• 제목/요약/키워드: 중합열

검색결과 202건 처리시간 0.016초

중합조건에 따른 dual cured resin cement의 열분석적 연구 (THERMAL ANALYSIS OF THE DUAL CURED RESIN CEMENTS ACCORDING TO CURING CONDITION)

  • 이인복;정관희;엄정문
    • Restorative Dentistry and Endodontics
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    • 제24권2호
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    • pp.265-285
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    • 1999
  • The purposes of this investigation were to observe the reaction kinetics of five commercial dual cured resin cements (Bistite, Dual, Scotchbond, Duolink and Duo) when cured under varying thicknesses of porcelain inlays by chemical or light activation and to evaluate the effect of the porcelain disc on the rate of polymerization of dual cured resin cement during light exposure by using thermal analysis. Thermogravimetric analysis(TGA) was used to evaluate the weight change as a function of temperature during a thermal program from $25{\sim}800^{\circ}C$ at rate of $10^{\circ}C$/min and to measure inorganic filler weight %. Differential scanning calorimetry(DSC) was used to evaluate the heat of cure(${\Delta}H$), maximum rate of heat output and peak heat flow time in dual cured resin cement systems when the polymerization reaction occured by chemical cure only or by light exposure through 0mm, 1mm, 2mm and 4mm thickness of porcelain discs. In 4mm thickness of porcelain disc, the exposure time was varied from 40s to 60s to investigate the effect of the exposure time on polymerization reaction. To investigate the effect on the setting of dual cured resin cements of absorption of polymerizing light by porcelain materials used as inlays and onlays, the change of the intensity of the light attenuated by 1mm, 2mm and 4mm thickness of porcelain discs was measured using curing radiometer. The results were as follows 1. The heat of cure of resin cements was 34~60J/gm and significant differences were observed between brands (P<0.001). Inverse relationship was present between the heat of reaction and filler weight % the heat of cure decreased with increasing filler content (R=-0.967). The heat of reaction by light cure was greater than by chemical cure in Bistite, Scotchbond and Duolink(P<0.05), but there was no statistically significant difference in Dual and Duo(P>0.05). 2. The polymerization rate of chemical cure and light cure of five commercially available dual cured resin cements was found to vary greatly with brand. Setting time based on peak heat flow time was shortest in Duo during chemical cure, and shortest in Dual during light cure. Cure speed by light exposure was 5~20 times faster than by chemical cure in dual cured resin cements. The dual cured resin cements differed markedly in the ratio of light and chemical activated catalysts. 3. The peak heat flow time increased by 1.51, 1.87, and 3.24 times as light cure was done through 1mm, 2mm and 4mm thick porcelain discs. Exposure times recommended by the manufacturers were insufficient to compensate for the attenuation of light by the 4mm thick porcelain disc. 4. A strong inverse relationship was observed between peak heat flow and peak time in chemical cure(R=0.951), and a strong positive correlations hip was observed between peak heat flow and the heat of cure in light cure(R=0.928). There was no correlationship present between filler weight % or heat of cure and peak time. 5. The thermal decomposition of resin cements occured primarily between $300^{\circ}C$ and $480^{\circ}C$ with maximum decomposition rates at $335^{\circ}C$ and $440^{\circ}C$.

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제작방법에 따른 임시 수복용 레진의 마모저항성에 관한 연구 (In vitro evaluation of the wear resistance of provisional resin materials fabricated by different methods)

  • 안종주;허중보;최재원
    • 대한치과보철학회지
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    • 제57권2호
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    • pp.110-117
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    • 2019
  • 목적: 본 연구의 목적은 적층 가공(additive manufacturing)법, 절삭 가공(subtractive manufacturing)법, 전통적인 방법에 따른 임시 수복용 레진의 마모 저항성을 조사하는 것이다. 재료 및 방법: 제작방법에 따라 4개의 군으로 나누었으며, 각 군은 전용의 임시 수복용 레진을 사용하였다: S3P군, Stereolithography apparatus (SLA) 3D 프린터 및 전용의 광경화성 수지로 제작한 군; D3P군, Digital Light Processing (DLP) 3D 프린터 및 전용의 광경화성 수지로 제작한 군; MIL군, Milling machine 및 밀링용 레진 블록으로 제작한 군; CON군, 전통적인 방법 및 자가중합형 레진으로 제작한 군. 한편, 3D 프린팅된 레진 시편을 제작함에 있어 적층 각도와 층 두께를 각각 $0^{\circ}$$100{\mu}m$로 설정하였다. 구강내 환경을 재현하기 위하여 열순환 처리와 수평, 수직운동이 가능한 2축 chewing simulator를 사용하였으며, 하부에는 한쪽면이 편평하게 제작된 임시 수복용 레진을, 상부에는 끝이 3 mm 직경을 가지는 원뿔형의 steatite를 고정하여 마모시험 진행하였다(5 kg, 30,000회, 0.8 Hz, $5^{\circ}C/55^{\circ}C$). 임시 수복용 레진의 마모량은 마모 전후의 Standard Triangulated Language (STL) 파일과 전용의 CAD software를 이용하여 부피를 계산하였고, 주사전자현미경으로 마모 양상을 비교하였다. 결과: S3P군, D3P군, MIL군의 마모량은 CON군보다 유의하게 작았으며 (P < .05), S3P군, D3P군, MIL군 사이에는 통계학적으로 유의한 차이가 없었다 (P > .05). 주사전자현미경으로 마모면을 관찰한 결과, S3P군과 D3P군에서는 대합치의 운동 방향에 대해 수직적으로 갈라진 흔적이 발견되었다. MIL군에서는 전반적으로 균일한 마모면이 보인 반면, CON군에서는 대합치 운동 방향으로의 뚜렷한 마모 흔적과 다수의 기포가 관찰되었다. 결론: 본 연구의 한계 내에서, 3D 프린팅된 임시 수복용 레진은 치과용으로서 적절한 마모저항성을 보였다.