• Title/Summary/Keyword: 그라파이트

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마이크로웨이브를 이용한 화학적 박리를 통한 그라핀 제조 및 특성

  • Hwang, Gi-Wan;Kim, Hyo-Jung;Park, Nam-Gyu;Kim, Ui-Tae
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2012.05a
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    • pp.80.2-80.2
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    • 2012
  • 그라핀(graphene)은 탄소 원자의 2차원 육각형 $sp^2$ 결합체로서 탄소 나노구조체가 가지는 여러 가지 우수한 특성을 보유하면서 대면적 기판 위에서 소자구현 및 투명전극 등으로의 우수한 응용성 때문에 고품질 그라핀 제조와 물리적 특성, 소자응용에 관한 연구가 활발히 진행되고 있다. 최근 그라핀 제조를 위한 여러 가지 방법이 개발되고 있으나 화학적 박리법이 저비용으로 대량생산을 위해 가장 유리한 방법으로 주목을 받고 있다. 화학적 박리법은 벌크 그라파이트를 강한 산을 이용하여 산화시켜 형성된 산화 그라파이트(graphite oxide)을 열적으로 팽창시켜 박리하고 환원하여 그라핀으로 제조하는 것이다. 보통 열적팽창을 위해서 열처리 로를 사용하게 되는데, 본 연구에서는 박리를 보다 효율적으로 진행시키고 고품질의 그라핀을 얻기 위해 마이크로웨이브를 이용한 박리법을 적용하였다. 마이크로웨이브는 설비가 간단하고 매우 균일하게 열팽창을 시킬 수 있을 뿐만 아니라 대량생산에서도 유리할 것으로 기대하였다. 천연 그라파이트(99.9%, 평균입도 $200{\mu}m$)를 Hummer 방법에 따라 $H_2SO_4$$KMnO_4$를 사용하여 산화시키고 필터링 후 마이크로웨이브를 조사하였다. 이후 환원 처리를 거쳐 그라핀을 제조하였다. 라만스펙트럼 및 투과전자현미경으로 분석한 결과 우수한 품질의 그라핀이 형성되었음을 알 수 있었다. 그라핀의 두께 및 품질은 마이크로웨이브의 인가시간 및 반복 횟수가 증가함에 따라 크게 영향받는 것을 확인하였다. 본 발표에서는 마이크로웨이브를 사용한 산화 그라파이트 박리 및 그라핀 제조라는 새로운 시도와 주요변수에 따른 그라핀 특성에 관한 결과를 논의할 것이다.

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Analysis of Microstructure and Thermal Conductivity of Concrete Thermal Energy Storage based on Amount of Graphite Mixture (그라파이트 혼입량에 따른 에너지 저장 콘크리트의 미세구조 및 열전도도 분석)

  • Kim, Se-Yun;Kim, Sung-Jo;Suh, Jeewoo;Han, Tong-Seok
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.34 no.5
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    • pp.293-300
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    • 2021
  • In this study, the microstructure and thermal conductivity correlation was investigated for concrete materials used in concrete thermal energy storage (CTES) among real-time energy storage devices. Graphite was used as admixture to increase the thermal conductivity performance of the CTES. Concrete specimens of 10% and 15% substitution of cement by mass with graphite, as well as ordinary portland cement (OPC) specimens were prepared, and the microstructural changes and effects on thermal conductivity were analyzed. Porosities of OPC and concrete with graphite were compared using micro-CT, and the microstructural characteristics were quantified using probability functions. Three-dimensional virtual specimens were constructed for thermal analysis, to confirm the effect of microstructural characteristics on thermal conductivity, and the results were compared with the measured conductivity obtained using the hot-disc method. To identify thermal conductivity of graphite for thermal analysis, solid phase conductivity was inversely determined based on simulation and experimental results, and the effect of graphite on thermal conductivity was analyzed.

Optimal Design of Graphite Sheet based Cryogenic Cooler Thermal Control System using Veritrek Software (Veritrek 소프트웨어를 활용한 그라파이트시트 기반 극저온 냉각기 열 제어 시스템 최적설계)

  • Bong-Geon Chae;Hye-In Kim;Hyun-Ung Oh
    • Journal of Aerospace System Engineering
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    • v.18 no.2
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    • pp.71-78
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    • 2024
  • During the initial thermal design process, determining the thermal effect of various design variables in a complex orbital thermal environment is time-consuming. To save time in the initial design phase, it is necessary to quickly derive optimal design parameters and predict the temperature. To address these challenges, Veritrek, a software specialized in optimal design using a reduced-order model (ROM), was released in 2018. In this paper, we utilized the Veritrek software to build a reduced-order model, conduct sensitivity analysis, and perform optimal design analysis for a graphite sheet-based cryogenic cooler thermal control system. The goal was to determine the optimal design values for the number of graphite sheet layers, radiator area, and thickness that would meet the allowable temperature of the cryogenic cooler.

Synthesis of β-SiC Powder using a Recycled Graphite Block as a Source (그라파이트 블록을 원료로써 재활용한 β-SiC 분말 합성)

  • Nguyen, Minh Dat;Bang, Jung Won;Kim, Soo-Ryoung;Kim, Younghee;Jung, Eunjin;Hwang, Kyu Hong;Kwon, Woo-Teck
    • Resources Recycling
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    • v.26 no.1
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    • pp.16-21
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    • 2017
  • This paper relates to the synthesis of a source powder for SiC crystal growth. ${\beta}-SiC$ powders are synthesized at high temperatures (>$1400^{\circ}C$) by a reaction between silicon powder and carbon powder. The reaction is carried out in a graphite crucible operating in a vacuum ambient (or Ar gas) over a period of time sufficient to cause the Si+C mixture to react and form poly-crystalline SiC powder. End-product characterizations are pursued with X-ray diffraction analysis, SEM/EDS, particle size analyzer and ICP-OES. The purity of the end-product was analyzed with the Korean Standard KS L 1612.

A Study of Wear Behavior for Sealing Graphite at Elevated Temperature (씰링 그라파이트의 고온 마모 거동에 관한 연구)

  • Kim, Yeonwook;Kim, Jaehoon;Yang, Hoyoung;Park, Sunghan;Lee, Hwankyu;Kim, Bumkeun;Lee, Seungbum;Kwak, Jaesu
    • Journal of the Korean Society of Propulsion Engineers
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    • v.17 no.5
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    • pp.113-120
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    • 2013
  • Graphite is commonly used as a solid lubricant leading to low friction coefficient and abrasion. In this study, wear behavior of sealing graphite(HK-6) at elevated temperature was evaluated. Reciprocating wear test was carried out as wear occurred graphite as a seal(HK-6) is positioned between the liner and driving shaft. Variables which are temperature, sliding speed and contact load are set. This study suggest optimized environment conditions through the wear properties of graphite.

Sliding Wear Properties of Graphite as Sealing Materials for Cut off Hot Gas (고온차단 기밀용 그라파이트의 고온 미끄럼마모 특성 평가)

  • Kim, YeonWook;Kim, JaeHoon;Yang, HoYeong;Park, SungHan;Lee, HwanKyu;Kim, BumKeun;Lee, SeungBum;Kwak, JaeSu
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.11
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    • pp.1349-1354
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    • 2013
  • Sealing structure to prevent flowing hot gas into the driving device, located between the driving shaft and the liner of On-Off valve for controlling the hot gas flow path was studied. Wear occurs due to the constant movement of the driving shaft controlled by actuator on graphite as the sealing material. In this paper, the dynamic wear behavior in high temperature of graphite(HK-6) to be used as sealing material was evaluated. Reciprocating wear test was carried out for the graphite(HK-6) to the relative motion between shaft materials(W-25Re). The results of friction coefficient and specific wear rate according to contact load, sliding speed at room temperature and $485^{\circ}C$ considering the actual operating environment were evaluated. Through the SEM analysis of the worn surface, third body as lubricant films were observed and lubricant effect of third body was considered.