Thermal Expansion: Metallic Elements and Alloys by Y. S. Touloukian, R. K. Kirby, R. E. Taylor, P. D. Desai

By Y. S. Touloukian, R. K. Kirby, R. E. Taylor, P. D. Desai

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Anderson. 0. , '"Equation for Thermal Expansivity in Planetary Interiors," J. Geophys. Res .. 72, 3661~8, 1967. 16. Rosenfield, A. , and Averbach, B. , "Effect of Stress on the Expansion Coefficient," J. Appl. , 27, 154~6, 1956. 17. Fahmy, A. , and Ragai-Ellozy, A. , "A Discrete Element Method for the Calculation of the Thermal Expansion Coefficients of Unidirectional Fiber Composites,'' in AlP Conf Proc. No. -Thermal Expansion, American Institute of Physics. New York, 231-40, 1974. 18. Hidnert, P ..

Since both y and the product of V and Br are weak functions of temperature, the value of {3 is nearly proportional to Cv at all temperatures; that is, at high temperatures {3 is nearly a constant and at low 6a Theory, Estimation, and Measurement I >C) a:: z "' "' _J <[ ;::: z "' b Q. 0 X, DISPLACEMENT - - - - Fig. I. Plot of asymmetric potential energy well and time-averaged position of vibrating particles. temperatures, where the atoms must be treated as quantum oscillators, fJ -+ 0 as T-+ 0 K.

Temperature Measurements with Metal Ribbon High Temperature X-Ray Furnaces," Rev. Sci. , 39, 888-9, 1968. 62. Mauer, F. , and Hahn, T. , "Thermal EApansion of Some Azides by a Single Crystal X-Ray Method," in AlP Con[ Proc. No. 3-Therma/ Expansion, American Institute of Physics. New York, 139-50, 1972. 63. d'Heurle, F. , and Nowick, A. " J. Phys. Soc. Japan, 18 (Suppl. II), 184-90, 1963. 64. Bowman. A. , Krikorian. N. H .. and Neveson, N. G .. "The Variation of Lattice Parameters of UC-ZrC Solid Solutions with Temperature and Composition," in AlP Conf Proc.

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