• 제목/요약/키워드: graphite flake

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3.6%C 회주철의 진동감쇠능 및 기계적 성질에 미치는 주입온도 및 합금원소 첨가의 영향 (Effects of Pouring Temperature and Alloying Elements on Damping Capacity and Mechanical Properties in 3.6%C Grey Cast Iron)

  • 김정철;백승한;최종술
    • 열처리공학회지
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    • 제13권4호
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    • pp.231-238
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    • 2000
  • Flake graphite cast irons with the high damping capacity have been used for the control of vibration and noise occurring in the members of various mechanical structures under vibrating conditions. However, the damping capacity which is morphological characteristics of graphite is one of the important factors in reducing the vibration and noise, but hardly any work has deal with this problem. Therefore, the authors have examined the damping capacity of various cast irons with alloying elements and studied the influences of the matrix structures, mechanical properties and morphological characteristics of graphite. The main results obtained are as follows: Effects of pouring temperature on the damping capacities and mechanical properties were investigated in 3.6%C cast iron. At $1400^{\circ}C$, specific damping capacity showed the maximum value, and decreased with increase pouring temperature. Mechanical properties showed opposite trend with the damping capacity. And then, effects of Ni on the damping capacities and mechanical properties have been investigated in 3.6%C gray cast iron. At 0.2%Ni content, specific damping capacity showed the maximum value, and decreased with further increase in Ni content. Graphite length also showed same behavior. This indicates that the specific damping capacity has a close relation with graphite length. In case of Mo addition in 3.6%C-0.2%Ni cast iron, specific damping capacity and tensile strength was 27% and $20kgf/mm^2$ at 3.6%C-0.2%Ni-0.3%Mo cast iron respectively.

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콜타르를 결합재 및 함침재로 이용한 벌크 흑연 제조 (A Study on the Possibility of Bulk Graphite Manufacturing using Coal Tar as a Binder and an Impregnant)

  • 이상민;이상혜;강동수;노재승
    • Composites Research
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    • 제34권1호
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    • pp.51-56
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    • 2021
  • 석탄 핏치의 전구체인 콜타르를 바인더 및 함침재로 이용하여 벌크흑연을 제조할 수 있는 가능성을 검토하고자 하였다. 충전재로 천연흑연을 이용하였으며, 천연흑연과 콜타르를 혼합 및 성형한 후 탄화 열처리를 실시하였다. 탄화 열처리 후 함침-재탄화를 5회 실시하여 밀도, 기공율, 압축강도, 그리고 이방성비를 측정하였다. 탄화체의 최고 밀도는 1.76 g/㎤였고, 기공율은 최소 15.6%로써 공정 제어에 의해 조절이 가능하였다. 압축강도는 최고 20.3 MPa이 얻어졌다. 탄화체의 이방비는 최대 0.34로써 강한 이방성 탄화체를 얻을 수 있었다. 따라서 콜타르를 바인더 및 함침재로 이용하여 벌크 형태의 인조흑연 제조가 가능하다는 것을 확인하였다. 또한 탄화체의 이방성을 조절하여 전기적, 기계적 방향 특성을 조절한다면 적절한 재료 설계를 통하여 다양한 분야에 응용할 수 있을 것이라 판단된다.

주철의 절삭성에 미치는 조직의 영향 (Effect of Microstructure on the Machinability of Cast Iron)

  • 박희상;이상용;김정석;박익민
    • 한국주조공학회지
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    • 제21권6호
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    • pp.350-358
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    • 2001
  • The machinability of cast iron is closely related to its microstructural property. In this study, the effect of graphite mophology and matrix microstructure on machinability in several commercial cast irons(GC 25, GCD 45, GCD 50, GCD 70, GCD HSMo, GCMP) was investigated. To estimate the machinability, turning test was carried out under conditions of spindle speed 80m/min, depth of cut 0.25mm, feed 0.16mm/rev and cutting distance 1 km. Thrust force in turning test decreases in the order of GCMP, GCD 70, GCD 50, GC 25, GCD 45 and GCD HSMo. i.e. machinability increases in this order. The superior machinability of GC 25 is caused by flake type graphite which acts as chip braker and provides lubrication during machining. Consequently, soft ferritic cast irons exhibit superior machinability compared with pearlitic cast irons.

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Combination of ultrasonic assisted liquid phase exfoliation process and oxidation-deoxidation method to prepare large-sized graphene

  • Qi, Lei;Guo, Ruibin;Mo, Zunli;Wu, Qijun
    • Carbon letters
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    • 제25권
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    • pp.50-54
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    • 2018
  • Large-size graphene samples are successfully prepared by combining ultrosonic assisted liquid phase exfoliation process with oxidation-deoxidation method. Different from previous works, we used an ultrasound-treated expanded graphite as the raw material and prepared the graphene via a facile oxidation-reduction reaction. Results of X-ray diffraction and Raman spectroscopy confirm the crystal structure of the as-prepared graphene. Scanning electron microscopy images show that this kind of graphene has a large size (with a diameter over $100{\mu}m$), larger than the graphene from graphite powder and flake graphite prepared through single oxidation-deoxidation method. Transmission electron microscopy results also reveal the thin layers of the prepared graphene (number of layers ${\leq}3$). Furthermore, the importance of preprocessing the raw materials is also proven. Therefore, this method is an attractive way for preparing graphene with large size.

주철의 피로전파거동에 미치는 미세조직의 영향 (The Effects of the Microstructures on the Fatigue Crack Propagation Behaviors of Cast Irons)

  • 김석원;박진성;이형철;김동건;우기도
    • 한국주조공학회지
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    • 제25권1호
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    • pp.16-22
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    • 2005
  • This study aims to investigate the effects of the microstructures and nodule type on the fatigue characteristics of cast iron. Fatigue tests were carried out in tension-tension mode using a servo-hydraulic testing machine with load control mode operating at a frequency of 15 Hz. The tests were conducted at stress ratio R=Kmin/Kmax, of 0.1. Initial crack ${\Dalta}K$ values were highly performed with increase in tensile strength of DCI fatigue specimens. ${\Dalta}K_{th}$ region, fatigue crack propagation was primarily advanced through cell boundary and in periphery of near nodule. Fatigue crack propagation rate of D2 consisted with 2Phase(Ferrite+Pearlite) was slow due to crack closure enhanced by crack deflection and occurred crack branching. The generation of crack branch was occurred due to interaction of crack-nodule. At Threshold and Paris zone, the fractographs of the fatigue fracture surface for DCI show typical striations of a ductile fracture and isolated cleavage planes near graphite. The effect of microstructure on fatigue crack propagation of GC strongly depends on the type of flake. The generation of crack branch occurred due to interaction of crack-nodule. The fractographs of the fatigue fracture surface for GC show cleavage plane along the flake graphite.

금형재료용 주철의 레이저 표면경화처리시 재료에 따른 열처리 특성 (Characteristics of Heat Treatment on Different Materials during Laser Surface Hardening of Cast Iron for Die)

  • 김종도;송무근;황현태
    • 대한기계학회논문집A
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    • 제35권12호
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    • pp.1663-1668
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    • 2011
  • 자동차 차체를 제작하는 프레스 금형의 가공공정 중 제품의 형태를 완성하는 드로잉 공정 및 불필요한 부분을 절단하는 트리밍 공정은 그 공정의 특성상 금형의 마모가 심하기 때문에 금형의 내마모성을 향상시키기 위한 표면경화처리가 요구되고 있다. 따라서 본 연구에서는 프레스 금형에 레이저 표면처리기술을 적용하기 위한 실험을 실시하였다. 드로잉 공정 및 트리밍 공정에 적합한 표면경화처리를 위해 다이오드 레이저를 이용하여 시험편의 평면부 및 모서리부를 열처리하였으며, 각각의 적정 열처리 조건을 도출하였다. 또한 시험편의 재료에 따른 열처리 특성을 비교하기 위해 구상흑연 및 편상흑연 주철을 사용하여 실험을 진행하였다. 실험 결과, 재료에 따른 열처리 특성에 차이가 있다는 것을 확인하였으며, 적정 열처리된 조건에서의 경화부는 모재에 비하여 약 3배 정도의 경도상승을 나타내었다.

3.6%C 회주철의 진동감쇠능 및 기계적 성질에 미치는 Sb 및 Ti 첨가의 영향 (Effects of Alloying Elements(Sb, Ti) on Damping Capacity and Mechanical Properties In 3.6%C Gray Cast Iron)

  • 김정철;한동운;백승한;최종술
    • 열처리공학회지
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    • 제14권6호
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    • pp.330-335
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    • 2001
  • Flake graphite cast irons with the high damping capacity have been used for the control of vibration and noise occurring in the members of various mechanical structures under vibrating conditions. However, the damping capacity which Is morphological characteristics of graphite is one of the important factors in reducing the vibration and noise, but hardly any work has deal with this problem. Therefore, the authors have examined the damping capacity of various cast irons with alloying elements and studied the influences of the matrix structures, mechanical properties and morphological characteristics of graphite. The main results obtained are as follows: Effects of Sb on the damping capacities and mechanical properties have been investigated in 3.6%C-0.2%Ni gray cast iron. At 0.02%Sb, specific damping capacity showed the maximum value, and decreased with further increase in Sb content. Mechanical properties showed opposite trend with the damping capacity. And then, effects of Ti on the damping capacities and mechanical properties have been investigated in 3.6%C-0.2%Ni-0.02%Sb gray cast iron. Specific damping capacity increased with increase in Ti content. Graphite length also showed same behavior. Tensile strength increased with Ti content due to refinement of pearlite. In the case of 0.14%Ti addition in 3.6%C-0.2%Ni-0.02%Sb cast iron, specific damping capacity and tensile strength was 36% and 25 $kgf/mm^2$ which are higher than 32% and 15 $kgf/mm^2$ at 3.6%C-0.2%Ni cast iron respectively.

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Characteristics of Expanded Graphite Filled Conductive Polymer Composites for PEM Fuel Cell Bipolar Plates

  • Oh, K.S.;Heo, S.I.;Yun, J.C.;Yang, Y.C.;Han, K.S.
    • Advanced Composite Materials
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    • 제17권3호
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    • pp.259-275
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    • 2008
  • This study aims to optimize the mechanical and electrical properties of electrically conductive polymer composites (CPCs) for use as a material of bipolar plates for PEM fuel cells. The thin CPCs consisting of conductive fillers and polymer resin were fabricated by a preform molding technique. Expanded graphite (EG), flake-type graphite (FG) and carbon fiber (CF) were used as conductive fillers. This study tested two types of CPCs, EG/FG filled CPCs and EG/CF filled CPCs, to optimize the material properties. First, the characteristics of EG/FG filled CPCs were investigated according to the FG ratio for 7 and $100{\mu}m$ sized FG. CPCs using $100{\mu}m$ FG showed optimal material properties at 60 wt% FG ratio, which were an electrical conductivity of 390 S/cm and flexural strength of 51 MPa. The particle size was an important parameter to change the mechanical and electrical behaviors. The flexural strength was sensitive to the particle size due to the different levels of densification. The electrical conductivity also showed size-dependent behavior because of the different contributions to the conductive network. Meanwhile, the material properties of EG/CF filled CPCs was also optimized according to the CF ratio, and the optimized electrical conductivity and flexural strength were 290 S/cm and 58 MPa, respectively. The electrical conductivity of this case decreased similarly to the EG/FG filled case. On the other hand, the behavior of the flexural strength was more complicated than the EG/FG filled case, and the reason was attributed to the interaction between the strengthening effect of CF and the deterioration of voids.

PEMFC용 복합소재 분리판을 위한 2단계 제조공법의 예비성형 조건에 대한 연구 (A Study on Precuring Condition of the 2-step Manufacturing Method for PEMFC Composite Bipolar Plates)

  • 허성일;오경석;장준호;양유창;한경섭
    • Composites Research
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    • 제20권2호
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    • pp.10-16
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    • 2007
  • 본 연구에서는 고분자 전해질 연료전지(PEMFC)용 복합소재 분리판의 제작을 위해, 예비성형과 스탬핑 공정으로 이루어지는 2단계 제조공법을 개발하고 예비성형 조건이 소재의 물성에 미치는 영향을 고찰하였다. 예비성형체는 팽창흑연, 흑연분말, 페놀수지를 이용하여 제조되었으며, 예비성형 공정은 전기 전도도, 굽힘 강도와 미세 구조의 분석을 통해 최적화되었다. 예비성형은 페놀수지의 지나친 경화를 막기 위해 페놀 분말의 녹는점인 $90^{\circ}C$보다 약간 높은 $100^{\circ}C$에서 이루어졌다. 본 연구에서 개발된 예비성형체는 팽창흑연의 서로 잘 얽히는 성질로 인해 0.07-0.28MPa의 낮은 압력에서도 쉽게 제조되었다. 부족하거나 과도한 예비경화는 복합소재 분리판의 강도 저하를 야기하기 때문에, 예비성형체를 안정적으로 제조하기 위한 예비성형 시간은 5분으로 결정되었다.

Direct Comparison of Optical Properties from Graphene Oxide Quantum Dots and Graphene Oxide

  • Jang, Min-Ho;Ha, Hyun Dong;Seo, Tae Seok;Cho, Yong-Hoon
    • Applied Science and Convergence Technology
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    • 제24권4호
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    • pp.111-116
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    • 2015
  • The graphene oxide (GO) and graphene oxide quantum dots (GOQDs), which have gained research interest as new types of light-emitting materials, were synthesized by the modified Hummers method for oxidation of graphite flake and graphite nanoparticle. The optical properties of GO and GOQDs have been compared by mean of photoluminescence (PL), PL excitation (PLE), UV-vis absorbance, and time-resolved PL. The GO have an absorption peak at 229 nm and shoulder part at 310 nm, whereas the GOQDs show broad absorption with a gradual change up without any absorption peaks. The PL emission of GOQDs and GO showed the green color at 520 nm and the red color at 690 nm, respectively. The red emission of GO showed faster PL decay time than the green emission of GOQDs. In particular, the temporal PL profile of the GO showed redshift from 560 nm to 660 nm after the pump event.