• 제목/요약/키워드: Fractured Surface

검색결과 370건 처리시간 0.029초

암반의 불균질성을 고려한 불포화대 지하수 유동 평가 (Numerical Simulation of Groundwater Flow in Feterogenetic Rockmass of Unsaturated Condition)

  • 하재철;이정환;정재열;정해룡
    • 지질공학
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    • 제26권1호
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    • pp.87-99
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    • 2016
  • 본 연구에서는 단열을 포함하는 불포화 암반에서의 지하수 유동 흐름을 예측하기 위한 2차원 수치 모델링을 수행하였다. 특히, 불연속 단열망 모델링(Dscrete Fractured Network, DFN)을 통하여 도출된 투수계수의 분포를 나타내는 k-field를 모델링 입력변수로 적용하였다. 투수계수 차이는 불포화대에서 지하수의 이동속도 차이를 야기시키는 중요한 인자로 적용되었다. 연구지역의 지표 토양층으로부터 지하 대수층까지의 불포화대 깊이를 적용하여 지하수 유동 모델링의 초기조건을 실제와 유사하게 설정하였다. 강우의 지표 침투율은 인공구조물과 자연 토양층의 침투율 차이를 적용하여 실제 불포화 암반을 거쳐서 포화대까지 지하수의 이동흐름을 해석하고 시각화하였다. 특히, 오염물질의 이동 시작점이 될 수 있는 인공구조물의 하부에 모니터링 지점을 설정하여 실제 오염물질원이 지하수에 용해되어 불포화대를 이동할 때의 경로를 예측 하였으며 중력방향인 직하부로 이동하는 것을 확인되었다.

도재파절 양상에 따른 수종의 도재 수복용 레진의 결합력에 관한 실험적 연구 (A comparison of the shear bond strength between porcelain repair systems and fractured surface of porcelain-fused-to-metal restorations)

  • 최정원;한동후;정창모
    • 대한치과보철학회지
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    • 제28권2호
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    • pp.147-163
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    • 1990
  • Although dental porcelain demonstrates lasting esthetic results, it suffers from inherent brittle fractures. Various techniques and materials for intraoral porcelain repair has been suggested. This study investigated the in vitro shear strength of three porcelain repair systems according to aspects of the porcelain fractures. The purpose of this study was to evaluate the shear bond strength of three porcelain repair systems(All-bond, Clearfil, Scotchprime) according to fractured surface of porcelain - fused - to - metal restorations. For this study specimens were divided into five groups : group 1 represented fracture occurred at body porcelain layer, group 2 represented fracture occurred at opaque porcelain layer, group 3 represented fracture including 1/3 of metal exposure, group 4 represented fracture including 2/3 of metal exposure, and group 5 represented all metal surface was exposed. Specimens were stored in double deionized water(24Hr, $37^{\circ}C$) and thermocycling was performed(24Hr, 1080cycles), and subjected to a shear force parallel to the repair resin and porcelain interface by use of an University Testing Machine. The results of this study were obtained as follows : 1. In group 1 and 2, bond strength was relatively high, and bond strength showing reducing tendency as exposure of metal was increased. 2. In group 1, bond strength was relatively high, and no significant differences in porcelain repair system. 3. In group 2, 3 and 4, All-bond and Clearfil provided significantly higher bond strength than scotchprime. 4. In group 5, bond strength was the lowest among all groups and especially in case if Scotchprime. 5. Cohesive failure was observed in group 1 and 2, adhesive failure was observed in group 5, and cohesive / adhesive failures were observed in group 3 and 4.

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Sinfony 간접복합수지와 비귀금속합금간의 전단결합강도와 파절양상 (Shear Bond Strength and Failure Mode between Sinfony Indirect Composite Resin and Non Precious Metal)

  • 민병록;정인성
    • 대한치과기공학회지
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    • 제30권2호
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    • pp.79-86
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    • 2008
  • The purpose of this study was to investigate the effect retention element formed by metal surface treatment method on the bond strength of indirect composite resin and metal. The metal specimens were cast from Ni-Cr alloy($Rexillium^{(R)}$ III). They were divided into 5 groups by applied retention element: $50{\mu}m$ aluminium oxide sandblasting group, $250{\mu}m$ aluminium oxide sandblasting group, 0.2mm retention crystal group, 10% $H_{2}SO_{4}$ solution etching group, $110{\mu}m$ $Rocatec^{TM}$ Plus system group. Total 50 metal specimens were veneered with Sinfony indirect composite resin system. Specimens were tested for shear bond strength on an Instron universal testing machine and fracture mode of fractured specimens were analyzed by SEM and EDS. 1. 0.2 mm retention crystals were most effective in improving the resin-metal shear bond strength (p<0.05). 2. Sandblasting by $250{\mu}m$ aluminium oxide were more effective than sandblasting by $50{\mu}m$ aluminium oxide in improving the resin-metal shear bond strength(p<0.05). 3. Fracture mode of resin-metal fractured surface were cohesive failure mode in 0.2mm retention crystal, mixed failure mode in sandblasted specimens, etched specimens and the specimens sandblasted with $110{\mu}m$ $Rocatec^{TM}$ Plus system.

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단층파쇄대 규모 및 조우 조건에 따른 전력구 쉴드 TBM 터널의 거동 특성 분석 (The study on the effect of fracture zone and its orientation on the behavior of shield TBM cable tunnel)

  • 조원섭;송기일;김경열
    • 한국터널지하공간학회 논문집
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    • 제16권4호
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    • pp.403-415
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    • 2014
  • 최근, 기후변화에 따른 하절기 기온 상승으로 인하여 전력사용량이 급증하고 있다. 이에 따라 발전시설이 새로 준공되고 있으며, 생산된 전기를 도심지로 송전할 초고압 송전선로 시설의 필요성이 증가하고 있다. 쉴드 TBM을 이용한 기계화 터널 굴착공법은 기존의 재래식 공법에 비해 지반 침하와 지반에 전달되는 진동을 최소화 할 수 있는 장점이 있다. 도심지에서의 전력구터널 굴착을 위한 쉴드 TBM 공법이 증가함에도 불구하고, 전력구 쉴드 TBM 터널의 거동 분석에 관한 연구는 미비한 실정이다. 본 연구에서는 파쇄대를 포함하는 복합지반에서 파쇄대 너비, 각도에 따른 전력구 쉴드 TBM 터널의 거동 특성을 분석하고, 인터페이스 요소를 적용한 파쇄대와 연속체로 모델링한 파쇄대의 거동 특성을 비교하고자 한다. 쉴드 TBM을 이용한 터널 굴착은 3D FEM을 이용하여 시뮬레이션 하였다. 파쇄대의 방향과 크기의 변화에 따라 세그먼트 라이닝에 작용되는 축력, 전단력, 휨 모멘트를 검토하고 지표면에서의 연직변위를 분석하였다. FEM 해석으로 얻어진 결과와 안정성 분석에 기초하여, 전방의 파쇄대를 예측하여 터널 구조물의 안정성을 확보할 수 있다.

터널굴착중 굴착면 단층파쇄대와 지하수 용출 구간에서 단계별 변위 거동 특성 분석 (Analysis of displacement behavior in fractured fault and groundwater flow under tunnel excavation)

  • 김낙영;박건태;백승철;이강현;최진웅;허열
    • 한국터널지하공간학회 논문집
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    • 제19권1호
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    • pp.71-82
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    • 2017
  • 터널설계 및 시공 안정성을 확보하기 위해서는 필수적인 조건은 터널구간에 대한 세부적인 지반조사분석이다. 이러한 지반조사의 중요성은 터널구간에 단층파쇄대 분포와 규모 그리고 지하수 분포에 대한 분석을 위해 필요하다. 그러나 터널구간의 지형조건과 민원 등의 제한조건으로 터널설계시 지반조사를 수행하는데 어려운 경우에는 최소한의 조사를 수행한 결과를 활용하여 터널설계를 수행한다. 따라서 이러한 경우 터널 시공 중 단층파쇄대가 발생하는 경우에는 터널안정성 확보를 위해서 설계변경을 수행하여 보강공법을 결정하게 된다. 터널굴착면에 대한 보강시 가장 중요한 것은 신속한 보강을 수행하여 터널안정성을 확보하는 것인데 특히 굴착면에 지하수 용출이 발생하는 경우에는 더욱 신속한 보강이 필요하다. 본 연구에서는 터널굴착면에 단층파쇄대가 존재하고 있고 굴착 후 단층파쇄대로 인하여 변위가 발생한 상태에서 지하수 용출량이 급증한 경우의 붕락사례를 중심으로 단계별 거동특성을 분석하였다. 본 연구대상 터널은 1단계 변위가 수렴되지 않고 지속적으로 발생하여 보강조치를 하였고 그 이후 지하수 용출량의 증가로 인해 변위가 수렴되지 않고 2단계 변위가 발생하여 추가보강 작업중 3단계 변위발생 과정 중 지표면 함몰붕락이 발생한 것으로 분석되었다.

Glass ionomer cement 표면의 산부식 효과에 관한 연구 (THE EFFECT OF ACID ETCHING ON GLASS IONOMER CEMENT SURFACES)

  • 한승원;박상진;민병순;최호영;최기운
    • Restorative Dentistry and Endodontics
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    • 제18권1호
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    • pp.1-26
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    • 1993
  • The purpose of this study was to investigate the effect of acid etching on the surface appearance and fracture toughness of five glass ionomer cements. Five kinds of commercially available glass ionomer cements including chemical curing filling type, chemical curing lining type, chemical curing metal reinforced type, light curing tilling type and light curing lining type were used for this study. The specimens for SEM study were fabricated by treating each glass ionomer cement with either visible light curing or self curing after being inserted into a rubber mold (diameter 4mm, depth 1mm). Some of the specimens were etched with 37% phosphoric acid for 0, 15, 30, 60, go seconds, at 5 minutes, 1 hour and 1 day after mixing of powder and liquid. Unetched ones comprised the control group and the others were the experimental groups. The surface texture was examined by using scanning electron microscope at 20 kV. (S-2300, Hitachi Co., Japan). The specimens for fracture toughness were fabricated by curing of each glass ionomer cement previously inserted into a metal mold for the single edge notch specimen according to the ASTME399. They were subjected to a three-point bend test after etching for 0, 30, 60, and 90 seconds at 5 minutes-, 1 hour-and 1 day-lapse after the fabrication of the specimens. The plane strain fracture toughness ($K_{IC}$) was determined by three-point bend test which was conducted with cross-head speed of 0.5 mm/min using Instron universal testing machine (Model No. 1122) following seven days storage of the etched specimens under $37^{\circ}C$, 100% humidity condition. Following conclusions were drawn. 1. In unetched control group, crack was present, but the surface was generally smooth. 2. Deterioration of the surface appearance such as serious dissolving of gel matrix and loss of glass particles occured as the etching time was increased beyond 15 s following Immediate etching of chemical curing type of glass ionomer cements. 3. Etching after 1 h, and 1 d reduced surface damage, 15 s, and 30s etch gave rough surface appearance without loss of glass particle of chemical curing type of glass ionomer cements. 4. Light curing type glass ionomer cement was etched by acid, but there was no difference in surface appearances according to various waiting periods. 5. It was found that the value of plane stram fracture toughness of glass ionomer cements was highest in the light curing filling type as $1.79\;MNm^{-1.5}$ followed by the light curing lining type, chemical curing metal reinforced type, chemical curing filling type and chemical curing lining type. 6. The value of plane stram fracture toughness of the chemical curing lining type glass ionomer cement etched after 5 minutes was lower than those of the cement etched after 1 hour or day or unetched (P < 0.05). 7. Light curing glass ionomer cement showed Irregular fractured surface and chemical curing cement showed smooth fractured surface.

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척추교정 티타늄 앵커나사 파단 손상원인 분석 (Failure Analysis of Ti alloy Screws in Fixing Fractured Spines)

  • 최병학;김문규;김승언;심윤임;이영진;정효태;최원열
    • 대한금속재료학회지
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    • 제49권12호
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    • pp.983-988
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    • 2011
  • Failure analyses of the screws in spinal fixation devices were carried out. The fractured screws were retrieved from a patient who had spinal surgery in the thoracic vertebrae from number 10 to 15. The failure occurred one month after the removal of the braces. Microstructures and fracture surfaces were examined by optical and scanning electron microscopy. The microstructures of the screws corresponded to annealed Ti-6Al-4V bar. However, in the vicinity of the screw surface, there was an insufficient number of fine precipitates. Fracture surfaces showed typical fatigue failure modes. Regarding the fact that no machining defects were detected, fatigue crack initiation might have been caused by the lack of precipitates near the screw surfaces. Only the fourth of five fixed screws was severely stress-concentrated by the action of the spinal bones, while the stress of the 4th screw was decreased to half of its acceptable level when the screw was supplemented by one more, which might have been fixed in the 6th vertebra under the 5th position by the switching of its position. The stress simulation was conducted by ANSYS with 3D CAD of PRO/E in order to understand the stress concentration behavior and to provide an effective spinal surgery guide.

Application of rock mass index in the prediction of mine water inrush and grouting quantity

  • Zhao, Jinhai;Liu, Qi;Jiang, Changbao;Defeng, Wang
    • Geomechanics and Engineering
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    • 제30권6호
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    • pp.503-515
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    • 2022
  • The permeability coefficient is an essential parameter for the study of seepage flow in fractured rock mass. This paper discusses the feasibility and application value of using readily available RQD (rock quality index) data to estimate mine water inflow and grouting quantity. Firstly, the influence of different fracture frequencies on permeability in a unit area was explored by combining numerical simulation and experiment, and the relationship between fracture frequencies and pressure and flow velocity at the monitoring point in fractured rock mass was obtained. Then, the stochastic function generation program was used to establish the flow analysis model in fractured rock mass to explore the relationship between flow velocity, pressure and analyze the universal law between fracture frequency and permeability. The concepts of fracture width and connectivity are introduced to modify the permeability calculation formula and grouting formula. Finally, based on the on-site grouting water control example, the rock mass quality index is used to estimate the mine water inflow and the grouting quantity. The results show that it is feasible to estimate the fracture frequency and then calculate the permeability coefficient by RQD. The relationship between fracture frequency and RQD is in accordance with exponential function, and the relationship between structure surface frequency and permeability is also in accordance with exponential function. The calculation results are in good agreement with the field monitoring results, which verifies the rationality of the calculation method. The relationship between the rock mass RQD index and the rock mass permeability established in this paper can be used to invert the mechanical parameters of the rock mass or to judge the permeability and safety of the rock mass by using the mechanical parameters of the rock mass, which is of great significance to the prediction of mine water inflow and the safety evaluation of water inrush disaster management.

파괴표면분석을 통한 WC-Co복합재료의 Fracture Toughness측정방법과 Failure Behavior (Fracture Toughness and Failure Behavior of WC-Co Composites by Fracture Surface Analysis)

  • 한동빈
    • 한국세라믹학회지
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    • 제26권5호
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    • pp.645-654
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    • 1989
  • Specimens of WC-Co were indented to measure the resulting crack size and unindented samples were fractured in 3-point flexure to obtain the strength and to measure characteristic features on the fracture surface. Fracture toughness was determined using fractography and compared to those determined using identation techniques. We show that principles of fracture mechanics can be applied WC-Co composites and can be used to analyze the fracture process. The fracture surfaces were examined by scanning electron microscopy and optical microscopy. Characteristic feature observed in glasses, single crystals and polycrystalline materials known as mirror, mist, hackle, and crack branching were identified for these composites. We discuss the importance of fracture surface analysis in determining the failure-initiating sources and the failure behaviorof WC-Co composites.

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피로하중을 받는 터빈 블레이드의 X선 프랙토그래픽에 관한 연구 (A Study on the X-Ray Fractography of Turbine Blade under Fatigue Load)

  • 홍순혁;이동우;조석수;주원식
    • 한국정밀공학회지
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    • 제19권2호
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    • pp.65-71
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    • 2002
  • Turbine blade is subject to cyclic bending force by steam pressure. Stress analysis by fractography is already established technology as means far seeking cause of fracture and has been widely employed. In the X-ray frctography, plastic deformation and residual stress near the fracture surface can be determined and information of internal structure of material can be obtained. Therefore, to find a fracture mechanism of torsion-mounted blade in nuclear power plant, based on the information from the fracture surface obtained by fatigue test, the correlation of X-ray parameter and fracture mechanics parameter was determined and then the stress intensity factor to actual broken turbine blade was predicted.