Qualitative Assessments via Infrared Vision of Sub-surface Defects Present Beneath Decorative Surface Coatings; International Journal of Thermophysics; Vol. 39, iss. 1
| Parent link: | International Journal of Thermophysics Vol. 39, iss. 1.— 2018.— [24 p.] |
|---|---|
| Yhteisötekijä: | Национальный исследовательский Томский политехнический университет Исследовательская школа физики высокоэнергетических процессов |
| Muut tekijät: | Sfarra S. Stefano, Fernandes H. C. Henrique Coelho, Lopez F. Fernando, Ibarra-Castanedo C. Clemente, Zhang H., Maldague X. Xavier |
| Yhteenveto: | Title screen In this work, the potentialities of the infrared vision to explore sub-superficial defects in polychromatic statues were investigated. In particular, it was possible to understand how the reflector effect of the exterior golden layers could be minimized, applying advanced statistical algorithms to thermal images. Since this noble metal is present as external coating in both artworks, an in-depth discussion concerning its physicochemical properties is also added. In this context, the principal component thermography technique and, the more recent, partial least squares thermography technique were used on three different datasets recorded, providing long thermal stimuli. The main images were compared both to phasegrams and to the thermographic signal reconstruction results in order to have a clear outline of the situation to be debated. The effects of view factors on the radiation transfer linked to the specular reflections from the surface did not falsely highlight certain features inadvertently. Indeed, the raw thermograms were analyzed one by one. Reflectograms were used to pinpoint emissivity variations due to, e.g., possible repainting. The paper concludes that, as it is possible to understand from a physical point of view, the near-infrared reflectography technique is able to examine the state of conservation of the upper layers in cultural heritage objects, while the infrared thermography technique explores them more in-depth. The thesis statement is based on the thermal and nonthermal parts of the infrared region, therefore, indicating what can be detected by heating the surface and what can be visualized by illuminating the surface, bearing in mind the nature of the external coating. Режим доступа: по договору с организацией-держателем ресурса |
| Kieli: | englanti |
| Julkaistu: |
2018
|
| Aiheet: | |
| Linkit: | https://doi.org/10.1007/s10765-017-2333-4 |
| Aineistotyyppi: | Elektroninen Kirjan osa |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=658108 |
Samankaltaisia teoksia
Highly-efficient and noncontact vibro-thermography via local defect resonance; Quantitative InfraRed Thermography Journal; Vol. 12, iss. 1
Julkaistu: (2015)
Julkaistu: (2015)
Study on Detection Limit of Buried Defects in Concrete Structures by Using Infrared Thermography; Key Engineering Materials; Vol. 270-273
Tekijä: Kamoi A. Arao
Julkaistu: (2004)
Tekijä: Kamoi A. Arao
Julkaistu: (2004)
Evaluating thermal properties of sugarcane bagasse-based composites by using active infrared thermography and terahertz imaging; Infrared Physics & Technology; Vol. 97
Julkaistu: (2019)
Julkaistu: (2019)
Infrared thermographic evaluation of flame turbulence scale; Infrared Physics & Technology; Vol. 72
Julkaistu: (2015)
Julkaistu: (2015)
Broadband Sub-terahertz Camera Based on Photothermal Conversion and IR Thermography; Journal of Infrared, Millimeter, and Terahertz Waves; Vol. 37, iss. 5
Julkaistu: (2016)
Julkaistu: (2016)
Infrared Thermography and Thermal Nondestructive Testing
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (Cham, Springer, 2020)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (Cham, Springer, 2020)
Analyzing the thermal regime of power supply units in portable betatrons by using infrared thermography; MATEC Web of Conferences; Vol. 92 : Thermophysical Basis of Energy Technologies (TBET-2016)
Julkaistu: (2017)
Julkaistu: (2017)
Electric arc surfacing on low carbon steel: structure and properties; Перспективные материалы с иерархической структурой для новых технологий и надежных конструкций
Julkaistu: (2016)
Julkaistu: (2016)
Defining the Thermal Features of Sub-Surface Reinforcing Fibres in Non-Polluting Thermo–Acoustic Insulating Panels: A Numerical–Thermographic–Segmentation Approach; Infrastructures; Vol. 6, iss. 9
Julkaistu: (2021)
Julkaistu: (2021)
Positron Spectroscopy of Defect Structure of Electron Beam MeltedTitanium Ti-6Al-4V Alloy; Slow Positron Beam Techniques and Applications (SLOPOS-15)
Julkaistu: (2019)
Julkaistu: (2019)
Crack detection in aluminum parts by using ultrasound-excited infrared thermography; Infrared Physics & Technology; Vol. 61
Tekijä: Xingwang Guo
Julkaistu: (2013)
Tekijä: Xingwang Guo
Julkaistu: (2013)
Estimating the humidity of wood by terahertz infrared thermography; Russian Journal of Nondestructive Testing; Vol. 52, iss. 12
Julkaistu: (2017)
Julkaistu: (2017)
Automated procedure for detecting and characterizing defects in GFRP composite by using thermal nondestructive testing; Infrared Physics and Technology; Vol. 114
Julkaistu: (2021)
Julkaistu: (2021)
Thermal NDT research at Tomsk Polytechnic University; Quantitative InfraRed Thermography Journal; Vol.
Julkaistu: (2015)
Julkaistu: (2015)
Evaluating Building Envelope Thermal Resistanceby Using Infrared Thermography; European Conference on Non-Destructive Testing (ECNDT 2014)
Tekijä: Larioshina I. A. Irina Anatolievna
Julkaistu: (2014)
Tekijä: Larioshina I. A. Irina Anatolievna
Julkaistu: (2014)
Оценка несущей способности дефектных опор воздушных линий 6-10 кВ; Известия Томского политехнического университета [Известия ТПУ]; Т. 308, № 5
Julkaistu: (2005)
Julkaistu: (2005)
Infrared thermographic assessment of heat release phenomena in steel parts subjected to quasi-static deformation; Measurement; Vol. 185
Tekijä: Moyseychik E. A. Evgeny Alekseevich
Julkaistu: (2021)
Tekijä: Moyseychik E. A. Evgeny Alekseevich
Julkaistu: (2021)
Evaluation of equivalent defect heat generation in carbon epoxy composite under powerful ultrasonic stimulation by using infrared thermography; IOP Conference Series: Materials Science and Engineering; Vol. 81 : Radiation-Thermal Effects and Processes in Inorganic Materials
Tekijä: Derusova D. A. Dariya Aleksandrovna
Julkaistu: (2015)
Tekijä: Derusova D. A. Dariya Aleksandrovna
Julkaistu: (2015)
Infrared thermographic inspection of water ingress in composite honeycomb panels; Applied Optics; Vol. 55, iss. 34
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2016)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2016)
Detecting corrosion in thick metals by applying active IR thermography; Thermal Infrared Applications XXXIV, April 23-26, 2012
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2012)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2012)
Ultrasonic infrared thermography in non-destructive testing: A review; Russian Journal of Nondestructive Testing; Vol. 52, iss. 4
Julkaistu: (2016)
Julkaistu: (2016)
Multilevel Hierarchical Structure of Silumin Subjected to Multicycle Surface Alloying; AIP Conference Proceedings; Vol. 2167 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2019 (AMHS'19)
Julkaistu: (2019)
Julkaistu: (2019)
How accurate is the IR thermographic evaluation of heat losses from buildings?; Quantitative InfraRed Thermography Journal; Vol. 7, iss. 2
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2010)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2010)
Advanced modeling of thermal NDT problems: from buried landmines to defects in composites; Thermosense XXIV, Orlando, April 01, 2002
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2002)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2002)
Infrared thermographic evaluation of large composite grid parts subjected to axial loading; Polymer Testing; Vol. 41
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2015)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2015)
Non-contact one-sided evaluation of hidden corrosion in metallic constructions by using transient infrared thermography; Revista de Metalurgia (Madrid); Vol. SPEC
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2003)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2003)
Reply to comment on "how accurate is the IR thermographic evaluation of heat losses from buildings?"; Quantitative InfraRed Thermography Journal; Vol. 8, № 1
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2011)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2011)
Noise-limited thermal/infrared nondestructive testing; NDT & E International; Vol. 61
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2014)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2014)
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
Julkaistu: (2018)
Julkaistu: (2018)
Airborne laser IR thermographic system for detecting gas leaks from underground pipelines; Quantitative InfraRed Thermography Journal; Vol. 3, iss. 1
Tekijä: Ershov O. V.
Julkaistu: (2006)
Tekijä: Ershov O. V.
Julkaistu: (2006)
Analyzing Deformation and Damage of VT1-0 Titanium in Different Structural States by Using Infrared Thermography; Journal of Nondestructive Evaluation; Vol. 35, iss. 3
Julkaistu: (2016)
Julkaistu: (2016)
Detection of hidden corrosion in metals by using transient infrared thermography; Insight: Non-Destructive Testing and Condition Monitoring; Vol. 40, iss. 6
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (1998)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (1998)
Study of the defect structure's evolution of the titanium alloy VT1-0 after thermohydrogen cycling by positron annihilation spectroscopy; Методология проектирования молодежного научно-инновационного пространства как основа подготовки современного инженера
Tekijä: Khusaeva O. V.
Julkaistu: (2014)
Tekijä: Khusaeva O. V.
Julkaistu: (2014)
Infrared Thermographic Testing of Hybrid Materials Using High-Power Ultrasonic Stimulation; Russian Journal of Nondestructive Testing; Vol. 54, iss. 10
Julkaistu: (2018)
Julkaistu: (2018)
Ultrasonic and optical stimulation in IR thermographic NDT of impact damage in carbon composites; Quantitative InfraRed Thermography Journal; Vol. 12, № 2
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2015)
Tekijä: Vavilov V. P. Vladimir Platonovich
Julkaistu: (2015)
Comparative analysis on thermal non-destructive testing imagery applying Candid Covariance-Free Incremental Principal Component Thermography (CCIPCT); Infrared Physics & Technology; Vol. 85
Julkaistu: (2017)
Julkaistu: (2017)
Infrared thermographic detector of hidden corrosion; Sensor Review; Vol. 40, iss. 3
Tekijä: Simonov D. A. Denis Andreevich
Julkaistu: (2020)
Tekijä: Simonov D. A. Denis Andreevich
Julkaistu: (2020)
Evaluating characteristics of turbulent flames by using IR thermography and PIV; Infrared Physics & Technology; Vol. 92
Julkaistu: (2018)
Julkaistu: (2018)
Modeling and image processing in infrared thermographic NDT of composite materials; Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics; Vol. 30, iss. 4
Julkaistu: (2004)
Julkaistu: (2004)
Modelling, detecting and evaluating water ingress in aviation honeycomb panels; Quantitative InfraRed Thermography Journal; Vol. 14, iss. 2
Julkaistu: (2017)
Julkaistu: (2017)
Samankaltaisia teoksia
-
Highly-efficient and noncontact vibro-thermography via local defect resonance; Quantitative InfraRed Thermography Journal; Vol. 12, iss. 1
Julkaistu: (2015) -
Study on Detection Limit of Buried Defects in Concrete Structures by Using Infrared Thermography; Key Engineering Materials; Vol. 270-273
Tekijä: Kamoi A. Arao
Julkaistu: (2004) -
Evaluating thermal properties of sugarcane bagasse-based composites by using active infrared thermography and terahertz imaging; Infrared Physics & Technology; Vol. 97
Julkaistu: (2019) -
Infrared thermographic evaluation of flame turbulence scale; Infrared Physics & Technology; Vol. 72
Julkaistu: (2015) -
Broadband Sub-terahertz Camera Based on Photothermal Conversion and IR Thermography; Journal of Infrared, Millimeter, and Terahertz Waves; Vol. 37, iss. 5
Julkaistu: (2016)