• Title/Summary/Keyword: 튜브의 두께

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Development of Multiscale Homogenization Model to Predict Thermo-Mechanical Properties of Nanocomposites including Carbon Nanotube Bundle (탄소나노튜브 다발을 포함하는 나노복합재료의 열-기계 특성 예측을 위한 멀티스케일 균질화 모델 개발)

  • Wang, Haolin;Shin, Hyunseong
    • Composites Research
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    • v.33 no.4
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    • pp.198-204
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    • 2020
  • In this study, we employ the full atomistic molecular dynamics simulation and finite element homogenization method to predict the thermo-mechanical properties of nanocomposites including carbon nanotube bundle. As the number of carbon nanotubes within the single bundle increases, the effective in-plane Young's modulus and in-plane shear modulus decrease, and in-plane thermal expansion coefficient increases, despite the same volume fraction of carbon nanotubes. To investigate the thickness of interphase zone, we employ the radial density distribution. It is investigated that the interphase thickness is almost independent on the number of carbon nanotubes within the single bundle. It is assumed that the matrix and interphase are isotropic materials. According to the predicted thermo-mechanical properties of interphase zone, the Young's modulus and shear modulus of interphase zone clearly decrease, and the thermal expansion coefficient increases. Based on the thermo-mechanical interphase behavior, we developed the multiscale homogenization model to predict the thermo-mechanical properties of PLA nanocomposites that include the carbon nanotube bundle.

Growth of nanotubular oxide layers on Ti alloys with different alloying elements (Ti합금 표면에 생성되는 나노튜브 성장에 미치는 합금원소의 영향)

  • Kim, Min-Su;Gwon, A-Ram;Kim, Yeon-Ju;Kim, Yong-Hwan
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2018.06a
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    • pp.69.2-69.2
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    • 2018
  • 전기화학적 양극산화법에 의해 형성하는 TiO2 나노튜브층은 넓은 비표면적과 규칙적인 구조를 가지고 있어 광촉매, 태양 전지, 생체재료 분야 등 다양한 분야에서의 응용이 되고 있으며, 국내 외 많은 연구가 보고 되고 있다. 특히, 나노튜브 층의 성장 거동에 미치는 인자로는 용액의 pH, 점도 등의 전해질의 물성, 인가전압, 시간 등이 있으며, 그에 대해 많은 연구가 이루어졌고 보고되고 있다. 최근 들어, 앞서 설명한 인자 이외에 양극산화에 사용되는 기판의 특성(미세구조, 결정구조, 결함, 첨가 원소 등)이 나노튜브층 성장거동에 영향을 미친다고 보고되었다. 따라서 본 연구에서는 전이금속으로 이루어진 Ti합금을 이용하여 첨가되는 합금원소가 산화막 성장 거동과 형태에 미치는 영향에 대해 조사 하였다. 본 연구에서는 Ti-Ni, Ti-Fe, Ti-Co 3종류 합금을 고진공 아크용해법으로 제조 하였으며, $1000^{\circ}C$에서 24시간 균질화 열처리를 하였다. 모든 합금은 최종 두께 2mm가지 냉간압연 하였으며, 양극산화는 동일한 조건에서 하였다. 생성된 나노튜브층의 표면 및 단면은 FE-SEM을 통해 관찰 하였다.

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The novel Fabrication method of the metal oxide nanotube on template using atomic layer deposition (템플레이트에서 원자층 증착기술을 이용한 금속산화물 나노튜브의 제작방법)

  • 정대균;박노헌;성명모;이재갑;신현정;김지영
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.11a
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    • pp.123-123
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    • 2003
  • 나노튜브는 반도체 재료로서 뿐만 아니라 다른 분야로까지 다양한 응용범위를 가진 물질로서 기존에는 주의 탄소를 사용하여 제작, 사용되어지고 있으나 게이트옥사이드(Gate Oxide) 물질인 지르코니아(ZrO$_2$), 타이타니아(TiO2$_2$) 등을 이용한 나노튜브는 많이 제작되어지고 있지 못하다. 따라서 보다 나은 성질을 갖는 물질로서 나노튜브를 제작할 시 반도체 재료에서의 고집적화를 통해 좋은 성질을 갖게 할 수 있으며 여러 분야로까지 확대가 가능한 재료를 사용하여 광학 및 환경분야 등 응용범위를 넓힐 수 있다. 본 실험은 나노튜브 제작에 있어서 템플레이트의 구멍 내부를 ALD 기술을 이용하여 균일한 두께를 갖는 금속 산화물층을 성장시킨 후 템플레이트 재료의 식각을 통해 금속산화물 나노튜브가 남아있게 하여 제작하는 방법이다.

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열화학기상증착법을 이용한 수직 정렬된 탄소나노튜브의 합성에서 성장압력이 영향

  • Park, Sang-Eun;Song, U-Seok;Kim, Yu-Seok;Kim, Seong-Hwan;Lee, Su-Il;Park, Jong-Yun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.569-569
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    • 2012
  • 탄소나노튜브(carbon nanotubes)의 우수한 전기적, 물리적 특성으로 인해 트랜지스터, 태양전지, 고감도 센서, 나노 섬유, 고분자-탄소나노튜브 고기능 복합체 등 다양한 분야에서 이를 응용하려는 노력이 활발히 진행되고 있다. 흥미롭게도 탄소나노튜브는 구조적인 특성 (직경, 밀도, 벽의 수)에 따라 각기 다른 비표면적, 열 전도성, 전기 전도성, 접촉각, 전계방출 특성을 지닌다고 보고되고 있다. 따라서 다양한 분야의 응용을 위해서는 구조적인 특성 제어가 핵심적인 요소라고 할 수 있다. 본 연구에서는 열화학기상증착법(thermal chemical vapor deposition)을 이용하여 수직 정렬된 탄소나노튜브를 합성 하였다. 합성과정에서 압력의 변화가 탄소나노튜브의 밀도와 길이에 큰 영향을 미친다는 것을 확인하였고, 이러한 현상을 이해하기 위해 두 가지의 가능성을 고려하였다. 첫째는 압력의 변화에 따른 촉매의 형성 변화 가능성이며, 둘째는 탄화수소가스의 유입양의 변화에 따른 영향이다. 분석 결과, 동일한 압력에서 탄화수소가스의 부분압을 변화시켜 실험한 결과로부터 탄화수소의 유입양의 변화가 합성된 탄소나노튜브의 밀도에 큰 영향을 미치고 밀도가 높은 경우 길이가 긴 탄소나노튜브가 합성되는 것을 확인할 수 있었다.

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Development of Numerical Model for Predicting Deposition Thickness Distribution during Spray Process for Carbon Nanotube Thin Films (탄소나노튜브 박막 제조를 위한 분무공정에서의 증착 두께 분포 예측 모델 개발)

  • Choi, Du-Soon;Kim, Duck-Jong;Jang, Dong-Hwan
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.35 no.9
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    • pp.969-974
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    • 2011
  • A carbon nanotube (CNT) is a cylindrical carbon nanostructure with good transport properties along the tube's axis. As an approach for realizing the practical use of CNTs, CNT networks are fabricated and their applications in many fields are investigated. To fabricate thin CNT-based films, several methods have been proposed and used. Among these methods, the spray coating method is a robust method for fabricating a large area. However, it is difficult to achieve uniformity in the CNT network. To solve this problem, it is necessary to understand the effect of the sprayprocess parameters on the deposition thickness distribution. In this study, a numerical model for predicting the deposition thickness distribution during the spray process was developed. The spatial deposition thickness distributions obtained according to various nozzle paths were analyzed using the developed numerical model.

Synthesis of Vertically Aligned Single-Walled Carbon Nanotubes by Thermal Chemical Vapor Deposition (열 화학기상증착법을 이용한 수직 정렬된 단일벽 탄소나노튜브의 합성)

  • Jang, Sung-Won;Song, Woo-Seok;Kim, Yoo-Seok;Kim, Sung-Hwan;Park, Sang-Eun;Park, Chong-Yun
    • Journal of the Korean Vacuum Society
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    • v.21 no.2
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    • pp.113-119
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    • 2012
  • Carbon nanotubes have emerged as a promising material for multifaceted applications, such as composited nanofiber, field effect transistors, field emitters, gas sensors due to their extraordinary electrical and physical properties. In particular, synthesis of vertically aligned carbon nanotubes with a high aspect ratio has recently attracted attention for many applications. However, mass production of high-quality single-walled carbon nanotubes is still remain elusive. In this study, an effect of chemical vapor deposition conditions, including catalyst thickness, feedstock flow rate, and growth temperature, on synthesis of carbon nanotube was systematically investigated.

Deformation Behavior of Curling Strips on Tearing Tubes (테어링 튜브 컬의 변형 거동 예측 기법 연구)

  • Choi, Ji Won;Kwon, Tae Soo;Jung, Hyun Seung;Kim, Jin Sung
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.39 no.10
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    • pp.1053-1061
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    • 2015
  • This paper discusses the analysis of the curl deformation behavior when a dynamic force is applied to a tearing tube installed on a flat die to predict the energy absorption capacity and deformation behavior. The deformation of the tips of the curling strips was obtained when the curl tips and tube body are in contact with each other, and a formula describing the energy dissipation rate caused by the deformation of the curl tips is proposed. To improve this formula, we focused on the variation of the curl radius and the reduced thickness of the tube. A formula describing the mean curl radius is proposed and verified using the curl radius measurement data of collision test specimens. These improved formulas are added to the theoretical model previously proposed by Huang et al. and verified from the collision test results of a tearing tube.

Isogeometric Analysis of FG-CNTRC Plate in Bending based on Higher-order Shear Deformation Theory (탄소 나노튜브 보강 기능경사복합재 판의 등기하 거동 해석)

  • Jeon, Juntai
    • Journal of the Society of Disaster Information
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    • v.17 no.4
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    • pp.839-847
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    • 2021
  • Purpose: This study investigates mechanical behavior of functionally graded (FG) carbon nanotube-reinforced composite (CNTRC) plate in flexure. Isogeometric analysis (IGA) method coupled with shear deformable theory of higher-order (HSDT) to analyze the nonlinear bending response is presented. Method: Shear deformable plate theory into which a polynomial shear shape function and the von Karman type geometric nonlinearity are incorporated is used to derive the nonlinear equations of equilibrium for FG-CNTRC plate in bending. The modified Newton-Raphson iteration is adopted to solve the system equations. Result: The dispersion pattern of carbon nanotubes, plate geometric parameter and boundary condition have significant effects on the nonlinear flexural behavior of FG-CNTRC plate. Conclusion: The proposed IGA method coupled with the HSDT can successfully predict the flexural behavior of FG-CNTRC plate.

A Study on Tensile Properties of Laminated Nanocomposite Fabricated by Selective Dip-Coating of Carbon Nanotubes (탄소나노튜브의 선택적 딥코팅을 이용해 제작된 적층 복합재료의 인장 물성에 대한 연구)

  • Kang Tae-June;Kim Dong-Iel;Huh Yong-Hak;Kim Yong-Hyup
    • Composites Research
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    • v.19 no.3
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    • pp.23-28
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    • 2006
  • Carbon nanotubes reinforced copper matrix laminated nanocomposites were developed and the mechanical properties were evaluated by using micro-tensile testing system. Sandwich-type laminated structure constituted with carbon nanotube layers as a reinforcement and electroplated copper matrix were fabricated by a new processing approach based on selective dip-coating of carbon nanotubes. The mechanical properties of nanocomposites were improved due to an enhanced load sharing capacity of carbon nanotubes homogeneously distributed within the in-plane direction, as well as a bridging effect of carbon nanotubes along the out-of-plane direction between the upper and lower matrices. The universality of the layering approach is applicable to a wide range of functional materials, and here we demonstrate its potential use in reinforcing composite materials.

A Study on Optimum Confined Effect for Internally Confined Hollow CFT Columns under Uniaxial Compression (일축압축을 받는 내부 구속 중공 CFT 기둥의 최적 구속 효과 연구)

  • Won, Deok Hee;Han, Taek Hee;Yoon, Na Ri;Kang, Young Jong
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.32 no.4A
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    • pp.227-235
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    • 2012
  • Recently, study of confining effect in column members is progressed. But these studies are limited to about RC column and external confining effect in hollow columns. Internal confining effect in hollow columns has not researched. Internal confining stress is assumed the same external confining stress in hollow columns. In this study, there are to investigate the internal direction confining effect in ICH CFT column by FEA analysis. FEA analysis methods have verified by experimental values. Parametric study has performed as thickness of internal tube, hollow ratio, diameter of column and bending stiffness between concrete and external tube. Modified equations have suggested to estimating economic and reasonable thickness of internal tube.