• Title/Summary/Keyword: 마이크로/나노 알루미늄 입자

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Combustion Modeling of Nano/Micro Aluminum Particle Mixture (나노-마이크로 알루미늄 혼합 입자의 공기와의 연소 모델링)

  • Yoon, Shi-Kyung;Shin, Jun-Su;Sung, Hong-Gye
    • Journal of the Korean Society of Propulsion Engineers
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    • v.15 no.6
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    • pp.15-25
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    • 2011
  • One dimensional combustion modeling of aluminum combustion behavior is proposed. Combustion model is assumed that region consists as follows ; preheat, reaction, post reaction region. Flame speed as a function of particle size, equivalence ratio for unitary particles and fraction ratio of micro to nano particle size for binary particles were investigated for lean burn condition at 1 atm. Results were compared with experimental data. For unitary particles, flame speed increase as particle size decreases, but opposite trend with equivalence ratio. For binary particles, flame speed increases proportionally as nano particle fraction increases. For flame structure, separated or overlapping flames are observed, depending on the fraction of nano sized particles.

Generation and ignition of micro/nano - aluminum particles using laser (레이저를 이용한 마이크로/나노 알루미늄 입자 생성과 점화)

  • Lee, Kyung-Cheol;Yoh, Jai-Ick
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2012.05a
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    • pp.429-434
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    • 2012
  • Ignition delay of micro/nano aluminum particles is caused by aluminum oxide shell. The method of minimizing this ignition delay is proposed in the study. Generating and heating of particles are processed at the same time. As soon as heated particles are produced, they immediately contact with oxygen. Chemical reaction is induced on the contact surface instead of crystallization of oxide shell. Finally particles are ignited. Aluminum particles are generated by laser ablation on an aluminum plate using Nd:YAG pulse laser. Injected particles are confirmed through visualization of particles using scattering method. $CO_2$ continuous laser supplies heat to aluminum plate and generated particles. Trace of burning particles is observed in the experiment.

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Explosion Properties of Nano and Micro-sized Aluminium Particles (나노 및 마이크로 입자 알루미늄의 폭발 특성)

  • Han, Ou-Sup;Lee, Keun-Won
    • Journal of the Korean Institute of Gas
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    • v.18 no.5
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    • pp.20-25
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    • 2014
  • Explosion characteristics of micro-sized aluminum dusts had been studied by many researchers, but the research of nano-sized aluminum dusts were very insufficient. In this study, an experimental investigation was carried out on the influences of nano and micro-sized aluminum dusts (70 nm, 100 nm, $6{\mu}m$, $15{\mu}m$) on dust explosion properties of aluminum particles by using 20 L explosion apparatus. With decreasing of particle size in suspended aluminum dusts, the LEC (lower explosion concentration) of nano-sized aluminum is lower than that of micro-sized aluminum. The particle size change of nano-sized aluminum dusts seems no obvious explosion differences than that of micro-sized aluminum dusts. From the observation of nano-sized aluminum particles by TEM (Transmission Electron Microscopy), it is estimated that increase of particles aggregation may have effects on the explosion characteristics of aluminum nanopowders.

청정 고에너지 금속 나노입자의 유용성

  • Seong, Hong-Gye;Yun, Si-Gyeong
    • Journal of the KSME
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    • v.49 no.9
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    • pp.40-46
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    • 2009
  • 화석연료의 과다 사용으로 인한 에너지 고갈과 환경오염 문제는 청정 고 에너지인 알루미늄 등의 금속 입자가 대안이 될 수 있다. 그 중에서도 나노 크기의 알루미늄은 일반적으로 사용하는 마이크로 크기의 알루미늄보다 낮은 점화온도와 높은 반융률로 그 효율성이 매우 높다.

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Rheological Investigation of Aluminized Paraffin Wax Fuel on Particle Size and Contents (파라핀/알루미늄 연료의 알루미늄 입자크기 및 함유비 변화에 따른 유변학적 특성)

  • Ryu, Sunghoon;Han, Seongjoo;Moon, Heejang;Kim, Jinkon;Kim, Junhyung;Ko, Seungwon
    • Journal of the Korean Society of Propulsion Engineers
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    • v.22 no.2
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    • pp.11-19
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    • 2018
  • Viscosity measurements were conducted to investigate the rheological characteristics of aluminized paraffin wax fuel. To identify the effect of size and contents of the aluminum particles on the variation of viscosity, samples of nano- and micro- sized aluminum particles with an average particle size of 100 nm and $8{\mu}m$ were prepared and measured using a rheometer. The observed viscosity increment patterns of the nano- and micro-sized particles were vey different, and particularly above 10 wt%, where a relatively low overall regression rate is expected for nano- content fuel. It is possible that this phenomenon could cause the reduced entrainment regression rate.

Reduction of Nitrate-Nitrogen by Zero-valent Iron Nanoparticles Deposited on Aluminum yin Electrophoretic Method (전기영동법으로 알루미늄에 침적된 영가 철 나노입자에 의한 질산성 질소의 환원)

  • Ryoo, Won
    • Clean Technology
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    • v.15 no.3
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    • pp.194-201
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    • 2009
  • Reductive reactivity of zero-valent iron nanoparticles was investigated for removal of nitrate-nitrogen which is considered one of the major water pollutants. To elucidate the difference in reactivity between preparation methods, iron nanoparticles were synthesized respectively from microemulsion and aqueous solution of ferric ions. Iron nanoparticles prepared from microemulsion were deposited on aluminum by electrophoretic method, and their reaction kinetics was compared to that of the same nanoparticles suspended in aqueous batch reaction. With an approximation of pseudo-first-order reaction, rate constants for suspended nanoparticles prepared from microemulsion and dilute aqueous solution were $3.49{\times}10^{-2}min^{-1}$ and $1.40{\times}10^{-2}min^{-1}$, respectively. Iron nanoparticles supported on aluminum showed ca. 30% less reaction rate in comparison with the identical nanoparticles in suspended state. However, supported nanoparticles showed the superior effectiveness in terms of nitrate-nitrogen removal per zero-valent iron input especially when excess amounts of nitrates were present. Iron nanoparticles deposited on aluminum maintained reductive reactivity for more than 3 hours, and produced nitrogen gas as a final reduction product of nitrate-nitrogen.

Tensile and Compressive Strength Characteristics of Aluminized Paraffin Wax Fuel for Various Particle Size and Contents (파라핀/알루미늄 연료의 알루미늄 입자크기 및 함유비 변화에 따른 인장 및 압축강도 특성 연구)

  • Ryu, Sunghoon;Han, Seongjoo;Kim, Jinkon;Moon, Heejang;Kim, Junhyung;Ko, Seung Won
    • Journal of the Korean Society of Propulsion Engineers
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    • v.20 no.5
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    • pp.70-76
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    • 2016
  • Tensile and compressive strength tests were conducted to investigate the mechanical characteristics of aluminized paraffin wax fuel for hybrid gas generator applications. Mixtures of 0 wt%, 10 wt% and 30 wt% nano aluminum paraffin coupons as well as 5 wt%, 10 wt% and 15 wt% micro aluminum paraffin coupons were used. The average particle size of 100nm and of $8{\mu}m$ mixed each with microcrystalline paraffin wax(Sasol 0907) were chosen for the base specimens where the tensile strength test followed the ASTM-D638 specimen standard while the compressive strength test followed the ASTM D575-91. It was found that nano based specimens increased both the tensile and compressive strength enhancing the mechanical behavior of paraffin wax whereas the micro based specimens gave still less influential effect.

항균재료용 은나노 입자/알루미늄 하이드록사이드 나노복합재 제조

  • Seo, Yeong-Ik;Jeon, Yong-Jin;Kim, Dae-Geon;Lee, Gyu-Hwan;Kim, Yeong-Do
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2009.11a
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    • pp.46.1-46.1
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    • 2009
  • 산업이 점차 발달함에 따라 발생하는 환경오염으로 인해 인간의 삶에 있어 불가분의 관계에 있는 물에 대한 관심이 지속적으로 높아지고 있는 추세이다. 각종 질병의 요인이 되는 박테리아는 주로 물을 운송 매개체로 하기 때문에 이로 인한 물의 오염으로 인도의 경우 모든 질병 발생의 80%를 차지하는 것으로 세계보건기구(WHO)에 의해 보고되었다. 현재까지물 또는 공기의 항균 및 살균 정화를 위해 화학적, 생물학적 방식 등 다양한 기술이 개발되었으나 박테리아와같은 세균제거에는 무리가 있는 실정이다. 따라서 본 연구에서는 여러 물질 중에서도 특히 항균작용(Antibacterial activity)이 탁월한 은(Ag)을 나노입자화하여 in-situ 코팅을 통한 다공성 알루미늄 하이드록사이드 나노복합재의 제조함으로써 생물학, 생체의용공학, 약학 등에 응용될 수 있는 새로운 형태의 항균재료제조방법을 제안하였다. 우선, 다공성 알루미늄 하이드록사이드기판은 알루미늄 기판에 알칼리 표면개질을 실시함으로서 표면에 마이크로포어가 형성된 알루미늄 하이드록사이드 기판을 제조하였다. 이렇게 제조된 다공성 기판에 Polyol 공정으로 은나노입자를 합성 및 분산시킴으로서 in-situ로 은나노입자가 분산된 알루미늄 하이드록사이드 나노복합재 기판을 만들수 있었다. 본 연구를 통하여 제조된 은나노입자가 분산된 알루미늄 하이드록사이드 나노복합재 기판은 주사전자현미경(SEM) 및 투과전자현미경(TEM)을 통하여 미세구조와 상분석을 실시하였으며 X선 광전자분석(XPS)를 이용하여 기판 표면의 화학적 상태를 분석하였다.

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A Study on Combustion Characteristics of Paraffin Blended Fuel on Aluminum Particle Size (알루미늄 입자 크기에 따른 파라핀 혼합연료의 연소 특성 연구)

  • Ko, Soohan;Han, Seongjoo;Ryu, Sunghoon;Kim, Jinkon;Moon, Heejang;Kim, Junhyung;Ko, Seungwon
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2017.05a
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    • pp.791-796
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    • 2017
  • In this study, the combustion characteristics of paraffin blended fuel on aluminum particle size were investigated. The combustion experiments were carried out using aluminum particles with an average particle size of 100 nm and $8{\mu}m$ and microcrystalline paraffin wax (Sasol 0907). A series of comparison was conducted on the regression rate, the pressure curve and the characteristic velocity of pure paraffin and paraffin blended fuels with aluminum particles. It was found that the micro-sized particles enhance the regression rate as the oxidizer mass flux increased. However, the nano-sized particles decrease the regression rate as the oxidizer mass flux is increased.

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Thermal and Rheological Characteristics of Paraffin Based Fuel on Aluminum Particle Size for Hybrid Rocket Application (하이브리드 로켓용 파라핀/알루미늄 연료의 알루미늄 입자크기에 따른 열적·유변학적 특성 연구)

  • Han, Seongjoo;Kim, Jinkon;Moon, Heejang;Kim, Junhyung;Ko, Seungwon
    • Journal of the Korean Society of Propulsion Engineers
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    • v.22 no.2
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    • pp.108-114
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    • 2018
  • In this study, the thermal and rheological characteristics of a 10 wt.% addition of aluminum particles and the effect of the particle size were investigated to qualitatively analyze the paraffin fuel entrainment regression rate. The results revealed that the addition of aluminum particles and their relative particle size affected the rheological characteristics, rather than the thermal characteristics. Moreover, it was found that the variation of thermal properties had a minor effect on the entrainment regression rate, in comparison to the variation in rheological properties.