• 제목/요약/키워드: elastic tool

검색결과 266건 처리시간 0.029초

관통균열 세관의 파열압력 예측을 위한 탄소성 파괴역학 해석 (Elastic-plastic Fracture Mechanics Analyses for Burst Pressure Prediction of Through-wall Cracked Tubes)

  • 장윤석;문성인;김영진;황성식;김정수;김윤재
    • 대한기계학회논문집A
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    • 제29권10호
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    • pp.1361-1368
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    • 2005
  • The structural and leakage integrity of steam generator tubes should be sustained all postulated loads with appropriate margin even if a crack is present. During the past three decades, for effective integrity evaluation, several limit load solutions have been used world-widely. However, to predict accurately load carrying capacities of specific components under different conditions, the solutions have to be modified by using lots of experimental data. The purpose of this paper is to propose a new burst pressure estimation scheme based on fracture mechanics analyses for steam generator tube with an axial or circumferential through-wall crack. A series of three dimensional elastic-plastic finite element analyses were carried out and, then, closed-form estimation equations with respect to both J-integral and crack opening displacement were derived through reference stress method. The developed engineering equations were utilized for structural integrity evaluation and the resulting data were compared to the corresponding ones fiom experiments as well as limit load solutions. Thereafter, since the effectiveness was proven by promising results, it is believed that the proposed estimation scheme can be used as an efficient tool for integrity evaluation of cracked steam generator tubes.

궤도노반 강성차이를 고려한 동평판재하시험(LWDT) 동탄성계수 산정공식 수정계수 (Correction Factors for Modulus Calculation Equation used in Light Weight Deflectometer Considering Track Foundation)

  • 최찬용;이진욱;임유진;조호진
    • 한국철도학회논문집
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    • 제18권1호
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    • pp.53-62
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    • 2015
  • 동평판재하시험기(LWDT)는 궤도노반 등의 다짐강성 측정을 위하여 개발된 시험기이며 낙하추를 자유낙하시킬 때 가속도계를 이용하여 다짐표면의 처짐량을 측정, 반무한 탄성체로 가정된 노반의 동탄성계수를 결정한다. 본 연구에서는 LWDT시험기의 구성과 구동 메커니즘 및 동탄성계수 추출공식의 유효성을 상세히 분석하였다. 특히, 2층구조 노반 위에서 LWDT 시험시 상부층의 강성평가 유효깊이를 유한요소해석으로부터 결정하였다. 또한, LWDT 시험시 노반의 강성 차이를 고려하여 사용할 수 있는 동탄성계수 추출공식 수정계수를 제시하였다.

Modeling the Calculation of Lateral Accelerations in Railway Vehicles as a Tool of Alignment Design

  • Nasarre, J.;Cuadrado, M.;Requejo, P.Gonzalez;Romo, E.;Zamorano, C.
    • International Journal of Railway
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    • 제2권3호
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    • pp.118-123
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    • 2009
  • Railway track alignment Standards set a minimum lenght value for straight and circular alignments (art. 5.2.9.), in order to ensure passenger ride comfort in railway vehicles of which dynamic oscillations will thus have to be limited. The transitions between alignments can cause abrupt changes (usually called discontinuities or singular points of the alignment) of curvature, of rate of change of curvature or of rate of change of cant. A passenger is likely to experience effects due to the excitation of the elastic suspension of the vehicle which generates oscillations that are damped as the vehicle moves away from the singularity. The amplitude of these oscillations should be adequately attenuated by the damping of the suspension system within the interval between two successive singular points, especially to avoid resonances. Therefore minimum lengths between two successive singular points are stated in alignment standards. Nevertheless, these nonnative values can be overly conservative in some cases. As an alternative, track alignment designers could try to assess how much the excitation has been attenuated between two successive singular points and thus assess at which point a new singularity may be present without affecting ride comfort. Although such assessment can be made with commercial SW packages which simulate the dynamic behavior of a vehicle considered as a set of rigid bodies interconnected with elastic elements simulating the suspension systems (such as SIMPACK, ADAMS or VAMPIRE), a simplified and user-friendly computation method (based upon the analytical solution of differential equations governing the phenomenon) is made available in this paper to track design engineers, not always used to working with full dynamic models.

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암석 물리 모델링: 기술 보고 및 적용 사례 (Rock Physics Modeling: Report and a Case Study)

  • 이광훈
    • 자원환경지질
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    • 제49권3호
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    • pp.225-242
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    • 2016
  • 암석 물리(rock physics)는 암석의 물성과 탄성파 자료의 정량적인 연결 고리로서 저류암 특성화와 모니터링 등에 적용되는 중요한 도구이다. 암석 물리를 기반으로 시추공 검층 자료로부터 공극 유체와 구성 성분이 다양한 암석의 성질을 대표하는 유효 탄성 계수(effective elastic constants)를 모델링하여 탄성파 자료에 적용함으로서 탄성파 자료전체에 대한 저류암 분포와 공극 유체를 유추할 수 있다. 본 보고에서는 먼저 Voigt, Reuss, Hashin-Shtrikman의 유효 탄성 계수 한계값과 Gassmann 방정식을 이용한 유체 치환에 대해서 설명한 후에 공극률이 비교적 높은 저류 사암에 널리 적용되는 접촉(contact) 암석 물리 모델들을 소개했다. 그리고 접촉 암석 물리 모델 중에서 분포 깊이가 어느 정도 일정하고 공극률이 비교적 높은 사암에 적합한 것으로 알려진 일정 교결량(constant-cement) 모델을 북해 유전의 검층 자료에 적용하여 암석 물리 견본(rock physics template)을 완성했다. 마지막으로 이 암석 물리 견본과 현장 2D 탄성파 자료의 중합전 역산 결과로부터 이 유전의 저류암과 덮개암, 공극 유체 분포를 예측해 보았다.

A NEW FEEDBACK TECHNIQUE FOR TUNNEL SAFETY BY USING MEASURED DISPLACEMENTS DURING TUNNEL EXCAVATION

  • Sihyun PARK;Yongsuk SHIN;Sungkun PARK
    • 국제학술발표논문집
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    • The 3th International Conference on Construction Engineering and Project Management
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    • pp.432-439
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    • 2009
  • This research project was carried out to develop the technique to assess quantitatively and rapidly the stability of a tunnel by using the measured displacement at the tunnel construction site under excavation. To achieve this purpose, a critical strain concept was introduced and applied to an assessment of a tunnel under construction. The new technique calculates numerically the strains of the surrounding ground by using the measured displacements during excavation. A numerical practical system was developed based on the proposed analysis technique in this study. The feasibility of the developed analysis module was verified by incorporating the analysis results obtained by commercial programs into the developed analysis module. To verify the feasibility of the developed analysis module, analysis results of models both elastic and elasto-plastic grounds were investigated for the circular tunnel design. Then the measured displacements obtained in the field are utilized practically to assess the safety of tunnels using critical strain concept. It was verified that stress conditions of in-situ ground and ground material properties were accurately assessed by inputting the calculated displacement obtained by commercial program into this module for the elastic ground. However for the elasto-plastic ground, analysis module can reproduce the initial conditions more closely for the soft rock ground than for the weathered soil ground. The stability of tunnels evaluated with two types of strains, that is, the strains obtained by dividing the crown displacement into a tunnel size and the strains obtained by using the analysis module. From this study, it is confirmed that the critical strain concept can be fully adopted within the engineering judgment in practical tunnel problems and the developed module can be used as a reasonable tool for the assessment of the tunnel stability in the field.

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지진에 대비한 기초분리 교량의 설계법에 관한 연구(II) (A Study of Seismic Resistant Design for Base-Isolated Bridges(II))

  • 이상수;유철수
    • 한국강구조학회 논문집
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    • 제9권4호통권33호
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    • pp.637-647
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    • 1997
  • 제1편에서 언급한 바와 같이 기초분리 장치의 사용은 지진의 위험으로부터 구조물의 안전을 유지시키고, 지진 응답 감소에 필요한 비선형 거동은 교체가 용이한 분리장치에 국한 함으로써 구조물의 중요 부재들은 탄성 거동을 확보할 수 있다. 본 연구는 강재 Damper를 사용한 교량의 지진 응답에 대하여 연구하였다. 강재 Damper의 특성에 따른 응답을 분리 장치의 매개 변수 영향 별로 분리하여 검토 함으로써 지진시 거동을 파악하고, 적정한 분리 장치를 선정 할 수 있는 기준과 단순화된 설계 방법을 제시하였다. 제시된 시방서 형식의 설계 방법은 비선형 스펙트럼에 의한 모드 해석법으로, 관성력 또는 기초 분리 장치를 포함한 연결부 및 하부 구조의 높이별 설계력을 비교적 정확하게 평가될 수 있다. 따라서 제시된 설계 방법은 기초 분리된 교량의 기본 또는 최종 설계용으로 사용될 수 있을 것이다. 또한, 설계 방법의 타당성 검증을 위해 bilinear 이력의 강재 Damper를 사용한 P.C 교량에 대해 인공 지진파를 이용한 비선형 시간 이력 해석과 설계 응답 스펙트럼에 의한 탄성 수치 해석을 수행하여 단순 설계 방법과 비교 검토하였다.

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Homogenization based continuum damage mechanics model for monotonic and cyclic damage evolution in 3D composites

  • Jain, Jayesh R.;Ghosh, Somnath
    • Interaction and multiscale mechanics
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    • 제1권2호
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    • pp.279-301
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    • 2008
  • This paper develops a 3D homogenization based continuum damage mechanics (HCDM) model for fiber reinforced composites undergoing micromechanical damage under monotonic and cyclic loading. Micromechanical damage in a representative volume element (RVE) of the material occurs by fiber-matrix interfacial debonding, which is incorporated in the model through a hysteretic bilinear cohesive zone model. The proposed model expresses a damage evolution surface in the strain space in the principal damage coordinate system or PDCS. PDCS enables the model to account for the effect of non-proportional load history. The loading/unloading criterion during cyclic loading is based on the scalar product of the strain increment and the normal to the damage surface in strain space. The material constitutive law involves a fourth order orthotropic tensor with stiffness characterized as a macroscopic internal variable. Three dimensional damage in composites is accounted for through functional forms of the fourth order damage tensor in terms of components of macroscopic strain and elastic stiffness tensors. The HCDM model parameters are calibrated from homogenization of micromechanical solutions of the RVE for a few representative strain histories. The proposed model is validated by comparing results of the HCDM model with pure micromechanical analysis results followed by homogenization. Finally, the potential of HCDM model as a design tool is demonstrated through macro-micro analysis of monotonic and cyclic damage progression in composite structures.

고령자의 낙상예방을 위한 운동처방에 대한 고찰 (A Literature Review of Exercise Intervention for Fall Prevention in the Elderly)

  • 김미숙;이은남
    • 근관절건강학회지
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    • 제13권1호
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    • pp.7-19
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    • 2006
  • Falls are a major sources of death and injury in elderly people. Aged-related changes in the physiological systems which contribute to the maintenance of balance are well documented in older adults. These changes coupled with age-related changes in muscle and bone are likely to contribute to an increased risk of falls in this population. Regular exercise may be one way of preventing falls and fall-related fractures. However, the optimal exercise prescription to prevent falls has not yet been defined. On the literature review of exercise intervention for fall prevention in the elderly, exercise appeared to be a useful tool in fall prevention by improving fall risk factors. The optimum exercise prescription; moderate intensity frequency of 3-4 times per week, duration of 30-60minutes can contribute to decreased hazards and number of fall. Fall prevention protocol should include safety, falling effect, enjoyment, and easiness to follow for older people. Effective exercise programs suggested for fall prevention were such as weight-bearing exercise, resistance exercise, lower muscle strength with elastic band, swiss ball exercise walking, tai chi, and yoga.

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2차원 시분해 레이저 유도 백열법을 이용한 에틸렌 확산 화염에서의 매연 입자 크기 측정 (Soot Primary Particle Size Measurement in a Ethylene Diffusion Flame Using Time-Resolved Laser-Induced Incandescence)

  • 손무강;문건필;김규보;이종호;정동수;전충환;장영준
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1140-1145
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    • 2004
  • Laser-induced incandescence (LII) is introduced as a valuable tool for the characterization of nanoparticles in flame environments. This technique is based on the heating of the particles by a short laser pulse and the subsequent detection of the thermal radiation. It has been applied successfully for the investigation of soot in different fields of application. The evaluation of the temporal decay of the laser-induced incandescence (LII) signal from soot particles is introduced as a technique to obtain two-dimensional distributions of particle sizes and is applied to a laminar diffusion flame. This novel approach to soot sizing exhibits several theoretical and technical advantages compared with the established combination of elastic scattering and LII, especially as it yields absolute sizes of primary particles without requiring calibration. With this technique a spatially resolved 2-D measurement of soot primary particle sizes is feasible in a combination process form the ratio of emission signals obtained at two delay times after a laser pulse, as the cooling behavior is characteristic of particle size.

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광소자 정렬용 극초정밀 다축 스테이지의 구동 메커니즘에 관한 연구 (A Study on the Motion Mechanism of Multi-Axis Ultra Precision Stage for Optical Element Alignment)

  • 정상화;김광호;차경래;이경형;송석
    • 한국공작기계학회논문집
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    • 제15권1호
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    • pp.8-16
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    • 2006
  • The communication through optical fiber is taking an important role of the expansion of communication network with excellent transmitting rate and quality. As the optical communication is introduced to the backbone network at first and becomes a general communication method of network, the demand of kernel parts of optical communication such as PLC(Planar Light Circuit), Coupler, and WDM(Wavelength Division Multiplexing) element increases. The alignment and the attachment technology are very important in the fabrication of optical elements. In this paper, the driving mechanism of ultra precision stage is studied with the aim of optimal design of stage. The travel and the resolution of stage are investigated. The hysteresis of the stage is generated because of PZT actuator. The hysteresis and the inverse hysteresis are modeled in X, Y, and Z-axis motion. The input data of desired displacement of the stage according to input voltage is obtained from the inverse hysteresis equation. In the result of experiments with the input data, the errors due to hysteresis are well compensated.