• 제목/요약/키워드: Reinforcement material

검색결과 1,061건 처리시간 0.027초

외부보강된 밀봉 상태가 다른 Bi-2223테이프의 가압 LN2하에서 임계전류의 굽힘변형률 의존성 (Bending Strain Dependence of the Critical Current in Externally-reinforced Bi-2223 Tapes with Different Hermeticity under pressurized Liquid Nitrogen)

  • 신형섭;;박정수
    • 한국전기전자재료학회논문지
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    • 제20권6호
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    • pp.541-545
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    • 2007
  • The critical current degradation behaviors of multifilamentary Bi-2223 superconducting tapes under pressurized liquid nitrogen were investigated using a r-shaped sample holder which gives a series of bending strains to tape. Three kinds of externally-reinforced Bi-2223 tapes with different hermeticity were used as samples. The tape with the thicker reinforcement layer had a better bending strain tolerance of $I_c$, but when the bending strain was calculated at the outermost filament, the $I_c$ degradation behavior became identical. For all samples, $I_{c0}$ decreased with the increase of applied pressure, but the $I_c$ degradation behavior with bending strain at each pressure level was similar. Furthermore, after depressurization from 1 MPa to atmospheric pressure, $I_c$ was completely recovered to its initial values. When the samples were warmed up to room temperature after pressurization tests, the ballooning damage occurred at lower bending strain regions. The region where ballooning was observed was identical to the one where the significant $I_c$ degradation occurred.

Steel fibre reinforced concrete for elements failing in bending and in shear

  • Barros, Joaquim A.O.;Lourenco, Lucio A.P.;Soltanzadeh, Fatemeh;Taheri, Mahsa
    • Advances in concrete construction
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    • 제1권1호
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    • pp.1-27
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    • 2013
  • Discrete steel fibres can increase significantly the bending and the shear resistance of concrete structural elements when Steel Fibre Reinforced Concrete (SFRC) is designed in such a way that fibre reinforcing mechanisms are optimized. To assess the fibre reinforcement effectiveness in shallow structural elements failing in bending and in shear, experimental and numerical research were performed. Uniaxial compression and bending tests were executed to derive the constitutive laws of the developed SFRC. Using a cross-section layered model and the material constitutive laws, the deformational behaviour of structural elements failing in bending was predicted from the moment-curvature relationship of the representative cross sections. To evaluate the influence of the percentage of fibres on the shear resistance of shallow structures, three point bending tests with shallow beams were performed. The applicability of the formulation proposed by RILEM TC 162-TDF for the prediction of the shear resistance of SFRC elements was evaluated. Inverse analysis was adopted to determine indirectly the values of the fracture mode I parameters of the developed SFRC. With these values, and using a softening diagram for modelling the crack shear softening behaviour, the response of the SFRC beams failing in shear was predicted.

The influence of graphene platelet with different dispersions on the vibrational behavior of nanocomposite truncated conical shells

  • Khayat, Majid;Baghlani, Abdolhossein;Dehghan, Seyed Mehdi;Najafgholipour, Mohammad Amir
    • Steel and Composite Structures
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    • 제38권1호
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    • pp.47-66
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    • 2021
  • This work addresses the free vibration analysis of Functionally Graded Porous (FGP) nanocomposite truncated conical shells with Graphene PLatelet (GPL) reinforcement. In this study, three different distributions for porosity and three different dispersions for graphene platelets have been considered in the direction of the shell thickness. The Halpin-Tsai equations are used to find the effective material properties of the graphene platelet reinforced materials. The equations of motion are derived based on the higher-order shear deformation theory and Sanders's theory. The Fourier Differential Quadrature (FDQ) technique is implemented to solve the governing equations of the problem and to obtain the natural frequencies of the truncated conical shell. The combination of FDQ with higher-order shear deformation theory allows a very accurate prediction of the natural frequencies. The precision and reliability of the proposed method are verified by the results of literature. Moreover, a wide parametric study concerning the effect of some influential parameters, such as the geometrical parameters, porosity distribution, circumferential wave numbers, GPLs dispersion as well as boundary restraint conditions on free vibration response of FGP-GPL truncated conical shell is also carried out and investigated in detail.

Nonlinear free vibration analysis of functionally graded carbon nanotube reinforced fluid-conveying pipe in thermal environment

  • Xu, Chen;Jing-Lei, Zhao;Gui-Lin, She;Yan, Jing;Hua-Yan, Pu;Jun, Luo
    • Steel and Composite Structures
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    • 제45권5호
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    • pp.641-652
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    • 2022
  • Fluid-conveying tubes are widely used to transport oil and natural gas in industries. As an advanced composite material, functionally graded carbon nanotube-reinforced composites (FG-CNTRC) have great potential to empower the industry. However, nonlinear free vibration of the FG-CNTRC fluid-conveying pipe has not been attempted in thermal environment. In this paper, the nonlinear free vibration characteristic of functionally graded nanocomposite fluid-conveying pipe reinforced by single-walled carbon nanotubes (SWNTs) in thermal environment is investigated. The SWCNTs gradient distributed in the thickness direction of the pipe forms different reinforcement patterns. The material properties of the FG-CNTRC are estimated by rule of mixture. A higher-order shear deformation theory and Hamilton's variational principle are employed to derive the motion equations incorporating the thermal and fluid effects. A two-step perturbation method is implemented to obtain the closed-form asymptotic solutions for these nonlinear partial differential equations. The nonlinear frequencies under several reinforcement patterns are presented and discussed. We conduct a series of studies aimed at revealing the effects of the flow velocity, the environment temperature, the inner-outer diameter ratio, and the carbon nanotube volume fraction on the nature frequency.

기둥-말뚝의 상호작용을 고려한 단일 현장타설말뚝의 철근비 분석 (Analysis of Steel Reinforcement Ratio for Bent Pile Structures Considering Column-Pile Interaction)

  • 김재영;정상섬;김장호
    • 콘크리트학회논문집
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    • 제26권2호
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    • pp.181-188
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    • 2014
  • 이 연구에서는 기존의 가상고정점 모델을 통한 단일 현장타설말뚝 설계를 보완하고자, 등가 지반면 스프링 모델을 바탕으로 한 기둥과 말뚝의 상호작용을 고려한 해석법을 제시하였으며, 이를 토대로 주요 영향인자에 따라 말뚝의 최소철근비 적용성을 분석하였다. 나아가, 기둥과 말뚝 조건을 고려하여 말뚝에 철근비별 적용 가능한 한계깊이를 제안하였다. 이 연구 결과, 기둥-말뚝의 상호작용을 고려한 해석은 가상고정점 모델 해석에서 전체 모델링 해석으로 넘어가는 중간단계의 비교적 정확하고 경제적인 설계법임을 알 수 있었으며, 이 해석법을 통해 최소철근비 적용성을 평가한 결과, 말뚝의 최대 휨모멘트는 말뚝재료의 균열모멘트 이내에서 모두 발생하는 것으로 나타나 말뚝에는 최소철근비(0.4%)를 적용하여도 만족하는 것을 알 수 있었다. 이를 토대로, 현장사례를 통해 철근비별 적용 가능한 한계깊이($L_{As=x%}$)를 제안하였으며, 정규화된 철근비별 적용 가능한 한계깊이 ($L_{As=x%}/L_P$)는 정규화된 말뚝길이($L_P/D_P$)에 따라 선형적으로 감소하여 일정한 값에서 수렴함을 알 수 있었다.

철근콘크리트 보의 통기성 유리섬유판 보강에 따른 피로거동에 관한 실험적 연구 (An Experimental Study on the Fatigue Behaviors Strengthened by Ventilation-Glass Fiber Plate of Reinforced Concrete Beams)

  • 김운학;강석원;신춘식
    • 한국재난정보학회 논문집
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    • 제8권4호
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    • pp.391-400
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    • 2012
  • 최근 건설 산업에서 FRP는 재료적 장점들 때문에 구조물의 보강 재료로서 많이 사용되어지고 있다. FRP 외부부착보강은 중량에 비하여 높은 강도 및 강성, 우수한 내구성과 시공성 등 여러 가지 장점을 가지는 공법이다. 그러나 외부부착보강은 구조물이 투수성이 낮은 보강재로 밀폐되고 수분이 외부로 배출되지 못함으로 인하여, 장기적인 구조물의 손상을 발생시키는 문제점이 있다. 본 연구에서는 인발성형으로 제작되었으며, 기존의 FRP와 재료역학적 성질은 동등하면서 투수성을 지녀 구조물의 내구성, 부착성능에 유리한 유리섬유패널(GP)에 대해서 정적실험을 통해 실험체의 반복하중 하에서의 하중-처짐 선도, 파괴형태, 하중-변형율 관계 등을 조사하였다. 실험결과 2,000,000회 피로실험 후에도 파괴에 도달하지 않았으며, 보의 처짐이나 콘크리트 압축변형률이 기준 콘크리트 시험체보다 현저히 낮은 것으로 측정되어 장기 부착력 및 장기 내구성능이 우수함을 알수 있었다.

Nonlinear modeling of a RC beam-column connection subjected to cyclic loading

  • Dominguez, Norberto;Perez-Mota, Jesus
    • Computers and Concrete
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    • 제21권3호
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    • pp.299-310
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    • 2018
  • When reinforced concrete structures are subjected to strong seismic forces, their beam-column connections are very susceptible to be damaged during the earthquake event. Consequently, structural designers try to fit an important quantity of steel reinforcement inside the connection, complicating its construction without a clear justification for this. The aim of this work is to evaluate -and demonstrate- numerically how the quantity and the array of the internal steel reinforcement influences on the nonlinear response of the RC beam-column connection. For this, two specimens (extracted from an experimental test of 12 RC beam-column connections reported in literature) were modeled in the Finite Element code FEAP considering different stirrup's arrays. The nonlinear response of the RC beam-column connection is evaluated taking into account the nonlinear thermodynamic behavior of each component: a damage model is used for concrete; a classical plasticity model is adopted for steel reinforcement; the steel-concrete bonding is considered perfect without degradation. At the end, the experimental responses obtained in the tests are compared to the numerical results, as well as the distribution of shear stresses and damage inside the concrete core of the beam-column connection, which are analyzed for a low and high state of confinement.

심해저 파이프라인과 굽힘 제한 장치의 다중물체 접촉 해석을 통한 구조 최적설계 (Multi-Body Contact Analysis and Structural Design Optimization of Bend Restrictors for Subsea Pipelines)

  • 노정민;하윤도
    • 대한조선학회논문집
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    • 제55권4호
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    • pp.289-296
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    • 2018
  • The offshore subsea platforms are connected to subsea pipelines to transport gas/oil from wells. The pipe is a multilayered structure of polymer and steel for compensating both flexibility and strength. The pipe also requires reinforcement structures to endure the extreme environmental conditions. A vertebrae structure of bend restrictors is one of the reinforcement structures installed to protect the subsea pipe from excessive bending deformations. In this study, structural behaviors of the subsea pipeline with bend restrictors are investigated by the multi-body contact analysis in Abaqus 6.14-2. Contact forces of each bend restrictor extracted from the multi-body contact analysis can be boundary conditions for topology design optimization in Altair Hyperworks 13.0 Hypermesh-Optistruct. Multiple design constraints are considered to obtain a manufacturable design with efficient material usage. Through the multi-body contact analysis with optimized bend restrictors, it is confirmed that the bending performance of the optimized design is enhanced.

고분자-점토 나노복합체에 관한 계면활성제의 개질 영향 (Modified Effects or Surfactants with Polymer-Clay Nanocomposites)

  • 김홍운;방윤혁;최수명;임경희
    • 한국응용과학기술학회지
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    • 제23권4호
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    • pp.290-299
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    • 2006
  • This article investigated to polymer-clay nanocomposite, especially in interfacial respect clay structure, its dispersion into polymer matrix, and clay modification is studied. The cationic exchange of surfactants with clay gallery results in preparing organo-clay capable of compatiblizing to monomer or polymer and increasing interlayer adhesion energy due to expansion of interlayer spacing. The orientation of surfactant in clay gallery is affected by chemical structure and charge density of clay, and interlayer spacing and volume is increased with alkyl chain length of surfactant, or charge density of clay. Also, the interaction between clay and polymer in preparing polymer-clay nanocomposite is explained thermodynamically. In the future, the study and development of polymer-clay nanocomposite is paid attention to the interfacial adhesion, clay dispersion within polymer, mechanism of clay intercalation or exfoliation.

SBR에 대한 Silane Coupling Agent 처리한 Kaolinite의 보강효과에 관한 연구 (Effect of Kaolinite Treated with Silane Coupling Agent on the Reinforcement of SBR)

  • 김기주;김종석;안병국;최형진;장영재
    • Elastomers and Composites
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    • 제25권4호
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    • pp.280-290
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    • 1990
  • The effect of surface treatment of kaolinite with silane coupling agent on the reinforcement of SBR was investigated. The possibility of the practical use of kaolinite as an organic filler was also scrutinized and it was found that the reinforcement of SBR was improved by modifying surface of the cheap inactive inorganic filler with organic silane coupling agents. 3-Chloropropyltrimethoxysilane(C-series), 3-mercaptopropyltrimethoxysilane(M-series) and 3-aminopropyltriethoxysilane(A-series) were used as coupling agents. To test the material properties of vulcanized and unvulcanized SBR, Mooney viscosity, modulus, elongation and fractured surface measurements by SEM were carried out by changing the amount of silane coupling agents. Torqe of the unvulcanized SBR following the measurement of the degree of vulcanization was to be increased as the amount of silane was increasing, and Mooney viscosity of M-series and A-series was also increased.

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