• 제목/요약/키워드: Flexure stiffness

검색결과 92건 처리시간 0.024초

집중질량을 고려한 보강된 사다리꼴 주름판의 진동해석 (Vibration Analysis of Trapezoidal Corrugated Plates with Stiffeners and Lumped Masses)

  • 정강;김영완
    • 한국소음진동공학회논문집
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    • 제24권5호
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    • pp.414-420
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    • 2014
  • In this paper, the vibration characteristics of the trapezoidal corrugated plate with axial stiffeners and lumped masses are investigated by the analytical method. The corrugated plate can be treated as an equivalent orthotropic plate as this plate has different flexure properties in two perpendicular directions; flexible in the corrugation direction and stiff in the transverse direction. The effective extensional and flexural stiffness of the equivalent plate are considered to obtain the precise solution in the analysis. The plate is stiffened by concentric stiffeners horizontally to the corrugation direction. The discrete stiffener theory is adopted to consider the position of stiffener. To demonstrate the validity of the proposed approach, the comparison is made with the results of 3D ANSYS finite element solutions. Some numerical results are presented to check the effect of the geometric properties.

원통단면 탄소복합재와 혼성 구조부재의 굽힘 특성 평가 (Bending Characteristic Evaluations Circular Cross-section Carbon Composite and Hybrid Structural Material)

  • 김정호;정종안;김지훈
    • 한국생산제조학회지
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    • 제21권3호
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    • pp.421-424
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    • 2012
  • Carbon Fiber reinforced composite material can be designed for the optimized performances of structural member that have achieve appropriate mechanical properties with cross-sectional shape, fiber direction, stacking sequence and thickness. So there are needed extensive databases each optimal design of CFRP structural member by impact through the preparation of different shape, interface number, thickness and stacking angle. When pressure is applied to structural member, compression, bending and torsion is shown on the corresponding member. For the effective utilization of fiber reinforced composite material as main structural member, optimized design technology should be established to maximize mechanical properties for compression, bending and torsion. In this paper, CFRP prepreg sheet with different stacking angle is manufactured in CFRP and hybrid(Al+CFRP) with circular cross-section. Strength and stiffness is gotten respectively by flexure test. CFRP structure and hybrid structure can be compared with each other. The best design guideline can be analyzed by use of this study result.

Optimization of flexure stiffness of FGM beams via artificial neural networks by mixed FEM

  • Madenci, Emrah;Gulcu, Saban
    • Structural Engineering and Mechanics
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    • 제75권5호
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    • pp.633-642
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    • 2020
  • Artificial neural networks (ANNs) are known as intelligent methods for modeling the behavior of physical phenomena because of it is a soft computing technique and takes data samples rather than entire data sets to arrive at solutions, which saves both time and money. ANN is successfully used in the civil engineering applications which are suitable examining the complicated relations between variables. Functionally graded materials (FGMs) are advanced composites that successfully used in various engineering design. The FGMs are nonhomogeneous materials and made of two different type of materials. In the present study, the bending analysis of functionally graded material (FGM) beams presents on theoretical based on combination of mixed-finite element method, Gâteaux differential and Timoshenko beam theory. The main idea in this study is to build a model using ANN with four parameters that are: Young's modulus ratio (Et/Eb), a shear correction factor (ks), power-law exponent (n) and length to thickness ratio (L/h). The output data is the maximum displacement (w). In the experiments: 252 different data are used. The proposed ANN model is evaluated by the correlation of the coefficient (R), MAE and MSE statistical methods. The ANN model is very good and the maximum displacement can be predicted in ANN without attempting any experiments.

Prediction of curvature ductility factor for FRP strengthened RHSC beams using ANFIS and regression models

  • Komleh, H. Ebrahimpour;Maghsoudi, A.A.
    • Computers and Concrete
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    • 제16권3호
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    • pp.399-414
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    • 2015
  • Nowadays, fiber reinforced polymer (FRP) composites are widely used for rehabilitation, repair and strengthening of reinforced concrete (RC) structures. Also, recent advances in concrete technology have led to the production of high strength concrete, HSC. Such concrete due to its very high compression strength is less ductile; so in seismic areas, ductility is an important factor in design of HSC members (especially FRP strengthened members) under flexure. In this study, the Adaptive Neuro-Fuzzy Inference System (ANFIS) and multiple regression analysis are used to predict the curvature ductility factor of FRP strengthened reinforced HSC (RHSC) beams. Also, the effects of concrete strength, steel reinforcement ratio and externally reinforcement (FRP) stiffness on the complete moment-curvature behavior and the curvature ductility factor of the FRP strengthened RHSC beams are evaluated using the analytical approach. Results indicate that the predictions of ANFIS and multiple regression models for the curvature ductility factor are accurate to within -0.22% and 1.87% error for practical applications respectively. Finally, the effects of height to wide ratio (h/b) of the cross section on the proposed models are investigated.

하이브리드 프리스트레스트 프리캐스트 콘크리트 구조시스템의 부모멘트 영역 휨거동 (Flexural Response of Negative Moment Region of Hybrid Prestressed Precast Concrete (HPPC) System)

  • 최승호;황진하;허인욱;김강수;우운택
    • 대한건축학회논문집:구조계
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    • 제34권10호
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    • pp.3-10
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    • 2018
  • Hybrid Prestressed Precast Concrete System (HPPC system) is a newly developed frame system that can improve the performance of precast concrete (PC) joints by post-tensioning. In particular, the details proposed in this study can reduce the lifting weight of the PC members and eliminate problems caused by cracks in the joints that occur under service loads. This study performed an evaluation on the negative moment performance of full-scaled HPPC girders. The test specimens were cast with or without slabs, with bonded or unbonded tendons, and had different post-tensioned lengths in tensile section. The test results showed that the specimens with slabs had significantly higher stiffness and strength than those without slabs. There were no differences in the flexural behavior between those with bonded or unbonded tendons, and between those with short or long post-tensioned lengths in the negative moment region.

Nonlinear vibration of FG-CNTRC curved pipes with temperature-dependent properties

  • Mingjie Liu;Shaoping Bi;Sicheng Shao;Hadi Babaei
    • Steel and Composite Structures
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    • 제46권4호
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    • pp.553-563
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    • 2023
  • In the current research, the nonlinear free vibrations of curved pipes made of functionally graded (FG) carbon nanotube reinforced composite (CNTRC) materials are investigated. It is assumed that the FG-CNTRC curved pipe is supported on a three-parameter nonlinear elastic foundation and is subjected to a uniform temperature rise. Properties of the curved nanocomposite pipe are distributed across the radius of the pipe and are given by means of a refined rule of mixtures approach. It is also assumed that all thermomechanical properties of the nanocomposite pipe are temperature-dependent. The governing equations of the curved pipe are obtained using a higher order shear deformation theory, where the traction free boundary conditions are satisfied on the top and bottom surfaces of the pipe. The von Kármán type of geometrical non-linearity is included into the formulation to consider the large deflection in the curved nanocomposite pipe. For the case of nanocomposite curved pipes which are simply supported in flexure and axially immovable, the motion equations are solved using the two-step perturbation technique. The closed-form expressions are provided to obtain the small- and large-amplitude frequencies of FG-CNTRC curved pipes rested on a nonlinear elastic foundation in thermal environment. Numerical results are given to explore the effects of CNT distribution pattern, the CNT volume fraction, thermal environment, nonlinear foundation stiffness, and geometrical parameters on the fundamental linear and nonlinear frequencies of the curved nanocomposite pipe.

Aspect ratios of code-designed steel plate shear walls for improved seismic performance

  • Verma, Abhishek;Sahoo, Dipti R.
    • Steel and Composite Structures
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    • 제42권1호
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    • pp.107-121
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    • 2022
  • Past studies have shown that the aspect ratio (width-to-height) of a steel plate shear wall (SPSW) can significantly affect its seismic response. SPSWs with lower aspect ratio (narrow SPSW) may experience low lateral stiffness and flexure dominated drift response. As the height of the frame increases, the narrow SPSWs prove to be uneconomical and demonstrate inferior seismic response than their wider counterparts. Moreover, the thicker web plates required for narrow SPSWs exerts high inward pull on the VBEs. The present study suggests the limiting values of the aspect ratio for an SPSW system by evaluating the seismic collapse performance of 3-, 6- and 9-story SPSW systems using FEMA P695 methodology. For this purpose, nonlinear models are developed. These models are validated with the past quasi-static experimental results. Non-linear static analyses and Incremental dynamic analyses are then carried. The results are then utilized to conservatively suggest the limiting values of aspect ratios for SPSW system. In addition to the conventional-SPSW (Conv-SPSW), the collapse performance of staggered-SPSW (S-SPSW) is also explored. Its performance is compared with the Conv-SPSW and the use of S-SPSW is suggested in the cases where SPSW with lower than recommended aspect ratio is desired.

HI-FORM DECK를 이용한 부분 PC 계단 접합부의 접합방식에 따른 실험적 연구 (A study on experiment from the Stair Joints Constructed with PC system part of it using the HI-FORM DECK)

  • 장극관;이은진;진병창;강우주;한태경
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.9-12
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    • 2008
  • 반강접합은 핀접합의 단점을 보완하고 강접합의 장점을 수용할 수 있는 중간 형태이다. 현재 국내에서 핀접합에 대한 연구는 활성화 되어있으나 반강접합에 대한 연구는 많지 않기 때문에 본 연구에서는 3가지 형태의 실험체를 제작하여 성능을 입증하려 했다. 실험체는 강접합 HI-R, 반강접합 HI-S, 핀접합 HI-P등 총 3개이다. 실험결과 HI-R은 접합부 전단파괴, HI-S는 고정단 상부 휨파괴, HI-P는 경사계단 슬래브 하부 휨파괴로 나타났고 최대내력은 각각 51.74, 51.4, 24.63kN으로 측정되었고, 강성은 1.58, 1.19, 0.37을 나타냈다. 항복강도는 각각 44.5, 47.3, 24kN을 보유하고, 연성비는 3.31, 2.32, 1.54로 나타냈고, 사용하중 작용 시의 처짐은 KBC기준에 의거하여 HI-P실험체가 기준을 초과하는 것으로 나타났다. 철근 변형률분포로 보아 HI-S는 초기에 HI-R과 유사한 거동을 보이나 항복이후 접합부 내부요소들의 응력분담으로 핀접합보다는 우수한 성능을 보유한 반강접 접합부로 판단할 수 있었다.

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확장된 상부플랜지 PSC I형 거더교의 동특성 및 동적안정성 분석 (Dynamic Response of PSC I shape girder being used wide upper flange in Railway Bridge)

  • 박종권;장판기;차태권;김찬우;장일영
    • 한국구조물진단유지관리공학회 논문집
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    • 제19권4호
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    • pp.125-135
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    • 2015
  • 철도교량의 경제성 확보를 전제로 PSC I형 거더의 장경간화 추세는 근간에 가장 활발히 진행되고 있는 연구이며, 이에 따른 교량의 강성확보를 위한 거더의 효율적인 기하형상 선정은 우선시 되어야할 과제이다. 본 연구에서는 회전반경과 휨효율을 기반으로 확장된 상부플랜지의 거더 단면을 선정하였으며, 본 거더가 적용된 경간장 25m, 30m, 35m, 40m PSC I형 거더교를 대상으로 수치해석을 수행하여 국내 및 국외의 동적성능 기준과의 부합여부를 검증하였다. 또한 경간장 40m PSC I형 거더의 동적성능을 상대적으로 비교하기 위해서 현재 호남고속철도에서 적용된 40m PSC Box 거더교를 대상으로 동적 해석을 수행하였고 KTX열차와 화물열차 주행 시의 동적안정성을 수치해석적으로 검토하여 국내 및 국외의 동적 안정성 기준과 부합여부를 검토하였다. 추가로 표준열차하중과 충격계수를 고려하여 정적해석을 수행하고 한계치와의 부합여부를 분석하였다. 그 결과, 검토대상 PSC I형 거더 철도교는 모든 항목에서 국내 철도교량 관련 정적, 동적안정성 기준치를 만족하는 것으로 분석되었다.

전단보강근이 없는 강섬유 보강 합성보의 강도 및 연성 능력 (Strength and Ductility of Steel Fiber Reinforced Composite Beams without Shear Reinforcements)

  • 오영훈;남영길;김정해
    • 콘크리트학회논문집
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    • 제19권1호
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    • pp.103-111
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    • 2007
  • 본 연구는 강섬유 보강 콘크리트와 앵글을 사용한 합성보의 구조성능을 평가하고자 실험 연구를 수행하였다. 이러한 목적으로 일반 RC보와 강섬유가 혼입된 RC보, 그리고 강섬유 보강 합성보로 구성된 총 7개의 실험체를 제작하였으며, 모든 실험체에는 별도의 전단보강을 하지 않았다. 실험체의 주요 변수는 강섬유의 혼입률과 인장보강근비이며, 합성보의 강도 예측식의 평가와 실험 결과로부터 합성보의 강도, 강성, 연성능력, 에너지소산능력 등의 구조 성능을 평가하였다. 실험 결과들을 평가한 결과, 합성보의 공칭강도 산정식은 매우 정확한 예측이 가능하였으며, 휨균열강도 예측식은 강섬유 보강 효과의 고려가 필요하다고 판단되었다. 강섬유 체적비는 실험체의 강도와 연성 능력, 그리고 에너지소산 능력을 모두 증가시키는 것으로 나타났다. 인장보강근비와 유효인장보강근비의 증가는 실험체의 최대강도 증가에는 효과가 있지만, 반면에 연성 능력과 에너지소산 능력은 일정 수준을 초과하면 연성 능력과 에너지소산 능력이 저하하는 것으로 나타나고 있으므로 적절한 인장보강근비와 유효인장보강근비가 적용될 수 있도록 제한할 필요성이 있다고 판단된다.