusavice KJ, "Phillips' science of dental materials" Philadelphia Saunders 562-563, 2003

      14 Yamamoto M, "Metal-ceramics: principle and methods of Makoto Yamamoto" Quintessence publishing Co. Inc 1985

      15 Pisani-Proenca J, "Influence of ceramic surface conditioning and resin cements on microtensile bond strength to a glass ceramic" 94 : 412-417, 2006

      16 White SN, "Flexural strength of a layered zirconia and porcelain dental all-ceramic system" 94 : 125-131, 2005

      17 Deger S, "Effects of tin plating on base metal alloy-ceramic bond strength" 11 (11): 165-172, 1998

      18 Papazoglou E, "Effects of dental laboratory processing variables and in vitro testing medium on the porcelain adherence of high-palladium casting alloys" 79 : 514-519, 1998

      19 Azer SS, "Effect of esthetic core shades on the final color of IPS Empress allceramic crowns" 96 : 397-401, 2006

      20 McLean JW, "Dental ceramics proceedings of the first international symposium on ceramics" Quintessence publishing Co. Inc 467-, 1983

      21 Rosenstiel SF, "Contemporary fixed prosthodontics" Mosby 488-512, 2001

      22 Haberman AL, "Contact dermatitis from beryllium in dental alloys" 28 (28): 157-162, 1993

      23 Dündar M, "Comparison of two bond strength testing methodologies for bilayered all-ceramics" 23 : 630-636, 2007

      24 O'connor RP, "Castability, opaque masquing and porcelain bonding of 17 porcelains fused to metal alloys" 75 : 367-374, 1996

      25 Choi EK, "Bond strength between dental porcelains and base metal alloys - influence of Be element and repeated firing" Graduate school of Public Health and Welfare, Dankook University 2011

      26 Grimaudo NJ, "Biocompatibility of nickel and cobalt dental alloys" 49 : 498-503, 2001

      27 Tsalve DL, "Atomic absorption spectrometry in occupational and environmental health practice" 96-101, 1983

      28 Lawson JR, "Alternative alloys for resin-bonded retainers" 65 : 97-99, 1991

      29 Sundh A, "A Comparison of fracture strength of yttrium-oxide-partiallystabilized zirconia ceramic crowns with varying core thickness, shapes and veneer ceramics" 31 : 682-688, 2004

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      학술지 이력

      학술지 이력
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      2017-01-01 평가 등재후보학술지 유지 (계속평가) KCI등재후보
      2015-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
      2013-12-01 평가 등재후보 탈락 (등재후보2차)
      2012-01-01 평가 등재후보 1차 FAIL (기타) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.13 0.13 0.14
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.19 0.23 0.285 0.03
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