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Revista mexicana de física

versión impresa ISSN 0035-001X

Rev. mex. fis. vol.61 no.2 México mar./abr. 2015

 

Instrumentación

 

Design and construction of a gallium fixed-point blackbody at CENAM

 

D. Cárdenas-García

 

Km 4.5 Carretera a los Cués, El Marqués, 76246, Querétaro, México, Tel: (442)2110500 e-mail: dcardena@cenam.mx.

 

Received 22 October 2014;
accepted 9 January 2015

 

Abstract

For temperatures below silver fixed-point defined by the International Temperature Scale of 1990, a transfer radiation thermometer can be calibrated using either of two calibration schemes: a variable temperature blackbody with a standard platinum resistance thermometer as a reference, or with a set of fixed-point blackbodies. CENAM is presently working with the first scheme, and it is developing fixed-point blackbodies to have the capability to work with the second scheme too. For this purpose a gallium fixed-point blackbody to calibrate CENAM's transfer radiation thermometer was designed and constructed. The blackbody cavity has a cylindro-cone shape with effective emissivity equal to 0.9992 ± 0.0004 in the 8 μm to 14 μm wavelength range. The radiance temperature of the gallium fixed-point blackbody was estimated to have an expanded uncertainty of 54 mK, with a coverage factor k = 2.

Keywords: International temperature scale of 1990; fixed-point blackbody; radiation thermometry.

 

PACS: 78.20.Ci

 

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References

1. H. Preston-Thomas, Metrologia 27 (1990) 3.         [ Links ]

2. P. Saunders et al., Int. J. Thermophys. 29 (2008) 1066. DOI 10.1007/s 10765-008-0385-1.         [ Links ]

3. R. E. Bedford, in Theory and Practice of Radiation Thermometry, ed. by D.P. DeWitt, G.D. Nutter (John Wiley & Sons, New York, 1989). pp. 653-772.         [ Links ]

4. D. Cárdenas-García, Rev. Mex. Fis. 60 (2014) 305.         [ Links ]

5. D. Cárdenas-García and C. Monte, Int. J. Thermophys. 35 (2014) 1299. DOI 10.1007/s10765-014-1686-1.         [ Links ]

6. STEEP3 software, Virial Inc., (2011).

7. Alfa-Aesar, Certificate of Analysis, Product No.: 10185, Gallium ingot, 99.9999%, Lot No. F0802, (2014).

8. S. Glasstone, Thermodynamics for Chemists, (D. Van Nostrand Co., Inc., New York, 1947), p. 322.         [ Links ]

9. G.F. Strouse, NIST Methods of Estimating the Impurity Uncertainty Component for the ITS-90 Fixed-Point Cells from the Ar TP to the Ag FP, 2003, CCT 03-19. Retrieved from http://www1.bipm.org/cc/CCT/Allowed/22/CCT03-19.pdf.         [ Links ]

10. ISO, Guide to the Expression of Uncertainty in Measurement, International Organization for Standardization, Geneva, Switzerland, 1993.         [ Links ]

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