• 제목/요약/키워드: Elastic wave

검색결과 837건 처리시간 0.027초

초음파 음속측정에 의한 응력평가에 관한 연구 (Stress Evaluation by Measuring Ultrasonic Velocity)

  • 이범성
    • 한국정밀공학회지
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    • 제16권2호통권95호
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    • pp.138-144
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    • 1999
  • Longitudinal wave and shear wave velocity changes of PMMA Polymer meterial under the the unidirection load were measured. The Third-order elastic modulus and acousto-elastic modulus of PMMA are obtained. The theoretical and experemental values of the velocity change of each wave by stress are compared each other and the validity of theoretical expression is examinated.

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레이저 초음파 기법을 이용한 박막 탄성계수 측정 (Elastic modulus measurement of thin films using laser generated guided ultrasonic waves)

  • 조승현;허태훈;지봉규;안봉영;장강원
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2014년도 추계학술대회 논문집
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    • pp.550-554
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    • 2014
  • Regarding thin films in MEMS/NEMS structures, the exact evaluation of mechanical properties is very essential to enhance the reliability of their design and manufacturing. However, such methods as a tensile test and a resonance test, general methods to measure elastic moduli, cannot be applied to thin films since its thickness is so small. This work concerns guided wave based elastic modulus measurement method. To this end, guided wave excitation and detection system using a pulsed laser and a laser interferometry has been established. Also an elastic modulus extraction algorithm from the measured guided wave signal was developed. Finally, it was applied to actual thin film structures such as Ni-Si and Al-Si multilayers. From experimental results, we confirm that the proposed method has considerable feasibility to measure elastic properties of thin films.

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Preliminary numerical study on long-wavelength wave propagation in a jointed rock mass

  • Chong, Song-Hun;Kim, Ji-Won;Cho, Gye-Chun;Song, Ki-Il
    • Geomechanics and Engineering
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    • 제21권3호
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    • pp.227-236
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    • 2020
  • Non-destructive exploration using elastic waves has been widely used to characterize rock mass properties. Wave propagation in jointed rock masses is significantly governed by the characteristics and orientation of discontinuities. The relationship between spatial heterogeneity (i.e., joint spacing) and wavelength for elastic waves propagating through jointed rock masses have been investigated previously. Discontinuous rock masses can be considered as an equivalent continuum material when the wavelength of the propagating elastic wave exceeds the spatial heterogeneity. However, it is unclear how stress-dependent long-wavelength elastic waves propagate through a repetitive rock-joint system with multiple joints. A preliminary numerical simulation was performed in in this study to investigate long-wavelength elastic wave propagation in regularly jointed rock masses using the three-dimensional distinct element code program. First, experimental studies using the quasi-static resonant column (QSRC) testing device are performed on regularly jointed disc column specimens for three different materials (acetal, aluminum, and gneiss). The P- and S-wave velocities of the specimens are obtained under various normal stress levels. The normal and shear joint stiffness are calculated from the experimental results using an equivalent continuum model and used as input parameters for numerical analysis. The spatial and temporal sizes are carefully selected to guarantee a stable numerical simulation. Based on the calibrated jointed rock model, the numerical and experimental results are compared.

SHPB인장 시험에서 알루미늄 합금의 진응력-진변형률 관계

  • 양현모;민옥기
    • 대한기계학회논문집A
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    • 제24권8호
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    • pp.1917-1922
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    • 2000
  • The split Hokinson pressure bar(SHPB) test has been used to find the mechanical property of materials at high strain rate. A tensile split Hopkinson pressure bar test system is developed and the threaded tensile specimen and the split collar are placed between elastic bars. When the compressive elastic wave generated by a striker is transferred from the transmit bar to the incident bar, some elastic wave is reflected at the threaded parts of the specimen and the transmit bar. This reflected wave can interfere with the transmitted wave. A proper length of elastic bars and the location of strain gage in these elastic bars are determined to avoid this interference. In order to avoid the interference of elastic wave reflected at the threaded parts of specimen and elastic bar, the length of transmit bar must be longer than that of incident bar. Strain gage in transmit bar must be located as close as possible from the interface of a transmit bar and specimen. In the developed tensile SHPB test system, A12011-T3 and A17075-T6 are tested to get the true stress-strain relation in the range of strain rate at $10^3/sec$

탄성파의 응력평가를 위한 가시화시스템 설계 (Design of Visualization System for Stress Evaluation of Elastic Wave)

  • 남영현
    • 대한기계학회논문집A
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    • 제32권7호
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    • pp.576-582
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    • 2008
  • This paper describes a synthesized photoelastic method developed for the visualization and evaluation of sound pressure distribution of elastic wave in a solid. The visualization of wave stress field is achieved by synthesizing two photoelastic pictures, in which the direction of the principal axis of linear polariscopes differs by $45^{\circ}$. From the analysis of the wave stress distribution using this method, it is possible to evaluate the characteristics of elastic waves in a solid, such as the intensity of stress, directivity and resolution characteristics of the wave emitted from a commercial probe, and characteristics of scattering from various types of defects.

벤더엘리먼트에서 발생하는 탄성파의 방향성에 대한 실험적 연구 (Experimental study on directivity of the elastic wave using bender elements)

  • 최종윤;김현기;조남준
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.705-710
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    • 2010
  • Bender element is made of connecting two piezoelectric elements which have different polarities from each other, and is a kind of sensors which can be used either way as a source making elastic wave or a receiver. Elastic waves generated by stimulating the bender elements can be decomposed to P-wave and S-wave propagation. Numerical and expeimental studies are conducted, and results show that multiple measurements are recommended to determine wave arrivals from the received signals.

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Stochastic elastic wave analysis of angled beams

  • Bai, Changqing;Ma, Hualin;Shim, Victor P.W.
    • Structural Engineering and Mechanics
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    • 제56권5호
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    • pp.767-785
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    • 2015
  • The stochastic finite element method is employed to obtain a stochastic dynamic model of angled beams subjected to impact loads when uncertain material properties are described by random fields. Using the perturbation technique in conjunction with a precise time integration method, a random analysis approach is developed for efficient analysis of random elastic waves. Formulas for the mean, variance and covariance of displacement, strain and stress are introduced. Statistics of displacement and stress waves is analyzed and effects of bend angle and material stochasticity on wave propagation are studied. It is found that the elastic wave correlation in the angled section is the most significant. The mean, variance and covariance of the stress wave amplitude decrease with an increase in bend angle. The standard deviation of the beam material density plays an important role in longitudinal displacement wave covariance.

유한차분법을 이용한 3차원 지진파 전파 모의 (Three-Dimensional Simulation of Seismic Wave Propagation in Elastic Media Using Finite-Difference Method)

  • 강태섭
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2000년도 추계 학술발표회 논문집 Proceedings of EESK Conference-Fall 2000
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    • pp.81-88
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    • 2000
  • The elastic wave equation is solved using the finite-difference method in 3D space to simulate the seismic wave propagation. It is based on the velocity-stress formulation of the equation of motion on a staggered grid. The nonreflecting boundary conditions are used to attenuate the wave field close to the numerical boundary. To satisfy the stress-free conditions at the free-surface boundary, a new formulation combining the zero-stress formalism with the vacuum one is applied. The effective media parameters are employed to satisfy the traction continuity condition across the media interface. With use of the moment-tensor components, the wide range of source mechanism parameters can be specified. The numerical experiments are carried out in order to test the applicability and accuracy of this scheme and to understand the fundamental features of the wave propagation under the generalized elastic media structure. Computational results show that the scheme is sufficiently accurate for modeling wave propagation in 3D elastic media and generates all the possible phases appropriately in under the given heterogeneous velocity structure. Also the characteristics of the ground motion in an sedimentary basin such as the amplification, trapping, and focusing of the elastic wave energy are well represented. These results demonstrate the use of this simulation method will be helpful for modeling the ground motion of seismological and engineering purpose like earthquake hazard assessment, seismic design, city planning, and etc..

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탄성계수 및 간극비 평가를 위한 현장 관입형 탄성파 및 전기비저항 프로브 (Field Elastic Wave and Electrical Resistivity Penetrometer for Evaluation of Elastic Moduli and Void Ratio)

  • 윤형구;김동휘;이우진;이종섭
    • 대한토목학회논문집
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    • 제30권2C호
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    • pp.85-93
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    • 2010
  • 전단 강성은 지반 거동을 이해하기 위한 필수적인 요소로 인식되고 있으며, 특히 탄성계수 및 간극비는 구조물의 기본적인 설계 정수로서 그 중요성이 점차 증가하고 있다. 본 연구의 목적은 전단파와 압축파 같은 탄성파 및 전기비저항 측정이 가능한 현장 탄성파 및 전기비저항 측정 장비(FVRP)를 개발하고, 이를 이용하여 대상지반의 탄성계수 및 간극비를 산정하는 것이다. 압축파 및 전단파는 각각 피에조 디스크 엘리먼트와 벤더 엘리먼트를 이용하여 측정하였다. 그리고 전기비저항은 소형 전기비저항 측정 프로브를 제작하여FVRP 선단에 설치하여 측정하였다. 개발된 장비는 실내의 대형토조와 현장에 적용되었다. 대형 토조실험의 경우, 모래와 점토를 슬러리 상태에서 혼합하여 지반을 조성한 후 상재하중을 가하여 조성된 지반을 압밀 시킨 후 진행되었으며, 탄성파 및 전기비저항의 측정은 매 심도 1cm 간격으로 수행되었다. 현장 실험은 남해안 지역에서 수행되었으며, 탄성파 및 전기비저항 측정은 관입심도 6m부터 20m까지 10cm 간격으로 수행하였다. 토조 및 현장 실험을 통해 측정된 탄성파와 전기비저항은 이론적인 관계식을 이용하여 탄성계수 및 간극비로 환산되었다. 탄성파와 전기비저항을 이용한 간극비는 부피를 이용하여 산정한 간극비와 유사한 값을 나타내었다. 본 연구에서 개발된 탄성파와 전기비저항을 동시에 측정할 수 있는 FVRP는 연약지반의 탄성계수 및 간극비 산정에 유용한 장비가 될 수 있음을 보여준다.

Wave Propagation 기법을 이용한 콘크리트의 압축강도 추정 (Estimating Concrete Compressive Strength Using Wave Propagation Method)

  • 권수안;안지환;서영찬;조용주
    • 한국도로학회논문집
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    • 제7권3호
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    • pp.63-69
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    • 2005
  • 콘크리트 포장의 품질관리 항목 중에서 압축 강도는 매우 중요한 인자로 여겨져 왔다. 압축 강도 값을 얻기 위해 현장에서 코아를 채취하여 이를 품질관리의 기준으로 사용하였다. 그렇지만, 코아를 채취하는 것은 많은 인력과 시간을 필요로 하며 실제로 현장의 품질관리를 정확히 추정하는데 많은 어려움이 있다. 또한 포장의 설계 방법도 탄성계수에 근거한 역학적-경험적 방법이 도입되고 있다. 이러한 현장의 품질관리 문제점을 해결하고, 포장설계와의 연계를 위해 비파괴 실험방법이 도입되고 있다. 다양한 비파괴 실험 방법 중에서 이론적으로 탄성계수를 추정할 수 있는 방법은 Wave Propagation방법이므로 본 연구에서는 Wave Propagation 방법을 도입하였다. 본 연구에서는 현장의 품질관리를 수행하는 방법 중의 일환으로 실내에서 제작한시편의 압축 강도와 비파괴 방법으로 얻은 탄성 계수와의 상관성을 검토하였으며, 비파괴 방법으로 얻은 탄성 계수로부터 압축 강도를 추정 할 때 배합별 특성에 대한 분석을 실시하였다. 비파괴 실험에서 구한 탄성계수와 압축강도와의 상관성은 매우 우수한 것으로 판명되었으며, 골재의 종류별로 상관성이 서로 상이하게 나타남을 알 수 있었다.

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