• Title/Summary/Keyword: 무기입자

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Fire Resistance Study of PP Thermoplastic Composites with Particulate Reinforcements and Br Flame Retardants (무기 입자 강화제와 브롬(Br) 난연제에 따른 폴리프로필렌 복합재료의 난연성 향상에 관한 연구)

  • 곽성복;황성덕;남재도;고재송;최형기
    • Polymer(Korea)
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    • v.26 no.2
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    • pp.260-269
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    • 2002
  • The fire resistance of particulate polypropylene composite systems were investigated by using various reinforced particles such as zeolite, talc, $CaCO_3$ particles. In this study, The effect of particle size on the thermal properties of composite and the effect of reinforced particles on the fire resistance were studied. The inorganic reinforced particles used in this study were recycled zeolite(average particle diameter=85.34 $mu extrm{m}$), $CaCO_3$ (33.93 $mu extrm{m}$), and talc (18.51 $mu extrm{m}$). The fire resistance of composite systems was thoroughly examined by measuring limited oxygen index (LOI, ASTM D2863) and cone calorimetry (ASTM E1354, ISO 5660). Thermal stability of composite systems was thoroughly examined by measuring TGA. The flame retardants (DBDPO) and reinforced particles reduce the maximum heat release rate (M-HRR) in the order of Talc > $CaCO_3$ > recycled Zeolite. Comparing the cone calorimetry experimental results of the particle reinforced polymer composite system exhibited twice higher efficiency than DBDPO in polypropylene systems, and the LOI also showed similar trends to the cone calorimetry experiments. The optical and scanning electron microscopy techniques were used to investigate the composites ash layer and the core fracture surfaces in the burning process. The reinforcing inorganic particles seemed to accumulate at the surface of ash layer, and subsequently intercept the oxygen transport and heat transfer into the core area.

Basic Study of the Hysteresis of a Nano Shock Absorbing Damper by Employing Mixed Lyophobic Coating Silica Gel (실리카 겔의 소수화 코팅 혼합 정도에 따른 나노 충격 흡수 장치의 이력 현상에 대한 기초적 연구)

  • 문병영;김흥섭
    • Journal of the Earthquake Engineering Society of Korea
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    • v.7 no.2
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    • pp.59-66
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    • 2003
  • A novel application of nano-technology in the field of engineering, called colloidal damper, is investigated. This device is complementary to the hydraulic damper, having a cylinder-piston construction. Particularly for colloidal damper, the hydraulic oil is replacedby a colloidal suspension, which is consisted from a nano-porous matrix with controlled architecture and a lyophobic fluid. In this experimental work, the porous matrix is composed from silica gel, with labyrinth architecture, coated by organo-silicones substances in order to achieve a hydrophobic surface. Water is considered as associated lyophobic fluid. The colloidal damper test rig and the measuring technique of the hysteresis are described. the influence of the hydrophobicity level upon the colloidal damper hysteresis is investigated, for silica gels with similar pores distribution. A certain desired shape of the hysteresis can be achieved by employing mixture of silica gels with different level of hydrophobicity and/or architecture. With these results, it is believed that the proposed damper can be designed and be applied to the desired structure.

A Comparison Study on Various Quantum Dots Light Emitting Diodes Using TiO2 Nanoparticles as Inorganic Electron Transport Layer (무기 전자 수송층으로 TiO2 나노입자를 사용한 다양한 양자점 전계발광 소자의 특성 비교 연구)

  • Kim, Moonbon;Yoon, Changgi;Kim, Jiwan
    • Journal of the Microelectronics and Packaging Society
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    • v.26 no.3
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    • pp.71-74
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    • 2019
  • In this study, we fabricated two standard and inverted quantum dot light emitting diodes (QLEDs) using $TiO_2$ nanoparticles (NPs) with lower electron mobility than ZnO NPs as inorganic electron transport layer to suppress electron injection into the emitting layer. Current density was much higher for the inverted QLEDs than the standard ones. The inverted QLEDs were brighter, but showed low current efficiency due to the high current density. In addition, as the current density was higher, the driving voltage was higher, and the red shift was confirmed in the emission wavelength spectrum. The low current density in the standard structured devices showed that the possibility that $TiO_2$ NPs could suppress the electron injection in the QLEDs.

CuO 나노 입자의 PEDOT:PSS 첨가를 통한 유기 태양전지 특성 향상 연구

  • O, Sang-Hun;Jeong, Ju-Hye;Kim, Hyeon-Jae
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.388-388
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    • 2011
  • 본 연구에서는 CuO 나노 입자를 poly(3,4,-ethylene dioxythiophene):polystyrene sulfonic acid (PEDOT:PSS) 버퍼층에 첨가하여 정공의 이동도를 높임으로서 poly(3-hexylthiophene) (P3HT) as the electron donor and (6.6) phenyl-C61-butyric acid methyl ester (PCBM) 기반의 유기 태양전지를 제작하였다. 일반적으로 PEDOT:PSS 박막은 높은 광 투과율과 상대적으로 우수한 전기전도도를 지닌 p-type의 유기 반도체 물질로써 유기 태양전지의 홀 전도막으로 널리 사용되어지고 있다. 하지만 낮은 홀이동도로 인하여 전달된 정공이 전극까지 전달되는데에 한계점이 있어 본 연구에서 이를 극복하기 위한 방안으로 p-type의 무기 반도체 물질인 CuO 나노 입자를 PEDOT:PSS 박막내에 첨가하여 홀 이동도를 높이고자 하였다. CuO 나노 입자를 PEDOT:PSS 용액에 각각 5, 10, 15, 20mg/ml 의 농도로 첨가하여 유기 태양 전지의 버퍼층으로 사용을 하였다. 이렇게 제작되어진 각각의 PEDOT:PSS 박막과 CuO 나노 입자가 첨가된 PEDOT:PSS 박막의 전기적, 광학적 및 표면 분석을 통하여 CuO 나노 입자가 PEODT:PSS 박막에 미치는 영향을 조사하였고, 이를 통하여 P3HT:PCBM 기반의 유기 태양전지를 제작하여 전기적 특성 분석을 수행하였다.

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Influence of Inorganic Filler on Properties of EPDM Compounds (무기 충전제가 EPDM 배합물의 특성에 미치는 영향)

  • Choi, Sung-Seen;Kim, Ok-Bae
    • Elastomers and Composites
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    • v.46 no.2
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    • pp.138-143
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    • 2011
  • EPDM compounds and vulcanizates containing inorganic filler such as talc, calcium carbonate, or clay as well as carbon black were prepared, and the influence of inorganic filler on properties of the EPDM compounds and vulcanizates were investigated. The bound rubber contents did not significantly increase even though the inorganic filler was added. There were big aggregates in the EPDM samples with high loading inorganic filler. By adding the inorganic filler, the cure times tended to increase and the delta torque decreased. The modulus were on the whole decreased, whereas the elongation at break, tensile strength, and tear strength were increased by adding the inorganic filler. The decreased modulus and increased elongation at break can be explained with the decreased delta torque, the increases of tensile strength and tear strength can be explained with the increased elongation at break. By adding the inorganic filler, level of reinforcing in the EPDM compounds did not increase and the crosslink density decreased.

Preparation of Hydrophobic Antimicrobal Compounds Encapsulated Nanoparticles Using Alkoxysilane-functionalized Amphiphilic Polymer Precursor and Their Antimicrobial Properties (실란 기능화 양친성 고분자 전구체를 이용한 소수성 항균물질 담지 나노 입자 제조 및 항균 특성)

  • Kim, Nahae;Kim, Juyoung
    • Journal of Adhesion and Interface
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    • v.18 no.1
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    • pp.13-24
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    • 2017
  • In this study, nanoparticles which encapsulated hydrophobic antimicrobial compounds with 50wt% of payload and 70%of solid content were prepared. These nanoparticles could be dispersed at water as well as various medium. Water dispersible organic-inorganic (O-I) hybrid nanoparticles were first prepared using alkoxysilane-functionalized amphiphilic polymer precursors through a conventional sol-gel process. Hydrophobic antimicrobial compound, Eugenol encapsulated nanoparticles were prepared using these O-I hybrid nanoparticles through a new nanoprecipitation process. The effect of various preparation on the size of nanoparticles, amount of payload, antimicrobial activity, and release rate of encapsulated compounds was investigated. All eugenol-encapsulated O-I nanoparticles regardless of preparation condition showed the same minimal inhibitory concentration (MIC) (50mg/ml) and 99% of antimicrobial activity for every strain. Their antimicrobial activity could maintain longer than two weeks. Especially, eugenol-encapsulated O-I nanoparticles prepared using tetraethoxysilane (TEOS) exhibited the highest payload (50wt%) and the lowest release rate which was owing to higher inorganic content in the O-I nanoparticles. And these O-I nanoparticles dispersed in hexanediol (HD) showed the highest antimicrobial activity and solid content (70wt%) because HD acted as a solvent as well as a antimicrobial agent.

상압플라즈마를 이용한 제독기술 소개

  • Jo, Gwang-Nam
    • Defense and Technology
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    • no.3 s.289
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    • pp.66-77
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    • 2003
  • 상압플라즈마(APPJ)1)는 반응성이 좋은 이온화된 기체로서 유해한 부산물을 생성해 내지 않고 병원균과 독성 물질의 중화가 가능하며, 저온에서 운용되기 때문에 전자.정밀장비에 손상을 주지 않는 제독무기체계로 활용이 가능한 혁신적인 신기술이다. 아크와 코로나 방전의 장점들만 재조합하여 저압상태에서 반응성이 매우 좋은 입자들을 고밀도로 생성할 수 있으므로 대기압 상태에서 일정한 비열의 플라즈마 방출이 가능한 것으로 판단되다.

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$BaSO_4$ 첨가량에 따른 PET 직물 태에 미치는 영향

  • Gwon, Il-Jun;Park, Seong-Min;Kim, Myeong-Sun;Kim, Sang-Uk;Park, Ji-Yeon;Jang, Yeong-Il;Yeom, Jeong-Hyeon
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2011.03a
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    • pp.102-102
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    • 2011
  • 레이온 섬유는 dry한 촉감, 고광택, 드레이프성 등 의류 분야에서 요구하는 많은 장점들을 가지고 있으나 타 섬유 소재에 비해 소비량이 적은 것은 합섬이나 면/울 제품에 비해 상대적으로 제품 가격이 높고, 형태안정성이 취약하여 정장 및 캐주얼의 겉감 용도로 쓰기에는 성능 보완이 필요하다. 또한 염색가공 공정에서 구김발생이 많으며, 열고정이 쉽게 이루어지지 않아 습윤강도와 탄성 회복률이 낮아 변형이 쉽게 발생된다. 이에 본 연구에서는 합섬의 장점을 그대로 유지하면서 레이온 섬유가 갖는 고비중과 우수한 드레이프성과 유연한 질감으로 소프트 터치를 발현하는 특수한 레이온 대체 소재를 실현하고자 하였다. 직물에서 드레이프성과 은은한 광택을 확보하기 위해서는 폴리머단계에서 비중과 광택을 발현할 수 있는 무기입자 중 비중이 높고, 중합 후 폴리머 내에서 광택을 유지하는 입자의 선택이 필요한데 본 실험에서는 $BaSO_4$를 이용하여 PET dope액과 중합한 후 용융 방사하여 고비중 폴리에스테르사(100/48)를 제조하였다. 고비중 폴리에스테르사를 이용하여 폭 58inch, 밀도 92T, 중량 324.8g/yd 직물로 제직하여 그에 따른 태를 측정하였다. 태측정기(KES-FB, KATO TECH CO)를 이용하여 인장 & 전단강도, 굽힘강도, 압축강도, 표면측정 시험 결과 $BaSO_4$ 2% 첨가한 원단의 드레이프성이 우수한 것을 확인할 수 있었다.

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