• Title/Summary/Keyword: 열적열화

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Synthesis and Characterization of Non-halogen Type Phosphorus-Based Flame Retardants (비할로겐형 phosphate계 난연제의 합성 및 특성결정)

  • Han, Young Gyun;Min, Seong Kee;Park, Chan Young
    • Elastomers and Composites
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    • v.49 no.4
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    • pp.313-322
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    • 2014
  • Among many types of flame retardants, the most available halogen-containing flame retardants were put under environmental restrictions in their use, so non-halogen type phosphorus-based flame retardants have come into the spotlight. When added to resins, flame retardants commonly bring about thermal degradation and decrease in mechanical properties of resins. Studies of new flame retardants were carried out in an attempt to minimize degradation of physical properties and require enough flame retardancy. In this study, three types of non-halogen phosphorus-based flame retardants were synthesized with diaryl alkyl phosphate esters, aromatic phosphate esters and phosphonium nitron flame retardants, which were then identified for the synthesis and thermal properties by gas chromatography (GC), IR and thermal gravimetric analysis (TGA).

Thermal Degradation of Aqueous MEA Solution for CO2 Absorption by Nuclear Magnetics Resonance (핵자기공명분석법을 이용한 수용성 아민 CO2 흡수제인 MEA의 열적변성 분석)

  • CHOI, JEONGHO;YOON, YEOIL;PARK, SUNGYOUL;BAEK, ILHYUN;KIM, YOUNGEUN;NAM, SUNGCHAN
    • Transactions of the Korean hydrogen and new energy society
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    • v.27 no.5
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    • pp.562-570
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    • 2016
  • At the carbon dioxide capture process using the aqueous amine solution, degradation of absorbents is main factor to reducing the process performance. Also, degradation mechanism of absorbent is important for understanding the environmental risk, route of degradation products, health risk etc. In this study, the degradation products of MEA were studied to clarify mechanism in thermal degradation process. The degradation products were analyzed using a $^1H$ NMR (nuclear magnetic resonance) and $^{13}C$ NMR. The analysis methods used in this study provide guidelines that could be used to develop a degradation inhibitor of absorbent and a corrosion inhibitor.

A Study on Thermal and Mechanical Properties of Elastic Epoxy with Water Aging (탄성형 에폭시의 흡습 열화에 따른 열적 및 기계적 특성에 관한 연구)

  • 이관우;민지영;한기만;최용성;박대희
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.53 no.6
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    • pp.293-299
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    • 2004
  • In this paper, thermal and mechanical properties of electric epoxy with water aging were discussed. We made elastic epoxy specimen adding a ratio of 0〔phr〕20〔phr〕, 35〔phr〕 and 53〔phr〕 with modifier to existing epoxy. We studied mechanical property of elastic resin after absorption in water from 0 to 484 hours. As a result, diffusion factor of elastic epoxy showed 20-21${\times}$10$^{-4}$ $\textrm{mm}^2$/s and general epoxy showed 9.5${\times}$10$^{-4}$ $\textrm{mm}^2$/s. Elastic property increased linearly according to addiction and decreased according to water absorption. Tensile strength was reduced according to addition. It was affected by water absorption of micro-void of elastic epoxy. Hardness inclined to decrease after increasing according to absorbed time. In water-absorption state, it was experimented a change of heat flow by temperature of elastic epoxy and change of thermal expansion coefficient. DSC (Differential Scanning Calorimetry) and TMA (Thermomechanical Analysis) equipments were used to measure Tg. A temperature ringe of DSC was from -0($^{\circ}C$) to 200($^{\circ}C$). One of TMA was from -0($^{\circ}C$) to 350($^{\circ}C$). In addition, we investigated structural analysis of water absorbed specimen using SEM (Scanning Electron Microscope).

열/플라즈마 산화를 이용한 그래핀 내산화 특성 연구

  • Lee, Byeong-Ju;Jeong, Gu-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.78-78
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    • 2010
  • 그래핀(Graphene)은 탄소원자가 육각형 벌집(honeycomb)구조로 빼곡히 채워진 2차원의 단원자 층으로 역학적 강도와 우수한 화학적/열적 안정성 및 흥미로운 전기 전도 특성을 가지고 있다. 이러한 그래핀의 우수한 특성으로 인하여 현재 기초연구뿐만 아니라 응용연구 등 많은 연구들이 진행되고 있다. 일반적으로 그래핀의 우수한 물리적 특성들은 그래핀의 층수, 모서리(edge)구조, 결함(defect), 불순물 등에 의해 크게 좌우되는 것으로 알려져 있다. 따라서 그래핀의 구조 및 결함정도를 자유로이 제어하고 그에 따르는 특성 변화를 관찰하는 것은 기초연구의 측면에서 뿐만 아니라 향후 그래핀 응용에 있어서도 매우 중요하다고 할 수 있다. 본 연구에서는 그래핀의 내산화 특성을 연구하기 위하여, 그래핀을 열 및 플라즈마 산화 분위기에 노출시킨 후, Raman 분광법을 이용하여 광학적, 구조적 변화를 분석함으로써 그래핀의 내산화 특성에 대하여 조사하였다. 그래핀은 실리콘 웨이퍼에 전자빔증착법으로 니켈박막을 증착한 후 열화학증기증착법으로 합성하였으며, 메탄가스를 원료가스로 $900^{\circ}C$ 전후에서 합성하였다. 합성한 그래핀은 산화반응 시 기판의 영향을 제거하기 위하여 트렌치 구조의 기판 위에 전사(transfer)함으로써 공중에 떠있는 구조를 구현하였다. 열 산화의 경우, 합성한 그래핀을 대기분위기의 고온($500^{\circ}C$) 챔버에 넣고 처리시간에 따른 특성변화를 살펴보았다. 플라즈마 산화의 경우는 공기를 이용하여 직류플라즈마를 발생시킨 후 0.4 W의 낮은 플라즈마 파워를 이용하여 플라즈마 산화처리와 특성평가를 매회 반복하였다. 그래핀의 특성분석은 Raman분광기와 광학현미경, 원자힘현미경(AFM) 등을 이용하여 분석하였으며, 상기 결과들은 향후 산화환경에서의 그래핀 응용소자 개발에 유용할 것으로 예상된다.

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Microwave Annealing을 이용한 MOS Capacitor의 특성 개선

  • Jo, Gwang-Won;Jo, Won-Ju
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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    • pp.241.1-241.1
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    • 2013
  • 최근 고집적화된 금속-산화막 반도체 metal oxide semiconductor (MOS) 소자는 크기가 점점 작아짐에 따라 얇은 산화막과 다양한 High-K 물질과 전극에 대하여 연구되고 있다. 이러한 소자의 열적 안정성과 균일성을 얻기 위해 다양한 열처리 방법이 사용되고 있으며, 일반적인 열처리 방법으로는 conventional thermal annealing (CTA)과 rapid thermal annealing (RTA)이 많이 이용되고 있다. 본 실험에서는 microwave radiation에 의한 열처리로 소자의 특성을 개선시킬 수 있다는 사실을 확인하였고, 상대적으로 $100^{\circ}C$ 이하의 저온에서도 공정이 이루어지기 때문에 열에 의한 소자 특성의 열화를 억제할 수 있으며, 또한 짧은 처리 시간 및 공정의 단순화로 비용을 효과적으로 절감할 수 있다. 본 실험에서는 metal-oxide-silicon (MOS) 구조의 capacitor를 제작한 다음, 기존의 CTA나 RTA 처리가 아닌 microwave radiation을 실시하여 MOS capacitor의 전기적인 특성에 미치는 microwave radiation 효과를 평가하였다. 본 실험은 p-type Si 기판에 wet oxidation으로 300 nm 성장된 SiO2 산화막 위에 titanium/aluminium (Ti/Al) 금속 전극을 E-beam evaporator로 형성하여 capacitance-voltage (C-V) 특성 및 current-voltage (I-V) 특성을 평가하였다. 그 결과, microwave 처리를 통해 flat band voltage와 hysteresis 등이 개선되는 것을 확인하였고, microwave radiation 파워와 처리 시간을 최적화하였다. 또한 일반적인 CTA 열처리 소자와 비교하여 유사한 전기적 특성을 확인하였다. 이와 같은 microwave radiation 처리는 매우 낮은 온도에서 공정이 이루어짐에도 불구하고 시료 내에서의 microwave 에너지의 흡수가 CTA나 RTA 공정에서의 열에너지 흡수보다 훨씬 효율적으로 이루어지며, 결과적으로 산화막과 실리콘 기판의 계면 특성 개선에 매우 효과적이라는 것을 나타낸다. 따라서, microwave radiation 처리는 향후 저온공정을 요구하는 nano-scale MOSFET의 제작 및 저온 공정이 필수적인 display 소자 제작의 해결책으로 기대한다.

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Evaluation of the Activation Energy of Chlorinated Poly Vinyl Chloride (CPVC) Using Thermogravimetric Analysis (TGA를 이용한 Chlorinated Poly Vinyl Chloride(CPVC)의 활성화 에너지 평가)

  • Park, Hyung-Ju
    • Fire Science and Engineering
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    • v.33 no.1
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    • pp.1-6
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    • 2019
  • The activation energy of CPVC (Chlorinated Poly Vinyl Chloride) used for non-metallic synthetic resin piping in fire-fighting was measured by thermogravimetric analysis (TGA). The activation energy was determined using by TGA kinetic methods, such as Kissinger and Flynn-Wall-Ozawa method. The calculated activation energy was 128.07 kJ/mol (Kissinger method) and 145.60 kJ/mol (Flynn-Wall-Ozawa method). The difference in activation energies calculated by the Kissinger method and Flynn-Wall-Ozawa method was not considered to be significant considering that the different analysis methods. The combustion characteristics will be tested in a future study through an evaluation of thermal deterioration using an accelerated deterioration and air oven aging test and the lifetime of CPVC will be predicted.

Effect of CeO2 Addition on De-CH4 and NOx Performance (CH4와 NOx 저감 성능에 관한 CeO2 첨가의 영향)

  • Seo, Choong-Kil
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.9
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    • pp.473-479
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    • 2017
  • Due to environmental pollution, hazards of the human body, and global warning, changes in the power train of automobiles are intensifying, and the market forelectronic vehicles is rising. Also, in order to meet the stricter emission regulations forautomobiles with internal combustion engines based on fossil fuel, the proportion of after-treatments for vehicles and vessels is increasing gradually. The objective of this study is to investigate the effectsfrom additive ceric oxide ($CeO_2$) loading amounts to improve the methane ($CH_4$) and nitric oxide (NOx) abatement ability of the natural gas oxidation catalysts(NGOC) reducing toxic gases emitted from compressed natural gas (CNG) buses. Three kinds of NGOC were prepared under the following conditions: fresh and $700^{\circ}C$ for 12hr thermal aging, and the reduction performance of toxic gases was evaluated. Fresh $1Pt-3Pd-1Rh-3MgO-6CeO_2/(Al+Z)$ NGOC containing 6wt% $CeO_2$ had the highest dispersivity of palladium (Pd) with high selectivity to $CH_4$ and improved harmful gas reduction performance. The NGOC with 6wt% $CeO_2$ loaded the least decreased in the dispersivity of the noble metal, and showed the highest reduction of harmful gases due to the thermal durability of $CeO_2$.

Thermal Conductivity Effect of Heat Storage Layer using Porous Feldspar Powder (다공질 장석으로 제조한 축열층의 열전도 특성)

  • Kim, Sung-Wook;Go, Daehong;Choi, Eun-Kyeong;Kim, Sung-Hwan;Kim, Tae-Hyoung;Lee, Kyu-Hwan;Cho, Jinwoo
    • Economic and Environmental Geology
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    • v.50 no.2
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    • pp.159-170
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    • 2017
  • The temporal and spatial temperature distribution of the heat storage mortar made of porous feldspar was measured and the thermal properties and electricity consumption were analyzed. For the experiment, two real size chambers (control model and test model) with hot water pipes were constructed. Two large scale models with hot water pipes were constructed. The surface temperature change of the heat storage layer was remotely monitored during the heating and cooling process using infrared thermal imaging camera and temperature sensor. The temperature increased from $20^{\circ}C$ to $30^{\circ}C$ under the heating condition. The temperature of the heat storage layer of the test model was $2.0-3.5^{\circ}C$ higher than the control model and the time to reach the target temperature was shortened. As the distance from the hot water pipe increased, the temperature gap increased from $4.0^{\circ}C$ to $4.8^{\circ}C$. The power consumed until the surface temperature of the heat storage layer reached $30^{\circ}C$ was 2.2 times that of the control model. From the heating experiment, the stepwise temperature and electricity consumption were calculated, and the electricity consumption of the heat storage layer of the test model was reduced by 66%. In the cooling experiment, the surface temperature of the heat storage layer of the test model was maintained $2^{\circ}C$ higher than that of the control model. The heat storage effect of the porous feldspar mortar was confirmed by the temperature experiment. With considering that the time to reheat the heat storage layer is extended, the energy efficiency will be increased.

Effects of the High Shear Rate Processing on the Thermal Properties of PC/ABS Blends (고속 전단 가공에 의한 PC/ABS 블렌드의 열적 물성 변화 연구)

  • Lee, Hyeong Il;Lee, Han Ki;Kim, Dea Sik;Choi, Seok Jin;Kim, Seon Hong;Yoo, Jea Jung;Yong, Da Kyoung;Lee, Seung Goo;Lee, Kee Yoon
    • Polymer(Korea)
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    • v.38 no.3
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    • pp.320-326
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    • 2014
  • The effects of high shear rate processing on the thermal properties of PC/ABS blends were studied. It was executed by the high shear processing machine (NHSS2-28) at the varied conditions of screw speeds and loaded duration. After the samples were processed with NHSS2-28, the $T_gs$ were shifted from 143 to $133^{\circ}C$, and the behavior of degradation determined by TGA showed two distinct steps before high shear rate processing, while it showed a straight line after the processing. In order to provide the reasons of the properties, it was showen by SEM and UTM that the droplet sizes morphologically decreased after the processing, and the elongations decreased slightly until 1000 rpm of screw speed and then sharply decreased, according to the conditions of high shear rate processing. Therefore, it can be confirmed that $T_g,s$ of PC/ABS blends were considerably shifted under an appropriate high shear rate condition, and rapidly dropped, so that blends degraded above the condition, due to stress-induced degradation.

Analysis of the Risk of Heat Generation due to Bolt Loosening in Terminal Block Connector Parts (볼트풀림에 의한 터미널 블록의 접속부 발열 위험성 분석)

  • Yeon, Yeong-Mo;Kim, Seung-Hee
    • Fire Science and Engineering
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    • v.34 no.3
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    • pp.67-75
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    • 2020
  • In this study, the risk of heat generation due to normal and overload currents that vary with the abnormal loosening angle of wire-connecting bolts were identified. The risks were analyzed based on the thermal characteristics to minimize the carbonization accidents of terminal blocks inside distribution panels typically used in industrial sites. We applied a method for measuring the heating temperature and temperature variations in the terminal blocks in real-time by installing a resistance temperature detector sensor board in the terminal block. The experimental results showed that the terminal block model with a low-rated current exhibited a higher heating temperature, thus, confirming the need to select the terminal block capacity based on load currents. Additionally, the higher the rated current of the terminal block with a high-rated current and the higher the degree of loosening, the faster the carbonization point. Such heating temperature monitoring enabled real-time thermal temperature measurement and a step-by-step risk level setting through thermal analysis. The results of the measurement and analysis of carbonization risks can provide a theoretical basis for further research regarding the risk of fire due to carbonization. Furthermore, the deterioration measurement method using the temperature sensor board developed in this study is widely applicable to prevent fires caused by poor electrical contact as well as risk-level management.