• 제목/요약/키워드: non-destructive investigation

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콘크리트 비파괴시험법을 이용한 사방댐 안정도 평가에 관한 연구 (Study on the Stability Evaluation of Concrete Erosion Control Dam by using Non-destructive Test for Compressive Strength)

  • 박기형;김민식;조성호;이창우;윤호중;김경하
    • 한국산림과학회지
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    • 제102권1호
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    • pp.90-96
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    • 2013
  • 이 연구는 '콘크리트 테스트 해머'를 이용하여 1990년대에 경기도와 강원도에서 시공된 사방댐 중 사방협회 에서 육안 점검한 사방댐 10기(양호 6기, 불량 4기)의 대수면, 방수로 및 반수면의 반발경도 측정을 통해 사방댐의 안정성을 파악하여 사방댐의 비파괴검사에 적합한 압축강도 추정식과 적정 판정범위를 정하는 것을 목적으로 진행하였다. 특히, 콘크리트 사방댐 본체의 안정성을 사전에 파악하게 되면 사방댐을 적시에 보수, 관리할 수 있고, 사방댐 본연의 기능인 토사유출방지기능을 최대화할 수 있다. 콘크리트 사방댐의 압축강도 조사한 결과, 현재 사방협회에서 진행 중인 안정점검 육안 점검 결과와 대부분 일치하였다. 또한, 안정점검시 압축강도는 일본건축학회에서 제시한 추정식을 적용하는 것이 적합할 것으로 판단되었으며, 판정 기준은 300 $kgf/cm^2$ 이상일 경우에는 '안정', 250~300 $kgf/cm^2$이 범위일 경우에는 '정밀검사 필요', $kgf/cm^2$ 미만일 경우에는 '불량' 판정을 내리는 것이 적합하다고 사료된다. 그리고 사방댐의 연대별 압축강도에 대한 자료를 충분히 축적하고, 이를 토대로 우리나라 사방댐에 적합한 안정기준과 압축강도 추정식이 필요하다고 사료된다. 앞으로는 육안 점검과 간이 안정성 검사를 통해 사방 구조물에 이상이 발견될 경우 정밀진단 검사를 실시하여 안정도를 파악하는 체계가 구축되어야 할 것이다.

Seismic vulnerability assessment of composite reinforced concrete-masonry building

  • Remki, Mustapha;kehila, Fouad;Bechtoula, Hakim;Bourzam, Abdelkrim
    • Earthquakes and Structures
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    • 제11권2호
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    • pp.371-386
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    • 2016
  • During the last decades, many destructive earthquakes occurred in Algeria, particularly in the northern part of the country (Chlef (1980), Constantine (1985), Tipaza (1989), Mascara (1994), Ain-Benian (1996), Ain Temouchent (1999), Beni Ourtilane (2000), and recently $Boumerd{\acute{e}}s$ (2003), causing enormous losses in human lives, buildings and equipments. In order to reduce this risk and avoid serious damages to the strategic existing buildings, the authorities of the country, aware of this risk and in order to have the necessary elements that let them to know and estimate the potential losses in advance, with an acceptable error, and to take the necessary countermeasures, decided to invest into seismic upgrade, strengthening and retrofitting of those buildings. To do so, seismic vulnerability study of this category of buildings has been considered. Structural analysis is performed based on the site investigation (inspection of the building, collecting data, materials characteristics, general conditions of the building, etc.), and existing drawings (architectural plans, structural design, etc.). The aim of these seismic vulnerability studies is to develop guidelines and a methodology for rehabilitation of existing buildings. This paper presents the methodology, based on non linear and seismic analysis of existing buildings, followed in this study and summarizes the vulnerability assessment and strengthening of one of the strategic buildings according to the new Algerian code RPA 99/version 2003. As a direct application of this methodology, both, static equivalent method and non linear dynamic analysis, of composite concrete masonry existing building in the city of "CONSTANTINE", located in the east side of ALGERIA, are presented in this paper.

Mechanical parameters detection in stepped shafts using the FEM based IET

  • Song, Wenlei;Xiang, Jiawei;Zhong, Yongteng
    • Smart Structures and Systems
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    • 제20권4호
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    • pp.473-481
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    • 2017
  • This study suggests a simple, convenient and non-destructive method for investigation of the Young's modulus detection in stepped shafts which only utilizes the first-order resonant frequency in flexural mode and dimensions of structures. The method is based on the impulse excitation technique (IET) to pick up the fundamental resonant frequencies. The standard Young's modulus detection formulas for rectangular and circular cross-sections are well investigated in literatures. However, the Young's modulus of stepped shafts can not be directly detected using the formula for a beam with rectangular or circular cross-section. A response surface method (RSM) is introduced to design numerical simulation experiments to build up experimental formula to detect Young's modulus of stepped shafts. The numerical simulation performed by finite element method (FEM) to obtain enough simulation data for RSM analysis. After analysis and calculation, the relationship of flexural resonant frequencies, dimensions of stepped shafts and Young's modulus is obtained. Numerical simulations and experimental investigations show that the IET method can be used to investigate Young's modulus in stepped shafts, and the FEM simulation and RSM based IET formula proposed in this paper is applicable to calculate the Young's modulus in stepped shaft. The method can be further developed to detect mechanical parameters of more complicated structures using the combination of FEM simulation and RSM.

적외선열화상을 이용한 베어링 실시간 손상검출 상태감시의 전산수치해석 비교 (Comparison of FEA with Condition Monitoring for Real-Time Damage Detection of Bearing Using Infrared Thermography Techniques)

  • 김호종;김원태
    • 비파괴검사학회지
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    • 제35권3호
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    • pp.185-192
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    • 2015
  • 동적하중에서의 베어링 결함에 대한 실시간 진단기술은 상대적으로 저조하다. 따라서 볼베어링의 이상상태 현상으로 인한 온도 상승 및 진동 증가 등을 사전에 검출하는 기술이 필요하며, 회전체에 대한 운전상태 감시 및 손상 진단을 통해 발전설비의 원활한 운전을 기할 수 있는 검출 기술이 필요하다. 적외선 열화상 실험과 더불어 ANSYS를 이용한 유한요소해석으로부터 실험과 동일한 베어링을 구조 설계 및 해석하여 데이터를 분석함으로써 열화상 기술로 얻은 데이터의 신뢰성을 확보하였다.

Correlation Between Bulk and Surface Resistivity of Concrete

  • Ghosh, Pratanu;Tran, Quang
    • International Journal of Concrete Structures and Materials
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    • 제9권1호
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    • pp.119-132
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    • 2015
  • Electrical resistivity is an important physical property of portland cement concrete which is directly related to chloride induced corrosion process. This study examined the electrical surface resistivity (SR) and bulk electrical resistivity (BR) of concrete cylinders for various binary and ternary based high-performance concrete (HPC) mixtures from 7 to 161 days. Two different types of instruments were utilized for this investigation and they were 4 point Wenner probe meter for SR and Merlin conductivity tester for bulk resistivity measurements. Chronological development of electrical resistivity as well as correlation between two types of resistivity on several days was established for all concrete mixtures. The ratio of experimental surface resistance to bulk resistance and corresponding resistivity was computed and compared with theoretical values. Results depicted that bulk and SR are well correlated for different groups of HPC mixtures and these mixtures have attained higher range of electrical resistivity for both types of measurements. In addition, this study presents distribution of surface and bulk resistivity in different permeability classes as proposed by Florida Department of Transportation (FDOT) specification from 7 to 161 days. Furthermore, electrical resistivity data for several HPC mixtures and testing procedure provide multiple promising options for long lasting bridge decks against chloride induced corrosion due to its ease of implementation, repeatability, non-destructive nature, and low cost.

레이저 유도 초음파를 이용한 재료평가 및 비파괴 검사 시스템 개발에 관한 연구 (The Study on the Material Evaluation and Development of Nondestructive Inspection System Using Laser Guided Ultrasonics)

  • 김재열;송경석;김창현;김유홍
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 추계학술대회 논문집
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    • pp.263-268
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    • 2004
  • In the present study, a Nd;YAG Laser (pulse type) was used to emit ultrasonic signals to a test material. In addition, a total ultrasonic investigation system was designed by adopting a Fabry-Perot interferometer, which receives ultrasonic signals without any contact. For non-destructive test SM45C, which contains some flaws was used as a test material. Because it is easy to align light beam in receiver, and the length of the light beam does not change much even if convex mirror leans towards one side, confocal Fabry-Perot interferometer, which has stable frequency, and PI control are used to correct interfered and unstable signals from temperature, fluctuation and time shift of laser frequency. Stable signals are always obtained by the feedback of PI circuit signals in the confocal Fabry-Perot interferometer. The type, size and position of flaws inside the test material were examined by achieving the stabilization of an interferometer. This study presented a useful method, which could quantitatively investigate the fault of objects by using a Fabry-Perot interferometer.

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비파괴 기술을 활용한 여주 신륵사 대장각기비의 표면오염물 분석과 물성진단 (Analysis of Surface Contaminants and Physical Properties of the Daejanggakgibi Stele of Silleuksa Temple using Non-destructive Technology)

  • 김지영;이명성
    • 헤리티지:역사와 과학
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    • 제55권2호
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    • pp.186-197
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    • 2022
  • 여주 신륵사 대장각기비는 불경을 만들어 보관하던 곳인 대장각의 조성에 관한 기록이 적힌 고려시대의 비석이다. 비신은 변색이 일어나고 수십 개의 균열이 발생하였으며 부분적으로 결실되어 명문이 일부 훼손된 상태로 오랫동안 유지되어 왔다. 석조유산에 적용할 수 있는 비파괴분석법을 활용하여 대장각기비의 재질조사, 휴대용 X-선 형광분석, 초음파 물성진단을 실시하였다. 재질조사 결과, 비신은 담회색 결정질 석회암으로, 받침석, 지지석, 옥개석은 중조립질 흑운모화강암으로 구성되어 있음을 확인하였다. 대장각기비의 변색오염물은 휴대용 X-선 형광분석 결과 철(Fe)이 원인물질로 판단되었다. 분포양상으로 미루어 비신과 개석 사이에 철을 함유한 물질이 산화되어 흘러내리고 이후 생물이나 유기질 오염물이 부착되면서 황색과 흑색 오염물을 형성한 것으로 해석된다. 초음파 물성진단 결과, 신선한 암석(FR)부터 완전히 풍화된 암석(CW)까지 다양한 풍화도를 보였고 평균 풍화도지수는 3등급(보통)으로 산출되었다. 균열이 집중적으로 나타난 지점은 완전히 풍화된 단계(CW)로 판정되었고, 비신 상부와 하부에 분포하는 일부 균열은 위험도가 매우 높은 것으로 확인되었다. 균열에 대해서는 향후 거동 모니터링과 보강대책 수립이 필요할 것으로 판단된다.

비파괴 분석법을 통한 안성 청룡사 금동관음보살좌상 내부구조 및 금박층 조사 (Investigation of the Internal Structure and Gold-thin Layer of the Gilt-bronze Seated Avalokitesvara Bodhisattva at Anseong Cheonryong Temple through the Non-destructive Analysis)

  • 최정은;최학
    • 보존과학회지
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    • 제37권6호
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    • pp.670-678
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    • 2021
  • <안성 청룡사 금동관음보살좌상>을 봉안하고 있는 청룡사(靑龍寺)는 경기도 안성시 서운면 서운산 자락에 있는 사찰이며, 대한불교조계종 제2교구 본사인 용주사의 말사이다. 안성 청룡사 금동관음보살좌상의 바닥면 XRF 분석 결과는 Cu-27.2 wt%, Sn-12.6 wt%, Pb-48 wt%이며, 과거 여러 전란으로 인해 소지금속 성분과 차이가 있을 것으로 예상된다. 불상의 내부를 확인하기 위해 감마선(γ-ray, Ir-192)으로 촬영하였으며, 파손된 배면 부분과 후대에 나무로 덧대어 수리한 위치를 확인하였다. γ-ray 촬영 결과와 XRF 분석을 이용하여 확인한 좌, 우의 수리 경계면은 허벅지 중간부터 목 아랫부분까지로 청동과 나무로 분리된다. 안성 청룡사 금동관음보살좌상의 금박 두께를 추정하기 위해 표준시료를 이용해 계산한 결과 얼굴과 가슴과 같은 육신 부분의 금박 두께가 20.7 ㎛와 21 ㎛로 가장 두꺼웠으며, 나무를 소지 재료로 한 부분이 평균 11.9 ㎛, 마지막으로 소지금속이 청동인 부분이 평균 7.4 ㎛로 금박 두께가 가장 얇음을 확인할 수 있었다.

Estimation of liquid limit of cohesive soil using video-based vibration measurement

  • Matthew Sands;Evan Hayes;Soonkie Nam;Jinki Kim
    • Geomechanics and Engineering
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    • 제33권2호
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    • pp.175-182
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    • 2023
  • In general, the design of structures and its construction processes are fundamentally dependent on their foundation and supporting ground. Thus, it is imperative to understand the behavior of the soil under certain stress and drainage conditions. As it is well known that certain characteristics and behaviors of soils with fines are highly dependent on water content, it is critical to accurately measure and identify the status of the soils in terms of water contents. Liquid limit is one of the important soil index properties to define such characteristics. However, liquid limit measurement can be affected by the proficiency of the operator. On the other hand, dynamic properties of soils are also necessary in many different applications and current testing methods often require special equipment in the laboratory, which is often expensive and sensitive to test conditions. In order to address these concerns and advance the state of the art, this study explores a novel method to determine the liquid limit of cohesive soil by employing video-based vibration analysis. In this research, the modal characteristics of cohesive soil columns are extracted from videos by utilizing phase-based motion estimation. By utilizing the proposed method that analyzes the optical flow in every pixel of the series of frames that effectively represents the motion of corresponding points of the soil specimen, the vibration characteristics of the entire soil specimen could be assessed in a non-contact and non-destructive manner. The experimental investigation results compared with the liquid limit determined by the standard method verify that the proposed method reliably and straightforwardly identifies the liquid limit of clay. It is envisioned that the proposed approach could be applied to measuring liquid limit of soil in practical field, entertaining its simple implementation that only requires a digital camera or even a smartphone without the need for special equipment that may be subject to the proficiency of the operator.

Investigation of seismic response of long-span bridges under spatially varying ground motions

  • Aziz Hosseinnezhad;Amin Gholizad
    • Earthquakes and Structures
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    • 제26권5호
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    • pp.401-416
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    • 2024
  • Long-span structures, such as bridges, can experience different seismic excitations at the supports due to spatially variability of ground motion. Regarding current bridge designing codes, it is just EC 2008 that suggested some regulations to consider it and in the other codes almost ignored while based on some previous studies it is found that the effect of mentioned issue could not be neglected. The current study aimed to perform a comprehensive study about the effect of spatially varying ground motions on the dynamic response of a reinforced concrete bridge under asynchronous input motions considering soil-structure interactions. The correlated ground motions were generated by an introduced method that contains all spatially varying components, and imposed on the supports of the finite element model under different load scenarios. Then the obtained results from uniform and non-uniform excitations were compared to each other. In addition, the effect of soil-structure interactions involved and the corresponding results compared to the previous results. Also, to better understand the seismic response of the bridge, the responses caused by pseudo-static components decompose from the total response. Finally, an incremental dynamic analysis was performed to survey the non-linear behavior of the bridge under assumed load scenarios. The outcomes revealed that the local site condition plays an important role and strongly amplifies the responses. Furthermore, it was found that a combination of wave-passage and strong incoherency severely affected the responses of the structure. Moreover, it has been found that the pseudo-static component's contribution increase with increasing incoherent parameters. In addition, regarding the soil condition was considered for the studied bridge, it was found that a combination of spatially varying ground motions and soil-structure interactions effects could make a very destructive scenarios like, pounding and unseating.