• Title/Summary/Keyword: Engineering stress-strain curve

검색결과 371건 처리시간 0.031초

구형 압입이론에 관한 고찰 (Some Remarks on the Spherical Indentation Theory)

  • 이진행;이형일;송원근
    • 대한기계학회논문집A
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    • 제25권4호
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    • pp.714-724
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    • 2001
  • In this work, some inaccuracies and limitation of prior indentation theory, which is based on the deformation theory of plasticity and experimental observations, are first investigated. Then effects of major material properties on the configuration of indentation load-deflection curve are examined via incremental plasticity theory based finite element analyses. It is confirmed that subindenter deformation and stress-strain distribution from the deformation theory of plasticity are quite dissimilar to those from incremental theory of plasticity. We finally suggest the optimal data acquisition location, where the strain gradient is the least and the effect of friction is negligible. This data acquisition point increases the strain range by a factor of five.

The ground response curve of underwater tunnels, excavated in a strain-softening rock mass

  • Fahimifar, Ahmad;Ghadami, Hamed;Ahmadvand, Masoud
    • Geomechanics and Engineering
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    • 제8권3호
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    • pp.323-359
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    • 2015
  • This paper presents an elasto-plastic model for determination of the ground response curve of a circular underwater tunnel excavated in elastic-strain softening rock mass compatible with a nonlinear Hoek-Brown yield criterion. The finite difference method (FDM) was used to propose a new solution to calculate pore water pressure, stress, and strain distributions on periphery of circular tunnels in axisymmetric and plain strain conditions. In the proposed solution, a modified non-radial flow pattern, for the hydraulic analysis, is utilized. To evaluate the effect of gravitational loads and variations of pore water pressure, the equations concerning different directions around the tunnel (crown, wall, and floor) are derived. Regarding the strain-softening behavior of the rock mass, the stepwise method is executed for the plastic zone in which parameters of strength, dilatancy, stresses, strains, and deformation are different from their elasto-plastic boundary values as compared to the tunnel boundary values. Besides, the analytical equations are developed for the elastic zone. The accuracy and application of the proposed method is demonstrated by a number of examples. The results present the effects of seepage body forces, gravitational loads and dilatancy angle on ground response curve appropriately.

EVALUATION OF DYNAMIC TENSILE CHARACTERISTICS OF POLYPROPYLENE WITH TEMPERATURE VARIATION

  • Kim, J.S.;Huh, H.;Lee, K.W.;Ha, D.Y.;Yeo, T.J.;Park, S.J.
    • International Journal of Automotive Technology
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    • 제7권5호
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    • pp.571-577
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    • 2006
  • This paper deals with dynamic tensile characteristics for the polypropylene used in an IP(Instrument Panel). The polypropylene is adopted in the dash board of a car, especially PAB(Passenger Air Bag) module. Its dynamic tensile characteristics are important because the PAB module undergoes high speed deformation during the airbag expansion. Since the operating temperature of a car varies from $-40^{\circ}C$ to $90^{\circ}C$ according to the specification, the dynamic tensile tests are performed at a low temperature($-30^{\circ}C$), the room temperature($21^{\circ}C$) and a high temperature($85^{\circ}C$). The tensile tests are carried out at strain rates of six intervals ranged from 0.001/sec to 100/sec in order to obtain the strain rate sensitivity. The flow stress decreases at the high temperature while the strain rate sensitivity increases. Tensile tests of polymers are rather tricky since polymer does not elongate uniformly right after the onset of yielding unlike the conventional steel. A new method is suggested to obtain the stress-strain curve accurately. A true stress-strain curve was estimated from modification of the nominal stress-strain curves obtained from the experiment. The modification was carried out with the help of an optimization scheme accompanied with finite element analysis of the tensile test with a special specimen. The optimization method provided excellent true stress-strain curves by enforcing the load response coincident with the experimental result. The material properties obtained from this paper will be useful to simulate the airbag expansion at the normal and harsh operating conditions.

초탄성 고무 물성평가를 위한 구형 압입시험의 수치접근법 (Numerical Approach Technique of Spherical Indentation for Material Property Evaluation of Hyper-elastic Rubber)

  • 이형일;이진행;김동욱
    • Elastomers and Composites
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    • 제39권1호
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    • pp.23-35
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    • 2004
  • 본 연구에서는 먼저 유한요소해석을 통해 주요 물성계수들이 압입시 하중-변위 곡선형상에 미치는 영향을 분석하였다. 또한 유한요소 압입해석을 통해 마찰계수의 영향으로 하중-변위 곡선, 시편하부의 단위부피당 변형에너지 및 변형률 주불변량이 바뀌지 않는 최적 압입깊이와 시편하부지점을 선정하였다. 이러한 관찰을 통해 하나의 요소에서 얻어지는 단위부피당 변형 에너지와 변형률 주불변량을 하중-변위 데이터와 모사 시킬 수 있는 무차원 함수를 얻을 수 있었으며, 이 과정에서 예측된 물성계수를 바탕으로 공칭응력-공칭변형률 곡선을 얻을 수 있었다.

폐플라스틱 재활용 폴리머콘크리트의 강도와 응력-변형률 특성 (Properties of Strength and Stress-Strain of Recycled-Plastic Polymer Concrete)

  • 조병완;구자갑;박승국
    • 콘크리트학회논문집
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    • 제17권3호
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    • pp.329-334
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    • 2005
  • 폴리머콘크리트는 시멘트 콘크리트에 비해 강도와 내구적 성능 등 여러면에 있어 우수하여 건설현장에서의 벽체용 패널, 통신용 맨흘, 기계설비의 기초, 지하연결박스 등 다양한 용도로 개발되고 사용되어지고 있다. 그러나 폴리머콘크리트는 그 결합재로 쓰이고 있는 수지의 비용이 높아 경제적인 면에서 불리하여 기존 수지를 대체할 수 있는 결합재에 관한 연구가 필요하다. 여기서, PET를 재활용한 폴리머콘크리트는 산업폐기물을 재활용한 것이므로 경제적인 건설 소재가 될 수 있으며, 친환경적인 효과를 가져올 수 있기 때문에 현재 연구가 활발하게 이루어지고, 사용 영역이 확대 될 것으로 전망된다. 하지만 아직까지 PET재활용 폴리머콘크리트의 응력-변형률 거동에 관해서는 기초적인 연구상태에 있다. 따라서, 본 연구에서는 폐 PET를 합성한 불포화 폴리에스터 수지를 폴리머콘크리트의 결합재로 이용하여 콘크리트를 제조하였으며, 수지량, 골재의 최대치수, 양생방법에 변화를 주었다. 그리고 변위제어가 가능한 M.T.S 장비를 사용하여 응력-변형률 곡선을 관찰하였다. 그 결과 PET 재활용 폴리머콘크리트의 압축강도는 수지의 함량, 굵은골재의 크기변화, 양생방법에 모두 영향을 받는 것으로 나타났다. 탄성계수의 변화는 수지의 함량이 크게 좌우하였으며, 굵은골재의 최대치수와 양생방법에서 크게 영향을 받지 않았다. 최대응력에서의 변형률은 수지의 함량과 굵은골재의 최대치수에 영향을 많이 받는 것으로 나타났다.

화재에 의한 지하공동구의 온도 및 응력해석 (Temperature and Stress Analysis of Box Culvert in Fire)

  • 김현준;임초롱;유현경;정철헌
    • 한국안전학회지
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    • 제26권6호
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    • pp.31-44
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    • 2011
  • This paper has presented a finite element analysis of structural behaviour of box culvert during and after fires. The fire tests were carried out in a furnace on RC slabs using the ISO 834 standard fire curve. The load capacity after cooling of the RC slab that was not loaded during the fire tests was evaluated by means of additional 3 points bending tests. In the past, stress-strain models of concrete under fire loading have been proposed by several researchers. Comparisons are made with the load-displacement relations of RC slabs after fire loading using the existing stress-strain models with temperature, such as Schneider, EUROCODE 2, Lie, Shi and Nan model. By comparing the load-displacement relations, Lie model was found to result in a maximum load about 2.0% higher than that of test. Based on the fire test results of RC slabs, this paper presents an extensive analytical study on the fire response of box culvert during and after fires.

복합조직강의 응력-변형 거동에 관한 이론치와 실험치 (The Theoretical and Experimental Value on the Stress-Strain Behavior of Dual Phase Steels)

  • 오택열;김석환;유용석
    • 한국표면공학회지
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    • 제26권2호
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    • pp.63-70
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    • 1993
  • The mechanical properties of ferrite-martensited dual phases steels are affected by the microstructural factors, such as martensited volume fractions, ferrite grain size, strength ratio, connectivity, etc. Two phase alloys are technologically important. However, there is a lack of understanding as to stress-strain behavior of dual phase alloy in terms of stress-strain behavior of each component phases. The lack of the understanding stems from the complex deformation behavior of two phase alloys. The aim of this study is to rationalize stress-strain behavior of dual phase alloy in terms of the stress-strain behavior of component phase by systematically considering all the factors listed above. It was found that for a given martensite volume fraction, the calculated stress-strain curve was higher for a finer particles size than for a coarse particle sized within the range of the strains considered, and this behavior was seen for all the different volume fraction alloys considered. The calculated stress-strain curves were compared with corresponding experimental curves, and in general, good agreement was found. The maximum difference in flow stress between the calculated and the experimental results occurs at the nearly beginning of the plastic deformation.

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Thermal aging of Gr. 91 steel in supercritical thermal plant and its effect on structural integrity at elevated temperature

  • Min-Gu Won;Si-Hwa Jeong;Nam-Su Huh;Woo-Gon Kim;Hyeong-Yeon Lee
    • Nuclear Engineering and Technology
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    • 제56권1호
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    • pp.1-8
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    • 2024
  • In this study, the influence of thermal aging on structural integrity is investigated for Gr. 91 steel. A commercial grade Gr. 91 steel is used for the virgin material, and service-exposed Gr. 91 steel is sampled from a steam pipe of a super critical plant. Time versus creep strain curves are obtained through creep tests with various stress levels at 600 ℃ for the virgin and service-exposed Gr. 91 steels, respectively. Based on the creep test results, the improved Omega model is characterized for describing the total creep strain curve for both Gr. 91 steels. The proposed parameters for creep deformation model are used for predicting the steady-state creep strain rate, creep rupture curve, and stress relaxation. Creep-fatigue damage is evaluated for the intermediate heat exchanger (IHX) in a large-scale sodium test facility of STELLA-2 by using creep deformation model with proposed creep parameters and creep rupture curve for both Gr. 91 steels. Based on the comparison results of creep fatigue damage for the virgin and service-exposed Gr. 91 steels, the thermal aging effect has been shown to be significant.

향상된 구형압입 고무 물성평가법 (Enhanced Spherical Indentation Techniques for Rubber Property Evaluation)

  • 황규민;오중수;이형일
    • 대한기계학회논문집A
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    • 제33권12호
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    • pp.1357-1365
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    • 2009
  • In this study, we enhance the numerical approach of Lee et al.$^{(1)}$ to spherical indentation technique for property evaluation of hyper-elastic rubber. We first determine the friction coefficient between rubber and indenter in a practical viewpoint. We perform finite element numerical simulations for deeper indentation depth. An optimal data acquisition spot is selected, which features sufficiently large strain energy density and negligible frictional effect. We then improve two normalized functions mapping an indentation load vs. deflection curve into a strain energy density vs. first invariant curve, the latter of which in turn gives the Yeoh-model constants. The enhanced spherical indentation approach produces the rubber material properties with an average error of less than 3%.