• 제목/요약/키워드: three-point flexural test

검색결과 124건 처리시간 0.03초

3종의 간접수복용 복합레진의 굴곡강도 비교 및 표면관찰 (Evaluation of Flexural strength and surface porosity of three indirect composite resins)

  • 김준태;박진영;김웅철;김지환
    • 대한치과기공학회지
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    • 제39권1호
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    • pp.9-16
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    • 2017
  • Purpose: The purpose of this study was to evaluate flexural strength, composite surface and fractured surface of three different indirect composite resins. Methods: Fifteen bar-shaped specimens ($25mm{\times}2mm{\times}2mm$) were fabricated for each FL group (Flow type and Light curing) and PLP group (Putty type and Light, Pressure curing) and PL group (Putty type and Light curing) according to manufacturer's instructions and ISO 10477. Fabricated specimens were stored in the distilled water for 24 hours at the temperature of $37^{\circ}C$. Three-point bending strength test was performed to measure flexural strength using universal testing machine at a crosshead speed of 1mm/min (ISO 10477). Surface and fractured surface of specimens were observed by digital microscope. Results were analyzed with Kruskal-wallis tests (${\alpha}=0.05$). Results: Mean (SD) of three different indirect composite resins were 83.38 (6.67) MPa for FL group, 139.90(16.53) MPa for PLP group and 171.72(16.74) MPa for PL group. Flexural strength were statistically significant (p<0.05). Differences were not observed at fractured surface among three groups. However, many pores over $100{\mu}m$ were observed at PL group in observing surface of specimen. Conclusion: Flexural strength of composite resins was affected by second polymerization method and content of inorganic filler.

Influence of Angle Ply Orientation on the Flexural Strength of Basalt and Carbon Fiber Reinforced Hybrid Composites

  • Mengal, Ali Nawaz;Karuppanan, Saravanan
    • Composites Research
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    • 제28권1호
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    • pp.1-5
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    • 2015
  • In this paper the influence of fiber orientation of basalt and carbon inter-ply fabrics on the flexural properties of hybrid composite laminates was experimentally investigated. Four types of basalt/carbon/epoxy inter-ply hybrid composite laminates with varying angle ply orientation of reinforced basalt fiber and fixed orientation of carbon fiber were fabricated using hand lay-up technique. Three point bending test was performed according to ASTM 7264. The fracture surface analysis was carried out by scanning electron microscope (SEM). The results obtained from the four laminates were compared. Lay-up pattern of $[0B/+30B/-30B/0C]_S$ exhibits the best properties in terms of flexural strength and flexural modulus. Scanning electron microscopy results on the fracture surface showed that the interfacial de-bonding between the fibers and epoxy resin is a dominant fracture mode for all fiber lay-up schemes.

SSPCM 혼입 콘크리트의 역학적 성능 기반 배합설계기법 연구 (Investigation of Mix Design Method in Concrete Mixed with SSPCM Based on Mechanical Behaviors)

  • 민해원;김희선
    • 복합신소재구조학회 논문집
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    • 제6권2호
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    • pp.1-7
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    • 2015
  • As energy consumption of building and the reduction of carbon dioxide emissions have been emphasized, phase change materials(PCM) have been introduced as building materials due to its high heat storage performance. Using shape-stabilizing technique, octadecane/xGnP shape-stabilized PCM(SSPCM) can prevent leakage and improve heat storage performance. The objectives of this study are to propose mix design method of concrete mixed with SSPCM and to evaluate mechanical behaviors of the concrete mixed with SSPCM manufactured according to the proposed mix design. Based on the previously reported material test result, the existing mix design of plain concrete(Concrete standard specification, 2009) is modified to consider reduction of strength in concrete due to the addition of SSPCM. To verify the proposed mix design, specimens are fabricated according to the proposed mix design and axial strength tests and three-point loading tests are performed. Test results show that compressive strengths of the tested specimens reach the designed strength even when two different mix ratios of SSPCM are used. From three-point loading tests, flexural stresses decrease as mix ratio of SSPCM increases.

커플러 이음 철근을 사용한 철근콘크리트 보의 휨 거동에 대한 실험적 연구 (An Experimental Research on the Flexural Behavior of Concrete Beams with Lock Joint Coupler Bars)

  • 박선규;이괄;고원준
    • 한국구조물진단유지관리공학회 논문집
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    • 제4권3호
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    • pp.197-204
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    • 2000
  • Tensile strength (stress) of bar splice is important in the research of mechanical behavior of reinforced concrete structures-beam, column etc.- with bar splice. The purpose of this research is to evaluate the flexural behavior - deflection of beam specimens, strain of main bars - of reinforced concrete beam with Lock Joint Coupler. To make a comparative research, reinforced concrete beam specimens with normal deformed bar and lap splice are tested and analyzed. Test results, Comparing a deflection of three types flexural specimens, a flexural specimen with Lock Joint Coupler is 40% greater than the other flexural specimens. At the center of flexural specimen, the strain of main bar(D29) with lock joint coupler is 50% less, and vice versa, at the point of 14cm far from the center of flexural specimen, the strain of main bar(D29) with lock joint coupler is 9% larger than the strain of main bar(D29) which calculated using the classical flexure theory. A discords, between a deflection behavior of the flexural specimens and a strain of the main bar, are caused by the difference of strain between the lock joint coupler and main bar, near the lock joint coupler. So, additional research is need to verify as stated above discords.

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플라스마 처리된 폴리에틸렌 섬유의 적용 부위가 복합 레진의 굴곡 강도에 미치는 영향 (THE EFFECT OF PLASMA-TREATED POLYETHYLENE FIBER ON THE FLEXURAL STRENGTH OF COMPOSITE RESIN IN VARIOUS APPLIED PORTIONS)

  • 오용진;오남식;이근우
    • 대한치과보철학회지
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    • 제35권2호
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    • pp.401-412
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    • 1997
  • There has been many researches aimed at reinforcing the strength of resin, and these have led to the development and use of numerous materials in recent years. A case in point, is the recent development of plasma-treated polyethylene fiber which has been used mainly in fixed provisional restoration to reduce the incidence of fractures. This study aims at assessing whether plasma-treated polyethylene fiber as applied to composite resin is effective in increasing the flexural strength and how applied portions affect this. Twenty-four applied and eight unapplied composite resin bars were fabricated. Twenty-four applied specimens were divided into three groups. Plasma treated polyethylene fiber was applied to the groups each with different portions of composite resin. In the first group, plasma-treated polyethylene fiber was not applied. In the second group, fiber was applied to the compression side of composite resin. Fiber was applied to the tension side in the third group, while fiber was embedded in the tension side of the composite resin in the fourth group. Each specimen was tested by use of a three-point bending strength test with an instron testing machine, and the flexural strength was calculated. The following results were obtained. : 1. Under the conditions of this study, the third and fourth groups demonstrated a statistically greater flexural strength compared to the first and second groups. 2. But there was no statistically significant difference, not only between the first group and the second group, but also between the third group and the fourth group. Taken together, it can be concluded that plasma-treated polyethylene fiber applied to composite resin is an effective method in increasing flexural strength, and the best way of increasing the flexural strength is by application of plasma-treated polyethylene fiber to the tension side, or the embedding of same in composite resin. It must be mentioned however that this test used a static single-load test method. This method determined the maximum stresses that could be tolerated, but this might not be valid where the prediction of clinical failure is concerned. In order therefore to clinically utilize plasma-treated polyethylene fiber to reinforce the composite resin, it is suggested that a further study which considers the various loads be undertaken.

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여러 레진계 치아고정 재료의 굴곡강도 및 탄성계수 비교 (Comparison of flexural strength and modulus of elasticity in several resinous teeth splinting materials)

  • 유제인;김수연;;김진우;박세희;조경모
    • 구강회복응용과학지
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    • 제32권3호
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    • pp.169-175
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    • 2016
  • 목적: 본 연구의 목적은 수종의 레진계 치아고정 재료의 굴곡강도와 탄성계수를 비교 분석하는 것이다. 연구 재료 및 방법: 레진계 치아고정 재료로 Super-Bond C&B (SB), G-FIX (GF), G-aenial Universal Flo (GU), Filtek Z350 XT (FZ)를 이용하여 각 군당 15개씩 총 60개의 시편을 제작하였다. 3점 굽힘 시험으로 측정된 값에 따라 굴곡강도와 탄성계수를 계산하였다. 실험값은 One-way ANOVA test로 분석하고, Scheffe's test로 사후 검정하였다. 결과: 본 연구의 결과 SB는 다른 재료들과 비교 시 가장 낮은 굴곡강도를 보였으며 GF, GU, FZ는 비슷하게 높은 굴곡강도를 보였다. 탄성계수의 경우 SB가 가장 낮은 값을 보였고 GF는 SB보다는 높지만 GU와 FZ보다는 낮은 탄성계수를 보였으며 GU와 FZ는 유의하게 높은 탄성계수를 보였다. 결론: 동요치 고정을 목적으로 새로 개발된 GU (G-FIX)는 유동성 복합 레진과 수복용 복합 레진과 같이 높은 강도를 보이며 잘 파절되지 않으면서도 상대적으로 유연한 성질을 보여 동요치 고정에 유리할 것으로 사료된다.

진공성형 제작 모델 복합소재 바닥판의 실험적 휨 거동특성 분석 (Flexural Characteristics of Model Composite Deck Fabricated with VARTM)

  • 이성우
    • 한국전산구조공학회논문집
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    • 제18권4호통권70호
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    • pp.417-426
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    • 2005
  • 최근 경량, 고강도, 내부식, 고내구성 특성 등의 여러 가지 이점이 있는 복합소재 교량 바닥판에 대한 관심이 고조되고 있다. 본 연구에서는 유리섬유와 불포화 폴리에스터를 사용하여 진공성형제조기법으로 파형코어 복합소재 모델 바닥판을 제작하였다. 모델 바닥판은 제형, 박스형, 삼각형 단면을 고려하였고, 각각 강축과 약축에 대한 시험 모델에 대하여 3점 휨 시험을 실시하였다. 시험 결과로부터 얻은 하중-변위곡선, 하중-변형률 곡선, 파괴모드 등을 분석하여 복합소재 바닥판의 휨 거동특성을 파악하고자 하였으며, 파형코어 복합소재 바닥판을 교량 바닥판으로 적용할 수 있는 가능성을 검토하였다. 또한 등가 중량으로 환산한 강축과 약축 모델에 대해 휨 거동 특성을 비교하여 가장 효과적이고 경제적인 단면을 찾고자 하였다.

유리 섬유의 첨가에 따른 자가중합 및 열중합 의치상용 레진의 강화효과 (Effect of Reinforcement of Glass fiber on Auto and Heat polymerized denture base resin)

  • 유상희;김연수;최운재;전종남
    • 대한치과기공학회지
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    • 제31권4호
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    • pp.37-43
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    • 2009
  • This study evaluated the effect of concentration of glass fiber reinforcement on the flexural properties of auto and heat polymerized denture base resin. The test specimens($64{\times}10{\times}3.3mm$) were made of auto and heat polymerized resin(Vertex, Dentimax, Netherlands). Glass fiber(ER 270FW, Hankuk Fiber Glass, Korea) were used to reinforce the denture base resin. The 2.6%, 5.3% and 7.9% volume pre-impregnated fiber were located at the bottom of specimen. The test specimens(n=7) of each group were stored in distilled water at $37^{\circ}C$ for 50 hours before test. The flexural strength and modulus were measured by an universal testing machine(Z020, Zwick, Germany) at a crosshead speed of 5 mm/min in a three-point bending mode. The data was analyzed by one-way ANOVA and the Duncan's multiple range test(${\alpha}$=0.05). The difference of auto polymerized resin groups and heat polymerized resin groups were statistically analyzed by t-test(${\alpha}$=0.05). Glass fiber showed significant reinforcing effects on auto and heat polymerized resin. For flexural strength and modulus, auto polymerized resin was the highest in 7.9% volume, while heat polymerized resin was the highest in 5.3% volume. In this study, glass fiber at 7.9% volume ratio showed most effective reinforcing effect on auto polymerized resin and glass fiber at 5.3% volume ratio showed most effective reinforcing effect on heat polymerized resin in terms of flexural strength and flexural modulus.

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Belite 시멘트를 사용한 고강도 철근콘크리트 보의 휨 거동에 관한 실험연구 (An Experimental Study on the Flexural Behavior of Reinforced High-Strength Concrete Beams Using Belite Cement)

  • 한상훈;구봉근;김기수;조홍동;전채만
    • 콘크리트학회지
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    • 제11권1호
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    • pp.221-230
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    • 1999
  • 본 연구는 Belite를 사용한 고강도 철근콘크리트 보의 휨 거동에 관한 연구이다. 이를 위하여 Belite 시험체의 (1) 하중-처짐 관계와 시험체 중앙단면의 변형률 분호, (2) 하중-중립축관계와 모멘트-곡률 관계, (3) 연성평가, (4) 기존규준식과 실험값에 의한 휨강도 비교 등을 통하여 1종 보통 포트랜드 시멘트를 사용한 기준시험체(OPC)의 실험결과와 비교분석 하였다. 주요 실험변수는 콘크리트의 강도(350, 600kgf/$cm^2$)와 철근비(2D-13, 2D-16, 2D-19, 2D-22 and 2D-25)로 하였으며, 3점 재하를 실시하였다. 실험결과, 고강도${\cdot}$고유동 Belite 콘크리트를 사용한 본 실험의 경우, 전반적으로 1종 콘크리트의 휨거동 특성과 비슷한 경향을 보였다.

Effect of repair methods and materials on the flexural strength of 3D-printed denture base resin

  • Viotto, Hamile Emanuella do Carmo;Silva, Marcela Dantas Dias;Nunes, Thais Soares Bezerra Santos;Coelho, Sabrina Romao Goncalves;Pero, Ana Carolina
    • The Journal of Advanced Prosthodontics
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    • 제14권5호
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    • pp.305-314
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    • 2022
  • PURPOSE. The aim of this study was to evaluate the flexural strength of a 3D-printed denture base resin (Cosmos Denture), after different immediate repair techniques with surface treatments and thermocycling. MATERIALS AND METHODS. Rectangular 3D-printed denture base resin (Cosmos Denture) specimens (N = 130) were thermocycled (5,000 cycles, 5℃ and 55℃) before and after the different repair techniques (n = 10 per group) using an autopolymerized acrylic resin (Jet, J) or a hard relining resin (Soft Confort, SC), and different surface treatments: Jet resin monomer for 180 s (MMA), blasting with aluminum oxide (JAT) or erbium: yttrium-aluminum-garnet laser (L). The control group were intact specimens. A three-point flexural strength test was performed, and data (MPa) were analyzed by ANOVA and Games-Howell post hoc test (α = 0.05). Each failure was observed and classified through stereomicroscope images and the surface treatments were viewed by scanning electron microscope (SEM). RESULTS. Control group showed the highest mean of flexural strength, statistically different from the other groups (P < .001), followed by MMA+J group. The groups with L treatment were statistically similar to the MMA groups (P > .05). The JAT+J group was better than the SC and JAT+SC groups (P < .05), but similar to the other groups (P > .05). Adhesive failures were most observed in JAT groups, especially when repaired with SC. The SEM images showed surface changes for all treatments, except JAT alone. CONCLUSION. Denture bases fabricated with 3D-printed resin should be preferably repaired with MMA+J. SC and JAT+SC showed the worst results. Blasting impaired the adhesion of the SC resin.