• 제목/요약/키워드: colloidal suspension

검색결과 88건 처리시간 0.025초

나노 다공성 입자의 콜로이드 서스펜션을 이용한 기계적 감쇠기구에 대한 연구 (Study on Mechanism of Mechanical Damping System Based on The Colloidal Suspension of Nano-Porous Particles)

  • W.J, Song;Kim, J.;B.Y. Moon;B.S. Kang
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2003년도 추계학술대회논문집
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    • pp.359-362
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    • 2003
  • Damping systems have been widely used to various industrial structures and are mainly hydraulic and pneumatic devices nowadays. In this work, a novel damping system based on the colloidal suspension in the field of nanotechnology is investigated. The colloidal suspension consists of Iyophobic working fluid and hydrophobic-coated porous particle. The mechanism of mechanical energy dissipation in damping system based on the colloidal suspension with nano-porous particles is different from that of the existing hydraulic damping system. The absorbed energy of the damping system using colloidal suspension can be calculated through the mechanical equilibrium condition by the superficial tensions of liquid-gas Interface in the hydrophobic surface in nano-porous particles. The results from an analytic approach have a reasonable agreement with experimental results.

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Reorientation of Colloidal Crystalline Domains by a Thinning Meniscus

  • Im, Sang-Hyuk;Park, O-Ok
    • Macromolecular Research
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    • 제12권2호
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    • pp.189-194
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    • 2004
  • When water is evaporated quickly from a water-based colloidal suspension, colloidal particles protrude from the water surface, distorting it and generating lateral capillary forces between the colloidal particles. The protruded colloidal particles are then assembled into ordered colloidal crystalline domains that float on the water surface on account of their having a lower effective density than water. These colloidal crystal domains then assemble together by lateral capillary force and convective flow; the generated colloidal crystal has grain boundaries. The single domain size of the colloidal crystal could be controlled, to some extent, by changing the rate of water evaporation, but it seems very difficult to fabricate a single crystal over a large area of the water's surface without reorienting each colloidal crystal domain. To reorient such colloidal crystal domains, a glass plate was dipped into the colloidal suspension at a tilted angle because the meniscus (airwaterglass plate interface) is pinned and thinned by further water evaporation. The thinning meniscus generated a shear force and reoriented the colloidal crystalline domains into a single domain.

Multiple-Layered Colloidal Assemblies via Dipping Method with an External Electric Field

  • Im, Sang-Hyuk;Park, O-Ok;Kwon, Moo-Hyun
    • Macromolecular Research
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    • 제11권2호
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    • pp.110-114
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    • 2003
  • When using the dipping method for crystal formation, mono-layered colloidal crystal structures depend upon the lift-up rate of a glass substrate. The mono-layered colloidal crystals showed the highest quality when the glass substrate was raised at a rate of 3 mm/min at 25 $^{\circ}C$ in a 1 wt% polystyrene colloidal suspension (ethanol medium). In addition, in order to obtain multiple-layered colloidal crystals, an external electric Held was introduced. Multiple-layered colloidal crystals were successfully obtained via this method. The colloidal particles were well ordered over large areas and assembled into a homogeneous structure.

제산제 알루미나수화물의 콜로이드성과 제산능 (Collodial Properties and Acid Consuming Capacity of Hydrous Aluminum Oxide Suspension)

  • 이계주;이기명
    • 약학회지
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    • 제35권4호
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    • pp.277-282
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    • 1991
  • Rheological, colloidal and micromeritical properties were followed to investigate aging mechanisms of hydrous aluminum oxide suspension using Zeta-meter systems, BET adsorption apparatus, Master sizer and electronmicroscope. The results indicate that hydrous aluminum oxide suspension revealed plastic flow with thixotropy. The viscosity, thixotropy and yield value were increased with increasing concentration. During aging process, the viscosity and thixotropic index were increased by an addition of glycerin, however, sorbitol stabilized aging process of the suspension being accompanied with growth of particle size and reduction in specific surface area, pore area and pore volume, and consistency. Diminution of adsorptive power of the particles was also protected by addition of sorbitol to hydrous aluminum oxide suspension. From these results, one of aging mechanism of hydrous aluminum oxide suspension assumed growth and/or crystallization of colloidal particles in aqueous suspension.

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SiO2 나노입자 현탁액의 충돌 및 퍼짐에 관한 실험적 연구 (Experimental study on impact and spreading of SiO2 nanoparticle colloidal suspension droplets)

  • 허형규;이상준
    • 한국가시화정보학회지
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    • 제11권3호
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    • pp.12-16
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    • 2013
  • The impact and spreading behaviors of silicon dioxide nanoparticle colloidal suspension droplets were quantitatively visualized using a high-speed imaging system. Millimeter-scale droplets were generated by a syringe pump and a needle. Droplets of different velocity were impacted on a non-porous solid surface. Images were consecutively recorded using a CMOS high-speed camera at 5000 fps (frames per second) for millimeter-scale droplets. Temporal variations of droplet diameter, velocity and maximum spreading diameters were evaluated from the sequential images captured for each experimental condition. Effects of Reynolds number, Weber number, and particle concentration were investigated experimentally.

PVA 흡착에 의한 안정한 콜로이드 지르코니아 졸의 합성 (Synthesis of stable colloidal zirconia sol by adsorption of polyvinyl alcohol)

  • 이종국;문기동;김환
    • 한국결정성장학회지
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    • 제5권2호
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    • pp.165-174
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    • 1995
  • PVA를 첨가하여 제조한 collloidal $ZrO_2$ 졸에 있어서 입자의 분산성 및 입성장에 미치는 PVA의 영향을 고찰하였다. 적정량의 PVA를 첨가하여 제조된 colloidal 졸은 균일한 흡착층의 형성으로 입자간의 응집이 효과적으로 억제된 분산이 양호한 안정된 졸이었으며 이러한 분산성은 PVA가 $ZrO_2$ 일차입자 표면에 흡착층이 형성되어 입성장을 억제하기 때문이었다. $ZrO_2$ 입자의 핵생성은 수화반응 초기에 대부분 일어났으며, 숙성 시간 에 따라 판상의 단사정상 입자가 성장하였는데 PVA의 첨가량이 증가할수록 입성장 속도와 반응수율이 감소하였다. PVA 첨가에 의해 잘 분산된 현탁액으로부터 제조된 충진체는 입자가 고르게 배열되고 응집체간에 형성된 기공이 균일하였다.

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Application of Scaling Theories to Estimate Particle Aggregation in a Colloidal Suspension

  • Park, Soongwan;Koo, Sangkyun
    • Korean Chemical Engineering Research
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    • 제60권2호
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    • pp.260-266
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    • 2022
  • Average aggregate size in particulate suspensions is estimated with scaling theories based on fractal concept and elasticity of colloidal gel. The scaling theories are used to determine structure parameters of the aggregates, i.e., fractal dimension and power-law exponent for aggregate size reduction with shear stress using scaling behavior of elastic modulus and shear yield stress as a function of particle concentration. The structure parameters are utilized to predict aggregate size which varies with shear stress through rheological modeling. Experimentally rheological measurement is conducted for aqueous suspension of zinc oxide particles with average diameter of 110 nm. The predicted aggregate size is about 1135 nm at 1 s-1 and 739 nm at 1000 s-1 on the average over the particle concentrations. It has been found that the predicted aggregate size near 0.1 s-1 agrees with that the measured one by a dynamic light scattering analyzer operated un-sheared.

Effects of Carbon Fiber on Mechanical Behaviour of Al2O3 Porous Ceramics

  • Basnet, Bijay;Lim, Hyung Mi;Lee, Kee Sung;Kim, Ik Jin
    • 한국세라믹학회지
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    • 제56권5호
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    • pp.513-520
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    • 2019
  • This study reports the improvement of mechanical properties of Al2O3 porous ceramics from colloidal suspension with the addition of carbon fiber by direct foaming. The initial colloidal suspension of Al2O3 was partially hydrophobized by surfactant to stabilize wet foam with the addition of carbon fiber from 2 to 8 wt% as stabilizer. The influence of carbon fiber on the air content, bubble size, pore size and pore distribution in terms of wet foam stability and physical properties of porous ceramics were discussed. The viscosity of the colloidal suspension was increased giving solid like properties with the increased in carbon fiber content. The mechanical properties of the sintered porous samples were investigated by Hertzian indentation test. The results show the wet foam stability of more than 90% corresponds to compressive loading of 156.48 N and elastic modulus of 57.44 MPa of sintered sample with 8 wt% of carbon fiber content.

콜로이드 입자의 자기 배열성을 이용한 Monolayer 형성에 관한 연구 (Process Development of Self-Assembled Monolayers(SAMs) of Colloidal Particles)

  • 고화영;이해원;김주선;문주호
    • 한국세라믹학회지
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    • 제39권10호
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    • pp.981-987
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    • 2002
  • $St\"{o}ber$ process를 이용하여 단분산 콜로이드 실리카를 제조하였다. 초기물질인 TEOS(Tetraethylorthosilicate)와 $NH_4OH$, 에탄올 및 증류수의 함유량을 조절하여 100 nm급, 200 nm급, 300 nm급 크기의 단분산 실리카 입자를 제조할 수 있었고, 제조된 실리카 입자는 Scanning Electron Microscope(SEM) 및 laser scattering particle analyzer를 통해 관찰하였다. Dipcoating 공정을 이용하여 제조된 300 nm 크기의 콜로이드 실리카의 자기 배열성(self-assembly) 형성에 관한 연구를 진행하였다. 다양한 코팅 공정 변수(표면장력, 표면전하, 입자의 함유량)의 조절을 통하여 dip coating시에 자기 배열성 단층막(monolayer)을 형성해 낼 수 있는 조건을 최적화하였고, SEM으로 관찰해 본 결과, 최적 조건 상태에서 비교적 넓은 영역 (1.5 mm ${\times}$ 1.5 mm)에서 hexagonally ordered packing된 콜로이드 입자 결정 단층막을 얻을 수 있었다.