• Title/Summary/Keyword: uniaxial deformation

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소형펀치 시험법을 이용한 Al 2024 ECAP 재료의 강도특성 평가 (Assessment of Strength Characteristics of Al 2024 ECAP Metal Using Small Punch Testing)

  • 마영화;최정우;김선화;윤기봉
    • 대한기계학회논문집A
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    • 제30권1호
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    • pp.8-17
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    • 2006
  • When subjected to severe shear deformation by ECAP, microstructure of Al2024 becomes extremely refined. To measure the strength of that, small punch(SP) testing method was adopted as a substitute for the conventional uniaxial tensile testing because the size of material processed by ECAP were limited to ${\psi}12\;mm$ in transverse direction. SP tests were performed with specimens in longitudinal and transverse directions of Al2024 ECAP metal. For comparing the strength values with those assessed by SP tests, uniaxial tensile tests were also conducted with specimens in longitudinal direction. Failure surfaces of the tested SP specimens showed that failure mode was shear deformation and Al 2024 ECAP metal has an anisotropy in strength. Thus, conventional equations proposed for assessing the strength characteristics were improper to assess those of Al2024 ECAP metal. In this paper a way of assessing the strength of Al 2024 ECAP metal was proposed and was proven to be effective.

암석의 강도 및 변형거동의 온도의존성에 관한 연구 (A Study on Temperature Dependency of Strength and Deformation Behavior of Rocks)

  • 이형원;이정인
    • 터널과지하공간
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    • 제6권2호
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    • pp.101-121
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    • 1996
  • The thermomechanical characteristics of rocks such as temperature dependency of strength and deformation were experimentally investigated using Iksan granite, Cheonan tonalite and Chung-ju dolomite for proper design and stability analysis of underground structures subjected to temperature changes. For the temperature below critical threshold temperature $T_c$, the variation of uniaxial compressive strength, Young's modulus, Brazilian tensile strength and cohesion with temperature were slightly different for each rock type, but these mechanical properties decreased at the temperatures above $T_c$ by the effect of thermal cracking. Tensile strength was most affected by $T_c$, and uniaxial compressive strength was least affected by $T_c$. To the temperature of 20$0^{\circ}C$ with the confining prressure to 150 kg/$\textrm{cm}^2$, failure limit on principal stress plane and failure envelope on $\sigma$-$\tau$ plane of Iksan granite were continuously lowered with increasing temperature but those of Cheonan tonalite and Chung-ju dolomite showed different characteristics depending on minor principal stress on principal stress plane and normal stress on $\sigma$-$\tau$ plane. The reason for this appeared to be the effect of rock characteristics and confining pressure. Young's modulus was also temperature and pressure dependent, but the variation of Young's modulus was about 10%, which was small compared to the variation of compressive strength. In general, Young's modulus increased with increasing confining pressure and increased or decreased with increasing temperature to 20$0^{\circ}C$ depending on the rock type.

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시멘트 혼합토 및 복합지반의 강도, 변형 특성 및 수치해석 (Strength and Deformation Characteristics, and Numerial Analysis for Cement Admixed Clay and Composite Ground)

  • 전제성
    • 한국지반환경공학회 논문집
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    • 제15권8호
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    • pp.51-58
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    • 2014
  • 본 연구에서는 원지반 점토와 시멘트 혼합토를 포함하는 복합지반을 조성하고 이에 대한 실내 일축압축강도 시험을 통해 원지반 점토 함수비 및 치환율, 시멘트 함유율 등에 따른 강도 및 변경 특성치를 분석하였으며, 혼합토에 대한 개별요소 수치모델링을 수행하였다. 시멘트 함유율 15 % 이상에서는 최종적인 복합지반의 강도에 있어 치환율을 증가시키는 것보다 시멘트 함유량 증가 등을 통한 혼합토의 강도를 증가시키는 것이 더욱 유리함을 알 수 있었으며, 회귀분석을 통해 원지반 점성토의 일축압축강도와 시멘트 혼합토의 시멘트 함유율, 복합지반 치환율을 이용하여 최종적인 복합지반의 일축압축강도 및 탄성계수 예측이 가능하였다. 치환율과 함께 최종적인 복합지반의 강도 및 변형 특성치 예측에 가장 중요한 요소인 시멘트 혼합토의 일축압축강도는 실내시험 및 본딩모델이 적용된 3차원 개별요소 수치모델링을 통해 그 검증과 예측이 가능하였다.

미소파괴음을 이용한 절토사면계측 (Rock Slope Monitoring using Acoustic Emission)

  • 장현익;김진광;김찬우;김경석;천대성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.743-748
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    • 2010
  • The stability forecasting of rock slope is more difficult than soil slope because catching the sign of failure in monitoring is not easy and deformation of the rock is small in failure process. But in the rock slope, there is small deformation like crack propagation in rock itself and it accumulates gradually in failure process. If it is possible to detect the small change in the rock slope, we can know the failure time exactly. Because the individual signal is gathered in the acoustic emission monitoring, it is possible to monitoring the slope if many sound signal is accumulated. Detection test of acoustic emission was performed. Uniaxial, two types of bending test, and two plane shear test were done with various cement paste sample. Wave propagation velocity of uniaxial test sample was increased with curing time. Wave Analysis give us the result that there is a AE sign signal before the failure, the AE count is suddenly increased. And frequency level 125kHz before failure is changed to level 200-250kHz after failure. In two plane shear test we can catch the AE signal and can know the failure type from wave shape. Monitoring test site is tunnel slope in Hongcheon but special signal is not collected.

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콘크리트의 변형률국소화에 관한 해석적 연구 (Analytical Study on the Strain Localization of Concrete)

  • 송하원;서철
    • 콘크리트학회지
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    • 제8권2호
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    • pp.129-138
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    • 1996
  • 콘크리트의 국소화현상은 콘크리트의 연화거동에 수반되어 변형이 국부적으로 집중되는 현상으로 콘크리트 구조물의 극한하중을 지배한다. 본 연구에서는 연화거동에 따른 변형률국소화현상을 일으키는 콘크리트를 국소영역과 비국소영역으로 나누어 모형화하였으며 불균질재료의 평균화개념을 이용하여 콘크리트의 국소화거동을 정식화하였다. 본 연구에서는 정식화된 모형을 사용하여 일축압축 및 일축인장하중을 받는 콘크리트의변형의 국소화 현상을 재현하였으며, 제안된 모형이 일축하중하의 콘크리트의 국소화거동을 잘 재현할 수 있음을 실제 실험결과와의 비교를 통하여 검증하였다. 해석결과로부터 일축압축하중하의 콘크리트의 국소영역의 크기는 콘크리트의 최대골재치수의 3배가 적당하고, 시편의 길이에 따른 콘크리트의 크기효과도 재현할 수 있음을 보였다. 또한 제안된 모형식에 직접인장시험에서 구해진 인장연화곡선의 사용이 일축인장하의 콘크리트의 국소화현상을 잘 표현하는데 적합함을 알 수 있었다.

응력수준에 따른 암석의 손상기준 결정에 관한 실험적 연구 (An Experimental Study on the Determination of Damage Thresholds in Rock at Different Stress Levels)

  • 장수호;이정인
    • 화약ㆍ발파
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    • 제23권4호
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    • pp.31-44
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    • 2005
  • 높은 현지응력 조건하에서는 굴착 후에 응력 재분배와 응력 교란에 의해 발생하는 터널 주변의 손상영역을 평가할 필요가 있다. 따라서 암석의 변형 및 파괴 특성을 규명하는 것이 중요하다고 할 수 있다. 본 연구에서는 미소균열들의 전파와 결합에 의해 형성되는 암석의 파괴 및 손상 메커니즘을 점이동 회귀분석 기법과 단축압축시험 동안 측정된 미소파괴음으로부터 조사하고자 하였다. 특히 암석의 손상기준들을 보다 체계적으로 결정하기 위한 수정 방법을 새롭게 제안하였고 성공적으로 적용하였다. 실험결과, 황등화강암과 여산대리석 모두에서 균열개시응력과 균열손상응력은 단축압축강도의 각각 $33{\~}36\%$$84{\~}89\%$ 수준인 것으로 나타났다. 하지만 여산대리석에서 정규화한 균열닫힘응력 수준은 황등화강암과 비교할 때 더욱 크게 나타났다. 또한 황등화강암에서 발생한 축방향 변형은 탄성변형 단계와 초기 미소균열 발생 과정에서 크게 발생하였다. 하지만 여산대리석에서 발생한 축방향 변형은 초기 균열들의 닫힘과 불안정한 균열전파에 의해 주로 발생하였다. 반면 단축압축조건하에서 암석의 횡방향 변형은 거의 대부분 균열손상응력 수준 이후에 발생하는 불안정한 균열전파로 인해 발생하는 것으로 나타났다.

대형평판재하시험의 지중응력 측정결과를 이용한 연암의 변형계수 산정 (Estimation of deformation modulus for rock mass using stress distribution under ground in Large Plate Load Test)

  • 박원태;이민희;최용규;김석찬;김정환
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.539-545
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    • 2010
  • The field plate test has a good potential for determining since it measures both plate pressure and settlement. The deformation modulus of rock mass is differently measured for status of structures. The values of deformation modulus are obtained from laboratory test (uniaxial and triaxial test) and field test (pressuremeter test). Plate load test should be conducted by different loading plate sizes for geological structure of rock mass and scale of structures. In this paper, large plate load tests were performed to predict of structure's behavior and evaluate the ultimate bearing capacity of the foundation on soft rock. Simultaneously, deformation modulus of rock mass was estimated by back analysis of stresses measured in field test under rock mass. Finally, we verified the validation of deformation modulus of rock mass through result of large plate load test and numerical simulation.

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Deformation behaviours of SS304 tubes in pulsating hydroforming processes

  • Yang, Lianfa;Wang, Ninghua;He, Yulin
    • Structural Engineering and Mechanics
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    • 제60권1호
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    • pp.91-110
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    • 2016
  • Tube hydroforming (THF) under pulsating hydraulic pressures is a novel technique that applies pulsating hydraulic pressures that are periodically increased to deform tubular materials. The deformation behaviours of tubes in pulsating THF may differ compared to those in conventional non-pulsating THF due to the pulsating hydraulic pressures. The equivalent stress-strain relationship of metal materials is an ideal way to describe the deformation behaviours of the materials in plastic deformation. In this paper, the equivalent stress-strain relationships of SS304 tubes in pulsating hydroforming are determined based on experiments and simulation of free hydraulic bulging (FHB), and compared with those of SS304 tubes in non-pulsating THF and uniaxial tensile tests (UTT). The effect of the pulsation parameters, including amplitude and frequency, on the equivalent stress-strain relationships is investigated to reveal the plastic deformation behaviours of tubes in pulsating hydroforming. The results show that the deformation behaviours of tubes in pulsating hydroforming can be well described by the equivalent stress-stain relationship obtained by the proposed method. The amplitude and frequency of pulsating hydraulic pressure have distinct effects on the equivalent stress-strain relationships-the equivalent stress becomes augmented and the formability is enhanced with the increase of the pulsation amplitude and frequency.

다축응력상태에서의 304 스테인리스강의 고온 파괴수명에 관한 연구 (High temperature rupture lifetime of 304 stainless steel under multiaxial stress states)

  • 김호경;정강;정진성
    • 대한기계학회논문집A
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    • 제22권3호
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    • pp.595-602
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    • 1998
  • Specimens of 304 stainless steel were tested to failure at elevated temperatures under multiaxial stress states, uniaxial tension using smooth bar specimens, biaxial shearing using double shear bar specimens, and triaxial tension using notched bar specimens. Rupture times are compared for uniaxial, biaxial, and triaxial stress states with respect to the maximum principal stress, the von Mises effective stress, and the principal facet stress. The results indicate that the principal facet stress gives the best correlation for the material investigated, and this parameter can predict creep life data under multiaxial stress states with rupture data obtained with specimens under uniaxial stresses. The results also suggest that grain boundary cavitation, coupled with localized deformation processes such as grain boudary sliding, controls the lifetimes of the specimens.

낙동강 하구역 준설토 재활용을 위한 시멘트 혼합경량토의 압축강도 특성 연구 (Compressive Strength Characteristics of Cement Mixing Lightweight Soil For Recycling of Dredged Soil in Nakdong River Estuary)

  • 김윤태;김홍주;권용규
    • 한국해양공학회지
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    • 제20권1호
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    • pp.7-15
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    • 2006
  • In this research, the behavior characteristics of cement mixing lightweight soil (CMLS) for recycling of dredged soil in the Nakdong River estuary are experimentally investigated. CMLS is composed of the dredged soil from Nakdong River estuary, cement, and air foam. For this purpose, uniaxial compression tests are carried out for artificially prepared specimens of CMLS, with various initial water contents, cement contents, and mixing ratio of dredged soils. The experimental results of CMLS indicated that the compressive strength is strongly influenced by the cement contents, rather than water contents and air foam. Compressive strength of CMLS increased with an increase in cement content, while it decreased with an increase in water content and air foam content. It was also found that the modulus of deformation E50 was in a range of 44 to 128 times greater than the value of uniaxial compressive strength, cured in 28 days.