• 제목/요약/키워드: Uniaxial compression

검색결과 512건 처리시간 0.023초

저밀도 폴리우레탄 포옴재료의 유한요소 모델링 (Finite Element Modeling of Low Density Polyurethane Foam Material)

  • 김원택;최형연
    • 한국자동차공학회논문집
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    • 제4권2호
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    • pp.183-188
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    • 1996
  • The compressive stress-strain response of Low Density Polyurethane foam material is modeled using the finite element method. A constitutive equation which include experimental constants based on quasi-static and dynamic uniaxial compression test is proposed. Impact test with different impactor masses and velocities are performed to verify the proposed model. The comparison between impact test and finite element analysis shows good agreements.

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인공연약면을 따른 이암의 강도이방성에 관한 연구 (Strength Anisotropy through Artificial Weak Plane of Mudstone)

  • 이영휘;정강복
    • 한국지반공학회논문집
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    • 제24권11호
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    • pp.111-120
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    • 2008
  • 포항지역 일원에 분포하는 이암을 대상으로 암석의 파괴강도에 대한 유도이방성을 분석하기 위하여 인공절리면을 갖는 이방성 암석에 대한 일축 및 삼축압축시험을 수행하였다. 시험결과, 일축압축강도와 삼축압축강도의 최소치는 인공절리면의 각도 ${\beta}=30^{\circ}$에서 나타났으며, 이방성 유형은 어깨형태(shoulder type)를 보였다. 또한 일축압축시험에서의 이방율을 산정한 결과, $R_c=9.0$으로 나타나 매우 높은 이방성에 속한 반면, 삼축압축시험에서 이방율은 $1.29{\sim}1.98$ 정도의 낮은 이방성으로 나타났다. Ramamurthy(1985) 파괴규준식에 n 지수를 도입하여 일축압축시험결과를 분석한 결과 ${\beta}=0^{\circ}{\sim}30^{\circ}$에서는 n=1인 곡선과 ${\beta}=30^{\circ}{\sim}90^{\circ}$에서는 n=3인 곡선이 가장 적절한 값을 예측하는 것으로 나타났다. 또한 삼축압축시험결과를 Ramamurthy 파괴규준식을 적용하여 분석하기 위해 매개변수 산정에 관한 Ramamurthy 제안식에 일축압축강도에서의 이방율을 도입하여 제안식을 일부 수정하였다. 이를 이용하여 매개변수를 재산정하고 Ramamurthy 파괴규준식에 적용한 결과 전반적으로 실험치와 잘 일치되는 것으로 나타났다. 또한, Jaeger(1960), McLamore & Gray(1967) 및 Hoek & Brown(1980)의 파괴규준을 적용하여 이암의 파괴강도에 대한 이방성을 살펴보았다.

초음파 속도를 이용한 암석의 일축압축강도 평가 (Evaluation of Rock Uniaxial Compressive Strength Using Ultrasonic Velocity)

  • 백승철;김용태;김홍택;윤준식;이윤규
    • 한국지반환경공학회 논문집
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    • 제7권2호
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    • pp.33-42
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    • 2006
  • 표준화된 일축압축강도시험에 의해 구한 암석의 일축압축강도를 간편법에 의해 평가할 수 있는 관계를 구하기 위하여 18개의 안동 흑운모화강암과 27개의 여수 부근의 화성암(섬록암, 화강암, 안산암, 유문암) 암석이 실험에 이용되었다. 각 시험 결과의 타당성은 변동계수를 구하여 평가하였다. 그 결과 일축압축강도와 점하중시험, 슈미트해머시험 및 초음파속도시험 값들 사이에 압축강도를 평가할 수 있는 관계식을 구하였다. 각각 다른 방법으로 구한 예측된 압축강도 관계식은 신뢰할 수 있는 범위에 있었으며, 초음파 속도시험은 암석의 일축압축강도를 추정에 신뢰성 있는 관계식을 제공하고 있다.

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금속소재의 고변형률 영역 유동응력선도 평가 (Evaluation of Flow Stress of Metal up to High Strain)

  • 이상곤;이인규;이성윤;이성민;정명식
    • 소성∙가공
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    • 제29권6호
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    • pp.316-322
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    • 2020
  • The flow stress curve is usually determined via uniaxial tensile or simple compression test. However, the flow stress curve up to high strain cannot be obtained using these two tests. This study presents a simple method for obtaining the flow stress curve up to high strain via FE analysis, a simple compression test, and an indentation test. In order to draw the flow stress curve up to high strain, the indentation test was carried out with the pre-stained specimen using the simple compression test. The flow stress curve of Al6110 was evaluated up to high strain using the proposed method, and the result was compared with the flow stress curve of the uniaxial tensile test of the initial material.

LSTM 순환 신경망을 이용한 재료의 단축하중 하에서의 응력-변형률 곡선 예측 연구 (Prediction of the Stress-Strain Curve of Materials under Uniaxial Compression by Using LSTM Recurrent Neural Network)

  • 변훈;송재준
    • 터널과지하공간
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    • 제28권3호
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    • pp.277-291
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    • 2018
  • 이 논문에서는 재료의 단축하중 하에서의 응력-변형률 곡선을 예측하기 위하여 순환 신경망의 일종인 LSTM(Long Short-Term Memory) 알고리즘을 사용하였다. 석고와 규사를 혼합해 만든 재료에 일축압축시험을 수행하여 얻은 응력-변형률 데이터를 이용하였으며, 낮은 응력 구간의 초반 데이터를 활용해서 파괴 전까지의 거동을 예측하였다. 앞부분의 데이터를 활용하여 단계적으로 뒤쪽 구간의 값을 예측하는 LSTM 순환 신경망의 구조상 큰 응력에 대응하는 변형률을 예측할 경우에는 앞쪽 구간의 오차가 누적되어 실측값과 차이가 늘어났으나 전반적으로 높은 정확도로 응력-변형률 곡선을 예측하였다. 예측에 사용한 초기 데이터의 길이가 늘어나는 경우 정확도는 조금 증가했다. 그러나 접선을 이용한 단순 예측과의 성능 차이는 초기 데이터의 길이가 작은 경우에 두드러졌으며, 적은양의 데이터로도 응력-변형률 곡선 전체 구간의 예측을 가능하게 한다는 점으로부터 신경망 모델의 필요성을 확인하였다.

The coalescence and strength of rock-like materials containing two aligned X-type flaws under uniaxial compression

  • Zhang, Bo;Li, Shucai;Yang, Xueying;Xia, Kaiwen;Liu, Jiyang;Guo, Shuai;Wang, Shugang
    • Geomechanics and Engineering
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    • 제17권1호
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    • pp.47-56
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    • 2019
  • Crossing (X-type) flaws are commonly encountered in rock mass. However, the crack coalescence and failure mechanisms of rock mass with X-type flaws remain unclear. In this study, we investigate the compressive failure process of rock-like specimens containing two X-type flaws aligned in the loading direction. For comparison purposes, compressive failure behavior of specimens containing two aligned single flaws is also studied. By examining the crack coalescence behavior, two characteristics for the aligned X-type flaws under uniaxial compression are revealed. The flaws tend to coalesce by cracks emanating from flaw tips along a potential path that is parallel to the maximum compressive stress direction. The flaws are more likely to coalesce along the coalescence path linked by flaw tips with greater maximum circumferential stress if there are several potential coalescence paths almost parallel to the maximum compressive stress direction. In addition, we find that some of the specimens containing two aligned X-type flaws exhibit higher strengths than that of the specimens containing two single parallel flaws. The two underlying reasons that may influence the strengths of specimens containing two aligned X-type flaws are the values of flaw tips maximum circumferential stresses and maximum shear stresses, as well as the shear crack propagation tendencies of some secondary flaws. The research reported here provides increased understanding of the fundamental nature of rock/rock-like material failure in uniaxial compression.

Stiffness effect of testing machine indenter on energy evolution of rock under uniaxial compression

  • Tan, Yunliang;Ma, Qing;Wang, Cunwen;Liu, Xuesheng
    • Geomechanics and Engineering
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    • 제30권4호
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    • pp.345-352
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    • 2022
  • When rock burst occurs, the damaged coal, rock and other fragments can be ejected to the roadway at a speed of up to 10 m/s. It is extremely harmful to personnel and mining equipment, and seriously affects the mining activities. In order to study the energy evolution characteristics, especially kinetic energy, in the process of rock mass failure, this paper first analyzes the energy changes of the rock in different stages under uniaxial compression. The formula of the kinetic energy of rock sample considering the energy from the indenter of the testing machine is obtained. Then, the uniaxial compression tests with different stiffness ratios of the indenter and rock sample are simulated by numerical simulation. The kinetic energy Ud, elastic strain energy Ue, friction energy Uf, total input energy U and surface energy Uθ of crack cracking are analyzed. The results show that: The stiffness ratio has influence on the peak strength, peak strain, Ud, Ue, Uθ, Uf and U of rock samples. The variation trends of strength, strain and energy with stiffness are different. And when the stiffness ratio increases to a certain value, if the stiffness of the indenter continues to increase, it will have no longer effect on the rock sample.

고로슬래그미분말 및 하수슬러지를 혼입한 시멘트계 저강도 재료의 기초적 물성 (Fundamental Properties of Controlled Low Strength Materials Mixed Blast Furnace Slag and Sewage Sludge)

  • 김동훈;박신;임남기
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2015년도 추계 학술논문 발표대회
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    • pp.53-54
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    • 2015
  • As the result of uniaxial compression strength test on the CLMS mixing BFS and SS with BFS 4000, it required to determine the desired strength through increasing unit quantity of cement in mixing process because of dramatic strength deterioration of strength according to increasing replacing rate. In this study's result, regardless of differences in fine aggregates used, in order to get uniaxial compression strength in the scope exceeding criteria of minimum strength for applying to the field, the most reasonable combination was to mix replacing BFS with fineness of 6000 in 30%. For the CLMS mixing BFS and SS, in order to improve flow ability by securing quantity of minimum unit and to repress bleeding rate with securing uniaxial compress strength considering the field applicability, regardless of differences in fine aggregates used, to mix BFS over 6000 in 30% was most effective.

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반복 일축응력하의 알루미나 파괴거동에 미치는 압축응력의 영향 (The Effect of Compressive Stress on Fracture Response of Alumina under Uniaxial Stress Cycling)

  • 김기태;서정;백성기
    • 한국세라믹학회지
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    • 제28권9호
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    • pp.712-720
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    • 1991
  • The effect of cyclic compressive stress on fracture responses of Al2O3 was investigated under uniaxial stress cycling. Experimental data were obtained for Al2O3 tension specimens under uniaxial tension-unloading and tension-compression cyclic loading conditions. To investigate the effect of compressive stress on the crack growth, theoretical results from the crack growth rate were compared with measured stress vs. failure relations. At low stress level in tension-compression cycling, residual tensile strains were also observed about failure time.

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Optimum design of reinforced concrete columns subjected to uniaxial flexural compression

  • Bordignon, R.;Kripka, M.
    • Computers and Concrete
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    • 제9권5호
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    • pp.327-340
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    • 2012
  • The search for a design that meets both performance and safety, with minimal cost and lesser environmental impact was always the goal of structural engineers. In general, the design of conventional reinforced concrete structures is an iterative process based on rules of thumb established from the personal experience and intuition of the designer. However, such procedure makes the design process exhaustive and only occasionally leads to the best solution. In such context, this work presents the development and implementation of a mathematical formulation for obtaining optimal sections of reinforced concrete columns subjected to uniaxial flexural compression, based on the verification of strength proposed by the Brazilian standard NBR 6118 (ABNT 2007). To minimize the cost of the reinforced concrete columns, the Simulated Annealing optimization method was used, in which the amount and diameters of the reinforcement bars and the dimensions of the columns cross sections were considered as discrete variables. The results obtained were compared to those obtained from the conventional design procedure and other optimization methods, in an attempt to verify the influence of resistance class, variations in the magnitudes of bending moment and axial force, and material costs on the optimal design of reinforced concrete columns subjected to uniaxial flexural compression.