• 제목/요약/키워드: particle-in-binder

검색결과 193건 처리시간 0.022초

Organic/organic Core Shell 바인더의 중합과 처리영향 (Polymerization and Effect of Organic/Organic Core Shell Binder)

  • 심동현;반지은;김민성;설수덕
    • 폴리머
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    • 제32권5호
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    • pp.470-477
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    • 2008
  • 아크릴계 단량체인 MMA, St, EA, BA 및 관능성 단량체인 2-HEMA 단량체를 수용성 개시제인 APS와 음이온 유화제인 SDBS를 사용하여 한 입자 내에 서로 다른 물성을 나타내는 core shell 구조의 바인더를 중합 후 부직포에 처리하여 기계적 물성을 평가하였다. Core shell 바인더 중합시 단량체 조성에 관계없이 개시제는 1.0 wt%/단량체의 농도를 가지는 APS와 0.04 wt%/단량체의 유화제를 사용했을 때 가장 높은 전환율을 나타내었고, core shell 바인더의 유리전이온도는 공중합체의 단일 전위 곡선에 비하여 core shell 바인더는 2개 이상의 전이곡선을 얻었다. 부직포에 core shell 바인더를 처리 후 인장강도 및 신장율 측정에서 관능성 단량체를 사용한 PSt/PMMA/2-HEMA core shell 바인더가 $10.75\;kg_f$/2.5 cm로 가장 높은 값을 나타내었고, 신장율 측정에는 PEA/PBA core shell 바인더가 120.00%로 가장 높은 값을 나타내었다. 결론적으로 core shell 바인더를 사용하여 부직포의 기계적 물성을 조절할 수 있었다.

Modeling the compressive strength of cement mortar nano-composites

  • Alavi, Reza;Mirzadeh, Hamed
    • Computers and Concrete
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    • 제10권1호
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    • pp.49-57
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    • 2012
  • Nano-particle-reinforced cement mortars have been the basis of research in recent years and a significant growth is expected in the future. Therefore, optimization and quantification of the effect of processing parameters and mixture ingredients on the performance of cement mortars are quite important. In this work, the effects of nano-silica, water/binder ratio, sand/binder ratio and aging (curing) time on the compressive strength of cement mortars were modeled by means of artificial neural network (ANN). The developed model can be conveniently used as a rough estimate at the stage of mix design in order to produce high quality and economical cement mortars.

종이도공용 고광택 유기안료의 적용에 관한 연구 -유기안료의 종류가 도공지 품질에 미치는 영향- (Studies on the Application of High-Gloss Plastic Pigment for Paper Coating(I))

  • 이용규;박규재;정경모
    • 펄프종이기술
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    • 제32권3호
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    • pp.32-38
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    • 2000
  • This study was carried out to determine the effect of the type of plastic pigment on the coat-ing structure and printability of coated paper. Three kinds of plastic pigments(solid-bead type binder type and hollow type) were used for hti purpose. IN this research it was observed that particle shape and structure of plastic pigment had influenced the rheology of coating color the state of packing and the properties of coated paper. Inorganic pigments used in this research were platelike kaolin clay and rhombic calcium carbonate. Three kinds of plastic pigments were blended with two inorganic pigments respec-tively. The combination of pigments were carried out(1) to determined the effect of particle structure of plastic pigment on the state of dispersion of coating color(2) to observe the effect of calendering temperature on the property of coated paper prepared with different plastic pigments. The data indicated that binder and hollow type plastic pigment gave the best results in improving the properties of coated paper such as paper gloss opacity and air pet-meability.

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수계공정에 의한 알루미나 테이프로 제조한 세라믹 인공치관용 알루미나 유리 복합체의 기계적 물성 (Mechanical Properties of Alumina-Glass Dental Composites Prepared from Aqueous-Based Tape Casting)

  • 이명현;김대준;이득용;이정훈;김창은
    • 한국세라믹학회지
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    • 제36권10호
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    • pp.1123-1131
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    • 1999
  • Alumina-glass composites which are considered as the material of the choice for all dental crown was prepared by aqeous-based tape casting and sintering for 2h at 1120$^{\circ}C$ followed by glass infiltration for 2h at 1100$^{\circ}C$ Biaxial strength and fracture toughness of the composites were evaluated to determine the optimum composition of the tape as a function of the amount of constituent such as alumina binder and plasticizer. The strength and the fracture toughness of the alumina tape increased with increasing the contents of alumina and binder. These observations are consistent with in fluence of the constituents on mean alumuna particle distance in tapes suggesting that high strength of the glass infiltrated alumina composites is related to toughening by crack bowing. The biaxial strength and the fracture toughness of the composite containing the optimum constituent composition were 523 MPa and 3.3 MPa$.$1/2 respectively.

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아크릴계 복합입자 바인더의 제조와 플라즈마 처리영향 (Synthesis and Effect of Plasma Treatment of Acrylic Composite Particle Binder)

  • 심동현;설수덕
    • 폴리머
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    • 제32권3호
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    • pp.276-283
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    • 2008
  • 단량체의 종류(MMA, EA, BA, St), 단량체의 중량비($80/20{\sim}20/80$) 등을 변화시켜 core shell 바인더를 제조하구 여기에 플라즈마 처리하여 물성을 향상시켰다. 각 소재별로 플라즈마 처리시간($1{\sim}10\;s$)을 변화시켜 인장강도, 접촉각 및 접착박리강도를 측정하여 최적의 core shell 바인더의 표면처리 조건을 산출하였다. 중합에서는 바인더의 종류와 조성에 관계없이 개시제는 APS, 반응온도 $85^{\circ}C$에서 0.3 wt%의 유화제를 사용했을 때 가장 높은 전환율을 나타내었고, 중합체의 유리전이온도는 공중합체의 단일 전이 곡선에 비하여 core shell 바인더는 2개 이상의 전이 곡선을 얻었다. Core shell 바인더에 플라즈마 처리 전 후의 접촉각 변화는 PEA/PSt의 경우 5초 이내에 38%의 완만한 감소를 나타내었고, 처리하지 않은 경우는 감소율이 급격히 $0^{\circ}$에 도달하였다. 인장강도는 가장 높은 값을 가지는 PSt/PMMA의 경우 $46.71{\sim}46.27\;kg_f$/2.5 cm로 처리전 후 모두 근사한 값을 나타내었다. 접착박리강도는 PEA/PMMA의 경우 처리 전 $7.89\;kg_f$/2.5 cm에서 처리 후 $14.44\;kg_f$/2.5 cm로 약 2배 이상 증가하였다. 전체적으로 접착박리강도의 크기는 shell 단량체가 MMA인 core 단량체에 대하여 PEA>PBA>PSt의 순으로 되었다.

라텍스의 혼합비율이 도공지 품질에 미치는 영향 (Effect of Mixing Ratio of Amphoteric and Anionic Latices on Print Quality of Coated Papers)

  • 강태근;박규재;이용규
    • 펄프종이기술
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    • 제31권1호
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    • pp.72-79
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    • 1999
  • The binder plays important roles in determining the quality of pigment coating. In addition to its primary role of binding the pigment to the base paper, the binder performs several other important functions. The binder, also referred to as the adhesive, is the dominant in the aqueous phase of the formulation. Thus it plays a major role in determining viscosity, rheology, water release, and setting time for the coating. Latices based on styrene-butadiene dominate the market for synthetic paper coating binders. Consumption is high and is expected to increase further due to the present tendeyncy toward high-solids coating. The purpose of this study is understanding the impact of various parameters of latex(i.e. Tg, Particle size) affecting prontabilities and optical properties of the coated papers, as well as providing basic information on the use of amphoteric latex for improving print qualities of coated papers. Recently, amphoteric latices, Which are cationic at low pH's but turn anionic at high pH's have attracted interests of paper scientists and engineers. Therefore we investigated the effect of the Tg(glass transition temperature) and particle size of amphoteric latex on the coating qualities. We also studied the effect of mixing ratios (Amphoteric / Anionic)of latex on the coating qualities. Our results showed that Tg and particle size of amphoteric latex have to be controlled for optimizing coated paper qualities. The formulation consisting of 10 parts of amphoteric latex and 5 parts of anionic latex gave best results in ink receptivity, smoothness, air permeability, opacity and sheet gloss. If the results hold for the industrial paper coatings, the amount of expensive amphoteric latex can be reduced while achieving best available printing quality.

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다층도공층의 설계에 의한 인쇄적성 개선 (제1보) - 프리코팅층의 바인더 물성이 탑코팅층의 특성에 미치는 영향 - (Improving printability by designing a multi-layered coating structure (I) - The effect of binder properties in the pre-coating layer on the characteristics of the top-coating layer -)

  • 김선경;원종명;이용규
    • 펄프종이기술
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    • 제48권1호
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    • pp.27-33
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    • 2016
  • This study was carried out in order to investigate the effect of binder properties in pre-coating layer on the characteristics of top-coating layer and print mottle of coated paper. Four different latices were used as a binder in pre-coating layer, and coating color prepared with a same formulation was applied for top-coating. The properties and print mottle of coated paper were evaluated. It was found that glass transition temperature (Tg) was the important factor to control the properties of pre- and top-coating layer. PPS roughness of coated paper was decreased and paper gloss was increased with applying binder which has lower Tg. Properties of top-coating layer were affected by the binder used in pre-coating layer. Print mottle of coated paper was improved with using binder which has lower Tg in pre-coating layer. These results indicate that final printability and properties of top-coating layer can be improved with using suitable binder in pre-coating layer.

Effects of SiC Particle Size and Inorganic Binder on Heat Insulation of Fumed Silica-based Heat Insulation Plates

  • Jo, Hye Youn;Oh, Su Jung;Kim, Mi Na;Lim, Hyung Mi;Lee, Seung-Ho
    • 한국세라믹학회지
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    • 제53권4호
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    • pp.386-392
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    • 2016
  • Heat insulation plates of fumed silica were prepared by mixing fumed silica, SiC powder and chopped glass fiber by a high speed mixer followed by pressing of the mixture powder in a stainless steel mold of $100{\times}100mm$. Composition of the plates, particle size of SiC, and type of inorganic binder were varied for observation of their contribution to heat insulation of the plate. The plate was installed on the upper portion of an electric furnace the inside temperature of which was maintained at $400^{\circ}C$ and $600^{\circ}C$, for investigation of heat transfer through the plate from inside of the electric furnace to outside atmosphere. Surface temperatures were measured in real time using a thermographic camera. The particle size of SiC was varied in the range of $1.3{\sim}17.5{\mu}m$ and the insulation was found to be most excellent when SiC of $2.2{\mu}m$ was incorporated. When the size of SiC was smaller or larger than $2.2{\mu}m$, the heat insulation effect was decreased. Inorganic binders of alkali silicate and phosphate were tested and the phosphate was found to maintain the heat insulation property while increasing mechanical properties.

INFLUENCE OF BASALT FIBRES ON THE PROPERTIES OF FLY ASH BASED GEOPOLYMER BINDER

  • Temuujin, J.;Minjigmaa, A.;Davaabal, B.;Darkhijav, B.;Ruescher, C.H.
    • 한국입자에어로졸학회지
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    • 제12권2호
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    • pp.43-50
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    • 2016
  • The influence of basalt fibres on the compressive strength of the geopolymer type binders has been studied. For the experiments 2 types of the basalt fibres were used, namely chopped and spooled fibres. Both types of basalt fibres were 7-10 micron thick in diameter and cut into pieces of 6 mm length. The fibres were mixed with 1% weight to the fly ash powder, followed by the addition of the activator solution (8M NaOH). The pastes obtained were cured at $70^{\circ}C$ for 20 h revealing compact bodies. Compressive strength was measured after 7 days and microstructure observation performed with SEM. The cube bodies ($2{\times}2{\times}2cm$) reveal compressive strength of 47.25(4.03) MPa, while it decreased to 34.0(9.05) MPa in spooled basalt fibres and to 17.33(5.86) MPa in the chopped basalt fibres containing binder, i.e 76% and 36% of the strength without fibres, respectively. The much weaker compressive strength of the chopped fibres containing binder is related to the absence of significant adhesion between the geopolymer binder and the basalt fibres, forming voids instead. Alkali leaching effect of basalt fibres could probably explain the drop in the compressive strength with spooled and chopped fibres, respectively.

The Critical Pigment Volume Concentration Concept for Paper Coatings: II. Later-Bound Clay; Ground Calcium Carbonate, and Clay- carbonate Pigment Coatings

  • Lee, Do-Ik
    • 펄프종이기술
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    • 제34권5호
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    • pp.18-38
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    • 2002
  • A previous study on the model coatings based on latex-bound plastic pigment coatings (1) has been extended to latex-bound No. 1 clay, ultra-fine ground calcium carbonate (UFGCC), and clay-carbonate pigment mixture coatings, which are being widely used in the paper industry. The latex binder used was a good film-forming, monodisperse S/B latex or 0.15$\mu\textrm{m}$. No. 1 clay was representative of plate-like pigment particles, whereas UFGCC was of somewhat rounded rhombohedral pigment particlel. Both of them had negatively skewed triangular particle size distributions having the mean particle suet of 0.7${\mu}{\textrm}{m}$ and 0.6$\mu\textrm{m}$, respectively. Their packing volumes were found to be 62.5% and 657%, respectively. while their critical pigment volume concentrations (CPVC's) were determined to be 52.7% and 50.5% ( average of 45% caused by the incompatibility and 55.9% extrapolated) by coating porosity, respectively. Each pigment/latex coating system has shown its unique relationship between coating properties and pigment concentrations, especially above its CPVC. Notably, the clay/latex coating system hat shown higher coating porosity than the UFGCC/latex system at high pigment concentrations above their respective CPVC's. It was also found that their coating porosity and gloss were inter-related to each other above the CPVC's, as predicted by the theory. More interestingly, the blends of these two pigments have shown unique rheological and coating properties which may explain why such pigment blends are widely used in the industry. These findings have suggested that the unique structure of clay coatings and the unique high-shear rheology of ground calcium carbonate coatings can be judiciously combined to achieve superior coatings. Importantly, the low-shear viscosity of the blends was indicative of their unique packing and coating structure, whereas their high-shear rheology was represented by a common mixing rule, i.e., a viscosity-averaging. Transmission and scanning electron and atomic force microscopes were used to probe the state of pigment / latex dispersions, coating surfaces, freeze fractured coating cross-sections, and coating surface topography. These microscopic studies complemented the above observations. In addition, the ratio, R, of CPVC/(Pigment Packing Volume) has been proposed as a measure of the binder efficiency for a given pigment or pigment mixtures or as a measure of binder-pigment interactions. Also, a mathematical model has been proposed to estimate the packing volumes of clay and ground calcium carbonate pigments with their respective particle size distributions. As well known in the particle packing, the narrower the particle size distributions, the lower the packing volumes and the greater the coating porosity, regardless of particle shapes.