• 제목/요약/키워드: stress-wave velocity

검색결과 243건 처리시간 0.021초

두 상이한 등방성 이종재료용 동적 광탄성 하이브리드법 개발에 관한 연구 (A Study on the Development of the Dynamic Photoelastic Hybrid Method for Two Dissimilar Isotropic Bi-Materials)

  • 신동철;황재석;권오성
    • 대한기계학회논문집A
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    • 제25권3호
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    • pp.434-442
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    • 2001
  • When the interfacial crack of two dissimilar isotropic bi-materials is propagated with constant velocity along the interface, stress and displacement components are derived in this research. The dynamic photoelastic experimental hybrid method for bimaterial is introduced. It is assured that stress components and dynamic photoelastic hybrid method developed in this research are valid. Separating method of stress component is introduced from only dynamic photoelastic fringe patterns. Crack propagating velocity of interfacial crack is 80∼85% (in case of aluminum, 24.3∼25.9%) of Rayleigh wave velocity of epoxy resin. The near-field stress components of crack-tip are similar with those of pure isotropic material under static or dynamic loading, but very near-field stress components of crack-tip are different from those.

SH-wave in a piezomagnetic layer overlying an initially stressed orthotropic half-space

  • Kakar, Rajneesh;Kakar, Shikha
    • Smart Structures and Systems
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    • 제17권2호
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    • pp.327-345
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    • 2016
  • The existence of SH-wave in a piezomagnetic layer overlying an initially stressed orthotropic half-space is investigated. The coupled of differential equations are solved for piezomagnetic layer overlying an orthotropic elastic half-space. The general dispersion equation has been derived for both magnetically open circuit and magnetically closed circuits under the four types of boundary conditions. In the absence of the piezomagnetic properties, initial stress and orthotropic properties of the medium, the dispersion equations reduce to classical Love equation. The SH-wave velocity has been calculated numerically for both magnetically open circuit and closed circuits. The effect of initial stress and magnetic permeability are illustrated by graphs in both the cases. The velocity of SH-wave decreases with the increment of wave number.

Shear wave in a fiber-reinforced anisotropic layer overlying a pre-stressed porous half space with self-weight

  • Kakar, Rajneesh;Kakar, Shikha
    • Smart Structures and Systems
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    • 제18권5호
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    • pp.911-930
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    • 2016
  • The main purpose of this paper is to study the effects of initial stress, gravity, anisotropy and porosity on the propagation of shear wave (SH-waves) in a fiber-reinforced layer placed over a porous media. The frequency equations in a closed form have been derived for SH-waves by applying suitable boundary conditions. The frequency equations have been expanded and approximated up to $2^{nd}$ order of Whittaker's function. It has been observed that the SH-wave velocity decreases as width of fiber-reinforced layer increases. However, with the increase of initial stress, gravity parameter and porosity, the phase velocity increases. The results obtained are in perfect agreement with the standard results investigated by other relevant researchers.

등방성/직교이방성 이종재료의 진전 계면균열에 대한 동적 광탄성 실험 하이브리드 법 개발 (Development of the Dynamic Photoelastic Hybrid Method for Propagating Interfacial Crack of Isotropic/Orthotropic Bi-materials)

  • 황재석;신동철;김태규
    • 대한기계학회논문집A
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    • 제25권7호
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    • pp.1055-1063
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    • 2001
  • When the interfacial crack of isotropic/orthotropic bi-materials is propagated with constant velocity along the interface, stress and displacement components are derived in this research. The dynamic photoelastic experimental hybrid method for the bimaterial is introduced. It is assured that stress components and dynamic photoelastic hybrid developed in this research are valid. Separating method of stress components is introduced from only dynamic photoelastic fringe patterns. Crack propagating velocity of interfacial crack is 69∼71% of Rayleigh wave velocity of epoxy resin. The near-field stress components of bonded interface of bimaterial are similar with those of pure isotopic material and two dissimilar isotropic bimaterials under static or dynamic loading, but very near-field stress components of bonded interface of bimaterial are different from those.

압밀, 토모그래피, 액상화시험에서 벤더엘리먼트의 적용 (Application of Bender Elements in Consolidation, Tomography, and Liquefaction Tests)

  • 이종섭;이창호
    • 한국지반공학회논문집
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    • 제22권8호
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    • pp.43-54
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    • 2006
  • 본 논문은 벤더 엘리먼트를 압밀, 토모그래피, 그리고 액상화에 적용하는 방법을 다루었다. 모래와 점토를 이용하여 압밀 시험을 수행하면서 전단파 속도를 측정하여 하중 재하 및 제하 시기를 평가하였다. 전단파 속도는 유효응력의 함수이므로 전단파 속도를 이용하여 하중 재하시기를 결정할 수 있으나, 침하량 기준과 전단파 속도(유효응력) 메카니즘이 다를 수 있으므로 주의해야 한다. 또한 전단파 속도는 고결화 제어 구간(cemented controlled regime)과 응력 제어 구간(stress controlled regime)으로 구별할 수 있어 응력이력현상을 확인할 수 있다. 벤더 엘리먼트가 설치된 고정된 프레임에서 전단파 토모그래피가 가능하다. 낮은 구속응력상태와 진 삼축 장비 내에서 토모그래피 실험을 수행한 결과 전단파 토모그래피는 평균유효응력과 관련된 전단파 속도 변화의 관측에 사용될 수 있음을 보여 주였다. 한편 액상화와 같은 어떤 현상을 관측하기 위하여 반복 주기가 높은 방식의 전단파 트랜스-일루미네이션(trans-illumination)이 적용되었다. 전단파 속도와 크기의 전개는 액상화 동안 과잉간극수압의 경향과 평행함을 알 수 있었다. 본 논문에서 소개한 적용들은 벤더 엘리먼트가 실내 시험에서 전단파 검측에 상당히 효과적인 방법이 될 수 있음을 보여준다.

Stoneley wave propagation in nonlocal isotropic magneto-thermoelastic solid with multi-dual-phase lag heat transfer

  • Lata, Parveen;Singh, Sukhveer
    • Steel and Composite Structures
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    • 제38권2호
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    • pp.141-150
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    • 2021
  • In the present paper we have investigated the Stoneley wave propagation at the interface of two dissimilar homogeneous nonlocal magneto-thermoelastic media under the effect of hall current applied to multi-dual-phase lag heat transfer. The secular equations of Stoneley waves have been derived by using appropriate boundary conditions. The wave characteristics such as attenuation coefficients, temperature distribution and phase velocity are computed and have been depicted graphically. Effect of nonlocal parameter and hall effect are studied on the attenuation coefficient, phase velocity, temperature distribution change, stress component and displacement component. Also, some particular cases have been discussed from the present study.

Shear wave velocity of fiber reinforced cemented Toyoura silty sand

  • Safdar, Muhammad;Newson, Tim;Schmidt, Colin;Sato, Kenichi;Fujikawa, Takuro;Shah, Faheem
    • Geomechanics and Engineering
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    • 제25권3호
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    • pp.207-219
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    • 2021
  • Several additives are used to enhance the geotechnical properties (e.g., shear wave velocity, shear modulus) of soils to provide sustainable, economical and eco-friendly solutions in geotechnical and geo-environmental engineering. In this study, piezoelectric ring actuators are used to measure the shear wave velocity of unreinforced, fiber, cemented, and fiber reinforced cemented Toyoura sand. One dimensional oedometer tests are performed on medium dense specimens of Toyoura sand-cement-fiber-silica flour mixtures with different percentages of silica flour (0-42%), fiber and cement (e.g., 0-3%) additives. The experimental results indicate that behavior of the mixtures is significantly affected by the concentration of silica flour, fiber and cement additives. Results show that with the addition of 1-3% of PVA fibers, the shear wave velocity increases by only 1-3%. However, the addition of 1-4% of cement increases the shear wave velocity by 8-35%. 10.5-21% increase of silica flour reduces the shear wave velocity by 2-5% but adding 28-42% silica flour significantly reduces the shear wave velocity by 12-31%. In addition, the combined effect of cement and fibers was also found and with only 2% cement and 1% fiber, the shear wave velocity increase was found to be approximately 24% and with only 3% cement and 3% fibers this increased to 35%. The results from this study for the normalized shear modulus and normalized mean effective stress agree well with previous findings on pure Toyoura sand, Toyoura silty sand, fiber reinforced, fiber reinforced cemented Toyoura sand. Any variations are likely due to the difference in stress history (i.e., isotropic versus anisotropic consolidation) and the measurement method. In addition, these small discrepancies could be attributed to several other factors. The potential factors include the difference in specimen sizes, test devices, methods of analysis for the measurement of arrival time, the use of an appropriate Ko to convert the vertical stresses into mean effective stress, and sample preparation techniques. Lastly, it was investigated that there is a robust inverse relationship between α factor and 𝞫0 exponent. It was found that less compressible soils exhibit higher 𝜶 factors and lower 𝞫0 exponents.

유한요소법에 의한 등방성과 이방성 재료의 저속 충격 해석 (Low-Velocity Impact Analyses of Isotropic and Anisotropic Materials by the Finite Element Method)

  • 안국찬;박형렬
    • 한국안전학회지
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    • 제16권1호
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    • pp.9-17
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    • 2001
  • The purpose of this research is to analyze the impact resposes(impulsive stress and strain etc.) of anisotropic materials subjected to the low-velocity impact. For this purpose, a beam finite element program based on modified higher-order beam theory for anisotropic materials are developed and used to simulate the dynamic behaviors [contact force, displacement of ball and target, strain(stress) response histories] according to the changes of material property, stacking sequence, velocity and dimension etc.. Test materials for simulation are composed of $[0^{\circ}/45^{\circ}/0^{\circ}/-45^{\circ}/0^{\circ}]_{2s} and [90^{\circ}/45^{\circ}/90^{\circ}/-45^{\circ}/90^{\circ}]_{2s}$ stacking sequences. Finally, the results of this simulation are compared with those of wave propagation theory and then the impact responses and wave propagation phenomena are investigated.

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전단파 속도를 통한 모래의 전단강도 예측 (Shear Strength Estimation of Clean Sands via Shear Wave Velocity)

  • 유진권;박두희
    • 한국지반공학회논문집
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    • 제31권9호
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    • pp.17-27
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    • 2015
  • 벤더엘리먼트가 장착된 삼축압축시험장비를 이용하여 모래에 대한 일련의 압밀배수시험을 수행하였다. 상대밀도 및 유효구속응력 조건을 달리하여 각각의 조건별 응력-변형률 관계를 측정하였으며, 압밀이 종료된 시점에서의 전단파 속도를 측정함으로써 전단파 속도와 간극비, 유효응력, 그리고 전단강도와의 상관관계를 분석하였다. 분석 결과, 미소변형률에서의 전단파 속도로부터 계산된 최대전단탄성계수와 파괴 시의 축응력과 압밀 시의 구속응력의 합으로 정의되는 유효수직응력간에는 고유한 상관관계가 존재하는 것으로 나타났다. 도출된 전단탄성계수와 유효수직응력간의 상관관계는 유효구속응력을 정규화시킴으로써 정확도를 향상시켰다. 본 연구를 통해 제시된 상관관계를 통해 전단강도 및 내부 마찰각을 예측하였을 시, 실제 실내 시험을 통해 산출된 내부 마찰각을 정확하게 예측할 수 있는 것으로 나타났다. 이는 미소변형률에서의 전단파 속도를 기반으로 신뢰성 높은 파괴 시 전단강도, 나아가 내부 마찰각까지 예측이 가능하다는 것을 의미하며 기존 SPT-N value와 경험식을 통해 내부 마찰각을 예측하여 설계에 적용하는 방식의 불확실성을 개선해 줄 수 있는 매우 유용한 방법이라고 판단된다.

표면파를 이용한 쇼트피닝된 Al 7075 합금의 잔류응력 평가 (Characterization of Residual Stress in Shot Peened Al 7075 Alloy Using Surface Acoustic Wave)

  • 김정석;김용권;박익근;권숙인
    • 비파괴검사학회지
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    • 제26권5호
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    • pp.291-296
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    • 2006
  • 표면파를 이용하여 쇼트피닝된 Al 7075 합금의 잔류응력 분포를 평가하고자 하였다. 재료 내 표면층에 대한 잔류응력분포를 달리하기 위해서 피닝볼의 속도를 30m/s로 하여 쇼트피닝을 수행하였다. 표면파의 속도는 초음파현미경을 이용하여 V(z)곡선법으로 측정하였다. 쇼트피닝 후 비커스경도를 측정한 결과 쇼트피닝에 의한 소성변형으로 0.25mm 깊이까지 가공경화가 나타났다. 압축잔류응력이 증가하면서 표면파의 속도는 증가를 하였고 인장잔류응력이 작용할수록 표면파의 속도가 감소하였다. 표면파의 속도 변화는 X선 회절에 의해 측정한 잔류응력 변화와 밀접한 연관성을 나타내었다.