Possibilities of Thermal Nondestructive Testing of Glass Fiber Reinforced Plastic Sucker Rods and Pump Compressor Pipes in the Oil Industry; Russian Journal of Nondestructive Testing; Vol. 61, iss. 10
| Parent link: | Russian Journal of Nondestructive Testing=Дефектоскопия.— .— New York: Springer Science+Business Media LLC. Vol. 61, iss. 10.— 2025.— P. 1175-1184 |
|---|---|
| Další autoři: | Chulkov A. O. Arseniy Olegovich, Vavilov V. P. Vladimir Platonovich, Makushev O. A. Oleg Alekseevich, Garaev I. G. Ilmir Gamirovich, Glukhoded A. V. Aleksandr Vladimirovich, Valovsky K. V. Konstantin Vladimirovich |
| Shrnutí: | Title screen The results of experimental studies on detection of defects such as cracks and impact damages in glass-reinforced plastic pump compressor pipes (GRP PCP) and glass-reinforced plastic sucker rods (GRP SR) using a thermal nondestructive testing method involving combined ultrasonic and optical stimulation are presented. It is demonstrated that ultrasonic infrared thermographic testing is appropriate for detecting cracks, especially “kissing” ones, whereas traditional thermal inspection based on optical heating is more suitable for identifying delamination and thinning. The efficiency of the inspection depends on the size of the ultrasonic stimulation zone with sufficient power (approximately 0.8 m in this study). During optical heating procedures, the testing productivity depends on the size of the heated area and the field of view of the thermal imager and can reach several square meters per hour Текстовый файл AM_Agreement |
| Jazyk: | angličtina |
| Vydáno: |
2025
|
| Témata: | |
| On-line přístup: | https://doi.org/10.1134/S1061830925700330 Статья на русском языке |
| Médium: | Elektronický zdroj Kapitola |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=685062 |
Podobné jednotky
Applying ultrasonic resonance vibrometry for the evaluation of impact damage in natural/synthetic fibre reinforced composites; Polymer Testing; Vol. 68
Vydáno: (2018)
Vydáno: (2018)
Developing a Nondestructive Method for Revealing Defective Areas in Reinforced Concrete Under Bending Conditions; Russian Journal of Nondestructive Testing; Vol. 55, iss. 4
Autor: Fursa T. V. Tatjyana Viktorovna
Vydáno: (2019)
Autor: Fursa T. V. Tatjyana Viktorovna
Vydáno: (2019)
Automated procedure for detecting and characterizing defects in GFRP composite by using thermal nondestructive testing; Infrared Physics and Technology; Vol. 114
Vydáno: (2021)
Vydáno: (2021)
Influence of concrete-reinforcement bond quality on the process of fracture due to uniaxial compression. Fracture detection; Nondestructive Testing and Evaluation; Vol. 33, iss. 4
Vydáno: (2018)
Vydáno: (2018)
A Physical-Constrained Decomposition Method of Infrared Thermography: Pseudo Restored Heat Flux Approach Based on Ensemble Bayesian Variance Tensor Fraction; IEEE Transactions on Industrial Informatics; Vol. 20, iss. 3
Vydáno: (2024)
Vydáno: (2024)
Thermal Nondestructive Testing of Composite and Metal Parts Manufactured by Additive Technologies; Russian Journal of Nondestructive Testing; Vol. 58, iss. 11
Vydáno: (2022)
Vydáno: (2022)
Diagnostics of Fibre-Reinforced Concrete by the Nondestructive Method Based on Mechanoelectric Transformations Phenomenon; Materials Science Forum; Vol. 970 : Modern Problems in Materials Processing, Manufacturing, Testing and Quality Assurance II
Autor: Petrov M. V. Maksim Vyacheslavovich
Vydáno: (2019)
Autor: Petrov M. V. Maksim Vyacheslavovich
Vydáno: (2019)
Температурный режим устьевого компрессора для откачки газа из затрубного пространства нефтяной скважины; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 333, № 1
Autor: Уразаков К. Р. Камил Рахматуллович
Vydáno: (2022)
Autor: Уразаков К. Р. Камил Рахматуллович
Vydáno: (2022)
Improving sucker rod pump efficiency using frequency controlled induction motor; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 333, № 11
Autor: Tecle S. I. Samuel Isaac
Vydáno: (2022)
Autor: Tecle S. I. Samuel Isaac
Vydáno: (2022)
Specific Features of Nondestructive Testing of Polymer and Composite Materials Using Air-Coupled Ultrasonic Excitation and Laser Vibrometry; Russian Journal of Nondestructive Testing; Vol. 57, iss. 8
Vydáno: (2021)
Vydáno: (2021)
Relation between damage processes of reinforced concrete under uniaxial compression and electric response to pulsed mechanical impact; Procedia Structural Integrity; Vol. 10 : 1st International Conference of the Greek Society of Experimental Mechanics of Materials,Athens, May 10-12, 2018
Autor: Petrov M. V. Maksim Vyacheslavovich
Vydáno: (2018)
Autor: Petrov M. V. Maksim Vyacheslavovich
Vydáno: (2018)
Применение композитной арматуры в строительстве; Прогрессивные технологии и экономика в машиностроении
Autor: Проскурина А. О.
Vydáno: (2022)
Autor: Проскурина А. О.
Vydáno: (2022)
Plastics
Autor: Романова Л. Г.
Vydáno: (Оренбург, ОГПУ, 2017)
Autor: Романова Л. Г.
Vydáno: (Оренбург, ОГПУ, 2017)
Investigation of "smart sensor's" behavior during cyclic test of carbon fiber reinforce polymer; Mechanical Engineering, Automation and Control Systems (MEACS)
Vydáno: (2014)
Vydáno: (2014)
Исследование влияния поверхностной пластической деформации материала бурильных труб на их технологические свойства; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 336, № 3
Autor: Буглов Н. А. Николай Александрович
Vydáno: (2025)
Autor: Буглов Н. А. Николай Александрович
Vydáno: (2025)
Detecting degradation in reinforced concrete subjected to uniaxial compression, using the parameters of electric response to mechanical impact; Research in Nondestructive Evaluation; Vol. 30, iss. 6
Vydáno: (2018)
Vydáno: (2018)
Temperature regimes for obtaining granular material for foamed crystal glass materials as a function of the batch composition; Glass and Ceramics; Vol. 66, N 5-6
Vydáno: (2009)
Vydáno: (2009)
Electrical Disintegration of Reinforced Concrete: Experiment and Simulation; Physical Mesomechanics; Vol. 28, iss. 1
Vydáno: (2025)
Vydáno: (2025)
Evaluating damage to reinforced concrete during mechanical compression and bending tests; ARPN Journal of Engineering and Applied Sciences; Vol. 12, № 21
Vydáno: (2017)
Vydáno: (2017)
Ancient Glass of South Asia Archaeology, Ethnography and Global Connections /
Vydáno: (2021)
Vydáno: (2021)
Properties of Hollow Glass Microspheres Obtained in a Propane-Air Torch; Glass and Ceramics; Vol. 80
Vydáno: (2023)
Vydáno: (2023)
Scintillation responses and X-ray imaging application of Dy3+- doped in borophosphate glass; Radiation Physics and Chemistry; Vol. 239
Vydáno: (2026)
Vydáno: (2026)
Simulation of pre-breakdown phase of electrical discharge in reinforced concrete; Energy Fluxes and Radiation Effects (EFRE-2016)
Autor: Kuznetsova N. S. Nataliya Sergeevna
Vydáno: (2016)
Autor: Kuznetsova N. S. Nataliya Sergeevna
Vydáno: (2016)
Handbook of Oral and Maxillofacial Surgery and Implantology
Vydáno: (2024)
Vydáno: (2024)
In-situ carbide reinforced aluminium metal matrix composites obtained in pulsed arc plasma discharge; Ceramics International; Vol. 51, iss. 14
Vydáno: (2025)
Vydáno: (2025)
Synthesis of copper metal matrix composites reinforced with hard carbides via in-situ and ex-situ thermal plasma spraying; Composites Communications; Vol. 61
Vydáno: (2026)
Vydáno: (2026)
Technological aspects of borate glass–ceramics preparation doped with transition metals for optoelectronic applications; Journal of Non-Crystalline Solids; Vol. 570
Vydáno: (2021)
Vydáno: (2021)
Advances in Reinforcement Learning: A Comprehensive Review of Real-World Applications in Industry; Acta Scientific Computer Sciences; Vol. 5, iss. 5
Autor: Usenko K. Kirill
Vydáno: (2023)
Autor: Usenko K. Kirill
Vydáno: (2023)
An Experimental Study of the Reinforcing Element of a Vascular Prosthesis Fabricated Using the Internal Thoracic Artery of Large Cattle; Biophysics; Vol. 66, iss. 4
Vydáno: (2021)
Vydáno: (2021)
Nondestructive Testing for Defects and Damage to Structures in Reinforced Concrete Foundations Using Standard G.652 Optical Fibers; Russian Journal of Nondestructive Testing; Vol. 56, iss. 2
Vydáno: (2020)
Vydáno: (2020)
Обучение агентов в виртуальной среде KukaDiversObjectEnv; Перспективы развития фундаментальных наук; Т. 7 : IT-технологии и электроника
Autor: Залогин Н. Е.
Vydáno: (2024)
Autor: Залогин Н. Е.
Vydáno: (2024)
Investigation of the possibility of shaping an electron dose field of a clinical accelerator with 3D printed polymer products; Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment; Vol. 1059
Vydáno: (2024)
Vydáno: (2024)
Contactless and nondestructive evaluation of residual stress distribution in modified and pure HDPE materials using a novel terahertz method and line-scan thermographic technique; Composites Part A: Applied Science and Manufacturing; Vol. 183
Vydáno: (2024)
Vydáno: (2024)
Detecting unit for X-ray nondestructive testing systems; Control and Communications (SIBCON)
Autor: Nam I. F. Irina Feliksovna
Vydáno: (2015)
Autor: Nam I. F. Irina Feliksovna
Vydáno: (2015)
Nondestructive testing of composite T-Joints by TNDT and other methods; Polymer Testing; Vol. 94
Vydáno: (2021)
Vydáno: (2021)
Structure Formation in Cast Spinelide-Pyroxene Glass-Ceramic Materials under Non-Equilibrium Crystallization; Glass and Ceramics; Vol. 78, iss. 3-4
Autor: Ignatova A. M. Anna Mikhaylovna
Vydáno: (2021)
Autor: Ignatova A. M. Anna Mikhaylovna
Vydáno: (2021)
Динамические симуляторы в задачах диагностики штанговых глубинно-насосных установок; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 333, № 1
Autor: Зюзев А. М. Анатолий Михайлович
Vydáno: (2022)
Autor: Зюзев А. М. Анатолий Михайлович
Vydáno: (2022)
Use of reinforcing elements to improve fatigue strength of steel structures of mine hoisting machines (MHM); Metalurgija; Vol. 59, № 1
Vydáno: (2020)
Vydáno: (2020)
Modelling Acoustic-Electric Nondestructive Testing for Defects in Dielectric Materials; Russian Journal of Nondestructive Testing; Vol. 57, iss. 2
Vydáno: (2021)
Vydáno: (2021)
Detecting and Evaluating Water Ingress in Horizontally Oriented Aviation Honeycomb Panels by Using Automated Thermal Nondestructive Testing; Russian Journal of Nondestructive Testing; Vol. 59, iss. 12
Vydáno: (2023)
Vydáno: (2023)
Podobné jednotky
-
Applying ultrasonic resonance vibrometry for the evaluation of impact damage in natural/synthetic fibre reinforced composites; Polymer Testing; Vol. 68
Vydáno: (2018) -
Developing a Nondestructive Method for Revealing Defective Areas in Reinforced Concrete Under Bending Conditions; Russian Journal of Nondestructive Testing; Vol. 55, iss. 4
Autor: Fursa T. V. Tatjyana Viktorovna
Vydáno: (2019) -
Automated procedure for detecting and characterizing defects in GFRP composite by using thermal nondestructive testing; Infrared Physics and Technology; Vol. 114
Vydáno: (2021) -
Influence of concrete-reinforcement bond quality on the process of fracture due to uniaxial compression. Fracture detection; Nondestructive Testing and Evaluation; Vol. 33, iss. 4
Vydáno: (2018) -
A Physical-Constrained Decomposition Method of Infrared Thermography: Pseudo Restored Heat Flux Approach Based on Ensemble Bayesian Variance Tensor Fraction; IEEE Transactions on Industrial Informatics; Vol. 20, iss. 3
Vydáno: (2024)