• 제목/요약/키워드: Yielding strength

검색결과 459건 처리시간 0.028초

고무입자의 크기와 폴리머의 물성이 고무/폴리머 복합재료의 충격강도 및 파괴거동에 미치는 영향 (Effect of Rubber Particle Size and Polymer Properties on Impact Strength and Fracture Behavior of Rubber/Polymer Composites)

  • 이창수;강병일;조길원;황운봉
    • Composites Research
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    • 제12권6호
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    • pp.83-89
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    • 1999
  • 고무/폴리머 복합재료의 충격강도와 파괴 기구를 기지재의 체인 유연성을 나타내는 특성비 $C_{\infty}$와 강화고무의 입자 크기의 두 가지 관점에서 연구하였다. 본 연구에서 특성비는 PPO와 PS폴리머의 조성비에 의하여 조절하였다. 아이조드 충격 시험과 주사전자현미경에 의한 파단면 관찰을 수행하였다. 전단항복과 크래이징으로 대별되는 소성 변형 기구의 이해를 넓히기 위해 유한요소해석을 수행하였다. 전단항복은 폴리머의 유연성이 상대적으로 낮거나 고무의 입자 크기가 작은 경우에 잘 나타났다.

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교량 바닥판의 파괴형태를 고려한 임계보강재비의 이론적 산정 (Theoretical Assessment of Limit Strengthening Ratio of Bridge Deck Based on the Failure Characteristic)

  • 심종성;오홍섭;유재명
    • 콘크리트학회논문집
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    • 제14권1호
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    • pp.110-117
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    • 2002
  • 공용하중의 증가 등에 따른 교량 바닥판의 성능향상 시 바닥판 두께, 콘크리트 강도, 철근강도 그리고 철근비와 더불어 보강재비에 의하여 바닥판의 파괴양상은 바뀌어 질 수 있다. 일반적으로 교량 바닥판의 파괴양상은 주철근 및 배력철근의 항복 이후에 펀칭전단파괴가 발생하는 것으로 나타나고 있으며, 외부부착공법을 적용함에 있어서 이러한 파괴양상을 유지해야 될 것으로 판단된다. 본 연구에서는 바닥판에 사용된 철근비 및 보강재비 등을 주요변수로 하여 항복선 이론 및 소성 펀칭모델 등을 적용한 항복강도 및 파괴강도를 해석하였으며, 철근비에 따른 임계보강재량을 제안하였다.

Cyclic testing of short-length buckling-restrained braces with detachable casings

  • Pandikkadavatha, Muhamed S.;Sahoo, Dipti R.
    • Earthquakes and Structures
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    • 제10권3호
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    • pp.699-716
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    • 2016
  • Buckling-restrained braced frames (BRBFs) are commonly used as lateral force-resisting systems in the structures located in seismic-active regions. The nearly symmetric load-displacement behavior of buckling-restrained braces (BRBs) helps in dissipating the input seismic energy through metallic hysteresis. In this study, an experimental investigation has been conducted on the reduced-core length BRB (RCLBRB) specimens to evaluate their hysteretic and overall performance under gradually increased cyclic loading. Detachable casings are used for the concrete providing confinement to the steel core segments of all test specimens to facilitate the post-earthquake inspection of steel core elements. The influence of variable core clearance and the local detailing of casings on the cyclic performance of RCLBRB specimens has been studied. The RCLBRB specimen with the detachable casing system and a smaller core clearance at the end zone as compared to the central region exhibited excellent hysteretic behavior without any slip. Such RCLBRB showed balanced higher yielding deformed configuration up to a core strain of 4.2% without any premature instability. The strength-adjustment factors for the RCLBRB specimens are found to be nearly same as that of the conventional BRBs as noticed in the past studies. Simple expressions have been proposed based on the regression analysis to estimate the strength-adjustment factors and equivalent damping potential of the RCLBRB specimens.

Effect of FRP composites on buckling capacity of anchored steel tanks

  • Al-Kashif, M.A.;Ramadan, H.;Rashed, A.;Haroun, M.A.
    • Steel and Composite Structures
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    • 제10권4호
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    • pp.361-371
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    • 2010
  • Enhancement in the seismic buckling capacity of steel tanks caused by the addition of fiber reinforced polymers (FRP) retrofit layers attached to the outer walls of the steel tank is investigated. Three-dimensional non-linear finite element modeling is utilized to perform such analysis considering non linear material properties and non-linear large deformation large strain analysis. FRP composites which possess high stiffness and high failure strength are used to reduce the steel hoop stress and consequently improve the tank capacity. A number of tanks with varying dimensions and shell thicknesses are examined using FRP composites added in symmetric layers attached to the outer surface of the steel shell. The FRP shows its effectiveness in carrying part of the hoop stresses along with the steel before steel yielding. Following steel yielding, the FRP restrains the outward bulging of the tank and continues to resist higher hoop stresses. The percentage improvement in the ultimate base moment capacity of the tank due to the addition of more FRP layers is shown to be as high as 60% for some tanks. The percentage of increase in the tank moment capacity is shown to be dependent on the ratio of the shell thickness to the tank radius (t/R). Finally a new methodology has been explained to calculate the location of Elephant foot buckling and consequently the best location of FRP application.

중심가새골조의 내진성능향상을 위한 전단항복댐퍼의 개발 (Development of a Shear Yielding Steel Damper for Concentrically Braced Frames)

  • 가마 알리;정성훈
    • 한국전산구조공학회논문집
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    • 제34권6호
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    • pp.437-443
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    • 2021
  • 본 논문에서는 중심가새골조의 내진성능 향상을 위한 전단항복 댐퍼의 개발을 수행하였다. 실용성이 높은 댐퍼의 개발을 위해서 구조적 간결성과 내진성능의 신뢰도에 중점을 둔 상세를 제시하기 위해 노력하였다. 지진 발생 시 에너지 소산 메커니즘에 대한 신뢰도가 높고, 지진 발생 후 항복 부위의 교체가 쉬운 형태로 고안되었다. 댐퍼의 끼움강판 치수를 변경함으로써 전단, 휨-전단, 휨 메커니즘을 조절하여 설계할 수 있다. 비선형 유한요소해석을 통해서 댐퍼의 항복 메커니즘에 따른 구조적 거동을 분석하였고, 전단항복 메커니즘 댐퍼가 휨항복 메커니즘 댐퍼에 비해 강성, 강도, 에너지 소산 측면에서 우수한 성능을 가지고 있음을 확인하였다.

용접구조용강재의 기계적 성질에 관한 통계적 분석 (A Statistical Analysis on the Mechanical Properties of Structural Welding Steels)

  • 장동일;경갑수;홍성욱;남왕현
    • 한국강구조학회 논문집
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    • 제12권3호통권46호
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    • pp.281-290
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    • 2000
  • 본 연구에서는 강구조물에 자주 사용되고 있는 용접구조용강재를 대상으로 강재검사성적증명서를 수집하고 이를 통계적으로 분석, 정리해서 기계적 성질의 특성을 정량적으로 평가하였다. 본 연구결과 현재 국내에서 생산되는 용접구조용강재의 기계적 성질은 현행 KS에서 규정하고 있는 기준값을 만족하였으며, 판두께 및 강도등급과 일정한 상관관계가 있음을 알 수 있었다. 강종별 판두께 및 강도등급과 기계적 성질 사이에는 선형적인 비례관계가 성립, 본 연구결과는 기존 연구결과와 유사한 경향이 있음을 알 수 있었다. 현행 KS에서는 강재의 기계적 성질 중 항복점 응력에 대한 상한값이 규정되어 있지 않는데, 강재의 변형성능을 충분하게 확보하기 위해서는 항복비 (또는 항복강도)의 상한값을 규정 할 필요가 있을 것으로 생각된다.

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Seismic torsional vibration in elevated tanks

  • Dutta, Sekhar Chandra;Murty, C.V.R.;Jain, Sudhir K.
    • Structural Engineering and Mechanics
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    • 제9권6호
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    • pp.615-636
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    • 2000
  • Some elevated water tanks have failed due to torsional vibrations in past earthquakes. The overall axisymmetric structural geometry and mass distribution of such structures may leave only a small accidental eccentricity between centre of stiffness and centre of mass. Such a small accidental eccentricity is not expected to cause a torsional failure. This paper studies the possibility of amplified torsional behaviour of elevated water tanks due to such small accidental eccentricity in the elastic as well as inelastic range; using two simple idealized systems with two coupled lateral-torsional degrees of freedom. The systems are capable of retaining the characteristics of two extreme categories of water tanks namely, a) tanks on staging with less number of columns and panels and b) tanks on staging with large number of columns and panels. The study shows that the presence of a small eccentricity may lead to large displacement of the staging edge in the elastic range, if the torsional-to-lateral time period ratio $({\tau})$ of the elevated tanks lies within a critical range of 0.7< ${\tau}$ <1.25. Inelastic behaviour study reveals that such excessive displacement in some of the reinforced concrete staging elements may cause unsymmetric yielding. This may lead to progressive strength deterioration through successive yielding in same elements under cyclic loading during earthquakes. Such localized strength drop progressively develop large strength eccentricity resulting in large localized inelastic displacement and ductility demand, leading to failure. So, elevated water tanks should have ${\tau}$ outside the said critical range to avoid amplified torsional response. The tanks supported on staging with less number of columns and panels are found to have greater torsional vulnerability. Tanks located near faults seem to have torsional vulnerability for large ${\tau}$.

압연 및 용접방향이 같은 맞대기 용접강판의 하중방향에 따른 피로균열 진전특성 (Characteristics of Fatigue Crack Propagations with Respect to Loading Directions in Butt-Welded Steel Plates with the Same Direction of Rolling and Welding Bead)

  • 이용복;김성엽;오병덕
    • Journal of Welding and Joining
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    • 제23권6호
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    • pp.37-42
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    • 2005
  • Most of the welding steel plate structures have complicated mechanical problems such as rolling directional characteristics and residual stresses caused by manufacturing process. For the enhancement of reliability and safety in those structures, therefore, a systematic investigation is required. SS400 steel plate used for common structures was selected and welded by FCAW butt-welding process for this study, and then it was studied experimently about characteristics of fatigue crack propagations with respect to rolling direction and welding residual stress of welded steel plates. When the angles between rolling direction and tensile loading direction in base material are increased, their ultimate strength not show a significant difference, but yielding strength are increased and elongations are decreased uniformly. It is also shown that fatigue crack growth rate can be increased from those results. When the angles between welding bead direction and loading direction in welded material are increase, fatigue crack growth rate of them are decreased and influenced uniformly according to the conditions of residual stress distribution. In these results, it is shown that the welded steel plate structures are needed to harmonize distributed welding residual stress, rolling direction and loading direction fur the improvement of safety and endurance in manufacture of their structures.

SRC 기둥-H 형강보 접합부의 전단강도 및 이력거동 (Shear Strength and Hysteretic Behavior of SRC Column to Steel Beam Joints)

  • 이승준;김원기;서동훈
    • 한국강구조학회 논문집
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    • 제9권2호통권31호
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    • pp.277-285
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    • 1997
  • 접합부 패널존의 거동에 영향을 줄 수 있는 변수를 고려하여 SRC 기둥-H형강보 접합부의 역학적 특성에 대해 실험적 연구를 하였다. 7개의 시험체를 제작하여 실험을 수행하였으며 실험으로부터 접합부의 전단강도와 이력거동을 조사하였고 파괴형태에 대하여 분석하였다. 접합부의 이력거동은 약간의 핀칭을 보이는 안정된 거동을 보였다. 이력거동은 최대하중에 도달한 후 변위를 증가할 때 내력이 감소하는 거동을 보였다. 접합부 패널존의 전단강도는 접합부내의 콘크리트 유효면적이 증가함에 따라 증가함을 보였다. 접합부 패널존의 전단강조는 철골기둥 웨브의 항복강도, 패널존내의 철골기둥 플랜지의 소성휨강도 그리고 유효콘크리트의 전단강도의 합으로 표현되며 실험결과는 이러한 접합부의 전단강도와 근사한 값을 보였다.

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Shear deformation model for reinforced concrete columns

  • Sezen, Halil
    • Structural Engineering and Mechanics
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    • 제28권1호
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    • pp.39-52
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    • 2008
  • Column shear failures observed during recent earthquakes and experimental data indicate that shear deformations are typically associated with the amount of transverse reinforcement, column aspect ratio, axial load, and a few other parameters. It was shown that in some columns shear displacements can be significantly large, especially after flexural yielding. In this paper, a piecewise linear model is developed to predict an envelope of the cyclic shear response including the shear displacement and corresponding strength predictions at the first shear cracking, peak strength, onset of lateral strength degradation, and loss of axial-load-carrying capacity. Part of the proposed model is developed using the analysis results from the Modified Compression Field Theory (MCFT). The results from the proposed model, which uses simplified equations, are compared with the column test data.