• 제목/요약/키워드: Glassy phase

검색결과 70건 처리시간 0.023초

산화티타늄이 청자유약의 발색에 끼치는 영향에 관한 연구 (Effect of TiO2 on the Color Generation in Celadon Glaze)

  • 노형구;김응수;김종영;조우석;김철성;김진모
    • 한국세라믹학회지
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    • 제51권3호
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    • pp.150-155
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    • 2014
  • In aprevious study, the mutual interaction between $Fe_2O_3$ and $TiO_2$ was found to influence the color of celadon glaze. Celadon samples were prepared with varying concentrations of $TiO_2$ at a fixed level of $Fe_2O_3$. The electronic states of Fe and Ti were analyzed by M$\ddot{o}$ssbauer spectroscopy and electron spin-resonance spectroscopy, respectively. These results were examined with the celadon colors measured according to CIELAB values. This study revealed that an increase of $Ti^{3+}$ in the glassy phase decreased the $Fe^{2+}/Fe^{3+}$ ratio, resulting in a color change of the celadon samples in the GY and Y groups. The maximum reflectance wavelength was shifted from 505 nm to 610 nm with an increase in the $TiO_2$ concentration.

Determination of Recombinant Human Epidermal Growth factor (rhEGF) in a Pharmaceutical Formulation by High Performance Liquid Chromatography with Electrochemical Detection

  • Lee, Kang-Woo;Hwang, Kyung-Hwa;Kim, Chang-Soo;Han, Kun;Chung, Youn-Bok;Park, Jeong-Sook;Lee, Yong-Moon;Moon, Dong-Cheul
    • Archives of Pharmacal Research
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    • 제24권4호
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    • pp.355-359
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    • 2001
  • A novel HPLC method with electrochemical detection has been developed for the determination of recombinant human epidermal growth factor (rhEGF) in pharmaceutical products. rhEGF was separated from other components in formulation on a reversed-phase C18 column with 24% acetonitrile in 0.1 M phosphate buffer (pH 4.75). The optimum electrochemical oxidation of EGF was obtained at 0.85 V vs. Ag/AgCl in a glassy carbon working electrode due to electroactive tyrosine, tryptophan, methionine, and arginine residues. The quantitation range was from 1.0 to 200 ng of rhEGF with the linear correlation coefficient greater than 0.999. The method was successfully applied for the quantitation of rhEGF in a pharmaceutical preparation.

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Characterisation and Durability of a Vitrified Wasteform for Simulated Chrompik III Waste

  • Walling, Sam A.;Gardner, Laura J.;Pang, H.K. Celine;Mann, Colleen;Corkhill, Claire L.;Mikusova, Alexandra;Lichvar, Peter;Hyatt, Neil C.
    • 방사성폐기물학회지
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    • 제19권3호
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    • pp.339-352
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    • 2021
  • Legacy waste from the decommissioned A-1 nuclear power plant in the Slovak Republic is scheduled for immobilisation within a tailored alkali borosilicate glass formulation, as part of ongoing site cleanup. The aqueous durability and characterisation of a simulant glass wasteform for Chrompik III legacy waste, was investigated, including dissolution experiments up to 112 days (90℃, ASTM Type 1 water). The wasteform was an amorphous, light green glassy product, with no observed phase separation or crystalline inclusions. Aqueous leach testing revealed a suitably durable product over the timescale investigated, comparing positively to other simulant nuclear waste glasses and vitreous products tested under similar conditions. Iron and titanium rich precipitates were observed to form at the surface of monolithic samples during leaching, with the formation of an alkali deficient alteration layer behind these at later ages. Overall this glass appears to perform well, and in line with expectations for this chemistry, although longer-term testing would be required to predict overall durability. This work will contribute to developing confidence in the disposability of vitrified Chrompik legacy wastes.

Studies in Iron Manufacture Technology through Analysis of Iron Artifact in Han River Basin during the Proto-Three Kingdoms

  • Kim, Soo-Ki
    • Conservation and Restoration of Cultural Heritage
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    • 제1권1호
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    • pp.9-22
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    • 2012
  • The most widely excavated iron artifacts used as weapons or farm tools from central southern regions of Korea were subjects of non-metallic inclusion analysis through metallographic examination, microhardness measurement, and scanning electron microscopy with energy dispersive X-ray spectroscopy. Through metallographic interpretation and study of the analyzed results, the steel manufacturing and iron smelting using heat processing in the iron artifacts excavated from the central southern region of the ancient Korean peninsula was studied, and the analysis of the non-metallic inclusions mixed within the metallic structures was interpreted as the ternary phase diagram of the oxide to infer the type of iron ores for the iron products and the temperature of the furnace used to smelt them. Most of the ancient forged iron artifacts showed $Al_2O_3/SiO_2$ with high $SiO_2$ contents and relatively low $Al_2O_3$ contents for iron ore, indicating t hat for $Al_2O_3$ below 5%, it is presumed that magnetic iron ores were reduced to bloom iron (sponge iron) with direct-reduction process for production. The temperature for extraction of wustite for $Al_2O_3$ below 1% was found to be $1,020{\sim}1,050^{\circ}C$. Considering the oxide ternary constitutional diagram of glassy inclusions, the steel-manufacturing temperature was presumed to have been near $1,150{\sim}1,280^{\circ}C$ in most cases, and minimum melting temperature of casting iron part excavated in Daeseong-ri. Gyeonggi was near $1,400^{\circ}C$, and it is thought that hypoeutectic cast iron of about 2.3% carbon was casted and fragility of cast iron was improved by decarburizing in solid state.

가스화 조건에서 탄종에 따른 석탄 슬래그 점도 거동 (Viscosity of Coal Slags under Gasification Conditions)

  • 문인식;조철범;오명숙
    • 에너지공학
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    • 제11권2호
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    • pp.149-159
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    • 2002
  • 분류층 가스화기에서 슬래그의 점도 변화는 가스화기 운전조건을 결정하는 중요한 요소이다. 본 논문에서는 국내 가스화 대상탄으로 선정된 9개 탄의 슬래그 점도를 가스화 조건에서 측정하였고 점도 변화에 영향을 미치는 슬래그내의 결정체의 크기와 종류를 관찰하였다. 시료는 고둥기술원 건식 가스화기에서 배출된 슬래그 시료를 사용하였다. 9개탄 중 Alaska Usibelli, Curragh, Drayton, Adaro, Baiduri탄 슬래그는 결정슬래그의 경향을 보여주었고, Datong탄과 Cypurus탄 슬래그는 유리슬래그이였다. 결정슬래그외 경우 $T_{cv}$ +$50^{\circ}C$를, 유리슬래그의 경우 $T_{1000}$poise/+$50^{\circ}C$를 가스화기의 최저운전온도로 정의하였을 때 Denisovsky 탄이 가장 높은 온도를, Drayton탄이 가장 낮은 온도를 필요로 하였다. 모든 슬래그가 가스화기 내화물성분인 C $r_2$ $O_3$를 포함하고 있었고, 132$0^{\circ}C$ 주위에서 $T_{cv}$ 를 갖는 결정슬래그의 경우(Alaska Usibeli, Curragh, Adaro탄) 냉각중에 형성됨을 나타내는 커다란 anorthite이 주 결정상으로 나타나 anorthite의 형성이 점도의 급격한 상승의 원인이 됨을 확인하였다. 또한 기포를 갖고 있는 Denisovsky탄의 경우 기포가 산화철의 환원에 의해 형성됨을 추정할 수 있었다..

울릉도 곰바위용결응회암 내 흑요암의 산출특징과 성인 (Occurrence and Genesis of Obsidian in Gombawi Welded Tuff, Ulleung Island, Korea)

  • 임지현;추창오
    • 자원환경지질
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    • 제50권2호
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    • pp.105-116
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    • 2017
  • 이 연구의 목적은 울릉도 남서부 지역에 분포하는 흑요암의 화산학적, 광물학적 특징을 통하여 흑요암의 성인과 산출의미를 고찰하는 데 있다. 흑요암은 곰바위용결응회암 하부에서 국부적으로 발달하며, 다양하고 복잡한 조직과 유동띠가 관찰된다. 흑요암은 알칼리장석 반정과 응회암 및 조면암의 암편과 혼재하여 산출된다. 흑요암은 파동형, 렌즈상의 덩어리로 산출되거나 파쇄된 흑요암 입자들로 인해 얇은 층리로 발달한다. 진주상 균열, 둥근 또는 구형균열과 같은 냉각균열이 특징적으로 발달하는데, 이는 빠르게 냉각하여 규산질이 풍부한 비정질 상태의 흑요암이 형성되었음을 지시한다. 수화작용은 흑요암의 가장자리에서 상대적으로 현저하여 변질띠를 이룬다. 흑요암의 유리질 기질에는 자형의 새니딘과 아노소클레이스 같은 알칼리장석 반정 외에도, 투휘석, 흑운모, 티탄철석, 철산화물 등이 수반된다. 특히 산점상의 미세결정들은 대부분 알칼리장석류와 티탄철석으로 구성된다. EPMA 정량분석 결과, 흑요암의 유리 기질부는 조면암질 조성을 보이며, 철 함량은 약 3 wt.%로 높은 편이다. 본 흑요암은 용암돔이나 칼데라의 붕괴에 의하여 고온상태에서 역-화산재 흐름 퇴적물이 계곡부로 운반된 후, 차가운 지표면과 접촉하였으며 유동성을 띠는 가운데서 급랭하여 형성된 것으로 보인다.

High Strength Nanostructured Metastable Alloys

  • Eckert, Jurgen;Bartusch, Birgit;Schurack, Frank;He, Guo;Schultz, Ludwig
    • 한국분말재료학회지
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    • 제9권6호
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    • pp.394-408
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    • 2002
  • Nanostructured high strength metastable Al-, Mg- and Ti-based alloys containing different amorphous, quasicrystalline and nanocrystalline phases are synthesized by non-equilibrium processing techniques. Such alloys can be prepared by quenching from the melt or by powder metallurgy techniques. This paper focuses on one hand on mechanically alloyed and ball milled powders containing different volume fractions of amorphous or nano-(quasi)crystalline phases, consolidated bulk specimens and, on the other hand. on cast specimens containing different constituent phases with different length-scale. As one example. $Mg_{55}Y_{15}Cu_{30}$- based metallic glass matrix composites are produced by mechanical alloying of elemental powder mixtures containing up to 30 vol.% $Y_2O_3$ particles. The comparison with the particle-free metallic glass reveals that the nanosized second phase oxide particles do not significantly affect the glass-forming ability upon mechanical alloying despite some limited particle dissolution. A supercooled liquid region with an extension of about 50 K can be maintained in the presence of the oxides. The distinct viscosity decrease in the supercooled liquid regime allows to consolidate the powders into bulk samples by uniaxial hot pressing. The $Y_2O_3$ additions increase the mechanical strength of the composites compared to the $Mg_{55}Y_{15}Cu_{30}$ metallic glass. The second example deals with Al-Mn-Ce and Al-Cu-Fe composites with quasicrystalline particles as reinforcements, which are prepared by quenching from the melt and by powder metallurgy. $Al_{98-x}Mn_xCe_2$ (x =5,6,7) melt-spun ribbons containing a major quasicrystalline phase coexisting with an Al-matrix on a nanometer scale are pulverized by ball milling. The powders are consolidated by hot extrusion. Grain growth during consolidation causes the formation of a micrometer-scale microstructure. Mechanical alloying of $Al_{63}Cu_{25}Fe_{12}$ leads to single-phase quasicrystalline powders. which are blended with different volume fractions of pure Al-powder and hot extruded forming $Al_{100-x}$$(Al_{0.63}Cu_{0.25}Fe_{0.12})_x$ (x = 40,50,60,80) micrometer-scale composites. Compression test data reveal a high yield strength of ${\sigma}_y{\geq}$700 MPa and a ductility of ${\varepsilon}_{pl}{\geq}$5% for than the Al-Mn-Ce bulk samples. The strength level of the Al-Cu-Fe alloys is ${\sigma}_y{\leq}$550 MPa significantly lower. By the addition of different amounts of aluminum, the mechanical properties can be tuned to a wide range. Finally, a bulk metallic glass-forming Ti-Cu-Ni-Sn alloy with in situ formed composite microstructure prepared by both centrifugal and injection casting presents more than 6% plastic strain under compressive stress at room temperature. The in situ formed composite contains dendritic hcp Ti solid solution precipitates and a few $Ti_3Sn,\;{\beta}$-(Cu, Sn) grains dispersed in a glassy matrix. The composite micro- structure can avoid the development of the highly localized shear bands typical for the room temperature defor-mation of monolithic glasses. Instead, widely developed shear bands with evident protuberance are observed. resulting in significant yielding and homogeneous plastic deformation over the entire sample.

질화규소 세라믹의 레이저 예열선삭에 관한 연구 (III) - SSN 및 HIPSN의 예열선삭시 절삭력 및 공구수명의 특성 - (A Study on Laser Assisted Machining for Silicon Nitride Ceramics (III) - Variation of the Main Cutting Force and Life of Cutting Tool by LAM of SSN and HIPSN -)

  • 김종도;이수진;강태영;서정;이제훈
    • Journal of Welding and Joining
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    • 제28권6호
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    • pp.35-39
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    • 2010
  • Generally, ceramic material is very difficult to machine due to high strength and hardness. However, ceramic material can be machined at high temperature by plastic flow as metallic material due to the deterioration of the grain boundary glassy phase. Recently, a new method was developed to execute cutting process with CBN cutting tool by local heating of surface with laser. There are various parameters in LAM because it is a complex process with laser treatment and machining. During laser assisted machining, high power results in reducing of cutting force and increasing tool life, but excessive power brings oxidation of the surface. The effect of laser power, feed rate, cutting depth and etc. were investigated on the life of cutting tool. Chips were observed to find out suitable machining conditions. Chips of SSN had more flow-types than HIPSN. It means SSN is easier to machining. The life of cutting tool was increased with increasing laser power and decreasing feed rate and cutting depth.

연속냉각 중 과냉 된 $Pd_{40}Cu_{30}Ni_{10}P_{20}$ 합금 용탕의 실시간 응고거동 관찰 (In Situ Observation of Solidification Behavior in Undercooled $Pd_{40}Cu_{30}Ni_{10}P_{20}$ Alloy Melts during Linear Cooling)

  • 김지훈
    • 한국주조공학회지
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    • 제23권5호
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    • pp.276-285
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    • 2003
  • In the undercooled melt of $Pd_{40}Cu_{30}Ni_{10}P_{20}$ alloy, the solidification behavior including nucleation and growth of crystals at the micrometer level has been observed in-situ by use of a confocal scanning laser microscope combined with an infrared image furnace. The $Pd_{40}Cu_{30}Ni_{10}P_{20}$ alloy specimens were cooled from the liquid state to glass transition temperature. 575 K, at various cooling late under a helium gas flow. According to the cooling rate, the morphologies of the solidification front are changed among various types, irregular jog like front, columnar dendritic front, cellular grain, star like shape jog and fine grain, etc. The velocities of the solid-liquid interface are measured to be $10^{-5}{\sim}10^{-8}$ m/s which are at least two orders higher than the theoretical crystal growth rates. Combining the morphologies observed in terms of cooling rates and their solidification behaviors, we conclude that phase separation takes place in the undercooled molten $Pd_{40}Cu_{30}Ni_{10}P_{20}$ alloy. The continuous cooling transformation (CCT) diagram was constructed from solidification onset time at various linear cooling conditions with different rate. The CCT diagram suggests that the critical cooling rate for glassy solidification is about 1.5 K/s, which is in agreement with the previous calorimetric findings.

Ni Nanoparticle Anchored on MWCNT as a Novel Electrochemical Sensor for Detection of Phenol

  • Wang, Yajing;Wang, Jiankang;Yao, Zhongping;Liu, Chenyu;Xie, Taiping;Deng, Qihuang;Jiang, Zhaohua
    • Nano
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    • 제13권11호
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    • pp.1850134.1-1850134.10
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    • 2018
  • Increasing active sites and enhancing electric conductivity are critical factors to improve sensing performance toward phenol. Herein, Ni nanoparticle was successfully anchored on acidified multiwalled carbon nanotube (a-MWCNT) surface by electroless plating technique to avoid Ni nanoparticle agglomeration and guarantee high conductivity. The crystal structure, phase composition and surface morphology were characterized by XRD, SEM and TEM measurement. The as-prepared Ni/a-MWCNT nanohybrid was immobilized onto glassy carbon electrode (GCE) surface for constructing phenol sensor. The phenol sensing performance indicated that Ni/a-MWCNT/GCE exhibited an amazing detection performance with rapid response time of 4 s, a relatively wide detection range from 0.01 mM to 0.48 mM, a detection limit of $7.07{\mu}M$ and high sensitivity of $566.2{\mu}A\;mM^{-1}\;cm^{-2}$. The superior selectivity, reproducibility, stability and applicability in real sample of Ni/a-MWCNT/GCE endowed it with potential application in discharged wastewater.