• Title/Summary/Keyword: uniaxial loading test

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2방향 수평력을 받는 고강도 철근콘크리트 기둥의 파괴거동에 관한연구 (Damage Behavior of High Strength Reinforced Concrete Columns under Biaxial Lateral Loading)

  • 박재영
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
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    • pp.411-416
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    • 2000
  • The behavior of high strength reinforced concrete columns subjected to uniaxal reversal loading and biaxial reversal circle path loading was investigated. Four full scale test specimens were tested. All specimens were adopted cantilever type, in order that the critical region is to locate only at the bottom of column. The parameters studied were transverse reinforcement ratio, uniaxial lateral loading and biaxial lateral loading. The damage features of columns by the biaxial loading are different from those of the uniaxial loading, However, the maximum strength and the draft angle at maximum strength were almost the same under uniaxial and biaxial loading. The transverse reinforcement under biaxial loading was very effective for increasing ductility of specimens.

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DETERMINATION OF FRACTURE TOUGHNESS BY UNIAXIAL TENSILE TEST

  • Oh, Hung-Kuk
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 1994년도 춘계 학술발표 강연 및 논문 개요집
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    • pp.2-7
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    • 1994
  • The dynamic fatigue life equation is applied to uniaxial tensile test. The resultant equations far the surface energy and fracture toughness are calculated with the data from the tensile test and compared with the ones from ASTM E399 test. During the crack propagation under model loading, the material of the crack tip undergoes the process of the elastic-plastic deformation in the uniaxial tensile test. The surface energy per unit area is proportional to the ratio of plastic and elastic elongations. The calculated fracture toughness of the metals are very well coincident to the ASTM E399's test results.

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일축압축시험과 반복재하시험을 이용한 암석의 손상특성 분석 (Damage Characteristics of Rocks by Uniaxial Compression and Cyclic Loading-Unloading Test)

  • 정진영;장현식;장보안
    • 지질공학
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    • 제31권2호
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    • pp.149-163
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    • 2021
  • 특성이 서로 다른 화강암, 대리암 그리고 사암에 대하여 일축압축시험과 반복재하시험을 실시하여 암석의 손상특성을 분석하였다. 일축압축시험으로 암석들의 강도, 탄성상수 그리고 손상기준응력을 결정하였고 이를 반복재하시험의 결과와 비교하였다. 반복재하시험으로 측정된 암석들의 평균 강도는 일축압축시험으로 측정된 값보다 약간 작거나 유사였다. 특히 강도가 높고 공극률이 낮은 암석들이 공극률이 매우 큰 연약한 암석들에 비해 반복하중에 의한 피로현상에 더 민감하였다. 반복 재하-제하 과정에서 발생되는 암석의 영구변형률은 암종에 따라 약간의 차이는 있으나 암석의 손상상태를 파악할 수 있는 유용한 도구로 활용할 수 있다는 것을 확인하였다. 특히 응력-누적영구변형률 곡선은 화강암과 대리암에 대하여 균열손상응력을 추정할 수 있는 가능성을 보여주었다. 시험과정에 미소파괴음을 측정하여 암석의 손상상태를 판단할 수 있는 펠리시티 비를 계산하였다. 공극이 매우 많고 연약한 사암은 미소파괴음의 방출이 매우 미약하여서 펠리시티 비의 계산에 어려움이 있었다. 반면 공극이 적고 취성의 특성을 보이는 화강암과 대리임의 경우 반복재하단계에서 계산된 펠리시티 비를 통하여 암석의 균열손상응력을 추정할 수 있는 가능성을 보여주었다. 향후 더 많은 시료와 다양한 종류의 암석을 대상으로 추가적인 시험을 진행하여 공통적인 결과를 도출한다면 유사한 조건을 갖는 암반의 손상과 변형 거동을 파악하는 데 도움이 될 수 있을 것으로 판단된다.

취성재의 손상후 잔류강도 평가 (Evaluation of Residual Strength in Damaged Brittle Materials)

  • 오상엽;신형섭;서창민
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집A
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    • pp.137-142
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    • 2001
  • In structural applications, brittle materials such as soda-lime glasses and ceramics are often subjected to multiaxial stress. Brittle materials with crack or damaged by foreign object impacts are abruptly fractured from cracks, because of their properities of very high strength and low fracture toughness. But in most cases, the residual strength has been derived from tests under uniaxial stress such as a 4-point bend test. The strengths under multiaxial stresses might be different from the strength. In comparable tests, the residual strength under biaxial stress state by the ball-on-ring test was greater than that under the uniaxial one by the 4-point bend test. In the case that crack having 90deg. to loading direction, the ratio of biaxial to uniaxial flexure strength was 1.12. At a different crack angle to loading direction when it was evaluated by the 4-point bend test, the residual strength was different and the ratio of 45deg. to 90deg. was 1.16.

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Experimental study of Kaiser effect under cyclic compression and tension tests

  • Chen, Yulong;Irfan, Muhammad
    • Geomechanics and Engineering
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    • 제14권2호
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    • pp.203-209
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    • 2018
  • Reliable estimation of compressive as well as tensile in-situ stresses is critical in the design and analysis of underground structures and openings in rocks. Kaiser effect technique, which uses acoustic emission from rock specimens under cyclic load, is well established for the estimation of in-situ compressive stresses. This paper investigates the Kaiser effect on marble specimens under cyclic uniaxial compressive as well as cyclic uniaxial tensile conditions. The tensile behavior was studied by means of Brazilian tests. Each specimen was tested by applying the load in four loading cycles having magnitudes of 40%, 60%, 80% and 100% of the peak stress. The experimental results confirm the presence of Kaiser effect in marble specimens under both compressive and tensile loading conditions. Kaiser effect was found to be more dominant in the first two loading cycles and started disappearing as the applied stress approached the peak stress, where felicity effect became dominant instead. This behavior was observed to be consistent under both compressive and tensile loading conditions and can be applied for the estimation of in-situ rock stresses as a function of peak rock stress. At a micromechanical level, Kaiser effect is evident when the pre-existing stress is smaller than the crack damage stress and ambiguous when pre-existing stress exceeds the crack damage stress. Upon reaching the crack damage stress, the cracks begin to propagate and coalesce in an unstable manner. Hence acoustic emission observations through Kaiser effect analysis can help to estimate the crack damage stresses reliably thereby improving the efficiency of design parameters.

동적하중을 받는 기능성 고폭화약조성 시뮬런트 재료물성 연구 (A Study on Dynamic Material Properties of Functional High Explosive Formulation Simulant Subjected to Dynamic Loading)

  • 박정수;염기선;박충희;정세환;이근득;허훈
    • 한국군사과학기술학회지
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    • 제16권6호
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    • pp.857-866
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    • 2013
  • This paper is concerned with the material properties of functional high explosive(FHX) simulant at various strain rates ranging from $10^{-4}/sec$ to $10^1/sec$. Material properties of FHX at high strain rates are important in prediction of deformation modes of FHX in a warhead which undergoes dynamic loading. Inert FHX stimulant which has analogous mechanical properties with FHX was utilized for material tests due to safety issues. Uniaxial tensile tests at quasi-static strain rates ranging from $10^{-4}/sec$ to $10^{-2}/sec$ and intermediate strain rates ranging from $10^{-1}/sec$ to $10^1/sec$ were conducted with JANNAF specimen using a tensile testing machine, INTRON 5583, and developed high speed material testing machine, respectively. Uniaxial compressive tests at quasi-static strain rates and intermediate strain rates were conducted with cylindrical specimen using a dynamic materials testing machine, INSTRON 8801. And cyclic compressive loading tests were performed with various strain rates and strains. Deformation behaviors were investigated using captured images obtained from a high-speed camera.

동결 온도와 재하속도에 따른 동결토의 일축압축 및 쪼갬인장 강도특성 (Experimental Study on Unconfined Compression Strength and Split Tensile Strength Properties in relation to Freezing Temperature and Loading Rate of Frozen Soil)

  • 서영교;최헌우
    • 한국해양공학회지
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    • 제26권6호
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    • pp.19-26
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    • 2012
  • Recently the world has been suffering from difficulties related to the demand and supply of energy due to the democratic movements sweeping across the Middle East. Consequently, many have turned their attention to never-developed extreme regions such as the polar lands or deep sea, which contain many underground resources. This research investigated the strength and initial elastic modulus values of eternally frozen ground through a uniaxial compression test and indirect tensile test using frozen artificial soil specimens. To ensure accurate test results, a sandymud mixture of standard Jumunjin sand and kaolinite (20% in weight) was used for the specimens in these laboratory tests. Specimen were prepared by varying the water content ratio (7%, 15%, and 20%). Then, the variation in the strength value, depending on the water content, was observed. This research also established three kinds of environments under freezing temperatures of $-5^{\circ}C$, $-10^{\circ}C$, and $-15^{\circ}C$. Then, the variation in the strength value was observed, depending on the freezing environment. In addition, the tests divided the loading rate into 6 phases and observed the variation in the stress-strain ratio, depending on the loading rate. The test data showed that a lower freezing temperature resulted in a larger strength value. An increase in the ice content in the specimen with the increase in the water content ratio influenced the strength value of the specimen. A faster load rate had a greater influence on the uniaxial compression and indirect tensile strengths of a frozen specimen and produced a different strength engineering property through the initial tangential modulus of elasticity. Finally, the long-term strength under a constant water content ratio and freezing temperature was checked by producing stress-strain ratio curves depending on the loading rate.

Steel Cord와 PVA 혼합섬유 보강 고인성 시멘트 복합체의 인장강도 특성 (Tensile Strength Characteristics of Steel Cord and PVA Hybrid Fiber Reinforced Cement-Based Composites)

  • 윤현도;양일승;한병찬;복산양;전에스더;문연준
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.18-21
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    • 2004
  • This paper discusses how steel cord and PVA hybrid fibers enhance the performance of high performance fiber reinforced cementitious composites (HPRFCC) in terms of elastic limit, strain hardening response and post peak of the composites. The effect of microfiber(PVA) blending ratio is presented. For this purpose flexure, direct tension and split tension tests were conducted. It was found that HFRCC specimen shows multiple cracking in the area subjected to the greatest bending tensile stress. Uniaxial tensile test confirms the range of tensile strain capacity from 0.5 to $1.5\%$ when hybrid fiber is used. The cyclic loading test results identified a unique unloading and reloading response for this ductile composite. Cyclic loading in tension appears not to affect the tensile response of the material if the uniaxial compressive strength during loading is not exceeded.

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고강도 콘크리트의 일축 및 이축 압축하의 파괴거동 (Failure Behavior of High Strength Concrete under Uniaxial and Biaxial Compression)

  • 이상근;송영철
    • 한국구조물진단유지관리공학회 논문집
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    • 제6권1호
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    • pp.223-231
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    • 2002
  • The pilot tests for the development of biaxial failure envelope of high strength concrete of reactor containments were performed. To apply biaxial loads to concrete, the plate specimens were used. The technical difficulties encountered on the development of a suitable biaxial test setup were discussed. To decide the optimum thickness of plate specimen, the nonlinear finite element analyses using ABAQUS were performed for a 1/8 model of cylindrical specimen(${\Phi}150{\times}300$) and four 1/4 models of plate Specimens ($200{\times}200{\times}T$(=30, 50, 60, 70)mm) under uniaxial compression. Analytical values and test data of relative strength ratio between those specimens with different geometric shapes were also compared. The various test data were obtained under uniaxial compression, uniaxial tension, and biaxial compression and then the stress-strain responses were plotted. The test data indicated that the strength of concrete under biaxial compression, $f_1/f_2=-1/-1$, is 15 percent larger than that under uniaxial compression and the poisson's ratio of concrete is 0.16. Teflon pads employed to eliminate friction between test specimen and loading platens showed an excellent effect under biaxial compression.

일축압축하에서 반복재하에 따른 탄성정수의 거동분석(I) -경상분지 퇴적암을 대상으로- (An Analysis of Elastic Moduli Behaviors of Uniaxial Compression under Loading-Reloading Test (I))

  • 이종석;문종규;최웅의
    • 한국지반공학회논문집
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    • 제28권8호
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    • pp.65-78
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    • 2012
  • 탄성계수값은 퇴적암의 일축압축시험을 통하여 응력수준에 따라 넓은 범위로 변하며 거동특성도 다양하게 발현되고 있다. 즉 탄성계수는 정수가 아닌 변수로 볼 수 있는 것이다. 실무에서는 참고자료 및 실험값으로 사용하고 있으나 그 값은 사용하중 수준에서는 매우 큰 값을 채용하고 있다. 설계 및 시공과정에서는 재하-재(再)재하(loading-reloading) 시험을 통한 값을 사용하여 적절하고 합리적인 결과가 도출되어야 할 것이다. 또한 사용하중의 낮은 응력수준에서 발현되는 탄성계수값의 거동특성 역시 유의하여 보아야 할 점이다.