Detecting Low-Energy Impact Damages in Carbon-Carbon Composites by Ultrasonic Infrared Thermography; Russian Journal of Nondestructive Testing; Vol. 53, iss. 7
| Parent link: | Russian Journal of Nondestructive Testing Vol. 53, iss. 7.— 2017.— [P. 530-538] |
|---|---|
| Institution som forfatter: | Национальный исследовательский Томский политехнический университет Инженерная школа неразрушающего контроля и безопасности Центр промышленной томографии Научно-производственная лаборатория "Тепловой контроль" |
| Andre forfattere: | Umar M. Z. Mursyidah, Vavilov V. P. Vladimir Platonovich, Abdullah H., Ariffin A. K. Arman |
| Summary: | Title screen Composite materials are widely used in aerospace engineering, shipbuilding, and automobile industry due to their high durability, relatively low mass, and corrosion resistance. Composites are vulnerable to impact damages that may occur during production and service (e.g., as a result of dropped tools, bird strikes and luggage hits in aviation, hail, and other similar factors). Often unnoticeable on the affected composite surface, low-energy damages (below 20-40 J) can, however, lead to the emergence of significant flaws (such as complex combinations of cracks, exfoliations, fiber ruptures, etc.) inside the material. Results of applying ultrasonic infrared thermography to the detection of impact damages with an energy of 5-30 J in a carbon-carbon composite are presented. Режим доступа: по договору с организацией-держателем ресурса |
| Sprog: | engelsk |
| Udgivet: |
2017
|
| Fag: | |
| Online adgang: | https://doi.org/10.1134/S1061830919090080 |
| Format: | Electronisk Book Chapter |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=665942 |
Lignende værker
Comparing the Efficiency of Ultrasonic Infrared Thermography under High-Power and Resonant Stimulation of Impact Damage in a CFRP Composite; Russian Journal of Nondestructive Testing; Vol. 54, iss. 5
Udgivet: (2018)
Udgivet: (2018)
Thermal tomography characterization and pulse-phase thermography of impact damage in CFRP, or why end users are still reluctant about practical use of transient IR thermography; Thermosense XX, Orlando, April 13, 1998
Udgivet: (1998)
Udgivet: (1998)
Comparative study of active infrared thermography, ultrasonic laser vibrometry and laser ultrasonics in application to the inspection of graphite/epoxy composite parts; Quantitative InfraRed Thermography Journal; Vol. XX
Udgivet: (2019)
Udgivet: (2019)
Crack detection in aluminum parts by using ultrasound-excited infrared thermography; Infrared Physics & Technology; Vol. 61
af: Xingwang Guo
Udgivet: (2013)
af: Xingwang Guo
Udgivet: (2013)
Non-contact one-sided evaluation of hidden corrosion in metallic constructions by using transient infrared thermography; Revista de Metalurgia (Madrid); Vol. SPEC
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2003)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2003)
A pessimistic view of the energy auditing of building structures with the use of infrared thermography; Russian Journal of Nondestructive Testing; Vol. 46, iss. 12
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2010)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2010)
Detecting Delaminations in Semitransparent Glass Fiber Composite by Using Pulsed Infrared Thermography; Journal of Nondestructive Evaluation; Vol. 39, iss. 3
Udgivet: (2020)
Udgivet: (2020)
Noise-limited thermal/infrared nondestructive testing; NDT & E International; Vol. 61
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2014)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2014)
Analyzing probability of detection as a function of defect size and depth in pulsed IR thermography; NDT & E International; Vol. 130
Udgivet: (2022)
Udgivet: (2022)
Analyzing efficiency of optical and THz infrared thermography in nondestructive testing of GFRPs by using the Tanimoto criterion; NDT & E International; Vol. 117
Udgivet: (2021)
Udgivet: (2021)
Analyzing the Deformation and Fracture of Bioinert Titanium, Zirconium and Niobium Alloys in Different Structural States by the Use of Infrared Thermography; Metals; Vol. 8, iss. 9
Udgivet: (2018)
Udgivet: (2018)
Crawling spot thermal nondestructive testing (NDT) for plaster inspection and comparison with dynamic thermography with extended heating; Thermosense XVII, Orlando, FL, United States, April 17, 1995
Udgivet: (1995)
Udgivet: (1995)
Peculiarities of detecting hidden corrosion in thick metals by transient IR thermography; Thermosense XXVIII,Orlando, Kissimmee, April 17, 2006
Udgivet: (2006)
Udgivet: (2006)
Enhanced Infrared Image Processing for Impacted Carbon/Glass Fiber-Reinforced Composite Evaluation; Sensors; Vol. 18, iss. 1
Udgivet: (2018)
Udgivet: (2018)
Optical and Mechanical Excitation Thermography for Impact Response in Basalt-Carbon Hybrid Fiber-Reinforced Composite Laminates; IEEE Transactions on Industrial Informatics; Vol. 14, iss. 2
Udgivet: (2018)
Udgivet: (2018)
Modelling of Infrared Glow in Rock Holes; Journal of Nondestructive Evaluation; Vol. 38
Udgivet: (2019)
Udgivet: (2019)
Infrared thermographic surveying of building debris: Tomsk High Military School of Communication Engineering catastrophe case study; Thermosense XX, Orlando, April 13, 1998
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (1998)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (1998)
Advanced modeling of thermal NDT problems: from buried landmines to defects in composites; Thermosense XXIV, Orlando, April 01, 2002
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2002)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2002)
Inspecting smokestacks by IR thermographic surveying and heat conduction modeling; Thermosense XXIII, Orlando, April 16, 2001
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2001)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2001)
Airborne detection of natural gas leaks from transmission pipelines by using a laser system operating in visual, near-IR, and mid-IR wavelength bands; Thermosense XXVIII,Orlando, Kissimmee, April 17, 2006
af: Ershov O. V. O. V.
Udgivet: (2006)
af: Ershov O. V. O. V.
Udgivet: (2006)
Quantitative evaluation of water content in composite honeycomb structures by using one-sided IR thermography: is there any promise?; Proceedings of SPIE; Vol. 10214 : Thermosense: Thermal Infrared Applications XXXIX
Udgivet: (2017)
Udgivet: (2017)
Methodology of processing experimental data in transient thermal nondestructive testing (NDT); Thermosense XVII, Orlando, FL, United States, April 17, 1995
Udgivet: (1995)
Udgivet: (1995)
Quantitative evaluation of building thermal performance by IR thermography inspection data; Thermosense XIX: An International Conference on Thermal Sensing and Imaging, Orlando, April 21, 1997
Udgivet: (1997)
Udgivet: (1997)
Determining thermal diffusivity components in thick anisotropic composites by IR thermography; Thermosense XXVIII,Orlando, Kissimmee, April 17, 2006
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2006)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2006)
Ultrasonic and optical stimulation in IR thermographic NDT of impact damage in carbon composites; Quantitative InfraRed Thermography Journal; Vol. 12, № 2
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2015)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2015)
Predicting body fat mass by IR thermographic measurement of skin temperature: a novel multivariate model; Quantitative InfraRed Thermography Journal; Vol. 17, iss. 3
Udgivet: (2019)
Udgivet: (2019)
Infrared thermographic detector of hidden corrosion; Sensor Review; Vol. 40, iss. 3
af: Simonov D. A. Denis Andreevich
Udgivet: (2020)
af: Simonov D. A. Denis Andreevich
Udgivet: (2020)
Automated procedure for detecting and characterizing defects in GFRP composite by using thermal nondestructive testing; Infrared Physics and Technology; Vol. 114
Udgivet: (2021)
Udgivet: (2021)
Characterising Hidden Defects in GFRP/CFRP Composites by using Laser Vibrometry and Active IR Thermography; Nondestructive Testing and Evaluation; Vol. 37, iss. 6
Udgivet: (2022)
Udgivet: (2022)
Infrared thermographic assessment of heat release phenomena in steel parts subjected to quasi-static deformation; Measurement; Vol. 185
af: Moyseychik E. A. Evgeny Alekseevich
Udgivet: (2021)
af: Moyseychik E. A. Evgeny Alekseevich
Udgivet: (2021)
Evaluating quality of marquetries by applying active IR thermography and advanced signal processing; Journal of Thermal Analysis and Calorimetry; Vol. 143, iss. 5
Udgivet: (2020)
Udgivet: (2020)
Analyzing patterns of heat generated by the tensile loading of steel rods containing discontinuity-like defects; International Journal of Damage Mechanics; Vol. 27, iss.6
af: Moyseychik E. Eugeny
Udgivet: (2017)
af: Moyseychik E. Eugeny
Udgivet: (2017)
Research on the processes of deformation and failure in coarse- and ultrafine-grain states of Zr1–Nb alloys by digital image correlation and infrared thermography; Materials Science and Engineering: A; Vol. 784
Udgivet: (2020)
Udgivet: (2020)
Impact modelling and a posteriori non-destructive evaluation of homogeneous particleboards of sugarcane bagasse; Journal of Nondestructive Evaluation; Vol. 37, iss. 1
Udgivet: (2018)
Udgivet: (2018)
An Automated Algorithm for Constructing Maps of Defects in Active Thermal Testing; Russian Journal of Nondestructive Testing; Vol. 55, iss. 8
af: Chulkov A. O. Arseniy Olegovich
Udgivet: (2019)
af: Chulkov A. O. Arseniy Olegovich
Udgivet: (2019)
Time- and Phase-Domain Thermal Tomography of Composites; Photonics; Vol. 5, iss. 4
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2018)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2018)
Ultrasonic infrared thermography in non-destructive testing: A review; Russian Journal of Nondestructive Testing; Vol. 52, iss. 4
Udgivet: (2016)
Udgivet: (2016)
Dynamic thermal tomography: Recent improvements and applications; NDT & E International; Vol. 71
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2015)
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2015)
Thermographic Non-Destructive Evaluation for Natural Fiber-Reinforced Composite Laminates; Applied Sciences; Vol. 8, iss. 2
Udgivet: (2018)
Udgivet: (2018)
IR thermography study of flow structure and parameters in diffusion flames; Infrared Physics and Technology; Vol. 117
Udgivet: (2021)
Udgivet: (2021)
Lignende værker
-
Comparing the Efficiency of Ultrasonic Infrared Thermography under High-Power and Resonant Stimulation of Impact Damage in a CFRP Composite; Russian Journal of Nondestructive Testing; Vol. 54, iss. 5
Udgivet: (2018) -
Thermal tomography characterization and pulse-phase thermography of impact damage in CFRP, or why end users are still reluctant about practical use of transient IR thermography; Thermosense XX, Orlando, April 13, 1998
Udgivet: (1998) -
Comparative study of active infrared thermography, ultrasonic laser vibrometry and laser ultrasonics in application to the inspection of graphite/epoxy composite parts; Quantitative InfraRed Thermography Journal; Vol. XX
Udgivet: (2019) -
Crack detection in aluminum parts by using ultrasound-excited infrared thermography; Infrared Physics & Technology; Vol. 61
af: Xingwang Guo
Udgivet: (2013) -
Non-contact one-sided evaluation of hidden corrosion in metallic constructions by using transient infrared thermography; Revista de Metalurgia (Madrid); Vol. SPEC
af: Vavilov V. P. Vladimir Platonovich
Udgivet: (2003)