• 제목/요약/키워드: Porous Skeleton

검색결과 33건 처리시간 0.021초

Coupled Finite Element Analysis for Semi-implicit Linear and Fully-implicit Nonlinear Scheme in Partially Saturated Porous Medium

  • Kim, Jae-Hong;Regueiro, Richard A.
    • 토지주택연구
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    • 제1권1호
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    • pp.59-65
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    • 2010
  • The paper presents a comparison between a semi-implicit time integration linear finite element implementation and fully-implicit nonlinear Newton-Raphson finite element implementation of a triphasic small strain mixture formulation of an elastic partially saturated porous medium. The pore air phase pressure pa is assumed atmospheric, i.e., $p_a$ = 0, although the formulation and implementation are general to handle increase in pore air pressure as a result of loading, if needed. The solid skeleton phase is assumed linear isotropic elastic and partially saturated 'consolidation' in the presence of surface infiltration and traction is simulated. The verification of the implementation against an analytical solution for partially saturated pore water flow (no deformation) and comparison between the two implementations is presented and the important of the porosity-dependent nature of the partially saturated permeability is assessed on comparison with a commercial code for the partially saturated flow with deformation. As a result, the response of partially saturated permeability subjected to the porosity influences on the saturation of a soil, and the different behaviors of the partially saturated soil between staggered and monolithic coupled programs is worth of attention because the negative pore water pressure in the partially saturated soil depends on the difference.

AlN-SiO2-Al2O3계로부터 AlN-Polytypes의 제조 (Synthesis of AlN-SiO2-Al2O3 System)

  • 박용갑;장병국
    • 한국세라믹학회지
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    • 제26권1호
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    • pp.31-36
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    • 1989
  • In order to synthesize AlN-polytypes from AlN-SiO2-Al2O3 system, composition A (AlN/SiO2/Al2O3=1/0.3/0.05, mole ratio) and composition B(AlN-SiO2-Al2O3=1/0.2/0.05, mole ratio) were used. AlN-polytypes were produced by nitriding the mixture at 175$0^{\circ}C$~190$0^{\circ}C$ under N2 atmosphere. For lower reaction temperature, 15R phase was produced and in the case of higher reaction temperature, AlN phase was only produced. As each composition was heated at 185$0^{\circ}C$ in N2 atmosphere, produced main phases were 15R phase for composition A and 21R phase for composition B respectively. The fracture surfaces of produced reactants showed porous skeleton structure.

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콘크리트 재료손상에 대한 유한요소상의 의미 (Numerical Implication of Concrete Material Damage at the Finite Element Levels)

  • 이인규;노영숙;김우
    • 콘크리트학회논문집
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    • 제18권1호
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    • pp.37-46
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    • 2006
  • 재료구성관계의 범위에서의 강성 성능저하의 스펙트럼 특성을 기본 유한요소법을 이용하여 개별 유한요소와 그의 조합행렬에 대한 스펙트럼 분석을 상호 비교하여 수치적인 의미를 확인하고자 한다. 본 논문의 주 관심부분은 탄성 강성특성의 저하로 인한 콘크리트 재료의 손상정도를 다양한 스펙트럼 특성인 최소고유치의 변화, 유효계수의 변화 등의 시나리오를 가지고 해의 유일성 여부, 특이성의 표현 여부 그리고 변분유계와의 근접여부 등을 관찰하였다. 1차원 및 2차원 예제가 제시되었으며 강성이 서로 다른 혼입재를 가진 2상복합체의 형식으로 콘크리트의 골재, 매트릭스를 표현하고 상호연관성 및 기하학적 영향을 고려하였다. 더불어 2차원 탄성계면요소를 이용하여 골재와 매트릭스 사이에 존재하는 약한 고리인 계면을 묘사하고 이들 계면의 탄성계수의 성능저하로 인한 전체 구조계의 영향 등을 분석, 비교하였다.

Fe/Ni 합금전착에 의한 다공성 그물군조 방열재료의 제조 연구 (Fabrication of Porous Reticular Metal by Electrodeposition of Fe/Ni Alloy for Heat Dissipation Materials)

  • 이화영;이관희;정원용
    • 전기화학회지
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    • 제5권3호
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    • pp.125-130
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    • 2002
  • 다공성 그물구조 금속을 반도체 칩 방열재료로써 활용하기 위한 실험을 실시하였다. 이를 위해 다공성 그물구조 구리와 반도체 칩 사이의 열팽창 차이를 최소화하기 위한 시도로써 다공성 구리에 대한 Fe/Ni 합금전착을 수행하였다. Fe/Ni 합금전착 실험으로 표준 Hull Cell을 구성하고 전류밀도 분포에 따른 Fe/Ni 합금층 내의 조성변화를 관찰하였으며, 실험결과 합금전착시 이상공석현상으로 인하여 전해액의 교반정도에 따라 합금층 조성이 크게 영향을 받는 것으로 나타났다. 본 실험에서는 paddle type 교반기를 사용하여 전해질의 확산을 제어하는 방법으로 원하는 조성의 Fe/Ni 합금층을 얻을 수 있었으며, 얻어진 Fe/Ni 후막을 대상으로 TMA 열분석을 실시한 결과 구리에 비해 훨씬 낮은 열팽창율을 보이는 것으로 나타났다. 또한, 본 실험에서 Fe/Ni 합금전착을 통하여 제작한 다공성 그물구조 금속을 대상으로 방열성능을 측정한 결과 구리 평판 대비 최대 2배 이상의 방열성능을 보여 반도체 칩 방열재료로의 활용 가능성을 높여 주었다.

Preparation of Co3O4/NF Anode for Lithium-ion Batteries

  • Tian, Shiyi;Li, Botao;Zhang, Bochao;Wang, Yang;Yang, Xu;Ye, Han;Xia, Zhijie;Zheng, Guoxu
    • Journal of Electrochemical Science and Technology
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    • 제11권4호
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    • pp.384-391
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    • 2020
  • Due to its characteristics of light weight, high energy density, good safety, long service life, no memory effect, and environmental friendliness, lithium-ion batteries (LIBs) are widely used in various portable electronic products. The capacity and performance of LIBs largely depend on the performance of electrode materials. Therefore, the development of better positive and negative materials is the focus of current research. The application of metal organic framework materials (MOFs) derivatives in energy storage has attracted much attention and research. Using MOFs as precursors, porous metal oxides and porous carbon materials with controllable structure can be obtained. In this paper, rod-shaped Co-MOF-74 was grown on Ni Foam (NF) by hydrothermal method, and then Co-MOF-74/NF precursor was heat-treated to obtain rodshaped Co3O4/NF. Ni Foam was skeleton structured, which effectively relieved. The change of internal stress changes and destroys the structural volume of the electrode material and reduces the capacity attenuation. Co3O4/NF composite material has a specific discharge capacity of up to 1858 mA h/g for the first time, and a reversible capacity of up to 902.4 mA h/g at a current density of 200 mA/g, and has excellent rate and impedance performance. The synthesis strategy reported in this article opens the way to design high-performance electrodes for energy storage and electrochemical catalysis.

유체포화 다공매체의 단계적 굴착해석을 위한 유한요소해석방법 (Finite Element Analysis for Incremental Excavation in Fluid-Saturated Porous Media)

  • 구정회;홍순조;김문겸;황학주
    • 대한토목학회논문집
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    • 제13권5호
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    • pp.109-122
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    • 1993
  • 유체포화 다공매체에서의 단계적 굴착시 형상변화로 인한 구조거동을 시간종속적 배수이론으로 예측하기 위한 유한요소해석방법을 제시하였다 시간종속적 배수거동을 고려한 유한요소방정식을 유도하기 위하여 Biot의 방정식을 사용하였다. 이론해가 존재하는 재하 하중에 의한 시간종속적 배수거동 문제의 해석과 완전배수거동시 1단계 굴착과 다단계 굴착시의 변형이 동일한가를 확인하므로써 유도된 방법의 타당성을 검증하였다. 1차원 및 2치원 문제에 대하여 시간종속적 배수모형과 완전배수모형에 의한 결과를 비교하여 그 차이를 예시하였다. 또한 단계적 굴착시 굴착속도 및 투수계수의 변화에 따른 영향도 분석하였다. 수치해석 시뮬레이션을 통해, 다공매체지반의 굴착해석시에는 시간종속적 배수거동에 근거한 해석이 보다 신뢰할 수 있음을 고찰하였다.

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Effect of Inherent Anatomy of Plant Fibers on the Morphology of Carbon Synthesized from Them and Their Hydrogen Absorption Capacity

  • Sharon, Madhuri;Sharon, Maheshwar
    • Carbon letters
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    • 제13권3호
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    • pp.161-166
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    • 2012
  • Carbon materials were synthesized by pyrolysis from fibers of Corn-straw (Zea mays), Rice-straw (Oryza sativa), Jute-straw (Corchorus capsularis) Bamboo (Bombax bambusa), Bagass (Saccharum officinarum), Cotton (Bombax malabaricum), and Coconut (Cocos nucifera); these materials were characterized by scanning electron microscope, X-ray diffraction (XRD), and Raman spectra. All carbon materials are micro sized with large pores or channel like morphology. The unique complex spongy, porous and channel like structure of Carbon shows a lot of similarity with the original anatomy of the plant fibers used as precursor. Waxy contents like tyloses and pits present on fiber tracheids that were seen in the inherent anatomy disappear after pyrolysis and only the carbon skeleton remained; XRD analysis shows that carbon shows the development of a (002) plane, with the exception of carbon obtained from bamboo, which shows a very crystalline character. Raman studies of all carbon materials showed the presence of G- and D-bands of almost equal intensities, suggesting the presence of graphitic carbon as well as a disordered graphitic structure. Carbon materials possessing lesser density, larger surface area, more graphitic with less of an $sp^3$ carbon contribution, and having pore sizes around $10{\mu}m$ favor hydrogen adsorption. Carbon materials synthesized from bagass meet these requirements most effectively, followed by cotton fiber, which was more effective than the carbon synthesized from the other plant fibers.

MAS계에서 3Y-TZP 첨가에 따른 독립 기공 생성기구와 기계적 성질 (Isolated Pore Generation Mechanism and Mechanical Properties in MAS System with 3Y-TZP)

  • 최성철;박현철
    • 한국세라믹학회지
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    • 제30권11호
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    • pp.881-890
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    • 1993
  • MAS system has narrow sintering temp. range due to the liquid phae sintering and thereby densify rapidly. And especially, its poor mechanical properties limitedthe industrial application. In this study, the improvement of mechanical properties and densification is suggested by the consideration of the toughening mechanisms and isolated pore generation mechanism which is derived by the liquid phase sintering theory in 3Y-TZP added composites. After Pressureless sintering up to 140$0^{\circ}C$ for 5hr, the dihedral angle and contact angle are analyzed by the observation of microstructure. As a result of microstructure analysis, the sintering stage of the specimen sintered for 5hr is analyzed as solid-skeleton stage. And the isolated pore generation mechanisms are considered as (1) The swelling of the liquid phase is predominent due to the facts that dihedral angle is larger than 60$^{\circ}$, contact angle is large and that liquid volume fraction is smaller than 10%. (2) The porous characteristics of the MAS system is also suggested as: the SiO2-rich liquid film is firstly formed at the srface and therefore this reduces the contiguity of the pore, which induces the isolated pore. The strength and fracture toughness increased with the addition of 3Y-TZP and the main fracture toughness improvement mechanisms are analyzed as the crack deflection.

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Platinum Decoration of a 3D Oxidized Graphitic Carbon Nitride/Graphene Aerogel for Enhanced Visible-Light Photocatalytic Hydrogen Evolution

  • Thi Kieu Oanh Nguyen;Thanh Truong Dang;Tahereh Mahvelati-Shamsabadi;Jin Suk Chung
    • Korean Chemical Engineering Research
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    • 제61권4호
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    • pp.627-634
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    • 2023
  • Graphitic carbon nitride (g-C3N4) has attracted considerable attention since its discovery for its catalysis of water splitting to hydrogen and oxygen under visible light irradiation. However, pristine g-C3N4 confers only low photocatalytic efficiency and requires surface cocatalysts to reach moderate activity due to a lack of accessible surface active sites. Inspired by the high specific surface area and superior electron transfer of graphene, we developed a strongly coupled binary structure of graphene and g-C3N4 aerogel with 3D porous skeleton. The as-prepared 3D structure photocatalysts achieve a high surface area that favors efficient photogenerated charge separation and transfer, enhances the light-harvesting efficiency, and significantly improves the photocatalytic hydrogen evolution rate as well. The photocatalyst performance is observed to be optimized at the ratio 3:7 (g-C3N4:GO), leading to photocatalytic H2 evolution of 16125.1 mmol. g-1. h-1 under visible light irradiation, more than 161 times higher than the rate achieved by bulk g-C3N4.

유리침투 알루미나 복합체의 물성에 미치는 유리조성의 영향 (II) : La2O3의 영향 (Effect of Glass Composition on the Properties of Glass-Infiltrated Alumina (II) : Effect of La2O3)

  • 이재희;김철영
    • 한국세라믹학회지
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    • 제41권12호
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    • pp.939-945
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    • 2004
  • [ $SiO_2-B_{2}O_3-Al_{2}O_3-CaO-La_{2}O_3$ ]계 유리에서 $La_{2}O_3$를 변화시키며 다양한 조성의 유리를 만든 후 이를 다공성 알루미나에 침투시켜 알루미나-유리 복합체를 얻었다. 여기서 유리의 조성 변화에 따른 침투특성 및 기계적 강도의 변화를 관찰하였다. 유리중의 $La_{2}O_3$는 유리의 고온 점도를 감소시켜 유리의 젖음성과 유동성을 향상시키고 유리의 침투를 용이하게 한다. 유리가 다공성 알루미나에 침투하여 기공을 메우면서 일부 알루미나를 용해시킨다. 이 유리 용융물 중 $Al_{2}O_3$ 성분은 결정질 알루미나에 다시 석출하여 입자성장이 일어나는데 이때 특정 방향으로 알루미나 입자가 성장한다. $La_{2}O_3$가 20 몰 $\%$ 첨가된 유리를 침투시켰을 때 유리가 결정화하여 복합체의 강도를 증진시켰다.