• 제목/요약/키워드: Nano Metal Powder

검색결과 151건 처리시간 0.031초

나노베시클 표면처리 분체의 개발연구 (The Study of Nano-vesicle Coated Powder)

  • 손홍하;곽택종;김경섭;이상민;이천구
    • 대한화장품학회지
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    • 제32권1호
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    • pp.45-51
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    • 2006
  • 화장품에서 색조 화장품 분야에서 분체의 함유율이 높은 투웨이케익, 팩트, 페이스파우더와 같은 파우더류 제품은 함유되는 분체의 물성이 품질에 큰 영향 인자로 작용하기 때문에 분체의 복합화, 금속비누 처리, 아미노산처리, 실리콘처리, 불소 처리등을 통한 품질 향상을 목적으로 표면처리가 시도되어 왔다. 위와 같은 파우더류 제품중에 투웨이케익은 커버력이 가장 요구되는 제품으로서 부착성이나 퍼짐성과 같은 부가품질의 동시 구현이 다른 파우더류 제품보다 어려우며, 화장을 두껍게 느끼거나 답답하다는 사용자들의 잠재불만도 존재하는 제품군이다. 본 연구는 투웨이케익 제품의 중요품질인 부착성과 퍼짐성을 향상시키고, 친화성을 충분히 고려한 새로운 표면처리 방법으로서 피부성분과 구조를 모사하여, 스킨케어에 주로 사용하는 성분들로 나노베시클을 제조하여 그 구조를 파괴하지 않은 상태로 표면 처리하는 방법에 대한 것이다. 분체를 제조하기 위해 먼저, 레시친, 세라마이드, 초산토코페롤, 부틸렌글리롤을 사용하여 고압.유화로 나노유화물을 제조하였고, 이것을 수상에 분산된 체질안료 분산액에 투입, 2가 금속염 용액을 투입한 후, 여과, 건조과정을 통해 나노베시클이 피복된 새로운 기능의 분체를 얻었다. 피복되는 공정에서는 금속염의 농도에 따라 피복량이 결정됨을 확인하였고, 피복된 파우더의 물성에서는 현재 주로 사용하는 실리콘 처리체질안료에 비해 본 연구를 통해 제조된 파우더의 마찰계수가 낮았으며, 외력에 의한 부착성 평가에서도 파우더의 이탈량이 적은 결과를 나타내었다. 또한 이를 함유한 투웨이케익과 함유하지 않은 투웨이케익의 평가에서도 같은 경향의 결과를 나타내었다.

신 열환원 공정에 의한 초미립 티타늄 카바이드 분말 합성 (Synthesis of Ultrafine Titanium Carbide Powder by Novel Thermo-Reduction Process)

  • 이동원;;배정현;김병기
    • 한국분말재료학회지
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    • 제10권6호
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    • pp.390-394
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    • 2003
  • Ultra fine titanium carbide particles were synthesized by novel metallic thermo-reduction process. The vaporized TiC1$_4$+$CCl_4$ gases were reacted with liquid magnesium and the fine titanium carbide particles were then produced by combining the released titanium and carbon atoms. The vacuum treatment was followed to remove the residual phases of MgC1$_2$ and excess Mg. The stoichiometry, microstructure, fixed and carbon contents and lattice parameter were investigated in titanium carbide powders produced in various reaction parameters.

나노금속분말을 혼합한 용액이 열전달에 미치는 영향 (The effects of nanofluid containing metal nano-powder on heat transfer)

  • 김혜민;최순호;정재현;박권하
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2005년도 전기학술대회논문집
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    • pp.177-182
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    • 2005
  • Many studies have been conducted to increase heat transfer in fluid. One of the various heat transfer enhancement techniques is to suspend fine metallic or nonmetallic solid powder in traditional fluid. Nanofluid is defined at a new kind of heat transfer fluid containing a very small quantity of nanometer particles that are uniformly and stably suspended in a liquid. In this study CuNi or CuAg nano particles are used to investigate heat transfer enhancement. The result shows the thermal conductivity of nanofluid is much higher than that of traditional fluid.

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Formation of an aluminum hydroxide nanofiber by a hydrolysis of aluminum nanopowder

  • Oh Young-Hwa;Lee Geun-Hee;Park Joong-Hark;Rhee Chang-Kyu;Kim Whung-Whoe
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2004년도 International Symposium on Powder Materials and Processing
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    • pp.80-81
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    • 2004
  • The results obtained are summarized as follows; (1) Boehmite produced in the high temperature and acid region showed a nano fibrous shape with several nm in diameter and several hundreds nm in length having high specific surface areas with a maximum value of $409m^2/g$. (2) In order to obtain nano fibrous boehmite with high surface areas from nano metal powder, the hydrolysis reaction should be done at a high temperature over $50^{\circ}C$, high acidity under pH 6, and terminated before a transition to the bayerite phase.

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전기방사법을 이용한 Ag 나노입자 분산 고분자 나노파이버와 Ag 나노파이버 제조 및 특성 평가 (Fabrication and Characterization of Ag Nanoparticle Dispersed Polymer Nanofiber and Ag Nanofiber Using Electrospinning Method)

  • 김희택;황치용;송한복;이근재;주연준;홍성재;강남기;박성대;김기도;좌용호
    • 한국분말재료학회지
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    • 제15권2호
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    • pp.114-118
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    • 2008
  • Functional nanomaterial is expected to have improved capacities on various fields. Especially, metal nanoparticles dispersed in polymer matrix and metal nanofiber, one of the functional nanomaterials, are able to achieve improvement of property in the electric and other related fields. In this study, the fabrication of metal (Ag) nanoparticle dispersed nanofibers were attempted. The Ag nanoparticle dispersed polymer nanofiber and Ag nanofiber were fabricated by electrospinning method using electric force. First, PVP/$AgNO_3$ nanofibers were synthesized by electrospinning in $18{\sim}22kV$ voltage with the starting materials (Ag-nitrate) added polymer (PVP; poly (vinylpyrrolidone)). Then Ag nanoparticle dispersed polymer nanofibers were fabricated to reduce hydrogen reduction at $150^{\circ}C$ for 3hr. And Ag nanofibers were synthesized by the decomposited of PVP at $300{\sim}500^{\circ}C$ for 3hr. The nanofibers were analyzed by XRD, TGA, FE-SEM and TEM. The experimental results showed that the Ag nanofibers could be applied in many fields as an advanced material.

초발수 현상을 이용한 나노 잉크 미세배선 제조 (Fabrication of Micro Pattern on Flexible Substrate by Nano Ink using Superhydrophobic Effect)

  • 손수정;조영상;나종주;최철진
    • 한국분말재료학회지
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    • 제20권2호
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    • pp.120-124
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    • 2013
  • This study is carried out to develop the new process for the fabrication of ultra-fine electrodes on the flexible substrates using superhydrophobic effect. A facile method was developed to form the ultra-fine trenches on the flexible substrates treated by plasma etching and to print the fine metal electrodes using conductive nano-ink. Various plasma etching conditions were investigated for the hydrophobic surface treatment of flexible polyimide (PI) films. The micro-trench on the hydrophobic PI film fabricated under optimized conditions was obtained by mechanical scratching, which gave the hydrophilic property only to the trench area. Finally, the patterning by selective deposition of ink materials was performed using the conductive silver nano-ink. The interface between the conductive nanoparticles and the flexible substrates were characterized by scanning electron microscope. The increase of the sintering temperature and metal concentration of ink caused the reduction of electrical resistance. The sintering temperature lower than $200^{\circ}C$ resulted in good interfacial bonding between Ag electrode and PI film substrate.

Fabrication of Nano-sized Metal Dispersed Magnesia Based Composites and Related Mechanical and Magnetic Properties

  • Choa, Yong-Ho;Tadachika Nakayama;Tohru Sekino;Koichi Niihara
    • The Korean Journal of Ceramics
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    • 제5권4호
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    • pp.395-399
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    • 1999
  • MgO/metal nanocomposite powder mixtures were prepared by solution chemical processes to obtain suitable structure for ceramic/metal nanocomposites. Nickel or cobalt nitrate, as a source of metal dispersion, was dissolved into alcohol and mixed with magnesia powder. After calcined in air, these powders were reduced by hydrogen. Densified nanocomposites were successively obtained by Pulse Electric Current Sintering (PECS) process. The dispersed metal partical size depended on temperature and time in calcination and reduction processes. The phase analyses in the synthesized powders as a functioni of temperature were tracked using a dynamic high temperature X-ray diffractioni (HTXRD) system. Phase and crystallite size analyses were done using X-ray diffractioni and TEM. The MgO/metal nanocomposites were successfully fabricated, and ferromagnetic responses with enhanced coercive force were also investigated for these composites.

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