Refractory materials such as metallic borides, often considered as ultra high temperature ceramics (UHTC), are characterized by high melting point, high hardness, and good chemical inertness. These materials have many applications which require high temperature materials that can operate with no or limited oxidation. Ab initio, first principles methods are the most accurate modeling approaches available and represent a parameter free description of the material based on the quantum mechanical equations. Using these methods, many of the intrinsic properties of these material can be obtained. We performed ab initio calculations based on density functional theory for the UHTC materials ZrB2 and HfB2. Computational results are presented for str...
AbstractThe diborides are members of a broad class of materials known as the boron-rich solids, whic...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...
A comprehensive ab initio analysis of the ultra high tempera-ture ceramics ZrB2 and HfB2 is presente...
We are developing a multiscale framework in computational modeling for the ultra high temperature ce...
This research focusses on the thermophysical properties of nominally phase pure boride ceramics. As ...
This dissertation focuses on the thermophysical properties of high purity zirconium diboride ceramic...
High temperature mechanical behavior of materials is of critical importance in a variety of contexts...
Metal hexaborides are refractory ceramics with several qualities relevant to materials design, such ...
WOS: 000415771700014The structural, electronic, anisotropic elastic, and lattice dynamical propertie...
We report on an ab initio molecular dynamics study of the lattice parameters, thermal expansion coef...
We report on an ab initio molecular dynamics study of the lattice parameters, thermal expansion coef...
Several equimolar, five-component, metal diborides were fabricated via high-energy ball milling and ...
Several equimolar, five-component, metal diborides were fabricated via high-energy ball milling and ...
Determining thermal and physical quantities across a broad temperature domain, especially up to the ...
AbstractThe diborides are members of a broad class of materials known as the boron-rich solids, whic...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...
A comprehensive ab initio analysis of the ultra high tempera-ture ceramics ZrB2 and HfB2 is presente...
We are developing a multiscale framework in computational modeling for the ultra high temperature ce...
This research focusses on the thermophysical properties of nominally phase pure boride ceramics. As ...
This dissertation focuses on the thermophysical properties of high purity zirconium diboride ceramic...
High temperature mechanical behavior of materials is of critical importance in a variety of contexts...
Metal hexaborides are refractory ceramics with several qualities relevant to materials design, such ...
WOS: 000415771700014The structural, electronic, anisotropic elastic, and lattice dynamical propertie...
We report on an ab initio molecular dynamics study of the lattice parameters, thermal expansion coef...
We report on an ab initio molecular dynamics study of the lattice parameters, thermal expansion coef...
Several equimolar, five-component, metal diborides were fabricated via high-energy ball milling and ...
Several equimolar, five-component, metal diborides were fabricated via high-energy ball milling and ...
Determining thermal and physical quantities across a broad temperature domain, especially up to the ...
AbstractThe diborides are members of a broad class of materials known as the boron-rich solids, whic...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...