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Heats of Formation of Zirconium Carbide and Hafnium Carbide

Heats of Formation of Zirconium Carbide and Hafnium Carbide PDF Author: Alla D. Mah
Publisher:
ISBN:
Category : Hafnium
Languages : en
Pages : 16

Book Description


Heats of Formation of Zirconium Carbide and Hafnium Carbide

Heats of Formation of Zirconium Carbide and Hafnium Carbide PDF Author: Alla D. Mah
Publisher:
ISBN:
Category : Hafnium
Languages : en
Pages : 16

Book Description


Heats of Formation of Zirconium Carbide and Hafnium Carbide

Heats of Formation of Zirconium Carbide and Hafnium Carbide PDF Author: Alla D. Mah
Publisher:
ISBN:
Category :
Languages : en
Pages : 8

Book Description


Phase Formation and Thermal Conductivity of Zirconium Carbide

Phase Formation and Thermal Conductivity of Zirconium Carbide PDF Author: Yue Zhou
Publisher:
ISBN:
Category :
Languages : en
Pages : 129

Book Description
"This research focused on the synthesis and phase formation of zirconium carbide with different carbon contents, and lattice thermal conductivity of zirconium carbide with different carbon vacancy, hafnium, and oxygen contents. Nominally pure phase ZrC[sub x] was synthesized by solid-state reaction of zirconium hydride (ZrH2) and carbon black at a temperature as low as 1300°C. The powder synthesized at 1300°C was carbon deficient ZrC[sub x]. Carbon stoichiometry of the as-synthesized powders increased as the synthesis temperature increased. As the synthesis temperature increase, the oxygen content of ZrC[sub x] decreased due to the increasing C site occupancy. Low stoichiometry ZrC[sub 0.6] powders were synthesized at 1300°C and 2000°C, and the formed phases were investigated. Carbon vacancy ordered phases were detected by neutron diffraction and selected area electron diffraction. Lattice thermal conductivities of ZrC[sub x] with different carbon contents (x=1.0, 0.75, 0.5) and different hafnium contents (3.125 at% and 6.25 at% were studied theoretically. A combination of first-principles calculations and the Debye-Callaway model was employed to predict the lattice thermal conductivities. Lattice thermal conductivities of all the compositions decreased as temperature increased. Increasing carbon vacancy content reduced the lattice thermal conductivity while increasing the grain size increased the lattice thermal conductivity. Lattice thermal conductivities of ZrC[sub x] also decreased as the content of Hf increased. Carbon vacancies and Hf impurities decreased the phonon transport, thus the lattice thermal conductivity decreased"--Abstract, page iv.

Low-temperature Heat Capacities and Entropies at 298.15° of Sulfides of Arsenic, Germanium and Nickel

Low-temperature Heat Capacities and Entropies at 298.15° of Sulfides of Arsenic, Germanium and Nickel PDF Author: John M. Gomes
Publisher:
ISBN:
Category : Aluminum
Languages : en
Pages : 586

Book Description


The Vaporization Behavior and Thermodynamic Stability of Zirconium Carbide at High Temperature

The Vaporization Behavior and Thermodynamic Stability of Zirconium Carbide at High Temperature PDF Author: B. D. Pollock
Publisher:
ISBN:
Category : Thermodynamics
Languages : en
Pages : 24

Book Description


Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 1492

Book Description


Minerals Yearbook

Minerals Yearbook PDF Author:
Publisher:
ISBN:
Category : Mineral industries
Languages : en
Pages : 1270

Book Description


Nuclear Science Abstracts

Nuclear Science Abstracts PDF Author:
Publisher:
ISBN:
Category : Nuclear energy
Languages : en
Pages : 764

Book Description


Report of Investigations

Report of Investigations PDF Author:
Publisher:
ISBN:
Category : Mineral industries
Languages : en
Pages : 656

Book Description


Thermodynamic Properties of Cuprous and Cupric Ferrites

Thermodynamic Properties of Cuprous and Cupric Ferrites PDF Author: Ronald Barany
Publisher:
ISBN:
Category : Copper ferrite
Languages : en
Pages : 496

Book Description