• 제목/요약/키워드: cnt paper

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순수 알루미나와 탄소나노튜브 강화 알루미나 복합체의 극초단 펄스레이저 가공특성 비교 (Comparison of Ablation Characteristics of Carbon Nanotube reinforced Hybrid Al2O3 by using Ultrashort Pulse Laser)

  • 이준영;윤지욱;강명창;조성학
    • 한국기계가공학회지
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    • 제12권6호
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    • pp.23-29
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    • 2013
  • In this paper, pure $I_{ph}$ and hybrid carbon nanotube reinforced $I_{ph}$ were sintered using the SPS(spark plasma sintering) method for high densification. A nanosecond laser (${\lambda}=1063nm$, ${\tau}P=10ns$) and a femtosecond laser (${\lambda}=1027nm$, ${\tau}P=380fs$) were installed on an optical system for the micromachining test. The ablation characteristics of the pure $I_{ph}$ and CNT/$I_{ph}$ composites, such as thermal effect and ablation depth, were investigated using FE-SEM and a confocal microscope device. Laser machining results for the two mating materials showed improved performances: CNT/$I_{ph}$ composites showed good surface morphology of hole drilling without a melting zone due to the composites' high thermal properties; also, the ablated depth of CNT/$I_{ph}$ was higher than that of pure $I_{ph}$.

이성분 나노유체 (NH3/H2O + 나노입자)의 열전달 및 흡수성능 촉진실험 (Experiment on Heat Transfer and Absorption Performance Enhancement for Binary Nanofluids (NH3/H2O + Nano-Particles))

  • 이진기;정청우;강용태
    • 대한기계학회논문집B
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    • 제32권9호
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    • pp.669-675
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    • 2008
  • The objectives of this paper are to examine the effect of nano-particles on the pool type absorption heat transfer enhancement and to find the optimal conditions to design a highly effective compact absorber for ammonia/water absorption system. The effect of $Al_2O_3$ nano-particles and carbon nanotube(CNT) on the absorption performance is studied experimentally. The experimental ranges of the key parameters are 20% of ammonia concentration, $0{\sim}0.08\;vol%$ (volume fraction) of CNT particles, and $0{\sim}0.06 \;vol%$ of $Al_2O_3$ nano-particles. For the ammonia/water nanofluids, the heat transfer rate and absorption rate with 0.02 vol% $Al_2O_3$ nano-particles were found to be 29% and 18% higher than those without nano-particles, respectively. It is recommended that the concentration of 0.02 vol% of $Al_2O_3$ nano-particles be the best candidate for ammonia/water absorption performance enhancement.

초소형 질량분석기를 위한 삼극관 구조의 탄소나노튜브 전자방출원 (A Carbon Nanotube Field Emitter with a Triode Configuration for a Miniature Mass Spectrometer)

  • 이유리;이기정;;이순일;양상식
    • 전기학회논문지
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    • 제61권7호
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    • pp.1001-1006
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    • 2012
  • This paper presents a carbon nanotube (CNT) triode-structure field emitter as an ion source in a micro time-of-flight mass spectrometer(TOF-MS). In the ion source by field emission, the electrons emitted from cathodes under an electric field accelerated to the anode and ionize gas molecules by impact before arriving the anode. The generated positive ions are to be accelerated to the ion collector. Whereas most of ions are drawn to the cathodes in diode field emitters, a grid in the triode field emitter prevents the ions from being drawn to the cathodes. The triode field emitter is fabricated by micromachining. The cathode is composed of six CNT cylinders. The total size of the fabricated device is $8.0{\times}7.3{\times}1.9mm^3$. The anode and the grid current of the fabricated CNT field emitter were measured for various anode and grid voltages. When the anode and the grid voltages are 1000 V and 990 V, respectively, the emission current passing through the ionization region is 8.6 ${\mu}A$, which is a sufficient emission current for ionization and mass spectrometry.

탄소나노튜브 방향성 수축 전송 방법이 CNTFET 기반 회로 성능에 미치는 영향에 관한 연구 (A Study on the Effect of Carbon Nanotube Directional Shrinking Transfer Method for the Performance of CNTFET-based Circuit)

  • 조근호
    • 문화기술의 융합
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    • 제4권3호
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    • pp.287-291
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    • 2018
  • 차세대 반도체 소자로 관심을 받고 있는 CNTFET은 소자의 소스와 드레인 사이에 CNT를 배치시켜, 기존 MOSFET보다 작은 전압으로 전자의 ballstic 혹은 near-ballastic 이동을 가능하게 만든 반도체 소자이다. CNTFET의 성능을 높이기 위해서는 많은 수의 CNT를 CNTFET 안에 높은 밀도로 배치해야 하기 때문에 CNT의 밀도를 증가시키기 위한 다양한 공정들이 개발되고 있다. 최근, 방향성 수축 전송 방법이 개발되어 CNTFET의 전류 밀도를 150uA/um까지 향상시켜줄 수 있음을 보이고 있어, CNTFET 기반 집적회로의 구현 가능성을 높이고 있다. 본 논문에서는, 방향성 수축 전송 방법으로 CNTFET 소자를 만들 경우, CNTFET 회로의 성능이 기존 MOSFET의 성능에 비해 얼마나 향상시킬 수 있는지 그 성능을 평가할 수 있는 방안을 논의하고자 한다.

탄소나노튜브를 활용한 에너지 저장 소자에 관한 연구 (The research regarding the energy storage device which applies the carbon nanotube)

  • 김도환;강순덕
    • 정보학연구
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    • 제10권2호
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    • pp.37-45
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    • 2007
  • The multiple-ability which the structure and the physical properties which the carbon or scull tube are unique show the applicability is superior in the plane indication element which is an indispensability of information communications apparatus, the stubbornness memory element, 2nd change of air and the rough copy dosage [khay] plaque seater, the hydrogen store material and the chemical sensor back and it has the possibility which will pass over the limit which the element of existing has. from the present paper it compared in the steel and only 10 the boat it did and it analyzed against an energy storage space voluntary application and developmental apply the carbon or scull tube trend in order about under researching the effective energy storage element it could be appeared, the technique of the strong carbon nano tube. 1. The hazard which embodies the energy storage element which uses the carbon or scull tube it follows in the function which stands and CNT of the structure which is various is necessary. 2. CNT fabrications of each one must precede possible not only must be each Cabinet conference circumstances quality gain and loss. 3. The structural control of syntheses, length controls, diameter controls and the metal - CNT junction control backs of quality CNT must precede. Applies the hereafter carbon or the scull tube in the various element with the primary preceding base technique for the structural plan technique of the carbon or scull tube to be certainly established, it does, secondarily the various element functional control technique which uses the carbon or scull tube is researched and will do.

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Ni-Pd-CNT Nanoalloys에서 성장한 α-Ga2O3의 특성분석 (Characterization of Alpha-Ga2O3 Epilayers Grown on Ni-Pd and Carbon-Nanotube Based Nanoalloys via Halide Vapor Phase Epitaxy)

  • 차안나;이기업;김형구;성채원;배효정;노호균;;하준석
    • 마이크로전자및패키징학회지
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    • 제28권4호
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    • pp.25-29
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    • 2021
  • 본 연구에서는 HVPE 방법을 사용하여 Ni-Pd and Carbon-Nanotube nanoalloys (Ni-Pd-CNT) 위에 α-Ga2O3을 성장시켜 Ni-Pd-CNT에 따른 효과를 확인하였다. 그 결과, 무전해 Ni 도금 시간 40초에서 성장한 α-Ga2O3 에피층의 두께는 11 ㎛로 확인되었다. 또한, α-Ga2O3 에피층의 표면 형태는 균열 발생 없이 기판에 대한 우수한 접착력을 보여주었다. 결과적으로, 성장과정에서 발생한 수평 성장에 의해 α-Ga2O3 대의 비대칭면인 ($10{\bar{1}}4$) FWMH 값을 크게 감소할 수 있었다.

공정 편차가 하이브리드 MOSFET-CNTFET 기반 SRAM의 성능에 미치는 영향에 대한 연구 (A Study on the Effect of Process Variation on the Performance of Hybrid MOSFET-CNTFET based SRAM)

  • 조근호
    • 전기전자학회논문지
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    • 제27권3호
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    • pp.327-332
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    • 2023
  • 전통적인 실리콘 기반 반도체 소자 보다 높은 성능과 다양한 활용성으로 차세대 반도체 후보로 높은 관심 받고 있는 CNTFET은 CNT 배치와 같은 CNTFET만의 고유한 공정 편차가 아직 성숙되지 않아 상용화에 어려움을 겪고 있다. 이러한 어려움을 극복하고자 반복적인 회로 구성으로 공정 편차의 영향을 적게 받는 회로를 MOSFET-CNTFET 기반 하이브리드 회로로 구현하여 CNTFET 의 장점을 취하고 단점을 보완하고자 하는 수많은 연구들이 지속적으로 수행되어 왔다. 본 논문에서는 하이브리드 SRAM의 성능이 기존의 MOSFET SRAM 또는 CNTFET SRAM에 존재하는 반도체 공정 변화에 의해 얼마나 변화될 수 있는지를 비교하였다. 시뮬레이션 결과, CNT 밀도를 32nm 당 7개에서 9개 사이로 유지할 수 있다면, hybrid SRAM은 기존 MOSFET SRAM보다 읽기 동작에서 그리고 쓰기 동작에서 공정 편차에 대한 강건성이 각각 약 2.6배 그리고 약 1.1배 있음을 보여준다.

Free vibration analysis of a laminated trapezoidal plate with GrF-PMC core and wavy CNT-reinforced face sheets

  • Yingqun Zhang;Qian Zhao;Qi Han;N. Bohlooli
    • Steel and Composite Structures
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    • 제48권3호
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    • pp.275-291
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    • 2023
  • This paper has focused on presenting vibration analysis of trapezoidal sandwich plates with 3D-graphene foam reinforced polymer matrix composites (GrF-PMC) core and FG wavy CNT-reinforced face sheets. The porous graphene foam possessing 3D scaffold structures has been introduced into polymers for enhancing the overall stiffness of the composite structure. Also, 3D graphene foams can distribute uniformly or non-uniformly in the plate thickness direction. The effective Young's modulus, mass density and Poisson's ratio are predicted by the rule of mixture. In this study, the classical theory concerning the mechanical efficiency of a matrix embedding finite length fibers has been modified by introducing the tube-to-tube random contact, which explicitly accounts for the progressive reduction of the tubes' effective aspect ratio as the filler content increases. The First-order shear deformation theory of plate is utilized to establish governing partial differential equations and boundary conditions for trapezoidal plate. The governing equations together with related boundary conditions are discretized using a mapping-generalized differential quadrature (GDQ) method in spatial domain. Then natural frequencies of the trapezoidal sandwich plates are obtained using GDQ method. Validity of the current study is evaluated by comparing its numerical results with those available in the literature. It is explicated that 3D-GrF skeleton type and weight fraction, carbon nanotubes (CNTs) waviness and CNT aspect ratio can significantly affect the vibrational behavior of the sandwich structure. The plate's normalized natural frequency decreased and the straight carbon nanotube (w=0) reached the highest frequency by increasing the values of the waviness index (w).

On the free vibration behavior of carbon nanotube reinforced nanocomposite shells: A novel integral higher order shear theory approach

  • Mohammed Houssem Eddine Guerine;Zakaria Belabed;Abdelouahed Tounsi;Sherain M.Y. Mohamed;Saad Althobaiti;Mahmoud M. Selim
    • Structural Engineering and Mechanics
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    • 제91권1호
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    • pp.1-23
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    • 2024
  • This paper formulates a new integral shear deformation shell theory to investigate the free vibration response of carbon nanotube (CNT) reinforced structures with only four independent variables, unlike existing shell theories, which invariably and implicitly induce a host of unknowns. This approach guarantees traction-free boundary conditions without shear correction factors, using a non-polynomial hyperbolic warping function for transverse shear deformation and stress. By introducing undetermined integral terms, it will be possible to derive the motion equations with a low order of differentiation, which can facilitate a closed-form solution in conjunction with Navier's procedure. The mechanical properties of the CNT reinforcements are modeled to vary smoothly and gradually through the thickness coordinate, exhibiting different distribution patterns. A comparison study is performed to prove the efficacy of the formulated shell theory via obtained results from existing literature. Further numerical investigations are current and comprehensive in detailing the effects of CNT distribution patterns, volume fractions, and geometrical configurations on the fundamental frequencies of CNT-reinforced nanocomposite shells present here. The current shell theory is assumed to serve as a potent conceptual framework for designing reinforced structures and assessing their mechanical behavior.

The effect of nanoparticle in reduction of critical fluid velocity in pipes conveying fluid

  • Ghaitani, M.M.;Majidian, A.;Shokri, V.
    • Advances in concrete construction
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    • 제9권1호
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    • pp.103-113
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    • 2020
  • This paper deal with the critical fluid velocity response of nanocomposite pipe conveying fluid based on numerical method. The pressure of fluid is obtained based on perturbation method. The motion equations are derived based on classical shell theory, energy method and Hamilton's principle. The shell is reinforced by nanoparticles and the distribution of them are functionally graded (FG). The mixture rule is applied for obtaining the equivalent material properties of the structure. Differential quadrature method (DQM) is utilized for solution of the motion equations in order to obtain the critical fluid velocity. The effects of different parameters such asCNT nanoparticles volume percent, boundary conditions, thickness to radius ratios, length to radius ratios and internal fluid are presented on the critical fluid velocity response structure. The results show that with increasing the CNT nanoparticles, the critical fluid velocity is increased. In addition, FGX distribution of nanoparticles is the best choice for reinforcement.