• Title/Summary/Keyword: Test of tensile load

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유한요소해석을 이용한 소형펀치시험에서의 인장물성평가 (Evaluation of Tensile Properties in Small Punch Test Using Finite Element Analysis)

  • 이재봉;김민철;박재학;이봉상
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 춘계학술대회
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    • pp.31-36
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    • 2003
  • In this study a relationship between SP curves and tensile properties was investigated by FE analysis on SP test with various assumed tensile properties. For the accuracy of FE analysis, SP test and tensile test were performed and those results were compared with FE analysis results. The yield load(Py) defined from the intersection point of two lines tangent to the elastic bending region and plastic bending region. And it was related specifically with yield stress(${\sigma}_0$) in FE analysis result curves. The slopes of FE analysis result curves normalized by yield stress(${\sigma}_0$) reflected the change of tensile properties regardless of yield stress(${\sigma}_0$) variation. Empirical relations were derived from these results. Tensile properties from these relations showed good agreement in FE analysis curve and tested curve.

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스터드 커넥터로 연결된 H형강보의 인장하중 전달성능 (Tensile Load Transmission Capacity of H-shaped Beam by Stud Connectors)

  • 이명재;최완철;김원기;김재희;이상호
    • 한국강구조학회 논문집
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    • 제16권2호통권69호
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    • pp.267-274
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    • 2004
  • 본 실험의 목적은 H형강보에 작용하는 매달림 하중 중 연직하중인 인장하중을 그 대상으로 구조설계시 적용되는 설계하중에 대하여 인장하중이 스터드 커넥터를 통하여 슬래브에 전달되는 하중전달 경로와 그 성능을 파악하는데 있다. 이를 위하여 스터드 커넥터의 기초실험을 실시하고 2개의 실대형 시험체를 제작하여 인장하중에 대한 전달성능을 파악하였다. 실험의 변수로는 H형강보의 크기가 적용되었다. 인장하중 가력실험결과 현행 강구조계산기준을 따라 설계하면 스터드 커넥터에 의한 H형강보의 인장하중의 전달성능은 설계하중을 만족하고 있음을 확인하였다.

A self-confined compression model of point load test and corresponding numerical and experimental validation

  • Qingwen Shi;Zhenhua Ouyang;Brijes Mishra;Yun Zhao
    • Computers and Concrete
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    • 제32권5호
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    • pp.465-474
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    • 2023
  • The point load test (PLT) is a widely-used alternative method in the field to determine the uniaxial compressive strength due to its simple testing machine and procedure. The point load test index can estimate the uniaxial compressive strength through conversion factors based on the rock types. However, the mechanism correlating these two parameters and the influence of the mechanical properties on PLT results are still not well understood. This study proposed a theoretical model to understand the mechanism of PLT serving as an alternative to the UCS test based on laboratory observation and literature survey. This model found that the point load test is a self-confined compression test. There is a compressive ellipsoid near the loading axis, whose dilation forms a tensile ring that provides confinement on this ellipsoid. The peak load of a point load test is linearly positive correlated to the tensile strength and negatively correlated to the Poisson ratio. The model was then verified using numerical and experimental approaches. In numerical verification, the PLT discs were simulated using flat-joint BPM of PFC3D to model the force distribution, crack propagation and BPM properties' effect with calibrated micro-parameters from laboratory UCS test and point load test of Berea sandstones. It further verified the mechanism experimentally by conducting a uniaxial compressive test, Brazilian test, and point load test on four different rocks. The findings from this study can explain the mechanism and improve the understanding of point load in determining uniaxial compressive strength.

링 시험편을 이용한 피복관의 고온 인장특성 평가 (Evaluation of the Tensile Properties of Fuel Cladding at High Temperatures Using a Ring Specimen)

  • 배봉국;구재민;석창성
    • 대한기계학회논문집A
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    • 제29권4호
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    • pp.600-605
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    • 2005
  • In this study, the ring tensile test at high temperature was suggested to evaluate the hoop tensile properties of small tube such as the cladding in the nuclear reactor Using the Arsene's ring model, the ring tensile test was performed and the test data were calibrated. From the result of the ring test with strain gauge and the numerical analysis with 1/8 model, LCRR(load-displacement conversion relationship of ring specimen) was determined. We could obtain the hoop tensile properties by means of applying the LCRR to the calibrated data of the ring tensile test. A few difference was observed in view of the shape of fractured surface and the fracture mechanism between at the high temperature and at the room temperature.

생태축조블록의 국부적 안정성에 관한 실험적 연구 (An Experimental Study on Local Stability of Eco-block)

  • 이승현;이수형
    • 한국산학기술학회논문지
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    • 제12권6호
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    • pp.2866-2871
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    • 2011
  • 본 연구에서는 생태축조블록을 적용한 보강토 옹벽의 국부적 안정성 검토에 필요한 보강재 인장력 계산법을 정립하고 국부적 안정성 검토와 관련한 주요 설계인자인 보강재와 블록 사이의 연결강도와 블록 접촉면 사이의 전단강도를 시험을 통해 규명하였다. 연결강도 시험결과에 따르면 생태축조블록의 내부를 흙으로 속채움하고 D13 이형철근을 사용할 경우 첨두 하중값은 이형철근의 허용인장력 정도임을 알 수 있었으며 D16 이형철근을 사용할 경우 첨두하중값은 허용인장력의 76% 정도였다. 생태축조블록의 내부를 콘크리트로 속채움하는 경우에 있어서 D10, D13 이형철근을 사용하였을 때의 연결강도는 각각의 이형철근의 허용인장력보다 크게 나타났다. 생태축조블록의 접촉면 전단시험결과를 통해 구한 전단저항 매개변수인 ${\alpha}_u$는 1.7kN/m 이었고 ${\lambda}_u$$27.6^{\circ}$ 이었다.

풍력터빈 지지구조물의 볼트 체결된 L형 플랜지에 대한 인장 실험 및 FE해석 (Tensile Experiment and FE Analysis of L-type Flange Bolt Connection in Wind Turbine Support Structures)

  • 정대진;최익창
    • 풍력에너지저널
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    • 제15권2호
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    • pp.37-44
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    • 2024
  • In this study, a tensile test and FE analysis were conducted on a bolt-connected L-shaped flange to evaluate its behavior and load resistance. A total of five specimens were manufactured using the inner and outer distances and bolt diameters of the L-type flange as experimental variables. As a result of the tensile test of the L-shaped flange, as the internal and external length ratio (b/a) increased, the maximum load decreased and the maximum displacement increased. As the diameter (d) of the bolt increased, the maximum load and the deformation of the wall increased. The shapes of the destruction specimens showed two forms of destruction: one due to the fall of the nut and the surrender of the bolt as the thread of the bolt and nut was worn out, followed by the surrender of the wall. As a result of FE analysis, it was found that elasto-plastic model (EPM) analysis similarly tracks the behavior of the tensile test results.

전단 하중을 경험한 후설치 고전단 링앵커의 인장 강도 (Tensile Strength of Post-Installed High-Shear Ring Anchors (HRA) After Shear Loading)

  • 전상현;천성철;김재열
    • 한국공간구조학회논문집
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    • 제18권4호
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    • pp.61-68
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    • 2018
  • Tensile load tests were conducted on High-Shear Ring Anchors (HRAs) after shear load had been applied to the HRAs, which had been developed to reduce the number of the anchors. Test variables include the embedment length of the rod and the width of the specimens and a total of 12 specimens were tested. Test results show that the HRAs pulled out due to bond failure or steel failure occurred in case that the HRAs were installed to the members with 300mm or greater width and the embedment length of 160mm (the actual embedment of rod is 140mm) or deeper. Except 4 HRAs showing steel failure of rod, the minimum and average of test-to-prediction by ACI 318-14 ratios are 1.18 and 1.79, respectively. The tensile strength of HRAs, after shear load was applied to the HRAs, can be safely evaluated by the minimum among the concrete breakout strength and bond strength with the actual embedment length of the rod.

Tensile capacity of mortar-filled rectangular tube with various connection details

  • Kim, Chul-Goo;Kang, Su-Min;Eom, Tae-Sung;Baek, Jang-Woon
    • Steel and Composite Structures
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    • 제44권3호
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    • pp.339-351
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    • 2022
  • A mortar-filled rectangular hollow structural section (RHS) can increase a structural section property as well as a compressive buckling capacity of a RHS member. In this study, the tensile performance of newly developed mortar-filled RHS members was experimentally evaluated with various connection details. The major test parameters were the type of end connections, the thickness of cap plates and shear plates, the use of stud bolts, and penetrating bars. The test results showed that the welded T-end connection experienced a brittle weld fracture at the welded connection, whereas the tensile performance of the T-end connection was improved by additional stud bolts inserted into the mortar within the RHS tube. For the end connection using shear plates and penetrating stud bolts, ductile behavior of the RHS tube was achieved after yielding. The penetrating bars increased load carrying capacity of the RHS. Based on the analysis of the load transfer mechanism, the current design code and test results were compared to evaluate the tensile capacity of the RHS tube according to the connection details. Design considerations for the connections of the mortar-filled RHS tubes were also recommended.

강섬유보강 콘크리트의 휨인장강도 특성을 고려한 휨강성 평가 (Evaluation of Flexural Stiffness Considering Flexural Tensile Strength of Steel Fiber Reinforced Concrete)

  • 홍건호;정승원
    • 대한건축학회논문집:구조계
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    • 제35권8호
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    • pp.131-138
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    • 2019
  • Since concrete has a low tensile strength compared to the compressive strength, reinforced concrete flexural members represent easy crack occurance under a small load. In order to overcome this problem, steel fiber reinforced concrete has been developed to compensate the tensile strength and brittleness of members. However, in the design formula of the domestic building code, it is not specified in the design formula reflecting the material characteristics. Therefore, the field application of the steel fiber reinforced concrete have had many restrictions. In this study, a flexural tensile strength model of steel fiber reinforced concrete is proposed by collecting and analyzing the material properties of material test results conducted by various researchers, and verified by the test results of cracking and stiffness evaluation of flexural members based on the proposed model. As a result of this study, the flexural tensile strength model of steel fiber reinforced concrete which can reflect the mixing ratio and aspect ratio of the steel fiber was proposed and the validity of the proposed material model equation was evaluated from the load-deflection relationship in the flexural test of the slab member.

Investigation of the model scale and particle size effects on the point load index and tensile strength of concrete using particle flow code

  • Haeri, Hadi;Sarfarazi, Vahab;Zhu, Zheming;Hedayat, Ahmadreza;Marji, Mohammad Fatehi
    • Structural Engineering and Mechanics
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    • 제66권4호
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    • pp.445-452
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    • 2018
  • In this paper the effects of particle size and model scale of concrete have been investigated on point load index, tensile strength, and the failure processes using a PFC2D numerical modeling study. Circular and semi-circular specimens of concrete were numerically modeled using the same particle size, 0.27 mm, but with different model diameters of 75 mm, 54 mm, 25 mm, and 12.5 mm. In addition, circular and semi-circular models with the diameter of 27 mm and particle sizes of 0.27 mm, 0.47 mm, 0.67 mm, 0.87 mm, 1.07 mm, and 1.27 mm were simulated to determine whether they can match the experimental observations from point load and Brazilian tests. The numerical modeling results show that the failure patterns are influenced by the model scale and particle size, as expected. Both Is(50) and Brazilian tensile strength values increased as the model diameter and particle sizes increased. The ratio of Brazilian tensile strength to Is(50) showed a reduction as the particle size increased but did not change with the increase in the model scale.