Non-Steady-State Behavior of Thermal Insulations
Author:
Affiliation:
1. Metals and Ceramics Division Oak Ridge National Laboratory Oak Ridge, Tennessee 37831
Publisher
SAGE Publications
Subject
General Engineering
Link
http://journals.sagepub.com/doi/pdf/10.1177/109719638600900305
Reference13 articles.
1. Moore, J.P., McElroy, D.L., and Jury, S.H. "A Technique for Measuring the Apparent Thermal Conductivity of Flat Insulations," Thermal Conductivity 17, J. G. Hust (ed ), Plenum Publishing Corporation, New York, pp. 727- 735 (1983).
2. Graves, R.S., Yarbrough, D.W., and McElroy, D.L. "Apparent Thermal Conductivity by an Unguarded Technique," Thermal Conductivity 18, T. Ashworth and David R. Smith (eds.), Plenum Publishing Corporation , New York, pp. 339- 355 (1985).
3. Precision measurements of the thermal conductivity, electrical resistivity, and Seebeck coefficient from 80 to 400 K and their application to pure molybdenum
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