| Шығарылым |
Бөлім |
Атауы |
Файл |
| Том 52, № 4 (2016) |
Thermal Methods |
Ultrasonic infrared thermography in non-destructive testing: A review |
|
| Том 52, № 9 (2016) |
Thermal Methods |
Determining the lateral size of subsurface defects during active thermal nondestructive testing |
|
| Том 52, № 9 (2016) |
Erratum |
Erratum to: “Thermal nondestructive testing of thermal-barrier coatings of turbine buckets” |
|
| Том 52, № 10 (2016) |
Thermal Methods |
A LED-based thermal detector of hidden corrosion flaws |
|
| Том 52, № 12 (2016) |
Thermal Methods |
Estimating the humidity of wood by terahertz infrared thermography |
|
| Том 53, № 6 (2017) |
Acoustic Methods |
Active thermal testing of hyperthermoconductive panels |
|
| Том 53, № 7 (2017) |
Thermal Methods |
Detecting low-energy impact damages in carbon-carbon composites by ultrasonic infrared thermography |
|
| Том 53, № 10 (2017) |
Thermal Methods |
Thermal nondestructive testing of materials and products: a review |
|
| Том 54, № 4 (2018) |
Thermal Methods |
An Automated Practical Flaw-Identification Algorithm for Active Thermal Testing Procedures |
|
| Том 54, № 5 (2018) |
Thermal Methods |
Comparing the Efficiency of Ultrasonic Infrared Thermography under High-Power and Resonant Stimulation of Impact Damage in a CFRP Composite |
|
| Том 54, № 10 (2018) |
Thermal Methods |
Infrared Thermographic Testing of Hybrid Materials Using High-Power Ultrasonic Stimulation |
|
| Том 55, № 5 (2019) |
Vibration Diagnostics |
Nondestructive Testing of CubSat Satellite Body Using Laser Vibrometry |
|
| Том 55, № 7 (2019) |
Thermal Methods |
Infrared Thermography and Generation of Heat under Deformation of Bioinert Titanium- and Zirconium-Based Alloys |
|
| Том 55, № 8 (2019) |
Thermal Methods |
An Automated Algorithm for Constructing Maps of Defects in Active Thermal Testing |
|
| Том 55, № 9 (2019) |
Acoustic Methods |
Studying Stability of CFRP Composites to Low-Energy Impact Damage by Laser Vibrometry |
|
| Том 55, № 3 (2019) |
Thermal Methods |
Active Thermal Testing of Delaminations in Heat-Shielding Structures |
|