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    A State-of-the-Art Review of Structural Monitoring Using Piezoelectric Paint Sensors

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    https://www.riss.kr/link?id=A107938366

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Recently, large-scale accidents caused by minor damage from fatigue failure and impact on structures have been frequently reported. Therefore, a real-time damage monitoring system of structures is considered to be one of the most important technologies to ensure safety in various types of research. The piezoelectric sensor, which has an advantage of converting deformation of a structure into an electrical signal without using an additional power source, has been reported as one of the most suitable methods for real-time monitoring systems. This review aims to describe the structural monitoring system utilizing piezoelectric paint sensors. First, we present the concept of a piezoelectric paint sensor with the advantages of flexibility and piezoelectric performance. Then, factors affecting the performance of the piezoelectric paint sensor are introduced. Finally, an overview of piezoelectric paint sensors for structural monitoring, such as vibration detection and impact monitoring, are provided. The state-of-the-art of the application of the piezoelectric sensor is also introduced, providing feasibility in industrial fields.
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    Recently, large-scale accidents caused by minor damage from fatigue failure and impact on structures have been frequently reported. Therefore, a real-time damage monitoring system of structures is considered to be one of the most important technologie...

    Recently, large-scale accidents caused by minor damage from fatigue failure and impact on structures have been frequently reported. Therefore, a real-time damage monitoring system of structures is considered to be one of the most important technologies to ensure safety in various types of research. The piezoelectric sensor, which has an advantage of converting deformation of a structure into an electrical signal without using an additional power source, has been reported as one of the most suitable methods for real-time monitoring systems. This review aims to describe the structural monitoring system utilizing piezoelectric paint sensors. First, we present the concept of a piezoelectric paint sensor with the advantages of flexibility and piezoelectric performance. Then, factors affecting the performance of the piezoelectric paint sensor are introduced. Finally, an overview of piezoelectric paint sensors for structural monitoring, such as vibration detection and impact monitoring, are provided. The state-of-the-art of the application of the piezoelectric sensor is also introduced, providing feasibility in industrial fields.

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    참고문헌 (Reference)

    1 전홍규, "철도차량 전면창유리 충격시험에 관한 연구" 한국철도학회 16 (16): 365-371, 2013

    2 황희윤, "압전기법을 이용한 복합재료 손상모니터링의 가능성에 관한 연구" 대한기계학회 32 (32): 918-923, 2008

    3 최경후, "압전 페인트센서를 활용한 충격 모니터링 활용 방안" 한국비파괴검사학회 35 (35): 349-357, 2015

    4 박승복, "압전 페인트 센서를 이용한 복합재 구조물의 충격 신호 감지" 한국복합재료학회 27 (27): 141-145, 2014

    5 한대현, "분극 전계에 따른 압전 페인트 센서 감도 측정" 한국복합재료학회 27 (27): 146-151, 2014

    6 한대현, "분극 시간에 따른 압전 페인트 센서의 압전 특성 연구" 대한기계학회 38 (38): 1069-1074, 2014

    7 박승복, "구조물의 경계조건에 따른 압전 페인트 센서의 충격검출 특성 평가" 대한기계학회 38 (38): 1335-1343, 2014

    8 Egusa, S., "Thickness Dependence of the Poling and Current-Voltage Characteristics of Paint Films Made Up of Lead Zirconate Titanate Ceramic Powder and Epoxy Resin" 78 (78): 6060-6070, 1995

    9 Brighenti, R., "Surface Cracks in Fatigued Structural Components : A Review" 36 (36): 1209-1222, 2013

    10 Payo, I., "Sensitivity Analysis of Piezoelectric Paint Sensors Made Up of PZT Ceramic Powder and Water-Based Acrylic Polymer" 168 (168): 77-89, 2011

    1 전홍규, "철도차량 전면창유리 충격시험에 관한 연구" 한국철도학회 16 (16): 365-371, 2013

    2 황희윤, "압전기법을 이용한 복합재료 손상모니터링의 가능성에 관한 연구" 대한기계학회 32 (32): 918-923, 2008

    3 최경후, "압전 페인트센서를 활용한 충격 모니터링 활용 방안" 한국비파괴검사학회 35 (35): 349-357, 2015

    4 박승복, "압전 페인트 센서를 이용한 복합재 구조물의 충격 신호 감지" 한국복합재료학회 27 (27): 141-145, 2014

    5 한대현, "분극 전계에 따른 압전 페인트 센서 감도 측정" 한국복합재료학회 27 (27): 146-151, 2014

    6 한대현, "분극 시간에 따른 압전 페인트 센서의 압전 특성 연구" 대한기계학회 38 (38): 1069-1074, 2014

    7 박승복, "구조물의 경계조건에 따른 압전 페인트 센서의 충격검출 특성 평가" 대한기계학회 38 (38): 1335-1343, 2014

    8 Egusa, S., "Thickness Dependence of the Poling and Current-Voltage Characteristics of Paint Films Made Up of Lead Zirconate Titanate Ceramic Powder and Epoxy Resin" 78 (78): 6060-6070, 1995

    9 Brighenti, R., "Surface Cracks in Fatigued Structural Components : A Review" 36 (36): 1209-1222, 2013

    10 Payo, I., "Sensitivity Analysis of Piezoelectric Paint Sensors Made Up of PZT Ceramic Powder and Water-Based Acrylic Polymer" 168 (168): 77-89, 2011

    11 Peters, J., "Role of Foreign-Object Damage on Thresholds for High-Cycle Fatigue in Ti-6Al-4V" 31 (31): 1571-1583, 2000

    12 Kang, S. -H., "Piezoelectric Smart Composite Blades for Collision Monitoring : Measurement of Mechanical Properties and Impact Sensitivity" 202 : 1295-1307, 2018

    13 Capsal, J. -F., "Piezoelectric Sensing Coating for Real Time Impact Detection and Location on Aircraft Structures" 21 (21): 2012

    14 Han, D. -H., "Piezoelectric Properties of Paint Sensor according to Piezoelectric Materials" 2 (2): 2020

    15 Egusa, S., "Piezoelectric Paints : Preparation and Application as Built-in Vibration Sensors of Structural Materials" 28 (28): 1667-1672, 1993

    16 Zhang, Y., "Piezoelectric Paint Sensor for Nondestructive Structural Condition Monitoring" 7-10, 2004

    17 White, J., "Piezoelectric Paint : Ceramic-Polymer Composites for Vibration Sensors" 39 (39): 3105-3114, 2004

    18 Han, D. -H., "Piezoelectric Characteristics of PNN-PZT/Epoxy Paint Sensor according to the Poling Conditions" 269 : 419-426, 2018

    19 Ueberschlag, P., "PVDF Piezoelectric Polymer" 21 (21): 118-126, 2001

    20 Luo, H., "PVDF Film Sensor and its Applications in Damage Detection" 12 (12): 23-30, 1999

    21 Zhang, Y., "In Situ Fatigue Crack Detection Using Piezoelectric Paint Sensor" 17 (17): 843-852, 2006

    22 Choi, W., "Improving Piezoelectric Performance of Lead-Free Polymer Composites with High Aspect Ratio BaTiO3 Nanowires" 53 : 143-148, 2016

    23 Choi, K., "Impact Monitoring Characteristics of Piezoelectric Paint Sensor by Thermal Fatigue Analysis for Railroad Vehicle Applications" 19 (19): 1951-1962, 2020

    24 Liu, Y., "Fatigue Limit Prediction of Notched Components Using Short Crack Growth Theory and an Asymptotic Interpolation Method" 76 (76): 2317-2331, 2009

    25 Lim, J., "Fatigue Life Estimation of an Aircraft Lug considering Model Uncertainty" 792-796, 2011

    26 Kim, T., "Fatigue Damage of Reinforced Concrete Bridge Columns Subjected to Cyclic Load" 99-104, 2002

    27 Richard, H., "Examples of Fatigue Crack Growth in Real Structures"

    28 Choi, K., "Enhanced Piezoelectric Behavior of PVDF Nanocomposite by AC Dielectrophoresis Alignment of ZnO Nanowires" 2017 : 2017

    29 Curie, J., "Développement par compression de l'électricité polaire dans les cristaux hémièdres à faces inclinées" 3 (3): 90-93, 1880

    30 Payo, I., "Dynamic Characterization of Piezoelectric Paint Sensors under Biaxial Strain" 163 (163): 150-158, 2010

    31 Garcia, A. J., "Convolutional Neural Network-Based Foreign Object Debris(FOD)Detection System" 597-598, 2021

    32 Hwang, M. Y., "Characteristics and Fabrication of Piezoelectric GFRP Using Smart Resin Prepreg for Detecting Impact Signals" 167 : 224-233, 2018

    33 Hwang, M., "A Study on Piezoelectric Characteristic Changes of PNN-PZT/CNT/Epoxy Paint Sensor for Impact Monitoring of Aerospace Structures" 101-104, 2015

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2013-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-06-23 학회명변경 영문명 : Korean Society Of Precision Engineering -> Korean Society for Precision Engineering KCI등재
    2008-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2006-07-07 학술지명변경 외국어명 : 미등록 -> Journal of the Korean Society for Precision Engineering KCI등재
    2006-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2004-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2001-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    1998-07-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.26 0.26 0.26
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.24 0.22 0.449 0.12
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