• Title/Summary/Keyword: Ceramic-glass

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SOL-GEL PROCESSING AND MATERIAL SCIENCE

  • Korobova, N.E.;Soh, Deawha;Chu, Sun-Nam
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1998.06a
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    • pp.477-480
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    • 1998
  • Sol-gel processing, which started some decades back as a laboratory curiosity, has proved to be a powerful and versatile technique for the synthesis of materials. The utility of the sol-gel method for producing glass and ceramic materials in the form of powders, fibers, thin films and bulk shapes with high purity, functional microstructures and potentially high chemical homogeneity at relatively low temperature (compared to conventional processing) has been discussed.

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Fabrication and Characteristics of Low Temperature Firing Substrate by Tape Casting in Fluormica System (Tape Casting에 의한 fluormica계 제조 및 특성 저온 소결 기판의 제조 및 특성)

  • 박대현;최정헌;강원호;김병익
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.05a
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    • pp.673-676
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    • 1999
  • We fabricated green sheet by tape casting method with fluormica glass-ceramic powders for fabrication of low temperature co-firing substrate. After ball milling with organic additives, we investigated green strength and density of green sheets which were casted by doctor blade machine. Green sheets were sintered at 700 ~ 1,00$0^{\circ}C$ for 1 ~3hrs. Microstructure, linear shrinkage and dielectric constant of substrates were surveyed.

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고출력 LED용 형광체 재료 개발

  • Kim, Seon-Uk;Hwang, Jong-Hui
    • Ceramist
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    • v.21 no.1
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    • pp.80-97
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    • 2018
  • To realize a high luminous efficacy and a high emission color purity for the white-LEDs, the understanding for luminescence properties of the phosphors is significantly important because the performance of white-LEDs is directly affected by the luminescence properties of the phosphors. In this paper, therefore, we reviewed some commercially available $Eu^{2+}$- and $Ce^{3+}$- activated phosphors and discussed for the luminescence properties of these phosphors.

Mechanical properties of $Si_3N_4$ whisker-reinforced glass ceramic ($Si_3N_4$ 휘스커 보강 그라스 세라믹의 기계적 특성)

  • 한병성;김민기;오재철
    • Electrical & Electronic Materials
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    • v.5 no.2
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    • pp.182-188
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    • 1992
  • 코디에라이트 그라스 세라믹은 다충 IC 기관과 IC 팩키지용 그라스 세라믹의 재료로 크게 각광을 받고 있다. 보강용 휘스커량과 열처리 온도는 시료의 경도와 이성에 직접적인 영향을 미치며 경도와 인성은 휘스커량과 열처리 온도에 따라 증가하였다. 약 15 vol.%의 휘스커를 포함한 시료를 950.deg.C로 열처리 하였을 때에 경도나 인성 같은 기계적 특성이 가장 좋았다.

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Effect of Color Development of Willemite Crystalline Glaze by Adding NiO (Willemite 결정유에 NiO 첨가가 발색에 미치는 영향)

  • Lee, Chi-Youn;Lee, Byung-Ha
    • Journal of the Korean Ceramic Society
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    • v.47 no.6
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    • pp.598-602
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    • 2010
  • When metal oxides are added into crystalline glaze, colors of glaze and crystals are similar as colorants generally. But the case of NiO in zinc crystalline glaze is different from general color development. When NiO is added to zinc crystalline glaze it can develop two or three colors. The active use of color development mechanism by adding NiO to the zinc crystalline glaze to control color of the base glaze and crystal with stability is investigated. This report is expected to contribute to the ceramic industry in improving application of zinc crystalline glaze. For the experiment of NiO, the quantity of NiO additives is changed to the base glaze for the most adequate formation of willemite crystal from previous research and firing condition: temperature increasing speed $5^{\circ}C/min$, holding 1 h at $1270^{\circ}C$, annealing speed $3^{\circ}C/min$ till $1170^{\circ}C$, holding 2 h at $1170^{\circ}C$ then naturally annealed. The samples are characterized by X-ray diffraction (XRD), UV-vis, and Micro-Raman. The result of the procedure as follows; Ni substitutes for Zn ion then glaze develops blue willemite crystals, as if cobalt is used, on brown glaze base. When NiO quantity is increased to over 5 wt%, willemite size is decreased, and the density of the crystal is increased, at the same time $Ni_2SiO_4$ (olivine) phase, the second phase, has been developed. The excessive NiO is reacted with silicate in the glass then developed green $Ni_2SiO_4$ (olivine), and quantity of $Ni_2SiO_4$ (olivine) is increased as quantity of willemite is decreased. It is proved to create three colors, blue, brown and green by controlling the quantity of NiO to the zinc crystalline glaze and it will improve the multiple use of colors to the ceramic design.

Understanding and trends of esthetic treatment in prosthodontics : IPS e.max (심미보철 치료의 경향과 이해 : part 1. IPS e.max)

  • Kang, Jung-In;Heo, Yu-Ri;Lee, Myeong-Seon;Son, Mee-Kyoung
    • Journal of Korean society of Dental Hygiene
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    • v.14 no.4
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    • pp.447-452
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    • 2014
  • With the increase of esthetic demands, most patients want to have restorations which are not only functional but also esthetic. For the esthetic restoration, many ceramic systems have been introduced and applied in dentistry. Among those ceramic restorations, IPS e.max system composed of lithium disilicate glass ceramic is one of the most commonly used systems because it has strength and esthetic characteristics. IPS e.max system is divided into IPS e.max Press and IPS e.max CAD according to the manufacturing methods. IPS e.max Press is fabricated through heat-pressed technique with ceramic ingot, which is very simple. The restorations which are made using IPS e.max system can apply to 3 units restoration for the anterior teeth and premolar, and single posterior tooth restoration. Cementation is one of the most important clinic procedure for the longevity of the restorations. All ceramics are bonded by resin cements, it is classified into three groups including adhesive, self-adhesive, and conventional. Variolink N, which is an adhesive resin cement and manufactured by same company with IPS e.max, is recommended for the bonding of IPS e.max restoration. Conventional and self-adhesive resin cement is also available. The aim of this review article is to provide the understanding of material properties, production procedure and clinical application of IPS e.max system.

The effects of different polishing techniques on the staining resistance of CAD/CAM resin-ceramics

  • Sagsoz, Omer;Demirci, Tevfik;Demirci, Gamze;Sagsoz, Nurdan Polat;Yildiz, Mehmet
    • The Journal of Advanced Prosthodontics
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    • v.8 no.6
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    • pp.417-422
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    • 2016
  • PURPOSE. The purposes of this study were to evaluate the staining resistance of CAD/CAM resin-ceramics polished with different techniques and to determine the effectiveness of the polishing techniques on resin-ceramics, comparing it with that of a glazed glass-ceramic. MATERIALS AND METHODS. Four different CAD/CAM ceramics (feldspathic ceramic: C-CEREC Blocs, (SIRONA) and three resin-ceramics: L-Lava Ultimate, (3M ESPE), E-Enamic, (VITA) and CS-CeraSmart, (GC)) and one light cure composite resin: ME-Clearfil Majesty Esthetic (Kuraray) were used. Only C samples were glazed (gl). Other restorations were divided into four groups according to the polishing technique: nonpolished control group (c), a group polished with light cure liquid polish (Biscover LV BISCO) (bb), a group polished with ceramic polishing kit (Diapol, EVE) (cd), and a group polished with composite polishing kit (Clearfil Twist Dia, Kuraray) (kc). Glazed C samples and the polished samples were further divided into four subgroups and immersed into different solutions: distilled water, tea, coffee, and fermented black carrot juice. Eight samples ($8{\times}8{\times}1mm$) were prepared for each subgroup. According to CIELab system, four color measurements were made: before immersion, immersion after 1 day, after 1 week, and after 1 month. Data were analyzed with repeated measures of ANOVA (${\alpha}=.05$). RESULTS. The highest staining resistance was found in gl samples. There was no difference among gl, kc and cd (P>.05). Staining resistance of gl was significantly higher than that of bb (P<.05). Staining resistances of E and CS were significantly higher than those of L and ME (P<.05). CONCLUSION. Ceramic and composite polishing kits can be used for resin ceramics as a counterpart of glazing procedure used for full ceramic materials. Liquid polish has limited indications for resin ceramics.