• 제목/요약/키워드: Indentation Technique

검색결과 146건 처리시간 0.022초

액상침투법을 이용한 $Al_2O_3/TZP$ 복합체의 제조 및 특성 (Preparation and Characteristics of $Al_2O_3/TZP$ Composites Using Liquid Infiltration Technique)

  • 양태영;이윤복;김영우;오기동;박홍채
    • 한국재료학회지
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    • 제10권5호
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    • pp.321-327
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    • 2000
  • 다공성 알루미나 소결체내부로 3Y-TZP 및 12Ce-TZP 전구체를 각각 액상침투시킴으로써 2종류의 $Al_2O_3/TZP$복합체를 제조하였다. 소량의 (~11.0 wt%) TZP의 첨가는 Al2O3소결체 ($1600^{\circ}C$, 2시간)의 강도 (19~59%)와 파괴인성(14~157%)을 증가시켰다. 3Y-TZP의 첨가는 복합체의 강도의 향상에 12Ce-TZP의 첨가는 인성의 향상에 보다 효과적이었다. 침투도니 TZP는 복합체의 내부보다 표면에 집중되었으며, 그 결과 이곳에서의 입성장에 빨랐고 $Al_2O_3$의입성장 억제효과도 상대적으로 뛰어났다. 입계 및 입내균열전파가 일어났으나 $Al_2O_3/12Ce-TZP$의 경우가 $Al_2O_3/3Y-TZP$에 비하여 입계파괴가 우세하였다

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ADINA 구조해석을 이용한 PCT 거더교 좌굴 평가에 관한 연구 (Evaluation of Buckling in Prestressed Composite Truss Girder using ADINA Structure Analysis)

  • 김의수;김종혁
    • 대한기계학회논문집A
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    • 제37권11호
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    • pp.1415-1421
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    • 2013
  • 최근에는 이러한 법공학 분야에 유한요소법 및 유한체적법을 이용한 다양한 시뮬레이션 기법을 활용하여 안전사고 및 재난사고에 대한 법적 책임문제를 해명하고 보다 정확한 원인분석을 통해 원인을 규명하고 있는 추세이다. 본 연구에서는 ADINA 구조해석을 이용하여 단경교 거더교 붕괴사고에 관한 좌굴 원인분석을 수행하였다. 본 연구에서 다루는 사고는 단경교 거더교 신축 중 상현 슬래브 구성을 위한 콘크리트 타설 중 교량이 붕괴된 사고로 원설계 공법에서 가설 공법이 변경되었고 상현 콘크리트 블록 및 격벽 콘크리트 등을 미시공한 상태에서 그 다음 단계인 상현 슬래브 콘크리트 타설을 진행함으로써 구조적 불안정을 가져와 거더가 좌굴이 발생하여 붕괴된 사고이다. 사고 재현 실험이 불가한 경우 F.E.M 을 이용한 구조안정성 비교 평가는 정확한 공학적 사고의 원인을 규명하는데 효과적인 방법이다.

Influence of the MgO-TiO2 Co-Additive Content on the Phase Formation, Microstructure and Fracture Toughness of MgO-TiO2-Reinforced Dental Porcelain Nanocomposites

  • Waiwong, Ranida;Ananta, Supon;Pisitanusorn, Attavit
    • 한국세라믹학회지
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    • 제54권2호
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    • pp.141-149
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    • 2017
  • The influence of the co-additive concentration (0 - 45 wt% with an interval of 5 wt%) of MgO-$TiO_2$ on the phase formation, microstructure and fracture toughness of MgO-$TiO_2$-reinforced dental porcelain nanocomposites derived from a one-step sintering technique were examined using a combination of X-ray diffraction, scanning electron microscopy and Vickers indentation. It was found that MgO-$TiO_2$-reinforced dental porcelain nanocomposites exhibited significantly higher fracture toughness values than those observed in single-additive (MgO or $TiO_2$)-reinforced dental porcelain composites at any given sintering temperature. The amount of MgO-$TiO_2$ as a co-additive was found to be one of the key factors controlling the phase formation, microstructure and fracture toughness of these nanocomposites. It is likely that 30 wt% of MgO-$TiO_2$ as a co-additive is the optimal amount for $MgTi_2O_5$ and $Mg_2SiO_4$ crystalline phase formation to obtain the maximum relative density (96.80%) and fracture toughness ($2.60{\pm}0.07MPa{\cdot}m^{1/2}$) at a sintering temperature of $1000^{\circ}C$.

극초단파 레이저 강화 유리 기판의 기계적 특성평가(1) (Evaluation of Mechanical Properties of Glass Substrate Strengthened by Ulatrashort Laser Pulse(1))

  • 문필용;윤덕기;이강택;윤병헌;조성학;류봉기
    • 한국재료학회지
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    • 제15권12호
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    • pp.796-801
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    • 2005
  • In order to reduce the weight of glass in architecture, automobile, bottles, displays, a new technique that can strengthen glass was developed using various method. Generally, the strength achieved of glass-ceramics is higher as is 1.he fracture toughness by the formation of a crystalline phase inside glass. In this study, $70SiO_2-20Na_2O-10CaO-10TiO_2$ glasses were irradiated to strengthen by heterogeneous phase using femto-second laser pulse. Laser pulse irradiation of samples was analyzed by DTA, TMA, XRD, nano-indenter and SEM. Samples irradiated by laser had lower value$(3\~4\times10^{-3}Pa)$ of nano indentation which related with mother glass$(8\times10-3Pa)$ than values. Microcracks were occurred around laser irradiation area when femtosecond laser with the repetition rate of 1kHz was used as the light source to induced heterogeneous phase.

배향된 $\beta-Si_3N_4$ Whisker를 함유하는 $Si_3N_4$ 복합체의 기계적 특성에 미치는 소결조제와 소결온도의 영향 (Effect of Sintering Additives and Sintering Temperature on Mechanical Properties of the $Si_3N_4$ Composites Containing Aligned $\beta-Si_3N_4$ Whisker)

  • 김창원;최명제;박찬;박동수
    • 한국세라믹학회지
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    • 제37권1호
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    • pp.21-25
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    • 2000
  • Gas pressure sintered silicon nitride based composites with 5 wt% $\beta$-Si3N4 whiskers were prepared, and the variations depending on sintering additives and sintering temperature were studied. Sintering additives were 6 wt% Y2O3-1 wt% MgO(6Y1M), 6 wt%Y2O3-1 wt% Al2O3(6Y1A), 6 wt% Y2O3-1 wt% SiO2(6Y1S), and whiskers were unidirectionally oriented by a modified tape casting technique. Samples were fully densified by gas pressure sintering at 2148 K and 2273 K. As the sintering temperature increased, the size of large elongated grains was increased. Three point flexural strength of 6Y1M and 6Y1M samples was higher than that of 6Y1S sample, and the strength decreased as the sintering temperature increased. The indentation crack length became shorter for the sample sintered at higher temperature, and the difference between the cracks length parallel to and normal to the direction of whisker alignment was decreased. In case of cracks 45$^{\circ}$off the whisker alignment direction, the crack length anisotropy disappeared.

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나노결정립 CoCrFeMnNi 고엔트로피합금의 열처리에 따른 이차상 형성 및 나노압입 크리프 거동 변화 연구 (Effects of Heat Treatment on Secondary Phase Formation and Nanoindentation Creep Behavior of Nanocrystalline CoCrFeMnNi High-entropy alloy)

  • 이동현;장재일
    • 열처리공학회지
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    • 제36권3호
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    • pp.128-136
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    • 2023
  • In this study, the effects of heat treatment on the nano-scale creep behavior of CoCrFeMnNi high-entropy alloy (HEA) processed by high-pressure torsion (HPT) was investigated through nanoindentation technique. Nanoindentation experiments with a Berkovich indenter were performed on HPT-processed alloy subjected to heat treatment at 450℃, revealing that the hardness of the HPT-processed alloy (HPT sample) significantly increased with the heat treatment time. The heat treatment-induced microstructural change in HPT-processed alloy was analyzed using transmission electron microscopy, which showed the nano-sized Cr-, NiMn-, and FeCo-rich phases were formed in the HPT-processed alloy subjected to 10 hours of heat treatment (HPT+10A sample). To compare the creep behavior of HPT and HPT+10A samples, constant load nanoindentation creep experiments were performed using spherical indentation indenters with two different radii. It was revealed that the predominant mechanism for creep highly depended on the applied stress level. At low stress level, both HPT and HPT+10A samples were dominated by Coble creep. At high stress level, however, the mechanism transformed to dislocation creep for HPT sample, but continued to be Coble creep for HPT+10A sample, leading to higher creep resistance in the HPT+10A sample.