Sankt-Peterburg, St. Petersburg, Russian Federation
CONSTANTA Ltd ( general'nyy direktor)
Sankt-Peterburg, Russian Federation
Sovremennoe razvitie sredstv i metodov NK nerazryvno svyazano s tendenciyami i vyzovami proishodyaschey v nastoyaschee vremya 4-y promyshlennoy revolyucii. V ee osnove lezhit cifrovizaciya — perehod k cifrovym metodam sbora, peredachi i obrabotki vseh poluchaemyh dannyh, a takzhe avtomatizaciya processov vo vseh otraslyah promyshlennosti, vklyuchaya proektirovanie, razrabotku, izgotovlenie i ekspluataciyu izdeliy. V etoy svyazi suschestvenno povyshaetsya rol' NK na vseh stadiyah zhiznennogo cikla. Glavnoy tendenciey razvitiya metodov i sredstv NK kak izmeritel'nyh tehnologiy avtory schitayut aktivnyy perehod na vseh urovnyah proektirovaniya, proizvodstva i ekspluatacii ot nerazrushayuschego kontrolya k monitoringu sostoyaniya izdeliy, inzhenernyh ob'ektov, tehnologicheskih processov i ekologicheskih sistem. V oblasti metrologii osnovnym napravleniem yavlyaetsya razvitie metrologicheskogo obespecheniya izmeritel'nyh preobrazovateley i priborov nerazrushayuschego kontrolya kak sredstv izmereniya mnogoparametricheskih i mnogomernyh velichin. Odnoy iz naibolee aktivno razvivayuschihsya oblastey primeneniya metodov NK yavlyayutsya additivnye tehnologii.
metrologiya, standartizaciya, nerazrushayuschiy kontrol', monitoring, cifrovaya obrabotka
1. Thiel F. Digital transformation of legal metrology — The European Metrology Cloud. — OIML Bulletin. 2018. V. LIX. No. 1. P. 10–21.
2. Hackel S., Härtig F., Hornig J., Wiedenhöfer T. The Digital Calibration Certificate. — PTB-Mitteilungen. 2017. Bd 127. H. 4.
3. ISO/IEC/IEEE 21450. Smart transducer interface for sensors and actuators — Common functions, communication protocols, and Transducer Electronic Data Sheet (TEDS) formats.
4. ISO/IEC/IEEE 21451. Smart transducer interface for sensors and actuators (Parts 1,2,4).
5. ISO/IEC 30101:2014. Sensor networks: Sensor network and its interfaces for smart grid system.
6. Real-Time Integrated Weld Analyzer. http://www.tessonics.com/products-riwa.html, 23.09.2018.
7. Taymanov R., Sapozhnikova K. What makes sensor devices and microsystems ‘intelligent’ or ‘smart’? — In: Smart sensors and MEMS for industrial applications. /Ed. by: S. Nihtianov, A. L. Estepa. — In: Woodhead Publishing, Elsevier Ltd, 2018, pp. 1–22.
8. GOST R 8.673-2009. GSI. Datchiki intellektual'nye i sistemy izmeritel'nye intellektual'nye. Osnovnye terminy i opredeleniya.
9. GOST R 8.734-2011. GSI. Datchiki intellektual'nye i sistemy izmeritel'nye intellektual'nye. Metody metrologicheskogo samokontrolya.
10. Adamo F., Attivissimo F., Guarnieri C. et al. A Smart Sensor Network for Sea Water Quality Monitoring. — IEEE Sensors J. 2015. V. 15. No. 5. P. 2514–2522.
11. Physikalisch-TechnischeBundesanstalt. Metrologische IT, Bd. 4/ — Braunschweig: PTB Mitteilungen, 2016.
12. Golubev S. S., Smirnova N. I., Skladanovskaya M. I. Providing the Uniformity of Measurements of the Thickness of Metallic Coatings by Eddy-Current Phase Thickness Gages During Their Calibration and Verification. — Measurement Techniques. 2017. V. 60, No. 6. P. 552—557.