• 제목/요약/키워드: Polymerization shrinkage stress

검색결과 33건 처리시간 0.022초

Measurements of shrinkage stress and reduction of intercuspal distance in maxillary premolars resulting from polymerization of composites and compomers

  • Lee, Soon-Young;Park, Sung-Ho
    • 대한치과보존학회:학술대회논문집
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    • 대한치과보존학회 2003년도 제120회 추계학술대회 제 5차 한ㆍ일 치과보존학회 공동학술대회
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    • pp.563-563
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    • 2003
  • The purpose of present study was to evaluate the polymerization shrinkage stress and cuspal deflection in maxillary premolars resulting from polymerization shrinkage of composites and compomers. 1)Measurements of polymerization shrinkage stress. For measurements of polymerization shrinkage stress, Stress measuring machine(R&B, Daejon, Korea) was used. Composites and compomers which were used in this study were as follows:(omitted)

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광중합형 구치부 수복재료의 중합 수축력과 교두 변위의 상관관계 (MEASUREMENTS OF SHRINKAGE STRESS AND REDUCTION OF INTER-CUSPAL DISTANCE IN MAXILLARY PREMOLARS RESULTING FROM POLYMERIZATION OF COMPOSITES AND COMPOMERS)

  • 이순영;박성호
    • Restorative Dentistry and Endodontics
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    • 제29권4호
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    • pp.346-352
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    • 2004
  • The purpose of present study was to evaluate the polymerization shrinkage stress and cuspal deflection in maxillary premolars resulting from polymerization shrinkage of composites and compomers. Composites and compomers which were used in this study were as follows: Dyract AP, Z100, Surefil. Pyramid, Synergy Compact, Heliomolar, Heliomolar HB, and Compoglass F. For measuring of polymerization shrinkage stress, Stress measuring machine (R&B, Daejon, Korea) was used. One-way ANOVA analysis with Duncan's multiple comparison test were used to determine significant differences between the materials. For measuring of cuspal deflection of tooth, MOD cavities were prepared in 10 extracted maxillary premolars. And reduction of intercuspal distance was measured by strain measuring machine (R&B, Daejon, Korea) One-way ANOVA analysis with Turkey test were used to determine significant differences between the materials. Polymerization shrinkage stress is $\mathbb{\ulcorner}$Heliomolar, Z100, Pyramid < Synergy Compact Compoglass F < Dyract AP < Heliomolr HB, surefil$\mathbb{\lrcorner}$ (P < 0.05). And cuspal delfelction is $\mathbb{\ulcorner}$Z100, Heliomolar, Heliomolar HB, Synergy Compact Surefil. < Compoglass F < Pyramid, Dyract AP$\mathbb{\lrcorner}$ (P < 0.05). Measurements of ploymerization shrinkage stress and those of cuspal deflection of the teeth was different. There is no correlation between polymerization shrinkage stress and cuspal deflection of the teeth(p > 0.05).

광중합형 구치부 수복재료의 중합수축량과 중합수축력 (AMOUNT OF POLYMERIZATION SHRINKAGE AND SHRINKAGE STRESS IN COMPOSITES AND COMPOMERS FOR POSTERIOR RESTORATION)

  • 박성호;이순영;조용식;김수선;이창재;김영주;이봉희;이광성;노병덕
    • Restorative Dentistry and Endodontics
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    • 제28권4호
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    • pp.348-353
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    • 2003
  • The purpose of present study was to evaluate the polymerization shrinkage stress and amount of linear shrinkage of composites and compomers for posterior restoration. For this purpose, linear polymerization shrinkage and polymerization stress were measured. For linear polymerization shrinklage and polymerization stress measurement, custom made Linometer (R&B, Daejon, Korea) and Stress measuring machine was used (R&B, Daejon, Korea). Compositers and compomers were evaluated: Dyract AP (Dentsply Detrey, Gumbh. German) Z100 (3M Dental Products, St. Paul. USA) Surefil (Dentsply Caulk, Milford, USA) Pyramid (Bisco, Schaumburg, USA) Synergy Compact (Coltene, Altstatten, Switzerland), Heliomolar (Vivadent/Ivoclar, Liechtenstein), and Compoglass (Vivadent Ivoclar/Liechtenstein) were used. 15 measurements were made for each material. Linear polymerization shrinkage or polymerization stress for each material was compared with one way ANOVA with Tukey at 95% levels of confidence. For linear shrinkage: Heliomolar, Surefil

Silorane-기질 치아 수복용 복합레진의 중합수축과 중합수축응력 (Polymerization Shrinkage and Stress of Silorane-based Dental Restorative Composite)

  • 이인복;박성환;권현정;구자국;최낙삼
    • Composites Research
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    • 제26권3호
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    • pp.182-188
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    • 2013
  • 본 연구의 목적은 silorane 기질의 치아 수복용 복합레진의 중합수축과 수축응력의 동력학을 평가하고 전통적인 methacrylate 기질의 복합레진과 비교하기 위함이다. 두 종의 methacrylate 기질의 복합레진(Z250, Z350 flowable)과 silorane 기질 복합레진(P90)이 사용되었다. 아르키메데스 원리를 응용해 자체 제작한 중합수축 측정 장치를 사용하여 광중합 중 일어나는 복합레진의 체적 중합수축을 측정하였고 스트레인게이지로 중합수축응력을 측정하였다. Silorane 기질 복합레진인 P90의 중합수축과 최대 중합수축률이 가장 낮았고 methacrylate 기질 복합레진인 Z350 flowable이 가장 높았다. Methacrylate 기질의 복합레진과 비교하여 silorane 기질의 복합레진 P90이 최대 수축률에 이른 시간은 더 길었고 중합수축응력은 낮았다.

Methacrylate 기질 복합레진과 Silorane 기질 복합레진의 치아 수복 시 중합수축응력거동 (Behavior of Polymerization Shrinkage Stress of Methacrylate-based Composite and Silorane-based Composite during Dental Restoration)

  • 박정훈;최낙삼
    • Composites Research
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    • 제28권1호
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    • pp.6-14
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    • 2015
  • 치아의 수복에 사용되는 재료인 Methacrylate 기질 복합레진(Clearfil AP-X)과 Silorane 기질 복합레진(Filtek P90)을 대상으로 스트레인게이지법과 FEM 분석법으로 중합수축응력거동을 분석하였다. 또한 복합레진의 탄성계수와 수축변형률을 중합수축응력과 관계시켜 이론식을 제시하고 이 식의 계산결과와 FEM 분석법의 결과를 비교하였다. 스트레인 게이지법으로 측정한 결과, 중합수축응력의 최대값은 Clearfil AP-X가 Filtek P90 보다 약 2.8배 높게 나타났다. FEM 분석 결과, Von-Mises 응력은 복합레진 수복재와 PMMA 링사이의 계면부에서 최대로 되었으며 시편표면의 계면부가 내부보다 응력집중이 더 컸음을 알았다. 예측식을 통한 반경 방향의 수축응력은 평면응력상태의 FEM 분석법을 통한 값과 비교하여 오차 5% 이내로 정확했음을 확인하였다.

광중합 콤포짓트레진의 수복형태 및 방법에 관한 삼차원 유한요소분석법적 비교 연구 (A COMPARATIVE STUDY ON THE COMPOSITE RESTORATION DESIGN AND PLACEMENT METHODS USING THREE DIMENSIONAL FINITE ELEMENT ANALYSIS)

  • 이정택;임순호;장익태
    • 대한치과보철학회지
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    • 제36권1호
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    • pp.133-149
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    • 1998
  • Clinical application of composite resin recently draw great concerns in dentistry. Especially due to advantages such as esthetics, adhesiveness, simple clinical procedures, various shapes and kinds of composite resins are widely being applied to prosthodontics, conservative dentistry, and orthodontics. But, clinical problems attributable to the polymerization shrinkage of composite resin have been proposed, and we have to regard clinical problems such as secondary caries, loss of restoration, fracture of the surrounding tooth structure, marginal discoloration, and tooth sensitivity, and many portions are remained to be overcome. Therefore, this study attempts to analyze stress distribution between resin and tooth structure which is generated during polymerization shrinkage of composite resin using three dimensional finite element method. Three dimensional finite element models with conventional box-shape cavity and erosion/abrasion type V-shape lesion cavity in upper central incisor were developed. These cavities were filled with four different types of placement techniques. (bulk filling, horizontal increment filling, oblique occlusal increment filling, oblique gingival increment filling) The stresses generated by polymerization shrinkage of composite resin were calculated. The results analyzed with three dimensional finite element method were as follows : 1. The increment filling technique showed the highest maximum normal stress in both conventional box-shape and V-shape cavities and showed a tendency to decrease after complete polymerization. 2. The bulk filling technique resulted in increased stresses during the curing process in both conventional box-shape and V-shape cavities and the highest maximum normal stress occurred after complete polymerization. 3. The bulk filling resulted in the lowest maximum normal stress in both box-shape and V-shape cavities 4. Regardless of placement method, in conventional box-shape cavity, the maximum normal stress increased in dentin floor, enamel, dentin sequence and in V-shape cavity, the maximum normal stress increased in enamel, dentin sequence.

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Silorane 복합레진의 중합수축의 동력학 (POLYMERIZATION SHRINKAGE KINETICS OF SILORANE-BASED COMPOSITES)

  • 권영철;이인복
    • Restorative Dentistry and Endodontics
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    • 제35권1호
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    • pp.51-58
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    • 2010
  • 복합레진이 개발된 이후 많은 물성의 향상이 이루어졌으나 복합레진의 중합수축은 아직 해결되지 않은 주요 단점으로 남아있다. 중합수축이 적은 복합레진을 만들기 위한 많은 노력이 이루어졌고, 최근에 기존의 methacrylate 기질이 아닌 silorane 기질의 복합레진이 개발되었다. 본 연구에서는 silorane 기질의 복합레진과 methacrylate 기질의 복합레진의 중합수축거동을 측정하고 비교하고자 하였다. 온도변화에 민감하지 않으며 실시간으로 복합레진의 체적 중합수축을 측정할 수 있는 계측장치를 제작하여 사용하였다. 5종의 methacrylate 기질의 수복용 복합레진(Beautifil, Z100, Z250, Z350, Gradia X)과 silorane 기질 복합레진 (P90)의 중합수축을 10분 동안 측정하여, 중합수축량, 최대 중합수축률 그리고 최대수축시간을 비교하였다. 복합레진의 중합수축은 제품별로 많은 차이를 보였다. Silorane 기질의 P90복합레진의 중합수축이 1.48%로 가장 낮았고 Beautifil 복합레진의 중합수축이 2.80%로 가장 높았다. Methacrylate 계열의 복합레진 사이에도 중합수축량에 제품별로 유의한 차이를 보였다(p<0.05). 최대 중합수축률은 P90이 0.13%/s로 가장 낮았고 Z100이 0.34%/s로 가장 높았다. 최대 수축시간은 methacrylate기질의 복합레진(2.4-3.1초)에 비해, silorane 기질의 P90 복합레진이 6.7초로 두 배 이상 길었다. 최대중합수축률은 중합수축과 최대수축시간의 역수를 곱한 값과 강한 양의 상관관계를 보였다(R = 0.95).

와동 형태와 충전 방법에 따른 Class V 복합 레진 수복치의 유한요소법적 응력 분석 (FINITE ELEMENT STRESS ANALYSIS OF CLASS V COMPOSITE RESIN RESTORATION SUBJECTED TO CAVITY FORMS AND PLACEMENT METHODS)

  • 손윤희;조병훈;엄정문
    • Restorative Dentistry and Endodontics
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    • 제25권1호
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    • pp.91-108
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    • 2000
  • Most of cervical abrasion and erosion lesions show gingival margin where the cavosurface angle is on cementum or dentin. Composite resin restoration of cervical lesion shrink toward enamel margin due to polymerization contraction. This shrinkage has clinical problem such as microleakage and secondary caries. Several methods to diminish contraction stress of composite resin restoration, such as modifying cavity form and building up restorations in several increments have been attempted. The purpose of this study was to compare polymerization contraction stress of composite resin in Class V cavity subjected to cavity forms and placement methods. In this study, finite element model of 5 types of Class V cavity was developed on computer tomogram of maxillary central incisor. The types are : 1) Box cavity 2) Box cavity with incisal bevel 3) V shape cavity 4) V shape cavity with incisal bevel 5) Saucer shape cavity. The placement methods are 1) Incisal first oblique incremental curing 2) Bulk curing. An FEM based program for light activated polymerization is not available. For simulation of curing dynamics, time dependent transient thermal conduction analysis was conducted on each cavity and each placement method. For simulation of polymerization shrinkage, thermal stress analysis was performed with each cavity and each placement method. The time-temperature dependent volume shrinkage rate, elastic modulus, and Poisson's ratio were determined in thermal conduction data. The results were as follows : 1. With all five Class V cavifies, the highest Von Mises stress at the composite-tooth interface occurred at gingival margin. 2. With box cavity, V shape cavity and saucer cavity, Von Mises stress at gingival margin of V shape cavity was lower than the others. And that of box cavity was lower than that of saucer cavity. 3. Preparing bevel at incisal cavosurface margin decreased the rate of stress development in early polymerization stage. 4. Preparing bevel at incisal cavosurface margin of V shape cavity increased the Von Mises stress at gingival margin, but decreased at incisal margin. 5. At incisal margin, stress development by bulk curing method was rapid at early stage. Stress development by first increment of incremental curing method was also rapid but lower than that by bulk curing method, however after second increment curing final stress was the same for two placement methods. 6. At gingival margin, stress development by incremental curing method was suddenly rapid at early stage of second increment curing, but final stress was the same for two placement methods.

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Silorane계 복합레진의 중합수축응력의 평가 (Evaluation of polymerization shrinkage stress in silorane-based composites)

  • 류승지;전지훈;민정범
    • Restorative Dentistry and Endodontics
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    • 제36권3호
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    • pp.188-195
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    • 2011
  • 연구목적: 새로운 silorane 복합레진의 중합수축응력을 기존의 methacrylate 계열의 복합레진과 비교 분석하는 것이다. 연구 재료 및 방법: Z250, P60, P90 각 군당 10개의 시편을 준비하였다. 시편에 스트레인 게이지를 부착하고 각 재료의 제조사에서 추천하는 접착제 도포 후 10초간, 수복 재료 적용 후 40초간 할로겐 광조사기로 광중합한 뒤 중합수축응력을 측정 하였다. 외경 10 mm, 내경 7 mm, 높이 3 mm의 아크릴릭 주형을 준비하고 주형의 내면은 5초간 sandblasting 처리한 후, 30초간 35% 인산으로 산부식 시행하였다. 주형의 외면은 Cyanoacrylate adhesive (SOKKI)로 스트레인 게이지를 부착하였다. 주형의 내면과 복합 레진을 접착하기 위한 접착제로 methacrylate 기질의 복합 레진 2종은 Single Bond (3M ESPE)를, silorane 기질의 복합레진은 P90 Adhesive system (3M ESPE)을 적용하였고 할로겐 광조사기를 사용하여 10초간 광중합하였다. 시편에 부착된 스트레인 게이지를 TML data logger에 연결시키고 광중합 전의 초기값을 설정한다. 중합시간은 모든 군의 에너지 총량을 동일하게 하기 위해 400 mW/$cm^2$의 광강도로 설정하여 40초간 광중합하였다. 광중합 시점부터 1초 간격으로 800초 간의 스트레인 값을 측정하였고 스트레인 값은 Hooke's law를 이용하여 각 시점의 수축응력으로 환산하여 기록하였다. 결과: 1. 모든 군에서 광중합 직후에는 일시적으로 팽창하였다가 급속한 수축률을 보였고 시간이 지날수록 수축률이 감소하는 경향을 보이다가 200초 이후에는 수축률이 완만해지는 양상을 보였다. 2. 모든 군에서 수축응력이 계속 증가하였고, silorane 기질의 복합레진 P90이 methacrylate 기질의 복합레진 Z250, P60 보다 낮은 수축응력 값을 보였다(p < 0.05). 3. Methacrylate 기질의 복합레진인 Z250과 P60 두가지 재료간 수축응력에는 통계적으로 유의한 차이가 없었다(p > 0.05). 결론: Silorane 기질 복합레진의 사용은 methacrylate 기질 복합레진보다 중합수축응력이 더 작을 것으로 기대되지만 silorane 기질 복합레진의 탄성계수에 있어서 다소 불리한 특성이 보고되는 바, 임상적 적용에 앞서 이에 대한 충분한 고찰 및 추가적인 연구가 더 필요할 것으로 사료된다.

Holographic interferometry를 이용한 열중합 애크릴릭 레진의 변형에 관한 연구 (A STUDY ON THE DIMENSIONAL CHANGES OF HEAT CURING ACRYLIC RESINS USING HOLOGRAPHIC INTERFEROMETRY)

  • 박동관;장익태;김광남
    • 대한치과보철학회지
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    • 제33권1호
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    • pp.48-74
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    • 1995
  • Since heat curing acrylic resins undergo unavoidable dimensional changes following polymerization, adaptation can be altered. Until recently, although numerous studies on the dimensional changes of denture base were based on a microscopic technic that measures the relative displacement of a limited reference points on the denture base, but there have been few studies on the distortions of resins using holographic interferometry. Purpose of this study was to determine and compare the dimensional changes and fringe patterns of 4 heat curing acrylic resins, and observe the distortions of acrylic resin denture base by temperature change with the aid of the holographic interferometry. Holographic interferograms were taken on the resin specimens and acrylic resin denture base with the 10mW He-Ne laser and double exposure method. Comparison and analysis of fringe pattern on the recorded object surface was performed. The following results were obtained. 1. The dimensional changes for the high impact resin Lucitone 199 were statistically the greatest of all resins, and the rapid heat curing resin Premium super 20 were the least. 2. The most polymerization shrinkage of all materials occured in initial period of measurements, at this time the difference of polymerization shrinkage properties between resins was founded. 3. The stress distribution of specimens was seen by various type of fringe pattern which had directionality. 4. The polymerization shrinkage of resins was greatly influenced by temperature change. 5. The partial deformations of resin denture base were observed in 70 C and 90 C water.

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