• 제목/요약/키워드: deformation characteristic

검색결과 495건 처리시간 0.023초

폐기물을 포함한 이종혼합토의 강도·변형특성 (Strength and Deformation Characteristic of Two-Phase Mixture Soil)

  • 이기호
    • 한국지반환경공학회 논문집
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    • 제2권2호
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    • pp.33-39
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    • 2001
  • 굴패각을 혼합한 해성점토를 매립재료로 활용하기 위한 기초자료를 얻기 위해 삼축실험을 실시하여 혼합토의 전단 변형특성을 검토했다. 일련의 실험을 통해, 굴패각의 혼합율이 증가하면 이종혼합토의 강도가 증가한다는 것을 알 수 있었다. 그리고, 이러한 강도개선 효과는 순수점토와 같이 구속압에 기인한 마찰력뿐만 아니라, 굴패각의 골격 구조 및 형성과정에 의해서도 영향을 받고 있다는 것을 알 수 있었다. 또한, 혼합토의 할선탄성계수 및 다일러턴시 특성으로부터 굴패각 혼합에 의해 나타나는 영향을 파악하였고 보정계수의 개념을 도입해 전단과정의 굴패각 골격구조의 변화를 고찰했다.

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Reliability analysis-based conjugate map of beams reinforced by ZnO nanoparticles using sinusoidal shear deformation theory

  • Keshtegar, Behrooz;Kolahchi, Reza
    • Steel and Composite Structures
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    • 제28권2호
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    • pp.195-207
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    • 2018
  • First-order reliability method (FORM) is enhanced based on the search direction using relaxed conjugate reliability (RCR) approach for the embedded nanocomposite beam under buckling failure mode. The RCR method is formulated using discrete conjugate map with a limited scalar factor. A dynamical relaxed factor is proposed to control instability of proposed RCR, which is adjusted using sufficient descent condition. The characteristic of equivalent materials for nanocomposite beam are obtained by micro-electro-mechanical model. The probabilistic model of nanocomposite beam is simulated using the sinusoidal shear deformation theory (SSDT). The beam is subjected to external applied voltage in thickness direction and the surrounding elastic medium is modeled by Pasternak foundation. The governing equations are derived in terms of energy method and Hamilton's principal. Using exact solution, the implicit buckling limit state function of nanocomposite beam is proposed, which is involved various random variables including thickness of beam, length of beam, spring constant of foundation, shear constant of foundation, applied voltage, and volume fraction of ZnO nanoparticles in polymer. The robustness, accuracy and efficiency of proposed RCR method are evaluated for this engineering structural reliability problem. The results demonstrate that proposed RCR method is more accurate and robust than the excising reliability methods-based FORM. The volume fraction of ZnO nanoparticles and the applied voltage are the sensitive variables on the reliable levels of the nanocomposite beams.

고강도 콘크리트 전단벽체에 사용된 각형강관의 효과 (Effects of High-Strength Concrete Shear Walls with Rectangular Steel Tubes)

  • 김명준;오종한;조순호;최기봉;조철호
    • 한국구조물진단유지관리공학회 논문집
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    • 제2권2호
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    • pp.209-217
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    • 1998
  • Compared to normal-strength concrete, high-strength concrete has the lower lateral expansion capacity caused by the higher elastic modulus and the lower internal crack characteristic. Therefore, the effect of the lateral confining action of hoops appears slowly. Nevertheless, it has been reported that the strength and deformation capacity of high-strength concrete is improved by well-distributed hoops. Due to that argument, this investigation has been compared and analyzed by the experimental works on the deformation capacity and the confinement mechanism of high-strength concrete shear wall of the high-rise building reinforced by rectangular steel tubes and rectangular hoops at both edges. It is suggested that, using high-strength concrete($500kgf/cm^2$, $700kgf/cm^2$), hoops should be replaced with rectangular steel tubes in order to prevent closely spaced hoops at the edge of the shear wall.

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송도해안의 해안침식이력 특성 (History and Characteristic of Beach Erosion on Songdo Beach in East coast of Korea)

  • 김규한;유형석
    • 한국수자원학회논문집
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    • 제39권1호
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    • pp.69-77
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    • 2006
  • 포항시에 위치한 송도해안은 오랜 기간 동안 여러 가지 원인에 의하여 해안침식이 진행되었다. 송도해안의 해안침식 문제와 관련하여 논쟁의 이슈로 되어 있는 문제 중 하나는, 해안침식에 대한 주변 해안구조물의 영향 범위이다. 본 연구에서는, 이를 검토하기 위하여 송도해안의 침식특성과 관련된 기존자료 및 항공사진자료 등을 통하여 재분석하였다. 특히, 주변지역의 인위적인 해안개발 상황을 토대로 실험안을 구성한 후, 3차원 지형변동모델을 이용하여 송도해안의 해빈변형상황을 검토하였으며, 아울러, 이러한 다방면의 해석을 통해 얻어진 검토결과들을 토대로 대상해안의 침식이력특성을 파악하고자 하였다.

음극선관의 내충격 특성 향상을 위한 구조 설계에 관한 연구 (A Study on the Structural Design Approach to Improve Shockproof Characteristic in Cathode Ray Tube)

  • 박상후;김원진;이부윤
    • 한국정밀공학회지
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    • 제17권8호
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    • pp.100-105
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    • 2000
  • In this study the structural design concepts of main parameters of a Cathode Ray Tube(CRT) such as frame spring and shadow mask were proposed to guarantee a failure-proof CRT under mechanical shock. With computer simulation and experiments some information on the structural design concept was obtained as followings: the frame and the shadow mask of the CRT needed designing to increase strength so double-beads shape at the corner of frame was newly designed for it, And the spring which interconnected frame with panel glass was required to deform elastically for the purpose of absorbing the shock energy in the direction of drop. A new type of spring 'twisting spring' was designed to achieve the flexibility in that direction. By using it the deformation energy of a shadow mask could reduced to some degree. To accomplish those simulations commerical codes Pam-Crash and I-DEAS were used and a typical CRT was analyzed as an example to prove the usefulness of this study.

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Seismic behaviour of repaired superelastic shape memory alloy reinforced concrete beam-column joint

  • Nehdi, Moncef;Alam, M. Shahria;Youssef, Maged A.
    • Smart Structures and Systems
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    • 제7권5호
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    • pp.329-348
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    • 2011
  • Large-scale earthquakes pose serious threats to infrastructure causing substantial damage and large residual deformations. Superelastic (SE) Shape-Memory-Alloys (SMAs) are unique alloys with the ability to undergo large deformations, but can recover its original shape upon stress removal. The purpose of this research is to exploit this characteristic of SMAs such that concrete Beam-Column Joints (BCJs) reinforced with SMA bars at the plastic hinge region experience reduced residual deformation at the end of earthquakes. Another objective is to evaluate the seismic performance of SMA Reinforced Concrete BCJs repaired with flowable Structural-Repair-Concrete (SRC). A $\frac{3}{4}$-scale BCJ reinforced with SMA rebars in the plastic-hinge zone was tested under reversed cyclic loading, and subsequently repaired and retested. The joint was selected from an RC building located in the seismic region of western Canada. It was designed and detailed according to the NBCC 2005 and CSA A23.3-04 recommendations. The behaviour under reversed cyclic loading of the original and repaired joints, their load-storey drift, and energy dissipation ability were compared. The results demonstrate that SMA-RC BCJs are able to recover nearly all of their post-yield deformation, requiring a minimum amount of repair, even after a large earthquake, proving to be smart structural elements. It was also shown that the use of SRC to repair damaged BCJs can restore its full capacity.

Vibration characteristic analysis of high-speed railway simply supported beam bridge-track structure system

  • Jiang, Lizhong;Feng, Yulin;Zhou, Wangbao;He, Binbin
    • Steel and Composite Structures
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    • 제31권6호
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    • pp.591-600
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    • 2019
  • Based on the energy-variational principle, a coupling vibration analysis model of high-speed railway simply supported beam bridge-track structure system (HSRBTS) was established by considering the effect of shear deformation. The vibration differential equation and natural boundary conditions of HSRBTS were derived by considering the interlayer slip effect. Then, an analytic calculation method for the natural vibration frequency of this system was obtained. By taking two simply supported beam bridges of high-speed railway of 24 m and 32 m in span as examples, ANSYS and MIDAS finite-element numerical calculation methods were compared with the analytic method established in this paper. The calculation results show that two of them agree well with each other, validating the analytic method reported in this paper. The analytic method established in this study was used to evaluate the natural vibration characteristics of HSRBTS under different interlayer stiffness and length of rails at different subgrade sections. The results show that the vertical interlayer compressive stiffness had a great influence on the high-order natural vibration frequency of HSRBTS, and the effect of longitudinal interlayer slip stiffness on the natural vibration frequency of HSRBTS could be ignored. Under different vertical interlayer stiffness conditions, the subgrade section of HSRBTS has a critical rail length, and the critical length of rail at subgrade section decreases with the increase in vertical interlayer compressive stiffness.

Fractal Nature of Magnetic Colloidal Dispersion with Cobalt Iron Oxide and Metal Iron Particles

  • Yoon, Kwan Han;Lee, Young Sil
    • Korean Chemical Engineering Research
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    • 제60권1호
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    • pp.125-131
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    • 2022
  • The microstructure of highly aggregated colloidal dispersions was investigated by probing the rheological behavior of magnetic suspensions. The dynamic moduli as functions of frequency and strain amplitude are shown to closely resemble that of colloidal gels indicating the formation of network structure. The two types of characteristic critical strain amplitudes, γc and γy, were characterized in terms of the changing microstructure. The amplitude of γc indicates the transition from linear to nonlinear viscoelasticity and depends only on particle volume fraction not magnetic interactions. The study of scaling behavior suggests that it is related to the breakage of interfloc, i.e., floc-floc structure. However, yielding strain, γy, was found to be independent of particle volume fraction as well as magnetic interaction. It relates to extensive deformation resulting in yielding behavior. The scaling of elastic constant, Ge, implies that this yielding behavior and hence γy is due to the breakage of long-range interfloc interactions. Also, the deformation of flocs due to increase strain was indicated from the investigation of the fractal nature.

파쇄대가 과대분포한 암반지역에서 터널의 거동특성에 관한 연구 (Analysis on the tunnel behavior characteristic in the excessive fractured zone distribution of rock area)

  • 박재원;이승호
    • 한국터널지하공간학회 논문집
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    • 제18권4호
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    • pp.341-354
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    • 2016
  • 본 논문은 설계단계에서 지반조사와 수치해석을 통해 예측된 터널의 거동특성과 실제 시공단계에서 어떠한 변형특성을 보이고 있는지 RMR 및 계측데이터의 비교분석을 통해 선정된 터널지보시스템의 선택적 적용을 보여준다. 이는 파쇄대가 과대분포한 암반지역에 터널을 설치할 경우, 터널굴착지반의 거동은 지반의 특성과 보강공법 등의 영향에 따라 상이한 거동특성 때문이다. 그러므로, 본 연구에서는 지반설계자가 단층대 및 파쇄대가 과대 분포한 암반지역의 터널 설계시, RMR-계측 데이터 분석과 지반물성치 저감에 따른 매개변수 분석을 비교하여, 지반 설계자가 향후 유사한 파쇄대가 과대분포한 지역의 터널거동특성을 예측할 수 있도록 하고자 한다.

자동차용 방수커넥터의 밀봉특성에 관한 연구 (A Study on the sealing Characteristic of Automobile Waterproof Connector)

  • 고영배;박형필;이정원;차백순
    • 한국산학기술학회논문지
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    • 제15권4호
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    • pp.1859-1864
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    • 2014
  • 본 액화 실리콘 고무는 내열성 및 내화학적 우수성으로 전자 제품 및 다양한 제품에서 활용되고 있다. 하지만 초탄성 재료는 일반 금속재료와 다른 특성을 보인다. 초탄성 재료는 하중과 변형이 비선형 관계를 보이는 대변형 범위에서도 탄성거동을 나타내는 특성을 지니며, 비선형, 비압축성 및 대형의 특성을 지니고 있다. 이러한 특성 때문에 제품을 설계 및 생산 하기위해는 기능적 측면을 고려한 소재의 특성에 대한 물성 확보가 반드시 필요하기 때문에 현장에서 많은 어려움이 있다. 본 논문에서는 자동차용 방수커넥터 설계를 위해 소재의 인장, 압축 시험으로부터 구한 하중-변형관계를 이용하여 이를 유한 요소 해석에 적용한 결과를 비교하였으며, 해석결과와 제품의 성능 테스트 결과를 비교하여 방수커넥터용 씰의 경우 어떠한 소재특성을 적용할 경우 유용한 결과를 도출할 수 있는지를 확인하였으며, 이를 통해 제품 개발에 유용성을 확인하였다.