• Title/Summary/Keyword: Nanosize

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Nonlocal thermo-electro-mechanical vibration analysis of smart curved FG piezoelectric Timoshenko nanobeam

  • Ebrahimi, Farzad;Daman, Mohsen
    • Smart Structures and Systems
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    • v.20 no.3
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    • pp.351-368
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    • 2017
  • To peruse the free vibration of curved functionally graded piezoelectric (FGP) nanosize beam in thermal environment, nonlocal elasticity theory is applied for modeling the nano scale effect. The governing equations are obtained via the energy method. Analytically Navier solution is employed to solve the governing equations for simply supported boundary conditions. Solving these equations enables us to estimate the natural frequency for curved FGP nanobeam under the effect of a uniform temperature change and external electric voltage. The results determined are verified by comparing the results by available ones in literature. The effects of various parameters such as nonlocality, uniform temperature changes, external electric voltage, gradient index, opening angle and aspect ratio of curved FGP nanobeam on the natural frequency are successfully discussed. The results revealed that the natural frequency of curved FGP nanobeam is significantly influenced by these effects.

Synthesis and Characterization of Nanosized MnxFe2O4 Powders by Glycothermal Process

  • Bae, Dong-Sik;Kim, Eun-Jung;Lee, Hae-Won;Han, Kyong-Sop
    • Journal of the Korean Ceramic Society
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    • v.39 no.10
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    • pp.903-906
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    • 2002
  • Nanosized $Mn_xFe_2O_4$ powders were prepared in ethylene glycol solution under mild temperature and pressure conditions by precipitation from metal nitrates with aqueous potassium hydroxide. The average size and distribution of the synthesized $Mn_xFe_2O_4$ powders was about 20 nm and broad, respectively. The phase of synthesized particles was crystalline reacted at 200${\circ}C$ for 6h. The magnetic properties of the synthesized $Mn_xFe_2O_4$ powders were about 35-60 (emu/g) with superparamagnetic character.

On Properties and Synthesis of Nanostructured W-Cu Alloys by Mechanical Alloying(I) (기계적합금화 방법에 의한 Nanostructured W-Cu 합금의 제조 및 물성연구(I))

  • 김진천
    • Journal of Powder Materials
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    • v.4 no.2
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    • pp.122-132
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    • 1997
  • Nanostructured(NS) W-Cu composite powders of about 20~30 nm grain size were synthesized by mechanical alloying. The properties of NS W-Cu powder and its sintering behavior were investigated. It was shown from X-ray diffraction and TEM analysis that the supersaturated solid solution of Cu in W was not formed by the mechanical alloying of mixed elemental powders, but the mixture of W and Cu particles with nanosize grains, i.e., the nanocomposite powder was attained. Nanocomposite W-20wt%Cu and W-30wt%Cu powders milled for 100 h were sintered to the relative density more than 96% and 98%, respectively, by sintering at 110$0^{\circ}C$ for 1 h in $H_2$. Such a high sinterability was attributed to the high homogeneous mixing and ultra-fine structure of W and Cu phases as well as activated sintering effect by impurity metal introduced during milling.

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Green and Blue Light Emitting InN/GaN Quantum Wells with Nanosize Structures Grown by Metalorganic Chemical Vapor Deposition

  • Kim, Je-Won;Lee, Kyu-Han
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.5 no.2
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    • pp.127-130
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    • 2005
  • The structural and electrical properties of InN/GaN multiple quantum wells, which were grown by metalorganic chemical vapor deposition, were characterized by transmission electron microscopy and electroluminescence measurements. As the quantum well growth time was changed, the wavelength was varied from 451 to 531 nm. In the varied current conditions, the blue LED with the InN MQW structures did not have the wavelength shift. With this result, we can expect that the white LEDs with the InN MQW structures do not show the color temperature changes with the variations of applied currents.

Mechanochemistry: from Mechanical Degradation to Novel Materials Properties

  • Sepelak, V.;Becker, K.D.
    • Journal of the Korean Ceramic Society
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    • v.49 no.1
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    • pp.19-28
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    • 2012
  • High-energy mechanical action applied to solid leads to destruction and diminution to the nanosize level. But on the other hand, it can induce structural changes at the nanoscale and at the atomic level which can result in novel materials properties. In this contribution, case studies will be presented concerned with the tailoring of magnetic properties of mechanically treated nanomaterials. Emphasis is placed on materials that have been synthesized by mechanochemical means and on an improved understanding of their nanomagnetism in general. The associated local structural changes of the iron containing magnetic materials discussed in the examples have been studied most suitably by $^{57}Fe$ Mossbauer nuclear probe spectroscopy whose results are supplemented by measurements of the magnetic properties of the mechanosynthesized nanomaterials.

Microstructure and Etching Morphology of Copper Electrodeposits (구리 전해도금 박막의 미세조직에 따른 에칭 특성)

  • Park, Chae-Min;Song, Yeong-Seok;Kim, Sang-Hyeok;Sin, Han-Gyun;Lee, Hyo-Jong
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2014.11a
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    • pp.132-133
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    • 2014
  • 구리도금 및 적절한 어닐링 공정을 통해 수nm 크기의 초기 도금 미세조직과 수${\mu}m$정도의 결정립 크기를 갖는 재결정이 진행된 결정립이 병존하는 도금막 샘플을 제작하였다. 전기 비저항 측정과 EBSD를 통해 결정립 성장 분율을 측정하였으며 다양한 사이즈와 결정 방향을 갖는 결정립에 대해 질산용액을 이용하여 화학적 에칭방법을 통해 간접적으로 각 구리원자의 화학적 안정성을 평가할 수 있었다. 결과적으로 결정립이 클수록 에칭속도가 느린 것을 확인하였으며, 주요 원인으로 결정립계면이 우선적으로 에칭되는 것이 관찰되었다. 즉, 결정립의 크기가 작을수록 결정립계면의 비율이 커서 에칭속도가 증가하고 Nanosize의 초기 결정립이 빨리 에칭되는 것이 확인되었다.

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Fabrication of Polyaniline Nanoparticles Using Microemulsion Polymerization

  • Jang, Jyong-Sik;Ha, Jung-Seok;Kim, Sun-Hee
    • Macromolecular Research
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    • v.15 no.2
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    • pp.154-159
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    • 2007
  • Polyaniline (PANI) nanospheres, 4 run in diameter, were fabricated by the microemulsion polymerization of octyltrimethyl ammonium bromide (OTAB). The size of the PANI nanoparticles could be controlled as functions of the surfactant concentration, surfactant spacer length and polymerization temperature. The diameter of the PANI nanospheres decreased with increasing surfactant concentration and decreasing temperature. The PANI nanoparticles revealed enhanced conductivity compared to conventional bulk PANIs. In addition, the PANI nanoparticles could be applied as optically transparent conducting materials due to their high conductivity and the nanosize effect. With 9 wt% PANI in the PC matrix, the PANI/PC film exhibited a conductivity of $8.9\times10^{-3}S/cm$ and transparency exceeding 95% over the entire visible light range.

Dry Pressing Behavior of Nanosized $Al_2$$O_3$Powders (나노 $Al_2$$O_3$분말의 건식 가압성형 거동)

  • Lee, Hae-Weon;Lee, Jong-Ho;Jun, Hyung-Woo;Ahn, Jae-Pyoung;Park, Jong-Ku;Moon, Hwan
    • Journal of the Korean Ceramic Society
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    • v.37 no.11
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    • pp.1071-1077
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    • 2000
  • 표면 윤활층을 가진 나노 알루미나를 진공중에서 가압성형함으로써 결함발생없이 높은 충전압력을 가할 수 있었으며, 높은 밀도, 미세기공, 좁은 기공경 분포를 가지는 성형체를 제조할 수 있었다. 윤활제의 화학 및 기계적 특성에 의하여 변하는 모세관 현상을 조정함으로써 충전효율을 증대하고 결함발생을 억제할 수 있다. 나노분말의 소결에서도 성형 미세구조의 균일도가 치밀화 거동에 여전히 지배적인 역할을 하였다.

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Production of Nanosized WC Powder by Vapor Phase Reaction

  • Cho, Gi-Chul;Lee, Gil-Geun;Ha, Gook-Hyun;Kim, Byung-Kee
    • Proceedings of the Korean Powder Metallurgy Institute Conference
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    • 2006.09a
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    • pp.625-626
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    • 2006
  • In the present study, the focus is on the synthesis of nanosized WC powder by the chemical vapor condensation proces. The synthesized W-C system powder by the CVC process shows W2C, W, WO3 phases and can not shows WC phase. After recarburization heat treatment under mixture gas atmosphere of argon and hydrogen gases, the synthesized W-C system powder fully transformed to the pure WC. The synthesized WC powder after recarburization heat treatment has an average particle size of 20 nm. The nano-sized WC powder can be prepared by the combination of the CVC process and heat treatment methods.

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A refined nonlocal hyperbolic shear deformation beam model for bending and dynamic analysis of nanoscale beams

  • Bensaid, Ismail
    • Advances in nano research
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    • v.5 no.2
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    • pp.113-126
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    • 2017
  • This paper proposes a new nonlocal higher-order hyperbolic shear deformation beam theory (HSBT) for the static bending and vibration of nanoscale-beams. Eringen's nonlocal elasticity theory is incorporated, in order to capture small size effects. In the present model, the transverse shear stresses account for a hyperbolic distribution and satisfy the free-traction boundary conditions on the upper and bottom surfaces of the nanobeams without using shear correction factor. Employing Hamilton's principle, the nonlocal equations of motion are derived. The governing equations are solved analytically for the edges of the beam are simply supported, and the obtained results are compared, as possible, with the available solutions found in the literature. Furthermore, the influences of nonlocal coefficient, slenderness ratio on the static bending and dynamic responses of the nanobeam are examined.