• 제목/요약/키워드: Nondestructive damage detection

검색결과 83건 처리시간 0.028초

Infrared Thermography Quantitative Diagnosis in Vibration Mode of Rotational Mechanics

  • Seo, Jin-Ju;Choi, Nam-Ryoung;Kim, Won-Tae;Hong, Dong-Pyo
    • 비파괴검사학회지
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    • 제32권3호
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    • pp.291-295
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    • 2012
  • In the industrial field, real-time monitoring system like a fault early detection is very important. For this, the infrared thermography technique as a new diagnosis method is proposed. This study is focused on the damage detection and temperature characteristic analysis of ball bearing using the non-destructive infrared thermography method. In this paper, thermal image and temperature data were measured by a Cedip Silver 450 M infrared camera. Based on the results, the temperature characteristics under the conditions of normal, loss lubrication, damage, dynamic loading, and damage under loading were analyzed. It was confirmed that the infrared technique is very useful for the detection of the bearing damage.

Damage Detection in High-Rise Buildings Using Damage-Induced Rotations

  • Sung, Seung Hun;Jung, Ho Youn;Lee, Jung Hoon;Jung, Hyung Jo
    • 비파괴검사학회지
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    • 제34권6호
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    • pp.447-456
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    • 2014
  • In this paper, a new damage-detection method based on structural vibration is proposed. The essence of the proposed method is the detection of abrupt changes in rotation. Damage-induced rotation (DIR), which is determined from the modal flexibility of the structure, initially occurs only at a specific damaged location. Therefore, damage can be localized by evaluating abrupt changes in rotation. We conducted numerical simulations of two damage scenarios using a 10-story cantilever-type building model. Measurement noise was also considered in the simulation. We compared the sensitivity of the proposed method to localize damage to that of two conventional modal-flexibility-based damage-detection methods, i.e., uniform load surface (ULS) and ULS curvature. The proposed method was able to localize damage in both damage scenarios for cantilever structures, but the conventional methods could not.

Nondestructive crack detection in metal structures using impedance responses and artificial neural networks

  • Ho, Duc-Duy;Luu, Tran-Huu-Tin;Pham, Minh-Nhan
    • Structural Monitoring and Maintenance
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    • 제9권3호
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    • pp.221-235
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    • 2022
  • Among nondestructive damage detection methods, impedance-based methods have been recognized as an effective technique for damage identification in many kinds of structures. This paper proposes a method to detect cracks in metal structures by combining electro-mechanical impedance (EMI) responses and artificial neural networks (ANN). Firstly, the theories of EMI responses and impedance-based damage detection methods are described. Secondly, the reliability of numerical simulations for impedance responses is demonstrated by comparing to pre-published results for an aluminum beam. Thirdly, the proposed method is used to detect cracks in the beam. The RMSD (root mean square deviation) index is used to alarm the occurrence of the cracks, and the multi-layer perceptron (MLP) ANN is employed to identify the location and size of the cracks. The selection of the effective frequency range is also investigated. The analysis results reveal that the proposed method accurately detects the cracks' occurrence, location, and size in metal structures.

Detection of Damages in Concrete Structures Using Non-Contact Air-Coupled Sensing Methods

  • Shin, Sung-Woo
    • 비파괴검사학회지
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    • 제30권3호
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    • pp.282-289
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    • 2010
  • Most nondestructive testing techniques require good contact between the sensor and tested concrete surface to obtain reliable data. But the surface preparation is often very time and labor consuming due to the rough surface or limited access of concrete structures. One approach to speed up the data collection process is to eliminate the need for physical contact between the sensor and tested structure. Non-contact air-coupled sensing technique can be a good solution to this problem. An obvious advantage of the non-contact air-coupled sensing technique is which can greatly speed up the data collection in field and thus the damage detection process can be completed very rapidly. In this article, recent developments in non-contact air-coupled sensing technique for rapid detection of damages in concrete structures are summarized to evoke interest, discussion and further developments on this technique to a NDT research community in Korea. It is worth noting that the works in this article have been published in the types of thesis, proceedings, and journals. All published sources are cited in the text and listed in reference.

Modeling and damage detection for cracked I-shaped steel beams

  • Zhao, Jun;DeWoIf, John T.
    • Structural Engineering and Mechanics
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    • 제25권2호
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    • pp.131-146
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    • 2007
  • This paper presents the results of a study to show how the development of a crack alters the structural behavior of I-shaped steel beams and how this can be used to evaluate nondestructive evaluation techniques. The approach is based on changes in the dynamic behavior. An approximate finite element model for a cracked beam with I-shaped cross-section is developed based on a simplified fracture model. The model is then used to review different damage cases. Damage detection techniques are studied to determine their ability to identify the existence of the crack and to identify its location. The techniques studied are the coordinate modal assurance criterion, the modal flexibility, and the state and the slope arrays.

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.

Damage Detection in Lab-Scaled Underwater PVC Pipes Using Cylindrical Lamb Waves

  • Woo, Dong-Woo;Na, Won-Bae
    • 비파괴검사학회지
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    • 제31권3호
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    • pp.271-277
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    • 2011
  • This study presents a nondestructive test for underwater PVC pipes. To use guided ultrasonic waves, specially denoted by cylindrical Lamb waves, a test setup was made in a water tank using the pitch and catch mode and specimens were made to give artificial cutouts located in the circumferential direction of the pipes. Total three states of damaged levels were considered to see how the guided waves interact with the defects. For the experimental adjustments, three different pipe diameters (60, 90, 114 mm) were tested, and two factors - incident angle (10 and $40^{\circ}$) and distance (50 and 200 mm) - were tried. From the results, regardless of the diameters and two experimental factors, it is shown that the degrees of defects were recognized through amplitude and arrived time of the very first part of the received cylindrical Lamb waves. Between amplitude and arrived time, it is found that the amplitude gives more sensitive results.

철도 레일의 결함 검출을 위한 비파괴탐상 기술 (Review of Non-Destructive Evaluation Technologies for Rail Inspection)

  • 한순우;조승현
    • 비파괴검사학회지
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    • 제31권4호
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    • pp.398-413
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    • 2011
  • 철도 레일의 주기적인 탐상은 레일 결함으로 인해 발생할 수 있는 철도 중대사고를 미연에 방지할 수 있는, 철도 안전 유지의 중요한 요소 중 하나이다. 본 논문은 현재 철도 레일 탐상에 적용되고 있거나, 적용을 위해 연구 중인 비파괴탐상 기법들에 관해 기술하였다. 레일에 발생하는 결함 유형에 대해 우선 언급하였고, 레일 탐상에 가장 많이 적용되고 있는 압전형 탐촉자 기반의 초음파탐상 기술에 대해 정리하였다. 접촉식 초음파 레일 탐상 기술에 대한 대안으로서 연구 중이거나 시험 중인 비파괴탐상 기법들에 대해 기술하고, 각 기법 별로 레일의 표면 및 내부 결함 검출 가능 여부에 대해 살펴보았으며 여러 탐상 기법들에 대한 비교를 통해 향후 레일 탐상 기술 개발에 활용하고자 하였다.

Comparative Study of Linear and Nonlinear Ultrasonic Techniques for Evaluation Thermal Damage of Tube-Like Structures

  • Li, Weibin;Cho, Younho;Li, Xianqiang
    • 비파괴검사학회지
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    • 제33권1호
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    • pp.1-6
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    • 2013
  • Ultrasonic guided wave techniques have been widely used for long range nondestructive detection in tube-like structures. The present paper investigates the ultrasonic linear and nonlinear parameters for evaluating the thermal damage in aluminum pipe. Specimens were subjected to thermal loading. Flexible polyvinylidene fluoride (PVDF) comb transducers were used to generate and receive the ultrasonic waves. The second harmonic wave generation technique was used to check the material nonlinearity change after different heat loadings. The conventional linear ultrasonic approach based on attenuation was also used to evaluate the thermal damages in specimens. The results show that the proposed experimental setup is viable to assess the thermal damage in an aluminum pipe. The ultrasonic nonlinear parameter is a promising candidate for the prediction of micro-damages in a tube-like structure.

HK-40 고온반응관 용접부의 Creep손상 진단기법 및 자동 초음파탐상장치의 개발에 관한 연구 (A Study on the Development of Ultrasonic Scanning Device for the Inspection and Evaluation of Creep Damage of HK - 40 Reformer Tube Welded Zone)

  • 조경식
    • 비파괴검사학회지
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    • 제9권1호
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    • pp.98-105
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    • 1989
  • Detection of creep damages in centrifugally cast HK-40 reformer furnace catalyst tube is a common problem for the safety and scheduled operation of chemical plants. This study was focused on the development of an automatic ultrasonic scanning device with which the creep damage of welded zone of HK-40 reformer tubes is detected and evaluated.

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