• 제목/요약/키워드: Drying Mechanism

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졸-겔법을 이용한 Tape-VI형 실리카 에어로겔의 제조 및 특성분석 (Synthesis and Characterization of Type-VI Silica by Sol-Gel Method)

  • 김성철;최대원;최용수;이종혁;이해욱;김창은
    • 한국세라믹학회지
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    • 제35권3호
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    • pp.264-272
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    • 1998
  • The effect of catalytic condition on the properties of SiO2 aerogels has been investigated and then the dri-ed aerogels were partially densified to induce mechanical strength by heat treatment in order to prepare Type-VI silica by Sol-Gel method. Aerogel made by 1-step base process had the highest skeletal density lowest shrinkage and the smallest particle size. But in case of using acid catalyst in both 1st and 2nd step had the lowest skeletal density highest shrinkage and the largest particle size The aerogel synthesized by 1-step base process was most transparent because of its homogeneous microstructure. During heat treatments cracks occurred below 200$^{\circ}C$ for aerogel with the skeletal density lower than 1.9 g/cm3 but the with the higher skeletal density did not cracked up to 800$^{\circ}C$ shrinkage and skeletal density increased as heating temperature increased due to condensation and viscous sintering mechanism.

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Silicon metal alkoxide 용액의 sol-gel 전이에서 중요인자 (Critical factors in sol-gel transition of silicon metal alkoxide solutions)

  • 김세훈;오근호
    • 한국결정성장학회지
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    • 제5권4호
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    • pp.332-342
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    • 1995
  • 실리콘 알콕사이드 용액의 졸-겔 전이에 있어서 반응조건에 중요한 영향을 미치는 인자에 대하여 Raman 분광분석을 기초로 해서 고찰해 보았다. 촉매의 종류, 용매, 건조제어용 화학첨가제 및 물의 양과 같은 여러 가지 인자가 졸-겔 과정에 있어 전이메카니즘에 영향을 주었다.

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팽창재를 포함한 시멘트 모르터의 팽창 요인 (Expansion Factors of Cement Mortar Containing Expanding Admixture)

  • 황인동;염희남;정윤중
    • 한국세라믹학회지
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    • 제37권6호
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    • pp.576-582
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    • 2000
  • Two type of expanding cement generally referred to as CSA with Hauyne(3CaO 3Al2O3 CaSO4) and Quick lime(CaO). Hauyne is formed to ettringite when there are presented with CaO and CaSO4, and CaO reacts wtih water to form Ca(OH)2. REcently, the mechanism of compensation and expand mortar or concrete tend to same and it has been used improving on its shrink property. The volume of cement paste varies with its water content shrink with drying and re-wetting. Concrete and mortar works are required shrinking compensation and expansion properties to reduce of potential crack. The use of expansion cement may improve on its shrinking volume changes. CSA dosages for shrinking compensation limited by cement weight, but obtained difference expansion rate with varied W/C or inorganic admixture. This paper studies expansion rate according to expansion cement dosages, water and inorganic admixtures as Silica fume. Therefor, the expansion factor has to considered before the application.

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Encapsulation of Flavors by Molecular Inclusion Using $\beta$-Cyclodextrin: Comparison with Spray-drying Process Using Carbohydrate-based Wall Materials

  • Cho, Young-Hee;Park, Ji-Yong
    • Food Science and Biotechnology
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    • 제18권1호
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    • pp.185-189
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    • 2009
  • Microencapsulation of flavor was carried out by molecular inclusion process using $\beta$-cyclodextrin (${\beta}CD$). ${\beta}CD$-flavor complex was prepared at various flavor-to-${\beta}CD$ ratios (1:6-1:12) to determine the effect of ${\beta}CD$ concentration on the inclusion efficiency. Maximum total oil retention and minimal surface oil content were obtained at flavors to ${\beta}CD$ ratio of 1:10. The physical properties and controlled release pattern of flavors from ${\beta}CD$-flavor complex were measured and compared with spray-dried microcapsules prepared using carbohydrate wall system. ${\beta}CD$-flavor complex showed higher total oil retention and surface oil contents, smaller mean particle size, lower moisture uptake, and higher oxidation stability than spray-dried microcapsule. Oxidative stability of flavor was correlated with hygroscopicity of wall materials. The controlled release mechanism was highly affected by temperature and characteristics of wall materials.

실리카 에어로겔의 상압합성 및 특성연구(II) (Synthesis of Silica Aerogel at Ambient Pressure and Characterization (II))

  • 권영근;최세영;강신규
    • 한국세라믹학회지
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    • 제36권11호
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    • pp.1189-1197
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    • 1999
  • Low-density silica gel monolith was synthesized at ambient pressure by surface modification with TMCS and sub-sequent heat treatment. The mechanical thermal and optical properties of gel were studied. Compressive strength and modulus of compression of 350$^{\circ}C$-heated gel with the density of 0.24g/cm3 were 250kPa and 0.2MPa respectively. The thermal conductivity of silica gels synthesized at ambient pressure exhibited 0.02 W/m$.$K for the density of 0.24g/cm3 which is similar to that of the gel via supercritical drying and their main thermal transfer mechanism is considered to be solid and radiation conduction at room temperature. Ambient-dried silica gels were transparent blue showing about 60% of transmittance in the wavelength of 1500-2100nm and typical absorption bands of existing bonds under heat treatment at 350$^{\circ}C$. Medium scale monolity(${\Phi}$=50mm) at ambient pressure could be successfully prepared through total 5-month process period.

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Influence of water saturation on fracture toughness in woven natural fiber reinforced composites

  • Kim, Hyo-Jin;Seo, Do-Won
    • Advanced Composite Materials
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    • 제16권2호
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    • pp.83-94
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    • 2007
  • Woven sisal textile fiber reinforced composites were used to evaluate fracture toughness, tensile and three-point bending. The water absorption testing of all specimens was repeated five times in this study. All specimens were immersed in pure water during 9 days at room temperature, and dried in 1 day at $50^{\circ}C$. Two kinds of polymer matrices such as epoxy and vinyl-ester were used. Fractured surfaces were taken to study the failure mechanism and fiber/matrix interfacial adhesion. It is shown that it can be enhanced to improve their mechanical performance to reveal the relationship between fracture toughness and water absorption fatigue according to different polymer matrices. Water uptake of the epoxy composites was found to increase with cycle times. Mechanical properties are dramatically affected by the water absorption cycles. Water-absorbed samples showed poor mechanical properties, such as lower values of maximum strength and extreme elongation. The $K_{IC}$ values demonstrated a decrease in inclination with increasing cyclic times of wetting and drying for the epoxy and vinyl-ester.

REACTION OF PAPER PULP AND ALKYL KETENE DIMER BY AGING TREATMENT DURING PAPERMAKIN PROCESS

  • Shin, Young-Doo;Seo, Won-Sung;Cho, Nam-Seok
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2000년도 추계학술발표논문집
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    • pp.83-83
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    • 2000
  • Alkylketene dimer was known as a cellulose reactive or alkaline size because it does not require to fix to the fiber as do the traditional rosin sizes. A proposed sizing mechanism of AKD was the formation of P -ketoester bond between AKD and cellulose which provides the permanent attachment and the orientation of the hydrophobic alkylchains outward. However, some questions about the reaction had arisen and thus, the sizing mechanism of AKD has been a subject of controversy for several decades. The major concern of the controversy is that AKD is really reactive with cellulose or not in the papermaking conditions. In this study, reaction between AKD and pulp fiber was investigated, in order to find out whether AKD forms P-ketoester with pulp fiber during aging under no catalyzed neutral condition with obvious spectroscopic evidence. In addition, effect of aging treatment on the sizing development was studied. It has been disclosed that, in absence of water, AKD reacted with cellulose to form P -ketoester linkage under no catalyzed neutral condition, while, in presence of water, most of AKD was hydrolyzed to a dialkyl ketone or P -ketoacid. In addition, during the aging treatment of AKD-sized paper, its typical IR spectra bands gradually were reduced, completely disappeared after 6hr aging, and formed new absorption bands at 1707cm-' and shoulder peak at 1700cm-' which refer to the typical dialkylketone absorption bands. Therefore, the formation of P -ketoester between AKD and pulp fiber is impossible in the practical papermaking process. It could be suggested that the sizing development of AKD-sized paper is obtained by next two mechanism: 1) formation of a thin-layer of AKD on the fiber surface through melting and spreading of AKD emulsion particles by heat and 2) the hydrolysis of AKD to dialkyl ketone which has higher melting point, during drying and storage of AKD sized papers.

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CaO에 의하여 부분 안정화된 $ZrO_2$의 고온 전기 전도도에 대한 연구 (Investigation of High Temperature Electrical Conductivity of CaO-partially Stabilized $ZrO_2$)

  • 변수일
    • 한국세라믹학회지
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    • 제16권4호
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    • pp.213-224
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    • 1979
  • The present work was undertaken: (1) to determine if CaO-partially stabilized $ZrO_2$ prepared by Hot Petroleum Drying Method would show better ionic conductor as an oxygen sensor in molten metals than that prepared by Oxide Wet Mixing Method and than CaO-fully stabilized $ZrO_2$, and (2) to understand the nature of conduction mechanism of CaO-partially stabilized $ZrO_2$ by a comparison of measured electrical conductivity data with theory on defect structure of pure monoclinic $ZrO_2$ and fully stabilized cubic $ZrO_2$. The DC electrical conductivity was measured by 3-probe technique and the AC electrical conductivity by 2-probe technique as a function of temperature in the range 973-1373 K and oxygen partial pressure in the range 10-1-10-25Mpa. The results of the experiments were as follows: 1. CaO-partially stabilized $ZrO_2$ prepared by Hot petroleum Drying Method showed at T=1094-1285 K and $Po_2$=10-7-10-25 MPa a nearly ionic conduction with 4 times higher conductivity than that prepared by Oxide Wet Mixing Method. 2. High-oxygen pressure conductivity tends toward a Po_2^{+1/5}-Po_2^{+1/6}$dependence. An analysis of possible defect structures suggests that CaO-partially stabilized $ZrO_2$ has an anti-Frenkel defect in which singly or doubly ionized oxygen interstitials and defect electrons predominate at T=1094-1285 K and $Po_2$=10-1-10-7MPa. 3. The activation energy for pure electron hole-conduction and ionic conduction of CaO-partially stabilized $ZrO_2$ was found to be 130 KJ/mol at T=973-1373 K, $Po_2$=2, 127 10-2 MPa(air) and 153KJ/mol at T=1094-1285 K respectively.

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실험실 규모 정전기 분무형 반건식 세정기의 SO2 제거효율 향상에 대한 계산 및 실험적 연구 (Numerical and Experimental Study on the Increase of Removal Efficiency of SO2 in a Laboratory Scale Electrostatic Spray Drying Absorber)

  • 변영철;황정호
    • 대한기계학회논문집B
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    • 제22권8호
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    • pp.1111-1120
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    • 1998
  • Spray Drying Absorber(SDA) system, where the combustion product gas is mixed with atomized limestone-slurry droplets and then the chemical reaction of $SO_2$ with alkaline components of the liquid droplets forms sulfates, has been widely used to eliminate $SO_2$ gas from coal fired power plants and waste incinerators. Liquid atomization is necessary because it can maximize the reaction efficiency by increasing the total surface area and dispersion angle of the alkaline components. First, numerical calculations using FLUENT are carried out to investigate $SO_2$ concentration distribution and thus to calculate $SO_2$ removal efficiency. So to attain the optimized spray conditions, then an electrostatic spraying system is set up and spray visualization is performed to show the effect of an electric field on overall droplet size. Next, the effect of an electric field on the concentrations of $SO_2$ is experimentally examined. Field strength is varied from -10 kV to 10 kV and configurations of conduction charging and induction charging are utilized. Consequently, the electrostatic removal efficiency of 501 increases about 30% with the applied voltage of ${\pm}10kV$ but is independent of polarity of the applied voltage. It Is also found that the conduction charging configuration results in higher efficiency of $SO_2$ removal that the induction charging configuration. Finally, the effect of slurry temperature on $SO_2$ removal is studied. The temperature influences on the electrostatic removal efficiency of $SO_2$.

화재시 고강도 콘크리트의 폭열현상에 관한 고찰 (A Review on Spalling Phenomenon of High Strength Concrete during a Fire Accident)

  • 김형두
    • 한국화재소방학회논문지
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    • 제20권2호
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    • pp.80-86
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    • 2006
  • 본 고찰은 화재시 고강도 콘크리트의 주요 이슈 중의 하나인 폭열 현상에 초점을 맞추어 폭열의 정의, 분류 및 각각의 특징, 발생원인과 그 반응기구에 대하여 선행연구를 중심으로 분석하였다. 폭열은 급격한 온도 상승, 높은 수분 함유량, 낮은 물시멘트비(W/C), 콘크리트 내에 국부적인 높은 응력 발생 등과 같은 요인이 복합적으로 작용하여 발생한다. 이러한 요인을 토대로 폭열을 방지하기 위한 방법으로 크게 콘크리트의 온도 상승을 억제하는 방법, 콘크리트의 비산을 억제하는 방법, 그리고 빠르게 내부 수분을 건조시키는 방법 등을 들 수 있다. 본 고찰에서는 이러한 방법 가운데 가장 효율적인 폭열 방지 방안으로서 콘크리트 내부의 수분을 빠르게 건조시킴으로써 폭열에 이르게 하는 함수율 이하로 낮추어서 콘크리트 자체의 내폭열성을 높이는 방안을 고찰하였다. 실제 강제건조를 통해 함수율을 어떤 임계치(critical value) 이하로 낮추게 되면 폭열을 방지할 수 있으며 이를 위해서는 수동적인 자연건조 외에 강제건조 등으로 함수율을 낮출 필요가 있을 것이다. 이러한 임계치 결정을 위해 추가적인 많은 실험 및 자료가 도출되어야 할 것이다.