• Title/Summary/Keyword: In situ formation

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Superconducting properties of MgB2 superconductors in-situ processed using various boron powder mixtures

  • Kang, M.O.;Joo, J.;Jun, B.H.;Kim, C.J.
    • 한국초전도ㆍ저온공학회논문지
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    • 제23권3호
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    • pp.45-50
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    • 2021
  • In this study, the effect of the size of B powder on the critical current density (Jc) of MgB2 prepared by an in situ reaction process was investigated. Various combinations of B powders were made using a micron B, ball-milled B and nano B powders. Micron B powder was reduced by ball milling and the milled B powder was mixed with the micron B or nano B powder. The mixing ratios of the milled B and micron or nano B were 100:0, 50:50 and 0:100. Non-milled micron B powder was also mixed with nano powder in the same ratios. Pellets of (2B+Mg) prepared with various B mixing ratios were heat-treated to form MgB2. Tc of MgB2 decreased slightly when the milled B was used, whereas the Jc of MgB2 increased with increasing amount of the milled B or the nano powder. The used of the milled B and nano B power promoted the formation MgB2 during heat treatment. In addition to the enhanced formation of MgB2, the use of the powders reduced the grain size of MgB2. The use of the milled and nano B powder increased the Jc of MgB2. The highest Jc was achieved when 100% nano B powder was used. The Jc enhancement is attributed to the high volume fraction of the superconducting phase (MgB2) and the large grain boundaries, which induces the flux pinning at the magnetic fields.

Hydraulic fracture initiation pressure of anisotropic shale gas reservoirs

  • Zhu, Haiyan;Guo, Jianchun;Zhao, Xing;Lu, Qianli;Luo, Bo;Feng, Yong-Cun
    • Geomechanics and Engineering
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    • 제7권4호
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    • pp.403-430
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    • 2014
  • Shale gas formations exhibit strong mechanical and strength anisotropies. Thus, it is necessary to study the effect of anisotropy on the hydraulic fracture initiation pressure. The calculation model for the in-situ stress of the bedding formation is improved according to the effective stress theory. An analytical model of the stresses around wellbore in shale gas reservoirs, in consideration of stratum dip direction, dip angle, and in-situ stress azimuth, has been built. Besides, this work established a calculation model for the stress around the perforation holes. In combination with the tensile failure criterion, a prediction model for the hydraulic fracture initiation pressure in the shale gas reservoirs is put forward. The error between the prediction result and the measured value for the shale gas reservoir in the southern Sichuan Province is only 3.5%. Specifically, effects of factors including elasticity modulus, Poisson's ratio, in-situ stress ratio, tensile strength, perforation angle (the angle between perforation direction and the maximum principal stress) of anisotropic formations on hydraulic fracture initiation pressure have been investigated. The perforation angle has the largest effect on the fracture initiation pressure, followed by the in-situ stress ratio, ratio of tensile strength to pore pressure, and the anisotropy ratio of elasticity moduli as the last. The effect of the anisotropy ratio of the Poisson's ratio on the fracture initiation pressure can be ignored. This study provides a reference for the hydraulic fracturing design in shale gas wells.

제 3기 장기분지에 나타나는 현무암질암의 산상과 형성기구 (The Occurrence and Formation Mode of Basaltic Rocks in the Tertiary Janggi Basin, Janggi Area)

  • 김춘식;김진섭
    • 암석학회지
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    • 제16권2호
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    • pp.73-81
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    • 2007
  • 경상북도 포항시 장기지역의 제3기 장기분지에는 제 3기 장기층군의 상부현무암질응회암이 넓게 분포하고 있으며, 그 가운데에 연일현무암이 단속적으로 산출되고 있다. 본 연구의 목적은 이들 현무암질암의 산상과 암상의 조사를 통하여 그 형성과정을 밝히는데 있다. 야외조사 결과 본역의 현무암질암은 다음과 같이 크게 4가지 특징적인 암상으로 구분된다: (1) sideromelane shard hyaloclastite, (2) pillow breccia, (3) entablature-jointed basalt, 그리고 (4) in situ breccia. 본역에서 관찰되는 현무암질암의 여러 특징에 의하면 장기지역의 장기분지에 분포하는 상부현무암질응회암은 hyaloclastite에 해당하며. 현무암질 용암의 수저분출 후 일어난 비폭발성 급랭 파쇄작용에 의해서 형성된 것으로 추론된다.

알루미늄 용탕에서 Al-TiO2-C의 연소합성반응에 의한 in-situ Al/TiC 복합재료의 제조에 미치는 공정변수의 영향 (Effects of Processing Parameters on the Fabrication of in-situ Al/TiC Composites by Thermally Activated Combustion Reaction Process in an Aluminium Melt using Al-TiO2-C Powder Mixtures)

  • 김화정;이정무;조영희;김종진;김수현;이재철
    • 대한금속재료학회지
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    • 제50권9호
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    • pp.677-684
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    • 2012
  • A feasible way to fabricate in-situ Al/TiC composites was investigated. An elemental mixture of $Al-TiO_2-C$ pellet was directly added into an Al melt at $800-920^{\circ}C$ to form TiC by self-combustion reaction. The addition of CuO initiates the self-combustion reaction to form TiC in $1-2{\mu}m$ at the melt temperature above $850^{\circ}C$. Besides the CuO addition, a diluent element of excess Al plays a significant role in the TiC formation by forming a precursor phase, $Al_3Ti$. Processing parameters such as CuO content, the amount of excess Al and the melt temperature, have affected the combustion reaction and formation of TiC, and their influences on the microstructures of in-situ Al/TiC composites are examined.

X-ray 실시간 관찰에 의한 알루미늄 합금의 응고 결함 관찰 (In-situ X-Ray Observation of Shrinkage Defect of the Aluminum Alloy Castings)

  • 조인성;김정인;임채호
    • 한국주조공학회지
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    • 제30권5호
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    • pp.174-178
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    • 2010
  • In the present study, in-situ real-time observation with an X-ray radioscopic facility was carried out on pure aluminum and aluminum alloy solidification. The three kinds of aluminum alloys, such as pure aluminum, Al-8.5%Si alloy, commercial A356 (AC4C) alloys, were used in the present study. The formations of the shrinkage defects in the castings were visualized and different formation phenomena for different aluminum alloys were investigated.

Evolution of phase morphology and in-situ compatibilization of polymer blends during ultrasound-assisted melt mixing

  • Kim, Hyungsu;Ryu, Joung-Gul;Lee, Jae-Wook
    • Korea-Australia Rheology Journal
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    • 제14권3호
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    • pp.121-128
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    • 2002
  • A series of thermoplastic polymers and their blends were melt-processed with high intensity ultrasonic wave in an intensive mixer. For the effective transfer of ultrasonic energy, an experimental apparatus was specially designed so that polymer melt can directly contact with ultrasonic horn. It was observed that significant variations in the rheological properties of polymers occur due to the unique action of ultrasonic wave without any aid of chemical additives. It was also found that the direct sonication on immiscible polymer blends in melt state reduces the domain sizes considerably and stabilizes the phase morphology of the blends. The degree of compatibilization was strongly affected by viscosity ratio of the components and the morphology was stable after annealing in properly compatibilized blends. It is suggested that ultrasound assisted melt mixing can lead to in-situ copolymer formation between the components and consequently provide an effective route to compatibilize immiscible polymer blends.

Temporal Variation of Air Temperature in Ice-Valley at Milyang in Association with Ice Formation

  • Lee, Soon-Hwan;Hwang, Soo-Jin
    • 한국지구과학회지
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    • 제28권5호
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    • pp.598-602
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    • 2007
  • A long-term in situ observation was carried out in the Ice-valley at Milyang in order to explain the factors and processes associated with the summertime ice formation. The variation of temperature inside Ice-valley in relation with ice formation in summer time was found to depend on precipitation rate in spring and cold air sinking in autumn and winter. The rate of temperature rising tends to correspond to sensible heat release depending on the precipitation amount at the freezing location. The reason of the cold air accumulation in a talus in the Ice-valley is the cold air sinking over the surface of talus due to the occurrence of outside clod air mass and the accumulated cold air from autumn to spring flow outside at the bottom of talus. The out-flowing cold air can result in the ice formation in the hot summer.

얕은 접합형성을 위하여 in-situ 도핑된 폴리실리콘 박막의 RTP-CVD 선택적 증착에 관한 연구 (Selective Deposition of in-situ doped polysilicon using RTP-CVD for Shallow Junction Formation)

  • 천희곤
    • 한국진공학회지
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    • 제4권S1호
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    • pp.13-20
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    • 1995
  • As으로 in-situ 도핑된 폴리실리콘 막을 원하는 부위에만 선택적으로 증착시킬 수 있는 RTP-CVD 증착기술이 성공적으로 수행되었다. 막의 증착속도는 도핑량이 증차함에 따라 점차 감소하였으나 As의 양이 5ppm보다 커지자 급격히 감소하였다. 또한 증착속도는 As의 유량이 일정할 때, SiH2CI2 유량에 따라 직선적으로 변화하였다. As 도펀트의 농도는 막내부에 비해 폴리실리콘/실리콘기판의 계면과 표면에서 상대적으로 높게 나타났으며, 특히 증착온도가 낮을 때 As 도펀트의 농도는 더 높아짐을 알 수 있었다. 실리콘 표면에서 약 40-50nm 위치에서 도펀트의 농도천이가 급격히 일어났으며, 그 결과 RTP-CVD공정을 이용할 때 극히 얕고 일정한 깊이분포를 갖는 n+-p junctions were achieved and laterally uniform delineated junctions were also observed using RTP-CVD.

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Evaluation of Some Aquatic Plants from Bangladesh through Mineral Composition, In Vitro Gas Production and In Situ Degradation Measurements

  • Khan, M.J.;Steingass, H.;Drochner, W.
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권4호
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    • pp.537-542
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    • 2002
  • A study was conducted to evaluate the nutritive potential value of different aquatic plants: duckweed (Lemna trisulaca), duckweed (Lemna perpusila), azolla (Azolla pinnata) and water-hyacinth (Eichhornia crassipes) from Bangladesh. A wide variability in protein, mineral composition, gas production, microbial protein synthesis, rumen degradable nitrogen and in situ dry matter and crude protein degradability were recorded among species. Crude protein content ranged from 139 to 330 g/kg dry matter (DM). All species were relatively high in Ca, P, Na, content and very rich in K, Fe, Mg, Mn, Cu and Zn concentration. The rate of gas production was highest in azolla and lowest in water-hyacinth. A similar trend was observed with in situ DM degradability. Crude protein degradability was highest in duckweed. Microbial protein formation at 24 h incubation ranged from 38.6-47.2 mg and in vitro rumen degradable nitrogen between 31.5 and 48.4%. Based on the present findings it is concluded that aquatic species have potential as supplementary diet to livestock.

Bacteria/Fungi 혼합토를 이용한 현장 Bio-barrier 형성 (In Situ Bio-barrier Formation using Bacteria/Fungi-Soil Mixture)

  • 김건하;송영우;구동영
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 봄 학술발표회 논문집
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    • pp.489-495
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    • 2000
  • When microorganisms such as bacteria and fungi are injected into porous medium such as soils along with appropriate substrate and nutrients, biomass retained in the soil pore. Soil pore size and shape are varied from the initial condition as a result of biofilm formation, which make hydraulic conductivity reduced. In this research, hydraulic conductivity reduction was measured after microorganism are inoculated and cultured with synthetic substrates and nutrients. Biomass-soil mixture was evaluated its applicability to the field condition as an alternative liner material in landfill by measuring hydraulic conductivity change after repetitive freeze-thaw cycles.

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