• 제목/요약/키워드: Torsional shear test

검색결과 85건 처리시간 0.028초

Mechanical characterization of an epoxy panel reinforced by date palm petiole particle

  • Bendada, A.;Boutchicha, D.;Khatir, S.;Magagnini, E.;Capozucca, R.;Wahab, M. Abdel
    • Steel and Composite Structures
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    • 제35권5호
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    • pp.627-634
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    • 2020
  • The past years were marked by an increase in the use of wood waste in civil and mechanical constructions. Date palm waste remains also one of the most solicited renewable and recyclable natural resources in the composition of composite materials. In Algeria, a great amount of this type of plant wastes accumulates every year. In order to make use of this waste, a new wood-epoxy composite material based on date palm petiole particleboard is developed. It makes use of date palm petiole particleboard as reinforcement and epoxy resin as matrix. The size of the particles reinforcement are between 1~3 mm and proportion of reinforcement used is 37%. In this work, experimental and numerical studies are conducted in order to characterize the wood fibre-epoxy plates. Firstly, experimental modal analysis test was carried out to determine Young's modulus of the elaborated material. Then, in order to validate the results, compression test was conducted. Furthermore, additional information about the shear modulus of this material is obtained by performing an experimental modal analysis to extract the first torsional mode. Moreover, a finite element model is developed using ANSYS software to simulate the vibration behaviour of the plates. The results show a good agreement with the experimental modal analysis, which confirms the values of Young's modulus and shear modulus.

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.

실내시험 및 현장시험을 통한 지반의 비선형 변형특성 평가 (Evaluation of Nonlinear Deformational Characteristics of Soils from Laboratory and Field Tests)

  • 김동수;권기철
    • 한국지반공학회지:지반
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    • 제13권5호
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    • pp.89-100
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    • 1997
  • 토목구조물의 동적해석 뿐아니라 공용상태 구조물 기초의 변형해석을 위해서는 지반의 신뢰성 있는 비선형 변형특성 평가가 매우 중요하다. 변형특성 평가를 위한 현장시험으로는 저변형률 하에서 지반의 탄성계수를 결정할 수 있는 크로스흘시험이나 중간변형률 영역에서 변형률 크기에 따른 탄성계수 결정이 가능한 공내재하시험이 사용되나 전 변형률 영역에서의 탄성계수 변화를 측정하지 못하고,,하중주파수의 영향,구속압의 영향 등을 엄밀히 평가하지 못하는 단점이 있다. 공진주/비틂전단시험과 같은 실내시험에서는 저변형률 및 중간변형률을 포함하는 전변형률 영역에서의 탄성계수 측정이 가능하나 불교란시료의 채취와 시료의 대표성 확보가 매우 어려운 단점이 있다. 따라서 보다 엄밀한 현장지반의 변형률 크기에 따른 탄성계수 결정을 위하여는 각각의 실내시험과 현장시험에서의 신뢰성 있는 변형률 측정범위, 작용되는 응력의 크기, 시험이 수행되는 하중주파수 차이 등을 효과적으로 결합하여 사용하여야 한다. 본 논문에서는 지반의 비선형 변형특성을 현장 및 실내시험 결과를 효과적으로 결합하여 사용하는 방법을 제시하고, 화강풍화토 지반에서 현장시험으로 크로스흘과 공내재하시험을, 실내시험으로는 공진주/비틂 전단시험을 수행하여 현장지반의 변형특성을 결정하고, 각 시험법들의 장.단점과 신뢰성 있는 시험범위를 검토하였다. 마지막으로, 현장지반의 비선형 변형특성 평가 절차를 제시하였다.

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후방추돌시 목상해를 고려한 승객거동해석 및 좌석설계 (Occupant Analysis and Seat Design to Reduce the Neck Injury for Rear End Impact)

  • 신문균;박기종;박경진
    • 한국자동차공학회논문집
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    • 제7권9호
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    • pp.182-194
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    • 1999
  • Occupant injury in rear end impact is rapidly becoming one of the most aggravating traffic safety problems with high human suffering and societal costs. Although rear end impact occurs at relatively low speed , it may cause permanent disability due to neck injuries resulting from an abrupt moment, shear force , and tension/compression force at the occipital condyles. The analysis is performed for a combined occupant-eat model response, using the SAFE(Safety Analysis for occupant crash Environment) computer program. The computational results are verified by those from sled tests. A parameter study is conducted for many physical and mechanical properties. Seat design has been performed based on the design of experiment process with respect to five parameters; seat-back upholstery stiffness, torsional stiffness of the seat-back. An orthogonal array is selected from the parameter study. A good design has been found from the analysis results based on the orthogonal array. The results show that reductions of stiffness in seat-back upholstery and joint are the most effective for preventing neck injuries.

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다양한 실내시험을 이용한 지반의 탄성계수 평가 (Evaluation of Modulus of Soils Using Various Laboratory Tests)

  • 권기철;김동수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 가을 학술발표회 논문집
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    • pp.345-352
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    • 2000
  • It is very important to evaluate the reliable nonlinear modulus characteristics of soils not only in the analysis of geotechnical structures under working stress conditions but also for the soil dynamic problems. For the evaluation of modulus characteristics of soils, various tests have been mostly employed in laboratory. However, different testing techniques are likely to have different ranges of reliable strain measurements, different applied stress level, and different loading frequencies, and the modulus of soils can be affected by these variables. For reliable evaluation, therefore, those effects on the modulus need to be considered, and measured values should be effectively adjusted to actual conditions where the soil is working. In this paper, to evaluate the modulus characteristics of soils, laboratory testing such as free-free resonant column (FF-RC), resonant column (RC), torsional shear (TS), static TX, and cyclic M/sub R/ tests were performed. The effects of strain amplitude, loading frequency, loading cycles, confining pressure, density, and water content on modulus were investigated. It is shown that the FF-RC test, which is simple and inexpensive testing technique, can provide a reliable estimation of small strain Young's modulus (E/sub max/), and the modulus evaluated by various laboratory tests are comparable to each other fairly well when the effects of these factors are properly taken into account.

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Warping 조건하에서 박판 폐단면 보의 동적 모드 해석 (Dynamic Mode Analysis of Thin Walled Closed Section Beams under Warping Conditions)

  • 유환신;천동준
    • 한국항행학회논문지
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    • 제16권2호
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    • pp.367-374
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    • 2012
  • 박판 폐단면을 갖는 프레임과 같은 보가 warping 조건하에서 동적 거동 특성이 어떠한가를 시뮬레이션과 시험을 통하여 제시하였다. 비틀림 모멘트를 받는 보는 단면은 비틀림 뿐만 아니라 warping에 의해서 변형을 일으키게 된다. 어떤 박판 단면을 갖는 보에서는 warping이 매우 커서 축방향과 전단방향 응력을 발생하고 보의 비틀림에 저항이 크게 된다. 이 논문에서는 유한요소에서 warping restraint factor가 보의 변형 거동과 동적 모드에 미치는 영향을 살펴본다. 유한 보 요소와 박판 요소 모델을 사용하여 정적변형과 고유주파수 및 모드해석을 시뮬레이션하며 이 결과를 시험 결과와 비교한다.

Experimental investigation for failure analysis of steel beams with web openings

  • Morkhade, Samadhan G.;Gupta, Laxmikant M.
    • Steel and Composite Structures
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    • 제23권6호
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    • pp.647-656
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    • 2017
  • This paper presents an experimental study on the behaviour of steel beams with different types of web openings. Steel beams with web openings became progressively more accepted as a well-organized structural form in steel construction since their existence. Their complicated design and profiling method provides better flexibility in beam proportioning for strength, depth, size and location of holes. The objective of this study is to carry out the experiments on steel beams with different types of web openings and performed non-linear finite element (FE) analysis of the beams that were considered in the experimental study in order to determine their ultimate load capacity and failure modes for comparison. Ten full scale models of steel beam with web openings have been tested in the experimental investigation. The finite element method has been used to predict their entire response to increasing values of external loading until they lose their load carrying capacity. FE model of each specimen that is utilized in the experimental studies is carried out. These models are used to simulate the experimental work to verify test results and to investigate the nonlinear behaviour of failure modes such as local buckling, lateral torsional buckling, web-post buckling, shear buckling and Vierendeel bending of beams.

Experimental investigations on seismic responses of RC circular column piers in curved bridges

  • Jiao, Chiyu;Li, Jianzhong;Wei, Biao;Long, Peiheng;Xu, Yan
    • Earthquakes and Structures
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    • 제17권5호
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    • pp.435-445
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    • 2019
  • The collapses of curved bridges are mainly caused by the damaged columns, subjected to the combined loadings of axial load, shear force, flexural moment and torsional moment, under earthquakes. However, these combined loadings have not been fully investigated. This paper firstly investigated the mechanical characteristics of the bending-torsion coupling effects, based on the seismic response spectrum analysis of 24 curved bridge models. And then 9 reinforced concrete (RC) and circular column specimens were tested, by changing the bending-tortion ratio (M/T), axial compression ratio, longitudinal reinforcement ratio and spiral reinforcement ratio, respectively. The results show that the bending-torsion coupling effects of piers are more significant, along with the decrease of girder curvature and the increase of pier height. The M/T ratio ranges from 6 to 15 for common cases, and influences the crack distribution, plastic zone and hysteretic curve of piers. And these seismic characteristics are also influenced by the compression ratio, longitudinal reinforcement ratio and spiral reinforcement ratios of piers.

Prediction of elastic constants of Timoshenko rectangular beams using the first two bending modes

  • Chen, Hung-Liang (Roger);Leon, Guadalupe
    • Structural Engineering and Mechanics
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    • 제80권6호
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    • pp.657-668
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    • 2021
  • In this study, a relationship between the resonance frequency ratio and Poisson's ratio was proposed that can be used to directly determine the elastic constants. Using this relationship, the frequency ratio between the 1st bending mode and 2nd bending mode for any rectangular Timoshenko beam can be directly estimated and used to determine the elastic constants efficiently. The exact solution of the Timoshenko beam vibration frequency equation under free-free boundary conditions was determined with an accurate shear shape factor. The highest percent difference for the frequency ratio between the theoretical values and the estimated values for all the beam dimensions studied was less than 0.02%. The proposed equations were used to obtain the elastic constants of beams with different material properties and dimensions using the first two measured transverse bending frequencies. Results show that using the equations proposed in this study, the Young's modulus and Poisson's ratio of rectangular Timoshenko beams can be determined more efficiently and accurately than those obtained from industry standards such as ASTM E1876-15 without the need to test the torsional vibration.

전개형 복합재 반사판 안테나의 유연 다물체 동역학 해석 (Flexible Multibody Dynamic Analysis of the Deployable Composite Reflector Antenna)

  • 임윤지;오영은;노진호;이수용;정화영;이재은;강덕수;윤지현
    • 한국항공우주학회지
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    • 제47권10호
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    • pp.705-711
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    • 2019
  • 전개형 반사판 안테나의 전개거동 특성을 해석적 그리고 실험적 방법으로 분석하고자 한다. Kane 방정식을 이용하여 전개형 안테나의 다물체 운동방정식을 공식화하였다. 복합재료 반사판의 구조변형 특성을 살펴보기 위해 FSDT(First-order Shear Deformation Theory)를 이용하여 빔 모델로 유한요소 정식화 하였다. 역진자 모델을 이용하여 안테나 전개시간에 따른 스프링 상수 그리고 댐핑 계수들을 결정하였다. 다물체 동력학 해석을 통하여 설계변수에 따른 안테나 반사판의 동적구조 특성을 확인하였고, 무중력 모사 전개실험을 통하여 해석결과 검증 및 거동특성을 실험적으로 관찰하였다.