
Publication 1762-UM002A-EN-P - July 2002
C-18
Thermocouple Descriptions
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[14] Potts, J. F. Jr.; McElroy, D. L. The effects of cold working, heat
treatment, and oxidation on the thermal emf of nickel-base
thermoelements. Herzfeld, C. M.; Brickwedde, F. G.; Dahl, A. I.;
Hardy, J. D., ed.
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[15] Burley, N. A.; Ackland, R. G. The stability of the
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[16] Burley, N. A. Nicrosil and nisil: Highly stable nickel-base alloys
for thermocouples.
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[17] Wang, T. P.; Starr, C. D. Electromotive force stability of
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[18] Starr, C. D.; Wang, T. P. Effect of oxidation on stability of
thermocouples,
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[19] Bentley, R. E. Short-term instabilities in thermocouples
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[20] Kollie, T. G.; Horton, J. L.; Carr, K. R.; Herskovitz, M. B.;
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[21] ASTM, American Society for Testing and Materials, Standard
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[22] Bedford, R. E.; Ma, C. K.; Barber, C. R.; Chandler, T. R.; Quinn, T.
J.; Burns, G. W.; Scroger, M. New reference tables for platinum 10%
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[23] Burns, G. W.; Strouse, G. F.; Mangum, B. W.; Croarkin, M. C.;
Guthrie, W. F.; Chattle, M. New reference functions for platinum-13%
rhodium versus platinum (type R) and platinum-30% rhodium versus
platinum-6% rhodium (type B) thermocouples based on the ITS-90. in
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