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Metrological Problems of Pyrometry: an Analysis and the Prospects for Solving Them

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Measurement Techniques Aims and scope

Current problems of noncontact temperature measurements, connected with the lack of control over the systematic error in practice, are considered. It is shown that it is necessary to establish national recommendations to regulate the development of procedures. A promising direction for the development of pyrometry, involving the use of intelligent measuring instruments, is proposed.

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References

  1. V. P. Vavilov, Infrared Thermography and Thermal Monitoring [in Russian], Izd. Dom Spektr, Moscow (2009).

    Google Scholar 

  2. D. P. DeWitt and G. D. Nutter, Theory and Practice of Radiation Thermometry,Wiley Interscience, New York (1988).

    Book  Google Scholar 

  3. MI 2233–2000, GSI. The Achievement of Measurement Efficiency when Controlling Technological Processes. General Conditions.

  4. O. A. Gerashchenko et al., Temperature Measurements: A Reference Book [in Russian], Naukova Dumka, Kiev (1989).

    Google Scholar 

  5. B. P. Ionov and A. B. Ionov, “A spectral-statistical approach to noncontact temperature measurements,” Datch. Sistemy, No. 2, 9–12 (2009).

    Google Scholar 

  6. GOST 8.563-2009, GSI. Measurement Procedures (methods).

  7. IEC/TS 62492–1, Industrial Process Control Devices – Radiation Thermometers. Pt. 1. Technical Data for Radiation Thermometers, Geneva, Switzerland (2008).

  8. ASTM E1933-99a:2010, Standard Test Methods for Measuring and Compensating for Emissivity Using Infrared Imaging Radiometers.

  9. MI 2083–90, GSI. Indirect Measurements. Determination of the Results of Measurements and Estimation of Their Errors.

  10. RD 153–34.0-20.364-00, Procedure for Infrared Diagnostics of Thermal-Mechanical Equipment, Izd. ORGRES, Moscow (2000).

  11. A. N. Magunov, “Spectral pyrometry,” Pribory Tekh. Eksper., No. 4, 5–28 (2009).

  12. Pat. WO 03/087885, “Apparatus and method for true temperature estimation,” 10.23.2003.

  13. K. Boboridis and A. W. Obst, “A high-speed four-channel infrared pyrometer,” Temperature: Its Measurement and Control in Science and Industry: Proc. AIP Conf., Melville, USA (2003), Vol. VII, pp. 759–764.

  14. A. B. Ionov et al., “The development of an algorithm for estimating the temperature of an object in spectral pyrometry,” Polzunov. Vestn., No. 3/1, 34–37 (2011).

  15. W. Minkina and S. Dudzik, Infrared Thermography. Errors and Uncertainties, John Wiley & Sons, New York (2009).

    Book  Google Scholar 

  16. GOST R 8.673-2009, GSI. Intelligent Sensors and Intelligent Measuring Systems. Basic Terms and Definitions.

  17. R. Taymanov and K. Sapozhnikova, “Metrological self-check and evolution of metrology,” Measurement, No. 43, 869–877 (2010).

  18. R. Taymanov, K. Sapozhnikova, and I. Druzhinin, “Sensor devices with metrological self-check,” Sens. Transduc., 10, 30–45 (2011).

    Google Scholar 

  19. GOST R 8.734-2011, GSI. Intelligent Sensors and Intelligent Measuring Systems. Metrological Self-Monitoring Methods.

  20. ISO/IEC Guide 93-3-2008, Uncertainty of Measurement. Pt. 3: Guide to the Expression of Uncertainty in Measurement (GUM:1995), Geneva, Switzerland (2008).

  21. J. Fischer et al., CCT-WG5 on Radiation Thermometry. Uncertainty Budgets for Calibration of Radiation Thermometers Below the Silver Point, IBWM, Sèvres, France (2008).

    Google Scholar 

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Correspondence to A. B. Ionov.

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Translated from Izmeritel’naya Tekhnika, No. 6, pp. 42–45, June, 2013.

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Ionov, A.B. Metrological Problems of Pyrometry: an Analysis and the Prospects for Solving Them. Meas Tech 56, 658–663 (2013). https://doi.org/10.1007/s11018-013-0262-6

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  • DOI: https://doi.org/10.1007/s11018-013-0262-6

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