• 제목/요약/키워드: tensile-shear test

검색결과 515건 처리시간 0.028초

Mechanical behavior of stud shear connectors embedded in HFRC

  • He, Yu-Liang;Wu, Xu-Dong;Xiang, Yi-Qiang;Wang, Yu-Hang;Liu, Li-Si;He, Zhi-Hai
    • Steel and Composite Structures
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    • 제24권2호
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    • pp.177-189
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    • 2017
  • Hybrid-fiber reinforced concrete (HFRC) may provide much higher tensile and flexural strengths, tensile ductility, and flexural toughness than normal concrete (NC). HFRC slab has outstanding advantages for use as a composite bridge potential deck slab owing to higher tensile strength, ductility and crack resistance. However, there is little information on shear connector associated with HFRC slabs. To investigate the mechanical behavior of the stud shear connectors embedded in HFRC slab, 14 push-out tests (five batches) in HFRC and NC were conducted. It was found that the stud shear connector embedded in HFRC had a better ductility, higher stiffness and a slightly larger shear bearing capacity than those in NC. The experimentally obtained ultimate resistances of the stud shear connectors were also compared against the equations provided by GB50017 2003, ACI 318-112011, AISC 2011, AASHTO LRFD 2010, PCI 2004, and EN 1994-1-1 (2004), and an empirical equation to predict the ultimate shear connector resistance considering the effect of the HFRC slabs was proposed and validated by the experimental data. Curve fitting was performed to find fitting parameters for all tested specimens and idealized load-slip models were obtained for the specimens with HFRC slabs.

소성 이론에 의한 강섬유 보강 초고성능콘크리트의 전단 마찰 강도식 제안 (Shear Friction Strength based on Limit Analysis for Ultra-High Performance Fiber Reinforced Concrete)

  • 이지형;홍성걸
    • 콘크리트학회논문집
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    • 제27권3호
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    • pp.299-309
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    • 2015
  • 강섬유 보강 초고성능 콘크리트(UHPFRC)는 뛰어난 압축 및 인장강도를 가지고 있는 재료이다. 일반 콘크리트는 균열 발생 후 균열에 수직으로 보강된 철근의 구속력을 수직항력으로, 구속력에 의해 발생하는 골재 맞물림 등에 의한 균열면의 거칠기를 마찰 계수로 표현하여 전단 마찰 강도를 정의하고 있다. UHPFRC는 골재 맞물림 현상은 없으나 강섬유의 부착응력에 의한 균열 후 인장력이 상당히 큰 특징이 있으며, 이러한 특징은 전단 마찰 강도에 반영되어야 함이 타당하다. 본 연구에서는 전단면에 횡철근이 보강된 24개의 직접 전단실험체를 제작하여 푸시 오프 실험을 수행하였다. 실험결과는 소성 이론에 의해 분석되었으며 이로부터 전단 마찰 계수와 유효 계수를 도출하였다. 소성 이론에 의한 전단 마찰 강도식은 기존 실험결과 및 기존 전단 마찰 강도식과 비교하여 타당성을 검증하였으며, 최종적으로 UHPFRC의 균열 후 인장강도를 고려한 일체식 구조체의 전단 마찰 강도식을 제안하였다.

전단시험방법에 따른 토목섬유/모래 접촉면에서의 마찰특성 (Friction Characteristics on Interface Between Reinforcement and Sand by Direct Shear Test Methods)

  • 주재우;박종범;장용채
    • 한국지반신소재학회논문집
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    • 제2권1호
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    • pp.39-45
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    • 2003
  • 보강토 지반에서 가장 중요한 부분은 보강재와 흙사이의 접촉부분으로서 이 부분의 전단강도 및 전단거동은 보강효과에 직접적인 영향을 미친다. 보강토 지반에서 접촉부분의 전단특성을 얻는 방법으로서 인발시험방법과 직접전단시험방법 등이 있다. 실제 보강토 구조물내에서 보강재와 흙사이에 인발이 되는 부분, 전단이 되는 부분 등이 존재한다. 전단이 되는 경우에도 보강재가 전혀 변형을 하지 않는 경우와 보강재 자체가 변형이 되는 경우 등으로 나눌 수 있다. 본 연구에서는 대형 전단시험기를 이용하여, 부직포/모래, 지오그리드/모래 등의 접촉면을 갖는 2종의 토목섬유를 이용하여, 토목섬유의 인장변형이 허용되는 자유조건과 인장변형이 억제되는 고정조건 등 두가지 방법으로 직접전단시험을 실시하였다. 실험결과 자유조건에 비해 고정조건으로 시험을 행한 경우가 마찰각이 더 컸다. 그리고 전단응력이 피크가 되는 전단변형의 크기는 자유조건의 경우가 더 큰 값을 가졌다. 잔류응력의 경우는 고정법의 경우가 컸지만 잔류응력비는 자유법의 경우가 더 큰 값을 가졌다.

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삼축압축시험을 이용한 아스팔트 혼합물의 파괴기준 개발 (Development of Failure Criterion of Hot Mix Asphalt Using Triaxial Shear Strength Test)

  • 김성겸;이관호
    • 대한토목학회논문집
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    • 제34권3호
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    • pp.947-954
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    • 2014
  • 일반적으로 Mohr-Coulomb 파괴 이론을 바탕으로 한 재료 파괴는 최대수직응력이나 최대전단응력 상태에서 파괴가 일어나는 것이 아니라 수직응력과 전단응력의 임계결합상태에서 파괴된다. 이에 본 연구에서는 배수성 아스팔트 혼합물 2종과 SMA 10mm혼합물 및 일반 밀입도 아스팔트 19mm를 이용한 $45^{\circ}C$$60^{\circ}C$에서 삼축압축시험을 실시하였다. Mohr-Coulomb의 파괴 이론을 바탕으로 삼축압축시험 결과를 정리한 결과 내부마찰각은 $38.9^{\circ}{\sim}46.9^{\circ}$로 다소 불규칙하게 측정되었으나 점착력의 경우 온도와 시편의 수침여부에 따라 다르게 나타났다. 또한, 아스팔트 혼합물의 간접인장강도시험과 삼축압축시험 상관관계를 알아보기 위해 삼축압축시험 결과로 평가된 점착력과 내부마찰각을 이용하여 계산된 이론적인 간접인장강도와 시험을 통해 직접 측정된 간접인장강도를 분석하였다. 두 간접인장강도 값은 비례하는 경향을 보였다.

Experimental study on shear, tensile, and compression behaviors of composite insulated concrete sandwich wall

  • Zhang, Xiaomeng;Zhang, Xueyong;Liu, Wenting;Li, Zheng;Zhang, Xiaowei;Zhou, Yilun
    • Advances in concrete construction
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    • 제11권1호
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    • pp.33-43
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    • 2021
  • A new type of composite insulated concrete sandwich wall (ICS-wall), which is composed of a triangle truss steel wire network, an insulating layer, and internal and external concrete layers, is proposed. To study the mechanical properties of this new ICS-wall, tensile, compression, and shearing tests were performed on 22 specimens and tensile strength and corrosion resistance tests on 6 triangle truss joints. The variables in these tests mainly include the insulating plate material, the thickness of the insulating plate, the vertical distance of the triangle truss framework, the triangle truss layout, and the connecting mode between the triangle truss and wall and the material of the triangle truss. Moreover, the failure mode, mechanical properties, and bearing capacity of the wall under tensile, shearing, and compression conditions were analyzed. Research results demonstrate that the concrete and insulating layer of the ICS-wall are pulling out, which is the main failure mode under tensile conditions. The ICS-wall, which uses a graphite polystyrene plate as the insulating layer, shows better tensile properties than the wall with an ordinary polystyrene plate. The tensile strength and bearing capacity of the wall can be improved effectively by strengthening the triangle truss connection and shortening the vertical distances of the triangle truss. The compression capacity of the wall is mainly determined by the compression capacity of concrete, and the bonding strength between the wall and the insulating plate is the main influencing factor of the shearing capacity of the wall. According to the tensile strength and corrosion resistance tests of Austenitic stainless steel, the bearing capacity of the triangle truss does not decrease after corrosion, indicating good corrosion resistance.

Push-Out Test에 의한 스터드와 고장력 볼트의 역학적 거동 (Mechanical Behaviors of Studs and High-Tensile Bolts by Push-Out Test)

  • 김용희;이명동;문태경
    • 한국구조물진단유지관리공학회 논문집
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    • 제3권2호
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    • pp.169-175
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    • 1999
  • Shear connectors are completely important to composite each other in steel concrete composite structures. Therefore a strength of shear connectors and relation of a load-slip have been carried out experimentally and analytically by the Push-Out test for this study. In this paper, eleven specimens were tested and the behavior of shear connectors in steel concrete composite structures are investigated.

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고장력 강판의 점용접부에서 면내 굽힘 모멘트가 피로특성 및 균열 성장 거동에 미치는 영향에 관한 연구(I) - 실험적 검토 - (A Study on the Effect of Fatigue and Crack Propagation Behavior in Spot Weld of High Strength Steel( I ) - Experimental Examination -)

  • 성기찬;장경복;정진우;김기순;강성수
    • Journal of Welding and Joining
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    • 제19권1호
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    • pp.112-117
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    • 2001
  • The factor affecting on the fatigue strength of spot welded specimen have been studied. To analyze and predict crack initiation position and propagation directions on the spot welded area are very important for strength design of the automobile body structure. In fact, there are a various of loads in running automobile but, it is impossible to replay like an actual conditions in the laboratory. So, in this study tensile-shear type and in-plane bending type specimens were used in fatigue test and includes an analysis of fatigue crack initiation position and propagation directions about earth specimens. The results obtained in the present study are summarized as follows: 1. In tensile-shear type fatigue test, the region of fatigue crack initiation position was affected by out-of-plane bending deformation due to bending angle. 2 In in-plane bending type fatigue test, the behavior of fatigue crack initiation position and propagation derections due to angle between upper plate and lower plate was dominated by magnitude of in-plane bending moment.

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Experimental studies of headed stud shear connectors in UHPC Steel composite slabs

  • Gao, Xiao-Long;Wang, Jun-Yan;Yan, Jia-Bao
    • Structural Engineering and Mechanics
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    • 제74권5호
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    • pp.657-670
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    • 2020
  • Due to the high compressive and tensile strength of ultra-high performance concrete (UHPC), UHPC used in steel concrete composite structures provided thinner concrete layer compared to ordinary concrete. This leaded to the headed stud shear connectors embedded in UHPC had a low aspect ratio. In order to systematic investigate the effect of headed stud with low aspect ratio on the structural behaviors of steel UHPC composite structure s this paper firstly carried out a test program consisted of twelve push out specimens. The effects of stud height, aspect ratio and reinforcement bars in UHPC on the structural behaviors of headed studs were investigated. The push out test results shows that the increasing of stud height did not obviously influence the structural behaviors of headed studs and the aspect ratio of 2.16 was proved enough to take full advantage of the headed stud strength. Based on the test results, the equation considering the contribution of weld collar was modified to predict the shear strength of headed stud embedded in UHPC. The modified equation could accurately predict the shear strength of headed stud by comparing with the experimental results. On the basis of push out test results, bending tests consisted of three steel UHPC composite slabs were conducted to investigate the effect of shear connection degree on the structural behaviors of composite slabs. The bending test results revealed that the shear connection degree had a significantly influence on the failure modes and ultimate resistance of composite slabs and composite slab with connection degree of 96% in s hear span exhibited a ductile failure accompanied by the tensile yield of steel plate and crushing of UHPC. Finally, analytical model based on the failure mode of composite slabs was proposed to predict the ultimate resistance of steel UHPC composite slabs with different shear connection degrees at the interface.

Nd:YAG 레이저를 이용한 비정질재료의 심(seam) 용접 (Seam Welding of Amorphous Metal with Nd:YAG laser)

  • 이건상
    • 한국레이저가공학회지
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    • 제3권2호
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    • pp.45-51
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    • 2000
  • In this paper, the possibilities and the limits of the laser seam welding were studied to utilize the advantageous properties of amorphous metal foils. For the conventional welding method, the high heat transfer makes the crystallized zone of the work material unavoidable. The laser is able to weld the amorphous metal without a crystallized zone, because heat transfer is limited within a very small restricted volume. The crystallized zone is restricted in the neighbor of welding spot and not in the melting area. This can be proved directly by the etching and indirectly by the tensile shear test, micro hardness test and bending test. The overlapping of welding bead could form the formation of wider and thicker amorphous zone.

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접착영역모델을 이용한 클린칭 접합부의 해석 모델 설계 및 적용 (Analysis and Application of Mechanical Clinched Joint Using Cohesive Zone Model)

  • 황빛나;이찬주;이선봉;김병민
    • 소성∙가공
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    • 제19권4호
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    • pp.217-223
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    • 2010
  • The objective of this study is to propose the FE model for mechanical clinched joint using cohesive zone model to analyze its failure behavior under impact loading. Cohesive zone model (CZM) is two-parameter failure criteria approach, which could describe the failure behavior of joint using critical stress and fracture toughness. In this study, the relationship between failure behavior of mechanical clinched joint and fracture parameters is investigated by FE analysis with CZM. Using this relationship, the critical stress and fracture toughness for tensile and shear mode are determined by H-type tensile test and lap shear test, which were made of 5052 aluminum alloy. The fracture parameters were applied to the tophat impact test to evaluate the crashworthiness. Compared penetration depth and energy absorption at the point where 50% of total displacement in result of FE analysis and experiment test for impact test, those has shown similar crashworthiness.