• 제목/요약/키워드: Monolithic ceramic

검색결과 143건 처리시간 0.036초

지르코니아 단일구조 전부도재관의 파절강도 (FRACTURE STRENGTH OF ZIRCONIA MONOLITHIC CROWNS)

  • 정희찬
    • 대한치과보철학회지
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    • 제44권2호
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    • pp.157-164
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    • 2006
  • Purpose: The purpose of this study was to compare the fracture strength of the zirconia monolithic all-ceramic crowns according to the thickness(0.5 mm, 0.8 mm, 1.1 mm) and IPS Empress II ceramic crown of 1.5 mm thickness. Material and method: Eight crowns for each of 3 zirconia crown groups were fabricated using CAD/CAM system(Kavo, Germany) and eight Empress II crowns were made from silicone mold and wax pattern. Each crown group was finished in accordance with the specific manufacturer s instruction. All crowns were luted to the metal dies using resin cement and mounted on the testing jig in a universal testing machine. The load was directed at the center of crown with perpendicular to the long axis of each specimen until catastrophic failure occurred. Analysis of variance and Tukey multiple comparison test(p<.05) were applied to the data. Results and Conclusion: 1. The fracture strength of the zirconia monolithic all-ceramic crown was higher thickness increased(p<.05). 2 The fracture strength of 1.1 mm thickness zirconia monolithic all-ceramic crown was higher than the fracture strength of 1.5 mm thickness IPS Empress II crown(p<.05). 3. The fracture strength of 0.5 mm thickness zirconia monolithic all-ceramic crown exceeded maximum occlusal forces.

지르코니아 단일구조 전부도재관과 금속도재관의 파절강도 비교 (FRACTURE STRENGTH OF ZIRCONIA MONOLITHIC CROWNS AND METAL-CERAMIC CROWNS AFTER CYCLIC LOADING AND THERMOCYCLING)

  • 이상민;정희찬;전영찬
    • 대한치과보철학회지
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    • 제45권1호
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    • pp.12-20
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    • 2007
  • Purpose: The purpose of this study was to compare the fracture strength of the zirconia monolithic all-ceramic crowns according to the thickness (0.5mm, 0.8mm, 1.1mm) and metal-ceramic crowns (1.0mm, 1.5mm) Material and method: Twelve crowns for each of 3 zirconia crown groups were fabricated using CAD/CAM system (Kavo, Germany) and twelve crowns for each of 2 metal-ceramic crown groups were made by the conventional method. All crowns were luted to the metal dies using resin cement. Half of the specimens were exposed to thermocycling ($5-55^{\circ}C$, 1 Hz) and cyclic loading (300,000 cycles, 50N). Subsequently, all crowns were mounted on the testing jig in a universal testing machine. The load was directed at the center of crown with perpendicular to the long axis of each specimen until catastrophic failure occurred. Analysis of variance and Tukey multiple comparison test (P<.05) were used for statistical analysis of all groups, and paired t-test (P<.05) was followed for statistical comparison between each groups' fracture load before and after cyclic loading. Results: 1. The fracture strength of the zirconia monolithic crowns and the metal-ceramic crown increased as thickness increased (P<.05). 2. The cyclic loading and thermocycling significantly decreased the fracture strength of the zirconia monolithic crowns (P<.05). 3. The standard deviation of fracture strength of the zirconia monolithic crowns was very low. Conclusion: The fracture strength of the zirconia monolithic crowns for the posterior area tends to be higher with thickness increased and 0.8mm or over in thickness is recommended to have similar or over the fracture strength of metal-ceramic crowns.

체어사이드 CAD/CAM에서 사용하는 세라믹 소재 (Ceramic materials for chair side CAD/CAM)

  • 김희철
    • 대한심미치과학회지
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    • 제23권1호
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    • pp.16-26
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    • 2014
  • CAD/CAM에서 사용할 수 있는 소재는 composite, ceramic, hybrid 그리고 metal이 있다. 그중에 진료실 CAD/CAM에서는 주로 monolithic ceramic 테크닉을 사용하는 데, monolithic ceramic 테크닉이란 한 가지 소재로만 제작하는 방법을 말한다. 블럭상태의 소재를 최종치아형태로 깎아 폴리싱해서 사용하거나, 열을 가해서 사용하는 방법으로, 기존의 도재 축조 작업이 필요 없다. 심미성에서는 다소 부족하지만, 1시간 안에 제작이 가능하므로 1회, 1일 방문으로 치료를 완료할 수 있고, 소재의 안정성이 높으며(녹이거나 상변화를 시키지 않음에 따라 왜곡이 생기거나 강도가 약해질 가능성이 적음), 컴퓨터 조작(CAD 작업)으로 치아를 디자인하여 제작하므로 진료실에서 쉽게 작업할 수 있다는 장점이 있다. 이 테크닉에 사용할 수 있는 소재를 임상적 관점에서 세대별로 따라 분류해 보았다.

세라믹 축과 금속림의 열박음 체결력 특성에 관한 연구 (Characteristic of the shrink fit strength using ceramic shaft and metal ring)

  • 최상훈
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1996년도 추계학술대회 논문
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    • pp.180-186
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    • 1996
  • Using carbon steel or ceramic as a shaft material of monolithic and slited insert ring clamped on it. The fitting strengths of the sgrink fitted assemblies measured from room temperature to 30$0^{\circ}C$ and following conclusions were obtained as results of this investigation. 1) The fitting condition under which the shrink fitted assemble was stronger than that using simple fit in high temperature. 2) When both material of the 30mm-diameter shaft and 55mm-diameter boss are SM45C the clamping torque is increased 2.7times as the interference increases 3 times from 20${\mu}{\textrm}{m}$ at the contact length of 6mm monolithic fit. 3) When only the material of boss is changed to STS 304 the clamping torque is increased at the rate of 37.3N.m per 1mm increase of the contact length at the interference of 50${\mu}{\textrm}{m}$ monolithic fit.

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지르코니아 단일구조 전부도재관의 지대치 형태에 따른 파절 강도 (Fracture Strength Analysis of Monolithic Zirconia Ceramic by Abutment Shape)

  • 김원영;홍민호
    • 대한치과기공학회지
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    • 제36권4호
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    • pp.231-237
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    • 2014
  • Purpose: This study was performed fracture strength test by conducted change of abutment and coping shape for suggesting monolithic all ceramic crown which has thin thickness and superior strength of the occlusal surface. Methods: The specimens on the four kinds abutment was made according to thickness of occlusal surface and angle of axis surface. And All ceramic coping specimens of 6 different kinds was made by the CAD/CAM Method. Compression strength test using the UTM and the verification of compression-stress situation using the 3D finite element method were conducted under optimum conditions. Results: 516C specimen was showed the strongest compression-fracture strength, followed by 516FR, 516F45, specimens. Did not show significant differences between 516FR and 516F45. 516C of the universal testing machine the specimen's surface that are within the vertical load is small, finite element method of a uniformly distributed load, so the value received suggests otherwise. Conclusion: In conclusion, abutments of monolithic ziconia ceramic when having a same thickness of the occlusal, as the angle of occlusal edge is small, the stress is well dispersed and it can endure well in the fracture.

반응표면법과 최적화방법을 이용한 자동차 세라믹 모노리스 담체의 파단계수에 미치는 치수효과 (Size Effect on the Modulus of Rupture in Automotive Ceramic Monolithic Substrate using Optimization and Response Surface Method)

  • 백석흠;신순기;주원식;조석수
    • 대한기계학회논문집A
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    • 제30권11호
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    • pp.1392-1400
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    • 2006
  • Since the monolithic ceramic substrate was in introduced for automotive catalytic converters, the durability of the substrate has been a continuing requirement to reduce the emission, gas of vehicle. The substrate can occupy a volume as small as 82 $cm^3$ and as large as 8200 $cm^3$ to provide the required substrate for catalytic activity. The long-term durability varies with the size of the substrate from manufacture's point of view. Therefore this study presents that the response surface model using central composite design can explain size effect on the modulus of rupture in a cordierite ceramic monolithic substrate.

Monolithic zirconia framework으로 제작된 fixed detachable prostheses를 이용한 심미적인 임플란트 전악 수복 증례 (Esthetic Full Zirconia Fixed Detachable Implant-Retained Restorations Manufactured from Monolithic Zirconia : Clinical Report)

  • 홍준태;최유성;한세진;조인호
    • 구강회복응용과학지
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    • 제28권3호
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    • pp.253-268
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    • 2012
  • 수직적, 수평적 골흡수가 심한 환자에서 임플란트를 이용한 전악수복의 경우 경조직과 연조직 이식을 통해서 임플란트를 원하는 위치에 식립할 수도 있지만, 치은과 치아의 기능과 심미를 회복할 수 있는 fixed detachable prostheses를 대체 술식으로 사용할 수도 있다. 이러한 증례에서 다양한 재료가 수복물의 제작에 사용 가능하지만, metal/acrylic 보철물에서는 레진치아의 파절 및 탈락이 일어날 수 있고, metal/ceramic 혹은 zirconia/ceramic 보철물에서는 도재의 chipping이나 파절과 같은 문제가 발생할 수 있다. 이에 최근에 심미적이면서도 기능적인 보철수복을 위해 zirconia에 도재를 축성하지 않고 임상적으로 적용가능한 monolithic zirconia framework이 출시되어 사용되고 있다. 본 임상 증례는 심미적인 요구도가 높은 완전 무치악 환자에서 임플란트를 식립하고 chipping이나 파절의 위험을 감소시키기 위해 monolithic zirconia framework을 이용해 만들어진 complete fixed detachable 보철물을 이용한 수복에 대해 보고하고자 한다. 이번 증례에서 보철물은 심미적, 기능적으로 만족스러웠으며, 2년 간의 정기검사에서 임상적인 합병증은 보고되지 않았다.

Fracture resistance of implant- supported monolithic crowns cemented to zirconia hybrid-abutments: zirconia-based crowns vs. lithium disilicate crowns

  • Elshiyab, Shareen H;Nawafleh, Noor;Ochsner, Andreas;George, Roy
    • The Journal of Advanced Prosthodontics
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    • 제10권1호
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    • pp.65-72
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    • 2018
  • PURPOSE. The aim of this in vitro study was to investigate the fracture resistance under chewing simulation of implant-supported posterior restorations (crowns cemented to hybrid-abutments) made of different all-ceramic materials. MATERIALS AND METHODS. Monolithic zirconia (MZr) and monolithic lithium disilicate (MLD) crowns for mandibular first molar were fabricated using computer-aided design/computer-aided manufacturing technology and then cemented to zirconia hybrid-abutments (Ti-based). Each group was divided into two subgroups (n=10): (A) control group, crowns were subjected to single load to fracture; (B) test group, crowns underwent chewing simulation using multiple loads for 1.2 million cycles at 1.2 Hz with simultaneous thermocycling between $5^{\circ}C$ and $55^{\circ}C$. Data was statistically analyzed with one-way ANOVA and a Post-Hoc test. RESULTS. All tested crowns survived chewing simulation resulting in 100% survival rate. However, wear facets were observed on all the crowns at the occlusal contact point. Fracture load of monolithic lithium disilicate crowns was statistically significantly lower than that of monolithic zirconia crowns. Also, fracture load was significantly reduced in both of the all-ceramic materials after exposure to chewing simulation and thermocycling. Crowns of all test groups exhibited cohesive fracture within the monolithic crown structure only, and no abutment fractures or screw loosening were observed. CONCLUSION. When supported by implants, monolithic zirconia restorations cemented to hybrid abutments withstand masticatory forces. Also, fatigue loading accompanied by simultaneous thermocycling significantly reduces the strength of both of the all-ceramic materials. Moreover, further research is needed to define potentials, limits, and long-term serviceability of the materials and hybrid abutments.

Microcracking에 의한 세라믹 복합재료의 고인성화 특성 (Toughening Characteristic of Ceramic Composites by Microcracking)

  • 장병국;우상국
    • 한국재료학회지
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    • 제9권2호
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    • pp.132-138
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    • 1999
  • In order to investigate the toughening characteristic by microcrack formation in ceramic composites, $Al_2$O$_3$/(0~20)vol% YAG composites containing equiaxed second grains were fabricated using$ Al_2$$O_3$ during hot-pressing. AE(acoustic emission) measurements have been coupled with fracture toughness experiments of SENB method, to evaluate the microcrack formation and the improvement in fracture toughness of ceramic composites. Formation of microcrack was detected by Ae. The generation of AE events increased with increasing of load when load was applied at specimen. The AE events are generated mainly around at maximum load. Specially, the detected AE evetns of composites are many as compared with monolithic $Al_2$$O_3$. Fracture toughness of composites was improved than that of monolithic alumina. $Al_2$O$_3$/YAG composites exhibit main toughening effects by microcracking, results from mutual coalesence of microcracks being generated under applied load. However, there are few toughening mechanism like microcracking in monolithic alumina.

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$80Al_2O_3-20Al$ 복합재료의 내열충격성: 실험과 유한요소 해석 (Thermal Shock Resistance of $80Al_2O_3-20Al$ Composites: Experiments and Finite Element Analysis)

  • 김일수;신병철
    • 한국세라믹학회지
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    • 제37권3호
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    • pp.201-204
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    • 2000
  • Thermal shock resistance of 80Al2O3-20Al composite and monolithic alumina ceramics was compared. Fracture strength was measured by using a 4-pont bending test after quenching. Thermal stresses of the ceramics and ceramic-metal composites were calculated using a finite element analysis. The bending strength of the Al2O3 ceramics decreased catastropically after quenching from 20$0^{\circ}C$ to $0^{\circ}C$. The bending strength of the composite also decreased after quenching from 200~2$25^{\circ}C$, but the strength reduction was much smaller than for Al2O3. The maximum thermal stress occured in the monolithic alumina ceramics when exposed to a temperature difference of 20$0^{\circ}C$ was 0.758 GPa. The same amount of stress occured in the Al2O3-Al composite when the temperature difference of 205$^{\circ}C$ used.

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