• 제목/요약/키워드: Transverse Edge Effect

검색결과 38건 처리시간 0.025초

모서리부 차량 다축하중에 의한 콘크리트 도로 포장의 응력 분포 특성 (Stress Distribution of Concrete Pavements under Multi-Axle Vehicle Loads Applied at Pavement Edges)

  • 김성민;조병휘;이상훈
    • 한국도로학회논문집
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    • 제8권4호
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    • pp.13-24
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    • 2006
  • 콘크리트 포장은 모서리(Edge) 부분에 차량 하중이 작용할 때 큰 응력을 받게 되며 이러한 응력은 포장의 거동 및 장기 공용성에 영향을 미친다. 따라서 본 연구는 콘크리트 포장의 유한요소 모델을 사용하여 콘크리트 포장의 모서리 부분에 복륜 단축, 복륜 복축, 복륜 삼축 등 복륜 다축 하중의 한쪽 차륜이 접하여 작용할 때 포장의 응력 분포와 최대 응력을 분석하기 위하여 수행되었다. 우선 종방향과 횡방향을 따라 응력의 분포 형태를 분석하였고, 콘크리트 슬래브의 두께, 콘크리트 탄성계수, 지반 탄성계수 등이 응력 분포에 미치는 영향을 분석하였다. 또한 하중 접지면적과 연관된 하중 접지압의 변화에 따른 콘크리트 포장의 응력 분포도 분석하였다. 그리고 콘크리트 포장에서 최대 응력이 어느 위치에서 발생하는지에 대한 연구도 수행하였다. 연구 결과 모서리부 하중에 의한 콘크리트 포장의 최대 응력은 콘크리트의 탄성계수가 증가할수록, 슬래브의 두께가 감소할수록, 그리고 지반 탄성계수가 감소할수록 증가하였다. 하중 접지압의 변화에 따른 최대 응력은 콘크리트 탄성계수와 지반 탄성계수의 크기에 따라서는 거의 일정한 변화를 보였으나 슬래브 두께는 얇아질수록 접지압에 따른 최대 응력의 변화가 뚜렷이 보였다. 최대 응력이 생기는 횡방향의 위치는 콘크리트 탄성계수와 지반 탄성계수에는 무관하게 일정하다. 하지만 슬래브의 두께는 두꺼워질수록 최대 응력의 횡방향 상 위치가 모서리에서 내부로 이동한다. 종방향의 최대 응력이 생기는 위치는 단축과 복축 하중일 경우는 축의 위치이며, 삼축 하중일 경우에는 콘크리트 탄성계수나 슬래브 두께가 증가하던지 또는 지반 탄성계수가 감소하면 최대 응력이 생기는 종방향 상 위치가 양쪽 바깥축에서 중간축의 위치로 바뀌게 된다.

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다양한 연단조건을 갖는 마름모꼴형 평판의 진동에 대한 모서리 응력특이도의 영향 (The Influence of Corner Stress Singularities on the Vibration of Rhombic Plates Having Various Edge Conditions)

  • 김주우;정명채
    • 한국강구조학회 논문집
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    • 제12권4호통권47호
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    • pp.363-374
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    • 2000
  • 본 논문에서는 고정, 단순, 또는 자유 연단 조건의 세 가지의 다른 조합을 갖는 마름모꼴형 평판의 진동에 대한 엄밀한 해석방법을 제시하였다. 본 논문의 주된 관점은 마름모꼴형 평판 둔각모서리에서 형성되는 모멘트특이도를 엄밀히 고려하여 해석하는 것이다. 단 영역 Lagrangian 범함수의 정상조건이 Ritz방법을 이용하여 유도되었다. 진동수의 수렴에 대한 연구는 모서리함수가 수렴속도를 가속화하는 것을 보여주고 있다. 본 논문에서는 모서리 응력특이도의 영향이 이해될 수 있도록 상당히 큰 둔각모서리를 갖는 마름모꼴 형 평판에 대한 정확한 진동수와 수직진동변위의 전형적인 등고선을 제시하였다.

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판재 스크래치 저감을 위한 제관 라인 이송 핑거 접촉부의 설계 개선 (Design Improvement of Carrier Finger on Sheet Metal Forming Line for the Prevention of Scratch)

  • 이민;김태완
    • Tribology and Lubricants
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    • 제28권5호
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    • pp.240-245
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    • 2012
  • In this study, we developed a new carrier finger to prevent scratches in a sheet metal forming line. The developed carrier finger was designed to have a streamlined shape with a larger radius of curvature at the edges, as well as a smaller contact area. To evaluate the scratch alleviation effect, a sliding contact analysis and scratch test using the pin on a plate wear tester were conducted for both the old and new carrier fingers. The results show that, for both transverse and longitudinal movements of the strip, the newly designed carrier finger reduces both the friction and scratch depth by its streamlined shape, which decreases the pressure spike at the edge.

Bending Strain Dependence of the Transport Property in Jointed BSCCO Tapes

  • Dedicatoria, Marlon J.;Shin, Hyung-Seop
    • 한국초전도ㆍ저온공학회논문지
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    • 제12권2호
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    • pp.5-8
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    • 2010
  • In this study, the effect of bending strain on the transport property and critical current of lap and butt-jointed (non-laminated) BSCCO tapes has been investigated. The samples were joined using a mechanically controlled jointing procedure. To achieve a uniform thickness at the joint a single point loading contact has been devised. GFRP mandrels with different bending radii which support the sample during bending have been used. $I_c$ have been measured at 77 K and self field. In the case of easy bending test for jointed BSCCO tapes, sudden degradation of $I_c$ is caused by the local strain concentration due to non uniform deformation at the edge parts of the joint. In the case of hard bending test of jointed BSCCO tapes transverse macroscopic crack at specific subsection caused a large $I_c$ degradation. The transport property of jointed BSCCO tapes in each bending mode was discussed with the damage morphology occurred.

단부 기계적 정착장치를 갖는 철근의 뽑힘강도 (Pullout Test of Reinforcement with End Mechanical Anchoring Device)

  • 김용곤;임원석;최동욱
    • 콘크리트학회논문집
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    • 제14권3호
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    • pp.430-439
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    • 2002
  • 콘크리트 내 이형철근 정착의 중요성은 철근콘크리트 구조에서 필수적인 요소이다. 표준갈고리는 인장정착을 위하여 광범위하게 사용되어 왔으나 콘크리트의 고강도화에 따라 부재 단면이 작아지는 추세 등으로 인하여 보-기둥 접합부에서는 좁은 공간에 철근이 과밀하게 배근됨으로써 시공 상의 어려움이 제기되고 있다. 단부 기계적 정착장치를 갖는 철근(단부보강철근)을 사용하는 경우 정착길이를 감소시키고, 정착부 상세를 단순화하며, 반복하중에 대한 저항능력을 증가시키는 등의 이점으로 인하여 공사비와 공사시간을 단축시킬 수 있을 것으로 사료된다. 본 연구는 단부보강철근의 뽐힘강도 및 거동에 대한 실험적 연구이다. D25 이형철근을 사용하여 수행된 총 33회의 뽑힘강도시험에서 실험변수는 철근 묻힘깊이, 철근중심과 콘크리트 가장자리간 거리, 단부보강 철물의 크기, 그리고 횡보강근(전단철근)의 간격이었다. 실험적으로 결정된 뽐힘강도는 CCD 방법에 의해 계산된 예측값에 관전하는 결과를 얻을 수 있었다. 철근 묻힘깊이가 증가하거나 철근과 콘크리트 가장자리간 거리가 증가할수록 뽑힘강도도 증가하였고 단부보강 철물의 크기가 증가함에 따라 뽑힘강도도 대체로 증가하는 경향을 보였다. 전단철근의 영향에 대한 연구로부터 뽑힘강도에 대한 파괴변에 걸친 전단철근의 영향을 나타내기 위하여 CCD 방법을 이용한 뽑힘강도 예측시 보정계수의 사용이 제안되었다.

Mindlin 판 이론을 적용한 단순지지 단면 접수평판의 음향방사효율 수치해석 (A Numerical Analysis on Acoustic Radiation Efficiency of One Side-Wetted Rectangular Mindlin Plate with Simply Supported Boundaries)

  • 이종호;조대승
    • 대한조선학회논문집
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    • 제55권4호
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    • pp.281-288
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    • 2018
  • Acoustic radiation efficiency is a crucial factor to estimate Underwater Radiated Noise (URN) of ships accurately. This paper describes a numerical method to analyse acoustic radiation efficiency of one side-wetted rectangular Mindlin plate with simply supported boundaries excited by a harmonic point force. Transverse displacements of plate and acoustic radiation pressures are evaluated by the mode superposition method. The acoustic radiation efficiencies analyzed by both Mindlin and thin plate theories show little differences at monopole and corner modes of low frequency regions but relatively large differences at edge and critical modes of high frequency regions. Especially, the critical frequency with the highest acoustic radiation efficiency evaluated by the Mindlin plate theory is higher than that of thin plate theory. In addition, the acoustic loading effect of fluid also increases bending wave-number of plate and its critical frequency. Finally, the acoustic radiation characteristics of plates with different aspect ratios and thicknesses through numerical analyses are investigated and discussed.

Fatigue evaluation and CFRP strengthening of diaphragm cutouts in orthotropic steel decks

  • Ke, Lu;Li, Chuanxi;He, Jun;Lu, Yongjun;Jiao, Yang;Liu, Yongming
    • Steel and Composite Structures
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    • 제39권4호
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    • pp.453-469
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    • 2021
  • The cracking at the transverse diaphragm cutout is one of the most severe fatigue failures threatening orthotropic steel decks (OSDs), whose mechanisms and crack treatment techniques have not been fully studied. In this paper, full-scale experiments were first performed to investigate the fatigue performance of polished cutouts involving the effect of an artificial geometrical defect. Following this, comparative experimental testing for defective cutouts strengthened with carbon fiber-reinforced polymer (CFRP) was carried out. Numerical finite element analysis was also performed to verify and explain the experimental observations. Results show that the combinative effect of the wheel load and thermal residual stress constitutes the external driving force for the fatigue cracking of the cutout. Initial geometrical defects are confirmed as a critical factor affecting the fatigue cracking. The principal stress 6 mm away from the free edge of the cutout can be adopted as the nominal stress of the cutout during fatigue evaluation, and the fatigue resistance of polished cutouts is higher than Grade A in AASHTO specification. The bonded CFRP system is highly effective in extending the fatigue life of the defective cutouts. The present study provides some new insights into the fatigue evaluation and repair of OSDs.

Pressure distribution on rectangular buildings with changes in aspect ratio and wind direction

  • Lee, Young Tae;Boo, Soo Ii;Lim, Hee Chang;Misutani, Kunio
    • Wind and Structures
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    • 제23권5호
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    • pp.465-483
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    • 2016
  • This study aims to enhance the understanding of the surface pressure distribution around rectangular bodies, by considering aspects such as the suction pressure at the leading edge on the top and side faces when the body aspect ratio and wind direction are changed. We carried out wind tunnel measurements and numerical simulations of flow around a series of rectangular bodies (a cube and two rectangular bodies) that were placed in a deep turbulent boundary layer. Based on a modern numerical platform, the Navier-Stokes equations with the typical two-equation model (i.e., the standard $k-{\varepsilon}$ model) were solved, and the results were compared with the wind tunnel measurement data. Regarding the turbulence model, the results of the $k-{\varepsilon}$ model are in overall agreement with the experimental results, including the existing data. However, because of the blockage effects in the computational domain, the pressure recovery region is underpredicted compared to the experimental data. In addition, the $k-{\varepsilon}$ model sometimes will fail to capture the exact flow features. The primary emphasis in this study is on the flow characteristics around rectangular bodies with various aspect ratios and approaching wind directions. The aspect ratio and wind direction influence the type of wake that is generated and ultimately the structural loading and pressure, and in particular, the structural excitation. The results show that the surface pressure variation is highly dependent upon the approaching wind direction, especially on the top and side faces of the cube. In addition, the transverse width has a substantial effect on the variations in surface pressure around the bodies, while the longitudinal length has less influence compared to the transverse width.

Stochastic failure analysis of [0/θ]s laminated composite plate containing edge crack and voids using XFEM

  • Ashok B. Magar;Achchhe Lal
    • Advances in materials Research
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    • 제13권4호
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    • pp.299-319
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    • 2024
  • Due to higher strength-to-weight ratio of composite laminates, they find uses in many weight-sensitive applications like aerospace, automobile and marine structures. From a reliability point of view, accurate prediction of failure of these structures is important. Due to the complexities in the manufacturing processes of composite laminates, there is a variation in the material properties and geometric parameters. Hence stochastic aspects are important while designing the composite laminates. Many existing works of composite laminate failure analysis are based on the deterministic approach but it is important to consider the randomness in the material properties, geometry and loading to predict accurate failure loads. In this paper the statistics of the ultimate failure load of the [0/θ]s laminated composite plate (LCP) containing the edge crack and voids subjected to the tensile loading are presented in terms of the mean and coefficient of variance (COV). The objective is to better the efficacy of laminate failure by predicting the statistics of the ultimate failure load of LCP with random material, geometric and loading parameters. The stochastic analysis is done by using the extended finite element method (XFEM) combined with the second-order perturbation technique (SOPT). The ultimate failure load of the LCP is obtained by ply-by-ply failure analysis using the ply discount method combined with the Tsai-Wu failure criterion. The aim is to know the effect of the stacking sequence, crack length, crack angle, location of voids and number of voids on the mean and corresponding COV of the ultimate failure load of LCP is investigated. The results of the ultimate failure load obtained by the present method are in good agreement with the existing experimental and numerical results. It is observed that [0/θ]s LCPs are very sensitive to the randomness in the crack length, applied load, transverse tensile strength of the laminate and modulus of elasticity of the material, so precise control of these parameters is important. The novelty of the present study is, the stochastic implementation in XFEM for the failure prediction of LCPs containing crack and voids.

Wind flow around rectangular obstacles with aspect ratio

  • Lim, Hee-Chang
    • Wind and Structures
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    • 제12권4호
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    • pp.299-312
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    • 2009
  • It has long been studied about the flow around bluff bodies, but the effect of aspect ratio on the sharp-edged bodies in thick turbulent boundary layers is still argued. The author investigates the flow characteristics around a series of rectangular bodies ($40^d{\times}80^w{\times}80^h$, $80^d{\times}80^w{\times}80^h$ and $160^d{\times}80^w{\times}80^h$ in mm) placed in a deep turbulent boundary layer. The study is aiming to identify the extant Reynolds number independence of the rectangular bodies and furthermore understand the surface pressure distribution around the bodies such as the suction pressure in the leading edge, when the shape of bodies is changed, responsible for producing extreme suction pressures around the bluff bodies. The experiments are carried out at three different Reynolds numbers, based on the velocity U at the body height h, of 24,000, 46,000 and 67,000, and large enough that the mean boundary layer flow is effectively Reynolds number independent. The experiment includes wind tunnel work with the velocity and surface pressure measurements. The results show that the generation of the deep turbulent boundary layer in the wind tunnel and the surface pressure around the bodies were all independent of Reynolds number and the longitudinal length, but highly dependent of the transverse width.