• 제목/요약/키워드: SiC coating

검색결과 563건 처리시간 0.021초

티타늄의 표면처리 방법에 따른 저온소성도재와의 결합강도 (EFFECT OF SURFACE MODIFICATION ON BOND STRENGTH IN TITANIUM-PORCELAIN SYSTEM)

  • 로성욱;방몽숙;양홍서;박상원;박하옥;임현필
    • 대한치과보철학회지
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    • 제45권5호
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    • pp.589-600
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    • 2007
  • Statement of Problem: Titanium has many advantages of high biocompatibility, physical porperties, low-weight, low price and radiolucency, but it is incompatible with conventional dental porcelain due to titanium's oxidative nature. Many previous studies have shown that they used the method of sandblast surface treatment prior to porcelain application, the researchs are processing about the method of acid etching or surface coating. Purpose: The purpose of this research is to study the effect on bond strength between titanium and porcelain when using macro-surface treatment and micro-surface treatment and macro and micro surface treatment. Material and method: In this study, we evaluated the bond strength by using 3-point bending test based on ISO 9693 after classified 7 groups-group P : polished with #1200 grit SiC paper, group SS : sandblasted with $50{\mu}m$ aluminum oxides, group LS : sandblasted with $250{\mu}m$ alumium oxides, group HC : treated with 10% hydrochloric acid, group NF : treated with 17% solution of fluoric acid and nitric acid, group SHC : treated with 10% hydrochloric aicd after sandblsting with $50{\mu}m$ alumium oxides, group SNF treated with 17% solution of fluoric acid and nitric acid. Results : Within the confines of our research, the following results can be deduced. 1. Group SS which was sandblasted with $50{\mu}m$ aluminum oxides showed the highest bond strength of 61.74 MPa and significant differences(P<0.05). The bond strengths with porcelain in groups treated acid etching after sandblasting decreased more preferable than the group treated with sandblasting only. It gives significant differences(P<0.05). 2. After surface treatments, the group treated with sandblasting showed irregular aspect formed many undercuts, in the SEM photographs. The group treated with hydrochloric acid had the sharp serrated surfaces, the group treated with the solution of fluoric acid and nitric acid had the smooth surfaces, the group with sandblasting and hydrochloric acid had irrigular and porous structure, the group with sandblasting and the solution of fluoric acid and nitric acid had crater-like surfaces. But all of the groups treated with acid etching was not found and undercut. Conclusion: In above results, average surface roughness increase, bond strength also increase, but surface topographs influences more greatly on bond strengths.

중간층 레진 적용이 단일 접착과정 상아질 접착제의 접착에 미치는 영향 (Effect of the additional application of a resin layer on dentin bonding using single-step adhesives)

  • 최승모;박상혁;최경규;박상진
    • Restorative Dentistry and Endodontics
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    • 제32권4호
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    • pp.313-326
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    • 2007
  • 본 연구는 단일 접착과정 상아질 접착제와 복합레진 사이에는 부적합성이 존재하며, 이를 개선하기 위해 중간 레진층이 필요하다는 가설을 규명하기 위해 시행되었다. 발치된 치아의 협설측 상아질에 3종의 단일 접착과정 상아질 접착제를 도포 후 광중합, 2종의 중간 레진층 적용, 광중합 또는 자가중합형 복합레진의 사용여부에 따라 30개의 실험군으로 분류하였다. 미세전단 결합강도를 측정하고 투과전자현미경 (TEM)을 이용하여 접착계면에서의 미세 누출과 수분의 이동경로를 관찰하여 접착제의 투과성을 평가하여 다음과 같은 결론을 얻었다. 중간 레진층을 적용 시 접착층의 투과도가 감소되었고 복합레진에 대한 단일 접착과정 상아질 접착제의 결합강도가 증가되었다. 따라서 시간 절약 및 간단한 접착과정을 선호하여 단순화된 상아질 접착제를 선택하는 것은 재고되어야 한다.

Seawater ballast tank 환경에서 저합금강의 내식성에 미치는 합금원소의 영향 (Effects of Alloying Elements on Corrosion Resistance of Low Alloyed Steels in a Seawater Ballast Tank Environment)

  • 김동우;김희산
    • 대한금속재료학회지
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    • 제48권6호
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    • pp.523-532
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    • 2010
  • Co-application of organic coating and cathodic protection has not provided enough durability to low-alloyed steels inseawater ballast tank (SBT) environments. An attempt has made to study the effect of alloy elements (Al, Cr, Cu, Mo, Ni, Si, W) on general and localized corrosion resistance of steels as basic research to develop new low-allowed steels resistive to corrosion in SBT environments. For this study, we measured the corrosion rate by the weigh loss method after periodic immersion in synthetic seawater at $60^{\circ}C$, evaluated the localized corrosion resistance by an immersion test in concentrated chloride solution with the critical pH depending on the alloy element (Fe, Cr, Al, Ni), determined the permeability of chloride ion across the rust layer by measuring the membrane potential, and finally, we analyzed the rust layer by EPMA mapping and compared the result with the E-pH diagram calculated in the study. The immersion test of up to 55 days in the synthetic seawater showed that chromium, aluminium, and nickel are beneficial but the other elements are detrimental to corrosion resistance. Among the beneficial elements, chromium and aluminium effectively decreased the corrosion rate of the steels during the initial immersion, while nickel effectively decreased the corrosion rate in a longer than 30-day immersion. The low corrosion rate of Cr- or Al-alloyed steel in the initial period was due to the formation of $Cr_2FeO_4$ or $Al_2FeO_4$, respectively -the predicted oxide in the E-pH diagram- which is known as a more protective oxide than $Fe_3O_4$. The increased corrosion rate of Cr-alloyed steels with alonger than 30-day exposure was due to low localized corrosion resistance, which is explained bythe effect of the alloying element on a critical pH. In the meantime, the low corrosion rate of Ni-alloyed steel with a longer than 30-day exposure wasdue to an Ni enriched layer containing $Fe_2NiO_4$, the predicted oxide in the E-pH diagram. Finally, the measurement of the membrane potential depending on the alloying element showed that a lower permeability of chloride ion does not always result in higher corrosion resistance in seawater.