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