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Elastic constants of amorphous and single-crystal Pd40Cu40P20

โœ Scribed by D.J. Safarik; R.B. Schwarz


Book ID
103998257
Publisher
Elsevier Science
Year
2007
Tongue
English
Weight
873 KB
Volume
55
Category
Article
ISSN
1359-6454

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โœฆ Synopsis


We have measured the adiabatic second-order elastic constants of amorphous Pd 40 Cu 40 P 20 (isotropic, two independent elastic constants) and single-crystal Pd 40 Cu 40 P 20 (tetragonal, six independent elastic constants) over the range 3.9 < T < 300 K. Below $20 K, the elastic constants of single-crystal Pd 40 Cu 40 P 20 vary as C(T) = C(0)[1 ร€ bT 2 ร€ dT 4 ], which is the same temperature dependence found in metallic elements. In contrast, below $20 K the elastic constants of amorphous Pd 40 Cu 40 P 20 vary as C(T) = C(0 * )[1 ร€ aT]. The bulk modulus of amorphous Pd 40 Cu 40 P 20 is approximately 2% lower than that of crystalline Pd 40 Cu 40 P 20 , whereas the shear modulus of the glass is 13-36% lower than the four independent shear moduli of the tetragonal crystal. The lower moduli of the glass are best explained by additional atomic displacements, beyond those experienced by the atoms in a crystal, that occur because the atoms in glasses do not occupy centers of symmetry.


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