• 제목/요약/키워드: SH-wave

검색결과 100건 처리시간 0.034초

필렛 용접부의 비접촉 초음파 검사 기법 (Non-contact Ultrasonic Inspection Technology of Fillet Weldments)

  • 박익근;이철구;김현묵;박태성;김용권;조용상;송원준;안형근
    • Journal of Welding and Joining
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    • 제23권5호
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    • pp.37-42
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    • 2005
  • The non-destructive Inspection of the fillet weldment has difficulties due to its geometrical complexity and uneasy access. The surface shear horizontal wave (SH-wave), however, has been successfully applied to the detection of cracks on the surface and sub-surface of the filet weldment heel part. The conventional ultrasonic inspection using the surface SH-wave is usually a contact method using piezoelectric transducer. Thus, it is not suitable for a field application because the reliability and repeatability of inspection are significantly affected by test conditions such as couplant, contact pressure and pre-process. In order to overcome this problem, a non-contact SH-wave inspection method using EMAT is propose. The experimental results with this non-contact method are compared with those with a conventional ultrasonic method in fillet weldment with slit type defects. It is shown that the non-contact inspection technique requires simple procedure and less time in the fillet weldment inspection.

SH파의 균열 산란장 해석: 근사해와 엄밀해의 비교 (SH Wave Scattering from Cracks: Comparisons of Approximate and Exact Solutions)

  • 정현조;박문철;송성진
    • 비파괴검사학회지
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    • 제24권4호
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    • pp.354-361
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    • 2004
  • SH파의 균열 산란장 해석을 위하여 먼저 균열개구변위(COD)를 미지수로 하는 경계적분방정식(BIE)을 수립하였다. 폭 2a의 고립된 2차원 균열(slit)에 임의의 각도로 입사하는 시간조화 평면파에 대하여 COD를 주파수 ka의 함수로 구하였으며, 다른 연구 결과와 잘 일치함을 확인하였다. 초음파 비파괴평가에서 중요한 변수로 취급되는 원거리 산란음장을 두 가지 방법으로 구하였다. 펄스-에코 모드에서 Kirchhoff 근사법과 BIE-COD에 기초한 엄밀해의 결과를 입사각도와 주파수의 함수로 계산하고 서로 비교하였다. SH파가 균열면에 수직으로 입사/반사한 경우 산란음장은 최대가 되고, 두 방법은 정확히 일치하였다. 수직입사에서 멀어질수록 산란진폭은 모두 급격히 감소하며, Kirchhoff 근사법은 엄밀해와 차이를 보였다. 시간 영역의 원거리 산란진폭 거동을 구하기 위하여 대역폭을 갖는 중심주파수 10MHz를 곱하고, 퓨리에 역변환으로 시간영역 신호를 계산하였다. 경사 입사시에 시간영역의 진폭은 좌우 균열 선단에 의해 분리되며, 두 신호 사이의 시간 간격은 균열의 크기와 관련된다 엄밀해와 비교할 때 Kirchhoff 근사법은 정확한 시간 간격을 제공하나, 동일한 크기의 균열 선단 신호를 제공하는 부정확함이 있다.

Response of anisotropic porous layered media with uncertain soil parameters to shear body-and Love-waves

  • Sadouki, Amina;Harichane, Zamila;Elachachi, Sidi Mohammed;Erken, Ayfer
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.313-322
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    • 2018
  • The present study is dedicated to investigate the SH body-as well as Love-waves propagation effects in porous media with uncertain porosity and permeability. A unified formulation of the governing equations for one-dimensional (1-D) wave propagation in anisotropic porous layered media is presented deterministically. The uncertainties around the above two cited parameters are taken into account by random fields with the help of Monte Carlo Simulations (MCS). Random samples of the porosity and the permeability are generated according to the normal and lognormal distribution functions, respectively, with a mean value and a coefficient of variation for each one of the two parameters. After performing several thousands of samples, the mathematical expectation (mean) of the solution of the wave propagation equations in terms of amplification functions for SH waves and in terms of dispersion equation for Love-waves are obtained. The limits of the Love wave velocity in a porous soil layer overlaying a homogeneous half-space are obtained where it is found that random variations of porosity change the zeros of the wave equation. Also, the increase of uncertainties in the porosity (high coefficient of variation) decreases the mean amplification function amplitudes and shifts the fundamental frequencies. However, no effects are observed on both Love wave dispersion and amplification function for random variations of permeability. Lastly, the present approach is applied to a case study in the Adapazari town basin so that to estimate ground motion accelerations lacked in the fast-growing during the main shock of the damaging 1999 Kocaeli earthquake.

탄성파 지정선에 관한 연구 (a study on the elastic wave delay line)

  • 김종상
    • 대한전자공학회논문지
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    • 제11권6호
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    • pp.1-15
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    • 1974
  • 본 연구는 탄성파 지연선에 이용되는 탄성표면파중에서 SH표면파 모우드에 대하여 이론적 해석을 하였으며 그 결과 전기-기계적 결합계수가 크며 또한 여전 매질내 깊이 방향으로 아주 작은 감쇠률을 갖고 표면을 따라 전파됨을 알았단. 예로서 PZT-4인 경우 에너지의 80%가 감쇠되는 깊이는 190파장이 된다. 또한 탄성표면파 지연선을 하나의 계단자강으로서 취급하여 삽입손실를 구하였으며 특히 SH표면파 모우드와 같이 전기-기계론 결합계수가 큰 경우는 인터디지탈 트랜스듀셔의 전극폭과 윤극간 간격 사이의 비에 따라 중심 주파수가 현저히 달라진다. 그리고 탄성파 지연선의 온도계수를 벌크파인 종파, 횡파에 대하여 구하였으며 LiTaO2 Z축방향 전파의 횡파는 지연시간의 온도계수가 5.4X10-6/℃로 아주 작아짐을 알았다. 또한 LiNbO3의 130°, 64° 로테이트 Y캇트, X전파의 탄성표면파의 온도계수가 이론치와 잘 일치함을 실험적으로 확인하였다.

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조향 자기변형 트랜스듀서의 전단파 방사 패턴 (Radiation Pattern of SH Waves Generated by an Orientation-adjustable Patch-type Magnetostrictive Transducer)

  • 전병철;이주승;조승현;김윤영
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 춘계학술대회논문집
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    • pp.807-808
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    • 2008
  • This is concerned with the radiation pattern of elastic waves in a plate generated by an orientation-adjustable patch-type magnetostrictive transducer. In general, not only the Lamb waves but also shear horizontal (SH) waves are produced by the deformation of the circular magnetostrictive patch bonded to a plate. Among the two types of waves, this paper investigates the radiation patterns of SH waves. A number of experimental results are presented. They are also accurately predicted by a theory developed by the present authors. Experimental findings were explained by a theoretical analysis.

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재료내 기공결함에 의한 SH형 초음파 원거리 산란장의 신호특성에 대한 수치해석 (Numerical Analysis on the Signal Characteristics for Scattered Far-field of Ultrasonic SH-Wave by the Internal Cavity)

  • 이준현;이서일;박윤원
    • 대한기계학회논문집A
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    • 제24권1호
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    • pp.163-172
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    • 2000
  • In this study, the scattered far-field due to a cavity embedded in infinite media subjected to the incident SH-wave was calculated by the boundary element method. The effects of cavity shape and distance between internal cavity and internal point in infinite media were considered. The scattered far-field of the frequency domain was transformed into the signal of the time domain by using the Inverse Fast Fourier Transform(IFFT). It was found that the amplitude of scattered signal in time domain decreased with the increase of the distance between the detecting points of ultrasonic scattered field and the center of internal cavity in media. In addition, the time delay was clearly found in time domain waveform as the distance between the detecting points of ultrasonic scattered field and the center of internal cavity was gradually increased.

Simplified analytical solution of tunnel cross section under oblique incident SH wave in layered ground

  • Huifang Li;Mi Zhao;Jingqi Huang;Weizhang Liao;Chao Ma
    • Earthquakes and Structures
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    • 제24권1호
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    • pp.65-79
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    • 2023
  • A simplified analytical solution for seismic response of tunnel cross section in horizontally layered ground subjected to oblique incidence of SH wave is deduced in this paper. The proposed analytical solution consists of two main steps: free-field response in layered field and tunnel response. The free field responses of the layered ground are obtained by one-dimensional finite element method in time domain. The tunnel lining is treated as a thick-wall cylinder to calculate the tunnel response, which subject to free field stress. The analytical solutions are verified by comparing with the dynamic numerical results of two-dimensional ground-lining interaction analysis under earthquake in some common situations, which have a good agreement. Then, the appropriate range of the proposed analytical solution is analyzed, considering the height of the layered ground, the wavelength and incident angle of SH wave. Finally, by using the analytical solutions, the effects of the ground material, burial depth of the tunnel, and lining thickness and the slippage effect at the ground-lining interface on the seismic response of tunnels are investigated. The proposed solution could serve as a useful tool for seismic analysis and design of tunnels in layered ground.

밀리미터파 PHEMT의 도핑층 설계에 따른 특성 변화 (The Effect of Doping Layer Structures on the Performance of Millimeter-wave PHEMT's)

  • 박훈;박진국;정지학;박현창
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2000년도 하계종합학술대회 논문집(2)
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    • pp.286-289
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    • 2000
  • PHEMT's with three different doping structures, -SH(single-heterojunction), DH (double-heterojunction), and DC(doped-channel)-,were designed, fabricated and characterized to study the effect of doping layer structures on the performance of millimeter-wave PHEMT's. 0.25${\mu}{\textrm}{m}$ DH-PHEMT with below-channel doping of 1$\times$10$^{12}$ c $m^{-2}$ was superior to SH-PHEMT by 40% in $I_{dss}$, 20% in f/sib T/ and showed broador gm- $I_{D}$ characteristics which is advantageous to power applications DH-PHEMT showed similar DC and small-signal performance compared with DC-PHEMT. Taking the much higher carrier mobility into considerations, DH-PHEMT is believed to be the best candidate for millimeter-wave, low-noise and/or power applications.s.s.

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댐체 물성 평가를 위한 S파 반사법에 관한 연구 (A Study on S-wave Reflection method for the assessment of physical property of dam body)

  • 김형수;김중열;하익수;김유성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.392-399
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    • 2005
  • Shear modulus (or rigidity) of dam material is an important parameter which can be directly associated with the deformation of dam. Seepage or leakage of water can cause the defects or cracks of dam body. The existence of cracks and rigidity of dam body are decisive information for the estimation of dam safety. Rigidity of material is mainly determined from S-wave velocity and the defects of dam body can be detected by seismic reflection survey. Therefore, seismic reflection survey will be a desirable method which can give a solution about dam safety problem. Among various physical properties of dam body, S-wave velocity is the most important information but it is not easy to get the information. In this study, diverse measuring techniques of S-wave reflection survey were attempted to get the information about S-wave velocity of dam body. Ultimately, S-wave velocity could be estimated by the analysis of SH reflection events which can be easily observed in shot gather data obtained from SH measuring technique. Meanwhile, P-wave reflection survey was also performed at the same profile. P-beam radiation technique which can reduce the surface waves and reinforce the P-wave reflection events was applied for giving a help to analyse P-wave velocity. In the end, P-and S-wave velocity, Vs/Vp, Poisson's ratio distribution of the vertical section under the profile could be acquired.

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