• 제목/요약/키워드: torsional reinforcement

검색결과 52건 처리시간 0.023초

발전기세트 공진 회피를 위한 베이스프레임 최적설계에 관한 연구 (A study on the design optimization of baseframe to avoid resonance of diesel generator set)

  • 정석현;곽용석;김원현
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2012년도 춘계학술대회 논문집
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    • pp.157-162
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    • 2012
  • A structural modification of baseframe is an effective method to avoid resonance in marine diesel generator (D/G) set which consists of diesel engine, generator and baseframe. However the reinforcement with thick plates or additional parts to increase the natural frequency can be less effective because of increased weight. Especially fine control of target mode based on the experience is difficult because the weight and interference of system have to be considered. In this paper, the design optimization of baseframe was performed to reduce the resonant vibration using a gradient descent method. The design parameters such as thickness, shape and location of baseframe parts are optimized to increase the torsional natural frequency of D/G set. From the actual test, the new designed baseframe reduced the vibration level in resonance by 55% without any increase of weight and interference. interference.

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Experimental and analytical investigation on seismic behavior of RC framed structure by pushover method

  • Sharma, Akanshu;Reddy, G.R.;Eligehausen, R.;Vaze, K.K.
    • Structural Engineering and Mechanics
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    • 제39권1호
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    • pp.125-145
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    • 2011
  • Pushover analysis has gained significant popularity as an analytical tool for realistic determination of the inelastic behaviour of RC structures. Though significant work has been done to evaluate the demands realistically, the evaluation of capacity and realistic failure modes has taken a back seat. In order to throw light on the inelastic behaviour and capacity evaluation for the RC framed structures, a 3D Reinforced concrete frame structure was tested under monotonically increasing lateral pushover loads, in a parabolic pattern, till failure. The structure consisted of three storeys and had 2 bays along the two orthogonal directions. The structure was gradually pushed in small increments of load and the corresponding displacements were monitored continuously, leading to a pushover curve for the structure as a result of the test along with other relevant information such as strains on reinforcement bars at critical locations, failure modes etc. The major failure modes were observed as flexural failure of beams and columns, torsional failure of transverse beams and joint shear failure. The analysis of the structure was by considering all these failure modes. In order to have a comparison, the analysis was performed as three different cases. In one case, only the flexural hinges were modelled for critical locations in beams and columns; in second the torsional hinges for transverse beams were included in the analysis and in the third case, joint shear hinges were also included in the analysis. It is shown that modelling and capturing all the failure modes is practically possible and such an analysis can provide the realistic insight into the behaviour of the structure.

Estimation of ultimate torque capacity of the SFRC beams using ANN

  • Engin, Serkan;Ozturk, Onur;Okay, Fuad
    • Structural Engineering and Mechanics
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    • 제53권5호
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    • pp.939-956
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    • 2015
  • In this study, in order to propose an efficient model to predict the torque capacity of steel fiber reinforced concrete (SFRC) beams, the existing experimental data related to torsional response of beams is reviewed. It is observed that existing data neglects the effects of some parameters on the variation of torque capacity. Thus, an experimental research was also conducted to obtain the effects of neglected parameters. In the experimental study, a total of seventeen SFRC beams are tested against torsion. The parameters considered in the experiments are concrete compressive strength, steel fiber aspect ratio, volumetric ratio of steel fibers and longitudinal reinforcement ratio. The effect of each parameter is discussed in terms of torque versus unit angle of twist graphs. The data obtained from this experimental research is also combined with the data got from previous studies and employed in artificial neural network (ANN) analysis to estimate the ultimate torque capacity of SFRC beams. In addition to parameters considered in the experiments, aspect ratio of beam cross-section, yield strengths of both transverse and longitudinal reinforcements, and transverse reinforcement ratio are also defined as parameters in ANN analysis due to their significant effects observed in previous studies. Assessment of the accuracy of ANN analysis in estimating the ultimate torque capacity of SFRC beams is performed by comparing the analytical and experimental results. Comparisons are conducted in terms of root mean square error (RMSE), mean absolute error (MAE) and coefficient of efficiency ($E_f$). The results of this study revealed that addition of steel fibers increases the ultimate torque capacity of reinforced concrete beams. It is also found that ANN is a powerful method and a feasible tool to estimate ultimate torque capacity of both normal and high strength concrete beams within the range of input parameters considered.

Strengthening of reinforced concrete beams subjected to torsion with UHPFC composites

  • Mohammed, Thaer Jasim;Abu Bakar, B.H.;Bunnori, N. Muhamad
    • Structural Engineering and Mechanics
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    • 제56권1호
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    • pp.123-136
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    • 2015
  • The proposed techniques to repair concrete members such as steel plates, fiber-reinforced polymers or concrete have important deficiencies in adherence and durability. The use of ultra high performance fiber concrete (UHPFC) can overtake effectively these problems. In this paper, the possibility of using UHPFC to strengthen reinforced concrete beams under torsion is investigated. Seven specimens of concrete beams reinforced with longitudinal and transverse reinforcements. One of these beams consider as control specimen while the others was strengthened by UHPFC on four, three, and two sides. This study includes experimental results of all beams with different types of configurations and thickness of UHPFC. As well as, finite element analysis was conducted in tandem with experimental test. Results reveal the effectiveness of the proposed technique at cracking and ultimate torque for different beam strengthening configurations, torque - twist graphs and crack patterns. The UHPFC can generally be used as an effective external torsional reinforcement for RC beams. It was noted that the behavior of the beams strengthen with UHPFC are better than the control beams. This increase was proportional to the retrofitted beam sides. The use of UHPFC had effect in delaying the growth of crack formation. The finite element analysis is reasonably agreement with the experimental data.

Prestressed concrete beams under torsion-extension of the VATM and evaluation of constitutive relationships

  • Bernardo, Luis F.A.;Andrade, Jorge M.A.
    • Structural Engineering and Mechanics
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    • 제61권5호
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    • pp.577-592
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    • 2017
  • A computing procedure is presented to predict the ultimate behavior of prestressed beams under torsion. This computing procedure is based on an extension of the Variable Angle Truss-Model (VATM) to cover both longitudinal and transversal prestressed beams. Several constitutive relationships are tested to model the behavior of the concrete in compression in the struts and the behavior of the reinforcement in tension (both ordinary and prestress). The theoretical predictions of the maximum torque and corresponding twist are compared with some results from reported tests and with the predictions obtained from some codes of practice. One of the tested combinations of the relationships for the materials was found to give simultaneously the best predictions for the resistance torque and the corresponding twist of prestressed beams under torsion. When compared with the predictions from some codes of practice, the theoretical model which incorporates the referred combination of the relationships provides best values for the torsional strength and leads to more optimized designs.

지진하중이 작용하는 RC 필로티 건축물의 동적해석 (Dynamic Analysis of RC Piloti-Type Building Subjected to Earthquake Loads)

  • 김주원
    • 한국전산구조공학회논문집
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    • 제34권3호
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    • pp.121-128
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    • 2021
  • 본 연구에서는 비틀림비정형성과 수직비정형성을 가진 RC 필로티 건축물의 지진동에 대한 거동을 층강성을 적용하여 간단하게 모델링하는 선형 동적해석 프로그램을 개발하고자 한다. 개발된 동적 해석 프로그램을 적용하여 필로티 건축물의 동적 거동 및 필로티층 각 기둥의 전단력을 분석하고, 필로티층에 전단벽 또는 가새를 보강하였을 때 보강효과를 평가하고자 한다. 모서리코어가 있는 필로티 건축물에서 필로티층의 코어 반대편 모서리를 전단벽이나 K형 가새로 보강하였을 때 변위와 기둥 전단력이 크게 감소하는 것으로 나타났으며, 모서리 양면을 K형 가새로 보강하는 것보다 한 면을 전단벽으로 보강하는 것이 보강효과가 큰 것으로 나타났다.

포스트텐션을 도입한 넓은 보에서 기둥 폭 내부에 배근된 보강재의 정착비에 따른 비탄성 거동 평가 (Inelastic Behavior of Post-tensioned Wide Beam System with different Reinforcement ratios within Column core)

  • 최윤철;임재형;문정호;이리형;권기혁
    • 콘크리트학회논문집
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    • 제17권1호
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    • pp.85-94
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    • 2005
  • PPS(post-tensioned precast concrete system)공법은 U자형 PC로 제작한 넓은 보와 PC 또는 현장 타설 콘크리트로 제작한 기둥으로 구성되며 PC 보와 기둥의 일체성 확보를 위하여 프리스트레스를 도입하였다. 본 연구는 PPS 공법 개발의 일부로 넓은 보의 기둥 폭 내부에 정착되어진 휨철근의 양에 따른 거동특성을 분석하고자 실험적 연구를 수행하였다. 실험체는 기둥 폭내, 외부에 위치한 휭 철근의 양을 달리한 정착비와 동일한 정착비내에서 철근과 긴장재의 양을 주요변수로 하여 대상건물의 내부접합부를 대상으로 1/2크기로 제작하였다. 그 결과 NEHRP 권고사항에서 규정한 한계변위각 0.035까지 내력저하 없이 충분한 내력을 보유하였으며, 보의 휨 파괴가 주요 파괴모드로 접합부에서 전단파괴는 일어나지 않았다. 그리고 넓은 보에 포스트텐션을 도입한 PPS 공법은 기둥 폭 내부의 정착비가 $35\%$인 경우 다소 높은 비틀림 응력을 나타내었으나, 기둥 폭 외부에 위치한 인장철근의 항복 이후 긴장재가 응력을 충분히 발휘함으로서 일체식 구조의 넓은 보-기둥 접합부와 달리 비탄성 이력거동을 통하여 에너지를 효과적으로 소산하였다. 또한 ACI의 proposed provisional standard의 PC 접합부 구조성능 평가지침에 의해 분석한 결과, 모든 실험체에서 허용기준을 모두 만족하고 있으며, 강도의 큰 저하 없이 연성적인 거동을 하고 있음을 알 수 있었다.

캡플레이트를 이용한 장스팬용 춤이 깊은 데크의 휨성능 개선 (Improvement of Flexural Performance for Deep-Deck Plate using Cap Plate)

  • 박기연;남윤선;최영환;김영호;최성모
    • 한국강구조학회 논문집
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    • 제25권5호
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    • pp.555-567
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    • 2013
  • 철골구조의 층고를 절감을 위해 유럽을 중심으로 춤이 깊은 데크를 사용한 슬림플로어 공법이 개발되어 적용되고 있다. 국내에서도 장스팬과 층고절감을 요구하는 건물이 증가하고 있지만 7m이상 장스팬에 춤이 깊은 데크를 적용 시 과도한 처짐에 의한 사용성 문제를 초래한다. 따라서 본 연구는 장스팬에 적용되는 춤이 깊은 데크의 콘크리트 타설시 처짐의 사용성 및 개방형 단면의 불안정성에 의한 휨비틀림 등의 문제를 개선하는 방안으로 Cap형태의 plate(이하 '캡 플레이트')를 두가지 형태(Flat, Hat)로 개발하고 보강 길이와 위치의 최적화를 이론적 계산을 통해 도출하였다. 이 캡플레이트를 춤이 깊은 데크의 골상부에 일정 간격으로 설치하여 상부 개방형 불안전성을 극복하고 단면의 강성을 증대시켜 중앙부 처짐을 제어하고자 한다. 캡 플레이트의 설치위치와 보강길이에 따른 휨서능 개선의 효과를 해석과 실험을 통해 검증하고자 한다.

비닐스트립-시멘트 혼합 모래시편의 보강효과에 대한 실험연구 (An Experimental Study on the Reinforcing Effects of Mixtures of Vinyl Strip and Cement on the Sand Specimens)

  • 유정민;김종민
    • 한국지반공학회논문집
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    • 제34권10호
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    • pp.5-16
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    • 2018
  • 날로 늘어가는 폐비닐은 가장 큰 환경문제가 되어가고 있으며, 특히 농촌에서 발생하는 영농폐비닐은 수거인력부족 및 재활용 인식부족 등으로 농경지에 방치 혹은 불법매립 되어, 이로 인한 문제점이 갈수록 심화되고 있다. 따라서 폐비닐은 재활용하는 것이 환경보전의 관점에서 가장 이상적이며, 본 연구에서는 폐비닐 재활용의 적용범위를 보다 확장시키기 위한 사전연구로 비닐스트립의 지반보강재로서의 적용성을 분석하였다. 본 연구에서는 비닐스트립과 시멘트로 보강된 모래시편에 대한 일축압축강도시험과 공진주/비틂전단시험을 수행하여 정적 및 동적 보강효과를 분석하였다. 상대밀도 40%와 60%의 모래질 흙에 다양한 보강조건의 시편을 제작하여 비닐스트립 혼합률과 시멘트 혼합률에 따른 일축압축강도와 전단탄성계수/감쇠비의 변화를 분석하였다. 시험결과 비닐스트립-시멘트 혼합 보강기법의 정적 및 동적 보강효과를 확인하였고, 비닐스트립 및 시멘트의 최적 혼합조건을 제시하였다.

한국형 전술차량 후방밴 강성·강도 보강을 통한 내구성 향상에 관한 연구 (A Study on the way to improve the rear van's durability of Korean Light Tactical Vehicle)

  • 박진원;김두호;송부근;김선진;윤상진
    • 품질경영학회지
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    • 제46권2호
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    • pp.269-282
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    • 2018
  • Purpose: The purpose of this study was to improve the FRP Van's durability by analyzing the problematic parameters, redesigning the rear van, and verifying the design drafts using the CAE analysis & Rig test. Methods: The collected data through the government quality inspection and field spot check were thoroughly analyzed through the characteristics diagram and the improvement suggestions were verified by performing CAE analysis, like the dynamic stiffness, Torsional stiffness, open/close condition's strength, Full car durability and Carrying out the actual test. Results: The results of this study are as follows; The output of CAE analysis shows that improvement suggestions have considerable effects on the reinforcement of FRP structure, and the actual torsion and open/close condition durability test prove that rear van may have durable life which is equivalent to vehicle life cycle. Conclusion: The structural weakness of KLTV's FRP rear van was overcome by applying the stiffener in rear van and changing the bonding method of each FRP pieces. That suggestions were proved using CAE analysis and Rig test.